Noise reduction system for frames, doors, windows, profiles and mounting components thereof
By adopting a specific layout process and structural arrangement in the door and window frames, combined with components such as frame guides, seals and decorative strips, the problems of noise, wind and dust in the prior art are solved, and more efficient sound insulation and installation practicality are achieved.
Patent Information
- Application Number
- CN202380075471.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Priority Date
- 2022-10-27
- Filing Date
- 2023-08-28
- Publication Date
- 2025-06-27
AI Technical Summary
The existing door and window frames have limitations in shape, function, installation and optimization, and cannot effectively suppress the entry of noise, wind and dust.
Using a specific layout process and structural arrangement, vertical and horizontal sealing is achieved through components such as frame guides, inter-panel seals, rubber systems, noise reduction brush seals and insulated decorative strips, reducing gaps to block wind, dust and noise.
Effectively block the entry of wind, dust and noise, improve sound insulation, enhance the practicality and speed of installation, and extend the service life of the profile.
Smart Images

Figure CN120225762A_ABST
Abstract
Description
Field of the Invention
[0001] The present invention relates to a structural arrangement belonging to the industrial field of door and window frames, doors, windows and their installation components. Background Art
[0002] From the current situation of the aluminum profile industry and the production of door and window frames and their components, the existing structures have limitations in terms of shape, function, installation and optimization.
[0003] The existing products on the market consist of standard traditional modules, which have various forms and do not bring the necessary improvements to meet the installation requirements and adapt to the irregularity of the building span where the above items are installed. The previously implemented and currently existing improvements belonging to the prior art are not sufficient to effectively suppress the entry of noise, wind and dust into the environment where the existing products are installed. For this reason, relevant prior art has been found in the studied patent literature, namely EP2740590B1 of August 5, 2011; US2008 / 292820, PI0805330-8 of December 22, 2008; MU6300259-0 of March 1, 1983; US20200302092 of December 18, 2009; US10260276 of May 16, 2012; US6123135 of March 2, 1999; US10260276 of April 16, 2019; KR101257496 of April 24, 2013; NZ622190 of May 27, 2016; CN202493195 of October 17, 2012; KR20200025606 of October 3, 2020; CN102052045B of October 30, 2009 and RU2543311 of March 25, 2010; CN106460444A of May 5, 2014; US8051604 of January 15, 2005; KR20200123177 of February 21, 2018; CN105672815 of October 29, 2014; CN106460445 of May 5, 2014.
[0004] When evaluating the known solutions, it can be observed that the structural arrangements of profiles and frames are limited to simplified construction methods, which cannot provide the conditions offered by the current combination of elements. In the known prior art, the noise reduction systems employed are not satisfactory in terms of wind containment level, and wind enters the interior of the room through the frame, thus carrying noise, dust, soot and pollution from vehicle exhaust. In the known frame models, the structural frame with a channel called "door guide rail" has a certain distance at the top so that the sliding door leaf can be inserted into the gap near the upper frame and the side wings and thus be accommodated in the guide rail of the lower frame.
[0005] In this type of blade installation method, since the blades are installed on pulleys supported by tracks, there are gaps both at the top and bottom. To attempt to seal these gaps to suppress noise and dust, existing traditional models have tried to insert various types of sealing rubbers into the gaps beside the flanks along the profiles, but this has proven ineffective as they still allow air to pass through to some extent. The same problem also occurs in door and window panels that slide towards the side frame / side baffle. Even when the rubber seal is pressed against the side baffle, the sealing effect cannot satisfactorily suppress noise and dust. The same problem also exists in the gaps between two doors or window panels.
[0006] In traditional and well-known structures, tabs that come into contact with vertical sealing rubbers are also formed in the vertical profiles. Due to the imperfect adjustment of window frames called mullions in irregular gaps, this contact has never been able to be fully achieved. During installation, when installing the mullions, the mullions need to be adjusted due to the inclination on both sides of the gap. The presence of irregular inclinations, even if very small, requires shims and adjustment devices. When adjusting one side, it will ultimately cause the other side to move away or the sealing rubber to move away. Over time, these gaps tend to increase due to use and wear.
[0007] In the process of attempting to solve the structural defects of the engineering span, another aspect that was verified was the height adjustment of the lower pulleys, which causes a vertical misalignment of the plane, thus creating new gaps through which wind, noise, and dust can pass. Using this ineffective traditional structural model known in the market, combined with the inefficiency of installers in solving such noise problems, the confirmed conclusion is that using thicker profiles is meaningless as it will only make the structure heavier and more expensive because reverberation will be regarded as another unsolved problem. Therefore, the problem of noise generated by the span has not been solved but has instead exacerbated the reverberation caused by using the standard thickness of the profiles.
[0008] There are other systems in the market aimed at solving acoustic problems as well as the problems of wind and dust entry. The principle is to move the pulleys and lower or tilt the pulleys when the doors and windows move, pushing the doors or windows towards the rubber or brush at the top to generate pressure. However, this makeshift method causes the pulleys of the levers used to operate the sliding doors and windows to gradually wear out. In addition, this ineffective method always confines the seal to the first plane of the lever operation, that is, the other planes do not fit well enough with each other to achieve a perfect seal.
[0009] In the search for solutions to suppress noise, the profiles are also filled with foam and brushes to minimize the impact of wind entry. However, considering the increasing noise pollution and the urgent need for sound insulation, this method is not effective either. In addition to these problems, it has also been observed that the lower pulleys used in sliding doors and windows are supported by decorative strips. Due to the long use time of the pulley sliding, the decorative strips are changed to be installed and locked in the lower channels of the profiles. However, this alternative has also proven to be inefficient because the use causes the decorative strips to deform, and when they are partially detached, new noises that did not exist before will be generated.
[0010] After conducting a wide-ranging investigation of the project and studying the existing frameworks, the applicant identified several problems and concluded that the decibels measured in the environment are the result of the combined effects of multiple defects, which proportionally lead to an unacceptable noise level, making the state-of-the-art products obsolete in terms of wind resistance, dust prevention, and the sealing of various noises.
[0011] In addition to the noise problems that worsen over time, it has also been found that due to the natural movement of buildings and structures, new gaps are created, and the entry of dirt, dust, and pollutants has increased. Therefore, an attempt was made to develop a system to solve all existing problems. To this end, the applicant combined a series of improvements for implementation in the profile industry of frames, doors, French windows, their fittings, and installation components, and developed a complete solution that allows the frames, doors, and French windows to be perfectly adapted to the openings of buildings using specific means and adjustments. These adjustments are achieved through a new structural system of the profiles and their components, which helps with the assembly and installation processes, including compensating for possible faults in construction projects through structural improvements of the profiles and their components. This, together with the assembly and installation processes, becomes the main purpose of this invention patent. Summary of the Invention
[0012] The new system that constitutes this new invention patent is based on the adoption of processes and structural arrangements with a specific layout, which work together to achieve maximum suppression of wind, dust, and noise. Individually, the new processes and their respective structural arrangements solve these problems and achieve efficiency through the sum of local improvements brought about by the number of components used in the system. Therefore, the interaction of all components results in more effective blocking of wind, dust, and noise when using this system. This system is constructed for door designs with two, three, or more leaves, including hand-held hooks and their modulators for maximum ventilation windows, revolving doors, fixed doors, corner sliding doors, and sliding doors with central locking.
[0013] For this set of frames, profiles, and components that constitute the system mentioned in this invention patent, the aim is to simplify the manufacturing of the components, make the installation more practical, and make the maintenance and / or replacement of the components more convenient.
[0014] The applicant aims to achieve a new and efficient structural system applicable to door and window frames and their components, and has developed this invention patent. This invention patent is configured in various ways, and its characteristics and constituent elements are adapted to each structure to appropriately adjust and trim the gaps, ensuring better sound insulation effect, and improving the practicality and speed of installation.
[0015] This system patent is developed and implemented based on the frame guide element (09) as the main foundation. As a fundamental solution to the acoustic problems, wind, and dust entry of all door and window planes, these door and window planes are constructed with aluminum profiles or their alloys at the upper, lower, and side parts, and the based process and structural arrangement are different from the models on the current market. Therefore, in the solution of this patent, the fittings of the plane, pulley, lock, or handle will not shift, so that the frame and its components and fittings have greater durability and better conform to the system specifications described below.
[0016] In addition to the functional purpose, this solution can also better adjust and trim the structural gaps, as well as greater installation practicality and speed. This is mainly achieved through the unprecedented process of inserting and screwing the frame guide (09) behind the sash of the French window or door, which significantly reduces the upper gap of the frame in the opening, and thus reduces the lower gap as the height of the pulley decreases, because due to the installation of the frame guide (09), the pulley will no longer need to be raised or tilted. What this solution anticipates is that the upper guide of the door is installed behind the sash, and according to the span or any structural irregularity in the project, the upper guide can be larger or smaller. The above-mentioned guide frame (09) is not a view, but allows for precise and differential adjustment, and can be combined with the height adjustment of the lower pulley. This process that leads to the new structural arrangement is called an invention because the installation process uses the frame guide (09) and the upper sash seal element (10) applied to the three-plane frame element (17) and the two-plane frame element (6).
[0017] To solve the above-mentioned gap problem, this invention patent implements a two-part screwing process for fixation, and also divides the two-plane track profile (02) and the two-plane track support (03) into two different parts, which are combined with each other and insulated at the contact of the component element gasket (G), which eliminates any remaining vibration that would interfere with the glass reverberation. Through the separation process of the component elements of the two-plane track profile (02) and the two-plane track support (03), even the movement friction of the workpiece disappears, as Figure 30As shown in / 35 (see page 24 for details), during the separation of the double-plane track (02) and the double-plane track support (03), and during the connection between the maximum air frame profile (41) and the maximum air fan blade (42) and the secondary frame (01). In combination with the improvement measures proposed by the new system, it is found that in the most advanced products commercialized on the market, the profiles are constructed of a single component, which results in continuous noise that cannot be reduced below 22 decibels. It is detected that the noise level is the result of reverberation in the glass, and although the glass thickness has been increased, the noise has not been satisfactorily reduced.
[0018] Some components of the new noise reduction system also provide solutions to other problems, such as the accumulation of water at the base of the frame drainage trough. For this purpose, a drainage trough profile (item 14), a triple-plane track (item 15), and a drainage trough extension (item 16) have been developed, which together achieve perfect drainage without the need to drill additional holes to open the drain pipe, and impurities will also circulate in the drain pipe.
[0019] The rubber gasket used to compress the profile and seal the frame adopts a micro-separation design, which is beneficial to the deformation and self-filling of the internal space due to its structure.
[0020] Following the same unprecedented principle, the brooms reduce the entry of air and dust due to the extension and amplitude obtained from their slender and dense form of structure.
[0021] When considering all the improvements implemented in this invention patent, it is observed that the effectiveness of the anti-noise system results from the combination of vertical and horizontal seals carried out by its elements, tracks, components, and fittings. Thus, each configuration is an arrangement and combination of profile elements, components, and fittings in a structural layout to accommodate all the requirements of design, use, and installation location. When observing the physical propagation of wind and sound, and the direction and effects caused by the vertical seal, it is so named because wind and sound propagate vertically upwards and downwards in the plane of the door and window. The solution is to adopt a combination of frame guides (9), inter-pane seals (45), rubber systems, noise-reducing brush seals (D), upper-pane seals (10), and insulating trim strips (12). The implementation of the vertical sealing process method stems from a significant reduction in the gap between the frame guide element (9) and the upper-pane seal (10), while dividing the double-plane track element profile (02) and the double-plane track support element (03) into two different parts, which are combined with each other and insulated at the contact point by means of the component element gasket (G). The vertical seal element (45) shown on pages 26 to 29 and page 46 is an invisible element fixed to the inside of the sliding-pane profile element (11) to seal the gap to prevent wind, dust, and sound from passing through, thereby helping to reduce noise by compensating for the gaps in the upper and lower parts of the track, and giving greater durability to the pulley track (04) when cleaning the double-plane track element (02) and the triple-plane track element (15) from the upper or lower part using gasket brushes (CE);
[0022] In the upper and lower parts of the plane, and between one plane and another, at the corners between the panes, the corner seal element combines the use of gasket / brush assemblies and brush seals (45). The corner joint profile element (21) allows for the simplification of the intersection of the two planes. This structural layout anticipates a type of door that is applied and adjusted by positive pressure, which has a specific volume, thereby creating an internal air cavity to ensure reduced noise propagation.
[0023] The horizontal sealing process is designed to inhibit the physical propagation of wind and sound along this direction and the effects caused thereby. It is so named because wind and sound propagate horizontally to the side in the plane of the door and window. The solution is to combine corner stoppers, helper pieces, inter - leaf seals (19), corner joints (21), central stoppers (23), half - columns (25), cross - beams / columns (26) and gusset plates (27). In horizontal sealing, a "helper piece" type of closed model is included. For this, the structured decorative element (GE) shown on page 36, i.e., the vertical front intersection element, is developed. In its corner construction (page 37), a device called a "helper piece" is used to join the leaves. This device has shims for vertical adjustment as a distinction to compensate for any irregularities in the vertical beams of the building opening into which the floor - to - ceiling window or door is inserted. The perfect applicability of the rubber gasket, which promotes a wide and uniform seal when pressed against the surface of the vertical frame due to the closing of the floor - to - ceiling window or door; component elements such as laminated decorative strips (38), insulating decorative strips (39) and sheet decorative strips (40) are also used. They provide greater pressure and thus improve the sound insulation effect because they are screwed instead of simply installed. Simple installation will cause slack and new noise over time and use. Existing systems in the prior art used in doors focused on pressure - boosting decorative strips with the unique possibility of increasing the rubber thickness. In addition to the structured gasket element (GE), it also configured a corner joint profile element (21), which moves with the leaf and forms an element that is aesthetically symmetric on both sides. The vertical profile element (11) is configured as a corner piece and fixed to one of the leaves, and the leaf adapts to the other leaf moving towards it. In addition to being thickened and containing the structured decorative element (GE).
[0024] In the three - plane frame element (17) and the two - plane frame element (6), the process for upper fixing achieved by the separation between the frame guide element (09) and the upper plate seal element (10) results in a minimum reduction of one - tenth of a millimeter, which is still blocked by the brush assembly element (D). That is, the smaller the gap between the upper and lower parts of the plane, the less the entry of wind, dust and noise; and it is found that in solutions known in the prior art level and in the fields of PVC and aluminum or their alloys, there is no such process or element to promote the reduction of the gap.
[0025] The increase in the thickness (ME), mass and corrugation (AB) of the profile in the case of internal application of rubber (G) to prevent the entry, dissipation and reverberation of wind, dust and sound, thus enhancing the effect of reducing the gap; as Figure 49 shown in the sliding leaf element (11), the thickness (ME) of the profile with a larger mass is increased for acoustic blocking; Figure 54 in the pivoting leaf element (37) in Figure 56The profile types with larger mass for acoustic blocking shown, sliding fan blade element (11), half-column element (25), pivoting fan blade element (37), crossbar / column element (26), maximum air fan blade element (42); Figure 48 The sub-frame element (01) and pulley track element (04) are shown; Figure 51 The corner joint element (21) is shown, Figure 52 The half-column element (25) and crossbar / column element (26) are shown; Figure 53 The pivoting frame element (31) is shown; Figure 54 The pivoting fan blade element (37) and maximum air frame element (41) are shown; Figure 55 The maximum air fan blade element (42) and sub-frame element (44) are shown. In the existing structure, there has never been a concern about the increase in the quality and fluctuations of the elements, because in the noise from many other undetected and unsolved sources, this maintenance gain is ignored, but for this system, this helps to achieve more efficient results. In this system, by combining specific profile flaps and their fluctuating shapes, less reverberation can be ensured and noise and dust can be blocked from entering the environment. The existing noise of the traditional line can be reduced by 50%, from 40 decibels to 20 decibels or lower. Such improvements have never been seen in other frames, and they have never given priority to increasing the thickness of the profiles, because in the case where the noise reduction is not obvious, this will unreasonably increase the structural weight and cost.
[0026] Based on the processes and elements developed and reported in this patent, the combination of profile elements, components, and fittings results in several structural arrangements in the form of processes in the following ways:
[0027] In the manner of Figure 01, a sliding door with two planes and four fan blades is shown. By using two-part screw fixation, the profiles of the double-plane track (02) and double-plane track support (03) are also divided into two different parts, which are combined with each other and insulated at the contact point by means of the component element (G), thus eliminating any residual vibration that interferes with the glass reverberation. Even due to the separation process of the double-plane track (02) and double-plane track support (03) component elements, the friction of the workpiece movement also disappears, as Figure 30 and 35 as well as the detailed content on page 24, during the separation process of the double-plane track (02) and double-plane track support (03), and during the connection process between the maximum air frame profile (41) and maximum air fan blade (42) and the sub-frame (01).
[0028] In the embodiment of Figure 02, a sliding door with two planes and two fan blades is shown;
[0029] In the embodiment of Figure 03, a sliding door with three planes and three fan blades is shown;
[0030] In the embodiment of Figure 04, a two-by-two fixed-pane window is shown;
[0031] In the embodiment of Figure 05, a maximum-air window is shown;
[0032] In the embodiment of Figure 06, a maximum-air / fixed window is shown;
[0033] In the embodiment of Figure 07, a maximum-air / maximum-air window is shown;
[0034] In the embodiment of Figure 08, a fixed / maximum-air window is shown;
[0035] In the embodiment of Figure 09, a maximum-air / fixed window is shown;
[0036] Figure 10 In the embodiment of, a pivoting door with acoustic profiles and screw-fixed trim strips (with different thicknesses for supporting the glass) is shown, and a laminated trim strip element (38) is also shown;
[0037] Figure 11 In the embodiment of, a pivoting door with an insulating trim strip element (39) is shown;
[0038] Figure 12 In the embodiment of, a pivoting door with a sheet trim strip element (40) is shown;
[0039] Figure 13 In the embodiment of, a sliding door with two planes and four panes is shown;
[0040] Figure 14 In the embodiment of, a sliding door with two planes and a ninety-degree angle is shown; (including a brush seal with felt, a sub-frame with a larger mass, a trim for sound insulation with a specific trim part model, and a specific profile model);
[0041] Figure 15 In the embodiment of, a sliding door with two side planes is shown (including a brush seal with felt, a sub-frame with a larger mass, a trim for sound insulation with a specific trim part model, and a specific profile model);
[0042] Figure 16 In the embodiment of, a sliding door with two side planes is shown (including a brush seal with felt, a sub-frame with a larger mass, a trim for sound insulation with a specific trim part model, and a specific profile model);
[0043] Figure 17In the embodiment, the meeting of the fan pages is shown (including the felted brush seal, the acoustic trim, the specific trim model, the specific profile model, and the specific profile meeting model);
[0044] Figure 18 In the embodiment, the meeting of the half fan blades is shown (including the felted brush seal, the soundproof trim, the specific trim model, and the specific profile model);
[0045] Figure 19 In the embodiment, the 90-degree meeting of the fan pages is shown (including the soundproof trim, the specific trim model, the specific profile model (21) fixed on one fan page to allow the installation of brushes and trims on the other fan blade for soundproofing);
[0046] Figure 20 In the embodiment, two upper planes are shown (including the brush seal with felt, the sub-frame with a mass of 5 mm, the soundproof trim, the specific profile model, and the specific upper adjustment model);
[0047] Figure 21 In the embodiment, two lower planes are shown (including the seal with a felt brush, the sub-frame with a mass of 5 mm, the soundproof trim, the specific profile model, and the specific track and track support model).
[0048] Figure 22 In the embodiment, the profile meeting is shown (including the adjustment of the profile meeting, such as the hand-held profile, the trim, and the felted brush);
[0049] Figure 23 In the embodiment, the upper / upper sliding adjustment is shown (including the upper profile with measurement adjustment, the felted brush, the soundproof and windproof device, the frame guide placed behind the frame, which allows soundproof sealing);
[0050] Figure 24 In the embodiment, the track and track support are shown (including the soundproof sealing strip on the pulley guide rail and the damping trim for the pulley guide rail, the track, and the track support, the soundproof brush) and (including the track drilling and drainage support);
[0051] Figure 25 In the embodiment, the lower application of the seal assembly is shown at the front; the lower application of the seal assembly (including the gasket and brush assembly, and the seal assembly (with a brush between the 45 / fan pages);
[0052] Figure 26 In the embodiment, the seal assembly (soundproof, windproof, and cleaning brush) is shown;
[0053] Figure 27 In the embodiment, the seal assembly (soundproof, windproof, and cleaning brush) is shown;
[0054] Figure 28 In the embodiment, the sealing assembly is shown in a front view; it includes a gasket and a brush assembly, and a sealing assembly (with a brush between the 45 / fan blades);
[0055] Figure 29 In the embodiment, the upper application of the sealing assembly is shown, including a gasket and a brush assembly, and a sealing assembly (45, with a brush between the fan blades);
[0056] Figure 30 In the embodiment, an expanded three-plane sliding assembly (expanded three-plane sliding assembly) is shown;
[0057] Figure 31 In the embodiment, a sliding door with three planes and three fan blades is shown, including an expanded three-plane sliding assembly;
[0058] Figure 32 In the embodiment, a sliding door with three planes and three fan blades is shown, including an expanded three-plane sliding assembly;
[0059] Figure 33 In the embodiment, a sliding door with three planes and three fan blades is shown, including an expanded three-plane sliding assembly;
[0060] Figure 34 In the embodiment, an expanded two-plane sliding assembly is shown, including an expanded two-plane sliding assembly;
[0061] Figure 35 In the embodiment, an expanded two-plane sliding assembly is shown, including an expanded two-plane sliding assembly;
[0062] Figure 36 In the embodiment, an expanded assembly with a centrally mounted fan blade support is shown, including an expanded assembly with a centrally mounted fan blade support;
[0063] Figure 37 In the embodiment, an expanded assembly with a ninety-degree fan blade support is shown, including a ninety-degree fan blade support;
[0064] Figure 38 In the embodiment, an expanded assembly of a sliding door with two planes and four fan blades is shown, including an expanded assembly of a sliding door with two planes;
[0065] Figure 39 In the embodiment, an expanded fixed-plane assembly is shown, including an expanded assembly;
[0066] Figure 40 In the embodiment, an expanded fixed-plane assembly is shown, including an expanded assembly;
[0067] Figure 41 In the embodiment, an expanded maximum air window assembly is shown, which includes an expanded maximum air assembly;
[0068] Figure 42 In the embodiment, an expanded maximum air window assembly is shown, which includes an expanded maximum air assembly;
[0069] Figure 43 In the embodiment, an expanded pivot fan blade assembly is shown, which includes an expanded pivot fan blade assembly;
[0070] Figure 44 In the embodiment, an expanded pivot fan blade assembly is shown, which includes an expanded pivot fan blade assembly;
[0071] Figure 45 In the embodiment, an expanded pivot fan blade assembly is shown, which includes an expanded pivot fan blade assembly;
[0072] Figure 46 In the embodiment, an expanded pivot fan blade assembly is shown, which includes an expanded pivot fan blade assembly;
[0073] Figure 47 In the embodiment, a decorative piece with a cutout to induce a compressed shape is shown, which includes a decorative piece with a cutout to induce a compressed shape;
[0074] Figure 48 In the embodiment, profiles (sub-frame, double-plane track, double-plane track support, pulley track finish, double-plane frame) are shown;
[0075] Figure 49 In the embodiment, profiles (edge trim, drip tray, frame guide, upper fan blade seal, insulation decorative strip, sliding fan blade / track support) are shown;
[0076] Figure 50 In the embodiment, profiles (drain trough, triple-plane track, drain trough extension) are shown;
[0077] Figure 51 The model in shows profiles (triple-plane frame, inter-fan blade seal, corner joint cover, central seal cover, central stop, corner joint);
[0078] Figure 52 The model in shows profiles (laminated decorative strip, half column, cross beam / column, corner piece, wedge, triple-plane track support);
[0079] Figure 53In the embodiments, profiles are shown: floor edge trim (30), adjusting angle plate (32), adjusting frame (33), edge trim (35), pivot frame (31), pivot support (34), drip tray (36);
[0080] Figure 54 In the embodiments, profiles are shown: pivot fan blade (37), laminated decorative strip (38), sheet decorative strip (40), insulation decorative strip (39), maximum air frame (41);
[0081] Figure 55 In the embodiments, the following profiles are shown: maximum air fan blade (42), sub-frame (44), drain trough cover (43), seal between fan blades (45), gasket (46)
[0082] Figure 56 In the embodiments, profiles are shown (with greater mass and corrugations for sound suppression) (rotating fan blade, laminated decorative strip component, insulation decorative strip, sheet decorative strip, maximum air frame); profiles (maximum air fan blade, drain trough cover, sub-frame, seal between fan blades, gasket); profiles (with greater mass and corrugations for sound suppression).
[0083] To supplement this specification for a better understanding of the features of the claims, this specification is accompanied by a set of drawings in the annex, which represent by way of example (although not restrictively) the following. BRIEF DESCRIPTION OF THE DRAWINGS
[0084] Referring to the drawings, the present disclosure shows a noise reduction system for frames, doors, windows and their profiles and installation components, wherein: Figure 1 A plan view, a side sectional view and a front view of the noise reduction system applied to a two-plane, four-fan sliding door are shown; Figure 2 A plan view, a side sectional view and a front view of the noise reduction system applied to a two-plane, two-fan sliding door are shown; Figure 3 A plan view, a side sectional view and a front view of the noise reduction system applied to a three-plane, three-fan sliding door are shown; Figure 4 A plan view, a side sectional view and a front view of the noise reduction system applied to a fixed window are shown; Figure 5 A plan view, a side sectional view and a front view of the noise reduction system applied to a maximum air window are shown; Figure 6 A plan view, a side sectional view and a front view of the noise reduction system in the horizontal direction applied to a maximum air / fixed window are shown horizontally; Figure 7Shows the plan view, side sectional view and front view of the noise reduction system applied to the maximum air / maximum air window; Figure 8 Shows the plan view, side sectional view and front view of the noise reduction system applied to the fixed / maximum air window, with the upper part fixed in the vertical direction; Figure 9 Shows the plan view, side sectional view and front view of the noise reduction system applied to the maximum air / fixed window, with the upper part fixed in the vertical direction; Figure 10 Shows the plan view, side sectional view and front view of the system applied to the glass or mirror in the pivot door; Figure 11 Shows the plan view, side sectional view and front view of the noise reduction system applied to the long pivot door (element 39); Figure 12 Shows the plan view, side sectional view and front view of the noise reduction system applied to the long pivot door (element 40) with acoustic wood in the center; Figure 13 Shows the plan view of the noise reduction system applied to the two-plane, four-leaf sliding door; Figure 14 Shows the plan view of the noise reduction system applied to the two-plane, ninety-degree corner sliding door; Figure 15 Shows the plan view of the noise reduction system applied to the two-plane, four-leaf sliding door; Figure 16 Shows the cross-sectional view of the noise reduction system applied to the double-sided plane (including the brush seal with felt, the sub-frame with larger mass, the decorative piece for sound insulation with a specific decorative piece model, and a specific profile model); Figure 17 Shows the plan view of the noise reduction system applied to the connection of the leaves (including the brush seal with felt, the acoustic decorative piece, a specific decorative piece model, a specific profile model, and a specific profile connection model); Figure 18 Shows the plan view of the noise reduction system applied to the connection of the half-leaf (including the brush seal with felt, the sound insulation decorative piece, a specific decorative piece model, and a specific profile model); Figure 19 Shows the cross-sectional view of the noise reduction system applied to the connection of the ninety-degree leaf (including the sound insulation decorative piece, a specific decorative piece model, a specific profile model, and (element 21) fixed on one leaf to allow the installation of brushes and decorative pieces on the other leaf for sound insulation); Figure 20 Shows the cross-sectional view of the noise reduction system applied to the two upper planes (including the seal with felt brush, the larger frame, the sound insulation decorative piece, a specific profile model, and a specific upper adjustment model); Figure 21 A cross-sectional view of a noise reduction system applied to two lower planes (including a seal with a felt brush, a larger frame, a soundproof decorative piece, a specific profile model, and a specific track and track support model) is shown; Figure 22 A plan view of a noise reduction system applied to the connection of profiles (including a hand-held profile connection adjuster, a decorative piece, and a brush with felt) is shown; Figure 23 A plan view of a noise reduction system applied to upper / upper sliding adjustment (including an upper profile with measurement adjustment, a brush with felt, a soundproof and windproof device, a frame guide placed after frame installation, capable of soundproof sealing) is shown; Figure 24 A cross-sectional view of a noise reduction system applied to a track and track support (including a soundproof sealing strip on a pulley guide rail and damping pads for the pulley guide rail, track, and track support, a soundproof brush) and (including track drilling and drainage supports) is shown; Figure 25 A plan view of a noise reduction system formed in various seal assemblies (soundproof, windproof, and cleaning brushes) is shown; Figure 26 A cross-sectional view of a noise reduction system formed in the upper application of a seal assembly is shown; Figure 27 A perspective view of a noise reduction system formed in the upper application of a seal assembly (including a gasket and a brush assembly, and a seal assembly "L" (element 45, with a brush between the fan blades); Figure 28 A cross-sectional view of a noise reduction system formed in the lower application of a seal assembly, which is used to seal and clean a track (element 45); Figure 29 A perspective view of a noise reduction system formed in the lower application of a seal assembly, which includes a gasket and a brush assembly and a seal assembly (element 45, with a brush between the fan blades); Figure 30 A plan view of a noise reduction system in an unfolded sliding assembly is shown, and the shown frame does not have a three-plane; Figure 31 A plan view of a noise reduction system in an unfolded three-plane sliding assembly is shown; Figure 32 A plan view of a noise reduction system in an unfolded three-plane sliding assembly is shown; Figure 33 A plan view of a noise reduction system in an unfolded three-plane sliding assembly is shown, and a drainage box is implemented; Figure 34 A plan view of a noise reduction system in an unfolded two-plane sliding assembly is shown; Figure 35 Shows a plan view of a noise reduction system in an unfolded bi - plane sliding assembly, and a drain box is implemented; Figure 36 Shows a plan view of a noise reduction system in an unfolded assembly with a centrally mounted fan blade; Figure 37 Shows a plan view of a noise reduction system formed in an unfolded assembly with a ninety - degree fan blade support; Figure 38 Shows a cross - sectional view of a noise reduction system formed in an unfolded bi - plane sliding assembly; Figure 39 Shows a cross - sectional view of a noise reduction system formed in an unfolded fixed - plane assembly; Figure 40 Shows a cross - sectional view of a noise reduction system formed in an unfolded fixed - plane assembly; Figure 41 Shows a plan view of a noise reduction system formed in an unfolded maximum - air assembly; Figure 42 Shows a cross - sectional view of a noise reduction system formed in an unfolded maximum - air assembly; Figure 43 Shows a plan view of a noise reduction system formed in an unfolded pivoting fan blade assembly in cross - section; Figure 44 Shows a plan view of a noise reduction system formed in an unfolded pivoting fan blade assembly in cross - section; Figure 45 Shows a cross - sectional view of a noise reduction system formed in an unfolded pivoting fan blade assembly; Figure 46 Shows a cross - sectional view of a noise reduction system formed in an unfolded pivoting fan blade assembly; Figure 47 Shows a cross - sectional view of a noise reduction system formed in a structured trim piece (GE) with a cutout to induce a compression shape; Figure 48 Shows a cross - sectional view of a noise reduction system formed in profiles and component elements, having the following parts: sub - frame (01), bi - plane track (02), bi - plane track support (03), pulley track (04), edging strip (05), bi - plane frame (06); Figure 49 Shows a cross - sectional view of a noise reduction system formed in profiles and component elements, having the following parts: decorative strip (07), drip tray (08), frame guide (09), upper fan blade seal (10), sliding fan blade (11), insulated decorative strip (12), track support (13); Figure 50Cross-sectional view of a noise reduction system formed in a profile and a component element, having the following parts: drain trough (14), triple-plane track (15), drain trough extension (16); Figure 51 Shows a cross-sectional view of a noise reduction system formed in a profile and a component element, having the following parts: triple-plane frame (17), inter-blade adjuster (18), inter-blade seal (19), central seal cover (20), corner joint (21); corner joint cover (22), central stop (23); Figure 52 Shows a cross-sectional view of a noise reduction system formed in a profile and a component element, having the following parts: laminated trim strip (24), half-column (25), crossbeam / column (26), gusset plate (27), wedge (28), triple-plane track support (29); Figure 53 Shows a cross-sectional view of a noise reduction system formed in a profile and a component element, having the following parts: floor edge strip (30), pivot frame (31), adjusting gusset plate (32), adjusting frame (33), edge strip support (34), edge strip (35), drip tray (36); Figure 54 Shows a cross-sectional view of a noise reduction system formed in a profile and a component element, having the following parts: pivot blade (37), laminated trim strip (38), insulating trim strip (39), sheet trim strip (40), maximum air frame (41); Figure 55 Shows a cross-sectional view of a noise reduction system formed in a profile and a component element, having the following parts: maximum air blade (42), drain trough cover (43), sub-frame (44), inter-blade seal (45), gasket (46); Figure 56 Shows a cross-sectional view of a noise reduction system formed in a profile having greater mass and corrugations for sound suppression. Detailed Description
[0085] According to the above-mentioned drawings, the present invention includes an assembly process and method based on a structural arrangement composed of component profile elements and fittings. The component profile elements and fittings are: sub-frame (01), double-plane track (02), double-plane track support (03), pulley track (04), edge trim (05), double-plane frame (06); edge trim (07), drip tray (08), frame guide (09), upper sash seal (10), sliding sash (11), insulation trim (12), track support (13); drain trough (14), triple-plane track (15), drain trough extension (16); triple-plane frame (17), sash gap adjuster (18), sash gap seal (19), central seal cover (20), corner joint (21); corner joint cover (22), central stop (23); laminated trim (24), half column (25), crossbeam / column (26), gusset plate (27), wedge (28), triple-plane track support (29); floor edge trim (30), pivot frame (31), adjusting gusset plate (32), adjusting frame (33), edge trim support (34), edge trim (35), drip tray (36); pivot sash (37), laminated trim (38), insulation trim (39), sheet trim (40), maximum air frame (41); maximum air sash (42), drain trough cover (43), sub-frame (44), sash gap seal (45) gasket / brush (CE), gasket (46); In the composition of the structural arrangement, a noise-reducing brush seal (D), a thickened sub-frame element (RA), and a structured decorative element for sound insulation (GE) are combined in an arrangement with profiles and profile junctions. Upper adjustment is performed through the frame guide element (09) at the opening of the double-plane frame (06), and the frame guide element (09) is flush-aligned in the opening to reduce the gap and position the plane;
[0086] In Mode 1 - Double-plane, Four-sash Sliding Door (JC)( Figure 1) In it, the combinations present are the brush seal element (D) with noise reduction and windproof felt, the thickened sub-frame element (RA), and the structured decorative element (GE) for sound insulation, which are combined in an arrangement with profile elements and profile junctions. By performing upper adjustment on the frame guide element (09) located in the opening of the double-plane frame element (06), the frame guide element (09) is flush-aligned in the opening to reduce the gap, and the plane is positioned such that the mode 1 - double-plane, four-leaf sliding door (JC) is constructed with sliding leaf profile elements (11) connected to the ends of each of its planes. Mode 1 is formed by the double-plane frame element (06) at the upper part. The double-plane frame elements (06) on the left and right sides of the working span (Z) form the left and right stops and connect the double-plane frame elements (06) forming the base. And a triple-plane track element (15) is positioned below. The triple-plane track element (15) is supported by the track support element (13), and the track support element (13) is supported on the drain trough element (14), having a drain trough extension element (16) for the wastewater outlet (SR); and the frame guide element (09) is placed behind the triple-plane frame element (17) or the double-plane frame element (06) for drilling the double-plane track support element (02) or the triple-plane track support (29) to drain water through the drain trough element (14), and the extension of the drain trough element (14) has the function of expanding collection; such that the gasket element (46) and the brush element (ID / IC) constitute a sealing brush set between the leaves for sealing;The frame guide element (09) in the opening of the bi-plane frame element (06) is flush-aligned in the opening to reduce the gap, and the positioning mode 1 - the plane of the bi-plane and four-leaf sliding door (JC) is formed internally by the glass element (I), fixed and sealed by the insulating trim gasket element (G), internally insulated by the brush trim element (IC / ID), and formed at the top by the sliding leaf profile element (11), the sliding leaf profile element (11) having a greater mass and corrugations for sound suppression and having an internal channel for the decorative element (G), and in the upper opening to which the frame guide element (09) is attached, there is assembled a top leaf seal trim element (10) side-sealed by the brush trim element (M). The mode 1 - the bi-plane, four-leaf sliding door (JC) is fixed to the sub-frame element (01) existing in the working opening (Z), the sub-frame element (01) being fixed to the bi-plane frame element (06) by transverse screws. The bi-plane frame element (06) has a channel, and the noise reduction brush element (D) is used for flush-sealing the working opening (Z), and then is fixed by screws in the frame guide element (09) in the opening of the bi-plane frame element (06). The frame guide element (09) is flush-aligned in the opening to reduce the gap and is positioned in the flat element of the door. The bi-plane, four-leaf sliding door (JC) is formed internally by the glass (I), the glass (I) being fixed and sealed by the insulating trim element (12) and the decorative element (G), internally insulated by the brush trim element (IC / ID), and formed at the top by the sliding leaf profile element (11), the sliding leaf profile element (11) having a greater mass and corrugations for sound suppression and having an internal channel for the decorative element (G), and in the upper opening to which the frame guide element (09) is attached, there is assembled an upper leaf seal trim element (10) side-sealed by the brush trim element (M). At the edge of the sliding leaf profile element (11), it is sealed by the brush trim element (N), the brush trim element (N) being assembled to the drip tray element (08) and assembled to the bi-plane frame element (06) and juxtaposed with the edging strip profile element (07), the edging strip profile element (07) having an internal sealing channel for the decorative element (G); between the elements of the mode 1 - the bi-plane, four-leaf sliding door (JC), the widened brush trim element (Q) together with the widened rubber seal element (R) also serves as a side seal for the elements of the frame guide element (09);Thus, at the lower part of the Mode 1 - double - plane, four - panel sliding door (JC), the base of the glass (I) is placed in the brush - seal strip element (IC / ID) sealed by the decorative element (G). This plane is supported by the sliding - panel element (11), which has an internal channel for the decorative element (G). And inside the base, it houses a socket element (S) attached by a screw element (S1) and a pulley element (SR), which slides on the pulley - track element (04). The two sides of the pulley - track element (04) are in contact - sealed by the decorative - strip brush element (V) and the noise - reduction brush element (D) assembled in the double - plane track element (02). The decorative - strip brush element (V) is assembled in the channel (U) of the sliding - panel profile element (11). The double - plane track element (02) is supported by the double - plane track support element (03) connected to the clip element (PX) and sealed by the decorative element (G), and is restricted by the sub - frame element (01) present in the working span (Z) and the edge - strip element (05); such that the Mode 1 - double - plane, four - panel sliding door (JC) is constructed as follows: at the end of each of its planes, it is formed by connecting the elements of the sliding - panel profile element (11). This combination is formed by the double - plane frame elements (06) on the left and right sides of the working span (Z) at the upper part, forming a left stop and a right stop and connecting the double - plane frame elements (06) that form the base; on the upper and lower sides of the sliding - panel profile element (11), a vertical sealing element (45) that is not visible inside and is screwed and joined with a gasket / brush element (CE) is used to seal the gap to prevent wind, dust, and sound from passing through, helping to reduce noise by compensating for the gaps in the upper and lower parts of the track, and giving the pulley - track element (04) greater durability when using the gasket / brush element (CE) during the cleaning of the upper or lower part of the double - plane track element (02) or the triple - plane track (15); considering the increase in the thickness (ME), mass, and corrugation (AB) of the profile due to the internal application of rubber (G) to prevent the entry, dissipation, and reverberation of wind, dust, and sound, thereby enhancing the effect of gap reduction; the thickness (ME) of the profile with a larger mass is increased for acoustic blocking as shown in; Figure 49 the sliding - panel element (11) in; Figure 54 the pivot - panel element (37) in; Figure 56 the type of profile with a larger mass for acoustic blocking shown in, the sliding - panel element (11), the half - column element (25), the pivot - panel element (37), the cross - bar / column element (26), the maximum - air - panel element (42); Figure 48 shows the sub - frame element (01) and the pulley - track element (04); Figure 51 shows the corner - joint element (21); Figure 52 shows the half - column element (25) and the cross - bar / column element (26); Figure 53shows a pivot frame element (31); Figure 54 shows a pivot blade element (37) and a maximum air frame element (41); Figure 55 shows a maximum air blade element (42) and a sub-frame element (44); Upper fixation is achieved by the separation between a frame guide element (09) and an upper blade seal element (10) applied in a three-plane frame element (17) and a two-plane frame element (6), achieving a minimum reduction of one tenth of a millimeter, which is still blocked by a noise reduction brush element (D). Therefore, when the fixation using a screwing process is implemented in two parts, the two-plane rail profile element (02) and the two-plane rail support element (03) are also divided into two different parts, which are combined with each other and insulated at the contact by a component element trim (G), which eliminates any remaining vibrations that would interfere with the glass reverberation. Through the separation process of the two-plane rail profile (02) and the two-plane rail support element (03) component elements, even the friction of the workpiece movement disappears, as Figure 30 and Figure 35As shown in the detailed description on page 24, during the separation of the double-plane track element (02) and the double-plane track support element (03), and during the connection between the maximum airframe profile element (41) and the maximum air fan blade element (42) and the sub-frame element (01); thus, the mode 1 - double-plane, four-blade sliding door (JC) is constructed such that at the end of each of its planes, it is formed by connecting the sliding fan blade profiles (11). The combination is formed by the double-plane frame element (06) at the upper part. The double-plane frames (06) on the left and right sides of the working opening (Z) form the left and right stops and connect the double-plane frame (06) forming the base. There is a triple-plane track (15) positioned below, and the triple-plane track (15) is supported by the track support (13), and the track support (13) is supported on the drain trough (14). There is a drain trough extension (16) for the wastewater outlet (SR); a device called a "helper" is used to converge the fan blades, and this device has a gasket for vertical adjustment as a distinguishing feature to compensate for any irregularities in the vertical line of the structural span into which the floor-to-ceiling window or door is inserted. The perfect applicability of the rubber gasket, which promotes a wide and uniform seal when pressed against the surface of the vertical frame due to the closing of the floor-to-ceiling window or door; also, component elements such as the laminated trim strip (38), the insulating trim strip (39), and the sheet trim strip (40) are used, which provide greater pressure to improve the sound insulation effect because they are screwed instead of simply installed, and simple installation will cause slack and new noises over time and use. The existing systems in the prior art used in doors focused on the pressurized trim strip with the unique possibility of increasing the rubber thickness. In addition to the structured decorative element (GE), it also configured a corner joint profile element (21), which moves with the fan blade and forms an element that is aesthetically symmetrical on both sides. The vertical profile element (11) is configured as a corner piece and is fixed to one of the fan blades, and this fan blade adapts to the other fan blade moving towards it. In addition to increasing the thickness, it also includes the structured decorative piece (GE);
[0087] Therefore, during Figure 2In it, Mode 2 - sliding door (JC2) with double planes and double fan leaves; fixed to the sub-frame (01) in the existing working opening (Z), where the sub-frame (01) is fixed to the double-plane frame (06) by screws, the double-plane frame (06) has noise-reducing brushes (D), and the noise-reducing brushes (D) are assembled in a channel flush with the working opening (Z) for sealing, then the frame guide element (09) is fixed in the existing opening of the double-plane frame (06) by screws, the frame guide element (09) is aligned to reduce the gap, and the plane of the double-plane, four-fan-leaf sliding door (JC) is positioned, including glass (I), and the glass (I) is fixed and sealed by the insulating trim strip (12) and the decorative piece (G), internally insulated by the brush trim strip (IC / ID), the sliding fan leaf profile (11) has a greater mass and corrugations for sound suppression, has an internal channel for the decorative piece (G), and the top fan leaf sealing trim strip (10) with side sealing by the brush trim strip (M) in the upper opening is assembled into the frame guide element (09), sealed by the brush trim strip (N) on the edge of the sliding fan leaf profile (11), the brush trim strip (N) is assembled into the drip tray device (08) and into the double-plane frame (06) and juxtaposed with the edge trim strip profile (07), and the edge trim strip profile (07) has an internal sealing channel for the decorative piece (G); there is a widened decorative strip brush (Q) between the double-plane, four-fan-leaf sliding door elements (JC), close to the widened sealing rubber (R), which also serves as side sealing for the frame guide element (09); thus in the central part of the double-plane, four-fan-leaf sliding door (JC), at the intersection of each plane and at the end of the stroke, there is a structured decorative element (GE), the structured decorative element is made of moldable structural rubber, actuates the latch (TR) under pressure, and the latch (TR) moves to lock on each plane of the Mode 2 - double-plane, double-fan-leaf sliding door (JC2); and when the two planes slide in the same direction, one plane can be connected to the other plane through the inter-fan adjustment device (18), the inter-fan adjustment device (18) is fixed at the vertical top by screws as a "helper piece" structure, hidden by the inter-fan sealing device (19), the inter-fan sealing device (19) is equipped with noise-reducing brushes (D) and fixed by screws and the central sealing cover (20), and more structured decorative elements (GE) are inserted into the inter-fan adjustment device (18), these structured decorative elements are made of moldable structural rubber, and the latch (TR) is actuated between them under pressure, so as to move the device (RT) at the end of the sliding fan leaf profile (11) of each unit in the door plane;Thus, at the lower part of the Mode 2 - double - plane, double - leaf sliding door (JC2), the base of the glass (I) is placed on a base (ID) sealed by a decorative piece (G) supported on the sliding leaf profile (11). The sliding leaf profile (11) has an internal channel for the decorative piece (G), which internally houses a socket (S) fixed by a screw (S1) and a pulley (SR). The pulley (SR) slides on a pulley track (04), and both sides of the pulley track (04) are in contact - sealed by a brush - type decorative strip (V) and a noise - reducing brush (D) assembled on a double - plane track (02). The brush - type decorative strip (V) is assembled in a channel (U) of the sliding leaf profile (11). The double - plane track (02) is supported on a double - plane track support (03) connected by a clip (PX) and sealed by a decorative piece (G), and is restricted by a sub - frame (01) present in the working span (Z) and a trim strip (05), and has a sealed channel for the decorative piece (G) inside; a vertical sealing element (45) coupled with a gasket / brush element (CE) is invisibly screwed inside on the upper and lower sides of the sliding leaf profile element (11) to seal the gap to prevent wind, dust, and sound from passing through, thereby helping to reduce noise by compensating for the gaps in the upper and lower parts of the track, and giving greater durability to the pulley track element (04) when cleaning the upper or lower part of the double - plane track element (02) and the triple - plane track (15) by using the gasket / brush element (CE); considering the increase in the thickness (ME), mass, and corrugation (AB) of the profile when rubber (G) is applied inside to prevent the entry, dissipation, and reverberation of wind, dust, and sound, thereby enhancing the effect of gap reduction; the thickness (ME) of the profile with a larger mass is increased for acoustic blocking as shown in; Figure 49 the sliding leaf element (11) in; Figure 54 the pivot leaf element (37) in; Figure 56 the type of profile with a larger mass for acoustic blocking as shown in, the sliding leaf element (11), the half - column element (25), the pivot leaf element (37), the crossbar / column element (26), the maximum - air leaf element (42); Figure 48 shows the sub - frame element (01) and the pulley track element (04); Figure 51 shows the corner joint element (21); Figure 52 shows the half - column element (25) and the crossbar / column element (26); Figure 53 shows the pivot frame element (31); Figure 54 shows the pivot leaf element (37) and the maximum - air frame element (41); Figure 55Shows the maximum air fan blade element (42) and the secondary frame element (44); upper fixation is achieved by separation between the frame guide element (09) and the upper fan blade seal element (10) applied in the triple-plane frame element (17) and the double-plane frame element (6), with a minimum reduction of one-tenth of a millimeter, which is still blocked by the noise reduction brush component element (D). Thus, when the fixation using the screwing process is implemented in two parts, the double-plane track profile element (02) and the double-plane track support element (03) are also divided into two different parts, which are combined with each other and insulated at the contact point by the component element trim (G), which eliminates any remaining vibrations that would interfere with the glass reverberation. Through the separation process of the double-plane track profile (02) and the double-plane track support element (03) assembly elements, even the friction of the workpiece movement disappears, as Figure 30 and Figure 35 as shown in the detailed description on page 24, during the separation process of the double-plane track element (02) and the double-plane track support element (03) and during the connection process between the maximum air frame profile element (41), the maximum air fan blade element (42) and the secondary frame element (01); a device called a "helper" is used to converge the fan blades, which is distinguished by having a gasket for vertical adjustment to compensate for any irregularities in the vertical line of the structural span into which the floor-to-ceiling window or door is inserted. The perfect applicability of the rubber gasket, which promotes a wide and uniform seal when pressed against the surface of the vertical frame due to the closing of the floor-to-ceiling window or door; component elements such as the laminated trim strip part (38), the insulated trim strip (39) and the sheet trim strip (40) are also used, which provide greater pressure to improve the sound insulation effect because they are screwed instead of simply installed, and simple installation will cause slack and new noises over time and use. The existing systems belonging to the prior art previously used in doors focused on the pressurized trim strip with the unique possibility of increasing the rubber thickness. In addition to the structured decorative element (GE), it also configured a corner joint profile element (21), which moves together with the fan blade and forms an element that is aesthetically symmetric on both sides. The vertical profile element (11) is configured as a corner piece and fixed to one of the fan blades, and the fan blade adapts to the other fan blade that moves towards it. In addition to increasing the thickness, it also includes the structured decorative piece (GE).
[0088] Therefore, in Mode 3 - triple-plane, triple-fan sliding door (PF3)( Figure 3) is fixed to a secondary frame (01) present in the working span (Z), where the secondary frame (01) is fixed to a triple - plane frame (17) by screws. The triple - plane frame (17) has noise - reducing brushes (D), and the noise - reducing brushes (D) are assembled in a channel flush with the existing working span (Z). Then, a frame guide element (09) is fixed in the opening of the triple - plane frame (17) with screws. The frame guide element (09) is aligned to reduce the gap, and the plane of the triple - plane, triple - leaf sliding door (PF3) is positioned. Inside, it is formed by glass (I), and the glass (I) is fixed and sealed by an insulating trim (12) and a decorative piece (G). Internal insulation is carried out through a brush trim (IC / ID), and at the top of the frame, it is formed by a sliding leaf profile (11). The sliding leaf profile (11) has a greater mass and corrugations for sound suppression and has an internal channel for the decorative piece (G). And an upper leaf sealing trim (10) with side sealing by a linear brush trim (M) in the upper opening is assembled into the frame guide element (09). It is sealed by a linear brush trim (N) on the edge of the profile (11). The brush trim (N) is assembled to a drip tray device (08) and juxtaposed with a capping profile (07). The capping profile (07) has an internal channel for the decorative piece (G) for sealing; between the double - plane, four - leaf sliding door elements (JC), a widened decorative strip brush (Q) together with a widened sealing rubber (R) also serves as side sealing of the frame guide element (09); it is positioned on the side of the working gap (Z); vertical sealing elements (45) with internal invisible gaskets / brush elements are screwed on the upper and lower sides of the sliding leaf profile element (11) to seal the gap to prevent wind, dust, and sound from passing through, thereby helping to reduce noise by compensating for the gaps in the upper and lower parts of the track. When cleaning the upper or lower part of the double - plane track element (02) and the triple - plane track (15) by using the gasket / brush element (CE), it gives greater durability to the pulley track element (04); considering the increase in the thickness (ME), mass, and corrugations (AB) of the profile in the case of internal application of rubber (G) to block the entry, dissipation, and reverberation of wind, dust, and sound, thereby enhancing the effect of gap reduction; the thickness (ME) of the profile with a greater mass is increased for acoustic blocking as shown in Figure 49 the sliding leaf element (11) in Figure 54 the pivoting leaf element (37) in Figure 56 the type of profile with a greater mass for acoustic blocking shown in, the sliding leaf element (11), the half - column element (25), the pivoting leaf element (37), the crossbar / column element (26), the maximum air leaf element (42); Figure 48 shows the secondary frame element (01) and the pulley track element (04); Figure 51 shows the corner joint element (21), Figure 52Shows the semi-column element (25) and the crossbar / column element (26); Figure 53 Shows the pivot frame element (31); Figure 54 Shows the pivot fan blade element (37) and the maximum air frame element (41); Figure 55 Shows the maximum air fan blade element (42) and the sub-frame element (44); Upper fixing is achieved by the separation between the frame guide element (09) and the upper fan blade sealing element (10) applied in the three-plane frame element (17) and the two-plane frame element (6), achieving a minimum reduction of one tenth of a millimeter, which is still blocked by the noise reduction brush element (D). Therefore, when the fixing using the screwing process is implemented in two parts, the two-plane track profile element (02) and the two-plane track support element (03) are also divided into two different parts, which are combined with each other and insulated at the contact point by the component element trim (G), which eliminates any remaining vibrations that would interfere with the glass reverberation. Through the separation process of the two-plane track profile (02) and the two-plane track support element (03) component elements, even the friction of the workpiece movement disappears, as Figure 30 and Figure 35As shown in the detailed description on page 24, during the separation of the double-plane track element (02) and the double-plane track support element (03), and during the connection between the maximum air frame profile element (41) and the maximum air fan blade element (42) and the sub-frame element (01); thus, at the lower part of the triple-plane, triple-blade sliding door (PF3), the base of the glass (I) is placed on a base (IC) sealed by a decorative piece (G) supported on the sliding fan blade profile (11). The sliding fan blade profile (11) has an internal channel for the decorative piece (G), which internally houses a socket (S) fixed by a screw (S1) and a pulley (SR). The pulley (SR) slides on a pulley track (04), and both sides of the pulley track (04) are in contact-sealed by a brush-type decorative strip (V) and a noise-reducing brush (D) assembled on the double-plane track (02). The brush-type decorative strip (V) is assembled in the channel (U) of the sliding fan blade profile (11). The double-plane track (02) is supported on a track support (13) and a drain gutter extension (16). The drain gutter extension (16) is connected by a clip (PX) and sealed by the decorative piece (G). A device called a "helper piece" is used to converge the fan blades, and this device is distinguished by having a gasket for vertical adjustment to compensate for any irregularities in the vertical line of the structural span into which the floor-to-ceiling window or door is inserted. The perfect applicability of the rubber decorative piece, which promotes a wide and uniform seal when pressed against the surface of the vertical frame due to the closing of the floor-to-ceiling window or door; also, component elements such as laminated decorative strip parts (38), insulating decorative strips (39), and sheet decorative strips (40) are used, which provide greater pressure to improve the sound insulation effect because they are screwed instead of simply installed. Simple installation can cause slack and new noises over time and use. Existing systems in the prior art used in doors focused on pressure-boosting decorative strips with the unique possibility of increasing the rubber thickness. In addition to the structured decorative element (GE), it also configured a corner joint profile element (21), which moves with the fan blade and forms an element that is aesthetically symmetrical on both sides. The vertical profile element (11) is configured as a corner piece and fixed to one of the fan blades, and the other fan blade to which it moves is adapted. In addition to increasing the thickness, it also includes a structured decorative piece (GE);
[0089] Therefore, in Mode 4 - two-by-two fixed fan blade - fixed fan blade window (JF)( Figure 4) The crossbeam column element (26) is located in the central part of the plane and is formed at the ends by half-column profiles (25) with laminated decorative strips (24); such that at the ends of each plane, the base of the glass plate (I) is fixed by an insulating decorative strip (12), internally insulated by a brush decorative strip (IC / ID), sealed by a decorative piece (G), supported on the half-column profile (25), which has an internal sealing channel for the decorative piece (G), a channel for assembling the noise-reducing brush (D), the noise-reducing brush (D) is assembled into the half-column profile (25) and contacts and seals with the working gap (Z), the half-column profile (25) is fixed to the sub-frame (01) and the edge trim (07) by screws, and the edge trim (07) has an internal sealing channel for the decorative piece (G), so that the two-by-two fixed sash window (JF) is constructed as: by connecting the upper half-column profile (25) with the left and right half-column profiles (25), and connecting the lower half-column profile (25) with the plane, the sub-frame (01) is flush inserted into the plane and close to the working gap (Z);
[0090] Therefore, in Mode 5 - Maximum Air Window (JMA) ( Figure 5 ) the sub-frame (01) is positioned flush with the working span (Z) at the ends, has a noise-reducing brush (D) for contact sealing and is restricted by the edge trim device (05), the edge trim device (05) has an internal sealing channel for the decorative piece (G), is juxtaposed with the maximum air frame (41), the maximum air frame (41) has a channel for assembling the drip tray device (36), and contacts and seals with the structured decorative piece (GE) for the maximum air sash profile (42), the maximum air sash profile (42) has a decorative piece (G) inside, so that at the ends of each plane, the base of the glass (I) fixed by the insulating decorative strip (12) is internally insulated by the brush decorative strip (IC / ID), and the brush decorative strip (IC / ID) has an internal sealing channel for the decorative piece (G); at the ends of the base, the maximum air frame (41) is fixed to the sub-frame (01) by screws and is thus restricted by the edge trim (05); thus the maximum air window (JMA) is constructed as: the upper connection of the profile with the maximum air sash profile (42) and the maximum air frame (41), the lower connection of the left and right and the maximum air sash profile (42) and the maximum air frame (41), the plane is flush inserted with the sub-frame (01) and close to the working gap (Z), has a noise-reducing brush (D) for contact sealing and is opened by actuating the latch (TR);
[0091] In Mode 6 - Maximum Air and Fixed Window (JMF) ( Figure 6) In it, the secondary frame (01) is positioned flush with the working span (Z) at the ends, has noise-reducing brushes (D) for contact sealing and screw fixation, the edge trim device (07) has an internal sealing channel for the decorative element (G), is juxtaposed with the maximum air frame (41), the maximum air frame (41) has a channel for assembling the drip tray device (36), and contact sealing for the structured decorative element (GE) of the maximum air fan blade profile (42), the maximum air fan blade profile (42) has a decorative element (G) inside, such that at the ends of each plane, the base of the glass (I) fixed by the insulating decorative strip (12) is internally insulated by the brush decorative strip (IC / ID), the brush decorative strip (IC / ID) has an internal sealing channel for the decorative element (G); at the ends of the base, the maximum air frame (41) is fixed to the secondary frame (01) by screws; thus in the central part of the plane, the maximum air fan blade profile (42) is juxtaposed with the maximum air frame (41) to be sealed with the structured decorative element (GE), and is juxtaposed with the half-column profile (25), the glass (I) is fixed by the insulating decorative strip (12) on both sides of the plane, such that the maximum air and fixed window (JMF) is configured as: connected at the upper part with the maximum air fan blade profile (42) and the maximum air frame (41), connected at the left, right and lower parts with the maximum air fan blade profile (42) and the maximum air frame (41), the plane is inserted flush with the secondary frame (01), and is close to the working opening (Z), has noise-reducing brushes (D) for contact sealing and is opened by actuating the latch (TR);
[0092] Therefore, in mode 7 - maximum air / maximum air window (JM2) ( Figure 7) In it, the secondary frame (01) is positioned flush with the working span (Z) at the ends, has noise-reducing brushes (D) for contact sealing and screw fixation, is limited by a capping strip device (07), the capping strip device (07) having an internal sealing channel for the decorative element (G), juxtaposed with the maximum air frame (41), the maximum air frame (41) having a channel for assembling the drip tray device (36), and contact sealing for the structured decorative element (GE) of the maximum air fan profile (42), the maximum air fan profile (42) having the decorative element (G) inside, such that at the ends of each plane, the base of the glass (I) fixed by the insulating decorative strip (12) is internally insulated by the brush decorative strip (IC / ID) sealed by the decorative element (G); at the ends of the base, the maximum air frame (41) is fixed to the secondary frame (01) by screws; thus in the central part of the plane, the maximum air fan profile (42) sealed by the structured decorative element (GE) is juxtaposed with the maximum air frame (41), the maximum air frame (41) is repeated in the opposite direction and juxtaposed with the half-column profile (25), the glass (I) is fixed by the insulating decorative strip (12) on both sides of the plane, such that the maximum air and fixed window (JM2) is constructed as: connected at the upper part with the maximum air fan profile (42) and the maximum air frame profile (41), connected at the left and right and lower parts with the maximum air fan profile (42) and the maximum air frame profile (41), the plane is inserted flush with the secondary frame (44), and has noise-reducing brushes (D) near the working span (Z) for contact sealing and is opened by driving the latch (TR) in two independent actuations, also at the ends;
[0093] Therefore, in mode 8 - fixed / maximum air window (JFM)( Figure 8) In it, the sub-frame (01) is positioned flush with the working span (Z) at the ends, has noise-reducing brushes (D) for contact sealing and screw fixation, the edge trim device (07) has an internal sealing channel for the decorative element (G), is juxtaposed with the half-column profile (25), such that at the ends of each plane, the base of the glass (I) fixed by the insulating decorative strip fitting (12) is internally insulated by the brush decorative strip (IC / ID) at the ends of the base, the half-column profile (25) is juxtaposed with the maximum air frame profile (41), the maximum air frame profile (41) has a channel for the drip tray device (36) with a structured decorative element (GE) and is juxtaposed with the maximum air fan blade profile (42), the maximum air fan blade profile (42) is in contact sealing through the decorative element (G), the decorative element (G) is fixed by the insulating decorative strip fitting (12) and contacts the maximum air frame profile (41) with the noise-reducing brush (D) through the structured decorative element (GE), when in contact with the working gap (Z), the sub-frame (01) is located therein and is opened by actuating the latch (TR); such that the fixed / maximum air window (JFM) is constructed as: connected to the maximum air fan blade profile (42) at the upper part, connected to the maximum air frame profile (41) at the left, right and lower parts, the plane is inserted flush with the sub-frame (01), and has a noise-reducing brush (D) near the working opening (Z) for contact sealing and is opened by actuating the latch (TR);
[0094] Therefore, in mode 9 - maximum air / fixed window (FMA)( Figure 9) In it, the secondary frame (01) is positioned flush with the working span (Z) at the ends, has noise-reducing brushes (D) for contact sealing and screw fixing, the edge strip device (07) has an internal sealing channel for the decorative element (G), is juxtaposed with the maximum air frame profile (41), and has a channel for the drip tray device (36) with a structured decorative element (GE), contacting the maximum air fan blade profile (42), such that at the ends of each plane, the base of the glass (I) fixed by the insulating decorative strip fitting (12) is internally insulated by the brush decorative strip (IC / ID) at the ends of the base, the half-column profile (25) is juxtaposed with the secondary frame (01) and with the maximum air fan blade profile (42), the maximum air fan blade profile (42) is contact-sealed by the decorative element (G), the decorative element (G) is fixed by the insulating decorative strip (12), which has noise-reducing brushes (D), when contacting the working span (Z), the secondary frame (01) is located therein and is opened by actuating the latch (TR), such that the maximum air / fixed window (FMA) is configured as: the upper part is connected with the maximum air frame profile (41) and the maximum air fan blade profile (42), the left, right and lower parts are connected with the half-column profile (25), the plane is inserted flush with the secondary frame (01), and has noise-reducing brushes (D) near the working span (Z) for contact sealing and is opened by actuating the latch (TR), the central part is composed of the maximum air fan blade profile (42) and the maximum air frame profile (41) connected by the structured decorative element (GE);
[0095] Thus, in mode 10 - long pivoting door (PGB) ( Figure 10)In it, on the front and back of the working gap (Z), the edge strip support profile (34) is fixed and assembled on the internal part by screws and plugs. The edge strip profile (35) hides the screws that pass through the back, the sub-frame (01), and also through the edge strip support profile (34) to fix the pivot frame profile (31). The pivot frame profile (31) is fixed by screws on the other side. The adjustment angle plate (32) is joined to the adjustment frame profile (33). The adjustment frame profile (33) is located on the front and is fixed by screws. Another edge strip support profile (34) is assembled internally, and the edge strip profile (35) hides another screw; such that the frame profile (31) has a structured trim (GE) assembled into the channel. The structured trim (GE) seals the fan profile (37) by contact. The fan profile (37) has a thickened trim (G) and a curved wall (RA) inside for acoustic retention. Fixed by screws in the outer groove (RE) of the fan profile (37), the laminated trim profile (38) is hidden by the corner joint cover device (22), thus forming a channel (CN). The glass (I) is inserted from the upper part to the lower part and is assembled into the groove of the fan profile (37), fixed by the laminated trim profile (38) and by screws hidden by the corner joint cover device (22). The fan profile (37) has a thickened trim (G) and a curved wall (RA) inside for acoustic retention. It is accommodated in the lower part by the structured trim (GE) and is close to the working span (Z) for contact sealing with the floor edge strip device (30);
[0096] Thus, in Mode 11 - Long-strip pivot door (PGD)( Figure 11)In it, on the front and back of the working span (Z), the edge strip support profile (34) is fixed and assembled on the internal part by screws and plugs. The edge strip profile (35) hides the screws that pass through the back, the secondary frame (01), and also through the edge strip support profile (34) to fix the pivot frame profile (31). The pivot frame profile (31) is fixed by screws on the other side. The adjustment angle plate (32) is connected to the adjustment frame profile (33). The adjustment frame profile (33) is located on the front and is fixed by screws. Another edge strip support profile (34) is assembled internally, and the edge strip profile (35) hides another screw; so that the frame profile (31) has a structured trim (GE) assembled into the channel. The structured trim (GE) seals the fan blade profile (37) by contact. The fan blade profile (37) has a thickened trim (G) and a curved wall (RA) inside for acoustic retention. It is fixed by screws in the external groove (RE) of the fan blade profile (37). The insulating trim profile (39) is hidden by the corner joint cover device (22) by screws, thus forming a channel (CN). The channel (CN) has internal insulation through the brush trim (IC). The glass (I) is inserted from the upper part to the lower part. It is internally insulated by the brush trim (IC) at the lower part, is assembled into the groove of the fan blade profile (37), is fixed by the insulating trim profile (39), and is fixed by the screws hidden by the corner joint cover device (22). The fan blade profile (37) has a thickened trim (G) and a curved wall (RA) inside for acoustic retention. It is accommodated in the lower part near the working span (Z) through the structured trim (GE) for contact sealing with the floor edge strip device (30);
[0097] Therefore, in Mode 12 - Long Strip Pivot Door (PGV)( Figure 14) In it, on the front and back of the working span (Z), the edging strip support profile (34) is fixed and assembled on the inner part by screws and plugs. The edging strip profile (35) hides the screws that pass through the back, the sub-frame (01), and also through the edging strip support profile (34) to fix the pivot frame profile (31). The pivot frame profile (31) is fixed by screws on the other side. The adjusting gusset plate (32) is joined to the adjusting frame profile (33). The adjusting frame profile (33) is located on the front and is fixed by screws. Another edging strip support profile (34) is assembled internally, and the edging strip profile (35) hides another screw; such that the frame profile (31) has a structured trim (GE) assembled into the channel. The structured trim (GE) seals the sash profile (37) by contact. The sash profile (37) has a thickened trim (G) and a curved wall (RA) inside for acoustic retention. Fixed by screws in the outer groove (RE) of the sash profile (37), the sheet trim profile (40) is hidden by the corner joint cover device (22) by screws to form a gap (W). Inserted into the sealing volume (V) from the upper part to the lower part, and assembled into the groove of the sash profile (37), fixed by the sheet trim profile (40) and by the screws hidden by the corner joint cover device (22). The sash profile (37) has a thickened trim (G) and a curved wall (RA) inside for acoustic retention. Accommodated in the lower part near the working gap (Z) by the structured trim (GE) for contact sealing with the floor edging strip device (30);
[0098] Therefore, in mode 13 - floor plan, a double - plane sliding door with 2 sashes ( Figure 13) In it, component elements such as a laminated decorative strip (38), an insulating decorative strip (39), and a panel decorative strip (40) are used. They provide greater pressure to improve the sound insulation effect because they are screwed instead of simply installed. Simple installation will cause slack and new noises over time and use. Implement a "helper piece" for the meeting of the fan blades. The seal device (19) between the fan blades has a noise-reducing brush (D) and is fixed by screws and a central seal cover (20). More structured decorative elements (GE) are inserted into the adjusting device (18) between the fan blades. These structured decorative elements are made of moldable structural rubber. They actuate a latch (TR) under pressure and move a device (RT) at the end of the sliding fan blade profile (11) of each unit accommodated in the door plane. It has a spacer for vertical adjustment as a difference to compensate for any irregularities in the vertical line of the structural span into which the floor-to-ceiling window or door is inserted. The perfect applicability of the rubber decorative piece, which promotes a wide and uniform seal when pressed against the surface of the vertical frame due to the closing of the floor-to-ceiling window or door; the existing systems in the prior art used in doors focused on pressure-boosting decorative strips with the unique possibility of increasing the rubber thickness. In addition to the structured decorative elements (GE), it also configures a corner joint profile element (21). This corner joint profile element moves with the fan blade and forms an element that is aesthetically symmetrical on both sides. The vertical profile element (11) is configured as a corner piece and is fixed to one of the fan blades, and the other fan blade to which it is adapted moves towards it. In addition to increasing the thickness, it also includes structured decorative pieces (GE).
[0099] Therefore, in Mode 14 - Double-pane sliding door with corners (PCC)( Figure 14 ) A vertical sealing element (45) coupled with a spacer / brush element (CE) is screwed to the invisible upper and lower sides inside the sliding fan blade profile element (11) to seal the gap to prevent wind, dust, and sound from passing through, thereby helping to reduce noise by compensating for the gaps in the upper and lower parts of the track, and giving greater durability to the pulley track element (04) when cleaning the upper or lower part of the double-pane track element (02) or the triple-pane track (15) by using the spacer / brush element (CE); considering the increase in the thickness (ME), quality, and corrugation (AB) of the profile when rubber (G) is applied inside to prevent the entry, dissipation, and reverberation of wind, dust, and sound, thereby enhancing the effect of gap reduction; the thickness (ME) of the profile with a larger mass is increased for acoustic blocking as shown in Figure 49 for the sliding fan blade element (11); Figure 54 for the pivot fan blade element (37) in Figure 56 the type of profile with a larger mass for acoustic blocking shown in, the sliding fan blade element (11), the half-column element (25), the pivot fan blade element (37), the crossbar / column element (26), the maximum air fan blade element (42);Figure 48 The sub-frame element (01) and the pulley track element (04) are shown; Figure 51 The corner joint element (21) is shown, Figure 52 The half-column element (25) and the crossbar / column element (26) are shown; Figure 53 The pivot frame element (31) is shown; Figure 54 The pivot fan blade element (37) and the maximum air frame element (41) are shown; Figure 55 The maximum air fan blade element (42) and the sub-frame element (44) are shown; Upper fixing is achieved by the separation between the frame guide element (09) and the upper fan seal element (10) applied in the three-plane frame element (17) and the two-plane frame element (6), with a minimum reduction of one tenth of a millimeter, which is still blocked by the noise reduction brush component element (D). Therefore, when the fixing using the screwing process is implemented in two parts, the two-plane track profile element (02) and the two-plane track support element (03) are also divided into two different parts, which are combined with each other and insulated at the contact by the component element gasket (G), which eliminates any remaining vibration that would interfere with the glass reverberation. Through the separation process of the two-plane track profile (02) and the two-plane track support element (03) assembly elements, even the friction of the workpiece movement disappears, as Figure 30 and Figure 35As shown in the detailed description on page 24, during the separation of the double-plane track element (02) and the double-plane track support element (03) and during the connection between the maximum air frame profile element (41) and the maximum air fan blade element (42) and the sub-frame element (01); thus, the cornered double-plane sliding door (PCC) is constructed such that at the end of each of its planes, the sliding fan blade profile (11) is connected, and this combination is formed by the double-plane frame (06) at the upper part. The double-plane frames (06) on the left and right sides of the working span (Z) form the left stop and the right stop and connect the double-plane frame (06) forming the base. There is a triple-plane track (15) positioned below, and the triple-plane track (15) is supported by the track support (13), and the track support (13) is supported on the drainage trough (14). There is a drainage trough extension (16) for the wastewater outlet (SR); a device called a "helper" is used to converge the fan blades, and this device has a shim for vertical adjustment as a distinction to compensate for any irregularities in the vertical line of the structural span into which the floor-to-ceiling window or door is inserted. The perfect applicability of the rubber trim, which promotes a wide and uniform seal when pressed against the surface of the vertical frame due to the closing of the floor-to-ceiling window or door; also, component elements such as the laminated trim strip (38), the insulating trim strip (39), and the sheet trim strip (40) are used, which provide greater pressure to improve the sound insulation effect because they are screwed instead of simply installed, and simple installation will cause slack and new noises over time and use. Existing systems in the prior art used in doors focused on pressure-boosting trim strips with the unique possibility of increasing the rubber thickness. In addition to the structured decorative element (GE), it also configured a corner joint profile element (21), which moves with the fan blade and forms an element that is aesthetically symmetric on both sides. The vertical profile element (11) is configured as a corner piece and is fixed to one of the fan blades, and the fan blade is adapted to move towards the other fan blade.In addition to increasing the thickness and including a structured decorative element (GE), there are structured decorative elements (GE) at the central part of the intersection of each plane and at the ends of the stroke. The structured decorative elements are made of moldable structural rubber and actuate a latch (TR) under pressure. The latch moves to lock in each plane. And when the two planes are slid in the same direction, one plane can be connected to the other plane by an inter-leaf adjustment device (18). The inter-leaf adjustment device (18) is arranged in a "helper piece" configuration, fixed to the vertical top by screws, hidden by an inter-leaf seal device (19). The inter-leaf seal device (19) has a noise-reducing brush (D) and is fixed by screws and a central seal cover (20). More structured decorative elements (GE) are inserted into the inter-leaf adjustment device (18). These structured decorative elements are made of moldable structural rubber and actuate the latch (TR) between them under pressure, thus moving a device (RT) at the end of the sliding leaf profile (11) of each unit housed in the door plane. It has a final track on one side of the double-plane frame (06) through contact with the structured decorative element (GE). On the other hand, its final track on the other side occurs through contact with the structured decorative element (GE) in the corner joint profile (21). The corner joint profile (21) is fixed to the other side of the sliding leaf profile (11) by screws. In this way, the sealing of noise and dust is achieved by relying on the inter-leaf seal device (45) and the gasket / brush (CE). The device has a channel for internally assembling a brush decorative strip (IC) for insulation and sealing.
Claims
1. A noise reduction system for frames, doors, windows, their profiles and mounting components, aiming to develop a structural arrangement belonging to the technical industrial field of optical fibers and their components and mounting fittings, characterized in that, The form of the structural arrangement is based on the combination of profile elements, components and fittings, and parts, and has a secondary frame (01), a double-plane track (02), a double-plane track support (03), a pulley track (04), a capping strip (05), a double-plane frame (06); a capping strip (07), a drip tray (08), a frame guide (09), an upper sash seal (10), a sliding sash (11), an insulating trim (12), a track support (13); a drain trough (14), a triple-plane track (15), a drain trough extension (16); a triple-plane frame (17), an inter-sash adjuster (18), an inter-sash seal (19), a central seal cover (20), a corner joint (21); a corner joint cover (22), a central stop (23); a laminated trim (24), a half-column (25), a crossbeam / column (26), a gusset plate (27), a wedge (28), a triple-plane track support (29); a floor capping strip (30), a pivot frame (31), an adjusting gusset plate (32), an adjusting frame (33), a capping strip support (34), a capping strip (35), a drip tray (36); a pivot sash (37), a laminated trim (38), an insulating trim (39), a sheet trim (40), a maximum air frame (41); a maximum air sash (42), a drain trough cover (43), a secondary frame (44), an inter-sash seal (45), a gasket (46). In the composition of the structural arrangement, a noise-reducing brush seal (D), a thickened secondary frame (RA), and a structured trim for sound insulation (GE) are combined in an arrangement with profiles and profile junctions. Upper adjustment is carried out by relying on the frame guide (09) located in the opening of the double-plane frame (06), and the frame guide (09) is flush-aligned in this opening to reduce the gap and position the plane.
2. A noise reduction system for frames, doors, windows, their profiles and installation components, aiming to develop a structural arrangement belonging to the technical industrial field of optical fibers and their components and installation fittings, characterized in that, Mode 1 - Double-pane, four-leaf sliding door (JC), with the combinations of noise-reducing brush seal (D), thickened secondary frame element (RA), and structured decorative element for sound insulation (GE), which are combined in an arrangement with profile elements and profile junctions, adjusted at the top by means of frame guides (09) located in the openings of the double-pane frame (06), the frame guides (09) being flush-aligned in the openings to reduce gaps, and the planes being positioned such that the Mode 1 - Double-pane, four-leaf sliding door (JC) is constructed with sliding leaf profile elements (11) connected at the ends of each of its planes. Mode 1 is formed at the top by double-pane frame elements (06), and the double-pane frame elements (06) on the left and right sides of the working span (Z) form the left and right stops and connect the double-pane frame elements (06) forming the base, and a triple-pane track element (15) is positioned below, supported by a track support element (13), the track support element (13) being supported on a drain channel element (14), with a drain channel extension element (16) for the waste water outlet (SR); and the frame guides (09) are placed behind the triple-pane frame element (17) or the double-pane frame element (06) for drilling the double-pane track support element (02) or the triple-pane track support (29) for draining through the drain channel element (14), the extension of the drain channel element (14) having the function of expanding collection; such that the gasket element (46) and the brush element (ID / IC) form a sealing brush set between the leaves for sealing;The frame guide element (09) in the opening of the bi-plane frame element (06) is flush-aligned in the opening to reduce the gap, and the positioning mode 1 - the plane of the bi-plane and four-leaf sliding door (JC) is formed internally by the glass element (I), the glass element (I) is fixed and sealed by the insulating trim element (12) and the decorative element (G), internally insulated with the brush trim element (IC / ID), and formed at the top by the sliding leaf profile element (11), the sliding leaf profile element (11) has a greater mass and corrugations for sound suppression and has an internal channel for the decorative element (G), and in the upper opening to which the frame guide (09) is attached, there is assembled a top leaf sealing trim element (10) side-sealed by the brush trim element (M), the mode 1 - bi-plane, four-leaf sliding door (JC) is attached to the sub-frame element (01) present in the working span (Z), the sub-frame element (01) is attached to the bi-plane frame element (06) by means of transverse screws, the bi-plane frame element (06) has a noise reduction brush element (D) in the channel for flush-sealing the working span (Z), and then it is fixed by screws in the frame guide (09) in the opening of the bi-plane frame element (06), the frame guide (09) is flush-aligned in the opening to reduce the gap and positioned in the plane element of the door, the bi-plane, four-leaf sliding door (JC) is formed internally by the glass (I), the glass (I) is fixed and sealed by the insulating trim element (12) and the decorative element (G), internally insulated with the brush trim element (IC / ID), and formed at the top by the sliding leaf profile element (11), the sliding leaf profile element (11) has a greater mass and corrugations for sound suppression and has an internal channel for the decorative element (G), and in the upper opening to which the frame guide (09) is attached, there is assembled a top leaf sealing trim element (10) side-sealed by the brush trim element (M), sealed at the edge of the sliding leaf profile element (11) by the brush trim element (N), the brush trim element (N) is assembled to the drip tray element (08) and assembled to the bi-plane frame element (06) and juxtaposed with the edging strip profile element (07), the edging strip profile element (07) has an internal sealing channel for the decorative element (G); Elements present in the Mode 1 - Double - plane, Four - leaf Sliding Door (JC). The widened decorative strip brush element (Q) together with the widened rubber seal element (R) also serves as a side seal for the elements of the frame guide (09). Thus, at the lower part of the Mode 1 - Double - plane, Four - leaf Sliding Door (JC), the base of the glass (I) is placed in the brush decorative strip element (IC / ID) sealed by the decorative element (G). This plane is supported by the sliding leaf profile element (11), which has an internal channel for the decorative element (G), and inside the base accommodates the socket element (S) attached by the screw element (S1) and the pulley element (SR). The pulley element (SR) slides on the pulley track element (04), and both sides of the pulley track element (04) are in contact - sealed by the decorative strip brush element (V) and the noise - reducing brush element (D) assembled in the double - plane track element (02). The decorative strip brush element (V) is assembled in the channel (U) of the sliding leaf profile element (11). The double - plane track element (02) is supported by the double - plane track support element (03) connected to the clip element (PX) and sealed by the decorative element (G), and is limited by the sub - frame element (01) present in the working span (Z) and the edge - strip element (05). The Mode 1 - Double - plane, Four - leaf Sliding Door (JC) is constructed such that at the end of each of its planes, it is formed by connecting the elements of the sliding leaf profile (11). This combination is formed at the upper part by the double - plane frame elements (06) on the left and right sides of the working span (Z). The double - plane frame elements (06) form the left and right stops and connect the double - plane frame (06) that forms the base. The vertical seal element (45) is screwed to the invisible upper and lower sides inside the sliding leaf profile element (11) to seal the gaps to prevent wind, dust, and sound from passing through, thus helping to reduce noise by compensating for the gaps in the upper and lower parts of the track and giving the pulley track element (04) greater durability when cleaning the upper or lower part of the double - plane track element (02), the three - plane track (15) using the gasket brush element (CE). Considering the increase in the thickness (ME), mass, and corrugation (AB) of the profile with the internal application of rubber (G) to prevent the entry, dissipation, and reverberation of wind, dust, and sound, thus enhancing the effect of gap reduction. The thickness (ME) of the profile with a larger mass is increased for acoustic blocking as shown in the sliding leaf element (11) in Figure 49; the pivoting leaf element (37) in Figure 54, the type of profile with a larger mass for acoustic blocking shown in Figure 56, the sliding leaf element (11), the half - column element (25), the pivoting leaf element (37), the cross - bar / column element (26), the maximum air leaf element (42); Figure 48 shows the sub - frame element (01) and the pulley track element (04); Figure 51 shows the corner joint element (21), and Figure 52 shows the half - column element (25) and the cross - bar / column element (26);Figure 53 shows the pivot frame element (31); Figure 54 shows the pivot blade element (37) and the maximum air frame element (41); Figure 55 shows the maximum air blade element (42) and the secondary frame element (44); The upper fixing is carried out by the separation between the frame guide (09) and the upper blade seal element (10) applied in the three-plane frame element (17) and the two-plane frame element (6), resulting in a minimum reduction of one tenth of a millimeter, which is still blocked by the noise reduction brush component element (D). Therefore, when the fixing using the screwing process is implemented in two parts, the two-plane track profile element (02) and the two-plane track support element (03) are also divided into two different parts, which are combined with each other and insulated at the contact point by the component element trim (G), which eliminates any remaining vibrations that would interfere with the glass reverberation. Through the separation process of the two-plane track profile (02) and the two-plane track support element (03) assembly element, even the friction of the workpiece movement disappears, as shown in Figures 30 and 35 and the detailed description on page 24, during the separation process of the two-plane track element (02) and the two-plane track support element (03) and during the connection process between the maximum air frame profile element (41) and the maximum air blade element (42) and the secondary frame element (01); Therefore, the mode 1 - two-plane, four-blade sliding door (JC) is constructed as follows: It is formed at the end of each of its planes by connecting the sliding blade profiles (11), and this combination is formed by the two-plane frame element (06) at the upper part. The two-plane frames (06) on the left and right sides of the working span (Z) form the left stop and the right stop and connect the two-plane frame (06) forming the base. There is a three-plane track (15) positioned below, and the three-plane track (15) is supported by the track support (13), and the track support (13) is supported on the drain trough (14). There is a drain trough extension (16) for the wastewater outlet (SR); A device called a "helper" is used to converge the blades, and this device has a gasket for vertical adjustment as a distinction to compensate for any irregularities in the vertical line of the structural span into which the floor-to-ceiling window or window is inserted; The perfect applicability of the rubber gasket, which promotes a wide and uniform seal when pressed against the surface of the vertical frame due to the closing of the floor-to-ceiling window or door; Component elements such as the laminated trim strip (38), the insulated trim strip (39), and the sheet trim strip (40) are also used, and they provide greater pressure to improve the sound insulation effect because they are screwed instead of simply installed. Simple installation will cause slack and new noises over time and with use; The existing systems in the prior art used in doors focused on the pressurized trim strip with the unique possibility of increasing the rubber thickness. In addition to the structured gasket element (GE), it also configured the corner joint profile element (21), which moves with the blade and forms an element that is aesthetically symmetric on both sides;The vertical profile element (11) is configured as a corner piece and is fixed to one of the sashes, which sash is adapted to move towards the other sash; it also includes a structured gasket (GE), in addition to an increased thickness.
3. A noise reduction system for frames, doors, windows, their profiles and mounting parts, aiming to develop a structural arrangement belonging to the technical industrial field of optical fibers and their components and mounting fittings, characterized in that Mode 2 - Double - plane, double - leaf sliding door (JC2); fixed to a secondary frame (01) present in the working span (Z), where the secondary frame (01) is fixed to the double - plane frame (06) by screws. The double - plane frame (06) has noise - reducing brushes (D), and the noise - reducing brushes (D) are assembled in a channel flush with the working span (Z) for sealing. Then, a frame guide device (09) is fixed in an existing opening of the double - plane frame (06). The frame guide device (09) is aligned to reduce the gap, and the plane of the double - plane, four - leaf sliding door (JC) is positioned, including glass (I). The glass (I) is fixed and sealed by an insulating trim strip (12) and a decorative piece (G), internally insulated by a brush trim strip (IC / ID). The sliding leaf profile (11) has a greater mass and corrugations for sound suppression and has an internal channel for the decorative piece (G). And a top - leaf sealing trim strip (10) side - sealed by a brush trim strip (M) in the upper opening is assembled into the frame guide device (09). It is sealed by a brush trim strip (N) on the edge of the sliding leaf profile (11). The brush trim strip (N) is assembled into a drip - tray device (08), into the double - plane frame (06), and juxtaposed with a capping strip profile (07). The capping strip profile (07) has an internal sealing channel for the decorative piece (G); there is a widened decorative strip brush (Q) between the double - plane, four - leaf sliding door elements (JC), close to a widened sealing rubber (R), which also serves as a side seal for the frame guide device (09); thus, in the central part of the double - plane, four - leaf sliding door (JC), at the intersection of each plane and at the end of the travel, there is a structured decorative element (GE). The structured decorative element is made of a moldable structural rubber, actuating a latch (TR) under pressure. The latch (TR) moves to lock in each plane of the mode 2 - double - plane, double - leaf sliding door (JC2); and when the two planes slide in the same direction, one plane can be connected to the other plane through an inter - leaf adjuster (18). The inter - leaf adjuster device (18) is arranged as a "helper" structure and fixed to the vertical top by screws, hidden by an inter - leaf seal device (19). The inter - leaf seal device (19) has noise - reducing brushes (D) and is fixed by screws and a central seal cover (20). More structured decorative elements (GE) are inserted into the inter - leaf adjuster device (18). These structured decorative elements are made of a moldable structural rubber, and between them, a latch (TR) is actuated under pressure to move a device (RT) accommodated at the end of the sliding leaf profile (11) of each unit in the door plane;Thus, at the lower part of the Mode 2 - double - plane, double - leaf sliding door (JC2), the base of the glass (I) is placed on a base (ID) sealed by a decorative piece (G) supported on the sliding - leaf profile (11). The sliding - leaf profile (11) has an internal channel for the decorative piece (G), which internally houses a socket (S) fixed by a screw (S1) and a pulley (SR). The pulley (SR) slides on a pulley track (04), and both sides of the pulley track (04) are in contact - sealed by a brush - type decorative strip (V) and a noise - reducing brush (D) assembled on the double - plane track (02). The brush - type decorative strip (V) is assembled in the channel (U) of the sliding - leaf profile (11). The double - plane track (02) is supported on a double - plane track support (03) connected by a clip (PX) and sealed by a decorative piece (G), and is restricted by a sub - frame (01) present in the working span (Z) and the edge strip (05), which has a sealed channel for the decorative piece (G) inside; A vertical sealing element (45) coupled with a gasket / brush element (CE) is screwed to the invisible upper and lower sides inside the sliding - leaf profile element (11) to seal the gap to prevent wind, dust, and sound from passing through, thereby helping to reduce noise by compensating for the gaps in the upper and lower parts of the track; It gives greater durability to the pulley track element (04) when cleaning the upper or lower part of the double - plane track element (02) and the triple - plane track (15) by using the gasket / brush element (CE); Considering the increase in the thickness (ME), mass, and corrugation (AB) of the profile when rubber (G) is applied internally to prevent the entry, dissipation, and reverberation of wind, dust, and sound, thereby enhancing the effect of gap reduction; The thickness (ME) of the profile with a larger mass is increased for acoustic blocking as shown in the sliding - leaf element (11) in Figure 49; The pivoting - leaf element (37) in Figure 54, the type of profile with a larger mass for acoustic blocking shown in Figure 56, the sliding - leaf element (11), the half - column element (25), the pivoting - leaf element (37), the cross - bar / column element (26), the maximum - air leaf element (42); Figure 48 shows the sub - frame element (01) and the pulley track element (04); Figure 51 shows the corner - joint element (21), Figure 52 shows the half - column element (25) and the cross - bar / column element (26); Figure 53 shows the pivoting - frame element (31); Figure 54 shows the pivoting - leaf element (37) and the maximum - air frame element (41); Figure 55 shows the maximum - air leaf element (42) and the sub - frame element (44);Upper fixation is achieved through separation between the frame guides (09) and the upper sash seal elements (10) applied in the three-plane frame element (17) and the two-plane frame element (6), resulting in a minimum reduction of one-tenth of a millimeter, which is still blocked by the noise-reducing brush component element (D). Therefore, when the fixation using the screwing process is implemented in two parts, the two-plane track profile element (02) and the two-plane track support element (03) are also divided into two different parts, which are combined with each other and insulated at the contact point by the component element gasket (G), which eliminates any remaining vibrations that would interfere with the glass reverberation. Through the separation process of the two-plane track profile (02) and the two-plane track support element (03) assembly elements, even the friction of the workpiece movement disappears, as shown in Figures 30 and 35 and as detailed on page 24, during the separation process of the two-plane track element (02) and the two-plane track support element (03) and during the connection process between the maximum air frame profile element (41) and the maximum air sash element (42) and the sub-frame element (01); a device called a "helper piece" is used to converge the sashes, which has a gasket for vertical adjustment as a distinguishing feature to compensate for any irregularities in the vertical line of the structural span into which the floor-to-ceiling window or door is inserted. The perfect applicability of the rubber gasket, which promotes a wide and uniform seal when pressed against the surface of the vertical frame due to the closing of the floor-to-ceiling window or door; component elements such as laminated trim pieces (38), insulating trim (39), and sheet trim (40) are also used, which provide greater pressure to improve the sound insulation effect because they are screwed instead of simply installed, and simple installation will cause slack and new noises over time and use; a press fit with the unique possibility of increasing the rubber thickness, which, in addition to the structured decorative element (GE), is also configured with a corner joint profile element (21), which moves with the sash and forms an element that is aesthetically symmetric on both sides; the vertical profile element (11) is configured as a corner piece and fixed to one of the sashes, and the sash adapts to the other sash that moves towards it, in addition to increasing the thickness and including the structured decorative piece (GE).; 4. A noise reduction system for frames, doors, windows, their profiles and installation components, aiming to develop a structural arrangement belonging to the technical industrial field of optical fibers and their components and installation fittings, characterized in that, Mode 3 - Three - plane, three - leaf sliding door (PF3), fixed to a secondary frame (01) present in the working span (Z), where the secondary frame (01) is fixed to the three - plane frame (17) by screws. The three - plane frame (17) has noise - reducing brushes (D), and the noise - reducing brushes (D) are assembled in a channel flush with the existing working span (Z). Then, the frame guide device (09) is fixed in the opening of the three - plane frame (17). The frame guide element (09) is aligned to reduce the gap, and the plane of the three - plane, three - leaf sliding door (PF3) is positioned. It is formed internally by glass (I), and the glass (I) is fixed and sealed by insulating trim strips (12) and decorative elements (G). Internal insulation is carried out by brush trim strips (IC / ID), and at the top of the frame, the sliding leaf profile (11) with greater mass and corrugations is used to suppress sound and has an internal channel for the decorative element (G). And the top leaf seal trim (10) with side sealing by the linear brush trim (M) in the upper opening is assembled into the frame guide element (09). The edge of the profile (11) is sealed by the linear brush trim (N), and the brush trim condition (N) is assembled to the drip tray device (08) and juxtaposed with the edge trim profile (07). The edge trim profile (07) has an internal channel for the decorative element (G) for sealing; There is a widened decorative strip brush (Q) between the two - plane, four - leaf sliding door elements (JC), which, together with the widened sealing rubber (R), also serves as the side seal of the frame guide device (09); Positioned on the side of the existing working span (Z); The vertical sealing element (45) connected with the gasket / brush element (CE) is screwed to the invisible upper and lower sides inside the sliding leaf profile element (11) to seal the gap to prevent wind, dust, and sound from passing through, thereby helping to reduce noise by compensating for the gaps in the upper and lower parts of the track. It gives greater durability to the pulley track element (04) when cleaning the upper or lower parts of the two - plane track element (02) and the three - plane track (15) by using the gasket / brush element (CE); Considering the increase in the thickness (ME), mass, and corrugations (AB) of the profile in the case of internal application of rubber (G) to prevent the entry, dissipation, and reverberation of wind, dust, and sound, thereby enhancing the effect of gap reduction; The thickness (ME) of the profile with greater mass is increased for acoustic blocking as shown in the sliding leaf element (11) in Figure 49; The pivoting leaf element (37) in Figure 54, the type of profile with greater mass for acoustic blocking shown in Figure 56, the sliding leaf element (11), the half - column element (25), the pivoting leaf element (37), the crossbar / column element (26), the maximum air leaf element (42); Figure 48 shows the secondary frame element (01) and the pulley track element (04); Figure 51 shows the corner joint element (21), Figure 52 shows the half - column element (25) and the crossbar / column element (26); Figure 53 shows the pivoting frame element (31);Figure 54 shows the pivot blade element (37) and the maximum air frame element (41); Figure 55 shows the maximum air blade element (42) and the sub-frame element (44); upper fixation is achieved through the separation between the frame guide element (09) and the upper blade seal element (10) applied in the triple-plane frame element (17) and the double-plane frame element (6), resulting in a minimum reduction of one tenth of a millimeter, which is still blocked by the noise reduction brush component element (D). Therefore, when the fixation using the screwing process is implemented in two parts, the double-plane track profile element (02) and the double-plane track support element (03) are also divided into two different parts, which are combined with each other and insulated at the contact point by the component element gasket (G), which eliminates any remaining vibration that would interfere with the glass reverberation. Through the separation process of the double-plane track profile (02) and the double-plane track support element (03) assembly elements, even the friction of the workpiece movement disappears, as shown in Figures 30 and 35 and detailed on page 24, during the separation process of the double-plane track element (02) and the double-plane track support element (03) and during the connection process between the maximum air frame profile element (41) and the maximum air blade element (42) and the sub-frame element (01); thus, at the lower part of the triple-plane, triple-blade sliding door (PF3), the base of the glass (I) is placed on the base (IC) sealed by the decorative piece (G) supported on the sliding blade profile (11). The sliding blade profile (11) has an internal channel for the decorative piece (G), which internally houses the socket (S) fixed by the screw (S1) and houses the pulley (SR), and the pulley (SR) slides on the pulley track (04). Both sides of the pulley track (04) are in contact-sealed by the brush-type decorative strip (V) and the noise reduction brush (D) assembled on the double-plane track (02). The brush-type decorative strip (V) is assembled in the channel (U) of the sliding blade profile (11). The double-plane track (02) is supported on the track support (13) and the drain trough extension (16). The drain trough extension (16) is connected by the clip (PX) and sealed by the decorative piece (G). A device called the "helper piece" is used to converge the blades, which has a gasket for vertical adjustment as a distinction to compensate for any irregularities in the vertical line of the structural span into which the floor-to-ceiling window or door is inserted; the perfect applicability of the rubber gasket, which promotes a wide and uniform seal when pressed against the surface of the vertical frame due to the closing of the floor-to-ceiling window or door; component elements such as the laminated decorative strip (38), the insulated decorative strip (39), and the sheet decorative strip (40) are also used, which provide greater pressure to improve the sound insulation effect because they are screwed instead of simply installed. Simple installation will cause slack and new noises over time and use; in addition to the structured gasket element (GE), it also configures the corner joint profile element (21), which moves with the blade and forms an element that is aesthetically symmetrical on both sides;The vertical profile element (11) is configured as a corner piece and is fixed to one of the sashes, which sash is adapted to move towards the other sash, apart from increasing the thickness and including a structured gasket (GE).
5. A noise reduction system for frames, doors, windows, their profiles, and installation components, aiming to develop a structural arrangement belonging to the technical industrial field of optical fibers and their components and installation fittings, characterized in that, Mode 4 - Two-by-two fixed sash - Fixed sash type window (JF), the crossbeam column element (26) is positioned in the central part of the plane and is formed at the ends by the half-column profile (25) and the laminated trim (24); such that at the ends of each plane, the base of the glass plate (I) is fixed by the insulating trim (12) and internally insulated by the brush trim (IC / ID) sealed by the trim (G). The insulating trim (12) is supported on the half-column profile (25), has an internal sealing channel for the trim (G), has a channel for assembling the noise-reducing brush (D), and the noise-reducing brush (D) is assembled into the half-column profile (25) and contacts and seals with the working span (Z). The half-column profile (25) is fixed to the secondary frame (01) and the capping strip (07) by screws. The capping strip (07) has an internal sealing channel for the trim (G), such that the two-by-two fixed sash window (JF) is constructed to be connected to the left and right half-column profiles (25) through the upper connection of the half-column profile (25), and through the lower connection of the half-column profile (25), the plane is flush-inserted with the secondary frame (01) and close to the working span (Z).
6. A noise reduction system for frames, doors, windows, their profiles, and installation components, aiming to develop a structural arrangement belonging to the technical industrial field of optical fibers and their components and installation fittings, characterized in that Mode 5 - Maximum air window (JMA), the secondary frame (01) is positioned flush with the working span (Z) at the ends, having noise-reducing brushes (D) for contact sealing and limited by the edging strip device (05), the edging strip device (05) having an internal sealing channel for the decorative piece (G), juxtaposed with the maximum air frame (41), the maximum air frame (41) having a channel for assembling the drip tray device (36), and in contact sealing with the structured decorative piece (GE) for the maximum air fan blade profile (42), the maximum air fan blade profile (42) having the decorative piece (G) inside, such that at the ends of each plane, the base of the glass (I) fixed by the insulating decorative strip (12) is internally insulated by the brush decorative strip (IC / ID), the brush decorative strip (IC / ID) having an internal sealing channel for the decorative piece (G); at the end of the base, the maximum air frame (41) is fixed to the secondary frame (01) by screws and is thus limited by the edging strip (05); thus the maximum air window (JMA) is configured such that the upper part of the profile is connected with the maximum air fan blade profile (42) and the maximum air frame (41), and is connected with the maximum air fan blade profile (42) and the maximum air frame (41) on the left, right and lower sides, the plane is inserted flush with the secondary frame (01), and has noise-reducing brushes (D) near the working span (Z) for contact sealing and is opened by actuating the latch (TR).
7. A noise reduction system for frames, doors, windows, their profiles and installation components, aiming to develop a structural arrangement belonging to the technical industrial field of optical fibers and their components and installation fittings, characterized in that, Mode 6 - Maximum air and fixed window (JMF), the sub-frame (01) is positioned flush with the working span (Z) at the ends, having noise-reducing brushes (D) for contact sealing and screw fixing, the edge strip device (07) having an internal sealing channel for the trim piece (G), juxtaposed with the maximum air frame (41), the maximum air frame (41) having a channel for assembling the drip tray device (36), and contact sealing for the structured trim piece (GE) of the maximum air fan profile (42), the maximum air fan profile (42) having the trim piece (G) inside, such that at the ends of each plane, the base of the glass (I) fixed by the insulating trim strip (12) is internally insulated by the brush trim strip (IC / ID), the brush trim strip (IC / ID) having an internal sealing channel for the trim piece (G); at the ends of the base, the maximum air frame (41) is fixed to the sub-frame (01) by screws; so that in the central part of the plane, the maximum air fan profile (42) sealed with the structured trim piece (GE) is juxtaposed with the maximum air frame (41), and also juxtaposed with the half-column profile (25), the glass (I) is fixed on both sides of the plane by the insulating trim strip (12), such that the maximum air and fixed window (JMF) is configured as: connected at the upper part with the maximum air fan profile (42) and the maximum air frame (41), connected at the left and right and lower parts with the maximum air fan profile (42) and the maximum air frame (41), the plane is inserted flush with the sub-frame (01), and has noise-reducing brushes (D) near the working span for contact sealing and is opened by actuating the latch (TR).
8. A noise reduction system for frames, doors, windows, their profiles and installation components, aiming to develop a structural arrangement belonging to the technical industrial field of optical fibers and their components and installation fittings, characterized in that Mode 7 - Maximum Air / Maximum Air Window (JM2), the sub-frame (01) is positioned flush with the working span (Z) at the ends, has noise-reducing brushes (D) for contact sealing and screw fixing, is limited by a capping strip device (07), the capping strip device (07) has an internal sealing channel for the trim piece (G), is juxtaposed with the maximum air frame (41), the maximum air frame (41) has a channel for assembling the drip tray device (36), and contact sealing for the structured trim piece (GE) of the maximum air fan profile (42), the maximum air fan profile (42) has a trim piece (G) inside, so that at the ends of each plane, the base of the glass (I) fixed by the insulating trim strip (12) is internally insulated by the brush trim strip (IC / ID) sealed by the trim piece (G); at the ends of the base, the maximum air frame (41) is fixed to the sub-frame (01) by screws; thus in the central part of the plane, the maximum air fan profile (42) sealed by the structured trim piece (GE) is juxtaposed with the maximum air frame (41), the maximum air frame (41) repeats in the opposite direction and is juxtaposed with the half-column profile (25), the glass (I) is fixed by the insulating trim strip (12) on both sides of the plane, so that the maximum air and fixed window (JM2) is constructed as: connected at the upper part with the maximum air fan profile (42) and the maximum air frame profile (41), connected at the left and right and lower parts with the maximum air fan profile (42) and the maximum air frame profile (41), the plane is inserted flush with the sub-frame (44), and has noise-reducing brushes (D) near the working span (Z) for contact sealing and is opened by driving the latch (TR) in two independent actuations, also at the ends.
9. A noise reduction system for frames, doors, windows, their profiles, and installation components, aiming to develop a structural arrangement belonging to the technical industrial field of optical fibers and their components and installation fittings, characterized in that Mode 8 - Fixed / Maximum Air Window (JFM), the sub-frame (01) is positioned flush with the working span (Z) at the ends, having noise-reducing brushes (D) for contact sealing and screw fixation, the edge trim device (07) having an internal sealing channel for the trim piece (G), juxtaposed with the half-column profile (25), such that at the ends of each plane, the base of the glass (I) fixed by the insulating trim fitting (12) is internally insulated by the brush trim strip (IC / ID) at the ends of the base, the half-column profile (25) is juxtaposed with the maximum air frame profile (41), the maximum air frame profile (41) having a channel for the drip tray device (36) with a structured trim piece (GE) and juxtaposed with the maximum air sash profile (42), the maximum air sash profile (42) being contact-sealed by the trim piece (G), the trim piece (G) being fixed by the insulating trim strip (12) and contacting the maximum air frame profile (41) with the noise-reducing brush (D) through the structured trim piece (GE), when contacting the working span (Z) with the sub-frame (01) positioned and opened by the actuating latch (TR); such that the fixed / maximum air window (JFM) is constructed as: having the maximum air sash profile (42) connected at the upper part, and the maximum air frame profiles (41) connected at the left, right and lower parts, the plane being inserted flush with the sub-frame (01), and having noise-reducing brushes (D) near the working span (Z) for contact sealing and opening by the actuating latch (TR).
10. A noise reduction system for frames, doors, windows, their profiles, and installation components, aiming to develop a structural arrangement belonging to the technical industrial field of optical fibers and their components and installation fittings, characterized in that Mode 9 - Maximum Air / Fixed Window (FMA), the sub-frame (01) is positioned flush with the working span (Z) at the ends, having noise-reducing brushes (D) for contact sealing and screw fixation, the edge trim device (07) has an internal sealing channel for the decorative element (G), juxtaposed with the maximum air frame profile (41), and a channel for the drip tray device (36) with a structured decorative element (GE), contacting the maximum air sash profile (42), such that at the ends of each plane, the base of the glass (I) fixed by the insulated decorative strip fitting (12) is internally insulated by the brush decorative strip (IC / ID) at the ends of the base, the half-column profile (25) is juxtaposed with the sub-frame (01) and with the maximum air sash profile (42), the maximum air sash profile (42) is contact-sealed by the decorative element (G), the decorative element (G) is fixed by the insulated decorative strip (12), having noise-reducing brushes (D), such that when contacting the working span (Z) where the sub-frame (01) is positioned and opened by actuating the latch (TR), the maximum air / fixed window (FMA) is configured such that: the upper part is connected with the maximum air frame profile (41) and the maximum air sash profile (42), the left, right, and lower parts are connected with the half-column profile (25), the plane is inserted flush with the sub-frame (01), and there are noise-reducing brushes (D) near the working span (Z) for contact sealing and opening by actuating the latch (TR), and the central part is composed of the maximum air sash profile (42) and the maximum air frame profile (41) connected by the structured decorative element (GE).
11. A noise reduction system for frames, doors, windows, their profiles, and installation components, aiming to develop a structural arrangement belonging to the technical industrial field of optical fibers and their components and installation fittings, characterized in that Mode 10 - Long-bar revolving door (PGB). On the front and back of the working span (Z), the edging strip support profile (34) is fixed and assembled to the internal part by screws and plugs. The edging strip profile (35) hides the screws that pass through the back, the sub-frame (01), and also through the edging strip support profile (34) to fix the pivot frame profile (31). The pivot frame profile (31) is fixed by screws on the other side. The adjustment angle plate (32) is joined to the adjustment frame profile (33), and the adjustment frame profile (33) is positioned on the front and fixed by screws. Another edging strip support profile (34) is assembled internally, and the edging strip profile (35) hides another screw; such that the frame profile (31) has a structured decorative piece (GE) assembled into the passage. The structured decorative piece (GE) seals the fan blade profile (37) by contact. The fan blade profile (37) has a thickened decorative piece (G) and a curved wall (RA) inside for acoustic retention. The laminated decorative strip profile (38) is hidden by the corner joint cover device (22) by screws, thus forming a passage (CN). The glass (I) is inserted from the upper part to the lower part and assembled into the groove of the fan blade profile (37), fixed by the laminated decorative strip component profile (38) and by screws hidden by the corner joint cover device (22). The fan blade profile (37) has a thickened decorative piece (G) and a curved wall (RA) inside for acoustic retention. It is accommodated in the lower part by the structured decorative piece (GE) and close to the working span (Z) for contact sealing with the floor edging strip device (30).
12. A noise reduction system for frames, doors, windows, their profiles, and installation components, aiming to develop a structural arrangement belonging to the technical industrial field of optical fibers and their components and installation fittings, characterized in that Mode 11 - Long-strip pivoting door (PGD). On the front and back of the working span (Z), the edging strip support profile (34) is fixed and assembled on the internal part by screws and plugs. The edging strip profile (35) hides the screws that pass through the back, the sub-frame (01), and also through the edging strip support profile (34) to fix the pivoting frame profile (31). The pivoting frame profile (31) is fixed by screws on the other side. The adjusting gusset plate (32) is joined to the adjusting frame profile (33), and the adjusting frame profile (33) is positioned on the front and fixed by screws. Another edging strip support profile (34) is assembled internally, and the edging strip profile (35) hides another screw; such that the pivoting frame profile (31) has a structured trim (GE) assembled into the channel. The structured trim (GE) seals the fan blade profile (37) by contact. The fan blade profile (37) has a thickened trim (G) and a curved wall (RA) inside for acoustic retention. Fixed by screws in the external groove (RE) of the fan blade profile (37), the insulating trim profile (39) is hidden by the corner joint cover device (22), thus forming a channel (CN). The channel (CN) has internal insulation through the brush trim (IC). The glass (I) is inserted from the upper part to the lower part. Insulated internally by the brush trim (IC) in the lower part, it is assembled into the groove of the fan blade profile (37), fixed by the insulating trim profile (39), and fixed by the screws hidden by the corner joint cover device (22). The fan blade profile (37) has a thickened trim (G) and a curved wall (RA) inside for acoustic retention, and is accommodated in the lower part near the working span (Z) through the structured trim (GE) for contact sealing with the floor edging strip device (30).
13. A noise reduction system for frames, doors, windows, their profiles, and installation components, aiming to develop a structural arrangement belonging to the technical industrial field of optical fibers and their components and installation fittings, characterized in that Mode 12 - Long-strip pivoting door (PGV). On the front and back of the working span (Z), the edging strip support profile (34) is fixed and assembled to the internal part by screws and plugs. The edging strip profile (35) hides the screws that pass through the back, the sub-frame (01), and also through the edging strip support profile (34) to fix the pivoting frame profile (31). The pivoting frame profile (31) is fixed by screws on the other side. The adjusting gusset plate (32) is joined to the adjusting frame profile (33), and the adjusting frame profile (33) is positioned on the front and fixed by screws. Another edging strip support profile (34) is assembled internally, and the edging strip profile (35) hides another screw; such that the frame profile (31) has a structured trim (GE) assembled into the channel, and the structured trim (GE) seals the fan blade profile (37) by contact. The fan blade profile (37) has a thickened trim (G) and a curved wall (RA) inside for acoustic retention. It is fixed by screws in the external groove (RE) of the fan blade profile (37). The sheet trim profile (40) is hidden by the corner joint cover device (22) by screws to form a gap (W), inserted into the sealing volume (V) from the upper part to the lower part, and assembled into the groove of the fan blade profile (37), fixed by the sheet trim profile (40) and by the screws hidden by the corner joint cover device (22). The fan blade profile (37) has a thickened trim (G) and a curved wall (RA) inside for acoustic retention, and is accommodated in the lower part near the working span (Z) by the structured trim (GE) for contact sealing with the floor edging strip device (30).
14. A noise reduction system for frames, doors, windows, their profiles and mounting parts, aiming to develop a structural arrangement belonging to the technical industrial field of optical fibers and their components and mounting fittings, characterized in that Mode 13 - Double-pane sliding door with 2 fan leaves in a floor plan, using component elements such as a laminated trim strip (38), an insulating trim strip (39), and a panel trim strip (40), which provide greater pressure to improve sound insulation because they are screwed instead of simply installed, and simple installation will cause slack and new noises over time and with use. Implement a "helper piece" for the meeting of the fan leaves. The seal device (19) between the fan leaves has a noise-reducing brush (D) and is fixed by screws and a central seal cover (20). More structured gasket elements (GE) are inserted into the adjustment device (18) between the fan leaves. These structured decorative elements are made of moldable structural rubber, and they actuate a latch (TR) under pressure to move a device (RT) at the end of the sliding fan leaf profile (11) of each unit contained in the door plane. It has a gasket for vertical adjustment as a difference to compensate for any irregularities in the vertical line of the structural span into which the floor-to-ceiling window or door is inserted; the perfect applicability of the rubber gasket, which promotes a wide and uniform seal when pressed against the surface of the vertical frame due to the closing of the floor-to-ceiling window or door; in addition to the structured gasket elements (GE), it is also equipped with a corner joint profile element (21), which moves with the fan leaf and forms an element that is aesthetically symmetrical on both sides; the vertical profile element (11) is configured as a corner piece and is fixed to one of the fan leaves, and the fan leaf adapts to the other fan leaf that moves towards it, in addition to increasing the thickness and including structured gaskets (GE).
15. A noise reduction system for frames, doors, windows, their profiles and installation components, aiming to develop a structural arrangement belonging to the technical industrial field of optical fibers and their components and installation fittings, characterized in that Mode 14 - Double-pane sliding door with corners (PCC), a vertical sealing element (45) connected with a gasket / brush element (CE) is screwed to the invisible upper and lower sides inside the sliding sash profile element (11) to seal the gaps to prevent wind, dust and sound from passing through, thereby helping to reduce noise by compensating for the gaps in the upper and lower parts of the track, and giving the pulley track element (04) greater durability when cleaning the upper or lower part of the double-pane track element (02) and the triple-pane track (15) by using the gasket / brush element (CE); considering the increase in the thickness (ME), mass and corrugation (AB) of the profile when rubber (G) is applied inside to prevent the entry, dissipation and reverberation of wind, dust and sound, thereby enhancing the effect of gap reduction; the thickness (ME) of the profile with a larger mass is increased for acoustic blocking as shown in the sliding sash element (11) in Figure 49; the pivot sash element (37) in Figure 54, the type of profile with a larger mass for acoustic blocking shown in Figure 56, the sliding sash element (11), the half-column element (25), the pivot sash element (37), the crossbar / column element (26), the maximum air sash element (42); Figure 48 shows the sub-frame element (01) and the pulley track element (04); Figure 51 shows the corner joint element (21), Figure 52 shows the half-column element (25) and the crossbar / column element (26); Figure 53 shows the pivot frame element (31); Figure 54 shows the pivot sash element (37) and the maximum air frame element (41); Figure 55 shows the maximum air sash element (42) and the sub-frame element (44); the upper fixing is carried out by the separation between the frame guide element (09) and the upper sash seal element (10) applied in the triple-pane frame element (17) and the double-pane frame element (6), resulting in a minimum reduction of one-tenth of a millimeter, which is still blocked by the noise reduction brush component element (D). Therefore, when the fixing using the screwing process is implemented in two parts, the double-pane track profile element (02) and the double-pane track support element (03) are also divided into two different parts, and these two parts are combined with each other, insulated at the contact point by the component element gasket (G), which eliminates any remaining vibration that would interfere with the glass reverberation. Through the separation process of the double-pane track profile (02) and the double-pane track support element (03) assembly elements, even the friction of the workpiece movement disappears, as shown in Figures 30 and 35 and detailed on page 24, during the separation process of the double-pane track element (02) and the double-pane track support element (03) and during the connection process between the maximum air frame profile element (41) and the maximum air sash element (42) and the sub-frame element (01);Thus, a double-plane sliding door with corners (PCC) is constructed such that at the end of each of its planes, a sliding sash profile (11) is connected. The combination is formed by a double-plane frame (06) at the upper part. The double-plane frames (06) on the left and right sides of the working span (Z) form the left and right stops and connect the double-plane frame (06) forming the base. A triple-plane track (15) is positioned below, and the triple-plane track (15) is supported by a track support (13), and the track support (13) is supported on a drainage trough (14). There is a drainage trough extension (16) for the wastewater outlet (SR); a device called a "helper" is used to converge the sashes, which is distinguished by having shims for vertical adjustment to compensate for any irregularities in the vertical line of the structural span into which the floor-to-ceiling window or door is inserted; the perfect applicability of rubber gaskets, which promote a wide and uniform seal when pressed against the surface of the vertical frame due to the closing of the floor-to-ceiling window or door; also, component elements such as laminated decorative strips (38), insulating decorative strips (39), and panel decorative strips (40) are used, which provide greater pressure to improve the sound insulation effect because they are screwed instead of simply installed, and simple installation will cause slack and new noises over time and use; the existing systems belonging to the prior art used in doors before focused on pressure-boosting decorative strips with the unique possibility of increasing the rubber thickness. In addition to the structured decorative element (GE), it also configured a corner joint profile element (21), which moves together with the sash and forms an element that is aesthetically symmetrical on both sides. The vertical profile element (11) is configured as a corner piece and is fixed to one of the sashes, and the sash adapts to the other sash that moves towards it;In addition to increasing the thickness and including structured decorative elements (GE), there are structured decorative elements (GE) at the central part of the intersection of each plane and at the ends of the stroke. The structured decorative elements are made of moldable structural rubber and actuate a latch (TR) under pressure. The latch moves to lock in each plane. And when the two planes are slid in the same direction, one plane can be connected to the other plane through an inter - blade adjuster (18). The inter - blade adjuster (18) is arranged in a "helper" configuration, fixed to the vertical top by screws and hidden by an inter - blade seal device (19). The inter - blade seal device (19) has a noise - reducing brush (D) and is fixed by screws and a central seal cover (20). More structured decorative elements (GE) are inserted into the inter - blade adjuster device (18). These structured decorative elements are made of moldable structural rubber and actuate a latch (TR) between them under pressure, thus moving a device (RT) at the end of the sliding blade profile (11) of each unit housed in the door plane. It has a final track on one side of the double - plane frame (06) through contact with the structured decorative element (GE). On the other hand, its final track on the other side occurs through contact with the structured decorative element (GE) in a corner joint profile (21). The corner joint profile (21) is fixed to the other side of the sliding blade profile (11) by screws. In this way, noise and dust sealing are achieved by relying on the inter - blade seal device (45) and the gasket / brush (CE). The device has a channel for an internal assembly brush strip (IC) for insulation and sealing.
16. A noise reduction system for frames, doors, windows, their profiles and installation components, aiming to develop a process belonging to the technical industrial field of optical fibers and their components and installation fittings, characterized in that, The solution for the door and window plane is a combination of a frame guide (9), a seal between the fan leaves (45), a rubber system, a noise-reducing brush seal (D), an upper fan leaf seal (10), and an insulating strip (12).
17. A noise reduction system for frames, doors, windows, their profiles and installation components, aiming to develop a process belonging to the technical industrial field of optical fibers and their components and installation fittings, characterized in that Fixed by a two-part screwing process, which also starts with dividing the double-pane track profile (02) and the double-pane track support (03) into two different parts, which are combined with each other and insulated at the contact by a component element trim (G), which eliminates any remaining vibrations that would interfere with the glass reverberation. Through the separation process of the double-pane track profile (02) and the double-pane track support element (03) component elements, even the friction of the workpiece movement disappears, as shown in Figures 30 and 35 and detailed on page 24, during the separation process of the double-pane track (02) and the double-pane track support (03) and during the connection process between the maximum air frame profile element (41) and the maximum air fan leaf element (42) and the sub-frame element (01).
18. A noise reduction system for frames, doors, windows, their profiles and installation components, aiming to develop a process belonging to the technical industrial field of optical fibers and their components and installation fittings, characterized in that, It includes the vertical seal element (45) shown on pages 26 to 29 and page 46. The vertical seal element is an invisible element fixed inside the sliding fan leaf profile element (11) to seal the gap to prevent wind, dust, and sound from passing through, thereby helping to reduce noise by compensating for the gaps in the upper and lower parts of the track, and giving greater durability to the pulley track (04) when cleaning the upper or lower part of the double-pane track (02) and the triple-pane track (15) by using gasket / brush elements (CE).
19. A noise reduction system for frames, doors, windows, their profiles, and installation components, aiming to develop a process belonging to the technical industrial field of optical fibers and their components and installation fittings, characterized in that, Corner seals using gasket / brush assemblies and brush seals (45) in combination between the upper and lower parts of the planes, in one plane and the other, allow for the simplification of the intersection of the two planes.
20. A noise reduction system for frames, doors, windows, their profiles, and installation components, aiming to develop a process belonging to the technical industrial field of optical fibers and their components and installation fittings, characterized in that, Horizontal seals are designed to inhibit the physical propagation of wind and sound in this direction and the effects caused by them. They are so named because wind and sound propagate horizontally along the sides of the door and window planes. The solutions include a combination of corner stops, helpers, inter-pane seals (19), corner joints (21), central stops (23), half-columns (25), transoms / mullions (26), and corner plates (27).
21. A noise reduction system for frames, doors, windows, their profiles and installation components, aiming to develop a process belonging to the technical industrial field of optical fibers and their components and installation fittings, characterized in that It includes a horizontal seal, including a "helper" type closing model. For this, the structured trim (GE) shown on page 36, i.e., the vertical front intersection element, was developed. In its corner construction, on page 37, a device called a "helper" is used to join the panes. This device has gaskets for vertical adjustment to compensate for any irregularities in the vertical lines of the structural span into which floor-to-ceiling windows or windows are inserted. The applicability of rubber trim, which promotes sealing when pressed against the surface of the vertical frame due to the closing of the floor-to-ceiling window or door. Components such as laminated trim strips (38), insulating trim strips (39), and sheet trim strips (40) are also used. They provide greater pressure and thus improve sound insulation because they are screwed rather than simply installed. Simple installation can cause slack and new noise over time and with use. Existing systems in the prior art used in doors focused on pressure-boosted trim strips with the unique possibility of increasing rubber thickness. In addition to the structured trim element (GE), it also configures a corner joint profile element (21), which moves with the panes and forms an element that is aesthetically symmetric on both sides. The vertical profile element (11) is configured as a corner piece and is fixed to one of the panes, which adapts to the other pane moving towards it. In addition to increasing thickness and including the structured trim (GE).
22. A noise reduction system for frames, doors, windows, their profiles and installation components, aiming to develop a process belonging to the technical industrial field of optical fibers and their components and installation fittings, characterized in that, Upper fixation is achieved by relying on the separation between the frame guide element (09) applied to the three-plane frame element (17) and the upper pane seal element (10) of the two-plane frame element (6), resulting in a minimum reduction of one-tenth of a millimeter. This is still blocked by the noise-reducing brush component element (D), that is, the smaller the gap between the upper and lower parts of the plane, the less the entry of wind, dust, and noise.
23. A noise reduction system for frames, doors, windows, their profiles and installation components, aiming to develop a process belonging to the technical industrial field of optical fibers and their components and installation fittings, characterized in that, The thickness (ME), mass, and corrugation (AB) of the profile increase when rubber (G) is applied internally to prevent the entry, dissipation, and reverberation of wind, dust, and sound, thereby enhancing the effect of gap reduction; the thickness (ME) of the profile with a larger mass increases for acoustic blocking in the sliding fan blade element (11) shown in Fig. 49; the pivot fan blade element (37) in Fig. 54, the profile type with a larger mass for acoustic blocking shown in Fig. 56, the sliding fan blade element (11), the half-column element (25), the pivot fan blade element (37), the crossbar / column element (26), the maximum air fan blade element (42); Fig. 48 shows the sub-frame element (01) and the pulley track element (04); Fig. 51 shows the corner joint element (21), Fig. 52 shows the half-column element (25) and the crossbar / column element (26); Fig. 53 shows the pivot frame element (31); Fig. 54 shows the pivot fan blade element (37) and the maximum air frame element (41); Fig. 55 shows the maximum air fan blade element (42) and the frame element (44).
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