Sliding window with strong sound insulation and heat insulation and installation mode
Through the design of the integrated plug-in sound insulation module and sealing components, the problems of insufficient thermal insulation capability and cumbersome installation of sliding windows are solved, and efficient sound insulation and thermal insulation effects and simplified installation process are achieved.
Patent Information
- Application Number
- CN202410181830.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2024-02-19
- Publication Date
- 2025-07-18
AI Technical Summary
The existing sliding windows have insufficient thermal insulation capabilities and are cumbersome to install. Independent strip heat insulation strips need to be installed separately, which wastes manpower and time.
A strong sound-insulating and heat-insulating sliding window is designed, and an integral plug-in sound-insulating thermal insulation module is adopted, including the first horizontal, second horizontal and vertical sound-insulating thermal insulation modules. Combining the sealing component and the sliding component, the sliding installation and sealing of the glass window is realized, and the installation process is simplified.
It improves the sound insulation effect, simplifies the installation process, reduces labor and time costs, and enhances sealing and installation convenience.
Smart Images

Figure CN120331628A_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of sliding windows, and particularly relates to a sliding window with strong sound insulation and heat insulation and an installation method thereof. Background Art
[0002] The window frame of a sliding window needs to accommodate two layers of guardrail glass bodies and realize the independent pulling of the two layers of guardrail glass bodies. Generally, the window frames on the market are two-part structures arranged symmetrically. To ensure sufficient heat insulation and sound insulation, independent heat insulation strips are arranged in the middle of the two-part structure. Each heat insulation strip needs to be installed separately, and the installation process is cumbersome, wasting labor costs and time costs. Moreover, there are cavities between the independent strip-shaped heat insulation strips, and the sound insulation and heat insulation capabilities are limited.
[0003] To solve the above problems, there is an urgent need for a window frame that can have strong sound insulation and heat insulation capabilities and is easy to install. Summary of the Invention
[0004] The purpose of the present invention is to overcome the defects of cumbersome installation and insufficient heat insulation and sound insulation capabilities in the prior art, and provide a window frame and a sliding window that are convenient to install and have strong sound insulation and heat insulation.
[0005] The technical solution adopted by the present invention to solve its technical problems is:
[0006] As a first aspect, a sliding window with strong sound insulation and heat insulation includes a window frame, at least two glass window bodies slidably installed on the window frame through a sliding assembly, a sealing assembly installed on adjacent two glass window bodies, and a glass guardrail installed on the outer side of the window frame;
[0007] The window frame includes:
[0008] A first window frame module and a second window frame module arranged symmetrically;
[0009] A sound insulation and heat insulation module, arranged between the first window frame module and the second window frame module; during installation, the sound insulation and heat insulation module is inserted as a whole from one end of the first window frame module and the second window frame module.
[0010] Further, the sound insulation and heat insulation module includes:
[0011] A first horizontal sound insulation and heat insulation module and a second horizontal sound insulation and heat insulation module arranged in parallel;
[0012] A vertical sound insulation and heat insulation module, arranged between the first horizontal sound insulation and heat insulation module and the second horizontal sound insulation and heat insulation module, and both ends of the vertical sound insulation and heat insulation module are respectively clamped with the first horizontal sound insulation and heat insulation module and the second horizontal sound insulation and heat insulation module;
[0013] The glass window sound insulation and heat insulation module is fixedly installed on the upper end surface of the first horizontal sound insulation and heat insulation module.
[0014] Furthermore, a first boss is provided on the vertical sound insulation and heat insulation module, and first grooves for mating installation with the first boss are provided on both the first horizontal sound insulation and heat insulation module and the second horizontal sound insulation and heat insulation module.
[0015] Furthermore, the sealing assembly includes two sealing mounting members respectively installed on two adjacent glass windows, a sealing module installed on the sealing mounting members, and a docking opening provided on the sealing module; wherein,
[0016] When two adjacent glass windows are in a fully slid open state, the two sealing modules are tightly fitted through the docking opening.
[0017] Furthermore, when two adjacent glass windows are in a fully slid open state, the docking surface where the two sealing modules are tightly fitted is S-shaped.
[0018] Furthermore, the first window frame module or / and the second window frame module includes:
[0019] An L-shaped window support frame;
[0020] A first accommodation cavity is opened on the inner bottom surface of the L-shaped window support frame. The first accommodation cavity includes an opening facing the glass window, and the sliding assembly is installed in the first accommodation cavity.
[0021] Furthermore, the sliding assembly includes:
[0022] A plurality of ground rail assemblies are distributed and installed in the first accommodation cavity;
[0023] A rail is fixedly installed on the glass window corresponding to the ground rail assembly, and the ground rail assembly is in rolling connection with the rail.
[0024] Furthermore, the ground rail assembly includes a U-shaped support member, an N-shaped support member, and a groove-shaped ground rail wheel rotatably installed in a cavity formed by the U-shaped support member and the N-shaped support member; wherein,
[0025] The rail is in rolling connection with the groove-shaped ground rail wheel in a mating manner; a through hole for the groove-shaped ground rail wheel to extend out is opened on the upper top surface of the N-shaped support member;
[0026] During installation, the N-shaped support member is pressed on the outside of the U-shaped support member, the groove-shaped ground rail wheel is installed in the cavity of the U-shaped support member, and the groove-shaped ground rail wheel extends out of the upper top surface of the N-shaped support member through the through hole.
[0027] Furthermore, the glass guardrail includes:
[0028] An L-shaped frame and an I-shaped frame that is cooperatively installed with the L-shaped frame;
[0029] A docking groove, which is opened on the horizontal side of the L-shaped frame;
[0030] A docking block, which is arranged on the I-shaped frame and is cooperatively installed with the docking groove;
[0031] A guardrail glass body, which is installed in the cavity enclosed by the L-shaped frame and the I-shaped frame; wherein,
[0032] When installing the glass guardrail, first fixedly connect the L-shaped frame with the window frame, and then snap the I-shaped frame with the L-shaped frame through the docking block and the docking groove.
[0033] As a second aspect, an installation method of a strong sound-insulating and heat-insulating sliding window includes the following steps:
[0034] H1. Install the sliding components, that is, install the corresponding sliding components on the first window frame module, the second window frame module and the glass window body;
[0035] H2. Assemble the sound-insulating and heat-insulating module, that is, assemble the components of the sound-insulating and heat-insulating module to form an integral module;
[0036] H3. Install the integral sound-insulating and heat-insulating module, that is, insert the assembled sound-insulating and heat-insulating module as a whole from one end of the first window frame module and the second window frame module to complete the installation with the first window frame module and the second window frame module;
[0037] H4. Install the glass window body, and finally install the glass window body in the window frame.
[0038] The beneficial effects of the strong sound-insulating and heat-insulating sliding window and the installation method of the present invention are: The present invention is provided with a sound-insulating and heat-insulating module, which is cooperatively snapped with the corresponding window frame, realizing that the sound-insulating and heat-insulating module is directly inserted from one end of the window frame, and there is no need to install independent strip-shaped heat-insulating strips one by one, solving the defects of cumbersome installation of the heat-insulating and sound-insulating parts of the sliding window and insufficient heat-insulating and sound-insulating capabilities in the prior art.
[0039] The sound-insulating and heat-insulating module of the present invention is provided with four parts: a first horizontal sound-insulating and heat-insulating module, a second horizontal sound-insulating and heat-insulating module, a vertical sound-insulating and heat-insulating module and a glass window body sound-insulating and heat-insulating module. The four parts are independent of each other and cooperate with each other, so that there is no convection channel between the first window frame module and the second window frame module, thereby ensuring a high heat-insulating and sound-insulating effect. Description of the Drawings
[0040] The present invention will be further described in detail below in conjunction with the drawings and specific embodiments.
[0041] Figure 1 is the structural diagram of the sliding window according to the embodiment of the present invention.
[0042] Figure 2 is Figure 1 the sectional view taken along line A-A in
[0043] Figure 3 is the structural diagram of the sound insulation and heat insulation module according to the embodiment of the present invention.
[0044] Figure 4 is Figure 3 the exploded view of
[0045] Figure 5 is the installation exploded view of the first window frame module and the glass window body according to the embodiment of the present invention.
[0046] Figure 6 is the exploded view of the sliding component according to the embodiment of the present invention.
[0047] Figure 7 is Figure 1 the sectional view taken along line B-B in
[0048] Figure 8 is the structural schematic diagram when two adjacent glass window bodies are in an incompletely sliding state.
[0049] Figure 9 is Figure 7 the exploded view of
[0050] Figure 10 is the structural sectional view of the glass guardrail according to the embodiment of the present invention.
[0051] Figure 11 is Figure 10 the partial exploded view of
[0052] Figure 12 is the installation method flow chart of the sliding window according to the embodiment of the present invention.
[0053] In the figure: 1. Window frame, 11. First window frame module, 111. L-shaped window support frame, 112. First accommodation cavity, 12. Second window frame module, 13. Sound insulation and heat insulation module, 131. First horizontal sound insulation and heat insulation module, 132. Second horizontal sound insulation and heat insulation module, 133. Vertical sound insulation and heat insulation module, 134. Glass window body sound insulation and heat insulation module, 135. First boss, 136. First groove, 137. Second boss, 138. Second groove, 2. Glass window body, 3. Sliding assembly, 31. Floor rail assembly, 311. U-shaped support member, 312. N-shaped support member, 313. Groove-shaped floor rail wheel, 32. Rail, 4. Sealing assembly, 41. Sealing installation member, 42. Sealing module, 43. Docking opening, 5. Glass guardrail, 51. L-shaped frame, 52. I-shaped frame, 53. Docking groove, 54. Docking block, 55. Guardrail glass body. Detailed implementation mode
[0054] Now, the present invention will be further described in detail with reference to the accompanying drawings. These drawings are all simplified schematic diagrams, only illustrating the basic structure of the present invention in a schematic manner, so they only show the components related to the present invention.
[0055] As Figures 1-11 shown in the specific embodiment of the strong sound insulation and heat insulation sliding window of the present invention, it includes a window frame 1, at least two glass window bodies 2 slidably installed on the window frame 1 through a sliding assembly 3, a sealing assembly 4 installed on adjacent two glass window bodies 2, and a glass guardrail 5 installed outside the window frame 1. Among them, the window frame 1 includes: a symmetrically arranged first window frame module 11 and a second window frame module 12, and a sound insulation and heat insulation module 13. The sound insulation and heat insulation module 13 is arranged between the first window frame module 11 and the second window frame module 12. During installation, the whole sound insulation and heat insulation module 13 is inserted from one end of the first window frame module 11 and the second window frame module 12.
[0056] In this embodiment, a sound insulation and heat insulation module 13 is provided, which is cooperatively clamped with the corresponding window frame 1, so that the sound insulation and heat insulation module 13 can be directly inserted from one end of the window frame 1, without the need to install independent strip-shaped heat insulation strips one by one, solving the defects of cumbersome installation and insufficient heat insulation and sound insulation capabilities of the sliding window in the prior art.
[0057] As Figure 3 and Figure 4As shown in the figure, in this embodiment, the sound and heat insulation module 13 includes: a first horizontal sound and heat insulation module 131 and a second horizontal sound and heat insulation module 132 arranged in parallel, a vertical sound and heat insulation module 133, and a glass window sound and heat insulation module 134. The vertical sound and heat insulation module 133 is arranged between the first horizontal sound and heat insulation module 131 and the second horizontal sound and heat insulation module 132. Both ends of the vertical sound and heat insulation module 133 are snap-connected to the first horizontal sound and heat insulation module 131 and the second horizontal sound and heat insulation module 132 respectively. The glass window sound and heat insulation module 134 is fixedly installed on the upper end face of the first horizontal sound and heat insulation module 131.
[0058] Specifically, the first horizontal sound and heat insulation module 131 and the second horizontal sound and heat insulation module 132 in this embodiment have the same structure, and both include a second boss 137 for installing with the first window frame module 11 and the second window frame module 12. Correspondingly, the first window frame module 11 and the second window frame module 12 are provided with a second groove 138 for cooperating with the second boss 137.
[0059] The vertical sound and heat insulation module 133 is provided with a first boss 135, and both the first horizontal sound and heat insulation module 131 and the second horizontal sound and heat insulation module 132 are provided with a first groove 136 for cooperating with the first boss 135 for installation. As a first implementation manner, the vertical sound and heat insulation module 133 is in an M shape, and the upper top and the lower end of the M shape are both provided with a first boss 135. Correspondingly, the first horizontal sound and heat insulation module 131 and the second horizontal sound and heat insulation module 132 are provided with a first groove 136 for cooperating with the first boss 135. See Figure 4 . The vertical sound and heat insulation module 133 can also be in other structures such as a Y shape, an I shape, a V shape, etc., and will not be exemplified one by one here.
[0060] The glass window sound and heat insulation module 134 is integrally formed with the first horizontal sound and heat insulation module 131. At least two brushes are further installed on the glass window sound and heat insulation module 134. The brushes face the direction of the glass window 2 and are used to block the entry of dust and bugs.
[0061] Such as Figure 7 、 Figure 8 And Figure 9As shown in the figure, the sealing assembly 4 in this embodiment includes two sealing mounting members 41 respectively mounted on two adjacent glass window bodies 2, a sealing module 42 mounted on the sealing mounting member 41, and a docking opening 43 provided on the sealing module 42. When two adjacent glass window bodies 2 are in a fully slid-open state, the two sealing modules 42 are closely fitted through the docking opening 43. Specifically, when two adjacent glass window bodies 2 are in a fully slid-open state, the docking surfaces of the two sealing modules 42 that are closely fitted are in an S shape. The S-shaped design ensures the relative completeness of the seal. It should be further noted that both the sealing mounting member 41 and the sealing module 42 in this embodiment are made of nylon material. Sealing mounting members 41 and sealing modules 42 are provided on both adjacent glass window bodies 2, so that when two relatively sliding glass window bodies 2 are in a fully slid-open state, the two sealing modules 42 are closely fitted, solving the problem of poor sealing of the strip-shaped brush fixed by screws in the prior art. At the same time, the sealing mounting member 41 and the sealing module 42 of the present invention are snap-fitted, solving the problem of inconvenient installation and replacement of the strip-shaped brush in the prior art.
[0062] A trapezoidal groove is formed in the sealing module 42 corresponding to the bottom of the docking opening 43, and a sealing strip is inserted into the trapezoidal groove. When the two sealing modules 42 are docked, the docking opening 43 of one sealing module 42 is closely fitted with the other sealing module 42 to form a first seal. A sealing strip is also provided on each sealing module 42 to form a second seal, ensuring the sealing degree of the two glass window bodies 2. The sealing module 42 includes a mounting rib that is fitted with the mounting groove and a docking protrusion that is closely connected with the docking opening 43. When the two sealing modules 42 are docked, the docking opening 43 of one sealing module 42 is closely fitted with the docking protrusion of the other sealing module 42 to form a third seal, further ensuring the sealing degree of the two glass window bodies 2.
[0063] As an implementation method, as Figure 1 and Figure 2 shown, a brush for sealing is also mounted on the sealing module 42. The brush faces the docking surface when the two sealing modules 42 are docked. The brush is provided on the sealing module 42 to form a fourth seal. The present invention forms four seals on the docking surface of the two sealing modules 42, so that when two relatively moving glass window bodies 2 are in a fully slid-open state, the gap between them is reduced to the lowest level, maximizing the sealing performance of the two glass window bodies 2. At the same time, the sealing mounting member 41 and the glass window body 2 are snap-fitted through a snap boss and a snap groove, and the sealing mounting member 41 and the corresponding sealing module 42 are snap-fitted through a mounting groove and a mounting rib. When installing or disassembling the sealing mounting member 41 and / or the sealing module 42, it only needs to be pulled out or inserted from one end of the glass window body 2, and the installation and disassembly are convenient and fast, solving the problem of inconvenient installation and replacement of the strip-shaped brush in the prior art.
[0064] The first window frame module 11 and the second window frame module 12 in this embodiment have the same structure. The first window frame module 11 or / and the second window frame module 12 includes: an L-shaped window support frame 111 and a first accommodation cavity 112 opened on the inner bottom surface of the L-shaped window support frame 111. The first accommodation cavity 112 includes an opening facing the glass window body 2, and the sliding assembly 3 is installed in the first accommodation cavity 112.
[0065] Specifically, the sliding assembly 3 includes: a plurality of ground rail assemblies 31 distributed and installed in the first accommodation cavity 112 and a rail 32 fixedly installed on the glass window body 2 corresponding to the ground rail assemblies 31. The ground rail assemblies 31 are in rolling connection with the rail 32. The ground rail assembly 31 includes a U-shaped support 311, an N-shaped support 312, and a groove-shaped ground rail wheel 313 rotatably installed in the cavity surrounded by the U-shaped support 311 and the N-shaped support 312. Among them, the rail 32 is in rolling connection with the groove-shaped ground rail wheel 313 in a matching manner. A through hole for the groove-shaped ground rail wheel 313 to extend out is opened on the upper top surface of the N-shaped support 312. During installation, the N-shaped support 312 is pressed on the outside of the U-shaped support 311. The groove-shaped ground rail wheel 313 is installed in the cavity of the U-shaped support 311, and the groove-shaped ground rail wheel 313 extends out of the upper top surface of the N-shaped support 312 through the through hole. See Figure 5 and Figure 6 .
[0066] The present invention abandons the traditional sliding method of installing rolling wheels on the glass window body 2. A plurality of ground rail assemblies 31 are provided on the window frame 1, that is, the rolling components are arranged on the window frame 1 with a relatively large volume and more installation space. Only the rail 32 is provided on the frame of the glass window body 2, so that the window frame 1 can support the glass window body 2 at multiple positions, solving the problem of jamming caused by installing rolling wheels only on the frames at both ends of the glass window body 2 when the load is relatively large in the prior art.
[0067] That is, the groove-shaped ground rail wheel 313 with a rolling function is installed in the cavity of the window frame 1. When the ground rail assembly 31 is installed in the accommodation cavity, first place the U-shaped support 311 in the accommodation cavity, then install the groove-shaped ground rail wheel 313 in the cavity of the U-shaped support 311, and finally press the N-shaped support 312 into the accommodation cavity, and the N-shaped support 312 is located outside the U-shaped support 311. Specifically, see Figure 2 . The groove-shaped ground rail wheel 313 is rotatably installed with both the U-shaped support 311 and the N-shaped support 312 to ensure smooth rolling of the groove-shaped ground rail wheel 313 and the rail 32.
[0068] As an implementation manner, a fixing groove is provided on the end surface of the glass window body 2 that cooperates with the ground rail assembly 31, and the rail 32 is inserted into the fixing groove through a fixing strip. See Figure 2 andFigure 5 。
[0069] As another implementation, the rail 32 is adhesively bonded to the end face where the glass window body 2 cooperates with the ground rail assembly 31. Any fixing method of the rail 32 and the glass window body 2 that can be conceived by those skilled in the art is acceptable, and the installation method of the rail 32 and the glass window body 2 is not absolutely limited here.
[0070] In this embodiment, multiple ground rail assemblies 31 are evenly distributed in the accommodation cavity. It should be understood that several ground rail assemblies 31 can be evenly distributed or unevenly distributed in the accommodation cavity, as long as the glass window body 2 can be supported at multiple positions. The position of the multiple ground rail assemblies 31 in the accommodation cavity is not absolutely limited here. At the same time, in the sliding assembly 3 of this embodiment, card slots are provided on both side walls of the accommodation cavity, and shoulders that are engaged with the card slots are provided on the n-shaped support member 312. The design of the card slots and the shoulders ensures the installation stability of the n-shaped support member 312 and the accommodation cavity, and ensures that the n-shaped support member 312 will not fall off from the accommodation cavity during use.
[0071] Such as Figure 10 and Figure 11 shown, the glass guardrail 5 in this embodiment includes: an L-shaped frame 51, an I-shaped frame 52, a docking groove 53, a docking block 54, and a guardrail glass body 55 that are cooperatively installed with the L-shaped frame 51. The docking groove 53 is opened on the horizontal side of the L-shaped frame 51. The docking block 54 is provided on the I-shaped frame 52 and is cooperatively installed with the docking groove 53. The guardrail glass body 55 is installed in the cavity surrounded by the L-shaped frame 51 and the I-shaped frame 52. Among them, when installing the glass guardrail 5, first fixedly connect the L-shaped frame 51 to the window frame 1, and then snap the I-shaped frame 52 to the L-shaped frame 51 through the docking block 54 and the docking groove 53.
[0072] The present invention uses two parts of frames, namely the L-shaped frame 51 and the I-shaped frame, to be snap-connected to form the guardrail frame of the entire glass guardrail 5. During installation, the L-shaped frame 51 can be fixed to the window frame 1 by screwing from the side first, and then the I-shaped frame 52 is snap-connected to the L-shaped frame 51 through the docking block 54 and the docking groove 53. A relatively high guardrail frame is not required, solving the defects of the large size and high cost of the guardrail frame in the prior art. The guardrail frame of the glass guardrail 5 of the present invention is relatively small as a whole, saving materials to a large extent and reducing costs, making the sliding window of the present invention more competitive in the market.
[0073] In this embodiment, the docking groove 53 is a convex-shaped long groove, and the docking block 54 is a convex-shaped long strip that matches the docking groove 53. When the L-shaped frame 51 is docked with the I-shaped frame 52, the docking block 54 on the I-shaped frame 52 is inserted into one end of the docking groove 53 on the L-shaped frame 51. After being inserted in place, the connection between the L-shaped frame 51 and the I-shaped frame 52 is achieved. The cooperation of the convex-shaped long groove and the convex-shaped long strip ensures the stability of the connection between the L-shaped frame 51 and the I-shaped frame 52.
[0074] A fault-tolerant opening is provided on the lower end surface of the docking block 54. The fault-tolerant opening is in an inverted V shape. The setting of the fault-tolerant opening enables the docking block 54 to be smoothly inserted into the corresponding docking groove 53, avoiding the situation where the docking block 54 cannot be inserted into the docking groove 53 due to slight dimensional deviations during the production process.
[0075] As Figure 10 and Figure 11 shown, this embodiment also includes a "<"-shaped rubber strip installed between the guardrail glass body 55 and the vertical side of the L-shaped frame 51. The "<"-shaped rubber strip is snap-connected to the vertical side of the L-shaped frame 51. It also includes a ">"-shaped rubber strip installed between the guardrail glass body 55 and the I-shaped frame 52. The ">"-shaped rubber strip is snap-connected to the I-shaped frame 52. The "<"-shaped rubber strip and the ">"-shaped rubber strip are respectively arranged on both sides of the guardrail glass body 55. On the one hand, it plays a supporting role for the guardrail glass body 55, and on the other hand, it prevents the guardrail glass body 55 from directly contacting the L-shaped frame 51 and the I-shaped frame 52 on both sides, providing a certain protection for the guardrail glass body 55.
[0076] It should be further noted that, referring to Figure 10 , the "<"-shaped rubber strip in this embodiment includes a "<"-shaped body and a fixed groove opened at the top of the "<"-shaped body. A fixed convex strip is provided on the vertical side of the L-shaped frame 51 corresponding to the fixed groove. During installation, the "<"-shaped body is snapped onto the fixed convex strip through the fixed groove from one end of the L-shaped frame 51. The design of the fixed groove and the fixed convex strip ensures the stability of the installation of the "<"-shaped rubber strip on the L-shaped frame 51.
[0077] As Figure 11 shown, the ">"-shaped rubber strip in this embodiment includes a ">"-shaped body and a raised sliding table provided on the top of the ">"-shaped body. A sliding groove that matches the raised sliding table is opened on the corresponding I-shaped frame 52. During installation, the ">"-shaped body is inserted into the sliding groove from one end of the I-shaped frame 52 through the raised sliding table. The design of the raised sliding table and the sliding groove ensures the stability of the installation of the ">"-shaped rubber strip on the I-shaped frame 52, ensuring that the two do not fall off during use. A yielding opening is opened on the lower side of the ">"-shaped body. The design of the yielding opening increases the deformation amount of the ">"-shaped rubber strip, facilitating the installation of the guardrail glass body 55.
[0078] The installation process of the glass guardrail 5 for this window and the window frame 1 is as follows:
[0079] First, screw the L-shaped frame 5111 to the window frame 1 from the side corresponding to the vertical side of the L-shaped frame 51. Insert the "<"-shaped rubber strip from one end of the L-shaped frame 51, and at the same time insert the ">"-shaped rubber strip from one end of the I-shaped frame 52. Then, install the I-shaped frame 52 with the ">"-shaped rubber strip on the L-shaped frame 51 by clamping through the docking block 54 and the docking groove 53. Finally, install the guardrail glass body 55 in the cavity surrounded by the L-shaped frame 51 and the I-shaped frame 52, thus completing the installation of the glass guardrail 5 and the window. The installation is convenient and fast, and it is easy to disassemble, clean or replace.
[0080] Based on the installation method of the above-mentioned strong sound-insulating and heat-insulating sliding window, as Figure 12 shown, it includes the following steps:
[0081] H1. Install the sliding component 3, that is, install the corresponding sliding component 3 on the first window frame module 11, the second window frame module 12 and the glass window body 2;
[0082] H2. Assemble the sound-insulating and heat-insulating module 13, that is, assemble the components of the sound-insulating and heat-insulating module 13 to form an integral module;
[0083] H3. Install the whole sound-insulating and heat-insulating module 13, that is, insert the assembled sound-insulating and heat-insulating module 13 as a whole from one end of the first window frame module 11 and the second window frame module 12 to complete the installation with the first window frame module 11 and the second window frame module 12;
[0084] H4. Install the glass window body 2, and finally install the glass window body 2 in the window frame 1.
[0085] The installation method of this strong sound-insulating and heat-insulating sliding window also includes the installation of the glass guardrail 5, and the installation process of the glass guardrail 5 will not be repeated here. The installation of the glass guardrail 5 can be placed after step H4, or it can be placed before other steps, and there is no absolute limit here.
[0086] It should be understood that the specific embodiments described above are only used to explain the present invention and are not used to limit the present invention. Obvious changes or variations derived from the spirit of the present invention are still within the protection scope of the present invention.
Claims
1. A sliding window with strong sound insulation and heat insulation, characterized in that, It includes a window frame (1), at least two glass window bodies (2) slidably mounted on the window frame (1) through a sliding assembly (3), a sealing assembly (4) mounted on two adjacent glass window bodies (2), and a glass guardrail (5) mounted on the outer side of the window frame (1); The window frame (1) includes: A first window frame module (11) and a second window frame module (12) symmetrically arranged; A sound insulation and heat insulation module (13) disposed between the first window frame module (11) and the second window frame module (12); during installation, the sound insulation and heat insulation module (13) is integrally inserted from one end of the first window frame module (11) and the second window frame module (12).
2. The push-pull window with strong sound insulation and heat insulation according to claim 1, characterized in that, The sound insulation and heat insulation module (13) includes: A first horizontal sound insulation and heat insulation module (131) and a second horizontal sound insulation and heat insulation module (132) arranged in parallel; A vertical sound insulation and heat insulation module (133) disposed between the first horizontal sound insulation and heat insulation module (131) and the second horizontal sound insulation and heat insulation module (132), and both ends of the vertical sound insulation and heat insulation module (133) are clamped to the first horizontal sound insulation and heat insulation module (131) and the second horizontal sound insulation and heat insulation module (132) respectively; A glass window body sound insulation and heat insulation module (134) fixedly mounted on the upper end surface of the first horizontal sound insulation and heat insulation module (131).
3. The push-pull window with strong sound insulation and heat insulation according to claim 2, wherein: A first boss (135) is provided on the vertical sound insulation and heat insulation module (133), and first grooves (136) for mating installation with the first boss (135) are provided on both the first horizontal sound insulation and heat insulation module (131) and the second horizontal sound insulation and heat insulation module (132).
4. The push-pull window with strong sound insulation and heat insulation according to claim 1, characterized in that, The sealing assembly (4) includes two sealing mounting members (41) respectively mounted on two adjacent glass window bodies (2), a sealing module (42) mounted on the sealing mounting member (41), and a docking opening (43) provided on the sealing module (42); wherein, When two adjacent glass window bodies (2) are in a fully slid-open state, the two sealing modules (42) are closely fitted through the docking opening (43).
5. The sliding window with strong sound insulation and heat insulation according to claim 4, wherein: When two adjacent glass window bodies (2) are in a fully slid-open state, the docking surface where the two sealing modules (42) are closely fitted is S-shaped.
6. The push-pull window with strong sound insulation and heat insulation according to claim 1, characterized in that, The first window frame module (11) or / and the second window frame module (12) includes: An L-shaped window support frame (111); A first accommodation cavity (112) is opened on the inner bottom surface of the L-shaped window support frame (111), and the first accommodation cavity (112) includes an opening facing the glass window body (2), and the sliding assembly (3) is mounted in the first accommodation cavity (112).
7. The push-pull window with strong sound insulation and heat insulation according to claim 6, wherein The sliding assembly (3) includes: A plurality of ground rail assemblies (31) distributed and mounted in the first accommodation cavity (112); A rail (32) fixedly mounted on the glass window body (2) corresponding to the ground rail assembly (31), and the ground rail assembly (31) is in rolling connection with the rail (32).
8. The sliding window with strong sound insulation and heat insulation according to claim 7, characterized in that, The ground rail assembly (31) includes a U-shaped support (311), an N-shaped support (312), and a groove-shaped ground rail wheel (313) rotatably installed in the cavity formed by the U-shaped support (311) and the N-shaped support (312); wherein, The rail (32) is in rolling connection with the groove-shaped ground rail wheel (313); a through hole for the groove-shaped ground rail wheel (313) to extend out is formed on the upper top surface of the N-shaped support (312); During installation, the N-shaped support (312) is pressed on the outer side of the U-shaped support (311), the groove-shaped ground rail wheel (313) is installed in the cavity of the U-shaped support (311), and the groove-shaped ground rail wheel (313) extends out of the upper top surface of the N-shaped support (312) through the through hole.
9. The push-pull window with strong sound insulation and heat insulation according to claim 1, characterized in that, The glass guardrail (5) includes: An L-shaped frame (51) and an I-shaped frame (52) installed in cooperation with the L-shaped frame (51); A docking groove (53) is formed on the horizontal side of the L-shaped frame (51); A docking block (54) is arranged on the I-shaped frame (52) and is installed in cooperation with the docking groove (53); A guardrail glass body (55) is installed in the cavity formed by the L-shaped frame (51) and the I-shaped frame (52); wherein, During the installation of the glass guardrail (5), first fixedly connect the L-shaped frame (51) with the window frame (1), and then connect the I-shaped frame (52) with the L-shaped frame (51) by clamping through the docking block (54) and the docking groove (53).
10. The installation method of the sliding window with strong sound insulation and heat insulation according to any one of claims 1-9, characterized in that It includes the following steps: H1. Install the sliding assembly (3), that is, install the corresponding sliding assembly (3) on the first window frame module (11), the second window frame module (12), and the glass window body (2); H2. Assemble the sound insulation and heat insulation module (13), that is, assemble the components of the sound insulation and heat insulation module (13) to form an integral module; H3. Install the integral sound insulation and heat insulation module (13), that is, insert the assembled sound insulation and heat insulation module (13) as a whole from one end of the first window frame module (11) and the second window frame module (12) to complete the installation with the first window frame module (11) and the second window frame module (12); H4. Install the glass window body (2), and finally install the glass window body (2) in the window frame (1).