Efficient and fast-assembly heat preservation and heat insulation glass installation auxiliary frame and glass installation structure
By designing a glass installation auxiliary frame with symmetrical glass slots and fixing hole groups, the problems of high installation precision and complex sealing of traditional aluminum auxiliary frames are solved, and efficient and fast installation of glass curtain walls is achieved, which improves installation efficiency and sealing reliability and reduces construction costs.
Patent Information
- Application Number
- CN202511077311.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-01
- Publication Date
- 2025-09-26
AI Technical Summary
Traditional aluminum frames have high requirements for installation precision and technical proficiency in glass curtain wall installation. The sealing process is complicated and prone to problems such as water leakage and air leakage, resulting in long construction periods and increased costs.
An efficient and quick-install thermal insulation glass installation frame is designed. It adopts symmetrically arranged glass slots and evenly distributed fixing holes. Combined with the matching of U-shaped slot width and glass thickness and eccentric design, it simplifies the glass pre-positioning and fixing process, reduces the dependence on workers' technical proficiency, and ensures basic positioning accuracy and sealing reliability through structural design.
It achieves rapid pre-positioning of glass and simplifies the installation process, reduces the risk of rework, improves installation efficiency, enhances sealing reliability, shortens construction period, reduces costs, and improves construction economy.
Smart Images

Figure CN120701045A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of glass curtain wall installation, and in particular to an efficient and quick-installation thermal insulation glass installation auxiliary frame and a glass installation structure. Background Art
[0002] In curtain wall glass installation, aluminum auxiliary frames are widely used due to their light weight and ease of processing. However, during installation, traditional aluminum auxiliary frames need to be precisely sized and aligned with the glass and main frame, placing extremely high demands on installation precision. This requires workers to have a high level of technical proficiency and repeated adjustments during operation to ensure the fit. Furthermore, when applying glue and sealing after fixing, it is also necessary to ensure that the glue layer is uniform and continuous, without bubbles or gaps, to avoid water and air leakage due to improper sealing. This step requires strict operational meticulousness and often requires slow application and careful inspection. Any dimensional deviation, misalignment, or unqualified glue application can lead to uneven stress on the glass and seal failure, necessitating rework and correction, further extending the construction period and significantly increasing the time and cost of the installation process. Summary of the Invention
[0003] In response to the shortcomings of the existing technology, the present invention designs an efficient and quick-install thermal insulation glass installation frame, which is characterized by comprising: a glass installation frame with a long strip structure, and a glass card slot and a fixing hole group arranged on the glass installation frame; there are two glass card slots, both of which are arranged along the length direction of the glass installation frame, and are symmetrically arranged on both sides of the glass installation frame along the center line of the width direction of the glass installation frame, and the edges of the glass to be installed are adapted to be installed in the glass card slots; there are multiple fixing hole groups, and the multiple fixing hole groups are evenly arranged between the two glass card slots along the length direction of the glass installation frame, and the fixing hole groups are used to pass through the fixing parts to install the glass installation frame on the glass keel.
[0004] Preferably, the cross-section of the glass slot is a U-shaped structure, and the width of the glass slot is adapted to the thickness of the glass.
[0005] Preferably, the glass slot is eccentrically arranged along the thickness direction of the glass mounting frame with the center line of the glass mounting frame as the reference, and the slot wall thickness close to the glass keel is greater than the slot wall thickness away from the glass keel.
[0006] Preferably, the fixing hole group includes: a fixing hole and a sealing hole; the fixing hole and the sealing hole are coaxially arranged, and the fixing hole is connected to the sealing hole; the inner diameter of the fixing hole is smaller than the inner diameter of the sealing hole; the fixing hole is used to pass through the fixing piece to install the glass mounting frame on the glass keel; a sealing piece is adapted to be installed in the sealing hole.
[0007] Preferably, the outer corners of the edges of the glass mounting frame are all provided with chamfers, and the chamfers are rounded.
[0008] Preferably, a shock-absorbing platform is also provided on the outer side wall of the glass mounting auxiliary frame; there are two shock-absorbing platforms, both of which are arranged along the length direction of the glass mounting auxiliary frame, and are symmetrically arranged on the upper and lower sides of the outer side wall of the glass mounting auxiliary frame along the center line of the width direction of the glass mounting auxiliary frame, for buffering vibration between the glass mounting auxiliary frame and the glass keel.
[0009] Preferably, the glass mounting auxiliary frame is made of a heat-insulating material with a thermal conductivity coefficient lower than 0.2 W / (m·K).
[0010] Based on the same design concept, the present invention provides a glass installation structure using a glass installation auxiliary frame, including: glass, a glass installation auxiliary frame, a fixing part and a sealing part; the edge of the glass is installed in the glass card groove of the glass installation auxiliary frame; the fixing part passes through the fixing hole group of the glass installation auxiliary frame and is installed on the glass keel; the sealing part is installed in the fixing hole group of the glass installation auxiliary frame and is located on the outside of the fixing part.
[0011] Compared with the closest prior art, the present invention has the following beneficial effects:
[0012] 1. The two glass slots of the present invention are symmetrically arranged along the center line of the width direction of the auxiliary frame and extend along the length direction. The edge of the glass can be directly inserted into the slot to achieve quick pre-positioning. There is no need to repeatedly adjust the relative position of the glass and the auxiliary frame like traditional aluminum auxiliary frames. This reduces the requirements for workers' technical proficiency, reduces the operation time caused by size matching deviation, simplifies the positioning process, and reduces the dependence on installation accuracy.
[0013] 2. The multiple fixing hole groups of the present invention are evenly distributed between the two glass slots, providing clear installation points for the fixing parts, avoiding the steps of on-site marking and drilling required in traditional installation; the regular layout of the fixing hole groups can directly correspond to the preset installation positions of the glass keel, reducing the alignment adjustment time during fixing, speeding up the fixing rhythm of the auxiliary frame and the keel, improving the fixing efficiency, and shortening the installation cycle.
[0014] 3. The symmetrical structure of the glass slot and the uniform distribution of the fixing hole group of the present invention ensure the basic alignment accuracy between the glass and the auxiliary frame, and between the auxiliary frame and the keel from the perspective of structural design, reducing the problem of uneven force on the glass caused by manual operation deviation; at the same time, the clear installation points can avoid the tilt of the auxiliary frame caused by the misalignment of the fixing parts, reduce the risk of rework caused by subsequent basic installation problems, reduce basic errors, and reduce the probability of rework.
[0015] 4. The present invention sets the glass slot to a U-shaped cross-section and matches the slot width with the glass thickness. The glass can be directly inserted into the slot to achieve pre-positioning without repeated adjustment of size alignment, reducing dependence on workers' technical proficiency; the uniform distribution of the fixing hole group and the coaxial design of the fixing hole and the blocking hole enable the fixing parts to be quickly penetrated and positioned, simplifying the installation process, shortening the time consumed for a single installation, improving installation efficiency, and reducing operational difficulty.
[0016] 5. The symmetrical setting and eccentric structural design of the glass slot of the present invention can adapt to different installation scenarios through the difference in slot wall thickness, reducing the problem of uneven force on the glass caused by dimensional deviation; the buffering effect of the shock-absorbing platform can reduce vibration interference during installation, indirectly improve the alignment accuracy of the auxiliary frame and the glass keel, structurally reduce the need for rework such as misalignment and offset, ensure installation accuracy, and reduce the risk of rework.
[0017] 6. The tight fit between the glass slot and the glass edge and the full coverage design of the fixing hole group by the sealing piece of the present invention can reduce the dependence of traditional gluing and sealing on the meticulous operation, and achieve basic sealing through structural adaptation; combined with the low thermal conductivity of the insulation material, it can not only avoid water and air leakage caused by improper sealing, but also enhance the thermal insulation effect, optimize the sealing reliability, and reduce the risk of leakage.
[0018] 7. The present invention's efficient pre-positioning structure, simplified fixing process and reduced rework rate significantly shorten the overall construction period; at the same time, the chamfered safety design reduces unexpected pauses during installation, and the protective effect of the shock-absorbing platform on the auxiliary frame extends its service life, reducing time and economic costs from both the construction and maintenance ends, saving time costs and improving construction economy. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 This is a structural diagram of the glass installation frame of the present invention.
[0020] Figure 2 This is a schematic diagram of the first structure of the glass mounting frame at the hole position of the present invention.
[0021] Figure 3 This is a second structural schematic diagram of the glass of the present invention with the auxiliary frame installed at the hole position.
[0022] Figure 4 This is a schematic diagram of the glass installation structure of the present invention.
[0023] Figure 5 This is a schematic diagram of the fixing structure of the glass mounting frame of the present invention.
[0024] Figure 6 Schematic diagram of the structure of the fixing member of the present invention.
[0025] Figure 7 Schematic diagram of the structure of the blocking member of the present invention.
[0026] Reference numerals:
[0027] 1-Glass, 2-Glass mounting frame, 21-Glass slot, 22-Fixing hole group, 23-Fixing hole, 24-Blocking hole, 25-Chamfer, 26-Vibration damping platform, 3-Fixer, 4-Blocking part. DETAILED DESCRIPTION
[0028] The technical solutions in the embodiments of the present invention will be described clearly and completely below with reference to the accompanying drawings in the embodiments of the present invention.
[0029] Example 1
[0030] like Figure 1-Figure 7 As shown, the present invention provides an efficient and quick-install thermal insulation glass installation frame, which is characterized in that it includes: a glass installation frame 2 with a long strip structure, and a glass card slot 21 and a fixing hole group 22 arranged on the glass installation frame 2; there are two glass card slots 21, and the two glass card slots 21 are arranged along the length direction of the glass installation frame 2, and are symmetrically arranged on both sides of the glass installation frame 2 along the center line of the width direction of the glass installation frame 2, and the edges of the glass 1 to be installed are adapted to be installed in the glass card slot 21; there are multiple fixing hole groups 22, and the multiple fixing hole groups 22 are evenly arranged between the two glass card slots 21 along the length direction of the glass installation frame 2, and the fixing hole group 22 is used to pass through the fixing piece 3 to install the glass installation frame 2 on the glass keel. The two glass slots 21 are symmetrically arranged along the centerline of the width of the auxiliary frame and extend along its length. The glass edge can be directly inserted into the slots for quick pre-positioning, eliminating the need for repeated adjustment of the relative position of the glass and the auxiliary frame as with traditional aluminum auxiliary frames. This reduces the technical proficiency requirements for workers, reduces the time spent on operations due to size mismatching, simplifies the positioning process, and reduces the reliance on installation accuracy. Multiple fixing hole groups 22 are evenly distributed between the two glass slots, providing clear installation points for the fixing parts 3 and avoiding the on-site marking and drilling steps required in traditional installations. The regular layout of the fixing hole groups directly corresponds to the preset installation positions of the glass keel, reducing the alignment adjustment time during fixing, speeding up the fixing rhythm of the auxiliary frame and keel, improving fixing efficiency, and shortening the installation cycle. The symmetrical structure of the glass slot and the even distribution of the fixing hole group ensure the basic alignment accuracy between the glass and the auxiliary frame, and between the auxiliary frame and the keel from the structural design, reducing the problem of uneven force on the glass caused by manual operation deviation; at the same time, the clear installation points can avoid the tilt of the auxiliary frame caused by the misalignment of the fixing parts, reduce the risk of rework caused by subsequent basic installation problems, reduce basic errors, and reduce the probability of rework.
[0031] In a preferred embodiment, the glass slot 21 has a U-shaped cross-section, and its width matches the thickness of the glass 1. By configuring the glass slot 21 with a U-shaped cross-section and a width that matches the glass thickness, the glass can be directly inserted into the slot for pre-positioning, eliminating the need for repeated dimensional adjustments and alignment, reducing reliance on worker proficiency. The even distribution of the fixing hole groups 22 and the coaxial design of the fixing holes 23 and the blocking holes 24 allow the fixing member 3 to be quickly inserted and positioned, simplifying the installation process, shortening the time required for a single installation, improving installation efficiency, and reducing operational difficulty.
[0032] In a preferred embodiment, the glass retaining groove 21 is eccentrically positioned along the thickness of the glass mounting frame 2, with the groove wall thickness closer to the glass stud being greater than the wall thickness farther from the frame. The symmetrical arrangement and eccentric structural design of the glass retaining groove 21 adapts to different installation scenarios by varying the groove wall thickness, reducing uneven force on the glass caused by dimensional deviations. The cushioning effect of the vibration damping platform 26 reduces vibration interference during installation, indirectly improving the alignment accuracy of the frame and glass stud. This structurally reduces the need for rework due to misalignment or offset, ensuring installation accuracy and reducing the risk of rework.
[0033] In a preferred embodiment, the fixing hole group 22 includes a fixing hole 23 and a blocking hole 24. The fixing hole 23 and the blocking hole 24 are coaxially arranged and interconnected. The inner diameter of the fixing hole 23 is smaller than that of the blocking hole 24. The fixing hole 23 is used to pass a fixing member 3 to mount the glass mounting frame 2 on the glass keel. The blocking member 4 is adapted to be mounted within the blocking hole 24. The tight fit of the glass slot 21 against the glass edge and the full coverage of the fixing hole group 22 by the blocking member 4 reduce the reliance on meticulous workmanship of traditional caulking and achieve a basic seal through structural adaptation. Combined with the low thermal conductivity of the insulation material, this design not only prevents water and air leakage caused by improper sealing, but also enhances thermal insulation, optimizes sealing reliability, and reduces the risk of leakage.
[0034] In a preferred embodiment, the outer corners of the edges of the glass mounting frame 2 are all provided with chamfers 25 , and the chamfers 25 are rounded.
[0035] In a preferred embodiment, the outer wall of the glass mounting frame 2 is further provided with a vibration-damping platform 26. Two vibration-damping platforms 26 are provided, each extending along the length of the glass mounting frame 2 and symmetrically positioned on the upper and lower sides of the outer wall of the glass mounting frame 2 along the centerline of the width of the glass mounting frame 2. These platforms are used to cushion vibrations between the glass mounting frame 2 and the glass keel. The efficient pre-positioning structure, simplified fixing process, and reduced rework rate significantly shorten the overall construction period. Furthermore, the safety design of the chamfer 25 reduces unexpected stops during installation, and the protective effect of the vibration-damping platform 26 on the frame extends its service life, reducing time and economic costs for both construction and maintenance, saving time and costs, and improving construction economics.
[0036] In a preferred embodiment, the glass mounting auxiliary frame 2 is made of a heat-insulating material with a thermal conductivity coefficient lower than 0.2 W / (m·K).
[0037] Based on the same design concept, the present invention provides a glass installation structure using a glass installation auxiliary frame, including: glass 1, a glass installation auxiliary frame 2, a fixing member 3 and a blocking member 4; the edge of the glass 1 is installed in the glass card groove 21 of the glass installation auxiliary frame 2; the fixing member 3 passes through the fixing hole group 22 of the glass installation auxiliary frame 2 and is installed on the glass keel; the blocking member 4 is installed in the fixing hole group 22 of the glass installation auxiliary frame 2 and is located on the outside of the fixing member 3.
[0038] In the description of the present application, it should be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside", "clockwise", "counterclockwise", "axial", "radial", "circumferential" and the like indicate orientations or positional relationships based on the orientations or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be understood as a limitation on the present application.
[0039] Furthermore, the terms "above" and "below" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features being referred to. Thus, a feature defined as "above" or "below" may explicitly or implicitly include at least one such feature. Throughout the description of this application, "plurality" means at least two, for example, two, three, etc., unless otherwise specifically defined.
[0040] In this application, unless otherwise specified or limited, the terms "installed," "connected," "connect," "fixed," etc. should be understood in a broad sense. For example, they can refer to fixed connection, detachable connection, or integration; mechanical connection, electrical connection, or communication; direct connection or indirect connection through an intermediate medium; internal communication between two elements or interaction between two elements, unless otherwise specified. Those skilled in the art will understand the specific meanings of the above terms in this application based on specific circumstances.
[0041] In this application, the terms "one embodiment", "some embodiments", "examples", "specific examples", or "some examples" mean that the specific features, structures, materials or characteristics described in conjunction with the embodiment or example are included in at least one embodiment or example of the present application. In this specification, the schematic representations of the above terms do not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner. In addition, those skilled in the art can combine and combine different embodiments or examples described in this specification and the features of different embodiments or examples without contradiction.
[0042] The above are merely preferred embodiments of the present invention and are not intended to limit the present invention. Those skilled in the art will readily appreciate that various modifications and variations of the present invention are possible. Any modifications, equivalent substitutions, or improvements made within the spirit and principles of the present invention are intended to be within the scope of the pending claims.
Claims
1. An efficient and quick-install thermal insulation glass installation frame, characterized in that: include: A glass mounting auxiliary frame (2) of a long strip structure, and a glass clamping groove (21) and a fixing hole group (22) provided on the glass mounting auxiliary frame (2); There are two glass card slots (21), both of which are arranged along the length direction of the glass mounting auxiliary frame (2) and are symmetrically arranged on both sides of the glass mounting auxiliary frame (2) along the center line of the width direction of the glass mounting auxiliary frame (2), and the edges of the glass (1) to be mounted are adapted to be mounted in the glass card slots (21); The number of the fixing hole groups (22) is multiple, and the multiple fixing hole groups (22) are evenly arranged between the two glass clamping grooves (21) along the length direction of the glass installation auxiliary frame (2). The fixing hole groups (22) are used to pass through the fixing member (3) to install the glass installation auxiliary frame (2) on the glass keel.
2. The high-efficiency quick-install thermal insulation glass installation frame according to claim 1, characterized in that: The cross section of the glass clamping groove (21) is a U-shaped structure, and the groove width of the glass clamping groove (21) is adapted to the thickness of the glass (1).
3. The high-efficiency quick-install thermal insulation glass installation frame according to claim 1, characterized in that: The glass clamping groove (21) is eccentrically arranged along the thickness direction of the glass mounting auxiliary frame (2) with the center line of the thickness direction of the glass mounting auxiliary frame (2) as a reference, and the groove wall thickness on the side close to the glass keel is greater than the groove wall thickness on the side away from the glass keel.
4. The high-efficiency quick-install thermal insulation glass installation frame according to claim 1, characterized in that: The fixing hole group (22) includes: a fixing hole (23) and a blocking hole (24); The fixing hole (23) and the blocking hole (24) are coaxially arranged, and the fixing hole (23) is communicated with the blocking hole (24); The inner diameter of the fixing hole (23) is smaller than the inner diameter of the blocking hole (24); The fixing hole (23) is used to pass the fixing piece (3) to install the glass mounting frame (2) on the glass keel; A blocking piece (4) is adapted to be installed in the blocking hole (24).
5. The high-efficiency quick-install thermal insulation glass installation frame according to claim 1, characterized in that: The outer corners of the edges of the glass mounting auxiliary frame (2) are all provided with chamfers (25), and the chamfers (25) are rounded.
6. The high-efficiency quick-install thermal insulation glass installation frame according to claim 1, characterized in that: A vibration-damping platform (26) is also provided on the outer side wall of the glass mounting auxiliary frame (2); There are two vibration damping platforms (26), both of which are arranged along the length direction of the glass mounting auxiliary frame (2), and are symmetrically arranged on the upper and lower sides of the outer side wall of the glass mounting auxiliary frame (2) along the center line of the width direction of the glass mounting auxiliary frame (2), for buffering vibration between the glass mounting auxiliary frame (2) and the glass keel.
7. The high-efficiency and quick-install thermal insulation glass installation frame according to claim 1, characterized in that: The glass installation auxiliary frame (2) is made of a heat-insulating material with a thermal conductivity coefficient lower than 0.2 W / (m·K).
8. A glass installation structure using a glass installation frame, characterized in that: include: Glass (1), glass mounting frame (2), fixing member (3) and blocking member (4); The edge of the glass (1) is installed in the glass slot (21) of the glass installation frame (2); The fixing member (3) passes through the fixing hole group (22) of the glass mounting auxiliary frame (2) and is installed on the glass keel; The blocking member (4) is installed in the fixing hole group (22) of the glass mounting auxiliary frame (2) and is located outside the fixing member (3).