High-toughness damping type door and window aluminum profile
The design of the clamp structure solves the problems of aesthetics and flexibility when installing aluminum profiles on sheet metal, achieving a stable connection and shock absorption effect.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- JIANGXI JINFENGHUANG ALUMINIUM CO LTD
- Filing Date
- 2025-05-21
- Publication Date
- 2026-05-05
AI Technical Summary
When installing aluminum profiles, the screw holes left after disassembly and reassembly affect the aesthetics and make them difficult to move, thus reducing their practicality.
The fixture structure, including a linkage block, a plug rod, an arc-shaped clamping block, and a compression spring, absorbs impact energy through sliding connection and elastic deformation, enabling flexible installation and vibration reduction of the sheet metal.
It enables flexible installation and stable connection of the panels, can adapt to different shapes, and absorbs impact energy through elastic deformation during vibration, reducing rigid impact.
Smart Images

Figure CN224200517U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of aluminum profile technology, specifically a high-toughness shock-absorbing aluminum profile for doors and windows. Background Technology
[0002] In the building decoration and interior design industry, aluminum profiles are widely used to make windows, doors and various partitions. Aluminum profiles are also widely loved by users for their lightness, beauty and fire resistance.
[0003] Application number CN202221722513.X discloses an aluminum profile for doors and windows, including an aluminum body. The aluminum body has first slots on both the front and rear sides of its top, with heat insulation plates installed inside the first slots. A second slot is formed near the center of the top of the aluminum body, with a sound insulation plate installed inside the second slot. The aluminum body has a first anti-corrosion coating. An aluminum cover plate is movably installed on the top of the aluminum body, with connecting plates installed on both sides of the bottom of the cover plate. Fixing bolts are movably installed on the upper sides of both left and right ends of the aluminum body. A first placement groove is formed in the center of the interior of the aluminum body. After installation, this aluminum profile can block direct sunlight through the heat insulation plates, preventing high temperatures and lowering the indoor temperature. Simultaneously, the sound insulation plates can effectively isolate noise and reduce indoor noise levels.
[0004] During use, this aluminum profile is fixed to the door and window frame with fixing bolts. The ample light near the window is ideal for drying clothes, quilts, and other items. However, conventional panels and this structure are usually installed with fastening bolts. After disassembly and reassembly, the structure will leave some screw holes, which affects the aesthetics. Furthermore, this structure cannot flexibly move the fixed panels according to the light intensity, reducing the practicality of the aluminum profile. Utility Model Content
[0005] The purpose of this invention is to provide a high-toughness, shock-absorbing aluminum profile for doors and windows, which solves the problem of convenient installation of drying panels.
[0006] To solve the above-mentioned technical problems, this utility model is achieved through the following technical solution:
[0007] This utility model relates to a high-toughness shock-absorbing aluminum profile for doors and windows, comprising an aluminum profile and a clamp. The clamp is slidably connected to the inner wall of the aluminum profile. The clamp includes two sets of linkage blocks. Insert rods are inserted into the inner walls on both sides of the linkage blocks. One end of each of the two insert rods is connected to an arc-shaped clamping block. Two sliding grooves are formed in the arc-shaped groove of the arc-shaped clamping block. Compression springs are fixedly provided on the inner walls of the two sliding grooves. The other end of each compression spring is connected to a protrusion, which is slidably connected to the inner wall of the sliding groove. The purpose of this setup is to align the vertical and horizontal frames of the aluminum profile during use using the aluminum profile via connecting rods and tighten them with screw fasteners to ensure a stable frame structure. Align the sliders on both sides of the clamp with the grooves in the aluminum profile's slide rail, and push it horizontally along the length of the slide rail until the clamp is fully embedded. Push the clamp along the slide rail to the preset installation position of the plate. Hold the threaded torsion bar at the top of the vertical strip, and gradually press down the bottom of the threaded torsion bar to fix the insertion rod; conversely, after the insertion rod is released, move the insertion rod to push the connecting block horizontally towards the center of the aluminum profile, thus attaching the plate to the... On one side of the arc-shaped clamping block, the plate presses the protruding protrusion and slides backward in the groove. The protrusion presses the compression spring, causing the compression spring to enter a pre-compression state and forming an initial clamping force. The arc-shaped clamping block clamps the plate with relatively smooth ends. The two plates can be placed parallel between the two protrusions. The upper and lower protrusions at both ends fix the plate in the lateral perimeter. This structure can flexibly adapt to the installation of plates of different shapes. When external vibration is transmitted to the arc-shaped clamping block, the protrusion slides in the groove and compresses the compression spring. The impact energy is absorbed through elastic deformation, reducing the rigid impact on the frame.
[0008] Furthermore, the clamp includes two sets of horizontal strips, each set consisting of two parallel horizontal strips arranged vertically, with the arc-shaped clamping block slidably connected to the inner wall of the two horizontal strips. The purpose of this arrangement is to limit the horizontal movement of the aluminum profile during use by using the arc-shaped clamping block on the two horizontal strips.
[0009] Furthermore, vertical strips are provided on the outer walls of the front ends of the two horizontal strips, and threaded torsion bars are threadedly connected to the inner walls of the vertical strips. The purpose of this arrangement is that, during the use of this aluminum profile, by holding the threaded torsion bar at the top of the vertical strip, the bottom end of the threaded torsion bar is gradually pressed down to fix the insert rod.
[0010] Furthermore, the bottom end of the threaded torsion bar extends through the vertical strip to the inner wall of the connecting block, and the bottom end of the threaded torsion bar abuts against the upper surface of the insert rod. The purpose of this arrangement is that during the use of the aluminum profile, the bottom end of the threaded torsion bar gradually presses down to fix the insert rod, and conversely, after the insert rod is released from fixation, moving the insert rod pushes the connecting block to move horizontally towards the center of the aluminum profile.
[0011] Furthermore, the aluminum profile includes two vertical frame plates, with slide rails vertically embedded on the inner walls of the two vertical frame plates. Slider blocks are installed on the inner walls of the two sets of horizontal strips on the side away from the vertical strips, and the sliders are slidably connected to the inner walls of the slide rails. The purpose of this arrangement is that, during the use of the aluminum profile, the sliders on both sides of the clamp are aligned with the grooves of the aluminum profile slide rails, and the clamp is pushed horizontally along the length of the slide rails until it is fully embedded. The clamp is then pushed along the slide rails to the preset installation position of the plate.
[0012] Furthermore, horizontal frames are respectively provided at the upper and lower ends of the inner sides of the two vertical frames. Connecting rods are parallel to each other at the connection points of the horizontal and vertical frames. Fixing members are threaded onto the inner walls of both ends of the connecting rods, and the fixing members on both sides are installed on the inner walls of the vertical and horizontal frames. The purpose of this arrangement is to ensure that, during the use of the aluminum profile, the vertical and horizontal frames are aligned via the connecting rods and tightened with the threaded fixing members, thus ensuring a stable frame structure. This structure also facilitates the disassembly and replacement of the vertical and horizontal frames.
[0013] This utility model has the following beneficial effects:
[0014] (1) This utility model uses a compression spring and an arc-shaped clamping block to attach the plate to one side of the arc surface of the arc-shaped clamping block. The plate squeezes the protruding protrusion and slides backward in the groove. The protrusion squeezes the compression spring to make the compression spring enter the pre-compression state and form an initial clamping force. The arc-shaped clamping block clamps the plate with relatively smooth ends. The two plates can be placed parallel between the two protrusions. The upper and lower protrusions at both ends fix the plate in the horizontal direction.
[0015] (2) By setting up fasteners and connecting rods, the vertical and horizontal frames of the aluminum profile are aligned with the connecting rods and tightened with fasteners to ensure the stability of the frame structure. This structure facilitates the disassembly and replacement of the vertical and horizontal frames.
[0016] Of course, any product implementing this utility model does not necessarily need to achieve all of the advantages described above at the same time. Attached Figure Description
[0017] To more clearly illustrate the technical solutions of the embodiments of this utility model, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0018] Figure 1 This is a schematic diagram of the main structure of the present utility model;
[0019] Figure 2 This is a schematic diagram of the aluminum profile structure of this utility model;
[0020] Figure 3 This is a schematic diagram of the fixture part of this utility model;
[0021] Figure 4 This is a schematic diagram of the internal structure of the clamp part of this utility model in cross section;
[0022] The attached diagram lists the components represented by each number as follows:
[0023] In the diagram: 1. Aluminum profile; 101. Vertical frame; 102. Horizontal frame; 103. Connecting rod; 104. Fixture; 105. Slide rail; 2. Clamp; 201. Horizontal strip; 202. Slider; 203. Vertical strip; 204. Threaded torsion bar; 205. Linking block; 206. Insert rod; 207. Arc-shaped clamping block; 208. Protrusion; 209. Slide groove; 210. Compression spring. Detailed Implementation
[0024] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0025] Please see Figures 1-4As shown, this utility model is a high-toughness shock-absorbing aluminum profile for doors and windows, including an aluminum profile 1 and a clamp 2. The clamp 2 is slidably connected to the inner wall of the aluminum profile 1. The clamp 2 includes two sets of linkage blocks 205. Insert rods 206 are inserted into the inner walls on both sides of the linkage blocks 205. One end of the two insert rods 206 is connected to an arc-shaped clamping block 207. Two sliding grooves 209 are opened in the arc-shaped groove of the arc-shaped clamping block 207. A compression spring 210 is fixedly provided on the inner wall of the two sliding grooves 209. The other end of the compression spring 210 is connected to a protrusion 208. The protrusion 208 is slidably connected to the inner wall of the sliding groove 209. The purpose of this setup is to align the vertical frame 101 and horizontal frame 102 of the aluminum profile with the connecting rod 103 during use, and tighten them with the fastener 104 to ensure a stable frame structure. Align the sliders 202 on both sides of the clamp 2 with the grooves of the aluminum profile slide rail 105, and push them horizontally along the length of the slide rail 105 until the clamp 2 is fully embedded. Push the clamp along the slide rail 105 to the preset installation position of the plate. Hold the threaded torsion bar 204 at the top of the vertical strip 203; gradually press down the bottom of the threaded torsion bar 204 to fix the insertion rod 206. Conversely, after the insertion rod 206 is released from fixation, move the insertion rod 206 to push the connecting block 205 horizontally towards the center of the aluminum profile. The plate is attached to one side of the arc surface of the arc-shaped clamp 207. The plate presses the protruding protrusion 208 and slides backward in the slide groove 209. The protrusion 208 compresses the compression spring 210, causing the compression spring 210 to enter a pre-compression state and form an initial clamping force. The arc-shaped clamp 207 clamps the plate with relatively smooth ends. The two plates can be placed parallel between the two protrusions 208. The upper and lower protrusions 208 at both ends fix the plate in the lateral perimeter. This structure can flexibly adapt to the installation of plates of different shapes. When external vibration is transmitted to the arc-shaped clamp 207, the protrusion 208 slides in the slide groove 209 and compresses the compression spring 210. The impact energy is absorbed through elastic deformation, reducing the rigid impact on the frame.
[0026] The clamp 2 includes two sets of horizontal strips 201, each set of which consists of two parallel horizontal strips 201 arranged vertically. Arc-shaped clamping blocks 207 are slidably connected to the inner walls of the two horizontal strips 201. The purpose of this arrangement is to limit the horizontal movement of the aluminum profile during use by restricting its movement at the upper and lower ends of the arc-shaped clamping blocks 207 on the two horizontal strips 201.
[0027] Vertical strips 203 are provided on the outer front end of the two horizontal strips 201, and threaded torsion bars 204 are threadedly connected to the inner wall of the vertical strips 203. The purpose of this arrangement is that during the use of the aluminum profile, by holding the threaded torsion bar 204 at the top of the vertical strip 203, the bottom end of the threaded torsion bar 204 is gradually pressed down to fix the insert 206.
[0028] The bottom end of the threaded torsion bar 204 extends through the vertical strip 203 to the inner wall of the connecting block 205, and the bottom end of the threaded torsion bar 204 abuts against the upper surface of the insert rod 206. The purpose of this arrangement is that during the use of the aluminum profile, the bottom end of the threaded torsion bar 204 gradually presses down to fix the insert rod 206, and conversely, after the insert rod 206 is released from fixation, moving the insert rod 206 pushes the connecting block 205 to move horizontally towards the center of the aluminum profile.
[0029] The aluminum profile 1 includes two vertical frame plates 101. Slide rails 105 are vertically embedded in the inner walls of the two vertical frame plates 101. Slider blocks 202 are installed on the inner walls of two sets of horizontal strips 201 on the side away from the vertical strips 203. The sliders 202 are slidably connected to the inner walls of the slide rails 105. The purpose of this arrangement is that, during the use of the aluminum profile, the sliders 202 on both sides of the clamp 2 are aligned with the grooves in the slide rails 105 of the aluminum profile, and the clamp is pushed horizontally along the length of the slide rails 105 until the clamp 2 is fully embedded. The clamp is then pushed along the slide rails 105 to the preset installation position of the plate.
[0030] Two horizontal frames 102 are respectively provided at the upper and lower ends of the inner sides of the two vertical frames 101. The connection points of the horizontal frames 102 and the vertical frames 101 are respectively covered by connecting rods 103 in parallel. The inner walls of the two ends of the connecting rods 103 are threaded with fasteners 104. The fasteners 104 on both sides are installed on the inner walls of the vertical frames 101 and the horizontal frames 102. The purpose of this arrangement is to align the vertical frames 101 and the horizontal frames 102 of the aluminum profile during use by connecting rods 103 and tighten them with fasteners 104 by thread, ensuring the stability of the frame structure. This structure facilitates the disassembly and replacement of the vertical frames 101 and the horizontal frames 102.
[0031] During use, align the vertical frame 101 and horizontal frame 102 of the aluminum profile using the connecting rod 103, and tighten them with the fastener 104 to ensure a stable frame structure. Align the sliders 202 on both sides of the clamp 2 with the grooves of the aluminum profile slide rail 105, and push them horizontally along the length of the slide rail 105 until the clamp 2 is fully embedded. Push the clamp along the slide rail 105 to the preset installation position of the plate. Hold the threaded torsion bar 204 at the top of the vertical strip 203 and gradually press down the bottom of the threaded torsion bar 204 to fix the insertion rod 206. Conversely, after the insertion rod 206 is released from fixation, move the insertion rod 206 to push the connecting block 205 horizontally towards the center of the aluminum profile to attach the plate. On one side of the arc surface of the arc-shaped clamping block 207, the plate presses the protruding protrusion 208 and slides backward in the slide groove 209. The protrusion 208 compresses the compression spring 210, causing the compression spring 210 to enter a pre-compression state and form an initial clamping force. The arc-shaped clamping block 207 clamps the plate with relatively smooth ends. The two plates can be placed parallel between the two protrusions 208. The upper and lower protrusions 208 at both ends fix the plate in the lateral perimeter. This structure can flexibly adapt to the installation of plates of different shapes. When external vibration is transmitted to the arc-shaped clamping block 207, the protrusion 208 slides in the slide groove 209 and compresses the compression spring 210. The impact energy is absorbed through elastic deformation, reducing the rigid impact on the frame.
[0032] The preferred embodiments of this utility model disclosed above are merely illustrative of the present utility model. These preferred embodiments do not exhaustively describe all details, nor do they limit the utility model to the specific implementations described. Clearly, many modifications and variations can be made based on the content of this specification. This specification selects and specifically describes these embodiments to better explain the principles and practical applications of this utility model, thereby enabling those skilled in the art to better understand and utilize it. This utility model is limited only by the claims and their full scope and equivalents.
Claims
1. A high-toughness, shock-absorbing aluminum profile for doors and windows, comprising an aluminum profile (1) and a clamp (2), characterized in that: The clamp (2) is slidably connected to the inner wall of the aluminum profile (1). The clamp (2) includes two sets of linkage blocks (205). Insert rods (206) are inserted into the inner walls on both sides of the linkage blocks (205). One end of the two insert rods (206) is connected to an arc-shaped clamping block (207). Two sliding grooves (209) are opened in the arc-shaped groove of the arc-shaped clamping block (207). A compression spring (210) is fixedly provided on the inner wall of the two sliding grooves (209). The other end of the compression spring (210) is connected to a protrusion (208). The protrusion (208) is slidably connected to the inner wall of the sliding groove (209).
2. The high-toughness shock-absorbing aluminum profile for doors and windows according to claim 1, characterized in that: The clamp (2) includes two sets of horizontal strips (201), each set of horizontal strips (201) is arranged in two parallel vertical positions, and the arc-shaped clamping block (207) is slidably connected to the inner wall of the two horizontal strips (201).
3. The high-toughness shock-absorbing aluminum profile for doors and windows according to claim 2, characterized in that: The front outer walls of the two horizontal strips (201) are provided with vertical strips (203), and the inner walls of the vertical strips (203) are threaded with threaded torsion bars (204).
4. The high-toughness shock-absorbing aluminum profile for doors and windows according to claim 3, characterized in that: The bottom end of the threaded torsion bar (204) extends through the vertical strip (203) to the inner wall of the linkage block (205), and the bottom end of the threaded torsion bar (204) abuts against the upper surface of the insert rod (206).
5. The high-toughness shock-absorbing aluminum profile for doors and windows according to claim 3, characterized in that: The aluminum profile (1) includes two vertical frame plates (101), and slide rails (105) are vertically embedded on the inner walls of the two vertical frame plates (101). Slider blocks (202) are installed on the inner walls of the two sets of horizontal strips (201) away from the vertical strips (203), and the sliders (202) are slidably connected to the inner walls of the slide rails (105).
6. The high-toughness shock-absorbing aluminum profile for doors and windows according to claim 5, characterized in that: The two vertical frame frames (101) are respectively provided with horizontal frame frames (102) at the upper and lower ends of their inner sides. The connection between the horizontal frame frames (102) and the vertical frame frames (101) is covered with connecting rods (103) in parallel. The inner walls of the two ends of the connecting rods (103) are threaded with fasteners (104). The fasteners (104) on both sides are installed on the inner walls of the vertical frame frames (101) and the horizontal frame frames (102).
Citation Information
Patent Citations
Aluminum profile for doors and windows
CN218234827U