Aluminum alloy door with clamping chamber
By adding a fixing structure to the bottom of the glass of the aluminum alloy door with a retaining rod and a side sash, the problem of the glass in narrow-bezel aluminum alloy doors being easily damaged by impacts is solved, improving the glass's impact resistance and stability, and reducing costs.
Patent Information
- Application Number
- CN202520111687.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-17
- Publication Date
- 2026-01-02
- Estimated Expiration
- 2035-01-17
AI Technical Summary
Narrow-frame aluminum alloy doors have glass bottoms that are too close to the ground, making them susceptible to breakage from impacts, posing a safety hazard and shortening their lifespan.
A clamping stile is added between the bottom of the glass and the lower stile. The clamping stile, together with the side stiles and the lower stile, forms a fixing structure that holds the glass in place, thereby strengthening the bottom of the glass and the fixing structure. The clamping mechanism further enhances the stability of the glass.
It improves the glass's impact resistance, reduces the probability of breakage, ensures the stability and safety of glass installation, and saves on the use of profiles, thus reducing costs.
Smart Images

Figure CN223753948U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to door technical field, concretely relates to a kind of aluminium alloy doors with hall. BACKGROUND
[0002] In recent years, narrow edge aluminium alloy door is widely favored by market with its large light-transmitting area and wide field of view. However, in the prior art, in order to pursue larger light-transmitting area and profile saving, the aluminium alloy door leaf of four-side group angle usually adopts narrower profile structure design. Although this design meets the strength requirement of door leaf while improving overall appearance, it also brings new problems: the glass area of door body bottom close to ground in 10 to 30 cm range lacks effective protection, becoming high-risk area vulnerable to collision. When impacted by external force, especially collision of objects such as trolley or child bicycle, it is extremely easy to cause glass breakage, which not only affects service life, but also has great safety hazard. SUMMARY
[0003] The utility model provides an aluminium alloy door with hall, which aims to solve the problem that the glass bottom of narrow edge aluminium alloy door body is too close to ground and easy to break by adding hall stave in collision high-risk area.
[0004] The utility model technical scheme is as follows:
[0005] An aluminium alloy door with hall includes fan stave fixed around glass, wherein the bottom fan stave is lower fan stave, and the left and right fan staves are side fan staves; a hall stave is further arranged between the lower fan stave and the glass; the top of the hall stave is connected with the bottom of the glass; the bottom of the hall stave is connected with the top of the lower fan stave; and the left and right ends of the hall stave are connected with the side fan staves.
[0006] Further, a first arc-shaped pressing strip is arranged at the top of the outdoor side of the hall stave, and a glass pressing strip is clamped at the top of the indoor side; a glass mounting cavity is formed between the first arc-shaped pressing strip and the glass pressing strip; and a pad is arranged on the bottom surface of the glass mounting cavity.
[0007] Further, a first fixing rib and a first limiting rib are arranged at the bottom of the outdoor side of the hall stave; a second mounting rib is arranged at the top of the outdoor side of the lower fan stave; a second arc-shaped pressing strip is arranged on the second mounting rib; the bottom surface of the first fixing rib abuts against the top surface of a fixed step between the second mounting rib and the second arc-shaped pressing strip; the first fixing rib is in close contact with the lower end side surface of the second arc-shaped pressing strip through the inclined surface of the inner wall of the first fixing rib; and the end of the second arc-shaped pressing strip is clamped between the first limiting rib and the first fixing rib.
[0008] Further, the indoor side bottom of the jammer is provided with a second fixing rib, and the lower end of the second fixing rib is provided with a support step; the indoor side top of the lower sash is provided with a first L-shaped mounting rib; and the support step is connected with the first L-shaped mounting rib.
[0009] Optionally, the jammer is a broken bridge structure, comprising a first jammer profile on the outdoor side, a second jammer profile on the indoor side, and a heat insulation assembly connecting the first jammer profile and the second jammer profile.
[0010] Optionally, the lower sash is a broken bridge structure, comprising a first lower sash profile on the outdoor side, a second lower sash profile on the indoor side, and a heat insulation assembly connecting the first lower sash profile and the second lower sash profile.
[0011] Compared with the prior art, the utility model has the following positive effects:
[0012] (1) By adding the jammer with a certain height in the high-risk area of collision between the lower sash and the glass, the distance between the glass bottom and the ground is increased, and the probability of glass breakage caused by collision is reduced.
[0013] (2) By setting the first fixing rib for being connected with the fixed step, the first limiting rib for being connected with the top of the second arc-shaped pressing strip of the first lower sash profile on the bottom of the first jammer profile, and the second fixing rib for being connected with the first L-shaped mounting rib on the upper end of the second lower sash profile on the bottom of the second jammer profile, not only the firm connection between the jammer and the lower sash is realized, but also the lower sash and other sashes retain the same structure, the type of profile is reduced, the raw material is saved, and the cost is reduced.
[0014] (3) By setting the first arc-shaped pressing strip on the upper part of the first jammer profile and the glass pressing strip above the second jammer profile, the glass bottom is clamped and installed in the glass mounting cavity on the upper part of the jammer, and by setting the gasket in the glass mounting cavity on the top of the jammer, stable support is provided for the glass bottom. At the same time, the original side sash on both sides provides clamping force for the glass, ensuring that the glass installation is safe and stable. BRIEF DESCRIPTION OF DRAWINGS
[0015] Figure 1 It is a schematic view of the door leaf of the utility model;
[0016] Figure 2 It is Figure 1 the A-A sectional view in the middle;
[0017] Figure 3 It is Figure 1 the B-B sectional view in the middle, used for indicating the cooperation relationship between the side sash and the frame, and the frame is indicated by a dashed line;
[0018] Figure 4 It is a structural schematic view of the jammer;
[0019] Figure 5 The structure diagram of the lower sash stile. DETAILED DESCRIPTION
[0020] The technical solutions and technical effects of the utility model will be described in detail below with reference to the drawings. Obviously, the described embodiments are only part of the embodiments of the utility model, not all of the embodiments.
[0021] As Figure 1 An aluminum alloy door with a hall is provided, which comprises sash stiles fixed around the glass, wherein the bottom sash stile is a lower sash stile 3, the left and right sash stiles are side sash stiles 1, and an upper sash stile is further provided at the top, and the upper sash stile and the side sash stiles 1 are connected with the glass. A hall stile 2 is further provided between the lower sash stile 3 and the glass, the top of the hall stile 2 is connected with the bottom of the glass, the bottom of the hall stile 2 is connected with the top of the lower sash stile 3, and the left and right ends of the hall stile 2 are connected with the side sash stiles 1.
[0022] As Figure 2 , Figure 4 and Figure 5 , the hall stile 2 and the sash stiles are both broken bridge structures. The hall stile 2 comprises a first hall profile 2-1 and a second hall profile 2-2, which are connected through a heat insulation assembly. The lower sash stile 3 comprises a first lower stile profile 3-1 arranged on the outdoor side and a second lower stile profile 3-2 arranged on the indoor side, which are connected through a heat insulation assembly.
[0023] As Figure 2 and Figure 4 , the upper part of the outer wall of the first hall profile 2-1 is provided with a first mounting rib 2-1-1, and the end of the first mounting rib 2-1-1 is provided with a first arc-shaped pressing strip 2-1-3 with a first adhesive strip groove 2-1-2. The lower part of the first hall profile 2-1 is provided with a first fixing rib 2-1-4 with an inclined inner wall and a first limiting rib 2-1-5 located on the inner side of the first fixing rib 2-1-4. The top surface of the second hall profile 2-2 is provided with a first mounting groove 2-2-1, and the bottom is provided with a second fixing rib 2-2-2 with a support step 2-2-3 at the lower end. The first mounting groove 2-2-1 is provided with a glass pressing strip 4. Specifically, the inner walls on both sides of the first mounting groove 2-2-1 are provided with clamping parts for clamping the second connecting rib 4-2 and the third connecting rib 4-3 of the glass pressing strip 4. The glass pressing strip 4 comprises a first connecting rib 4-1 with a sawtooth inner surface.
[0024] As Figure 2 and Figure 5The first lower jamb profile 3-1 includes a second mounting rib 3-1-1 extending upwardly from the outer wall, and the upper end of the second mounting rib 3-1-1 is provided with a second arc-shaped pressing strip 3-1-3 with a second rubber strip groove 3-1-4, and a fixed step 3-1-2 is arranged between the second mounting rib 3-1-1 and the second arc-shaped pressing strip 3-1-3. The upper end of the second lower jamb profile 3-2 is provided with a first L-shaped mounting rib 3-2-1, and the lower end is provided with a second limiting rib 3-2-4 and a second L-shaped mounting rib 3-2-2.
[0025] As shown in Figure 2 and 4 The connection mode between the lower end of the glass and the aisle jamb 2 is that a glass mounting cavity is arranged between the first rubber strip groove 2-1-2 and the first connecting rib 4-1, and the bottom of the glass mounting cavity is provided with a cushion block 7. The lower end of the glass is clamped between the first arc-shaped pressing strip 2-1-3 and the glass pressing strip 4, and the bottom surface of the glass is in contact with the cushion block 7.
[0026] As shown in Figure 2 and 5 The connection mode between the lower end of the aisle jamb 2 and the upper end of the lower jamb 3 is that on the outdoor side, the bottom surface of the first fixed rib 2-1-4 abuts against the top surface of the fixed step 3-1-2 of the lower jamb 3, the inclined surface of the inner wall of the first fixed rib 2-1-4 is in close contact with the lower end side surface of the second arc-shaped pressing strip 3-1-3, and the end of the second arc-shaped pressing strip 3-1-3 is clamped between the first fixed rib 2-1-4 and the first limiting rib 2-1-5. On the indoor side, the second fixed rib 2-2-2 is clamped with the first L-shaped mounting rib 3-2-1 through the supporting step 2-2-3.
[0027] As shown in Figure 3 The side jamb 1 is a broken bridge structure, including a first side jamb profile 1-1 arranged on the outdoor side and a second side jamb profile 1-2 arranged on the indoor side, and the two are connected through a heat insulation assembly. The second side jamb profile 1-2 has a glass pressing strip 4 clamped at one end, and a firm supporting structure is formed between the clamped part and the second side jamb profile 1-2. The left and right sides of the glass are clamped and installed between the arc-shaped pressing strip and the glass pressing strip 4 through the rubber strip.
[0028] Since the bottom of the aisle jamb 2 is connected with the lower jamb 3, the top is connected with the glass, and the left and right sides of the glass are respectively connected with the side jamb 1, the stability is good, so even if the left and right ends of the aisle jamb 2 only contact with the side jamb 1, the aisle jamb 2 also has good stability and will not fall off when stressed. In order to further improve the stability and reduce the influence of the aisle jamb 2 on the glass when stressed, the end of the aisle jamb 2 can be further connected with the corresponding side jamb, for example, a connecting plate is added, one side of the connecting plate is clamped with the end of the aisle jamb 2 or connected through a screw, and the other side is clamped or connected with the side jamb 1 through a screw.
[0029] Further, as shown inFigure 5 The dustproof strip 5 is fixed below the second jamb profile 3-2 by screws. The dustproof strip 5 comprises a second mounting groove 5-4 for mounting the screws, and the screws are connected to the mounting plate 3-2-3 of the second jamb profile 3-2 after passing through the fixing plate 5-2 at the top end of the second mounting groove 5-4. The top surface of the fixing plate 5-2 is in contact with the bottom surface of the second L-shaped mounting rib 3-2-2, and a third limiting rib 5-5 is arranged on the fixing plate 5-2 for blocking the second L-shaped mounting rib 3-2-2. The dustproof strip 5 further comprises a dustproof plate 5-3 which is connected perpendicularly to the fixing plate 5-2 and is flush with the outer wall of the second jamb profile 3-2. The dustproof plate 5-3 is further clamped with the second limiting rib 3-2-4 at the lower part of the second jamb profile 3-2 through the limiting boss 5-1 at the upper end. A wool groove can be arranged at the bottom of the dustproof strip 5 for inserting wool, so as to effectively prevent dust from entering the gap between the door body and the ground.
[0030] It should be noted that, for those skilled in the art, it is obvious that the present application is not limited to the details of the above exemplary embodiments, and the present application can be implemented in other specific forms without departing from the spirit or essential characteristics of the present application. The scope of the present application is defined by the claims rather than the above description.
Claims
1. An aluminum alloy door provided with a vestibule, comprising a sash fixed around a glass, wherein, The bottom fan is a lower fan (3), and the left and right side fans are side fans (1), characterized in that: The lower fan (3) is further provided with a hall fan (2) between the glass; the top of the hall fan (2) is connected with the bottom of the glass, the bottom of the hall fan (2) is connected with the top of the lower fan (3), and the left and right ends of the hall fan (2) are connected with the side fans (1) on the left and right sides.
2. The aluminum alloy door with a vestibule according to claim 1, characterized in that: The top of the outdoor side of the hall fan (2) is provided with a first arc-shaped pressing strip (2-1-3), and the top of the indoor side is provided with a glass pressing strip (4); a glass mounting cavity is formed between the first arc-shaped pressing strip (2-1-3) and the glass pressing strip (4), and the bottom surface of the glass mounting cavity is provided with a cushion block (7); the lower end of the glass is clamped between the first arc-shaped pressing strip (2-1-3) and the glass pressing strip (4), and the bottom surface of the glass is in contact with the cushion block (7).
3. The aluminum alloy door with a vestibule according to claim 1, wherein: The bottom of the outdoor side of the hall fan (2) is provided with a first fixing rib (2-1-4) and a first limiting rib (2-1-5), the top of the outdoor side of the lower fan (3) is provided with a second mounting rib (3-1-1), the second mounting rib (3-1-1) is provided with a second arc-shaped pressing strip (3-1-3), the bottom surface of the first fixing rib (2-1-4) is in abutment with the top surface of a fixed step (3-1-2) between the second mounting rib (3-1-1) and the second arc-shaped pressing strip (3-1-3), and the first fixing rib (2-1-4) is in close contact with the lower end side surface of the second arc-shaped pressing strip (3-1-3) through the inclined surface of the inner wall thereof; the end portion of the second arc-shaped pressing strip (3-1-3) is clamped between the first limiting rib (2-1-5) and the first fixing rib (2-1-4).
4. The aluminum alloy door with a vestibule according to claim 1, wherein: The bottom of the indoor side of the hall fan (2) is provided with a second fixing rib (2-2-2), and the lower end of the second fixing rib (2-2-2) is provided with a supporting step (2-2-3); the top of the indoor side of the lower fan (3) is provided with a first L-shaped mounting rib (3-2-1), and the supporting step (2-2-3) is clamped with the first L-shaped mounting rib (3-2-1).
5. The aluminum alloy door with vestibule according to any one of claims 1 to 4, characterized in that: The hall fan (2) is a broken bridge structure, comprising a first hall profile (2-1) on the outdoor side, a second hall profile (2-2) on the indoor side, and a heat insulation assembly connecting the first hall profile (2-1) and the second hall profile (2-2).
6. The aluminum alloy door with vestibule according to any one of claims 1 to 4, characterized in that: The lower fan (3) is a broken bridge structure, comprising a first lower fan profile (3-1) on the outdoor side, a second lower fan profile (3-2) on the indoor side, and a heat insulation assembly connecting the first lower fan profile (3-1) and the second lower fan profile (3-2).