Anti-burst hollow glass
By installing plug-in rods and locking components on the fixed frame of the insulated glass, the glass is stably fixed to the external pressure line, which solves the danger of the glass falling due to the worker's physical exhaustion and improves the safety of installation.
Patent Information
- Application Number
- CN202423101233.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-16
- Publication Date
- 2025-12-16
- Estimated Expiration
- 2034-12-16
AI Technical Summary
During the installation of large glass panels, workers may become exhausted, causing the glass to tilt and fall, posing a risk of injuring people.
An explosion-proof insulated glass was designed. By setting a plug-in rod and a locking component on the fixed frame, the plug-in rod is engaged with the plug-in slot, and the locking pin and elastic element work together to achieve stable fixation of the glass to the external pressure line and prevent the glass from falling.
It effectively assists workers in securing glass, preventing glass from falling due to physical exhaustion and improving installation safety.
Smart Images

Figure CN223676096U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application relates to the technical field of hollow glass, in particular to an anti-burst hollow glass. BACKGROUND
[0002] At present, the hollow glass is generally composed of two or more glass layers, and the air between the glass layers is generally exhausted during the preparation of the hollow glass, so that the formation of water mist is reduced, thereby prolonging the use effect.
[0003] The existing adjacent glass is fixed by using aluminum spacer and sealant, and a hollow layer is arranged between the connected glass, so that the glass has the characteristics of good sound insulation, heat preservation, sun protection and the like, and is one of the commonly used glasses in many buildings at present; during installation, the glass is usually directly placed on the window frame; the outer side of the window frame is usually provided with an outer pressing line, the glass is pushed to be flush with the outer pressing line, and an inner pressing line is installed on the inner side of the glass, so that the glass is firmly installed in the window frame.
[0004] The existing technical scheme in the above has the following defects: after the glass is pushed to abut against the outer pressing line and the inner pressing line is installed, the worker still needs to tightly push the glass to avoid the glass from tilting and falling away from the outer pressing line, when the area of the glass is large, the worker may be physically exhausted and cause the glass to fall and injure the personnel. CONTENT OF THE INVENTION
[0005] The application is provided to assist the worker in fixing the glass, so as to avoid the glass from falling and injuring the personnel due to physical exhaustion of the worker, and provides an anti-burst hollow glass.
[0006] The above technical purpose of the application is realized by the following technical scheme:
[0007] The anti-burst hollow glass comprises a fixing frame sleeved outside the glass, a connecting layer is arranged between the fixing frame and the glass, and the connecting layer fixedly connects the fixing frame and the glass; a plurality of insertion rods are arranged on one side of the fixing frame close to the outer pressing line, the insertion rods are uniformly arranged on the side wall of the fixing frame and are connected with the fixing frame; an insertion groove is formed in the outer pressing line of the window frame corresponding to each insertion rod, the insertion rod and the insertion groove are inserted and matched when the glass is pushed to abut against the outer pressing line; a locking assembly is further arranged on the side wall of each insertion rod, the locking assembly comprises an elastic member and a locking pin, a containing groove is formed in the side wall of the insertion rod, one end of the elastic member is fixedly connected with the bottom wall of the containing groove, the other side of the elastic member is fixedly connected with the locking pin, and the elastic member can drive the locking pin to reciprocatingly move along the stretching or compression process thereof; a locking groove is formed in the side wall of the insertion groove corresponding to the locking pin, and the elastic member drives the locking pin to be inserted and matched with the locking groove when the locking pin corresponds to the locking groove during the process of inserting the insertion rod into the insertion groove.
[0008] By adopting the above scheme, when the worker pushes the glass to abut against the outer pressing line, the insertion rod gradually inserts into the insertion slot; because the locking assembly is arranged, when the insertion rod inserts into the insertion slot but the locking pin does not correspond to the locking slot, the side wall of the insertion slot pushes the locking pin to retract into the accommodating slot; after the insertion rod is completely inserted into the insertion slot, the locking pin corresponds to the locking slot, at this time, the elastic piece pushes the locking pin to be inserted and matched with the locking slot under the elastic effect of the elastic piece, after the locking pin is inserted and matched with the locking slot, the relative insertion state of the insertion rod and the insertion slot is locked, so that the relative position of the fixing frame and the locking slot is limited, and then the relative position of the glass and the outer pressing line is limited, so that the worker can push the glass to closely abut against the outer pressing line, the worker is assisted to fix the glass, the worker is prevented from dropping the glass due to physical exhaustion, and the purpose of preventing personnel from being injured by the dropped glass is achieved.
[0009] Further, the locking pin comprises a flat end and an arc-shaped end, wherein the flat end is fixedly connected with the elastic piece, and the arc-shaped end does not completely protrude out of the accommodating slot.
[0010] By adopting the above scheme, the arc-shaped end is arranged to facilitate the side wall of the insertion slot to push the locking pin to retract into the accommodating slot, and the arc-shaped end does not completely protrude out of the accommodating slot, so that the locking pin is partially inserted into the accommodating slot, and the two ends of the locking pin are inserted and matched with the accommodating slot and the locking slot, so that the glass is more stably connected with the outer pressing line.
[0011] Further, the side of the flat end away from the arc-shaped end is provided with a plurality of reinforcing rods, the plurality of reinforcing rods are uniformly distributed on the outside of the elastic piece in a circumferential manner; the side wall of the accommodating slot is provided with a sliding groove corresponding to each reinforcing rod, and the side wall of each reinforcing rod is fixedly connected with a sliding block which can reciprocatingly move along the sliding groove; after the elastic piece pushes the locking pin to be inserted and matched with the locking slot, the reinforcing rods can increase the contact area of the locking pin and the accommodating slot, so that the locking pin is stably connected with the locking slot and the accommodating slot.
[0012] By adopting the above scheme, when the elastic piece deforms, the reinforcing rods slide along the sliding blocks, the reinforcing rods can limit the deformation direction of the elastic piece, and the reinforcing rods can increase the contact area of the locking pin and the accommodating slot, so that the locking pin is stably connected with the locking slot and the accommodating slot.
[0013] Further, the bottom wall of the insertion slot is provided with a sticking layer, and the insertion rod is fixedly connected with the insertion slot through the sticking layer after the insertion rod is completely inserted into the insertion slot.
[0014] By adopting the above scheme, the sticking layer is used to increase the stability of the connection between the insertion rod and the insertion slot.
[0015] Further, the sticking layer is externally provided with a covering layer, and the covering layer is used to isolate dust.
[0016] Further, the fixed frame is concave around the periphery and a groove is formed in the concave portion, and a buffer pad is filled in the groove, and the buffer pad is used for protecting the fixed frame from impact.
[0017] By using the above scheme, the buffer pad is elastic, and can absorb external impact force during the transportation of the glass, thereby protecting the glass.
[0018] Further, the outer side of the buffer pad is provided with an elastic protective layer, and the protective layer is used for blocking the buffer pad to prevent the buffer pad from falling out of the groove.
[0019] Further, the protective layer is woven by metal wires.
[0020] By using the above scheme, the woven protective layer is elastic, which can buffer external impact force and protect the buffer pad from falling off.
[0021] In summary, the present application has the following technical effects:
[0022] 1. By setting the glass, when the worker pushes the glass to abut against the external pressure line, the insertion rod gradually inserts into the insertion slot; because the locking assembly is provided, when the insertion rod is inserted into the insertion slot but the locking pin does not correspond to the locking slot, the side wall of the insertion slot pushes the locking pin to retract into the accommodating slot; when the insertion rod is completely inserted into the insertion slot, the locking pin corresponds to the locking slot, at this time the elastic member pushes the locking pin to be inserted and matched with the locking slot under the elastic action of itself, and after the locking pin and the locking slot are inserted and matched, the relative insertion state of the insertion rod and the insertion slot is locked, so that the relative position of the fixed frame and the locking slot is limited, and then the relative position of the glass and the external pressure line is limited, which can assist the worker to push the glass to tightly abut against the external pressure line, thereby assisting the worker to fix the glass, avoiding the glass from falling due to the worker's physical exhaustion, and injuring the personnel.
[0023] 2. By setting the adhesive layer, when the insertion rod is completely inserted into the insertion slot, the insertion rod and the insertion slot are fixedly connected through the adhesive layer.
[0024] 3. By setting the locking pin, the arc-shaped end is convenient for the side wall of the insertion slot to push the locking pin to retract into the accommodating slot, and the arc-shaped end does not completely protrude out of the accommodating slot, so that the locking pin is partially inserted into the accommodating slot, and the two ends of the locking pin are inserted and matched with the accommodating slot and the locking slot, so that the glass and the external pressure line are connected more stably. BRIEF DESCRIPTION OF DRAWINGS
[0025] Figure 1 is a structure diagram of the anti-burst hollow glass of the present application;
[0026] Figure 2 is the structural diagram of the fixed frame of the present application;
[0027] Figure 3 is the structural diagram of the outer pressing line position of the present application;
[0028] Figure 4 is the structural diagram of the plug-in structure of the present application;
[0029] Figure 5 is the structural diagram of the reinforcing rod position of the present application;
[0030] Figure 6 is the structural diagram of the plug-in slot and locking slot position relationship of the present application;
[0031] Figure 7 is the structural diagram of the position relationship between the adhesive layer and the cover layer in the plug-in slot of the present application.
[0032] In the figure, 1, window frame; 11, outer pressing line; 111, plug-in slot; 1111, adhesive layer; 11111, cover layer; 1112, locking slot; 2, fixed frame; 21, plug-in structure; 211, plug-in rod; 2111, accommodating slot; 21111, sliding groove; 212, locking assembly; 2121, elastic member; 2122, locking pin; 3, reinforcing rod; 31, sliding block; 4, buffer pad; 5, protective layer. DETAILED DESCRIPTION
[0033] The present application will be further described in detail below in combination with the drawings.
[0034] Referring to Figures 1-3 , the anti-burst hollow glass provided by the embodiment comprises a fixed frame 2, the fixed frame 2 is sleeved on the outside of the glass, and a connecting layer for fixedly connecting the fixed frame 2 and the glass is arranged between the fixed frame 2 and the glass. In the embodiment, the connecting layer is a glue layer, that is, glue is coated between the inner wall of the fixed frame 2 and the glass, so that the fixed frame 2 and the glass are fixedly connected. The fixed frame 2 is provided with a plug-in structure 21 on the side close to the outer pressing line 11 of the window frame 1, and a plurality of plug-in structures 21 are uniformly arranged on the side wall of the fixed frame 2. The side of the outer pressing line 11 close to the indoor is recessed to form a plug-in slot 111 towards the outdoor, and the number of plug-in slots 111 is consistent with the number of plug-in structures 21, so that each plug-in structure 21 has a corresponding plug-in slot 111. When the glass is installed on the window frame 1, the glass is pushed outwardly towards the outer pressing line 11 until each plug-in structure 21 is plugged and matched with the corresponding plug-in slot 111, and each plug-in structure 21 has a locking function. After the plug-in structure 21 is plugged into the plug-in slot 111, the plug-in structure 21 and the plug-in slot 111 are locked, so that the plug-in structure 21 cannot be separated from the plug-in slot 111. Therefore, when the worker installs the glass, the plug-in structure 21 can assist the glass to be attached to the outer pressing line 11, thereby reducing the burden of the worker.
[0035] With reference to Figures 2-6 Each plug-in structure 21 comprises a plug-in rod 211 and a locking assembly 212, the plug-in rod 211 is fixedly connected with the side wall of the fixed frame 2, the plug-in rod 211 is used in cooperation with the plug-in slot 111, the locking assembly 212 is arranged on the side wall of the plug-in rod 211, and the locking assembly 212 is used to lock the plug-in state of the plug-in rod 211 and the plug-in slot 111 after the plug-in rod 211 is inserted into the plug-in slot 111; the locking assembly 212 comprises an elastic member 2121 and a locking pin 2122, the side wall of the plug-in rod 211 is provided with a containing groove 2111, one end of the elastic member 2121 is fixedly connected with the bottom wall of the containing groove 2111, the other side of the elastic member 2121 is fixedly connected with the locking pin 2122, and the elastic member 2121 can drive the locking pin 2122 to reciprocatingly move along the stretching and compression process of the elastic member 2121; the side wall of the plug-in slot 111 is provided with a locking groove 1112 corresponding to the locking pin 2122, when the plug-in rod 211 is inserted into the plug-in slot 111, the elastic member 2121 pushes the locking pin 2122 to be in plug-in cooperation with the locking groove 1112 after the locking pin 2122 corresponds to the locking groove 1112; in the embodiment, the elastic member 2121 is a spring that is stretched under the action of its own elasticity when there is no external force; specifically, the locking pin 2122 comprises a flat end and an arc-shaped end, the flat end is fixedly connected with the elastic member 2121, and the arc-shaped end does not completely protrude out of the containing groove 2111, and the arrangement is convenient for the locking pin 2122 to retract into the containing groove 2111 after abutting against the side wall of the plug-in slot 111 during the process that the plug-in rod 211 is inserted into the plug-in slot 111.
[0036] With reference to Figures 4-6The side, away from the arc-shaped end, of the flat end of the locking pin 2122 is provided with a plurality of reinforcing rods 3, which are uniformly distributed in a circumferential manner on the outside of the elastic member 2121, each of the reinforcing rods 3 is fixedly connected with the locking pin 2122, the side wall of the accommodating groove 2111 is provided with a sliding groove 21111 corresponding to each of the reinforcing rods 3, and the side wall of each of the reinforcing rods 3 is fixedly connected with a sliding block 31, the sliding block 31 can reciprocatingly move along the sliding groove 21111, when the locking pin 2122 slides along the accommodating groove 2111, the sliding block 31 synchronously slides along the sliding groove 21111, the sliding groove 21111 can limit the sliding direction of the sliding block 31, the sliding block 31 can limit the sliding direction of the locking pin 2122 through the reinforcing rod 3, and when the sliding direction of the locking pin 2122 is limited, the extension direction of the elastic member 2121 is limited; and when the locking pin 2122 is opposite to the locking groove 1112, the elastic member 2121 can push the locking pin 2122 to be inserted and matched with the locking groove 1112 under the elastic effect of the elastic member 2121, and after the locking pin 2122 is inserted and matched with the locking groove 1112, the reinforcing rod 3 increases the contact area between the locking pin 2122 and the accommodating groove 2111, so that the stability of the connection between the locking pin 2122 and the locking groove 1112 and the accommodating groove 2111 is improved.
[0037] With reference to Figures 2-3 and Figure 7 The bottom wall of the insertion groove 111 is provided with a sticking layer 1111, the insertion rod 211 is fixedly connected with the insertion groove 111 through the sticking layer 1111 after being completely inserted into the insertion groove 111, in the embodiment, the sticking layer 1111 is of a sticky material, for example, epoxy resin glue or the like; a covering layer 11111 is arranged on the surface of the sticking layer 1111, the covering layer 11111 is used for protecting the sticking layer 1111, and the covering layer 11111 avoids that the surface of the sticking layer 1111 adsorbs dust to reduce the stickiness, in the embodiment, the covering layer 11111 is preferably kraft paper or glassine paper.
[0038] With reference to Figure 2 The four sides of the fixed frame 2 are inwardly recessed to be provided with recesses, and the recesses are filled with buffer pads 4, the buffer pads 4 are used for protecting the fixed frame 2 from impact, in the embodiment, the buffer pads 4 are preferably of rubber material, the outside of the buffer pads 4 is provided with a protective layer 5 with elasticity, the protective layer 5 is used for blocking the buffer pads 4 to avoid the buffer pads 4 from being taken out of the recesses, in the embodiment, the protective layer 5 is woven with metal wires, for example, aluminum wires; the woven protective layer 5 has elasticity, which can buffer external impact and protect the buffer pads 4 from falling off, and the buffer pads 4 are also used for absorbing external impact to change the rigid impact on the fixed frame 2 into flexible impact, so as to protect the glass.
[0039] The specific implementation principle of the anti-burst hollow glass embodiment of the present application is as follows: firstly, the covering layer 11111 outside each adhesive layer 1111 is removed, then the glass is pushed in the direction close to the outer pressure line 11, then the insertion rod 211 is gradually inserted into the insertion groove 111, when the insertion rod 211 is completely inserted into the insertion groove 111, the insertion rod 211 is adhesively connected with the adhesive layer 1111; at this time, the locking pin 2122 is opposite to the locking groove 1112, the elastic member 2121 pushes the locking pin 2122 into the locking groove 1112 under the elasticity of the elastic member 2121, the locking pin 2122 is inserted and matched with the locking pin 2122, and then the connection state of the insertion rod 211 and the insertion groove 111 is locked again, so that the fixed frame 2 and the outer pressure line 11 are connected with each other, and the labor of continuously pushing the glass to abut against the outer pressure line 11 is reduced when the glass is installed in the window frame 1.
[0040] The specific embodiment is only an explanation of the present application, and is not a limitation of the present application. Those skilled in the art can make modifications to the present embodiment without creative contribution after reading the present specification, but as long as the present application is within the scope of the claims, it is protected by the patent law.
Claims
1. An anti-shattering insulating glass unit, characterized by: The utility model provides a glass window frame, including the fixed frame (2) of setting in glass outside, and the fixed frame (2) is provided with connecting layer with glass between, connecting layer will fixed frame (2) with glass fixed connection, fixed frame (2) is provided with a plurality of insertion rod (211) on the side close to outer pressure line (11), a plurality of insertion rod (211) evenly arrange in the side wall of fixed frame (2) and be connected with fixed frame (2), the outer pressure line (11) of window frame (1) is provided with insertion slot (111) to each insertion rod (211) correspondingly, when glass is pushed to with outer pressure line (11) abuts, insertion rod (211) with insertion slot (111) insertion cooperation, the side wall of every insertion rod (211) is provided with locking assembly (212) still, locking assembly (212) includes elastic part (2121) and locking pin (2122), the side wall of insertion rod (211) is provided with accommodating groove (2111), and one end of elastic part (2121) is fixedly connected with the bottom wall of accommodating groove (2111), and the other side of elastic part (2121) is fixedly connected with locking pin (2122), and elastic part (2121) can drive locking pin (2122) reciprocating movement along its stretching or compression process, the side wall of insertion slot (111) is provided with locking slot (1112) to correspond locking pin (2122), when insertion rod (211) is inserted into the process in insertion slot (111), when locking pin (2122) corresponds after locking slot (1112), elastic part (2121) pushes locking pin (2122) and insertion cooperation with locking slot (1112).
2. The anti-shattering insulating glass unit according to claim 1, wherein: The locking pin (2122) includes a flat end and an arc-shaped end, wherein the flat end is fixedly connected with the elastic part (2121), and the arc-shaped end does not completely protrude out of the accommodating groove (2111).
3. The shatter-resistant insulating glass unit according to claim 2, wherein: The flat end is provided with a plurality of reinforcing rods (3) on the side away from the arc-shaped end, and the plurality of reinforcing rods (3) are evenly distributed on the outside of the elastic part (2121) in a circumferential manner. The side wall of the accommodating groove (2111) is provided with a sliding groove (21111) corresponding to each reinforcing rod (3). The side wall of each reinforcing rod (3) is fixedly connected with a sliding block (31), and the sliding block (31) can reciprocate along the sliding groove (21111). When the elastic part (2121) pushes the locking pin (2122) to be inserted into the locking slot (1112), the reinforcing rod (3) can increase the contact area between the locking pin (2122) and the accommodating groove (2111), so that the locking pin (2122) is stably connected with the locking slot (1112) and the accommodating groove (2111).
4. The shatter-resistant insulating glass unit according to claim 2, wherein: The bottom wall of the insertion slot (111) is provided with a sticking layer (1111), and the insertion rod (211) is fixedly connected with the insertion slot (111) through the sticking layer (1111) after being completely inserted into the insertion slot (111).
5. The shatter-resistant insulating glass unit according to claim 4, wherein: The sticking layer (1111) is provided with a covering layer (11111) outside, and the covering layer (11111) is used for isolating dust.
6. The shatter-resistant insulating glass unit of claim 1, wherein: The fixed frame (2) is recessed inward around to form a groove, and the groove is filled with a buffer pad (4). The buffer pad (4) is used for protecting the fixed frame (2) from impact.
7. The shatter-resistant insulating glass unit according to claim 6, wherein: The outer side of the buffer pad (4) is provided with an elastic protective layer (5) for blocking the buffer pad (4) to avoid the buffer pad (4) from being taken out through the groove.
8. The shatter-resistant insulating glass unit according to claim 7, wherein: The protective layer (5) is woven by metal wires.