Aluminum alloy door and window machining, measuring and punching device

By using an annular airbag and inflation components in the aluminum alloy door and window processing device, the problem of unstable clamping was solved, higher processing accuracy and efficiency were achieved, and the stability and durability of the device were enhanced.

CN224088007UActive Publication Date: 2026-04-07SHANDONG SANDUOCHUN DOORS & WINDOW ENGINEERING CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-21
Publication Date
2026-04-07

AI Technical Summary

Technical Problem

Existing aluminum alloy door and window processing measuring and drilling devices cannot adjust according to the shape when clamping parts, resulting in a small contact surface, which easily causes shaking and affects processing stability and efficiency.

Method used

The system employs an annular airbag and inflation assembly. Air is injected into the annular airbag by an air pump to inflate it, which then wraps around and clamps the components. A heat insulation layer and a wear-resistant layer are applied to the surface of the airbag to improve stability and wear resistance.

Benefits of technology

It improves the clamping effect of parts, prevents shaking, enhances processing accuracy and efficiency, and at the same time enhances the stability and wear resistance of the airbag, preventing rupture.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an aluminum alloy door and window processing, measuring and punching device, which relates to the technical field of door and window part processing, and comprises a processing frame and a punching piece arranged at the center of the rear side of the top of the processing frame, and further comprises a positioning piece which is fixedly arranged at the center of the top of the processing frame and is positioned under the punching piece; the annular air bag is embedded in the top of the positioning piece and used for wrapping and clamping the aluminum alloy door and window part to be punched; the air inflation assembly is arranged at the top of the processing frame and used for inflating the annular air bag; by starting the air pump, the air pump can inject external air into the annular air bag through the air collecting pipe and the air conveying pipe, so that the annular air bag expands and clamps a part in a wrapping manner, the clamping effect on the part is improved, and the problem that the part shakes during punching is avoided; and through the arrangement of the multiple annular air bags, the multiple aluminum alloy door and window parts can be punched at the same time, and the machining efficiency is improved.
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Description

Technical Field

[0001] This utility model relates to the field of door and window component processing technology, specifically to a measuring and drilling device for aluminum alloy door and window processing. Background Technology

[0002] Aluminum alloy doors and windows are made of aluminum alloy extruded profiles as frames, mullions, and sashes. They are widely used in the construction industry, especially in home decoration, where aluminum alloy doors and windows are often used to enclose balconies. During the production of aluminum alloy doors and windows, holes need to be drilled in their components to facilitate installation and other operations; therefore, these holes are necessary.

[0003] To ensure stability during drilling of parts, existing aluminum alloy door and window processing measuring and drilling devices typically have a positioning structure on the processing table. This structure uses two sets of cylinders and clamping plates to clamp the aluminum alloy door and window parts by relative movement. While this provides some stability, some parts have special shapes that prevent the clamping plates from being adjusted accordingly. This results in a small contact area between the clamping plates and the parts, making it easy for the parts to wobble during processing.

[0004] To address this issue, we designed a measuring and drilling device for aluminum alloy door and window processing. Utility Model Content

[0005] The purpose of this utility model is to provide a measuring and drilling device for processing aluminum alloy doors and windows, so as to solve the problems mentioned in the background art.

[0006] To solve the above-mentioned technical problems, this utility model provides an aluminum alloy door and window processing measuring and drilling device, including a processing frame and a drilling component disposed at the center of the rear side of the top of the processing frame, and further including...

[0007] The positioning component is fixedly installed at the center of the top of the processing frame, and located directly below the punched component;

[0008] An annular airbag, embedded in the top of the positioning component, is used to wrap and clamp the aluminum alloy door and window parts to be drilled;

[0009] An inflation assembly, located at the top of the processing frame, is used to inflate the annular airbag.

[0010] Furthermore, the inflation assembly includes an air pump, which is fixedly installed on the top of the processing frame. The air pump has an air guide at its air delivery end, and the other end of the air guide passes through a positioning member and is connected to an annular airbag.

[0011] Furthermore, the air guide includes an air collecting pipe, which is fixedly installed on the air delivery end of the air pump. The air collecting pipe is also provided with multiple air delivery pipes, the number of which corresponds to the number of annular airbags. The end of the air delivery pipe away from the air collecting pipe passes through a positioning member and is fixedly connected to the annular airbag.

[0012] Furthermore, the top of the processing frame is provided with a fixing groove, the number of which corresponds to the number of annular airbags, and the annular airbags are embedded in the fixing grooves.

[0013] Furthermore, the outer surface of the annular airbag is covered with a heat insulation layer, the heat insulation layer being made of brominated butyl rubber.

[0014] Furthermore, the outer surface of the heat insulation layer is covered with a wear-resistant layer, the wear-resistant layer being made of butyl rubber.

[0015] Furthermore, a control switch is provided on the front side of the processing frame, and the control switch is electrically connected to the punching part and the air pump.

[0016] Furthermore, rubber pads are fixedly installed at the four corners of the bottom of the processing rack, and two slide rails are opened on the front side of the processing rack, with drawers slidably inserted into the slide rails.

[0017] Compared with the prior art, the beneficial effects of this utility model are as follows: by turning on the air pump, the air pump can inject outside air into the annular airbag through the air collection pipe and the air delivery pipe, so that the annular airbag expands and wraps and clamps the parts, improving the clamping effect of the parts and avoiding the problem of the parts shaking when drilling; by setting multiple annular airbags, multiple aluminum alloy door and window parts can be drilled at the same time, improving the processing efficiency.

[0018] Compared with the prior art, the beneficial effects of this utility model are as follows: by setting a heat insulation layer, and the material of the heat insulation layer is brominated butyl rubber, the heat generated by friction during the drilling of the parts can be transferred to the inside of the annular airbag, resulting in thermal expansion and contraction, thus improving the stability of the annular airbag during use; by setting a wear-resistant layer, and the material of the wear-resistant layer is butyl rubber, the wear resistance of the annular airbag can be improved, avoiding the problem of the airbag ring breaking due to external friction. Attached Figure Description

[0019] Figure 1 This is a three-dimensional structural diagram of the front exterior of this utility model;

[0020] Figure 2 This is a three-dimensional structural diagram of the external side of this utility model;

[0021] Figure 3 This is a diagram showing the internal structure of the annular airbag of this utility model;

[0022] Figure 4 This utility model Figure 1 Enlarged view of point A in the middle.

[0023] In the diagram: 1. Processing frame; 2. Drilling component; 3. Positioning component; 4. Annular airbag; 5. Air pump; 6. Air collection pipe; 7. Air delivery pipe; 8. Fixing groove; 9. Heat insulation layer; 10. Wear-resistant layer; 11. Control switch; 12. Rubber pad; 13. Drawer. Detailed Implementation

[0024] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. 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 Figure 1-4 This utility model provides a technical solution: a drilling and measuring device for processing aluminum alloy doors and windows, including a processing frame 1 and a drilling component 2 disposed at the center of the rear top of the processing frame 1, and further including...

[0026] Positioning component 3 is fixedly installed at the center of the top of the processing frame 1, and is located directly below the punching component 2;

[0027] The annular airbag 4 is embedded in the top of the positioning part 3 and is used to wrap and hold the aluminum alloy door and window parts to be drilled.

[0028] An inflation assembly, located on top of the processing frame 1, is used to inflate the annular airbag 4;

[0029] The inflation assembly includes an air pump 5, which is fixedly installed on the top of the processing frame 1. The air pump 5 has an air guide at its air delivery end, and the other end of the air guide passes through the positioning member 3 and is connected to the annular airbag 4. The top of the processing frame 1 has a fixing groove 8, the number of which corresponds to the number of annular airbags 4. The annular airbag 4 is embedded in the fixing groove 8.

[0030] In practice, when using the equipment, first place the aluminum alloy door and window components to be drilled inside the annular airbag 4, then turn on the air pump 5 to inject outside air into the annular airbag 4 through the air guide, causing the annular airbag 4 to expand and clamp the components, improving the clamping effect and preventing the components from shaking during drilling.

[0031] It should be noted that, in order to ensure the accuracy of drilling holes in aluminum alloy doors and windows, we can also equip the processing rack 1 with measuring tools, such as measuring rulers, to measure the drilling diameter and other data of the parts that need to be drilled, thereby improving the accuracy of aluminum alloy door and window processing.

[0032] See Figure 1-4 The air guide includes an air collecting pipe 6, which is fixedly installed on the air supply end of the air pump 5. Multiple air supply pipes 7 are also provided on the air collecting pipe 6. The number of air supply pipes 7 corresponds to the number of annular airbags 4, and the end of the air supply pipe 7 away from the air collecting pipe 6 passes through the positioning member 3 and is fixedly connected to the annular airbag 4.

[0033] In practice, based on the above implementation, by setting multiple annular airbags 4, multiple aluminum alloy door and window components can be drilled simultaneously, thus improving processing efficiency.

[0034] See Figure 1-4 The outer surface of the annular airbag 4 is covered with a heat insulation layer 9, which is made of brominated butyl rubber. By setting the heat insulation layer 9, and the fact that the heat insulation layer 9 is made of brominated butyl rubber, the heat generated by friction during the drilling of the parts can be transferred to the interior of the annular airbag 4, resulting in thermal expansion and contraction, thus improving the stability of the annular airbag 4 during use.

[0035] See Figure 1-4 The outer surface of the heat insulation layer 9 is covered with a wear-resistant layer 10, which is made of butyl rubber. By setting the wear-resistant layer 10, and by setting the wear-resistant layer 10 to be made of butyl rubber, the wear resistance of the annular airbag 4 can be improved, and the problem of the annular airbag 4 breaking due to external friction can be avoided.

[0036] See Figure 1-4 A control switch 11 is installed on the front side of the processing frame 1. The control switch 11 is electrically connected to the punching part 2 and the air pump 5. This allows personnel to easily control the switching and operating status of the punching part 2 and the air pump 5.

[0037] Rubber pads 12 are fixedly installed at the four corners of the bottom of the processing frame 1. Since the rubber pads 12 have a certain degree of elasticity, they can absorb some of the vibration force, thereby playing a certain cushioning effect.

[0038] Two slide rails are provided on the front side of the processing rack 1, and drawers 13 are slidably inserted into the slide rails. This allows personnel to conveniently and reasonably place their personal belongings.

[0039] The drilling component 2 is typically composed of a drill bit, a motor, a coolant, a cylinder, and other structures. It enables the drill bit to rotate and move at high speed, thus facilitating the processing of parts. Since the drilling component 2 is existing technology and is not a problem to be solved in the background technology of this specification, it will not be elaborated on further.

[0040] Before use, all electrical components involved in the aluminum alloy door and window drilling device need to be connected to an external power source to ensure their normal operation. Since connecting the electrical components to an external power source is existing technology and is not a problem that needs to be solved in the background technology of this manual, it will not be elaborated on further.

[0041] Working principle: When in use, first place the aluminum alloy door and window parts to be drilled in the inner ring of the annular airbag 4, then turn on the air pump 5, so that the air pump 5 injects outside air into the annular airbag 4 through the air collection pipe 6 and the air delivery pipe 7, causing the annular airbag 4 to expand and wrap around and clamp the parts, improving the clamping effect of the parts and avoiding the problem of the parts shaking when drilling.

[0042] It should be noted that by setting multiple annular airbags 4, multiple aluminum alloy door and window components can be drilled simultaneously, thus improving processing efficiency.

[0043] By setting up a heat insulation layer 9, and the material of the heat insulation layer 9 is brominated butyl rubber, the heat generated by friction when the parts are drilled will cause thermal expansion and contraction if this heat is transferred to the inside of the annular airbag 4, thus improving the stability of the annular airbag 4 during use.

[0044] By setting a wear-resistant layer 10, and the material of the wear-resistant layer 10 is butyl rubber, the wear resistance of the annular airbag 4 can be improved, and the problem of the annular airbag 4 breaking due to external friction can be avoided.

Claims

1. A measuring and drilling device for processing aluminum alloy doors and windows, comprising a processing frame (1) and a drilling component (2) disposed at the center of the rear side of the top of the processing frame (1), characterized in that, It also includes, The positioning component (3) is fixedly installed at the center of the top of the processing frame (1) and located directly below the punching component (2); An annular airbag (4) is embedded in the top of the positioning piece (3) and is used to wrap and hold the aluminum alloy door and window parts to be drilled; An inflation assembly, located on top of the processing frame (1), is used to inflate the annular airbag (4).

2. The aluminum alloy door and window processing measuring and drilling device as described in claim 1, characterized in that: The inflation assembly includes an air pump (5), which is fixedly installed on the top of the processing frame (1). The air pump (5) has an air guide at its air delivery end, and the other end of the air guide passes through the positioning member (3) and is connected to the annular airbag (4).

3. The aluminum alloy door and window processing measuring and drilling device as described in claim 2, characterized in that: The air guide includes an air collecting pipe (6), which is fixedly installed on the air supply end of the air pump (5). The air collecting pipe (6) is also provided with a plurality of air supply pipes (7), the number of which corresponds to the number of annular airbags (4). The end of the air supply pipe (7) away from the air collecting pipe (6) passes through the positioning member (3) and is fixedly connected to the annular airbag (4).

4. The aluminum alloy door and window processing measuring and drilling device as described in claim 1, characterized in that: The top of the processing frame (1) is provided with a fixing groove (8), the number of fixing grooves (8) corresponds to the number of annular airbags (4), and the annular airbags (4) are embedded in the fixing grooves (8).

5. The aluminum alloy door and window processing measuring and drilling device as described in claim 1, characterized in that: The outer surface of the annular airbag (4) is covered with a heat insulation layer (9), which is made of brominated butyl rubber.

6. The aluminum alloy door and window processing measuring and drilling device as described in claim 5, characterized in that: The outer surface of the heat insulation layer (9) is covered with a wear-resistant layer (10), and the wear-resistant layer (10) is made of butyl rubber.

7. The aluminum alloy door and window processing measuring and drilling device as described in claim 1, characterized in that: A control switch (11) is provided on the front side of the processing frame (1), and the control switch (11) is electrically connected to the punching part (2) and the air pump (5).

8. The aluminum alloy door and window processing measuring and drilling device as described in claim 1, characterized in that: Rubber pads (12) are fixedly installed at the four corners of the bottom of the processing rack (1). Two slides are opened on the front side of the processing rack (1), and drawers (13) are slidably inserted into the slides.