Door and window lock hole groove machining equipment
By designing a high-efficiency door and window lock hole groove processing equipment, automated lock hole groove processing has been achieved, solving the problem of low automation level of existing equipment and improving processing accuracy and environmental protection.
Patent Information
- Application Number
- CN202520128203.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-20
- Publication Date
- 2025-12-30
- Estimated Expiration
- 2035-01-20
AI Technical Summary
Existing door and window lock hole groove processing equipment has a low degree of automation and requires manual operation, which leads to processing deviations and debris flying and polluting the environment.
A door and window lock hole groove processing equipment was designed, which includes a worktable, a drilling component, and a clamping component. Through the coordinated work of the clamping component and the conveying device, efficient and accurate lock hole groove processing is achieved. The clamping component is suitable for doors and windows of different sizes and specifications, reduces human error, and collects debris through a storage box.
It improved production efficiency, reduced human error, ensured product processing accuracy, and effectively reduced environmental pollution.
Smart Images

Figure CN223733899U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of door and window equipment technology, and in particular to a door and window lock hole groove processing equipment. Background Technology
[0002] Doors and windows refer to the doors and windows in a house. They are part of the building structure. Doors and windows not only have practical functions (such as providing access, ventilation, lighting, and sound insulation), but are also closely related to the aesthetics and energy efficiency of a building.
[0003] In the prior art, in order to install door and window locks, holes and grooves are processed on the door and window frames according to the requirements of the locks. The processing includes precise measurement, positioning, cutting and drilling to ensure that the locks can be installed correctly and used smoothly.
[0004] However, existing door and window lock hole groove processing equipment has a low degree of automation and requires manual assistance, which can easily lead to deviations in the subsequent processing of doors and windows, thus affecting the quality of doors and windows. At the same time, during processing, a large amount of debris is splashed around the equipment, which is difficult to clean and causes environmental pollution. Utility Model Content
[0005] This invention addresses the problems of low automation in existing door and window lock hole groove processing equipment, which requires manual assistance and can easily lead to deviations in subsequent door and window processing, thus affecting the quality of the doors and windows. Furthermore, the processing generates a large amount of debris that is difficult to clean and causes environmental pollution. Therefore, this invention provides a door and window lock hole groove processing device, and the technical solution adopted is as follows:
[0006] A door and window lock hole groove processing equipment, applied to doors and windows, the door and window lock hole groove processing equipment includes:
[0007] A workbench has a working area and a fixed area;
[0008] A drilling assembly is installed in the fixed area, and the drilling assembly is slidably connected to the worktable.
[0009] A clamping assembly is located in the working area. The clamping assembly is used to clamp the door and window. A conveying device for conveying the door and window is provided on one side of the clamping assembly.
[0010] The clamping assembly rotates along the circumferential direction of the conveying device, and the sliding direction of the punching assembly is parallel to the conveying direction of the conveying device.
[0011] Preferably, the clamping assembly includes a support base, a rotating shaft, and a clamping member. The support base is fixed to the top surface of the worktable, and the clamping member is mounted on the rotating shaft, driving the rotating shaft to rotate the clamping member.
[0012] Preferably, the clamping member includes a linear guide rail, a fixing block, and an electric actuator, wherein the fixing block and the electric actuator are located at the ends of the linear guide rail, and the extending direction of the linear guide rail is perpendicular to the conveying direction of the conveying device.
[0013] Preferably, a first baffle is provided on the fixing block, a second baffle is provided at the output end of the electric actuator, the first baffle and the second baffle are arranged opposite to each other, and the door and window are located between the first baffle and the second baffle;
[0014] Drive the electric actuator to move the second baffle closer to or away from the first baffle.
[0015] Preferably, along the width direction of the worktable, the clamping assembly is provided with a first limiting member and a second limiting member on both sides. When the clamping assembly is in a first preset state, the first baffle abuts against the first limiting member. When the clamping assembly is in a second preset state, the second baffle abuts against the second limiting member.
[0016] Preferably, the clamping member and the worktable have a preset angle, which is between 0° and 90°.
[0017] Preferably, the surface of the first baffle is provided with a first scale line; and / or, the surface of the second baffle is provided with a second scale line.
[0018] Preferably, the top surface of the fixed area is provided with a slide rail, the extension direction of the slide rail is parallel to the conveying direction of the conveying device, and the punching assembly is slidably connected to the worktable through the slide rail.
[0019] Preferably, the punching assembly includes a punching body and a punching head. One end of the punching body is detachably connected to the punching head, and the other end is slidably connected to a moving plate. The moving plate matches the slide rail. Along the height direction of the workbench, the punching body drives the punching head to move up and down, so that the punching head moves closer to or away from the door or window.
[0020] Preferably, a storage box is provided at the bottom of the workbench, and the opening of the storage box faces the same direction as the work area.
[0021] The technological advancements achieved by this invention compared to existing technologies are as follows:
[0022] This invention achieves efficient, precise, and flexible keyhole groove processing through the coordinated operation of the drilling component, clamping component, and conveying equipment. The clamping component is applicable to doors and windows of different sizes and specifications, which can greatly improve production efficiency, reduce human error, and ensure the processing accuracy of the products. Attached Figure Description
[0023] The accompanying drawings are provided to further understand the present invention and form part of the specification. They are used together with the embodiments of the present invention to explain the present invention and do not constitute a limitation thereof.
[0024] In the attached diagram:
[0025] Figure 1 This is a structural diagram of the door and window lock hole groove processing equipment of this utility model;
[0026] Figure 2 This is a magnified view of region A in the diagram;
[0027] Figure 3 This is a partial schematic diagram of the door and window lock hole groove processing equipment of this utility model;
[0028] Figure 4 This is a partial view of the door and window lock hole groove processing equipment of this utility model;
[0029] Figure 5 This is a schematic diagram of the structure of the door and window lock hole groove processing equipment of this utility model;
[0030] Figure 6 This is a schematic diagram of the door and window lock hole groove processing equipment of this utility model.
[0031] In the diagram: 1. Workbench; 11. Working area; 12. Fixed area; 2. Drilling assembly; 20. Drilling body; 21. Drilling head; 22. Moving plate; 3. Clamping assembly; 30. Support base; 31. Rotating shaft; 32. Clamping component; 320. Linear guide rail; 321. Fixing block; 322. Electric actuator; 323. First baffle; 324. Second baffle; 4. Conveying equipment; 40. Conveyor belt; 41. Transmission wheel; 42. Control system; 5. First limiting component; 6. Second limiting component; 7. First scale line; 8. Second scale line; 9. Slide rail; 10. Storage box; 100. Door and window. Detailed Implementation
[0032] The following specific embodiments can be combined with each other, and the same or similar concepts or processes may not be described again in some embodiments. The embodiments of this utility model will be described below with reference to the accompanying drawings.
[0033] like Figures 1 to 6As shown, this utility model discloses a door and window lock hole groove processing equipment, applied to a door and window 100. The door and window lock hole groove processing equipment includes a worktable 1, a drilling component 2, a clamping component 3, and a conveying device 4. The worktable 1 has a working area 11 and a fixed area 12. The drilling component 2 is installed in the fixed area 12 and is slidably connected to the worktable 1. The connection method can be adapted to the requirements. The clamping component 3 is located in the working area 11 and is used to clamp the door and window 100. The conveying device 4 is provided on one side of the clamping component 3. The conveying device 4 is used to transport the door and window 100 to the working area 11, so that the clamping component 3 can clamp the door and window 100, thereby ensuring the subsequent processing of the lock hole groove. In one example, the conveying device 4 includes a conveyor belt 40, a drive wheel 41, and a control system 42. When the control system 42 is turned on, the drive wheel 41 drives the conveyor belt 40 to rotate, thereby completing the work of conveying the door and window 100.
[0034] During equipment operation, the operator places the door / window 100 onto the conveyor belt 40 of the conveying equipment 4. The door / window 100 enters the working area 11 of the workbench 1 via the conveying equipment 4. At this time, the clamping assembly 3 fixes the door / window 100 according to its size to prevent sliding and displacement. After the clamping assembly 3 fixes the door / window 100, the drilling assembly 2 slides. The sliding direction of the drilling assembly 2 is the same as the conveying direction of the conveying equipment 4 (e.g., ...). Figure 1 Parallel to the x-direction shown in the diagram, the punching assembly 2 is adjusted to the desired position. After punching one side of the door / window 100, the clamping assembly 3 moves the door / window 100 along the circumferential direction of the conveying device 4 (e.g., the x-direction shown in the diagram). Figure 2 The door / window 100 is rotated in the direction shown in Figure I to complete the machining of the lock hole groove.
[0035] Preferred, such as Figures 1 to 5 As shown, the clamping assembly 3 includes a support base 30, a rotating shaft 31, and a clamping member 32. The support base 30 is fixed to the top surface of the worktable 1. The clamping member 32 is used to clamp the door and window 100 to prevent displacement during the processing of the lock hole groove, which would affect the processing quality of the door and window 100. The clamping member 32 is mounted on the rotating shaft 31, which drives the rotating shaft 31 to rotate the clamping member 32, thereby realizing the processing of the lock hole groove on multiple sides of the door and window 100.
[0036] For the best options, please continue to refer to them. Figures 1 to 5 The clamping component 32 includes a linear guide rail 320, a fixing block 321, and an electric actuator 322. The linear guide rail 320 is sleeved on the rotating shaft 31. The fixing block 321 and the electric actuator 322 are located at the ends of the top surface of the linear guide rail 320. The electric actuator 322 is used to clamp or release the door / window 100. The electric actuator 322 can be a telescopic cylinder or an electric telescopic rod, depending on the requirements. This application does not impose many restrictions on this. It should be noted that the extension direction of the linear guide rail 320 (e.g., ...) Figure 5 The y-direction shown in the figure is different from the conveying direction of the conveyor belt 40 of the conveying device 4 (as shown in the figure). Figure 5 (The x-direction shown in the figure) is perpendicular. In one example, during door and window processing, the door and window 100 is located between the electric actuator 322 and the fixed block 321. The electric actuator 322 is driven so that it moves closer to the fixed block 321 and clamps the door and window 100 to facilitate the processing of the lock hole groove. When the processing is completed, the electric actuator 322 is driven again so that it moves away from the fixed block 321 and releases the door and window 100, thereby completing the processing operation.
[0037] In yet another example, such as Figure 1 and Figure 2 As shown, the electric actuator 322 is an electric push rod. A first baffle 323 is provided on the fixed block 321, and a second baffle 324 is provided at the output end of the electric push rod. The first baffle 323 and the second baffle 324 are arranged opposite to each other. The door / window 100 is located between the first baffle 323 and the second baffle 324. Both the first baffle 323 and the second baffle 324 are cuboid structures. In the assembled state, the surface of the door / window 100 can be tightly fitted with the surfaces of the first baffle 323 and the second baffle 324, thereby ensuring the stability of the door / window 100. When the operator needs to process the lock hole groove, the electric push rod is driven, causing the second baffle 324 to move closer to the first baffle 323 while applying pressure. At this time, the door and window 100 is firmly fixed between the first baffle 323 and the second baffle 324, so that the drilling assembly 2 can perform processing. When the processing is completed, the electric push rod is driven again, and the second baffle 324 moves in the opposite direction to the first baffle 323, that is, away from the first baffle 323, so that the pressure is reduced. The operator can then remove the door and window 100 to complete the processing operation.
[0038] Preferred, such as Figure 1 and Figure 3 As shown, along the width direction of worktable 1 (e.g.) Figure 1 As shown in the y-direction), the clamping assembly 3 has a first limiting member 5 and a second limiting member 6 on both sides. The first limiting member 5 and the second limiting member 6 are used to limit the range of motion of the clamping assembly 3 to avoid processing errors or equipment damage. When the clamping assembly 3 is in the first preset state, such as Figure 2 and Figure 5 As shown, the clamping member 32 drives the door / window 100 along the circumference of the rotating shaft 31 (e.g., Figure 2 When the clamping component 32 rotates clockwise (as shown in Figure I), the first baffle 323 abuts against the first limiting member 5, restricting further rotation of the clamping member 32. When the clamping component 3 is in the second preset state, as shown in Figure I... Figure 3 and Figure 4 As shown, the clamping member 32 drives the door / window 100 along the circumference of the rotating shaft 31 (e.g., Figure 4When the clamping member 32 rotates counterclockwise (as shown in the diagram), the second baffle 324 abuts against the second limiting member 6 and restricts the clamping member 32 from rotating further, thereby ensuring that the clamping member 32 rotates to the predetermined working angle.
[0039] Preferably, the clamping member 32 of the clamping assembly 3 has a preset angle with the worktable 1, which is between 0° and 90°. When the preset angle is 0°, the first baffle 323 abuts against the first limiting member 5. When the preset angle is 90°, the second baffle 324 abuts against the second limiting member 6, thereby realizing the processing of lock hole grooves on the surface of the door and window 100, thus ensuring processing accuracy and efficiency.
[0040] Preferred, such as Figure 4 and Figure 5 As shown, the surface of the baffle has scale lines. For example, the surface of the first baffle 323 is provided with a first scale line 7, which is a raised structure. During operation, the operator can adjust the position of the door / window 100 and the drilling component 2 according to the raised first scale line 7 to ensure accurate drilling. For another example, the surface of the second baffle 324 is provided with a second scale line 8, which is a recessed structure. The operator can adjust the position of the door / window 100 or the drilling component 2 according to the recessed second scale line 8 to facilitate accurate processing of the lock hole groove. For yet another example, the surface of the first baffle 323 is provided with a first scale line 7, and the surface of the second baffle 324 is provided with a second scale line 8. The first scale line 7 and the second scale line 8 are set opposite to each other. The operator can adjust the position of the door / window 100 according to the two scale lines to avoid positional deviation. During processing, the position of the drilling component 2 can be adjusted at any time according to the scale lines to avoid errors.
[0041] Preferred, such as Figure 1 As shown, a slide rail 9 is provided on the top surface of the fixed area 12, and the extension direction of the slide rail 9 is as follows (e.g., Figure 1 The x-direction shown in the figure is different from the conveying direction of the conveying device 4 (e.g., the x-direction shown in the figure) and the conveying direction of the conveying device 4 (e.g., the x-direction shown in the figure). Figure 1 As shown in the x direction, the punching assembly 2 is parallel to the worktable 1 via the slide rail 9, so that the punching assembly 2 moves to the desired punching position.
[0042] Preferred, such as Figures 1 to 3 As shown, the drilling assembly 2 includes a drilling body 20 and a drilling head 21. One end of the drilling body 20 is detachably connected to the drilling head 21 to facilitate replacement or cleaning by the operator and ensure the normal operation of the equipment. The other end of the drilling body 20 is slidably connected to a moving plate 22, which matches the slide rail 9. The sliding connection method can be adapted to the requirements. Along the height direction of the workbench 1 (as shown in the figure), the drilling body 20 drives the drilling head 21 to move up and down, so that the drilling head 21 moves closer to or further away from the door and window 100, thereby accurately positioning the required drilling position.
[0043] Preferred, such as Figure 1 As shown, a storage box 10 is provided at the bottom of the workbench 1. The storage box 10 is used to collect waste generated during the processing. The opening of the storage box 10 is oriented to correspond to the working area 11. During the operation of the equipment, the waste falls into the storage box 10 so that the operator can handle it in a concentrated manner, thereby effectively protecting the environment.
[0044] The working principle of the door and window lock hole groove processing equipment of this application is as follows:
[0045] like Figures 1 to 6 As shown, firstly, the operator places the door / window 100 on the conveyor belt 40 of the conveying equipment 4. The door / window 100 enters the working area 11 of the workbench 1 via the conveyor belt 40 of the conveying equipment 4 and is located between the first baffle 323 and the second baffle 324 of the clamping member 32. The clamping member 32 drives the electric actuator 322 according to the size of the door / window 100, so that the first baffle 323 moves closer to the second baffle 324, thereby fixing the door / window 100 to prevent it from sliding and shifting during subsequent operations.
[0046] After the clamping member 32 fixes the door and window 100, the drilling assembly 2 is moved. That is, the drilling body 20 on the drilling assembly 2 drives the drilling head 21 along the axial direction of the rotating shaft 31 (e.g., Figure 2 The punch head 21 moves back and forth in the direction shown in Figure I, thereby placing the punch head 21 at the required punching position on the door / window 100. At this time, the first baffle 323 of the clamping member 32 abuts against the first limiting member 5. Simultaneously, it is precisely positioned according to the first scale line 7 on the first baffle 323 and the second scale line 8 on the second baffle 324, and the hole groove is processed. After the punching assembly 2 completes the punching of one side of the door / window 100, the rotating shaft 31 on the clamping assembly 3 drives the clamping member 32 and the door / window 100 along the circumferential direction of the rotating shaft 31 (e.g., in the direction shown in Figure I). Figure 4 When the drill bit 21 rotates in the direction shown in Figure I, the second baffle 324 abuts against the second limiting member 6 to ensure that the drill bit 21 can accurately process the other side of the door and window 100. At the same time, the generated debris falls into the storage box 10 below the work area 11 for centralized disposal by the operator, effectively reducing environmental pollution.
[0047] Finally, the processed conveying equipment 4 transports the doors and windows 100 to the storage area for the operators to organize, thereby completing the processing of the lock hole grooves on the doors and windows 100.
[0048] Finally, it should be noted that the above description is merely a preferred embodiment of this utility model and is not intended to limit the utility model. Although the utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the scope of protection of the claims of this utility model.
Claims
1. A door and window lock hole and groove processing apparatus characterized by comprising: The door and window lock hole groove processing equipment comprises: a workbench having a work area and a fixed area; a punching assembly installed on the fixed area, the punching assembly being in sliding connection with the workbench; a clamping assembly located in the work area, the clamping assembly being used for clamping the door and window, one side of the clamping assembly being provided with a conveying device used for conveying the door and window; wherein the clamping assembly rotates along the circumferential direction of the conveying device, and the sliding direction of the punching assembly is parallel to the conveying direction of the conveying device.
2. The apparatus of claim 1, wherein, The clamping assembly comprises a support seat, a rotating shaft and a clamping piece, the support seat being fixed to the top surface of the workbench, the clamping piece being installed on the rotating shaft, and the rotating shaft being driven to rotate the clamping piece.
3. The apparatus of claim 2, wherein, The clamping piece comprises a linear guide rail, a fixed block and an electric actuator, the fixed block and the electric actuator being located at the end portions of the linear guide rail, wherein the extension direction of the linear guide rail is perpendicular to the conveying direction of the conveying device.
4. The apparatus of claim 3, wherein, The fixed block is provided with a first baffle, and the output end of the electric actuator is provided with a second baffle, the first baffle and the second baffle being oppositely arranged, and the door and window being located between the first baffle and the second baffle; the electric actuator is driven to make the second baffle close to or away from the first baffle.
5. The apparatus of claim 4, wherein, Along the width direction of the workbench, the two sides of the clamping assembly are separately provided with a first limiting piece and a second limiting piece, when the clamping assembly is in a first preset state, the first baffle abuts against the first limiting piece, and when the clamping assembly is in a second preset state, the second baffle abuts against the second limiting piece.
6. The apparatus of claim 5, wherein, The clamping piece and the workbench have a preset angle therebetween, the preset angle being between 0° and 90°.
7. The apparatus of claim 6 wherein, The surface of the first baffle is provided with a first scale line; and / or, the surface of the second baffle is provided with a second scale line.
8. The apparatus of claim 1, wherein, The top surface of the fixed area is provided with a slide rail, the extension direction of the slide rail being parallel to the conveying direction of the conveying device, and the punching assembly is in sliding connection with the workbench through the slide rail.
9. The apparatus of claim 8, wherein, The punching assembly comprises a punching body and a punching head, one end of the punching body being detachably connected with the punching head, and the other end being slidably connected with a moving plate, the moving plate being matched with the slide rail, and the punching body driving the punching head to move up and down along the height direction of the workbench, so that the punching head is close to or away from the door and window.
10. The apparatus of claim 1, wherein, The bottom of the workbench is provided with a storage box, and the opening of the storage box faces the work area.