Double-station interior door machining equipment

By designing a dual-station interior door processing equipment that integrates grinding and drilling functions, the problem that existing equipment cannot perform grinding and drilling simultaneously has been solved, achieving efficient processing of wooden doors.

CN223762891UActive Publication Date: 2026-01-06CHONGQING XINRUN HOME FURNISHING CO LTD
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Patent Information

Application Number
CN202520165809.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-24
Publication Date
2026-01-06
Estimated Expiration
2035-01-24

AI Technical Summary

Technical Problem

Existing interior door processing equipment cannot perform grinding and drilling simultaneously, requiring the use of different equipment, which increases manufacturers' equipment costs and reduces processing efficiency.

Method used

A dual-station interior door processing equipment was designed, comprising a worktable, an installation component, and a flipping component. It integrates sanding and drilling functions, and achieves comprehensive sanding and drilling of wooden doors through the cooperation of a sliding frame, an electric slider, and an electric push rod.

Benefits of technology

This technology enables comprehensive sanding and drilling of wooden doors, reducing the number of devices required, lowering manufacturer costs, and improving processing efficiency.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223762891U_ABST
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Abstract

The utility model relates to the technical field of interior door processing, in particular to double-station interior door processing equipment, which is characterized in that a wooden door is fixed on an overturning assembly, a drilling electric push rod drives a drilling sliding frame to move on a sliding guide rail, and the drilling sliding frame drives a drilling electric sliding block and a drilling component to move on an X axis; the drilling electric sliding block slides on the drilling sliding frame, the drilling electric sliding block drives the drilling component to move on the Y axis, the position of the drilling component is adjusted, the drilling component drills a door and resets after drilling is completed, and the polishing electric push rod drives the polishing sliding frame to slide on the sliding guide rail. The polishing sliding frame moves on the polishing electric sliding block and the polishing component on the X axis, the polishing electric sliding block slides on the polishing sliding frame, the polishing electric sliding block drives the polishing component to move on the Y axis, the position of the polishing component is adjusted, the polishing component polishes the door, and after one face of the door is polished, the overturning assembly drives the door to overturn. And the other side of the door is polished.
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Description

Technical Field

[0001] This utility model relates to the field of interior door processing technology, and in particular to a dual-station interior door processing equipment. Background Technology

[0002] Interior doors are an indispensable part of home decoration. They not only have the function of enclosing spaces, but also beautify the room and showcase different room styles and atmospheres. Interior doors can be divided into many types according to the materials used, such as solid wood, solid wood composite, molded, metal, paint-free, PVC and aluminum alloy doors, etc.

[0003] Currently, sanding and drilling are required during the processing of wooden doors. Sanding makes the surface of the wooden door smoother, facilitating subsequent surface treatment. Drilling holes in the wooden door makes it easy to install hinges, locks, and other accessories. These holes ensure the secure installation of accessories, guarantee the normal opening and closing of the door, and increase the stability of the fixed accessories, ensuring the safety of the door in use.

[0004] However, existing interior door processing equipment cannot sand and drill wooden doors, requiring the use of different equipment for processing. This increases the manufacturer's equipment costs, requires a larger space to house the processing equipment, and necessitates transferring the wooden doors between different devices, resulting in reduced processing efficiency and inconvenience for use. Utility Model Content

[0005] The purpose of this invention is to provide a dual-station interior door processing equipment that solves the problem of not being able to sand and drill wooden doors.

[0006] To achieve the above objectives, this utility model provides a dual-station interior door processing equipment including a workbench, an installation assembly, and a flipping assembly. The installation assembly includes a support frame, a sliding guide rail, a grinding sliding frame, a grinding electric slider, a grinding electric push rod, a drilling sliding frame, a drilling electric slider, a drilling electric push rod, a grinding component, and a drilling component. The support frame is fixedly connected to the workbench and located on one side of the workbench. The sliding guide rail is fixedly connected to the support frame and located on one side of the support frame. The grinding sliding frame is slidably connected to the sliding guide rail and located on one side of the sliding guide rail. The electric grinding slider is slidably connected to the grinding sliding frame and located on one side of the grinding sliding frame. The electric grinding push rod is fixedly connected to the support frame, and its output end is connected to the grinding sliding frame. The drilling sliding frame is slidably connected to the sliding guide rail and located on one side of the sliding guide rail. The electric drilling slider is slidably connected to the drilling sliding frame and located on one side of the drilling sliding frame. The electric drilling push rod is fixedly connected to the support frame, and its output end is connected to the drilling sliding frame. The grinding component is connected to the electric grinding slider. The drilling component is connected to the electric drilling slider. In use, the wooden door is placed on the flip assembly and fixed thereon. The electric drilling push rod is then activated, driving the drilling sliding frame to move on the sliding guide rail. The drilling sliding frame moves the electric drilling slider and the drilling component along the X-axis. The electric drilling slider slides on the drilling sliding frame, and the electric drilling slider moves the drilling component along the Y-axis to adjust its position. The drilling component then drills a hole in the door. After drilling, it resets and is activated again. The described electric sanding push rod drives the sanding sliding frame to slide on the sliding guide rail. The sanding sliding frame moves along the X-axis along the electric sanding slider and the sanding component. The electric sanding slider slides on the sanding sliding frame and drives the sanding component to move along the Y-axis to adjust the position of the sanding component. The sanding component sands the door. After one side of the door is sanded, the flipping assembly flips the door to sand the other side, thus sanding the entire door and solving the problem of not being able to sand and drill holes in wooden doors.

[0007] The grinding component includes a grinding cylinder, a grinding tool, and a grinding disc. The grinding cylinder is fixedly connected to the electric grinding slider and is located on one side of the electric grinding slider. The grinding tool is connected to the output end of the grinding cylinder. The grinding disc is connected to the output end of the grinding tool.

[0008] The drilling component includes a drilling cylinder, a drilling machine, and a drill bit. The drilling cylinder is fixedly connected to the electric drilling slider and is located on one side of the electric drilling slider. The drilling machine is connected to the output end of the drilling cylinder. The drill bit is connected to the output end of the drilling machine.

[0009] The flipping assembly includes a rotating base, a rotating shaft, a flipping motor, a placement frame, and a clamping component. The rotating base is fixedly connected to the worktable and is located on one side of the worktable. The rotating shaft is rotatably connected to the rotating base and passes through the rotating base. The flipping motor is fixedly connected to the rotating base, and its output end is connected to the rotating shaft. The placement frame is fixedly connected to the rotating shaft and is located at one end of the rotating shaft. The clamping component is connected to the placement frame.

[0010] The clamping component includes a clamping cylinder and a clamping block. The clamping cylinder is fixedly connected to the placement frame, and the output end of the clamping cylinder passes through the placement frame. The clamping block is connected to the output end of the clamping cylinder.

[0011] This utility model discloses a dual-station interior door processing equipment, comprising a workbench, an installation assembly, and a flipping assembly. The installation assembly includes a support frame, a sliding guide rail, a grinding sliding frame, a grinding electric slider, a grinding electric push rod, a drilling sliding frame, a drilling electric slider, a drilling electric push rod, a grinding component, and a drilling component. The grinding component includes a grinding cylinder, a grinder, and a grinding disc. The drilling component includes a drilling cylinder, a drilling machine, and a drill bit. The flipping assembly includes a rotating seat, a rotating shaft, a flipping motor, a placement frame, and a clamping component. The clamping component includes a clamping cylinder and a clamping block. The support frame is fixedly connected to the workbench and located on one side of the workbench. The sliding... The guide rail is fixedly connected to the support frame and located on one side of the support frame. The grinding sliding frame is slidably connected to the sliding guide rail and located on one side of the sliding guide rail. The grinding electric slider is slidably connected to the grinding sliding frame and located on one side of the grinding sliding frame. The grinding electric push rod is fixedly connected to the support frame, and the output end of the grinding electric push rod is connected to the grinding sliding frame. The drilling sliding frame is slidably connected to the sliding guide rail and located on one side of the sliding guide rail. The drilling electric slider is slidably connected to the drilling sliding frame and located on one side of the drilling sliding frame. The drilling electric push rod is fixedly connected to the support frame. The output end of the electric drilling actuator is connected to the drilling sliding frame, the grinding component is connected to the electric grinding slider, and the drilling component is connected to the electric drilling slider. In use, the wooden door is placed on the flip assembly and fixed thereon. The electric drilling actuator is then activated, driving the drilling sliding frame to move on the sliding guide rail. The drilling sliding frame moves the electric drilling slider and the drilling component along the X-axis. The electric drilling slider slides on the drilling sliding frame, and the electric drilling slider moves the drilling component along the Y-axis, adjusting the position of the drilling component. The component drills holes in the door, and after drilling, it resets. Then, the electric grinding push rod is activated, which drives the grinding sliding frame to slide on the sliding guide rail. The grinding sliding frame moves on the X-axis along the electric grinding slider and the grinding component. The electric grinding slider slides on the grinding sliding frame, and the electric grinding slider drives the grinding component to move on the Y-axis to adjust the position of the grinding component. The grinding component then grinds the door. After one side of the door is ground, the flipping component flips the door to grind the other side, thus fully grinding the door and solving the problem of not being able to grind and drill holes in wooden doors. Attached Figure Description

[0012] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the accompanying drawings used in the description of the embodiments or the prior art will be briefly introduced below.

[0013] Figure 1 This is a schematic diagram of the overall structure of the dual-station interior door processing equipment according to the first embodiment of this utility model.

[0014] Figure 2 This is a schematic diagram showing the connection between the electric slider and the drilling sliding frame of the dual-station interior door processing equipment according to the first embodiment of this utility model.

[0015] Figure 3 This is a schematic diagram of the dual-station interior door processing equipment according to the second embodiment of this utility model.

[0016] In the diagram: 101-Workbench, 102-Support frame, 103-Sliding guide rail, 104-Grinding sliding frame, 105-Grinding electric slider, 106-Grinding electric push rod, 107-Drilling sliding frame, 108-Drilling electric slider, 109-Drilling electric push rod, 110-Grinding cylinder, 111-Grinder, 112-Grinding disc, 113-Drilling cylinder, 114-Drilling machine, 115-Drill bit, 201-Rotating seat, 202-Rotating shaft, 203-Tilting motor, 204-Placement frame, 205-Clamping cylinder, 206-Clamping block. Detailed Implementation

[0017] The embodiments of the present invention are described in detail below. Examples of the embodiments are shown in the accompanying drawings. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain the present invention, but should not be construed as limiting the present invention.

[0018] The first embodiment of this application is as follows:

[0019] Please see Figure 1 and Figure 2 , Figure 1 This is a schematic diagram of the overall structure of the dual-station interior door processing equipment according to the first embodiment of this utility model. Figure 2 This is a schematic diagram of the connection between the electric slider and the drilling sliding frame of the dual-station interior door processing equipment according to the first embodiment of this utility model. The dual-station interior door processing equipment includes a worktable 101, an installation component, and a flipping component. The installation component includes a support frame 102, a sliding guide rail 103, a grinding sliding frame 104, a grinding electric slider 105, a grinding electric push rod 106, a drilling sliding frame 107, a drilling electric slider 108, a drilling electric push rod 109, a grinding component, and a drilling component. The grinding component includes a grinding cylinder 110, a grinder 111, and a grinding disc 112. The drilling component includes a drilling cylinder 113, a drilling machine 114, and a drill bit 115. The aforementioned solution solves the problem of not being able to grind and drill wooden doors, and also solves the problem of multi-faceted processing of doors.

[0020] In this specific embodiment, during use, the wooden door is placed on the flip assembly and fixed thereon. The electric drilling push rod 109 is then activated, driving the drilling sliding frame 107 to move on the sliding guide rail 103. The drilling sliding frame 107 moves the electric drilling slider 108 and the drilling component along the X-axis. The electric drilling slider 108 slides on the drilling sliding frame 107, and the electric drilling slider 108 moves the drilling component along the Y-axis to adjust its position. The drilling component then drills a hole in the door. After drilling is complete, the door is reset, and the grinding process is then initiated. An electric push rod 106 drives a sanding sliding frame 104 to slide on a sliding guide rail 103. The sanding sliding frame 104 moves along the X-axis along with a sanding electric slider 105 and a sanding component. The sanding electric slider 105 slides along the sanding sliding frame 104 and drives the sanding component to move along the Y-axis, adjusting the position of the sanding component. The sanding component sands the door. After one side of the door is sanded, the flipping assembly flips the door to sand the other side, thus sanding the entire door and solving the problem of not being able to sand and drill holes in wooden doors.

[0021] The support frame 102 is fixedly connected to the worktable 101 and located on one side of the worktable 101. The sliding guide rail 103 is fixedly connected to the support frame 102 and located on one side of the support frame 102. The grinding sliding frame 104 is slidably connected to the sliding guide rail 103 and located on one side of the sliding guide rail 103. The grinding electric slider 105 is slidably connected to the grinding sliding frame 104 and located on one side of the grinding sliding frame 104. The grinding electric push rod 106 is fixedly connected to the support frame 102, and the output end of the grinding electric push rod 106 is connected to the grinding sliding frame 104. The drilling sliding frame 107 is slidably connected to the sliding guide rail 103 and located on one side of the worktable 101. On one side of the guide rail 103, the drilling electric slider 108 is slidably connected to the drilling sliding frame 107 and located on one side of the drilling sliding frame 107. The drilling electric push rod 109 is fixedly connected to the support frame 102, and the output end of the drilling electric push rod 109 is connected to the drilling sliding frame 107. The grinding component is connected to the grinding electric slider 105, and the drilling component is connected to the drilling electric slider 108. The support frame 102 is located on the upper side of the worktable 101. The sliding guide rail 103 is located on the lower side of the top plate of the support frame 102. The grinding sliding frame 104 is located on the lower side of the sliding guide rail 103, and the grinding electric slider 105 is located on the lower side of the grinding sliding frame 104. The output end of the electric push rod 106 passes through the support frame 102 and is fixedly connected to the grinding sliding frame 104. The drilling sliding frame 107 is located below the sliding guide rail 103, and the drilling sliding block is located below the drilling sliding frame 107. The output end of the drilling electric push rod 109 passes through the support frame 102 and is fixedly connected to the drilling sliding frame 107. In use, the wooden door is placed on the flip assembly and fixed on the flip assembly. When the drilling electric push rod 109 is activated, it drives the drilling sliding frame 107 to move on the sliding guide rail 103. The drilling sliding frame 107 drives the drilling electric slider 108 and the drilling component to move on the X-axis. The slider 108 slides on the drilling sliding frame 107. The electric drilling slider 108 drives the drilling component to move on the Y-axis, adjusting the position of the drilling component. The drilling component drills a hole in the door. After drilling, it resets and then the electric grinding push rod 106 is activated. The electric grinding push rod 106 drives the grinding sliding frame 104 to slide on the sliding guide rail 103. The grinding sliding frame 104 moves on the X-axis along the electric grinding slider 105 and the grinding component. The electric grinding slider 105 slides on the grinding sliding frame 104, driving the grinding component to move on the Y-axis, adjusting the position of the grinding component. The grinding component then grinds the door.After one side of the door is sanded, the flipping assembly flips the door to sand the other side, thus sanding the entire door and solving the problem of not being able to sand and drill holes in the wooden door.

[0022] Secondly, the grinding cylinder 110 is fixedly connected to the grinding electric slider 105 and located on one side of the grinding electric slider 105; the grinder 111 is connected to the output end of the grinding cylinder 110; the grinding disc 112 is connected to the output end of the grinder 111, the grinding cylinder 110 is located below the grinding electric slider 105, the grinder 111 is fixed to the output end of the grinding cylinder 110, and the grinding disc 112 is fixed to the output end of the grinder 111. The grinding electric push rod 106 is activated, driving the grinding sliding frame 104 to slide on the sliding guide rail 103. The electric grinding slider 105, the grinding cylinder 110, and the grinder 111 move on the X-axis. The electric grinding slider 105 slides on the grinding sliding frame 104. The electric grinding slider 105 drives the lifting cylinder and the grinder 111 to move on the Y-axis to adjust the position of the grinder 111. When the grinding cylinder 110 is activated, it drives the grinder 111 and the grinding disc 112 to descend. The grinder 111 drives the grinding disc 112 to rotate. The grinding disc 112 grinds the door. After one side of the door is ground, the flipping assembly drives the door to flip and grind the other side of the door for a complete grinding of the door.

[0023] Then, the drilling cylinder 113 is fixedly connected to the drilling electric slider 108 and located on one side of the drilling electric slider 108; the drilling machine 114 is connected to the output end of the drilling cylinder 113; the drill bit 115 is connected to the output end of the drilling machine 114. The drilling cylinder 113 is located below the drilling electric slider 108, the drilling machine 114 is fixed on the output end of the drilling cylinder 113, and the drill bit 115 is fixed on the output end of the drilling machine 114. The drilling electric push rod 109 is activated, and the drilling electric push rod 109 drives the drilling sliding frame 107 to move on the sliding guide rail 103. The drilling sliding frame 107 drives the drilling electric slider 108, the drilling cylinder 113, and the drilling machine 114 to move on the X-axis. The drilling electric slider 108 slides on the drilling sliding frame 107. The drilling electric slider 108 drives the drilling cylinder 113 and the drilling machine 114 to move on the Y-axis, adjusting the position of the drilling machine 114 and the drill bit 115. When the drilling cylinder 113 is activated, it drives the drilling machine 114 and the drill bit 115 to descend. The drilling machine 114 drives the drill bit 115 to rotate, and the drill bit 115 drills a hole in the door.

[0024] When using the dual-station interior door processing equipment of this embodiment, the wooden door is placed on the flip assembly and fixed on the flip assembly. The drilling electric push rod 109 is activated, driving the drilling sliding frame 107 to move on the sliding guide rail 103. The drilling sliding frame 107 drives the drilling electric slider 108, the drilling cylinder 113, and the drilling machine 114 to move along the X-axis. The drilling slide 107 slides on the drilling sliding frame. The drilling electric slider 108 drives the drilling cylinder 113 and the drilling machine 114 to move on the Y-axis, adjusting the positions of the drilling machine 114 and the drill bit 115. When the drilling cylinder 113 is activated, it drives the drilling machine 114 and the drill bit 115 to descend. The drilling machine 114 drives the drill bit 115 to rotate, and the drill bit 115 drills a hole in the door. After drilling is completed, the hole is re-engaged. When the grinding electric push rod 106 is activated, it drives the grinding sliding frame 104 to slide on the sliding guide rail 103. The grinding sliding frame 104 moves along the X-axis along the grinding electric slider 105, the grinding cylinder 110, and the grinder 111. The grinding electric slider 105 slides along the grinding sliding frame 104, and the grinding electric slider 105 drives the lifting cylinder and the grinder 111 to move along the Y-axis. The position of the sander 111 is adjusted, and the sanding cylinder 110 is activated. The sanding cylinder 110 drives the sander 111 and the sanding disc 112 to descend. The sander 111 drives the sanding disc 112 to rotate, and the sanding disc 112 sands the door. After one side of the door is sanded, the flipping component drives the door to flip and sand the other side of the door, thus fully sanding the door and solving the problem of not being able to sand and drill holes in the wooden door.

[0025] The second embodiment of this application is as follows:

[0026] Please see Figure 3 , Figure 3 This is a schematic diagram of the dual-station interior door processing equipment according to the second embodiment of the present invention. Based on the first embodiment, the dual-station interior door processing equipment in this embodiment further includes a flipping component. The flipping component includes a rotating seat 201, a rotating shaft 202, a flipping motor 203, a placement rack 204, and a clamping component. The clamping component includes a clamping cylinder 205 and a clamping block 206.

[0027] In this specific embodiment, the door is placed on the placement rack 204, and the clamping member is activated to fix the door on the placement rack 204. After one side of the door is processed, the flipping motor 203 is activated, and the flipping motor 203 drives the rotating shaft 202 to rotate on the rotating seat 201. The rotating shaft 202 drives the placement rack 204 and the door to rotate, which facilitates the processing of the other side of the door.

[0028] The rotating seat 201 is fixedly connected to the worktable 101 and located on one side of the worktable 101; the rotating shaft 202 is rotatably connected to the rotating seat 201 and passes through the rotating seat 201; the flipping motor 203 is fixedly connected to the rotating seat 201, and the output end of the flipping motor 203 is connected to the rotating shaft 202; the placement frame 204 is fixedly connected to the rotating shaft 202 and located at one end of the rotating shaft 202; the clamping member is connected to the placement frame 204; the rotating seat 201 is located on the upper side of the worktable 101; the rotating shaft 202... 02 passes through the rotating base 201. The flipping motor 203 is located on one side of the rotating base 201. The placement rack 204 is located at the end of the rotating shaft 202 away from the flipping motor 203. The door is placed on the placement rack 204. The clamping member is activated, and the clamping member fixes the door on the placement rack 204. After one side of the door is processed, the flipping motor 203 is activated. The flipping motor 203 drives the rotating shaft 202 to rotate on the rotating base 201. The rotating shaft 202 drives the placement rack 204 and the door to rotate, which facilitates the processing of the other side of the door.

[0029] Secondly, the clamping cylinder 205 is fixedly connected to the placement frame 204, and the output end of the clamping cylinder 205 passes through the placement frame 204; the clamping block 206 is connected to the output end of the clamping cylinder 205, and the output end of the clamping cylinder 205 passes through the placement frame 204. The clamping block 206 is fixed to the output end of the clamping cylinder 205. When the clamping cylinder 205 is activated, the clamping cylinder 205 drives the clamping block 206 to descend, and the clamping block 206 fixes the door on the placement frame 204.

[0030] When using the dual-station interior door processing equipment of this embodiment, the door is placed on the placement rack 204. The clamping cylinder 205 is activated, and the clamping cylinder 205 drives the clamping block 206 to descend. The clamping block 206 fixes the door on the placement rack 204. After one side of the door is processed, the flipping motor 203 is activated. The flipping motor 203 drives the rotating shaft 202 to rotate on the rotating seat 201. The rotating shaft 202 drives the placement rack 204 and the door to rotate, which facilitates the processing of the other side of the door.

[0031] The above-disclosed embodiments are merely one or more preferred embodiments of this application and should not be construed as limiting the scope of this application. Those skilled in the art can understand that all or part of the processes for implementing the above embodiments and equivalent changes made in accordance with the claims of this application still fall within the scope of this application.

Claims

1. A double-station indoor door processing equipment comprising a workbench and a turnover assembly, characterized in that: further comprising a mounting assembly; the mounting assembly comprises a support frame, a sliding guide rail, a polishing sliding frame, a polishing electric sliding block, a polishing electric push rod, a drilling sliding frame, a drilling electric sliding block, a drilling electric push rod, a polishing member and a drilling member, the support frame is fixedly connected with the workbench and located at one side of the workbench, the sliding guide rail is fixedly connected with the support frame and located at one side of the support frame, the polishing sliding frame is slidingly connected with the sliding guide rail and located at one side of the sliding guide rail, the polishing electric sliding block is slidingly connected with the polishing sliding frame and located at one side of the polishing sliding frame, the polishing electric push rod is fixedly connected with the support frame, the output end of the polishing electric push rod is connected with the polishing sliding frame, the drilling sliding frame is slidingly connected with the sliding guide rail and located at one side of the sliding guide rail, the drilling electric sliding block is slidingly connected with the drilling sliding frame and located at one side of the drilling sliding frame, the drilling electric push rod is fixedly connected with the support frame, the output end of the drilling electric push rod is connected with the drilling sliding frame, the polishing member is connected with the polishing electric sliding block, and the drilling member is connected with the drilling electric sliding block.

2. The double-station indoor door processing equipment according to claim 1, characterized in that: the polishing member comprises a polishing cylinder, a polisher and a polishing disc, the polishing cylinder is fixedly connected with the polishing electric sliding block and located at one side of the polishing electric sliding block; the polisher is connected with the output end of the polishing cylinder; and the polishing disc is connected with the output end of the polisher.

3. The double-station indoor door processing equipment according to claim 1, characterized in that: the drilling member comprises a drilling cylinder, a drilling machine and a drill bit, the drilling cylinder is fixedly connected with the drilling electric sliding block and located at one side of the drilling electric sliding block; the drilling machine is connected with the output end of the drilling cylinder; and the drill bit is connected with the output end of the drilling machine.

4. The double-station indoor door processing equipment according to claim 1, characterized in that: the turnover assembly comprises a rotating seat, a rotating shaft, a turnover motor, a placing frame and a clamping member, the rotating seat is fixedly connected with the workbench and located at one side of the workbench; the rotating shaft is rotatably connected with the rotating seat and penetrates through the rotating seat; the turnover motor is fixedly connected with the rotating seat, the output end of the turnover motor is connected with the rotating shaft, the placing frame is fixedly connected with the rotating shaft and located at one end of the rotating shaft, and the clamping member is connected with the placing frame.

5. The double-station indoor door processing equipment according to claim 4, characterized in that: the clamping member comprises a clamping cylinder and a clamping block, the clamping cylinder is fixedly connected with the placing frame, the output end of the clamping cylinder penetrates through the placing frame, and the clamping block is connected with the output end of the clamping cylinder. ​ ​ ​ ​ ​ ​