Wood processing equipment for aluminum-clad wood doors and windows
By using marking cotton to leave pigment marks on the wood on the aluminum-clad wood door and window wood processing equipment, the problem of the existing equipment being unable to detect program errors in a timely manner was solved, and efficient cutting without waste was achieved.
Patent Information
- Application Number
- CN202422655171.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-01
- Publication Date
- 2025-09-19
- Estimated Expiration
- 2034-11-01
AI Technical Summary
Existing aluminum-clad wood door and window wood processing equipment cannot detect preset program errors or mistakes in the cutting process in time, resulting in waste.
Before cutting, leave a pigment mark on the wood with a marking cotton to confirm whether the control process is normal and avoid waste.
By leaving a pigment mark before cutting, the accuracy of the cutting process is ensured, waste is avoided, and processing efficiency is improved.
Smart Images

Figure CN223354477U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of door and window processing equipment, and more specifically to a wood processing equipment for aluminum-clad wood doors and windows. Background Art
[0002] Aluminum-clad wood doors and windows are made of solid wood with a layer of aluminum. Usually, the interior side is solid wood and the exterior side is aluminum alloy. They have the advantages of strong sealing, thermal insulation, good sound insulation and beautiful appearance. Therefore, they are widely used in indoor home environments and have a very broad market.
[0003] In the process of preparing aluminum-clad wood doors and windows, processing the wood for aluminum-clad wood doors and windows is a key link in the processing process. In order to obtain wood that can be used to prepare doors and windows later, the original wood needs to be cut, polished and painted. Cutting refers to cutting the whole wood into multiple pieces of wood of suitable lengths according to production needs. With the continuous development of related production equipment, the existing technology has related equipment that can automatically complete the cutting of wood through pre-set control programs, thereby replacing manual cutting operations, reducing manual labor intensity, and ensuring that the cut end faces are neat. However, the existing technology can only directly perform cutting operations according to preset programs. If there is a mistake in the programming of the preset program or a writing error, the error cannot be discovered in time, which can easily lead to waste. Utility Model Content
[0004] The utility model provides a wood processing device for aluminum-clad wood doors and windows, which has the beneficial effect of being able to leave a pigment mark at a position to be cut before automatic cutting is performed to determine whether the control program is written normally and avoid waste generation.
[0005] A wood processing device for aluminum-clad wood doors and windows includes a processing table and a fixed part. A cutting groove is opened on the processing table. A sliding part is slidably connected to the fixed part. A cutting knife is rotatably connected to the sliding part. Two clamping rods are slidably connected to the processing table. A push plate is slidably connected to the processing table. The cutting knife is located directly above the cutting groove. A rotating part is rotatably connected to the sliding part. Marking cotton is fixed to the rotating part. The marking cotton is impregnated with pigment.
[0006] The device also includes a second motor fixedly connected to the sliding portion, and an output shaft of the second motor is fixedly connected to the cutting blade.
[0007] It also includes a third electric push rod fixedly connected to the fixed part, and the telescopic rod of the third electric push rod is fixedly connected to the sliding part.
[0008] It also includes a gear connected to the sliding part, the gear can rotate around a virtual axis, and a gear ring is fixed on the rotating part.
[0009] It also includes a third motor fixedly connected to the sliding part, and the output shaft of the third motor is fixedly connected to the gear.
[0010] The invention also includes a lead screw connected to the processing table, and the lead screw can rotate along a virtual axis. BRIEF DESCRIPTION OF THE DRAWINGS
[0011] The present invention will be further described in detail below with reference to the accompanying drawings and specific implementation methods.
[0012] Figure 1 and Figure 2 This is a structural diagram of a wood processing equipment for aluminum-clad wood doors and windows;
[0013] Figure 3 It is a structural diagram of the processing table;
[0014] Figure 4 Schematic diagram of the structure of the push plate;
[0015] Figure 5 It is a structural diagram of the mobile seat;
[0016] Figure 6 It is a structural diagram of the sliding part;
[0017] Figure 7 It is a structural diagram of the rotating part. DETAILED DESCRIPTION
[0018] like Figure 1-6 As shown:
[0019] The utility model comprises a processing table 101 and a fixing part 404, a cutting groove 105 is provided on the processing table 101, a sliding part 401 is slidably connected to the fixing part 404, a cutting knife 402 is rotatably connected to the sliding part 401, two clamping rods 102 are slidably connected to the processing table 101, a push plate 201 is slidably connected to the processing table 101, the cutting knife 402 is located just above the cutting groove 105, a rotating part 501 is rotatably connected to the sliding part 401, a marking cotton 502 is fixed to the rotating part 501, and the marking cotton 502 is impregnated with pigment.
[0020] The wood is then moved back and forth, and the wood is cut into pieces by the cutting blade 402. The wood is then cut into pieces by the cutting blade 402, and the cutting blade 402 is moved back and forth, and the wood is cut into pieces by the cutting blade 402. The distance between the positions is observed and measured, so as to judge whether the finished product produced by the subsequent cutting is the same as the target production demand. If different, the program is adjusted or rewritten in time until it meets the production demand. After meeting the production demand, the push plate 201 is reset and the wood is placed against the push plate 201 again, and then the rotating part 501 is operated to slide on the sliding part 401, and the rotating part 501 is rotated to be just above the cutting knife 402, and the cutting knife 402 is continuously rotated. Then, the preset cutting program is installed again and the push plate 201 is slided multiple times and the sliding part 401 is lowered multiple times after the push plate 201 stops sliding, and then the rotating cutting knife 402 is used to perform multiple actual cuts on the wood, thereby completing the cutting and shaping effect of the wood and avoiding the generation of waste. That is, the present device can leave a pigment mark at the position to be cut before automatic cutting to determine whether the control program is written normally and avoid the generation of waste. After determining that the program is correct, the batch of wood can be continuously processed to improve processing efficiency.
[0021] The cutting groove 105 is provided to provide sufficient space for the cutting operation of the cutting blade 402 during the cutting process, so as to facilitate the subsequent cutting operation;
[0022] The entire device is fixed by screwing bolts into the processing table 101 and the fixing part 404.
[0023] like Figure 6 As shown:
[0024] The second motor 403 is fixedly connected to the sliding portion 401 , and the output shaft of the second motor 403 is fixedly connected to the cutting blade 402 .
[0025] In actual use, the output shaft of the second motor 403 is operated to rotate, and then the output shaft of the second motor 403 is used to drive the cutting knife 402 to rotate, so that the cutting knife 402 can rotate continuously to complete the wood cutting operation.
[0026] like Figure 6 As shown:
[0027] The third electric push rod 405 is fixedly connected to the fixed portion 404 , and the telescopic rod of the third electric push rod 405 is fixedly connected to the sliding portion 401 .
[0028] By operating the telescopic rod of the third electric push rod 405 to extend and retract, the sliding part 401 is driven to slide up and down, and subsequent mark engraving and wood cutting operations are performed.
[0029] like Figure 6 As shown:
[0030] It also includes a gear 602 connected to the sliding part 401 . The gear 602 can rotate around a virtual axis. A gear ring is fixed to the rotating part 501 .
[0031] When the rotating part 501 needs to rotate, the gear 602 is rotated on the sliding part 401, and then the rotating gear 602 is used to rotate the transmission ring, so that the rotating part 501 is rotated on the sliding part 401, and the marking cotton 502 is rotated to the upper side of the cutting knife 402, which facilitates the subsequent cutting operation.
[0032] like Figure 6 As shown:
[0033] The third motor 601 is fixedly connected to the sliding portion 401 , and the output shaft of the third motor 601 is fixedly connected to the gear 602 .
[0034] When the gear 602 needs to rotate, the third motor 601 is started and the output shaft of the third motor 601 is used to continuously drive the gear 602 to rotate, thereby achieving the effect of driving the rotating part 501 to rotate.
[0035] like Figure 4 As shown:
[0036] The processing table 101 further includes a lead screw 202 connected to the processing table 101, and the lead screw 202 can rotate along a virtual axis.
[0037] When the push plate 201 needs to be moved, the lead screw 202 is operated to rotate, so that the lead screw 202 drives the push plate 201 to slide on the processing table 101, thereby completing the effect of subsequently pushing the wood to move.
[0038] like Figure 4 As shown:
[0039] It also includes a first motor 203 fixedly connected to the processing table 101 , and the output shaft of the first motor 203 is fixedly connected to the lead screw 202 .
[0040] When the lead screw 202 needs to rotate, the output shaft of the first motor 203 is rotated, and then the output shaft of the first motor 203 drives the lead screw 202 to rotate, thereby achieving a driving effect.
[0041] like Figure 1-2 and Figure 5-6 As shown:
[0042] The processing apparatus further comprises a movable base 302 slidably connected to the processing table 101 , and a supplementary cotton 303 is fixedly connected to the movable base 302 , and the supplementary cotton 303 is impregnated with pigment.
[0043] When it is necessary to add pigment to the imprinting cotton 502 during the operation of the equipment, the rotating part 501 can be operated to rotate to the contact position between the imprinting cotton 502 and the supplementary cotton 303, so that the pigment impregnated in the supplementary cotton 303 is transferred to the imprinting cotton 502, and then the pigment imprinting operation is performed to ensure that the pigment imprint is clearly visible;
[0044] When it is not necessary to replenish the pigment, the movable base 302 is operated to slide on the processing table 101 so that the movable base 302 and the cutting blade 402 are completely staggered, thereby providing space for subsequent cutting operations.
[0045] like Figure 5 As shown:
[0046] The processing table 101 further includes a second electric push rod 301 fixedly connected to the processing table 101 , and a telescopic rod of the second electric push rod 301 is fixedly connected to the movable seat 302 .
[0047] The subsequent paint replenishing operation is completed by operating the telescopic rod of the second electric push rod 301 to slide, thereby causing the second electric push rod 301 to drive the moving base 302 to slide.
[0048] like Figure 3 As shown:
[0049] The processing table 101 further includes two first electric push rods 103 fixedly connected to the processing table 101 , and two telescopic rods on the two first electric push rods 103 are fixedly connected to the two clamping rods 102 respectively.
[0050] When the two clamping rods 102 need to be operated to slide, the telescopic rods of the two first electric push rods 103 can be driven to move, thereby completing the driving task.
Claims
1. A wood processing equipment for aluminum-clad wood doors and windows, characterized in that: The invention comprises a processing platform (101) and a fixing part (404), wherein a cutting groove (105) is provided on the processing platform (101), a sliding part (401) is slidably connected to the fixing part (404), a cutting knife (402) is rotatably connected to the sliding part (401), two clamping rods (102) are slidably connected to the processing platform (101), a push plate (201) is slidably connected to the processing platform (101), the cutting knife (402) is located just above the cutting groove (105), a rotating part (501) is rotatably connected to the sliding part (401), a marking cotton (502) is fixedly connected to the rotating part (501), and the marking cotton (502) is impregnated with pigment.
2. The aluminum-clad wood door and window wood processing equipment according to claim 1, characterized in that: It also includes a second motor (403) fixedly connected to the sliding part (401), and the output shaft of the second motor (403) is fixedly connected to the cutting knife (402).
3. The aluminum-clad wood door and window wood processing equipment according to claim 2, characterized in that: It also includes a third electric push rod (405) fixedly connected to the fixed part (404), and the telescopic rod of the third electric push rod (405) is fixedly connected to the sliding part (401).
4. The aluminum-clad wood door and window wood processing equipment according to claim 3 is characterized in that: It also includes a gear (602) connected to the sliding part (401), the gear (602) can rotate around a virtual axis, and a gear ring is fixed to the rotating part (501).
5. The aluminum-clad wood door and window wood processing equipment according to claim 4, characterized in that: It also includes a third motor (601) fixedly connected to the sliding part (401), and the output shaft of the third motor (601) is fixedly connected to the gear (602).
6. The aluminum-clad wood door and window wood processing equipment according to claim 5, characterized in that: The invention also includes a lead screw (202) connected to the processing table (101), and the lead screw (202) can rotate along a virtual axis.
7. The aluminum-clad wood door and window wood processing equipment according to claim 6, characterized in that: It also includes a first motor (203) fixedly connected to the processing table (101), and the output shaft of the first motor (203) is fixedly connected to the lead screw (202).
8. The aluminum-clad wood door and window wood processing equipment according to claim 1, characterized in that: The invention also comprises a movable seat (302) slidably connected to the processing table (101), wherein a supplementary cotton (303) is fixedly connected to the movable seat (302), and the supplementary cotton (303) is impregnated with pigment.
9. The aluminum-clad wood door and window wood processing equipment according to claim 8, characterized in that: It also includes a second electric push rod (301) fixedly connected to the processing table (101), and the telescopic rod of the second electric push rod (301) is fixedly connected to the movable seat (302).
10. The aluminum-clad wood door and window wood processing equipment according to claim 1, characterized in that: It also includes two first electric push rods (103) fixedly connected to the processing table (101), and two telescopic rods on the two first electric push rods (103) are respectively fixedly connected to the two clamping rods (102).