Double-shaft servo motor driven four-side saw working table mechanism

The four-side saw countertop mechanism driven by the dual-axis servo motor combines the control, detection, adjustment and drive mechanism, and solves the problems of low efficiency and unsolid locking of the existing four-side saw machines, and realizes an efficient and stable wooden door cutting process.

CN223057948UActive Publication Date: 2025-07-04SHAN DONG HONDA BENK CNC SMART EQUIP CO LTD
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Patent Information

Application Number
CN202421618472.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-09
Publication Date
2025-07-04
Estimated Expiration
2034-07-09

AI Technical Summary

Technical Problem

The existing four-side saw machines have low processing efficiency, the sliding table mechanism is not tightly locked, and the cylinder is prone to loosening, resulting in misprocessing.

Method used

The table top mechanism driven by a dual-axis servo motor is adopted, including a control mechanism, a detection and cutting mechanism, an adjustment mechanism and a driving mechanism. The cutting is controlled by the control mechanism, and the length and width of the scanning door of the cutting mechanism are detected, and the adjustment mechanism adjusts the width and height of the table. The driving mechanism drives the sliding table mechanism to transmit the door to the table, realizing vacuum adsorption and fixing, and improving locking firmness.

Benefits of technology

Improves machine processing efficiency and locking firmness, ensuring that wooden doors can be placed and fixed accurately, and avoids misprocessing.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN223057948U_ABST
    Figure CN223057948U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of four-side saw working table surfaces, in particular to a mechanism for driving a four-side saw working table surface by a double-shaft servo motor, which improves the machining efficiency and ensures that a sliding table mechanism moves and is firmly locked. Comprising a control mechanism, a detection cutting mechanism and an adjusting mechanism. The detecting and cutting mechanism is connected with the control mechanism, the adjusting mechanism is installed on the detecting and cutting mechanism, the sliding table mechanism is installed on the detecting and cutting mechanism, the driving mechanism is installed on the sliding table mechanism, the control mechanism controls the whole door to cut, and the detecting and cutting mechanism detects and scans the length and width of the door. The adjusting mechanism adjusts the width and height of the table top, and the driving mechanism drives the sliding table mechanism to convey the control door to the table top.
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Description

Technical Field

[0001] The utility model relates to the technical field of the workbench surface of a four-sided saw, in particular to a four-sided saw workbench surface mechanism driven by a double-axis servo motor. Background Technique

[0002] A four-sided saw, also known as a vertical and horizontal saw or a full-automatic four-sided saw, is a mechanical device that can perform all-round cutting on wood.

[0003] Existing four-sided saws, such as the prior art with the application number CN202222326336.X, include a lifting workbench, a pressing cylinder, a frame, a moving seat, a main shaft motor, a circular saw blade, etc. There are multiple motor fixing holes on the lifting plate, so that the installation position of the main shaft motor is adjustable. The outside of the frame is covered with a protective cover, and there are inlets and outlets for the workpiece assembly line and an outlet for the waste conveying line.

[0004] In the existing four-sided saw, the gantry is used to move the sliding table to the set position, and then the sliding table is fixed and locked by a cylinder when the sliding table is used. It takes a long time for the gantry to move the sliding table, and the machining efficiency of the machine is relatively low. The cylinder locking is easy to loosen, which is extremely likely to cause misprocessing. Content of the Utility Model

[0005] In order to solve the above technical problems, the utility model provides a four-sided saw workbench surface mechanism driven by a double-axis servo motor, which can improve the machining efficiency of the machine, the sliding table mechanism moves, and the locking is firm.

[0006] A four-sided saw workbench surface mechanism driven by a double-axis servo motor of the utility model includes a control mechanism, a detection and cutting mechanism, and an adjustment mechanism; it also includes a sliding table mechanism and a driving mechanism. The detection and cutting mechanism is connected to the control mechanism, the adjustment mechanism is installed on the detection and cutting mechanism, the sliding table mechanism is installed on the detection and cutting mechanism, and the driving mechanism is installed on the sliding table mechanism. The overall cutting is controlled by the control mechanism. The detection and cutting mechanism detects and scans the length and width of the door. The adjustment mechanism adjusts the width and height of the workbench surface. The driving mechanism drives the sliding table mechanism to transfer the control door to the workbench surface; the overall cutting is controlled by the control mechanism. The detection and cutting mechanism detects and scans the length and width of the door. The adjustment mechanism adjusts the width and height of the workbench surface to ensure that the door can be completely placed on the workbench surface so that it can be fixed by vacuum adsorption. The driving mechanism drives the sliding table mechanism to transfer the control door to the workbench surface, improving the practicability and relatively high machining efficiency of the machine, and the locking is firm.

[0007] Preferably, the control mechanism includes an operation console and a control chassis. The operation console and the control chassis are connected to the detection and cutting mechanism; the cutting length and width data are input through the operation console, and then the detection and cutting mechanism is controlled to cut the wooden door with the assistance of the control chassis.

[0008] Preferably, the detection and cutting mechanism includes a frame, a gantry, a detection gun, and a cutting machine. The control console and the control chassis are connected to the frame. The gantry is slidably mounted on the frame. The detection gun is mounted on the gantry, and the cutting machine is mounted on the gantry. By turning on the detection gun and the gantry, the length and width of the wooden door are scanned, and the wooden door is cut by the cutting machine.

[0009] Preferably, the adjustment mechanism includes a width adjustment servo motor and a length adjustment servo motor. An adjustment frame is provided on the frame, and the width adjustment servo motor and the length adjustment servo motor are mounted on the adjustment frame. Before processing the wooden door, the machine needs to adjust the width and length of the platform according to the width and length of the door. The width of the tabletop is adjusted by the width adjustment servo motor, and the length of the door is controlled by the length adjustment servo motor to ensure that the door can be completely placed on the tabletop for vacuum adsorption and fixation.

[0010] Preferably, the sliding table mechanism includes a frame, a fixed tabletop, linear guides, a sliding table bracket, and a sliding table. The frame is mounted on the frame. The fixed tabletop is slidably mounted on the frame. The linear guides are mounted on the frame. The sliding table bracket is slidably mounted on the linear guides, and the sliding table is mounted on the sliding table bracket. The wooden door is placed through the frame. By turning on the driving mechanism, the sliding table bracket is driven to slide on the linear guides, and then the sliding table is driven to move, which is convenient for transporting the wooden door to the cutting tabletop. By sliding the sliding table bracket on the linear guides, higher planar accuracy can be achieved.

[0011] Preferably, the driving mechanism includes a rack, a reducer, and a driving servo motor. The rack is mounted on the frame. The reducer is mounted on the sliding table bracket. The driving servo motor is mounted on the reducer. The reducer is connected to the driving servo motor. A gear is provided at the output end of the reducer, and the gear meshes with the rack. The wooden door is placed through the frame. By turning on the driving servo motor, the gear is driven to rotate with the assistance of the reducer, and then the sliding table bracket is driven to slide on the linear guides through the meshing relationship, and then the sliding table is driven to move, which is convenient for transporting the wooden door to the cutting tabletop. By sliding the sliding table bracket on the linear guides, higher planar accuracy can be achieved. The transmission accuracy of the meshing relationship between the gear and the rack is high, stable, and has a large torque, thus solving the defect that the cylinder cannot be locked.

[0012] Compared with the prior art, the beneficial effects of the present utility model are as follows: The overall cutting is controlled by the control mechanism. The detection and cutting mechanism detects and scans the length and width of the door. The adjustment mechanism adjusts the width and height of the tabletop to ensure that the door can be completely placed on the tabletop for vacuum adsorption and fixation. The driving mechanism drives the sliding table mechanism to transfer the control door to the tabletop, improving the practicability and the processing efficiency of the machine, and having a firm locking. Description of the Drawings

[0013] Figure 1It is the first axonometric structure schematic diagram of the present utility model;

[0014] Figure 2 It is the second axonometric structure schematic diagram of the present utility model;

[0015] Figure 3 It is the Figure 1 amplified structure schematic diagram of part A in the present utility model;

[0016] Reference signs in the drawings: 01, control mechanism; 11, console; 12, control chassis; 02, detection and cutting mechanism; 21, frame; 22, gantry; 23, detection gun; 24, cutting machine; 03, adjustment mechanism; 31, width adjustment servo motor; 32, length adjustment servo motor; 04, slide table mechanism; 41, frame; 42, fixed tabletop; 43, linear guide; 44, slide table bracket; 45, slide table; 05, drive mechanism; 51, rack; 52, reducer; 53, drive servo motor. Detailed implementation manners

[0017] For the convenience of understanding the present utility model, the present utility model will be described more comprehensively below with reference to the relevant drawings. The present utility model can be implemented in many different forms and is not limited to the embodiments described herein. On the contrary, the purpose of providing these embodiments is to make the disclosure of the present utility model more thorough and comprehensive.

[0018] Embodiment 1

[0019] As Figures 1 to 2 shown, a double-axis servo motor-driven four-side saw workbench surface mechanism includes a control mechanism 01, a detection and cutting mechanism 02, and an adjustment mechanism 03, and further includes a slide table mechanism 04 and a drive mechanism 05. The detection and cutting mechanism 02 is connected to the control mechanism 01. The adjustment mechanism 03 is installed on the detection and cutting mechanism 02. The slide table mechanism 04 is installed on the detection and cutting mechanism 02. The drive mechanism 05 is installed on the slide table mechanism 04;

[0020] The overall cutting is controlled by the control mechanism 01. The detection and cutting mechanism 02 detects and scans the length and width of the door. The adjustment mechanism 03 adjusts the width and height of the tabletop. The drive mechanism 05 drives the slide table mechanism 04 to transfer the control door to the tabletop;

[0021] The control mechanism 01 includes a console 11 and a control chassis 12. The console 11 and the control chassis 12 are connected to the detection and cutting mechanism 02;

[0022] The detection and cutting mechanism 02 includes a frame 21, a gantry 22, a detection gun 23, and a cutting machine 24. The console 11 and the control chassis 12 are connected to the frame 21. The gantry 22 is slidably installed on the frame 21. The detection gun 23 is installed on the gantry 22. The cutting machine 24 is installed on the gantry 22;

[0023] The adjusting mechanism 03 includes a width-adjusting servo motor 31 and a length-adjusting servo motor 32. An adjusting frame is provided on the frame body 21, and the width-adjusting servo motor 31 and the length-adjusting servo motor 32 are installed on the adjusting frame.

[0024] Before processing the wooden door, the machine needs to adjust the width and length of the platform according to the width and length of the door. The width of the tabletop is adjusted by the width-adjusting servo motor 31, and the length of the door is controlled by the length-adjusting servo motor 32 to ensure that the door can be completely placed on the tabletop so that it can be vacuum-sucked and fixed. By opening the detection gun 23 and the gantry 22, the length and width of the wooden door are scanned, and the wooden door is cut by the cutting machine 24. The driving mechanism 05 drives the sliding table mechanism 04 to transfer the control door to the tabletop, improving the practicability and the machining efficiency of the machine is relatively high, and the locking is firm.

[0025] Embodiment 2

[0026] As Figures 1 to 3 shown, a four-side saw workbench mechanism driven by a biaxial servo motor includes a control mechanism 01, a detection and cutting mechanism 02, and an adjusting mechanism 03. It also includes a sliding table mechanism 04 and a driving mechanism 05. The detection and cutting mechanism 02 is connected to the control mechanism 01. The adjusting mechanism 03 is installed on the detection and cutting mechanism 02. The sliding table mechanism 04 is installed on the detection and cutting mechanism 02. The driving mechanism 05 is installed on the sliding table mechanism 04.

[0027] The control mechanism 01 controls the overall cutting. The detection and cutting mechanism 02 detects and scans the length and width of the door. The adjusting mechanism 03 adjusts the width and height of the tabletop. The driving mechanism 05 drives the sliding table mechanism 04 to transfer the control door to the tabletop.

[0028] The control mechanism 01 includes an operation console 11 and a control chassis 12. The operation console 11 and the control chassis 12 are connected to the detection and cutting mechanism 02.

[0029] The detection and cutting mechanism 02 includes a frame body 21, a gantry 22, a detection gun 23, and a cutting machine 24. The operation console 11 and the control chassis 12 are connected to the frame body 21. The gantry 22 is slidably installed on the frame body 21. The detection gun 23 is installed on the gantry 22. The cutting machine 24 is installed on the gantry 22.

[0030] The adjusting mechanism 03 includes a width-adjusting servo motor 31 and a length-adjusting servo motor 32. An adjusting frame is provided on the frame body 21, and the width-adjusting servo motor 31 and the length-adjusting servo motor 32 are installed on the adjusting frame.

[0031] The sliding table mechanism 04 includes a frame 41, a fixed tabletop 42, linear guide rails 43, a sliding table bracket 44 and a sliding table 45. The frame 41 is installed on the frame body 21, the fixed tabletop 42 is slidably installed on the frame 41, the linear guide rails 43 are installed on the frame 41, the sliding table bracket 44 is slidably installed on the linear guide rails 43, and the sliding table 45 is installed on the sliding table bracket 44;

[0032] The driving mechanism 05 includes a rack 51, a speed reducer 52 and a driving servo motor 53. The rack 51 is installed on the frame 41, the speed reducer 52 is installed on the sliding table bracket 44, the driving servo motor 53 is installed on the speed reducer 52, the speed reducer 52 is connected to the driving servo motor 53, a gear is provided at the output end of the speed reducer 52, and the gear meshes with the rack 51;

[0033] The overall cutting is controlled by the control mechanism 01. The cutting mechanism 02 detects and scans the length and width of the door. The adjusting mechanism 03 adjusts the width and height of the tabletop to ensure that the door can be completely placed on the tabletop for vacuum adsorption and fixation. The wooden door is placed through the frame 41. By turning on the driving servo motor 53, the gear is driven to rotate with the assistance of the speed reducer 52. Then, through the meshing relationship, the sliding table bracket 44 slides on the linear guide rails 43, thereby driving the sliding table 45 to move, which is convenient for transporting the wooden door to the cutting tabletop. By sliding the sliding table bracket 44 on the linear guide rails 43, higher planar accuracy can be achieved. The transmission accuracy of the meshing relationship between the gear and the rack 51 is high, stable, and has a large torque, thus solving the defect that the air cylinder cannot be locked.

[0034] As Figures 1 to 3 shown, for a four-sided saw workbench surface mechanism driven by a double-axis servo motor of the present utility model, during operation, before processing the wooden door, the machine needs to adjust the width and length of the platform according to the width and length of the door. The width of the tabletop is adjusted by the width adjustment servo motor 31, and the length of the door is controlled by the length adjustment servo motor 32 to ensure that the door can be completely placed on the tabletop for vacuum adsorption and fixation. By turning on the detection gun 23 and the gantry 22, the length and width of the wooden door are scanned. The wooden door is cut by the cutting machine 24. The wooden door is placed through the frame 41. By turning on the driving servo motor 53, the gear is driven to rotate with the assistance of the speed reducer 52. Then, through the meshing relationship, the sliding table bracket 44 slides on the linear guide rails 43, thereby driving the sliding table 45 to move, which is convenient for transporting the wooden door to the cutting tabletop. By sliding the sliding table bracket 44 on the linear guide rails 43, higher planar accuracy can be achieved. The transmission accuracy of the meshing relationship between the gear and the rack 51 is high, stable, and has a large torque, thus solving the defect that the air cylinder cannot be locked.

[0035] The console 11, control chassis 12, gantry 22, detection gun 23, cutting machine 24, width adjustment servo motor 31, length adjustment servo motor 32, reduction gear 52 and drive servo motor 53 of the present utility model are purchased on the market. Those skilled in the art only need to install and operate them according to the attached operation manuals, without the need for creative labor from those skilled in this field.

[0036] The main functions achieved by the present utility model are: during the working process of the four-sided saw workbench, improving the machining efficiency of the machine, the movement of the sliding table mechanism, and firm locking.

[0037] The above are only the preferred embodiments of the present utility model. It should be noted that for those of ordinary skill in the art in this technical field, without departing from the technical principle of the present utility model, several improvements and modifications can also be made, and these improvements and modifications should also be regarded as the protection scope of the present utility model.

Claims

1. A biaxial servo motor-driven four-sided saw workbench mechanism, comprising a control mechanism (01), a detection and cutting mechanism (02), and an adjustment mechanism (03); characterized in that, It also includes a sliding table mechanism (04) and a driving mechanism (05). The detection and cutting mechanism (02) is connected to the control mechanism (01). The adjustment mechanism (03) is installed on the detection and cutting mechanism (02). The sliding table mechanism (04) is installed on the detection and cutting mechanism (02). The driving mechanism (05) is installed on the sliding table mechanism (04). The control mechanism (01) controls the overall cutting. The detection and cutting mechanism (02) detects and scans the length and width of the door. The adjustment mechanism (03) adjusts the width and height of the tabletop. The driving mechanism (05) drives the sliding table mechanism (04) to transfer the control door to the tabletop.

2. The four-sided saw workbench mechanism driven by a biaxial servo motor according to claim 1, characterized in that, The control mechanism (01) includes an operation console (11) and a control chassis (12). The operation console (11) and the control chassis (12) are connected to the detection and cutting mechanism (02).

3. A four-sided saw workbench mechanism driven by a biaxial servo motor according to claim 2, characterized in that, The detection and cutting mechanism (02) includes a frame (21), a gantry (22), a detection gun (23) and a cutting machine (24). The operation console (11) and the control chassis (12) are connected to the frame (21). The gantry (22) is slidably installed on the frame (21). The detection gun (23) is installed on the gantry (22). The cutting machine (24) is installed on the gantry (22).

4. The four-side saw workbench mechanism driven by a biaxial servo motor according to claim 3, characterized in that, The adjustment mechanism (03) includes a width adjustment servo motor (31) and a length adjustment servo motor (32). An adjustment frame is provided on the frame (21). The width adjustment servo motor (31) and the length adjustment servo motor (32) are installed on the adjustment frame.

5. The four-side saw workbench mechanism driven by a biaxial servo motor according to claim 3, wherein, The sliding table mechanism (04) includes a frame (41), a fixed tabletop (42), linear guide rails (43), a sliding table bracket (44) and a sliding table (45). The frame (41) is installed on the frame (21). The fixed tabletop (42) is slidably installed on the frame (41). The linear guide rails (43) are installed on the frame (41). The sliding table bracket (44) is slidably installed on the linear guide rails (43). The sliding table (45) is installed on the sliding table bracket (44).

6. The four-side saw workbench mechanism driven by a biaxial servo motor according to claim 5, characterized in that The driving mechanism (05) includes a rack (51), a speed reducer (52) and a driving servo motor (53). The rack (51) is installed on the frame (41). The speed reducer (52) is installed on the sliding table bracket (44). The driving servo motor (53) is installed on the speed reducer (52). The speed reducer (52) is connected to the driving servo motor (53). A gear is provided at the output end of the speed reducer (52). The gear meshes with the rack (51).

Citation Information

Patent Citations

  • Full-automatic four-side saw

    CN218050612U