Fixture position adjusting device of multi-section saw

By designing a clamping position adjustment device with a transverse sliding component and a longitudinal displacement adjustment component on the multi-segment saw, the problem that the clamping mechanism can only move laterally is solved, thus achieving full cutting of materials and improving cutting efficiency.

CN223933812UActive Publication Date: 2026-02-24晶兆智能设备(邵武市)有限公司
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Patent Information

Application Number
CN202520523136.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-24
Publication Date
2026-02-24
Estimated Expiration
2035-03-24

AI Technical Summary

Technical Problem

The existing clamping mechanism of multi-segment saws can only perform lateral displacement and cannot adjust longitudinal displacement, resulting in insufficient material cutting.

Method used

A clamping position adjustment device for a multi-segment saw is designed, including a lateral sliding component, a longitudinal displacement adjustment component, and a locking component. The lateral sliding component controls the lateral movement of the material clamping component, and the longitudinal displacement adjustment component realizes the longitudinal displacement. The locking component is used to connect the clamping component and the sliding component.

Benefits of technology

It achieves full cutting of materials, reduces incomplete cutting, and improves cutting efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a clamp position adjusting device of a multi-section saw, and relates to the technical field of cutting clamp position adjusting.The clamp position adjusting device comprises a cutting supporting frame, a material clamping assembly is installed on the cutting supporting frame in a sliding mode, and a transverse sliding assembly is installed on the cutting supporting frame; the transverse sliding assembly is used for controlling the material clamping assembly to move transversely, the material clamping assembly is provided with the longitudinal displacement adjusting assembly, the longitudinal displacement adjusting assembly is used for controlling the material clamping assembly to move longitudinally, and the transverse sliding assembly is provided with the locking assembly. And the locking assembly is used for connecting the material clamping assembly with the transverse sliding assembly. The material cutting device has the effects that the material clamping assembly can be transversely and longitudinally moved, and materials can be cut more sufficiently.
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Description

Technical Field

[0001] This application relates to the field of cutting fixture adjustment technology, and in particular to a fixture position adjustment device for a multi-segment saw. Background Technology

[0002] Long, strip-shaped materials such as bamboo and wood are common in our daily lives. In the process of processing these materials into products we need, they need to be cut. For example, patent publication number CN222079501U discloses a multi-segment saw for cutting long materials into multiple segments. During the cutting process, the material needs to be placed in a clamping mechanism, and the position of the material is moved by moving the clamping mechanism. However, during the movement of the clamping mechanism, only lateral displacement is possible. During the cutting process, the clamping mechanism cannot be adjusted for longitudinal displacement, resulting in insufficient cutting of the material. Summary of the Invention

[0003] The purpose of this application is to provide a clamping position adjustment device for a multi-segment saw to solve the technical problem that "during the movement of the clamping mechanism, only lateral displacement can be performed, and longitudinal displacement adjustment of the clamping mechanism is not possible during the cutting process, resulting in insufficient material cutting."

[0004] The clamping position adjustment device for a multi-segment saw provided in this application adopts the following technical solution: A clamping position adjustment device for a multi-segment saw includes a cutting support frame, a material clamping assembly slidably mounted on the cutting support frame, a transverse sliding assembly mounted on the cutting support frame, the transverse sliding assembly being used to control the transverse movement of the material clamping assembly, a longitudinal displacement adjusting assembly mounted on the material clamping assembly, the longitudinal displacement adjusting assembly being used to control the longitudinal displacement of the material clamping assembly, and a locking assembly mounted on the transverse sliding assembly, the locking assembly being used to connect the material clamping assembly and the transverse sliding assembly.

[0005] Optionally, the lateral sliding assembly includes a lateral sliding stage, a lateral bottom slide rail fixedly installed at the bottom of the cutting support frame, a lateral side slide rail fixedly installed on the side of the cutting support frame, a lateral rack fixedly installed at the bottom of the cutting support frame, a lateral drive motor installed on the lateral sliding stage, a lateral drive gear installed at the output end of the lateral drive motor, and the lateral drive gear meshing with the lateral rack; the locking assembly is installed on the upper side of the lateral sliding stage.

[0006] Optionally, the longitudinal displacement adjustment component includes a movable roller, which is slidably mounted on a transverse side slide rail. A longitudinal telescopic component is installed on the material clamping component, and the output end of the longitudinal telescopic component is connected to the movable roller. The longitudinal telescopic component is used to control the longitudinal displacement of the material clamping component.

[0007] Optionally, the locking assembly includes a traction telescopic member fixed to the transverse sliding table, and a gripper is fixed to the end of the traction telescopic member for clamping the material clamping assembly.

[0008] Optionally, the material clamping assembly includes a clamping support plate fixed to the output end of the longitudinal telescopic member, a support hook fixed to the lower end of the clamping support plate, a pressing telescopic member fixed to the upper end of the clamping support plate, a pressing frame fixed to the output end of the pressing telescopic member, and the pressing frame slidably connected to the support hook.

[0009] Optionally, the gripper includes a pair of clamping plates and a pair of traction plates hinged to each other; one end of the traction plate is hinged to the traction telescopic member, and the end of the traction plate away from the traction telescopic member is hinged to the clamping plate; the clamping plate is rotatably connected to the transverse sliding table.

[0010] Optionally, a sensor is mounted on the transverse sliding stage, and a positioning plate that cooperates with the sensor is mounted on the clamping support plate.

[0011] In summary, this application includes at least one of the following beneficial technical effects:

[0012] 1. During the material cutting process, bundles of material are placed on the material clamping assembly. After being clamped by the material clamping assembly, the material clamping assembly is locked together by the lateral sliding assembly and the locking assembly. The material clamping assembly is connected to the lateral sliding assembly. When the lateral sliding assembly moves laterally, it drives the material clamping assembly to move, controlling the lateral movement of the material locked on the material clamping assembly. When it moves to the cutting device position, the longitudinal displacement adjustment assembly installed on the material clamping assembly can control the longitudinal displacement of the material clamping assembly, so that the cutting saw can cut the material fully.

[0013] 2. During the movement of the lateral sliding component, the longitudinal displacement adjustment component controls the material clamping component to move away from the lateral sliding component, so that the locking component on the lateral sliding component does not contact the material clamping component. When the lateral sliding component drags the material clamping component, the longitudinal displacement adjustment component controls the material clamping component to move closer to the lateral sliding component, so that the locking component locks the material clamping component, causing the lateral sliding component to drag the material clamping component to move. After the material clamping component is moved to the designated position, the longitudinal displacement adjustment component controls the material clamping component to move away from the lateral sliding component again, so that the movement of the locking component does not affect the material clamping component. Attached Figure Description

[0014] Figure 1 This is a schematic diagram of the overall structure of an embodiment of this application;

[0015] Figure 2 This is a schematic diagram of the lateral sliding component structure according to an embodiment of this application;

[0016] Figure 3 This is a schematic diagram of the material clamping assembly structure according to an embodiment of this application;

[0017] Figure 4 This is a schematic diagram of the installation structure of the material clamping assembly and the lateral sliding assembly in an embodiment of this application;

[0018] Figure 5 This is an embodiment of the present application. Figure 4 A magnified schematic diagram of the structure at point A in the middle.

[0019] In the diagram, 1. Cutting support frame; 2. Material clamping assembly; 21. Clamping support plate; 22. Support hook frame; 23. Downward telescopic component; 24. Downward pressure frame; 25. Positioning plate; 3. Lateral sliding assembly; 31. Lateral sliding table; 311. Sensor; 32. Lateral bottom slide rail; 33. Lateral side slide rail; 34. Lateral rack; 35. Lateral drive motor; 36. Lateral drive gear; 4. Longitudinal displacement adjustment assembly; 41. Moving roller; 42. Longitudinal telescopic component; 5. Locking assembly; 51. Traction telescopic component; 52. Grip; 521. Clamping connecting plate; 522. Traction connecting plate. Detailed Implementation

[0020] The following is in conjunction with the appendix Figure 1 - Appendix Figure 5 This application will be described in further detail below.

[0021] Reference Figure 1 A clamping position adjustment device for a multi-segment saw includes a cutting support frame 1, multiple material clamping assemblies 2 slidably mounted on the cutting support frame 1, a transverse sliding assembly 3 mounted on the cutting support frame 1 for controlling the transverse movement of the material clamping assemblies 2, a longitudinal displacement adjusting assembly 4 mounted on the material clamping assemblies 2 for controlling the longitudinal displacement of the material clamping assemblies 2, and a locking assembly 5 mounted on the transverse sliding assembly 3 for connecting the material clamping assemblies 2 and the transverse sliding assembly 3. During the material processing and cutting process, the clamped material is clamped onto the material clamping assemblies 2, and the locking assembly 5 connects the material clamping assemblies 2 and the transverse sliding assembly 3. The transverse sliding assembly 3 controls the transverse movement of the material clamping assemblies 2, and then the material is cut by a cutting device (not shown; the specific structure is prior art, refer to authorization announcement number CN). 222079501U discloses a structure for cutting long materials in a multi-segment saw. The material is cut by longitudinal displacement adjustment component 4, which can longitudinally displace material clamping component 2. The longitudinal displacement of material clamping component 2 can be controlled to make the material cut more fully and reduce the phenomenon of insufficient cutting caused by insufficient cutting.

[0022] During the movement of the lateral sliding component 3, the longitudinal displacement adjustment component 4 controls the material clamping component 2 to move away from the lateral sliding component 3, so that the locking component 5 on the lateral sliding component 3 does not contact the material clamping component 2. When the lateral sliding component 3 drags the material clamping component 2, the longitudinal displacement adjustment component 4 controls the material clamping component 2 to move closer to the lateral sliding component 3, so that the locking component 5 locks the material clamping component 2, and the lateral sliding component 3 drags the material clamping component 2. When the material clamping component 2 is moved to the designated position, the longitudinal displacement adjustment component 4 controls the material clamping component 2 to move away from the lateral sliding component 3 again, so that the movement of the locking component 5 does not affect the material clamping component 2.

[0023] Reference Figure 1 , Figure 2 The transverse sliding assembly 3 includes a transverse sliding table 31, a transverse bottom slide rail 32 fixedly installed at the bottom of the cutting support frame 1, a transverse side slide rail 33 fixedly installed on the side of the cutting support frame 1, a transverse rack 34 fixedly installed at the bottom of the cutting support frame 1, a transverse drive motor 35 installed on the transverse sliding table 31, a transverse drive gear 36 installed at the output end of the transverse drive motor 35, and the transverse drive gear 36 meshing with the transverse rack 34; a locking assembly 5 is installed on the upper side of the transverse sliding table 31; during the movement of the transverse sliding assembly 3, the locking assembly 5 is connected to the material clamping assembly 2, the transverse drive motor 35 installed on the transverse sliding table 31 controls the transverse drive gear 36 to rotate, and under the action of the transverse rack 34, the material clamping assembly 2 moves laterally, controlling the transverse displacement of the cut material, completing the cutting and relocation of the material.

[0024] Reference Figure 3 , Figure 4 The longitudinal displacement adjustment component 4 includes a movable roller 41, which is slidably mounted on the transverse side slide rail 33. A longitudinal telescopic component 42 is mounted on the material clamping component 2. The output end of the longitudinal telescopic component 42 is connected to the movable roller 41. The longitudinal telescopic component 42 is used to control the longitudinal displacement of the material clamping component 2. The longitudinal telescopic component 42 is a telescopic cylinder or an electric telescopic rod. When the longitudinal telescopic component 42 extends or retracts, it controls the material clamping component 2 to complete the longitudinal displacement, thereby enabling better cutting of the material. At the same time, when it is necessary to move the material clamping component 2 laterally, the longitudinal telescopic component 42 controls the material clamping component 2 to move closer to the locking component 5, so that the locking component 5 can lock the material clamping component 2. When the movement is finished, the longitudinal telescopic component 42 controls the material clamping component 2 to move away from the locking component 5, so that the locking component 5 and the material clamping component 2 do not affect each other during the lateral movement.

[0025] Reference Figure 4 , Figure 5The locking assembly 5 includes a traction telescopic member 51 fixed on the transverse sliding table 31. A clamp 52 is fixed to the end of the traction telescopic member 51. The clamp 52 is used to clamp the material clamping assembly 2. During the longitudinal displacement of the material clamping assembly 2, the clamp 52 clamps the material clamping assembly 2. The traction telescopic member 51 and the longitudinal telescopic member 42 extend and shorten synchronously, thereby making the material clamping assembly 2 move smoothly in the longitudinal horizontal direction.

[0026] Reference Figure 2 , Figure 4 The material clamping assembly 2 includes a clamping support plate 21 fixed to the output end of the longitudinal telescopic member 42. A support hook 22 is fixed to the lower end of the clamping support plate 21, and a downward telescopic member 23 is fixed to the upper end of the clamping support plate 21. A downward pressure frame 24 is fixed to the output end of the downward telescopic member 23. The downward pressure frame 24 is slidably connected to the support hook 22. During the clamping process of the material clamping assembly 2, the trapped material is placed on the support hook 22 and pressed against the upper side of the material by the downward pressure frame 24, thereby locking the trapped material on the material clamping assembly 2, thereby reducing the displacement of the material during the cutting process.

[0027] Reference Figure 4 , Figure 5 The gripper 52 includes a pair of clamping plates 521 and a pair of traction plates 522 hinged together. One end of the traction plate 522 is hinged to the traction telescopic member 51, and the end of the traction plate 522 away from the traction telescopic member 51 is hinged to the clamping plate 521. The clamping plate 521 is rotatably connected to the transverse sliding table 31. When the gripper 52 clamps the material clamping assembly 2, the traction telescopic member 51 shortens, causing the traction plate 522 to move, so that the clamping plate 521 generates clamping force. When the material clamping assembly 2 finishes its displacement, the extension control of the traction telescopic member 51 causes the clamping plate 521 to open, thereby releasing the material clamping assembly 2. At this time, the longitudinal displacement adjustment component 4 controls the material clamping assembly 2 to move away from the locking component 5.

[0028] Optionally, a sensor 311 (laser sensor) is installed on the transverse sliding stage 31, and a positioning plate 25 that cooperates with the sensor 311 is installed on the clamping support plate 21. By the cooperation of the sensor 311 and the positioning plate 25 (when the laser signal emitted by the sensor 311 is blocked by the positioning plate 25, it is determined that the material clamping assembly 2 and the locking assembly 5 are aligned), the alignment of the material clamping assembly 2 and the locking assembly 5 can be quickly achieved, so that the locking assembly 5 can be quickly locked with the material clamping assembly 2.

[0029] The embodiments described in this specific implementation are preferred embodiments of this application and are not intended to limit the scope of protection of this application. Identical components are represented by the same reference numerals. Therefore, all equivalent changes made to the structure, shape, and principle of this application should be included within the scope of protection of this application.

Claims

1. A clamp position adjustment device for a multi-segment saw, characterized in that: The device includes a cutting support frame (1), on which a material clamping assembly (2) is slidably mounted. A transverse sliding assembly (3) is mounted on the cutting support frame (1) and is used to control the transverse movement of the material clamping assembly (2). A longitudinal displacement adjusting assembly (4) is mounted on the material clamping assembly (2) and is used to control the longitudinal displacement of the material clamping assembly (2). A locking assembly (5) is mounted on the transverse sliding assembly (3) and is used to connect the material clamping assembly (2) and the transverse sliding assembly (3).

2. The clamp position adjustment device for a multi-segment saw according to claim 1, characterized in that, The transverse sliding assembly (3) includes a transverse sliding table (31), a transverse bottom slide rail (32) fixedly installed at the bottom of the cutting support frame (1), a transverse side slide rail (33) fixedly installed on the side of the cutting support frame (1), a transverse rack (34) fixedly installed at the bottom of the cutting support frame (1), a transverse drive motor (35) installed on the transverse sliding table (31), a transverse drive gear (36) installed at the output end of the transverse drive motor (35), and the transverse drive gear (36) meshing with the transverse rack (34); the locking assembly (5) is installed on the upper side of the transverse sliding table (31).

3. The clamp position adjustment device for a multi-segment saw according to claim 2, characterized in that, The longitudinal displacement adjustment component (4) includes a movable roller (41), which is slidably mounted on a transverse side slide rail (33). A longitudinal telescopic component (42) is mounted on the material clamping component (2). The output end of the longitudinal telescopic component (42) is connected to the movable roller (41). The longitudinal telescopic component (42) is used to control the longitudinal displacement of the material clamping component (2).

4. The clamp position adjustment device for a multi-segment saw according to claim 3, characterized in that, The locking assembly (5) includes a traction telescopic member (51) fixed on a transverse sliding table (31), and a clamp (52) is fixed to the end of the traction telescopic member (51). The clamp (52) is used to clamp the material clamping assembly (2).

5. The clamp position adjustment device for a multi-segment saw according to claim 3, characterized in that, The clamping assembly (2) includes a clamping support plate (21) fixed at the output end of the longitudinal telescopic member (42), a support hook (22) fixed at the lower end of the clamping support plate (21), a downward telescopic member (23) fixed at the upper end of the clamping support plate (21), a downward pressure frame (24) fixed at the output end of the downward telescopic member (23), and the downward pressure frame (24) is slidably connected to the support hook (22).

6. The clamp position adjustment device for a multi-segment saw according to claim 4, characterized in that, The gripper (52) includes a pair of clamping plates (521) and a pair of traction plates (522) that are hinged to each other; one end of the traction plate (522) is hinged to the traction telescopic member (51), and the end of the traction plate (522) away from the traction telescopic member (51) is hinged to the clamping plate (521); the clamping plate (521) is rotatably connected to the transverse sliding table (31).

7. The clamp position adjustment device for a multi-segment saw according to claim 5, characterized in that, A sensor (311) is installed on the transverse sliding stage (31), and a positioning plate (25) that cooperates with the sensor (311) is installed on the clamping support plate (21).

Citation Information

Patent Citations

  • Multi-section saw for cutting long materials

    CN222079501U