一种蜂窝材料生产用切割装置

By employing a cutting device with a counting mechanism and a lifting mechanism in the production of honeycomb materials, and utilizing the meshing of a worm gear with a single fin to achieve automated feeding, the problems of low cutting efficiency, poor precision, and low safety have been solved, realizing an efficient and safe cutting process.

CN224508600UActive Publication Date: 2026-07-17TIANJIN MANOR ELECTRICAL EQUIP TECH CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
TIANJIN MANOR ELECTRICAL EQUIP TECH CO LTD
Filing Date
2025-07-01
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Existing cutting devices suffer from low cutting efficiency, poor precision, large errors, and low safety when cutting honeycomb materials. In particular, when manual pressing of individual fins is required, it can easily lead to high labor intensity and a high risk of finger injury for workers.

Method used

A cutting device for producing honeycomb materials is adopted. By setting up a counting mechanism and a lifting mechanism, the material is fed by the wave meshing of the worm gear and the single fin. Combined with the control of the cutting length by the servo motor, the feeding and cutting are automated, reducing manual intervention.

Benefits of technology

It improves cutting precision and efficiency, reduces worker labor intensity and safety risks, and ensures the stability and safety of the cutting process.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224508600U_ABST
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Abstract

本实用新型提供一种蜂窝材料生产用切割装置,属于钣金加工领域,包括底座,控制机构,通过安装架设置在底座上的导料槽,以及分别与控制机构电连接的切断机构、计数机构、升降机构,导料槽穿过切断机构、位于切断机构的刀口下方;升降机构设置在切断机构外,升降机构的升降端与计数机构固定连接;计数机构设置在导料槽的上方、位于切断机构的进料侧,包括盖板、伺服电机、蜗轮,伺服电机的底部固定在盖板上、侧面与升降机构的升降端固定,蜗轮与伺服电机传动连接;盖板放置在导料槽的槽体顶部,具有在升降机构的带动下、与导料槽接触 / 分离的自由度。本实用新型能够有效提高单翅片在切割工序中的切割精度、切割效率,以及安全性。
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Claims

1. A cutting device for honeycomb material production, characterized by: It includes a base (1), a control mechanism, a guide trough (3) mounted on the base (1) via a mounting bracket (2), and a cutting mechanism (4), a counting mechanism (5), and a lifting mechanism (6) electrically connected to the control mechanism respectively. The guide trough (3) passes through the cutting mechanism (4) and is located below the blade of the cutting mechanism (4). The lifting mechanism (6) is located outside the cutting mechanism (4), and the lifting end of the lifting mechanism (6) is fixedly connected to the counting mechanism (5); The counting mechanism (5) is located above the guide trough (3) and on the feeding side of the cutting mechanism (4). It includes a cover plate (7), a servo motor (8), and a worm gear (9). The bottom of the servo motor (8) is fixed on the cover plate (7), and its side is fixed to the lifting end of the lifting mechanism (6). The worm gear (9) is connected to the servo motor (8) in a transmission connection. The cover plate (7) is placed on top of the groove (10) of the guide groove (3) and has the freedom to contact / separate from the guide groove (3) under the drive of the lifting mechanism (6). The axis of the worm wheel (9) and the center of the guide groove (3) are on the same vertical plane. The tooth top and tooth bottom of the worm wheel (9) mesh with the single fin (11) in the guide groove (3).

2. The cutting device for honeycomb material production according to claim 1, wherein: The cutting mechanism (4) includes a cutting bracket (12), a lifting cylinder (13), and a cutting blade (14). The cutting bracket (12) has a cutting window (15) in the middle that can pass through the guide groove (3). The lifting cylinder (13) is located at the top of the cutting window (15) and is vertically downward. The cutting blade (14) is fixed on the telescopic end below the lifting cylinder (13) with the blade edge vertically downward. The guide groove (3) passes through the middle of the cutting window (15) and is located directly below the cutting blade (14).

3. The cutting device for honeycomb material production according to claim 2, wherein: The cutting mechanism (4) further includes a drive guide unit, which includes a sliding guide rail (16) and a guide plate (17). The sliding guide rail (16) is vertically arranged on the side of the feeding side of the cutting bracket (12). The guide plate (17) is arranged on the sliding guide rail (16) through a slide block (18). The lifting cylinder (13) is fixed to the upper end of the guide plate (17) through a transition block (19). The cutting blade (14) is fixed on the guide plate (17) and located in the middle of the cutting window (15) of the cutting bracket (12), and has the freedom to move up and down relative to the cutting bracket (12).

4. The cutting device for honeycomb material production according to claim 2, wherein: The cutting bracket (12) is also provided with a material guide support block (20), a blade retraction block (21) and a material guide connecting block (22). The material guide support block (20) is fixed on the discharge side of the cutting bracket (12), and the top surface and the bottom surface of the cutting window (15) are on the same horizontal plane. The material guide connecting block (22) and the retracting blade block (21) are fixed on the feeding side of the cutting bracket (12). The retracting blade block (21) is located between the material guide connecting block (22) and the cutting bracket (12). The top surface of the material guide connecting block (22) is on the same horizontal plane as the bottom of the feeding side guide groove (3). The plane where the top surface of the retracting blade block (21) is located is lower than the plane where the bottom of the guide groove (3) is located. The cutting blade (14) is located directly above the retracting blade block (21).

5. The cutting device for honeycomb material production according to claim 4, wherein: The guide trough (3) includes guide trough A (23) and guide trough B (24) connected to each other along the feeding direction. The discharge end of the guide trough A (23) is connected to the guide connecting block (22). The feed end of the guide trough B (24) is fixed on the bottom surface of the cutting window (15) of the cutting bracket (12) and extends above the retracting block (21). A cutting gap (25) is left between the guide trough A (23) and the cutter (14) to allow the cutter to extend into it. The cutter (14) is located directly above the cutting gap (25). The two side plates of the feed end of the guide trough B (24) are provided with chamfers to facilitate the introduction of the cutter (14).

6. The cutting device for honeycomb material production according to claim 1, wherein: The lifting mechanism (6) includes a lifting mounting base (26), a lifting cylinder (27), a linkage plate (28), and a guide rail (29). The lifting mounting base (26) is vertically arranged. The lifting cylinder (27) is fixed on the lifting mounting base (26) with the lifting end pointing vertically upward. The guide rail (29) is vertically fixed on the side of the lifting mounting base (26). The rear side of the linkage plate (28) is fixed to the guide slide (30)(18) of the guide rail (29), and the bottom surface is fixed to the lifting cylinder (27). The side closest to the counting mechanism (5) extends out of the lifting mounting base (26) and is fixedly connected to the servo motor (8). The servo motor (8) has the freedom to move vertically up and down under the drive of the lifting cylinder (27) and the linkage plate (28).

7. The cutting device for honeycomb material production according to claim 6, wherein: The lifting mechanism (6) also includes a longitudinal fine-tuning unit, which includes a longitudinal adjusting screw (31) and a longitudinal adjusting seat (32). The longitudinal adjusting seat (32) is fixed on the linkage plate (28). The upper end of the lifting mounting seat (26) is provided with a mounting top plate (33). The mounting top plate (33) is provided with a through hole through which the longitudinal adjusting screw (31) can pass. The upper end of the longitudinal adjusting screw (31) is fixed with a knob A (34), and the lower end passes through the through hole and is threadedly connected to the longitudinal adjusting seat (32).

8. The cutting device for honeycomb material production according to claim 6, wherein: The lifting mechanism (6) also includes a lateral fine-tuning unit, which includes a lateral adjusting screw, a lateral adjusting seat (35) and a locking handle (36). The linkage plate (28) includes a linkage plate A (281) and a linkage plate B (282). The rear side of the linkage plate A (281) is fixed to the guide slide (30) (18), and a T-shaped groove penetrating the linkage plate A (281) is provided along the extension direction of the linkage plate A (281). The lateral adjustment seat (35) is fixed at the end of the linkage plate A (281) away from the counting mechanism (5); one end of the linkage plate B (282) is fixedly connected to the servo motor (8), and the other end passes through the T-slot and is clearance-fitted with the T-slot; one end of the lateral adjustment screw is fixed with a knob B (37), and the other end passes through the lateral adjustment seat (35) and is rotatably connected to the linkage plate B (282) in the T-slot; the lateral adjustment seat (35) is threadedly connected to the lateral adjustment screw. The locking handle (36) is mounted on the linkage plate B (282) and has the freedom to engage or disengage with the linkage plate A (281).

9. The cutting device for honeycomb material production according to claim 3, wherein: The cutting bracket (12) is also provided with a buffer A (38), which is located at the upper end of the cutting bracket (12), with the buffer end extending into the cutting window (15) and above the adapter block (19).

10. The cutting device for honeycomb material production according to claim 6, wherein: The lifting mounting base (26) is also provided with a buffer B (39), which is fixed on the mounting top plate (33), with the buffer end extending downward out of the mounting top plate (33) and located above the linkage plate (28).