一种气凝胶加工用分切装置

By combining an eccentric wheel-driven linkage arm and a lifting cylinder, the problem of the cutter's difficulty in rapid lifting and lowering is solved, achieving efficient cutting and convenient operation of aerogel.

CN224509818UActive Publication Date: 2026-07-17JIANGSU JIAYUN ADVANCED MATERIALS CO LTD +2

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
JIANGSU JIAYUN ADVANCED MATERIALS CO LTD
Filing Date
2025-07-28
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Existing slitting devices for aerogel processing cannot achieve rapid reciprocating lifting and lowering of the cutter, resulting in slitting efficiency that is difficult to achieve as expected.

Method used

The system employs an eccentric wheel-driven linkage arm system and a lifting cylinder in conjunction with a belt drive mechanism to achieve rapid reciprocating lifting of the cutter. The multi-motor drive system adjusts the cutter position and conveyor belt movement, improving slitting efficiency and convenience.

Benefits of technology

This technology enables efficient slitting of aerogels, improves the efficiency and convenience of the slitting device, and expands its application range.

✦ Generated by Eureka AI based on patent content.

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Abstract

本实用新型公开了一种气凝胶加工用分切装置,包括工作台,工作台的顶端设有若干个支撑架,若干个支撑架的顶端安装有机架,机架的外侧设有U型架,U型架上端的一侧内壁上安装有第五电机,第五电机的一端延伸至U型架的外部并设有第四皮带传动机构,第四皮带传动机构远离第五电机一端的内壁通过转轴延伸至U型架的内侧并安装有偏心轮,偏心轮远离第四皮带传动机构一侧的内壁上转动安装有驱动臂,驱动臂远离偏心轮的一端转动安装有第一联动臂,第一联动臂远离驱动臂的一端转动安装有第二联动臂。本实用新型不仅保障了分切装置使用时对气凝胶的分切效率,还提高了分切装置使用时的便捷性,而且提高了分切装置的适用范围。
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Claims

1. A slitting device for aerogel processing, characterized by: The system includes a workbench (1), with several support frames (3) at the top of the workbench (1). A frame (4) is mounted on the top of each support frame (3). A U-shaped frame (21) is provided on the outer side of the frame (4). A fifth motor (25) is mounted on the inner wall of one side of the upper end of the U-shaped frame (21). One end of the fifth motor (25) extends to the outside of the U-shaped frame (21) and is provided with a fourth belt drive mechanism (26). The inner wall of the fourth belt drive mechanism (26) away from the fifth motor (25) extends to the inner side of the U-shaped frame (21) via a rotating shaft and is provided with an eccentric wheel (27). A drive arm (28) is rotatably mounted on the inner wall of the eccentric wheel (27) away from the fourth belt drive mechanism (26). A first linkage arm (29) is rotatably mounted on the end of the drive arm (28) away from the eccentric wheel (27). The outer sides of the first linkage arm (29) are... The wall is rotatably connected to the inner walls on both sides of the U-shaped frame (21). The first linkage arm (29) is rotatably mounted with a second linkage arm (30) at the end away from the drive arm (28). The bottom end of the second linkage arm (30) is mounted with a lifting seat (32). Limit frames (31) are provided on the inner walls of the U-shaped frame (21) on both sides of the lifting seat (32). The inner wall of the limit frame (31) is slidably connected to the outer wall of the lifting seat (32). A cutter (24) is installed at the bottom end of the lifting seat (32). A lifting cylinder (22) is installed on the top of the workbench (1) on one side of the U-shaped frame (21) through a bracket. A pressure plate (23) is installed at the bottom end of the lifting cylinder (22). A control box (2) is provided on the top of the workbench (1) on one side of the frame (4). The output end of the single-chip microcomputer inside the control box (2) is electrically connected to the input end of the lifting cylinder (22) and the fifth motor (25).

2. The device according to claim 1, wherein: The workbench (1) at the position of the U-shaped frame (21) is provided with a base (15) at the top. A fourth motor (16) is installed on one side of the top of the base (15). The input end of the fourth motor (16) is electrically connected to the output end of the microcontroller inside the control box (2). A lead screw (17) is installed at one end of the fourth motor (16). A nut seat (18) is threaded on the outer wall of the lead screw (17). A bearing seat (19) is provided at the top of the nut seat (18). The top of the bearing seat (19) is connected to the bottom end of the U-shaped frame (21).

3. The device according to claim 2, wherein: The base (15) has two limiting rails (20) on both sides of its top end, and the top of the limiting rails (20) is slidably connected to the bottom end of the bearing seat (19).

4. The device according to claim 1, wherein: The inner walls of the frame (4) on both sides of the U-shaped frame (21) are provided with a second belt drive mechanism (14). The top of the frame (4) at the position of the second belt drive mechanism (14) is equipped with a second motor (12) through a bracket. The input end of the second motor (12) is electrically connected to the output end of the single-chip microcomputer inside the control box (2). The bottom end of the second motor (12) is provided with a second gear drive mechanism (13). The bottom end of the second gear drive mechanism (13) is connected to one side of the top of the second belt drive mechanism (14).

5. The device according to claim 4, wherein: The inner wall of the frame (4) on one side of the second belt drive mechanism (14) is provided with a first belt drive mechanism (10). The top of the frame (4) at the position of the first belt drive mechanism (10) is equipped with a first motor (8) through a bracket. The input end of the first motor (8) is electrically connected to the output end of the single-chip microcomputer inside the control box (2). The bottom end of the first motor (8) is provided with a first gear drive mechanism (9). The bottom end of the first gear drive mechanism (9) is connected to one side of the top of the first belt drive mechanism (10).

6. The device according to claim 5, wherein: A conveyor belt (7) is provided on the inner wall of the frame (4) between the first belt drive mechanism (10). A third motor (5) is installed on the top of the workbench (1) on one side of the conveyor belt (7). The input end of the third motor (5) is electrically connected to the output end of the single-chip microcomputer inside the control box (2). A third belt drive mechanism (6) is provided at one end of the third motor (5). The end of the third belt drive mechanism (6) away from the third motor (5) is connected to one end of the conveyor belt (7). A slitting table (11) is fixedly installed on the inner wall of the frame (4) on the side of the third motor (5) away from the conveyor belt (7).