一种快速抚膜装置

CN224511701UActive Publication Date: 2026-07-17JUNCHI IND AUTOMATION TECH (SUZHOU) CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
JUNCHI IND AUTOMATION TECH (SUZHOU) CO LTD
Filing Date
2025-08-12
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

The existing film smoothing device has an unreasonable structure, which causes a pause and waiting time during the film covering process after the yarn is rolled up, affecting the film smoothing efficiency and making it difficult to complete the film application and smoothing operations in a short time.

Method used

A rapid film smoothing device was designed, comprising an upper film smoothing mechanism and a lower film smoothing mechanism. The film is smoothed and patted while the product is held by the clamping mechanism. The driving mechanism drives the lower film smoothing mechanism to move, reducing waiting time. The device also performs left and right film smoothing immediately after the product is in place, thus improving the cycle time.

Benefits of technology

It effectively shortens processing time, improves film coating efficiency, meets production needs, has a reasonable structural design, occupies less space, and has a high degree of automation.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224511701U_ABST
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Abstract

本实用新型公开了一种快速抚膜装置,包括:上拍膜抚平机构和下拍膜抚平机构,所述上拍膜抚平机构安装于机架上,所述下拍膜抚平机构设于上拍膜抚平机构的下方,并与安装平台做移动式连接,且上拍膜抚平机构和下拍膜抚平机构相互配合。本实用新型中所述的一种快速抚膜装置,通过对其结构进行优化,夹持机构夹持产品过程中,就通过上拍膜抚平机构对位于产品上端部的膜进行拍膜并抚平,与此同时,驱动机构驱动下拍膜抚平机构向产品一侧移动,让其减少等待的时间,待产品到位后,立即进行左右拍膜,能够有效的提高抚膜的节拍,缩短其加工时间,让其更好的满足生产的需要。
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Claims

1. A rapid membrane soothing device, characterized by: include: The upper film smoothing mechanism (11) and the lower film smoothing mechanism (12) are installed on the frame (1). The lower film smoothing mechanism (12) is located below the upper film smoothing mechanism (11) and is movably connected to the installation platform. The upper film smoothing mechanism (11) and the lower film smoothing mechanism (12) cooperate with each other.

2. The rapid debridement device of claim 1, wherein: The film smoothing mechanism (11) includes a first mounting frame (111), a set of film smoothing assemblies (112), and a first drive cylinder (113). The first mounting frame (111) is provided with a first slide rail, and the first mounting frame (111) is provided with a set of synchronous pulleys (1111). The two synchronous pulleys (1111) are connected by a synchronous belt (1112). The film smoothing assembly (112) is slidably connected to the first slide rail through a sliding block. The first drive cylinder (113) Located on one side of the first mounting bracket (111), its output end is connected to the mounting base of one of the upper film assembly (112) via an adapter bracket (114). The adapter bracket (114) is connected to the synchronous belt (1112) via a clamping block. The other upper film assembly (112) is connected to the synchronous belt (1112) on the other side via a clamping block on another adapter bracket (114). The two upper film assemblies (112) are respectively connected to the synchronous belts (1112) located on both sides of the synchronous belt pulley (1111).

3. The rapid deflashing device of claim 1, wherein: The film smoothing mechanism (11) further includes a lifting drive cylinder (115), the output end of which is connected to the first mounting bracket (111).

4. The rapid deflashing device of claim 1, wherein: The lower film smoothing mechanism (12) includes a mounting frame assembly (121), a lower film smoothing mechanism (122), left and right film smoothing mechanisms (123), and a second lifting drive mechanism (124). The mounting frame assembly (121) is movably connected to a set of slide rails on the mounting platform via a sliding block, and a set of vertical slide rails is provided on the mounting frame assembly (121). The lower film smoothing mechanism (122) is lifted and lowered to the vertical slide rails via a set of sliders. The second lifting drive mechanism (124) is installed below the mounting frame assembly (121), and its output end is connected to the lower film smoothing mechanism (122). The left and right film smoothing mechanisms (123) are connected to the mounting frame assembly (121).

5. The rapid deflashing device of claim 4, wherein: The film lowering mechanism (122) includes a mounting plate (1221) and a film lowering frame assembly (1222). The mounting plate (1221) is connected to the vertical slide rail by a set of sliders in a lifting manner. The film lowering frame assembly (1222) is located on one side of the mounting plate (1221).

6. The rapid deflashing device of claim 5, wherein: The lower film frame assembly (1222) includes a film mounting frame (12221) and a lower film component (12222). The film mounting frame (12221) has a set of waist holes on one side and is connected to the mounting plate (1221) through a connector. The lower film component (12222) is located on the side of the film mounting frame (12221) away from the mounting plate (1221). A reinforcing rib is provided at the connection between the two, and the upper part of the lower film component (12222) is outwardly flared.

7. The rapid deflashing device of claim 5, wherein: The left and right film-applying mechanisms (123) include a set of film-applying mechanisms (1231) and a bidirectional drive mechanism (1232). The bidirectional drive mechanism (1232) is mounted on the mounting frame assembly (121), and a horizontal moving slide rail assembly is provided on one side. A converter (1233) is provided on one side of the film-applying mechanism (1231). The converter (1233) is slidably connected to the slide rail in the horizontal moving slide rail assembly through a set of sliders, and is simultaneously connected to the moving block on the bidirectional drive mechanism (1232).

8. The rapid deflashing device of claim 7, wherein: The film-tapping mechanism (1231) includes a film-tapping mounting base (12311), a film-tapping drive rod (12312), a film-tapping component (12313), and a film-tapping rotation drive mechanism (12314). The film-tapping mounting base (12311) is connected to the adapter (1233). The film-tapping drive rod (12312) is mounted on the film-tapping mounting base (12311). The film-tapping rotation drive mechanism (12314) is located below the film-tapping mounting base (12311), and its output end is connected to the film-tapping drive rod (12312). The film-tapping component (12313) is located on the film-tapping drive rod (12312).