一种全自动高速连卷袋制袋机

By combining a floating material storage mechanism and micro-motion components, the problem of film tension fluctuation in traditional bag making machines is solved, achieving stable film conveying and surface flatness, and ensuring the reliability and efficiency of high-speed continuous production.

CN122401992APending Publication Date: 2026-07-17RUIAN LINGFENG PLASTIC PACKING MASCH FACTORY

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
RUIAN LINGFENG PLASTIC PACKING MASCH FACTORY
Filing Date
2026-06-18
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Traditional fully automatic high-speed continuous roll bag making machines experience severe fluctuations in film tension between the unwinding roller and the processing station during high-speed operation, leading to quality defects such as film stretching deformation, uneven thickness, misaligned sealing, and point breakage failure. Furthermore, conventional floating roller structures cannot meet the requirements of high-speed continuous and stable production.

Method used

Employing a floating material storage mechanism, micro-motion components, and smoothing components, and through multi-stage meandering material storage arcs and mechanical closed-loop adjustment, dynamic tension balance and continuous material supply are achieved. Combined with the automatic adjustment of the micro-motion components and smoothing components, stable film delivery and surface flatness are ensured.

Benefits of technology

It significantly reduces film breakage and stacking failure rates, improves film surface smoothness and stability of high-speed bag making process, and achieves reliability and efficiency of high-speed continuous production.

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Abstract

本申请涉及连卷袋制袋设备技术领域,具体为一种全自动高速连卷袋制袋机,包括制袋机的机架和用于放置袋体卷材的主放卷辊,所述机架的内侧且靠近主放卷辊的位置设有浮动储料机构,所述浮动储料机构包括固定于机架内侧的固定杆,所述固定杆上设有旋转阻尼器,所述旋转阻尼器上设有主摆杆,本申请设置浮动储料机构,袋体在第七至第一转辊之间形成多级迂回式“S”形储料弧线,显著延长了储料行程,当收袋速度大于放卷速度时,主摆杆在张力驱动下绕固定杆平稳摆动,快速释放存储的袋体,实现瞬时补料,避免袋体冲击撕裂,保证了高速运行下张力的动态平衡与供料的连续性,降低了断料或堆料故障率。
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