自动包装机封口机颚式底盘拓扑优化

Arif Sercan Erez, Alim Filik, Volkan Temizel
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引用次数: 0

摘要

新冠肺炎疫情发生后,对卫生和密封包装食品的需求变得越来越重要,包装机械行业已成为一个重要行业。在这种情况下,对专用包装机的需求增加了。研究范围内研制的包装机的颚式机构以每分钟开合200次的方式完成封包功能,承载颚式机构的颚式底盘进行相同的系列运动。颚式底盘的设计应尽可能轻,这样就不会在提供运动的电机上施加额外的负载,同时它的强度应该很高,因为它将整个负载从颚板传递到电机。为了解决这一问题,使用了一种称为拓扑优化的结构优化方案,该方案在确定的约束框架内调节设计体积中元素的分布。通过进行拓扑优化研究,已经确定新的实体模型在暴露于5000 N的力下仍能提供足够的强度,并提供11%的重量增加。这项工作是获得轻量化设计的新研究的先驱。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
TOPOLOGY OPTIMIZATION OF PACKAGE SEALER JAW CHASSIS OF AUTOMATIC PACKAGING MACHINE
After the Covid-19 epidemic, the need to reach hygienic and sealed packaged food products has gained importance and the packaging machinery sector has become an important sector. In this context, the need for special packaging machines has increased. The jaw mechanism of the packaging machine developed within the scope of the study performs the package closing function by opening and closing 200 times per minute, and the jaw chassis carrying the jaw mechanism is exposed to the same series of movements. The design of the jaw chassis should be as light as possible so that no additional load is placed on the motors that provide the movement, while its strength should be high since it carries the entire load from the jaw plates to the motors. To solve this problem, a structural optimization solution called topology optimization, which regulates the distribution of the elements in the design volume within the framework of the determined constraints, is used. With the performed topology optimization study, it has been determined that the new solid model, which continues to provide sufficient strength when exposed to 5000 N force, provides 11% weight gain. This work has been a pioneer for new research to obtain lightweight designs.
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