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Investigation into the numerical model behaviour of Belleville washers in cold roll forming

机译:贝勒维尔垫圈在冷弯成形中的数值模型行为研究

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摘要

With the steadily increase in demand for roll formed products due to their application for fields such as automotive, construction, architecture, etc., roll forming companies are challenge with rising customer demands. Companies are struggling to bring a product through from design to manufacture at improved rates, whilst achieving tighter tolerances. The roll forming process may also induce undesirable forming defects such as twist, distortion and straightness problems.Traditionally these issues would be resolved through an empirical approach which heavily relies on the designer's expertise and intuition. This approach can increase undesired development costs due to materials wasted and time delayed. Over the years, numerical simulations have been deployed to try and geometrically validate these defects and ultimately reduce the development phase of a product. The designer has the capability to virtually investigate changes in specific parameters without the risk of expensive tooling costs. The industry partner of this project, Hadley Group, Birmingham, implement Belleville washers into the roll tool configuration. The purpose of these washers is to apply pressure to the strip during roll forming in order to drive material through each forming station. They are also used to adjust the gap between the top and bottom forming rolls, since the incoming material gauge can vary by the nominal tolerance values from coil to coil. For the purpose of this paper, an investigation is carried out focusing on an individual parameter within the finite element analysis (FEA) of the cold roll forming process, i.e. the 'unknown' spring acting on the top roll during the forming process due to the implementation of Belleville washers in the pillar set up. The work explained in this paper shows the eects of the pressure applied to the forming process on the geometric attributes of the section being formed. The outcome will determine the viability of this parameter, which may ultimately require the numerical design methodology of roll formed products to be amended accordingly.
机译:随着由于其在汽车,建筑,建筑等领域的应用而对压制成型产品的需求稳定增长,压制成型公司面临着不断增长的客户需求的挑战。公司正在努力以更高的速度将产品从设计引入生产,同时实现更严格的公差。辊压成型过程可能还会引起不良的成型缺陷,例如扭曲,变形和直线度问题。传统上,这些问题将通过经验方法来解决,该方法严重依赖于设计者的专业知识和直觉。由于材料浪费和时间延迟,这种方法会增加不必要的开发成本。多年以来,已经部署了数值模拟来尝试对这些缺陷进行几何验证,并最终减少产品的开发阶段。设计人员具有虚拟研究特定参数变化的能力,而无需承担昂贵的工具成本。该项目的行业合作伙伴,伯明翰的Hadley Group,将Belleville垫圈应用于轧辊工具配置中。这些垫圈的目的是在辊压成型过程中对带钢施加压力,以驱动材料通过每个成型工位。它们也可用于调整顶部和底部成型辊之间的间隙,因为进料量规可能会因线圈之间的名义公差值而异。出于本文的目的,对冷轧成形过程的有限元分析(FEA)内的单个参数进行了研究,即由于成形过程中成形过程中作用在顶辊上的“未知”弹簧实施Belleville垫圈的支柱设置。本文中解释的工作表明了在成形过程中施加压力对成形截面的几何属性的影响。结果将决定该参数的可行性,最终可能需要对轧制成型产品的数值设计方法进行相应的修改。

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