Application of Origami Engineering in the Formation of Complex Spring Shapes of Thin Steel Plates via Laser Quenching Forming

Yusuke Mima, T. Hirogaki, E. Aoyama
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Abstract

In this study, the controllability of the spring performance of complex sheet spring shapes was investigated to develop complex sheet spring shapes that are based on origami engineering, with the aim of integrating laser hardening formation with origami engineering. The number of forms generated during the same development was predicted from an origami engineering perspective, and two forms that agreed with the experimental results were generated. Consequently, the rigid-body origami simulation showed that the deformation behavior differs from that of the measured values, which is considered to be in accordance with elastic-body origami. Moreover, springs with arbitrary performances could be produced by varying the processing time and form.
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折纸工程在通过激光淬火成型形成薄钢板复杂弹簧形状中的应用
本研究调查了复杂片状弹簧性能的可控性,以开发基于折纸工程的复杂片状弹簧,目的是将激光硬化成型与折纸工程相结合。从折纸工程学的角度预测了同一开发过程中产生的形状数量,并产生了两种与实验结果一致的形状。因此,刚体折纸模拟显示,变形行为与测量值不同,这被认为符合弹性体折纸。此外,通过改变加工时间和形式,还可以制作出具有任意性能的弹簧。
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