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Enhanced formulae for determining the axial behavior of cylindrical extension springs

机译:增强的公式,用于确定圆柱形延伸弹簧的轴向行为

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摘要

Cylindrical extension springs have been commonly exploited in mechanical systems for years and their behavior could be considered as well identified. Nevertheless, it appears that the influence of the loops on the global stiffness is not yet taken into account properly. Moreover, it would be of key interest to analyze how initial tension in extension springs influences the beginning of the load-length curve. The paper investigates these topics using analytical, simulation and experimental approaches in order to help engineers design extension springs with greater accuracy. As a result, the stiffness of the loops has been analytically defined. It enables to calculate the global stiffness of extension springs with more accuracy and it is now possible to determine the effective beginning of the linear load-length relation of extension springs and thus to enlarge the operating range commonly defined by standards. Moreover, until now manufacturers had to define by a try and error process the axial pitch of the body of extension springs in order to obtain the required initial tension. Our study enables for the first time to calculate quickly this key parameter saving time on the manufacturing process of extension springs.
机译:圆柱形延伸弹簧通常在机械系统中普遍开发,多年来,它们可以被认为是识别的。尽管如此,似乎尚未正确考虑循环对全球刚度的影响。此外,分析延伸弹簧中的初始张力如何影响负载长度曲线的开始是关键的兴趣。本文使用分析,仿真和实验方法来调查这些主题,以帮助工程师设计扩展弹簧,更准确。结果,已经在分析定义了环的刚度。它能够以更精确度计算延伸弹簧的全局刚度,并且现在可以确定延伸弹簧的线性负荷长度关系的有效开始,从而扩大了由标准定义的操作范围。此外,直到现在制造商必须通过试验和误差处理延伸弹簧体的轴向间距,以便获得所需的初始张力。我们的研究首次实现了在扩展弹簧的制造过程中快速计算此密钥参数节省时间。

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