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SYNTHESIS OF VARIABLE-DIAMETER HELICAL EXTENSION SPRINGS

机译:变径螺旋拉伸弹簧的合成

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Helical extension springs store energy and provide resistance to tensile loads that are applied through appropriate spring ends. Typical spring ends include different types of hooks or loops. Both ends of a helical extension spring are attached to other components. When the two components move apart and their distance is increased, the helical extension spring exerts a tensile force between the two components and tries to decrease their distance. There are various applications for helical extension springs that include automobiles, toys, hand tools, agriculture machines, textile machines, and medical devices. The common configuration of helical extension springs uses straight cylindrical shape that has constant coil diameter and pitch. Unlike regular helical extension springs, variable-diameter helical extension springs do not employ constant coil diameter. Their variable coil diameter enables them to produce desired force deformation relationships and reduce stress concentration. The distinctive features of variable-diameter helical extension springs also raise their synthesis challenges. To surmount these challenges, a method is introduced in this paper to model and design variable-diameter helical extension springs. The configuration of a synthesized spring is described by a composite parametric curve. The entire spring is defined by its control parameters. Synthesizing the spring is systematized as optimizing its control parameters. Examples on modeling, analyzing and designing springs are presented in the paper to demonstrate the procedure and verify the effectiveness of the introduced synthesis method.
机译:螺旋形拉伸弹簧可以储存能量,并抵抗通过适当的弹簧端施加的拉伸载荷。典型的弹簧端包括不同类型的钩或环。螺旋拉伸弹簧的两端都连接到其他组件。当两个组件分开并且其距离增加时,螺旋拉伸弹簧会在两个组件之间施加拉力,并试图减小它们的距离。螺旋拉伸弹簧有多种应用,包括汽车,玩具,手动工具,农业机械,纺织机械和医疗设备。螺旋拉伸弹簧的常见配置使用具有恒定线圈直径和螺距的直圆柱形状。与常规的螺旋拉伸弹簧不同,直径可变的螺旋拉伸弹簧不采用恒定的线圈直径。它们的可变线圈直径使它们能够产生所需的力变形关系并减少应力集中。直径可变的螺旋拉伸弹簧的独特特征也增加了它们的合成挑战。为了克服这些挑战,本文引入了一种方法来建模和设计变直径螺旋拉伸弹簧。合成弹簧的构造由复合参数曲线描述。整个弹簧由其控制参数定义。弹簧合成是系统化的,可以优化其控制参数。文中给出了有关弹簧建模,分析和设计的示例,以说明该过程并验证所引入的合成方法的有效性。

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