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Modified Material Properties in Curved Panels Through Lamina Emergent Torsional Joints

机译:通过Lamina Exclent Torsional Conns的弯曲面板中的改性材料特性

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Compliant joints have a number of advantages that make them suitable for highly constrained design problems. While much work has been done on the design of compliant joints manufactured from planar sheet materials, this work focuses on the design of cylindrically-curved joints. A method for using lamina emergent torsional (LET) joints to increase energy storage efficiency in curved sheet materials is presented. A numerical model is provided for predicting the stiffness and maximum applied moment of a curved LET joint. Predicted curved LET joint stiffnesses and maximum moments are utilized to create shape factors that produce an effective modulus of elasticity and an effective modulus of resilience. For a given case, the effective modulus of elasticity is shown to decrease by about three orders of magnitude while the effective resilience decreases by approximately one order of magnitude. Designers can use this information to tailor materials to fit design requirements or to select alternative materials that were previously unsuited for an application.
机译:兼容的关节具有许多优点,使其适用于高度约束的设计问题。虽然在平面板材制造的柔顺关节的设计上完成了很多工作,但这项工作侧重于圆柱形弯曲的关节的设计。提出了一种利用Lamina Excrent扭转(让)接头以提高弯曲片材的储能效率的方法。提供了一种用于预测弯曲的刚度和最大施加力矩的数值模型。预测的弯曲让联合刚度和最大矩具有产生产生有效弹性模量的形状因子和有效的弹性模量。对于给定案例,有效的弹性模量被示出为减小大约三个数量级,而有效的弹性通过大约一个数量级降低。设计人员可以使用这些信息来定制材料以适应设计要求或选择以前不合适的替代材料。

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