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IDENTIFICATION OF NONLINEAR MICRON-LEVEL MECHANICS FOR A PRECISION DEPLOYABLE JOINT

机译:精密可展开关节的非线性微米水平力学识别

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The experimental identification of micron-level nonlinear joint mechanics and dynamics for a pin-clevis joint used in a precision, adaptive, deployable space structure are investigated. The force-state mapping method is used to identify the behavior of the joint under a preload. The results of applying a single tension-compression cycle to the joint under a tensile preload are presented. The observed micron-level behavior is highly nonlinear and involves all six rigid body motion degrees-of-freedom of the joint. It also suggests that at micron levels of motion modelling of the joint mechanics and dynamics must include the interactions between all internal joint components, such as the pin, bushings, and the joint node.
机译:研究了精确,自适应,可展开的空间结构的微米级非线性关节力学和动力学的实验识别。力 - 状态映射方法用于在预载荷下识别关节的行为。提出了在拉伸预载下将单个张力压缩循环施加到关节的结果。观察到的微米级行为是高度非线性的,并且涉及关节的所有六个刚性体运动程度。它还表明,在联合力学和动力学的微米级运动建模中,必须包括所有内部关节部件之间的相互作用,例如销,衬套和接合节点。

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