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A virtual prototype of a constrained extensible crank mechanism: Dynamic simulation and design

机译:约束可扩展曲柄机构的虚拟原型:动态仿真和设计

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Dynamic response of mechanical systems containing rigid links connected by joints is affected by the velocity and mass of the systems components as well as by the presence of clearance or impact between components. Accurate simulations of such systems are increasingly important due to their wide application in engine design, knitting machinery or single and dual-arm robotic systems, as well as for their initial and optimised design. A virtual prototype of a newly developed extensible crank mechanism (applied to the design development of a bicycle crank) is presented in this article and its dynamical behaviour is analysed. The equations of motion of the extensible crank, constrained to either a circular or an elliptical path, are considered. Accurate simulation of the constrained extensible crank mechanism explores its performance and behaviour under the combined effect of different parameters such as clearance and impact. A three-dimensional finite element model is used to study the flexural behaviour of the extensible crank under the maximal loads that causes its motion.
机译:包含通过接头连接的刚性链节的机械系统的动态响应会受到系统组件的速度和质量以及组件之间存在间隙或冲击的影响。由于此类系统在发动机设计,针织机械或单臂和双臂机械手系统中的广泛应用以及它们的初始和优化设计,因此对其进行精确仿真变得越来越重要。本文介绍了一种新开发的可扩展曲柄机构的虚拟原型(应用于自行车曲柄的设计开发),并分析了其动力学行为。考虑了被限制为圆形或椭圆形路径的可伸长曲柄的运动方程。受约束的可伸缩曲柄机构的精确仿真探索了在间隙和冲击等不同参数共同作用下的性能和行为。使用三维有限元模型来研究可弯曲曲柄在最大载荷下的挠曲行为,该最大载荷导致其运动。

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