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A heavy load miniature six-component force sensing mechanism with hybrid branches

机译:具有杂交枝的重载微型六组件力传感机制

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摘要

The heavy-load force sensing mechanisms with small size and wide range have always been a challenge. To tackle this challenge, we propose a parallel six-component force sensing mechanism with sensitive measuring branches and high load-bearing branches based on the design idea of hybrid branch. Based on the virtual work principle and the geometric compatibility condition, the stiffness model and force mapping relationship of the mechanism are deduced, which provide the theoretical basis for the mechanism. Further, the comparison between the numerical calculation and the simulation values of the force sensing mechanism shows that the mathematical model is in good agreement with the finite element model. Finally, a calibration testing platform is built to analyze the measuring performances of the force sensing mechanism. By using the least square method to analyze the experimental data, the calibration matrix is obtained and the maximum nonlinear error is 1.65%. (C) 2020 Elsevier Ltd. All rights reserved.
机译:大尺寸和广泛范围小的重载力传感机制一直是挑战。为了解决这一挑战,我们提出了一种平行的六分量力传感机制,基于混合分支的设计思想,具有敏感的测量分支和高承载分支。基于虚拟工作原理和几何兼容性条件,推导了机构的刚度模型和力映射关系,为该机制提供了理论依据。此外,数值计算与力传感机制的仿真值之间的比较表明,数学模型与有限元模型很好。最后,建立了校准测试平台以分析力传感机构的测量性能。通过使用最小二乘法来分析实验数据,获得校准矩阵,最大非线性误差为1.65%。 (c)2020 elestvier有限公司保留所有权利。

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