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Fast Estimation of Strains for Cross-Beams Six-Axis Force/Torque Sensors by Mechanical Modeling

机译:通过机械建模快速估算横梁六轴力/扭矩传感器的应变

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Strain distributions are crucial criteria of cross-beams six-axis force/torque sensors. The conventional method for calculating the criteria is to utilize Finite Element Analysis (FEA) to get numerical solutions. This paper aims to obtain analytical solutions of strains under the effect of external force/torque in each dimension. Genetic mechanical models for cross-beams six-axis force/torque sensors are proposed, in which deformable cross elastic beams and compliant beams are modeled as quasi-static Timoshenko beam. A detailed description of model assumptions, model idealizations, application scope and model establishment is presented. The results are validated by both numerical FEA simulations and calibration experiments, and test results are found to be compatible with each other for a wide range of geometric properties. The proposed analytical solutions are demonstrated to be an accurate estimation algorithm with higher efficiency.
机译:应变分布是横梁六轴力/扭矩传感器的关键标准。计算标准的常规方法是利用有限元分析(FEA)来获得数值解。本文旨在获得在各个维度上外力/扭矩作用下的应变解析解。提出了横梁六轴力/转矩传感器的遗传力学模型,其中将可变形的横弹性梁和柔性梁建模为准静态的蒂莫申科梁。给出了模型假设,模型理想化,应用范围和模型建立的详细描述。结果通过数值有限元分析和校准实验进行了验证,并且测试结果在广泛的几何特性方面相互兼容。所提出的解析解被证明是一种具有较高效率的精确估计算法。

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