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A one-dimensional stress wave model for analytical design and optimization of oscillation-free force measurement in high-speed tensile test specimens

机译:用于分析设计的一维应力波模型,高速拉伸试验中的振荡力测量优化

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摘要

In this work, the phenomenon of the oscillation-free force measurement in a new sample shape, called the Generation III (Gen. III) sample in a previous work, was first physically analyzed. Based on metal physics findings and the classical elastic stress wave theory, a simplified one-dimensional elastic stress wave model was developed. For this model, several assumptions were applied so that the Gen. III sample was modeled by five thin bar sections with different section sizes and material properties.By implementing the derived governing equations in the MATLAB software, which enables the combination with a mathematical optimization algorithm (sequential quadratic programming), both the characteristic of the current Gen. III sample and its sensitivity to the geometric parameters (such as the section sizes of the beams) and the material properties could be calculated. The developed model can not only correctly calculate the principle section design, but also make correct predictions of effects that have been overlooked until know.The model assumptions are thus reasonable. It was found that strain hardening of the sample material has an influence on the geometric parameters of the Gen. III sample. Therefore, the Gen. III sample geometry may be slightly adapted for each material.
机译:在这项工作中,首先在物理上分析了在先前工作中称为新的样品形状的自由振动力测量的现象,称为III(III型)样品。基于金属物理调查结果和经典弹性应力波理论,开发了一种简化的一维弹性应力波模型。对于该模型,应用了几种假设,使得III样品由五个薄杆部分建模,其中五个薄条部分具有不同的截面尺寸和材料特性。在Matlab软件中实现导出的管理方程,这使得与数学优化算法组合使用(序贯二次编程),目前III样品的特征均为样本及其对几何参数的敏感性(例如光束的截面尺寸)和材料特性。开发的模型不仅可以正确计算原理部分设计,还可以正确地预测忽视直到知道的效果。模型假设是合理的。发现样品材料的应变硬化对III族样品的几何参数有影响。因此,III族样品几何形状可以略微适用于每种材料。

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