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首页> 外文期刊>IEEE transactions on nanotechnology >A New Model Developed to Evaluate the Contact Area Arising During Nano-indentation Tests With Pileup Behavior of Metal Materials
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A New Model Developed to Evaluate the Contact Area Arising During Nano-indentation Tests With Pileup Behavior of Metal Materials

机译:开发了一种新模型,用于评估纳米压痕测试中金属材料堆积行为的接触面积

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A new mechanical model is developed in this paper for metal materials to investigate the behavior arising during the loading/unloading process of an indentation test. Two governing differential equations are derived for the depth solution of the indenter tip and the depth solution formed at the separation point, expressed in a power form. All spring/block and damping coefficients shown in these governing differential equations associated with the elastic/plastic and viscous behaviors are determined by the real-coded genetic algorithm. With the aid of experimental results of the depth at the indenter tip shown at large and small indentation depths, aluminum and steel were used as two examples of soft materials in this paper. The pileup behavior is implicitly included in the evaluation of the contact projected area ($A$) in the present model. A significant difference in $A$ is caused if the pileup is not considered in the model. Under a constant maximum load, the contact area is slightly increased by decreasing the loading/unloading rate.
机译:本文针对金属材料开发了一种新的力学模型,以研究压痕测试在加载/卸载过程中产生的行为。对于压头尖端的深度解和在分离点处形成的深度解,导出了两个主导的微分方程,以幂形式表示。这些与弹性/塑性和粘性行为相关的支配微分方程中显示的所有弹簧/阻滞系数和阻尼系数由实数编码遗传算法确定。借助在大和小压痕深度下显示的压头尖端深度的实验结果,本文以铝和钢为例,作为软材料的两个例子。在本模型中,联系行为投影面积($ A $)的评估中隐含了堆积行为。如果在模型中未考虑堆积,则会导致$ A $的显着差异。在恒定的最大负载下,通过减小加载/卸载速率可以稍微增加接触面积。

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