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Determination of the mechanical properties of amorphous materials through instrumented nanoindentation

机译:通过仪器化纳米压痕测定非晶材料的机械性能

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摘要

A novel methodology based on instrumented indentation is developed to determine the mechanical properties of amorphous materials which present cohesive-frictional behaviour. The approach is based on the concept of a universal hardness equation, which results from the assumption of a characteristic indentation pressure proportional to the hardness. The actual universal hardness equation is obtained from a detailed finite element analysis of the process of sharp indentation for a very wide range of material properties, and the inverse problem (i.e. how to extract the elastic modulus, the compressive yield strength and the friction angle) from instrumented indentation is solved. The applicability and limitations of the novel approach are highlighted. Finally, the model is validated against experimental data in metallic and ceramic glasses as well as polymers, covering a wide range of amorphous materials in terms of elastic modulus, yield strength and friction angle.
机译:开发了一种基于仪器化压痕的新方法来确定具有内聚摩擦行为的非晶材料的力学性能。该方法基于通用硬度方程的概念,该方程是假设特征压痕压力与硬度成正比而产生的。实际的通用硬度方程是通过对非常广泛的材料特性的锐压痕过程的详细有限元分析得出的,并求解了仪器压痕的反问题(即如何提取弹性模量、抗压屈服强度和摩擦角)。强调了新方法的适用性和局限性。最后,根据金属和陶瓷玻璃以及聚合物的实验数据验证了该模型,在弹性模量、屈服强度和摩擦角方面涵盖了广泛的非晶材料。

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