首页> 外文会议>Proceedings of the 32nd International Conference on Metallurgical Coatings and Thin Films (ICMCTF-32 2005) >Combination of normal and lateral force-displacement measurements as a new technique for the mechanical characterization of surfaces and coatings
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Combination of normal and lateral force-displacement measurements as a new technique for the mechanical characterization of surfaces and coatings

机译:法向力和侧向力位移测量的组合作为一种新技术来表征表面和涂层的机械性能

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摘要

Nanoindentation with Vickers or Berkovich tips has become an established technique for the measurement of hardness and Young’s modulus. Also the use of spherical indenters has attracted more and more attention for the determination of the Young’s modulus and yield strength. However, these techniques are still far away from the conditions in a real applications where usually normal forces are combined with lateral forces in a tribological system. Therefore, often scratch and wear tests are used additionally to characterize the mechanical behavior. However, conventional techniques, which apply lateral forces, have the disadvantage that they often do not deliver characteristic and comparable material parameters which are independent of the measurement conditions and which can serve as input parameters for the modeling with analytical or finite element methods. This shall be overcome by a new technique, which will allow the measurement of lateral force-displacement curves with the same accuracy like conventional nanoindentation can do in normal direction. The realization of two independent measurements with the same tip at the same sample position will allow the calculation of more unknown material parameters than before. The use of spherical indenters with forces at which elastic or beginning plastic deformation takes place makes it easier to combine the measurements with analytical stress calculations and to derive critical material parameters. As a first step towards the abovementioned characterization method, a new nanomechanical tester with a high-resolution measurement of force and displacement in normal and lateral direction was developed and tested.
机译:带有维氏或Berkovich尖端的纳米压痕技术已成为一种用于测量硬度和杨氏模量的成熟技术。同样,球形压头的使用在确定杨氏模量和屈服强度方面也引起了越来越多的关注。但是,这些技术与实际应用中的条件仍然相去甚远,在实际应用中,摩擦系统中通常将法向力与横向力结合在一起。因此,通常会另外使用划痕和磨损测试来表征机械性能。然而,施加侧向力的常规技术的缺点在于,它们通常不提供独立于测量条件的特征和可比较的材料参数,这些参数和可比较的材料参数可以用作使用解析法或有限元法进行建模的输入参数。这将通过一种新技术来克服,该新技术将允许以与传统纳米压痕法线方向相同的精度测量横向力-位移曲线。在相同的样品位置使用相同的尖端实现两次独立的测量,将可以计算出比以前更多的未知材料参数。球形压头的使用会产生弹性或开始的塑性变形,因此更容易将测量值与分析应力计算结合起来并得出关键的材料参数。作为实现上述表征方法的第一步,开发并测试了一种新型的纳米机械测试仪,该测试仪可对法向和横向的力和位移进行高分辨率测量。

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