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Improved nanomechanical test techniques for surface engineered materials

机译:用于表面工程材料的改进的纳米力学测试技术

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摘要

The development and implementation of a wide range of innovative nanomechanical test techniques to solve tribological problems in surface engineered systems are described in this review. By combining results with several different nanomechanical techniques, predictive design rules based on the elastic and plastic deformation energies involved in contact are proposed to optimise mechanical properties in the various contact situations that occur for different applications. Results are presented with the NanoTest platform for applications in biomedical devices, surface engineering of lightweight alloys, wear resistance of physical vapour deposition and chemical vapour deposition coatings as well as fracture fatigue resistance of diamond-like carbon coatings. Surface engineering to increase the ratio of hardness to elastic modulus (HIE) can be beneficial in a range of applications but care should be taken that, first, it be done without introducing too large intrinsic stress or stress discontinuities in mechanical contact loading, second, the severity of the contact results in high stresses and there is a requirement for some plasticity in contact to avoid fracture.
机译:这篇综述描述了解决表面工程系统中摩擦学问题的各种创新的纳米力学测试技术的开发和实施。通过将结果与几种不同的纳米机械技术相结合,提出了基于接触所涉及的弹性和塑性变形能的预测设计规则,以优化针对不同应用而发生的各种接触情况下的机械性能。 NanoTest平台提供了结果,这些平台可用于生物医学设备,轻质合金的表面工程,物理气相沉积和化学气相沉积涂层的耐磨性以及类金刚石碳涂层的抗断裂疲劳性。表面工程以提高硬度与弹性模量(HIE)的比例在一系列应用中可能是有益的,但应注意,首先,在机械接触载荷中不要引入太大的固有应力或应力不连续性,其次,接触的严重性会导致较高的应力,并且需要一定程度的接触塑性以避免破裂。

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