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Diamond-like carbon coatings - a new design element for tribological applications

机译:类金刚石碳涂层-摩擦学应用的新设计元素

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Diamond-like carbon coatings (DLC) combine high wear resistance with low friction coefficients. Both properties enable the protective layers to sustain wide ranges of loading and environmental conditions. At present, low friction coatings are commonly used on an empirical basis but not as a design element. The reason for the empirical approach is the lack of tools for a description of the interaction between the coatings and the substrate. Furthermore it is difficult to obtain information on the fracture properties of the coating substrate system (e.g. fracture toughness, adhesion, residual stresses). A spherical indentation provides a simple technique to measure quantitatively the fracture toughness and the adhesion of brittle coatings on a ductile substrate with standard laboratory equipment. DLC coatings on a 100 Cr 6 steel substrate are indented by silicon nitride balls with different diameters and different loads. Fracture patterns (circular and radial cracks, delamination) are analyzed by finite element calculation and the fracture toughness of the coating itself along with the interface toughness are estimated.
机译:类金刚石碳涂层(DLC)兼具高耐磨性和低摩擦系数。这两个特性使保护层能够承受广泛的负载和环境条件。目前,低摩擦涂层通常是根据经验使用的,但不是设计要素。采用经验方法的原因是缺乏用于描述涂层与基材之间相互作用的工具。此外,难以获得关于涂层基材体系的断裂性能的信息(例如断裂韧性,粘附性,残余应力)。球形压痕提供了一种简单的技术,可使用标准实验室设备定量测量韧性和易碎基材上的脆性涂层的断裂韧性和附着力。 100 Cr 6钢基材上的DLC涂层被具有不同直径和不同载荷的氮化硅球压痕。通过有限元计算来分析断裂图案(圆形和径向裂纹,分层),并估计涂层本身的断裂韧性以及界面韧性。

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