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Low load multiple scratch tests of ceramics and hard metals

机译:陶瓷和硬质金属的低负荷多次刮擦测试

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Abrasion is caused by the repeated scratching of materials by individual particles in an abrasive, often under fairly light loads. This process has been simulated by carrying out scratch tests on a range of ceramics and hard metals. An array of different scratches was carried out on each sample with a different number of repeats along the same track for each scratch. The magnitude of the damage was measured by the width of the scratches. The frictional force between the indenter and test sample was also measured. Although the width of single pass scratches in some of the harder materials was smaller than in softer materials, in multiple pass scratches, the final widths of scratches in some of the harder materials were greater than in the softer materials. This was due to differences in the contribution of fracture in the development of damage in multiple pass scratches. It was found that fracture was a predominant form of damage to both hard metals and ceramics. In the case of the hard metals the fracture was on a fine scale, but with the ceramics fracture occurred on a larger scale, often removing large fragments of material. These results, and the results of the friction measurements are correlated with the results of a microstructural examination of the mechanisms that occurred. They are also compared with a microstructural assessment of the early stages of wear in the abrasion of these materials.
机译:磨蚀是由磨料中的单个颗粒反复刮擦材料引起的,通常是在相当轻的负载下进行的。通过对一系列陶瓷和硬质金属进行划痕测试,可以模拟此过程。在每个样品上进行了一系列不同的划痕,沿着每个划痕的相同轨迹重复了不同的次数。损伤的程度通过划痕的宽度来测量。还测量了压头和测试样品之间的摩擦力。尽管在一些较硬的材料中单程刮痕的宽度小于在较软的材料中的宽度,但是在多次熔痕中,某些较硬的材料的刮痕的最终宽度大于在较软的材料中的刮痕的最终宽度。这是由于在多道次划痕中损坏发展过程中断裂贡献的差异。发现断裂是硬质金属和陶瓷损坏的主要形式。在硬质金属的情况下,断裂发生在很小的范围内,而陶瓷的断裂发生在较大的范围内,通常会去除较大的材料碎片。这些结果以及摩擦测量的结果与发生机理的微观结构检查的结果相关。它们还与这些材料的磨损早期磨损的微观结构评估进行了比较。

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