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Comparison of instrumented Knoop and Vickers hardness measurements on various soft materials and hard ceramics

机译:比较各种软质材料和硬质陶瓷的努氏硬度和维氏硬度的测量结果

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摘要

Vickers and Knoop hardness measurements performed on various ceramics (hard metals) and light alloy materials (soft metals) are compared. The results show that the Knoop hardness number is, in general, lower than the Vickers hardness number for the highest values of hardness, and this behaviour is reversed when the hardness values are low. This change in values, which occur at 8 GPa, has no real physical meaning and, therefore, it is difficult to interpret such behaviour in terms of the elasto-plastic deformation around the indent such as sinking-in, piling-up, and bulging of the indent faces, phenomena which take place during indentation or after the withdrawal of the indenter. Prior to interpreting the hardness difference, it is very important to consider the same area in the hardness calculations. That is why we have compared the available hardness data obtained from the literature and recalculated them by considering the projected and true areas of the contact. If the objective is to compare the two hardness numbers, it seems more suitable to consider the true area of contact, procedure which will provide a Vickers hardness number higher than the Knoop hardness number all over the range of the hardness values.
机译:比较了对各种陶瓷(硬金属)和轻合金材料(软金属)进行的维氏和努氏硬度测量。结果表明,努氏硬度值通常比最高硬度值的维氏硬度值低,并且当硬度值较低时,这种行为会逆转。这种值变化发生在8 GPa时,没有任何实际的物理意义,因此,很难根据凹痕周围的弹塑性变形(例如下沉,堆积和凸出)来解释这种行为。压痕面的现象,是在压痕过程中或缩回压头之后发生的现象。在解释硬度差之前,在硬度计算中考虑相同的面积非常重要。这就是为什么我们比较了从文献中获得的可用硬度数据并通过考虑接触的投影面积和真实面积来重新计算它们的原因。如果目的是比较两个硬度值,则似乎更适合考虑真实的接触面积,该方法将在整个硬度值范围内提供比维氏硬度值更高的维氏硬度值。

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