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首页> 外文期刊>Journal of the European Ceramic Society >The mechanical properties of poly crystalline diamond as a function of strain rate and temperature
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The mechanical properties of poly crystalline diamond as a function of strain rate and temperature

机译:多晶金刚石的机械性能与应变率和温度的关系

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Polycrystalline diamond (PCD) materials are used in various applications, mainly as cutting tools for machining non-ferrous metals and non-metallic materials and for rock drilling operations. A better knowledge of their mechanical properties is of fundamental importance to PCD manufacturers and end users. In order to understand and predict the behaviour and structural integrity of the tools containing PCD, it is first necessary to study the behaviour of the material as a function of loading rate and temperature. In this paper, material behaviour is determined under testing conditions which correspond more closely to those in actual drilling, which is a significant improvement over investigations to date. Young's modulus determined by four-point bending and a split-Hopkinson pressure bar apparatus was relatively constant with the rate, while a consistent decrease was observed with increase of temperature. The flexural strength was found to increase with the temperature, while decreasing with an increase in rate.
机译:多晶金刚石(PCD)材料用于各种应用中,主要用作切削工具,以加工有色金属和非金属材料以及进行凿岩作业。对PCD制造商和最终用户而言,更好地了解其机械性能至关重要。为了理解和预测包含PCD的工具的行为和结构完整性,首先必须研究材料的行为与加载速率和温度的关系。在本文中,材料的性能是在与实际钻探条件更接近的测试条件下确定的,这是迄今为止研究的一项重大改进。通过四点弯曲和分裂霍普金森压力棒设备确定的杨氏模量随速率相对恒定,而随温度升高观察到一致的降低。发现抗弯强度随温度增加,而随速率增加而减小。

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