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首页> 外文期刊>Diamond and Related Materials >Accurate measurement of strength and fracture toughness for miniature-size thick diamond-film samples by three-point bending at constant loading rate
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Accurate measurement of strength and fracture toughness for miniature-size thick diamond-film samples by three-point bending at constant loading rate

机译:在恒定加载速率下通过三点弯曲精确测量微型厚金刚石薄膜样品的强度和断裂韧性

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摘要

Fracture strength and fracture toughness (K_(IC)) of miniature-size thick freestanding diamond film samples were accurately measured by three-point bending at a constant loading rate. A specially designed testing rig, capable of achieving a constant loading rate as small as <0.5 N s~(-1) was used, which is beneficial for accurate measurement of the fracture strength and toughness for brittle materials like diamond films. A novel method was employed to nucleate and accurately control the length of the pre-crack. A specially designed loading fixture was used to ensure that the diamond film sample was tested in a near-perfect vertical position, as required by the ASTM E399 standards. Effects of sample dimensions on the measurement of fracture toughness and fracture strength are discussed; it was shown that miniature-size freestanding diamond film samples can be used for the accurate determination of fracture strength and fracture toughness. However, for accurate measurement of fracture toughness, the use of pre-cracked diamond film samples is absolutely necessary. The effect of loading configuration on the measurement of fracture strength is discussed in detail. In addition to the frequently reported two loading configurations (with the nucleation and growth surface in tension, respectively), a third loading configuration with the edge surface in tension is also discussed. The Weibel modulus was also found to be strongly dependent on the loading configuration. The significance of these findings is discussed.
机译:通过在恒定的加载速率下进行三点弯曲,可以精确地测量微型尺寸厚的独立式金刚石薄膜样品的断裂强度和断裂韧性(K_(IC))。使用了专门设计的测试设备,该设备能够实现低至<0.5 N s〜(-1)的恒定加载速率,这有利于准确测量金刚石薄膜等脆性材料的断裂强度和韧性。采用了一种新颖的方法来成核并精确控制预裂纹的长度。根据ASTM E399标准的要求,使用了专门设计的加载夹具,以确保在接近完美的垂直位置测试金刚石薄膜样品。讨论了样品尺寸对断裂韧性和断裂强度测量的影响;结果表明,微型独立式金刚石薄膜样品可用于准确测定断裂强度和断裂韧性。但是,为了精确测量断裂韧性,绝对需要使用预开裂的金刚石薄膜样品。详细讨论了载荷配置对断裂强度测量的影响。除了经常报告的两个加载配置(分别使成核表面和生长表面处于拉伸状态)之外,还讨论了第三加载结构,其中边缘表面处于拉伸状态。还发现,Weibel模量强烈依赖于载荷配置。讨论了这些发现的意义。

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