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Ductile-to-brittle transition and materials’ resistance to amorphization by irradiation damage

机译:韧性到脆性过渡和材料对辐照损伤的抗性抵抗力

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By summarizing over seven hundred elastic constants of materials with various crystal structures, we have found that the so-called ductile-to-brittle transition originates from the bonding type transition. This can be reflected well by a universal linear relation between Cauchy pressure/bulk modulus (CP/ B ) and shear modulus/bulk modulus ( G / B ). In general, G / B of a material will gradually decrease with increasing pressure and temperature, while a significant change in G / B against increasing temperature often corresponds to a certain phase transition, such as magnetic transition, spin flipping, structural phase transition and so on. The present work suggests that the value of G / B for materials can serve as an indicator of bonding type. Importantly, this linear relation is robust for materials under temperature, pressure and with defects. Here we propose that damage tolerance properties can be experimentally measured from the elastic constants of a given material. It is suggested that a material with a value of G / B that varies little with temperature, pressure and defect concentration, potentially exhibits high damage tolerance. These observations shed light on the ductile-to-brittle transition. They may provide a potential tool towards the design of materials, particularly under extreme conditions.
机译:通过总结具有各种晶体结构的材料的七百个弹性常数,我们发现所谓的延性到脆性过渡源自粘合型转变。这可以通过Cauchy压力/散装模量(CP / B)和剪切模量/散装模量(G / B)之间的通用线性关系来反射很好。通常,材料的G / B将随着压力和温度的增加而逐渐减小,而G / B对增加的温度的显着变化通常对应于一定的相变,例如磁性转变,旋转翻转,结构相转变等。上。本作者表明,用于材料的G / B值可以用作粘合型的指标。重要的是,这种线性关系对于温度,压力和缺陷的材料是鲁棒的。在这里,我们提出了可以从给定材料的弹性常数实验测量损伤的耐受性。建议具有较低温度,压力和缺陷浓度几乎不变的G / B值的材料潜在地表现出高损伤的耐受性。这些观察结果在脆性过渡的延伸性上发光。它们可以为材料设计提供潜在的工具,特别是在极端条件下。

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