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首页> 外文期刊>Physica status solidi, B. Basic research >Cubic materials in different auxetic regions: Linking microscopic to macroscopic formulations
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Cubic materials in different auxetic regions: Linking microscopic to macroscopic formulations

机译:不同膨胀区域的立方材料:将微观与宏观公式联系起来

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A number of basic features of the mechanical properties of a cubic symmetry solid material are identified and discussed within the framework of the XY-plane approach, where X= GIK,Y=G/W,K is the bulk modulus and G,Ware shear moduli. An anisotropic part of the Debye temperature is analysed, which was found to be weakly dependent on X and is mainly determined by Y which quantifies the material elastic anisotropy. The anisotropic part has a considerable effect on the Debye temperature of partially auxetic materials. An empirical ductility-brittleness criterion is considered, which indicates that many auxetics may deform in a brittle manner. A possible correlation between directional tensile deformation and the surface of the most extreme Poisson's ratio (PR) values is suggested. Finally, the reasons for the paucity of cubic materials in the part of the XY-plane with low Y values is investigated using static microscopic models in which the particles interact with nearest and next nearest neighbours only. An example of a type of microscopic model system located in this 'empty' region has been found, which consists of a system under tension, where the interparticle interaction decays with distance in an oscillatory way. The results obtained suggest that a rather unconventional form of the interparticle interaction set and thermodynamic conditions may therefore be required to develop a solid material with these mechanical properties.
机译:在XY平面方法的框架内,确定并讨论了立方对称固体材料的机械性能的许多基本特征,其中X = GIK,Y = G / W,K为体积模量,G为Ware剪切模量分析了德拜温度的各向异性部分,发现该部分与X的依赖性较小,并且主要由Y决定,Y量化了材料的弹性各向异性。各向异性部分对部分膨胀材料的德拜温度有相当大的影响。考虑了经验的延性-脆性准则,该准则表明许多膨胀性可能以脆性方式变形。建议在方向拉伸变形和最极端泊松比(PR)值的表面之间可能存在相关性。最后,使用静态微观模型研究了Y值较低的XY平面中立方材料稀疏的原因,其中颗粒仅与最近邻和次近邻相互作用。已经找到了位于此“空”区域的一种微观模型系统的示例,该系统由处于拉伸状态的系统组成,在该系统中,粒子间的相互作用随着振动的距离而衰减。获得的结果表明,因此可能需要相当不常规的颗粒间相互作用集和热力学条件形式,以开发具有这些机械性能的固体材料。

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