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Verifying Larché–Cahn elasticity, a milestone of 20th-century thermodynamics

机译:验证拉奇-卡恩弹性,这是20世纪热力学的一个里程碑

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摘要

Many materials phenomena are governed by the interaction between chemistry and mechanics. However, it was only in the second half of the 20th century that the theory of open system elasticity by Francis Larché and John W. Cahn concatenated the fields of solid mechanics and alloy chemistry. As the theory’s central materials descriptors, the open system elastic parameters describe how solids deform under stress when solute can rearrange at equilibrium while the chemical potential is held constant. Here, we report experiments verifying the predictions for these parameters. We study the elasticity of nanoporous Pd-H and Pd-Au-H during load cycles imposed by a dynamic mechanical analyzer. Short diffusion paths afford fast equilibration of H in the local strain gradients that carry the macroscopic elastic deformation. The experiment is in excellent agreement with the theory, confirming a central prediction of one of the key contributions to 20th-century thermodynamics.
机译:许多材料现象受化学和力学之间相互作用的支配。然而,直到20世纪下半叶,弗朗西斯·拉奇(FrancisLarché)和约翰·W·卡恩(John W. Cahn)提出的开放系统弹性理论才将固体力学和合金化学领域结合在一起。作为该理论的主要材料描述符,开放系统的弹性参数描述了当化学势保持恒定时,溶质可以在平衡状态下重新排列时,固体在应力下如何变形。在这里,我们报告的实验验证了这些参数的预测。我们研究了动态力学分析仪施加的载荷循环期间纳米多孔Pd-H和Pd-Au-H的弹性。短的扩散路径使H能够在带有宏观弹性变形的局部应变梯度中快速达到平衡。该实验与理论非常吻合,证实了对20世纪热力学的关键贡献之一的集中预测。

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