首页> 外文期刊>Journal of Applied Mechanics: Transactions of the ASME >Rice's Internal Variables Formalism and Its Implications for the Elastic and Conductive Properties of Cracked Materials, and for the Attempts to Relate Strength to Stiffness
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Rice's Internal Variables Formalism and Its Implications for the Elastic and Conductive Properties of Cracked Materials, and for the Attempts to Relate Strength to Stiffness

机译:莱斯的内部变量形式主义及其对破裂材料的弹性和导电性能以及与强度与刚度相关的尝试的意义

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摘要

Rice's internal variables formalism [1975, "Continuum Mechanics and Thermodynamics of Plasticity in Relation to Microscale Deformation Mechanisms," in Constitutive Equations in Plasticity, edited by A. Argon, MIT Press, Cambridge, MA, pp. 23-75] is one of the basic tools in the micromechanics of materials. One of its implications is the possibility to relate the compliance/resistivity contributions of cracks - the key quantities in the problem of effective elastic/conductive properties - to the stress intensity factors (SIFs) and thus to utilize a large library of available solutions for SIFs. Examples include configurations that are common in materials science applications: branched and intersecting cracks, cracks with partial contact between crack faces, and cracks emanating from pores. The formalism also yields valuable physical insights of a qualitative character, such as the impossibility to correlate, in a quantitative way, the strength of microcracking materials and their stiffness reduction.
机译:赖斯的内部变量形式主义[1975年,《塑性的连续力学和热力学与微观形变机理的关系》,可塑性本构方程,由A. Argon编辑,麻省理工学院出版社,马萨诸塞州剑桥,第23-75页]材料微力学中的基本工具。其影响之一是可能将裂纹的柔度/电阻率贡献(有效弹性/导电特性问题中的关键量)与应力强度因子(SIF)相关联,从而利用大量可用的SIF解决方案库。示例包括材料科学应用中常见的配置:分支裂纹和相交裂纹,裂纹面之间部分接触的裂纹以及从孔中散发出来的裂纹。形式主义还产生了具有定性特征的有价值的物理见解,例如不可能以定量的方式关联微裂纹材料的强度及其刚度的降低。

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