Theory and methods of constructing equations for the evolutionary damageability of materials

IF 4 2区 工程技术 Q2 MATERIALS SCIENCE, MULTIDISCIPLINARY International Journal of Damage Mechanics Pub Date : 2023-08-01 DOI:10.1177/10567895231191149
V. Fedorov
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Abstract

The theory and methods for constructing equations (functions) of evolutionary damage and rupture of materials in the Kachanov model (creep rupture and fatigue rupture) are presented. In general, it is proved that the factorized Kachanov model is identical to the Palmgren-Miner rule, which is often not confirmed experimentally. To construct damageability functions adequate to the experimental data, new mathematical objects (potential and normalized potential) are introduced. If the entire history of changes in the damage variable is known in experiments, then the use of the potential makes it possible to construct a damageability function of any complexity without integrating the evolutionary equation (explicit method). For cases where only rupture moments are recorded in experiments, a criterion for the adequacy of the normalized potential is formulated and an implicit method for its construction is developed. It is supplemented with a recursive algorithm that generates an unlimited number of such potentials. The implicit method is illustrated by examples, following which the reader can construct a damageability equation for his material without a thorough study of the theory.
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材料演化损伤性方程的理论与方法
介绍了在Kachanov模型(蠕变断裂和疲劳断裂)中构造材料演化损伤和断裂方程(函数)的理论和方法。通常,已经证明了因子化的Kachanov模型与Palmgren-Miner规则是相同的,这通常没有得到实验的证实。为了构造适合实验数据的损伤函数,引入了新的数学对象(势和归一化势)。如果损伤变量的整个变化历史在实验中是已知的,那么使用势能可以在不集成进化方程的情况下构建任何复杂度的损伤函数(显式方法)。对于在实验中只记录断裂力矩的情况,制定了归一化电势充分性的标准,并开发了其构造的隐式方法。它补充了一个递归算法,可以生成无限数量的这种势。通过实例说明了隐式方法,读者可以在不深入研究该理论的情况下,为其材料构建一个可损伤性方程。
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来源期刊
International Journal of Damage Mechanics
International Journal of Damage Mechanics 工程技术-材料科学:综合
CiteScore
8.70
自引率
26.20%
发文量
48
审稿时长
5.4 months
期刊介绍: Featuring original, peer-reviewed papers by leading specialists from around the world, the International Journal of Damage Mechanics covers new developments in the science and engineering of fracture and damage mechanics. Devoted to the prompt publication of original papers reporting the results of experimental or theoretical work on any aspect of research in the mechanics of fracture and damage assessment, the journal provides an effective mechanism to disseminate information not only within the research community but also between the reseach laboratory and industrial design department. The journal also promotes and contributes to development of the concept of damage mechanics. This journal is a member of the Committee on Publication Ethics (COPE).
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