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Deformations and damage to metallic materials under multiaxial non-proportional loading

机译:多轴非比例载荷下金属材料的变形和损坏

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摘要

The responsibility for the safe operation of engineering structures calls for trustworthy data and models to assess fatigue life. Material science develops models on the microscopic scale whereas engineering science has to consider length and time scales which can give accurate quantitative answers. In multiaxial non-proportional fatigue the applied plasticity models should be capable of capturing the non-proportional hardening and ratcheting with adequate accuracy. The capabilities of a previously introduced model are featured with respect to out-of-phase loading of stainless steel. In engineering the meso scale of about 10 pm turns out to be the smallest accessible scale of observation of fatigue damage. At this scale fatigue of metals is seen as growth of short surface cracks. A phenomenological model is proposed for describing the short crack growth taking into account non-proportional straining. Calculated and experimentally determined crack growth curves and lives to technical crack initiation have been found to be in reasonable accordance. Future research activities are indicated.
机译:工程结构安全运行的责任在于需要可靠的数据和模型来评估疲劳寿命。材料科学在微观尺度上开发模型,而工程科学必须考虑可以给出准确的定量答案的长度和时间尺度。在多轴非比例疲劳中,所应用的塑性模型应能够以足够的精度捕获非比例硬化和棘轮效应。先前引入的模型的功能针对不锈钢的异相加载。在工程中,大约10 pm的中观尺度是观察疲劳损伤的最小可访问尺度。在这种规模下,金属的疲劳被视为表面短裂纹的增长。提出了一种现象学模型,用于描述考虑非比例应变的短裂纹扩展。已发现计算和实验确定的裂纹扩展曲线和技术裂纹萌生寿命是合理的。指出了未来的研究活动。

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