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Fracture criteria under creep with strain history taken into account, and long-term strength modelling

机译:考虑到应变历史的蠕变下的断裂准则和长期强度模型

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In the present paper, we continue to study the nonlinear constitutive relation (CR) between the stress and strain proposed in [1] to describe one-dimensional isothermal rheological processes in the case of monotone variation of the strain (in particular, relaxation, creep, plasticity, and superplasticity). We show that this CR together with the strain fracture criterion (FC) leads to theoretical long-term strength curves (LSC) with the same qualitative properties as the typical experimental LSC of viscoelastoplastic materials. We propose two parametric families of fracture criteria in the case of monotone uniaxial strain, which are related to the strain fracture criterion (SFC) but take into account the strain increase history and the dependence of the critical strain on the stress. Instead of the current strain, they use other measures of damage related to the strain history by time-dependent integral operators. For any values of the material parameters, analytic studies of these criteria allowed us to find several useful properties, which confirm that they can be used to describe the creep fracture of different materials. In particular, we prove that, together with the proposed constitutive relations, these FC lead to theoretical long-term strength curves (TLSC) with the same qualitative properties as the experimental LSC. It is important that each of the constructed families of FC forms a monotone and continuous scale of criteria (monotonously and continuously depending on a real parameter) that contains the SFC as the limit case. Moreover, the criteria in the first family always provide the fracture time greater than that given by the SFC, the criteria in the second family always provide a smaller fracture time, and the difference can be made arbitrarily small by choosing the values of the control parameter near the scale end. This property is very useful in finding a more accurate adjustment of the model to the existing experimental data describing the fracture time dependence on the stress, temperature, radiation, and other factors: if these data are poorly described by the SFC, then one can choose a more appropriate criterion from the constructed families by varying the value of the control parameter smoothly and monotonously. For any admissible values of the model determining parameters, we derive the TLSC corresponding to the proposed fracture criteria. Studying the dependence of their properties on the material function and on the material parameters of the CR and FC, we can state the requirements on the TLSC that follow from the general qualitative properties of experimental LSC of different viscoelastoplastic materials and obtain the corresponding restrictions on the material parameters and the model function.
机译:在本文中,我们将继续研究[1]中提出的应力与应变之间的非线性本构关系(CR),以描述应变单调变化(特别是松弛,蠕变)情况下的一维等温流变过程。 ,可塑性和超塑性)。我们表明,此CR与应变断裂准则(FC)一起得出的理论长期强度曲线(LSC)具有与粘弹塑性材料的典型实验LSC相同的定性性质。在单调单轴应变的情况下,我们提出了两个标准的断裂准则参数族,它们与应变断裂准则(SFC)有关,但考虑了应变的增长历史以及临界应变对应力的依赖性。他们使用与时间相关的积分算子来替代与应变历史相关的其他破坏度量,而不是当前应变。对于材料参数的任何值,对这些标准的分析研究使我们能够找到几个有用的特性,这证实了它们可用于描述不同材料的蠕变断裂。尤其是,我们证明,与所建议的本构关系一起,这些FC导致理论上的长期强度曲线(TLSC)具有与实验LSC相同的定性性质。重要的是,每个构造的FC族形成一个单调且连续的标准范围(单调且连续取决于实际参数),该标准包含SFC作为极限情况。此外,第一个系列中的标准始终提供比SFC给出的更长的断裂时间,第二个系列中的标准始终提供更短的断裂时间,并且通过选择控制参数的值可以任意减小差异靠近刻度尺末端。此属性对于找到更准确的模型调整以适应描述断裂时间与应力,温度,辐射和其他因素的断裂时间相关性的现有实验数据非常有用:如果证监会未能很好地描述这些数据,则可以选择通过平滑单调地更改控制参数的值,从构造的族中选择更合适的标准。对于模型确定参数的任何允许值,我们推导对应于建议断裂标准的TLSC。研究它们的特性对CR和FC的材料功能以及材料参数的依赖关系,我们可以根据不同粘弹塑性材料的实验LSC的一般定性,对TLSC提出要求,并获得相应的限制。材料参数和模型功能。

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