描述断裂应变与应力非单调依赖材料的蠕变和损伤动力学方程

IF 0.4 Q4 METALLURGY & METALLURGICAL ENGINEERING
I. Banshchikova
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引用次数: 0

摘要

介绍在零件制造中,降低材料在高温蠕变和接近超塑性模式下的压力处理过程中的损伤累积水平,可以显著提高其在冷态下的使用寿命。在生产过程和操作过程中,寻找能够减少材料损坏的温度和功率条件是一项重要任务。本工作的目的:1)展示了在蠕变曲线图上对断裂应变具有非单调依赖性的合金使用Sosnin-Gorev蠕变和损伤模型的可能性;2) 对具有这种相关性的合金在恒定应力和恒定应变速率的单轴拉伸条件下的损伤累积进行比较分析。研究方法。使用的标量损伤参数等于归一化变形,即当前应变与断裂应变的比值。为了找到蠕变和损伤的关系系数,检查了“归一化应变-归一化时间”归一化值中蠕变曲线的相似性,即损伤累积的单一归一化曲线的存在。使用最小二乘法对实验数据进行近似。采用数值积分方法对变形模式进行对比分析。结果和讨论。以12Kh18N10T(12Cr18Ni10Ti)钢在850°C下的实验数据为例,通过单一归一化曲线的方法确定了蠕变和损伤方程的参数,该钢在蠕变曲线图中具有最小的断裂应变。对所研究材料的静态和运动变形模式的分析表明,对于接近达到该最小值的应力,在这两种情况下的损伤累积实际上是相同的。如果应力较低,则较低水平的损伤累积将处于运动学模式;如果应力高于最小值,则静态模式将导致较低水平的损伤累积。应用当从断裂应变对应力具有非单调依赖性的合金中选择合理的结构元件形成模式时,以及在评估其在操作过程中的长期强度时,所获得的结果可能是有用的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Kinetic equations of creep and damage for description of materials with non-monotonic dependence of fracture strain on stress
Introduction. Reducing the level of damage accumulation during pressure treatment of materials at elevated temperatures in creep and close to superplasticity modes in the manufacture of parts can significantly increase its service life in the cold state. Finding temperature and power conditions leading to a reduction in damage of material during the production process and operation is an important task. The purposes of the work: 1) to show the possibility of using the Sosnin-Gorev creep and damage model for alloys with a non-monotonic dependence of strain at fracture on diagrams with creep curves; 2) to carry out comparative analysis of damage accumulation under conditions of uniaxial tension at constant stress and at constant strain rates for alloy with such a dependence. Research methods. Used scalar damage parameter is equated to the normalized deformation, i.e. to the ratio of the current strain to the fracture strain. To find the coefficients of relations creep and damage, the similarity of the creep curves in the normalized values “normalized strain – normalized time”, i.e. the presence of single normalized curve of damage accumulation is checked. The least squares method is used to approximate the experimental data. Numerical integration methods are used for comparative analysis of deformation modes. Results and discussion. Determination of the parameters of the creep and damage equations by the method of a single normalized curve is carried out on the example of experimental data for steel 12Kh18N10T (12Cr18Ni10Ti) at 850 °C, which has a minimum of fracture strain in diagrams with creep curves. Analysis of the static and kinematic modes of deformation for studied material showed that damage accumulation in both cases is practically the same for stresses close to the stress at which this minimum is reached. If the stresses are lower, then the lower level of damage accumulation will be in the kinematic mode; if the stresses above the minimum value, then the static mode will lead to a lower level of damage accumulation. Application. The obtained results can be useful when choosing rational modes of forming structural elements from alloys with a non-monotonic dependence of the fracture strain on stress, as well as in evaluating it for long-term strength during operation.
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来源期刊
Obrabotka Metallov-Metal Working and Material Science
Obrabotka Metallov-Metal Working and Material Science METALLURGY & METALLURGICAL ENGINEERING-
CiteScore
1.10
自引率
50.00%
发文量
26
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