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CREEP ANALYSIS FOR A WIDE STRESS RANGE BASED ON STRESS RELAXATION EXPERIMENTS

机译:基于应力松弛实验的宽应力范围的蠕变分析

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Many materials exhibit a stress range dependent creep behavior. The power-law creep observed for a certain stress range changes to the viscous type creep if the stress value decreases. Recently published experimental data for advanced heat resistant steels indicates that the high creep exponent (in the range 5-12 for the power-law behavior) may decrease to the low value of approximately 1 within the stress range relevant for engineering structures. The aim of this paper is to confirm the stress range dependence of creep behavior based on the experimental data of stress relaxation. An extended constitutive model for the minimum creep rate is introduced to consider both the linear and the power law creep ranges. To take into account the primary creep behavior a strain hardening function is introduced. The material constants are identified for published experimental data of creep and relaxation tests for a 12%Cr steel bolting material at 500°C. The data for the minimum creep rate are well-defined only for moderate and high stress levels. To reconstruct creep rates for the low stress range the data of the stress relaxation test are applied. The results show a gradual decrease of the creep exponent with the decreasing stress level. Furthermore, they illustrate that the proposed constitutive model well describes the creep rates for a wide stress range.
机译:许多材料表现出应力范围依赖性蠕变行为。如果应力值降低,则观察到某个应力范围的电力法蠕变变为粘性型蠕变。最近公布的先进耐热钢的实验数据表明高蠕变指数(在动力法行为的5-12范围内)可能降低到与工程结构相关的应力范围内大约1的低值。本文的目的是基于应力松弛的实验数据确认蠕变行为的应力范围依赖性。引入了最小蠕变速率的扩展本构型模型,以考虑线性和电力法蠕变范围。要考虑主要蠕变行为,引入了应变硬化功能。鉴定材料常数,用于500℃的12%Cr钢螺栓材料的蠕变和弛豫测试的公开实验数据。最小蠕变速率的数据仅为中等和高应力水平定义。为了重建低应力范围的蠕变速率,施加应力松弛测试的数据。结果表明,随着应力水平降低的蠕变指数逐渐减少。此外,它们说明所提出的本构模型很好地描述了宽应力范围的蠕变速率。

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