基于多尺度晶体塑性有限元的GCr15轴承钢拉-压不对称性研究
In this paper,stress triaxiality is added to the classical crystal plasticity constitutive model to investigate the experimental phenomenon of tension-compression asymmetry for the GCr15 bearing steel.Firstly, the crystal plasticity constitutive model is extended by considering the effect of stress...
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Editorial Office of Journal of Mechanical Strength
2021-01-01
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Series: | Jixie qiangdu |
Online Access: | http://www.jxqd.net.cn/thesisDetails#10.16579/j.issn.1001.9669.2021.01.016 |
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author | 樊冬 余丰 李淑欣 |
author_facet | 樊冬 余丰 李淑欣 |
author_sort | 樊冬 |
collection | DOAJ |
description | In this paper,stress triaxiality is added to the classical crystal plasticity constitutive model to investigate the experimental phenomenon of tension-compression asymmetry for the GCr15 bearing steel.Firstly, the crystal plasticity constitutive model is extended by considering the effect of stress triaxiality on yield criterion and flow rule in each slip system.Secondly,representative volume element( RVE) was simulated to regenerate the quasi-static uniaxial tensile and compression engineering stress-strain curve of GCr15 bearing steel by using crystal plasticity finite element method.The results show that stress concentration occurs at the grain boundary due to the crystal orientation difference among polycrystalline grains,and under the influence of triaxial stress state,the RVE simulation results show that the stress concentration has a significant effect on tensioncompression asymmetry.Therefore,it is concluded that the effect of stress triaxiality on the texture of mesoscopic crystal is an important factor that causes the phenomenon of tension-compression asymmetry. |
format | Article |
id | doaj-art-858d5bfe487046edb0a3a54dcb6d6eec |
institution | Kabale University |
issn | 1001-9669 |
language | zho |
publishDate | 2021-01-01 |
publisher | Editorial Office of Journal of Mechanical Strength |
record_format | Article |
series | Jixie qiangdu |
spelling | doaj-art-858d5bfe487046edb0a3a54dcb6d6eec2025-01-15T02:26:42ZzhoEditorial Office of Journal of Mechanical StrengthJixie qiangdu1001-96692021-01-0110711330610042基于多尺度晶体塑性有限元的GCr15轴承钢拉-压不对称性研究樊冬余丰李淑欣In this paper,stress triaxiality is added to the classical crystal plasticity constitutive model to investigate the experimental phenomenon of tension-compression asymmetry for the GCr15 bearing steel.Firstly, the crystal plasticity constitutive model is extended by considering the effect of stress triaxiality on yield criterion and flow rule in each slip system.Secondly,representative volume element( RVE) was simulated to regenerate the quasi-static uniaxial tensile and compression engineering stress-strain curve of GCr15 bearing steel by using crystal plasticity finite element method.The results show that stress concentration occurs at the grain boundary due to the crystal orientation difference among polycrystalline grains,and under the influence of triaxial stress state,the RVE simulation results show that the stress concentration has a significant effect on tensioncompression asymmetry.Therefore,it is concluded that the effect of stress triaxiality on the texture of mesoscopic crystal is an important factor that causes the phenomenon of tension-compression asymmetry.http://www.jxqd.net.cn/thesisDetails#10.16579/j.issn.1001.9669.2021.01.016 |
spellingShingle | 樊冬 余丰 李淑欣 基于多尺度晶体塑性有限元的GCr15轴承钢拉-压不对称性研究 Jixie qiangdu |
title | 基于多尺度晶体塑性有限元的GCr15轴承钢拉-压不对称性研究 |
title_full | 基于多尺度晶体塑性有限元的GCr15轴承钢拉-压不对称性研究 |
title_fullStr | 基于多尺度晶体塑性有限元的GCr15轴承钢拉-压不对称性研究 |
title_full_unstemmed | 基于多尺度晶体塑性有限元的GCr15轴承钢拉-压不对称性研究 |
title_short | 基于多尺度晶体塑性有限元的GCr15轴承钢拉-压不对称性研究 |
title_sort | 基于多尺度晶体塑性有限元的gcr15轴承钢拉 压不对称性研究 |
url | http://www.jxqd.net.cn/thesisDetails#10.16579/j.issn.1001.9669.2021.01.016 |
work_keys_str_mv | AT fándōng jīyúduōchǐdùjīngtǐsùxìngyǒuxiànyuándegcr15zhóuchénggānglāyābùduìchēngxìngyánjiū AT yúfēng jīyúduōchǐdùjīngtǐsùxìngyǒuxiànyuándegcr15zhóuchénggānglāyābùduìchēngxìngyánjiū AT lǐshūxīn jīyúduōchǐdùjīngtǐsùxìngyǒuxiànyuándegcr15zhóuchénggānglāyābùduìchēngxìngyánjiū |