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环境介质和应变速率对 ABS 拉伸行为的影响 被引量:1
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作者 祖小涛 何金洲 刘民治 《四川联合大学学报(工程科学版)》 EI CAS CSCD 1998年第6期52-56,共5页
本文研究了ABS树脂在环境介质中的慢应变率拉伸行为。结果表明:慢应变率拉伸试验可用于快速评价ABS的耐环境应力开裂。
关键词 慢应变率拉伸 环境介质 ABS树脂 应变
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高压氢环境下储氢容器4130X钢力学性能的演化规律研究
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作者 黄淞 薛广珂 +5 位作者 惠虎 陈泽鸿 茹祥坤 盛旭婷 季龙华 丁阳 《压力容器》 北大核心 2024年第12期8-15,共8页
为了探究不同氢气压力下储氢容器用4130X钢氢损伤行为的差异,进行大气环境以及5,20,100 MPa氢环境下的拉伸试验,对氢环境中力学性能和断口形貌演化规律进行分析,结果表明,氢环境压力0~100 MPa,4130X钢的强度变化不大,塑性随氢压升高而下... 为了探究不同氢气压力下储氢容器用4130X钢氢损伤行为的差异,进行大气环境以及5,20,100 MPa氢环境下的拉伸试验,对氢环境中力学性能和断口形貌演化规律进行分析,结果表明,氢环境压力0~100 MPa,4130X钢的强度变化不大,塑性随氢压升高而下降;随着氢气压力的增大,断裂机理由微孔洞聚合先转变为准解理+微孔洞聚合,最终完全变为准解理,其氢脆机理可用氢致局部化塑性(HELP)+氢致弱键(HEDE)机理解释;氢环境下试样断裂均源于由试样表面在颈缩阶段形成的氢脆裂纹,在弹性变形和均匀塑性变形的应力水平下,氢对4130X钢的力学性能无明显影响。该研究结果可为CrMo钢在储氢容器中的应用提供参考。 展开更多
关键词 高压氢环境 4130X钢 力学性能 慢应变率拉伸 氢脆
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Relationship between hydrogen concentration and mechanical properties of 5Ni-16Cr-Mo steel
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作者 SUN Yong-wei CHEN Ji-zhi WANG Ling-shui 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第3期699-711,共13页
The qualitative relationship between hydrogen concentration and notch tensile strength has been investigated for 5Ni-16Cr-Mo steel with different strength.The notch tensile strength was determined by means of slow str... The qualitative relationship between hydrogen concentration and notch tensile strength has been investigated for 5Ni-16Cr-Mo steel with different strength.The notch tensile strength was determined by means of slow strain rate test(SSRT)on circumferentially notched round bar specimens with the notch root radius of 0.15 mm after hydrogen charging.Meanwhile,the hydrogen diffusion behaviors of various strength steel were studied by thermal desorption spectroscopy(TDS)analysis.The SSRT results show that the T460 steel has higher susceptibility of hydrogen embrittlement in contrast with T520 steel.The activation energies and microstructure indicate that the dislocations and interfaces of martensitic laths are hydrogen traps in 5Ni-16Cr-Mo steel.By SSRT,the elastic limit of charged specimen loaded in air is higher than the flow stress without hydrogen charging before unloading,while the difference is defined as hydrogen-induced stress.The value of hydrogen-induced stress σ*increases linearly with hydrogen concentration:σ*=−0.622+2.015C_(0).The finite element analysis results of stress distributions near the notch tip have shown that the maximum principal stress increases with the notch root radius decreasing. 展开更多
关键词 5Ni-16Cr-Mo steel slow strain rate test thermal desorption spectroscopy finite element analysis hydrogen embrittlement
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