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我国大气腐蚀研究进(展续一) 被引量:2
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作者 萧以德 张三平 +1 位作者 曹献龙 萧彧星 《装备环境工程》 CAS 2005年第6期25-27,共3页
总结了近几年来我国在大气腐蚀方面的研究现状和进展,尤其是国产、常用、量大、面广的4大类材料在我国9类主要典型大气环境下的腐蚀数据积累;各类典型材料在典型环境下的大气腐蚀行为规律;大气环境因素对材料大气腐蚀的影响;碳钢、低合... 总结了近几年来我国在大气腐蚀方面的研究现状和进展,尤其是国产、常用、量大、面广的4大类材料在我国9类主要典型大气环境下的腐蚀数据积累;各类典型材料在典型环境下的大气腐蚀行为规律;大气环境因素对材料大气腐蚀的影响;碳钢、低合金钢大气腐蚀行为预测。特别是根据8年试验结果所总结出的大气腐蚀速度与试验时间之间具有幂函数关系的基础上,又进一步建立了腐蚀速度与合金元素之间的数学模型关系;探讨了采用ACM技术评估大气腐蚀严酷性;初步建立了大气腐蚀数据库,并正进一步采用计算机发展网络查询服务系统,实现科学数据共享;经20余年之研究,撰写了并出版中国材料自然环境腐蚀专著中大气腐蚀篇,还研制和生产了经济耐候钢。 展开更多
关键词 材料 大气腐蚀 进展
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Comparison of flow behaviors of near beta Ti-55511 alloy during hot compression based on SCA and BPANN models 被引量:4
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作者 Shuang-xi SHI Xiu-sheng LIU +1 位作者 Xiao-yong ZHANG Ke-chao ZHOU 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2021年第6期1665-1679,共15页
The flow behavior of Ti-55511 alloy was studied by hot compression tests at temperatures of 973−1123 K and strain rates of 0.01−10 s^(−1).Strain-compensated Arrhenius(SCA)and back-propagation artificial neural network... The flow behavior of Ti-55511 alloy was studied by hot compression tests at temperatures of 973−1123 K and strain rates of 0.01−10 s^(−1).Strain-compensated Arrhenius(SCA)and back-propagation artificial neural network(BPANN)methods were selected to model the constitutive relationship,and the models were further evaluated by statistical analysis and cross-validation.The stress−strain data extended by two models were implanted into finite element to simulate hot compression test.The results indicate that the flow stress is sensitive to deformation temperature and strain rate,and increases with increasing strain rate and decreasing temperature.Both the SCA model fitted by quintic polynomial and the BPANN model with 12 neurons can describe the flow behaviors,but the fitting accuracy of BPANN is higher than that of SCA.Sixteen cross-validation tests also confirm that the BPANN model has high prediction accuracy.Both models are effective and feasible in simulation,but BPANN model is superior in accuracy. 展开更多
关键词 Ti-55511 alloy flow stress Arrhenius constitutive equation back-propagation artificial neural network finite element
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