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Influence of chemical composition and cold deformation on aging precipitation behavior of high nitrogen austenitic stainless steels 被引量:1
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作者 李花兵 姜周华 +2 位作者 冯浩 朱红春 张祖瑞 《Journal of Central South University》 SCIE EI CAS 2013年第12期3354-3362,共9页
The influence of chemical composition and cold deformation on aging precipitation behavior of 18Cr-16Mn-2Mo-I.IN (HNS-A), 18Cr-16Mn-I.3N (HNS-B), 18Cr-18Mn-2Mo-0.96N (HNS-C) and 18Cr-18Mn-2Mo-0.77N (I-INS-D) h... The influence of chemical composition and cold deformation on aging precipitation behavior of 18Cr-16Mn-2Mo-I.IN (HNS-A), 18Cr-16Mn-I.3N (HNS-B), 18Cr-18Mn-2Mo-0.96N (HNS-C) and 18Cr-18Mn-2Mo-0.77N (I-INS-D) high nitrogen austenitic stainless steels was investigated. The results show that the "nose" temperatures and incubation periods of the initial time-temperature-precipitation (TTP) curves of aged HNSs are found to be 850 ℃, 60 s; 850 ℃, 45 s; 850 ℃, 60 s and 900 ℃, 90 s, respectively. Based on the analysis of SAD patterns, the coarse cellular Cr2N precipitate which presents a lamellar structure has a hexagonal structure of a=0.478 nm and c=0.444 nm. The Z phase corresponding to a composition of Fe36Cr^2Mo10, is determined to be a body-centered cubic structure ofa=0.892 nm. The precipitating sensitivity presents no more difference with the nitrogen content increasing from 0.77% to 0.96%, but exhibits so obviously that the cellular precipitates nearly overspread the whole field. The addition of Mo element can restrain the TTP curves moving left and down, which means decreasing the sensitivity of aging precipitation. With increasing the cold deformation, the sensitivity of precipitation increases obviously. 展开更多
关键词 high nitrogen austenitic stainless steel aging precipitation time-temperature-precipitation curve chemical composition cold deformation
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铜-高氮钢复合板的爆炸焊接可行性探究 被引量:2
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作者 卞超 王凤英 +2 位作者 杨晓波 沈兆欣 弯天琪 《热加工工艺》 CSCD 北大核心 2016年第5期222-226,共5页
针对高氮钢的高硬度、高耐磨性以及铜的耐腐蚀性,本文在爆炸焊接相关理论参数计算的基础上,结合试验研究,对铜与高氮钢进行了爆炸焊接试验,得到其最佳的工艺参数,即当基、复板间距为6 mm,单位面积装药高度为24 mm时,铜与高氮钢能够形成... 针对高氮钢的高硬度、高耐磨性以及铜的耐腐蚀性,本文在爆炸焊接相关理论参数计算的基础上,结合试验研究,对铜与高氮钢进行了爆炸焊接试验,得到其最佳的工艺参数,即当基、复板间距为6 mm,单位面积装药高度为24 mm时,铜与高氮钢能够形成良好的结合。利用有限元软件ANSYS/LS-DYNA对铜与高氮钢的爆炸焊接过程进行了数值模拟与分析,得到了复板运动过程的位移云图,模拟结果与试验结果表现出良好的一致性。 展开更多
关键词 铜-高氮钢复合板 爆炸焊接 数值模拟
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