[1] |
Shi Haifang, Li Qiang.
Effect of carbon content on microstructure and properties of Al0.5Co0.5NiCrFe high-entropy alloy coating
[J]. Heat Treatment of Metals, 2022, 47(3): 136-141.
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[2] |
Shu Wei, Song Liqiang, Zhang Wei.
Effect of hot deformation on recrystallization behavior of niobium-bearing austenitic stainless steel 07Cr18Ni11Nb
[J]. Heat Treatment of Metals, 2022, 47(2): 59-64.
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[3] |
Zhuo Chengzhi, Gao Li, Gu Weihua, Yong Qilong, Lu Zhong.
Application of Nb-V microalloyed high carbon steel in steel wire for flexible flat-top card clothing
[J]. Heat Treatment of Metals, 2022, 47(1): 69-72.
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[4] |
Li Junliang, Xing Jun, Ge Zhangqi, Li Fan, Wang Yongqiang, Li Na, Wu Baoqiao.
Thermal deformation behavior of a low carbon hot-rolled H-beam steel containing niobium
[J]. Heat Treatment of Metals, 2021, 46(5): 118-126.
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[5] |
Wang Jiamin, Cao Yu, Xiang Haoliang, Cao Xiangzhi, Song Xinli, Liu Zhongzhu.
Effect of niobium on microstructure and properties of high strength 51CrV steel
[J]. Heat Treatment of Metals, 2021, 46(1): 92-96.
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[6] |
Dong Changfu, Yuan Qing, Xu Guang, Hu Da.
Effect of Nb on microstructure and mechanical properties of hot-rolled low-carbon bainitic steel
[J]. Heat Treatment of Metals, 2020, 45(6): 197-200.
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[7] |
Wang Ming, Ji Hong, Lu Shuo.
Preparation technology of Ni3Al thin film of intermetallic compounds
[J]. Heat Treatment of Metals, 2020, 45(5): 183-186.
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[8] |
Fan Zhongtao, Gao Xiuhua, Yuan Guo, Kang Jian.
Effect of post-rolling cooling and heat treatment processes on microstructure and mechanical properties of Nb-microalloyed V140 steel for OCTG
[J]. Heat Treatment of Metals, 2020, 45(12): 1-6.
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[9] |
Zhang Fang, Li Junping, Peng Jun, Zheng Lili, An Shengli.
Effect of Nb microalloying on microstructure and properties of quasi-bainitic wear-resistant cast steel
[J]. Heat Treatment of Metals, 2020, 45(12): 205-211.
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[10] |
Xue Weihua, Lian Yapeng, Wei Hailian, Mao Yunlong, Shi Yingwei, Wang Hao.
Effect of high temperature delay quenching processes on properties of medium carbon niobium microalloyed steel
[J]. HTM, 2020, 45(1): 16-19.
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[11] |
Wu Xiaodong, Wu Gang, Zhu Jingjing, Li Dongsheng, Cheng Xiaonong.
High temperature oxidation property of aluminum-containing austenitic heat-resisting steel
[J]. HTM, 2016, 41(8): 1-5.
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[12] |
Sun Manli1,2,Jiang Bo1,2,Chen Gang1,2, Yang Lizhu1,2,Zhong Bin1,2.
Effect of Nb micro alloying on microstructure and mechanical properties of high carbon steel
[J]. HTM, 2016, 41(4): 71-74.
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[13] |
Cao Feiyang1,Xie Jingpei1,Wang Miaohui2,Liu Hengsan2,Zhang Zhanzhan3,Lu Siyuan4.
Oxidation resistance of spray-formed H13 steel
[J]. HTM, 2016, 41(3): 134-137.
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[14] |
Wang Bin1,2, Liang Jun1, Jin Hongyang2, Liu Zhengdong3, Cheng Shichang3, Wang Jingzhong4.
Effect of niobium content on the precipitated phases and creep rupture properties of S31042 steel
[J]. HTM, 2016, 41(12): 58-62.
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[15] |
Geng Kuankuan1,2,3, Fang Qi1,2, Dong Yuan1,2, Jin Zili1.
Effect of RE on prior austenite grain size and Nb-Ti solid solution for low carbon high niobium steel
[J]. HTM, 2016, 41(1): 106-110.
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