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个人简介

2005.09-2009.07 长春工业大学 材料成型及控制工程专业 本科学习 2009.09-2014.07 吉林大学 材料加工工程专业 硕博连读 2014.08-2015.08 共享铸钢有限公司 工作 2015.09-至今 辽宁工程技术大学材料学院 工作

研究领域

1.高能束表面改性 2.工程仿生材料制备

近期论文

查看导师最新文章 (温馨提示:请注意重名现象,建议点开原文通过作者单位确认)

1. Chao Meng, Hong Zhou, Dalong Cong, Chuanwei Wang, Peng Zhang, Zhihui Zhang, Luquan Ren. Effect of biomimetic non-smooth unit morphology on thermal fatigue behavior of H13 hot-work tool steel [J]. Optics & Laser Technology, 2012, 44(4): 850-859. (SCI收录) 2. Chao Meng, Hong Zhou, Xin Tong, Dalong Cong, Chuanwei Wang, Luquan Ren. Comparison of thermal fatigue behaviour and microstructure of different hot work tool steels processed by biomimetic couple laser remelting process [J]. Materials Science and Technology, 2013, 29(4): 496-503. (SCI收录) 3. Chao Meng, Hong Zhou, Haifeng Zhang, Xin Tong, Dalong Cong, Chuanwei Wang, Luquan Ren. The comparative study of thermal fatigue behavior of H13 die steel with biomimetic non-smooth surface processed by laser surface melting and laser cladding [J]. Materials & Design, 2013, 51: 886-893. (SCI收录) 4. Chao Meng, Hong Zhou, Ying Zhou, Ming Gao, Xin Tong, Dalong Cong, Chuanwei Wang, F. Chang, Luquan Ren. Influence of different temperatures on the thermal fatigue behavior and thermal stability of hot-work tool steel processed by a biomimetic couple laser technique [J]. Optics & Laser Technology, 2014, 57: 57-65. (SCI收录) 5. Zhikai Chen, Chao Meng, Jixing Dong, Ti Zhou, Xin Tong, Hong Zhou. The comparative study of W/Cr addition in Fe-base by laser surface alloying on fatigue wear resistance of GCI [J]. Surface & Coating Technology, 2016, 286: 25-35. (SCI收录) 6. Zuobo Pang, Hong Zhou, Peng Zhang, Dalong Cong, Chao Meng, Chuanwei Wang, Luquan Ren. Study on quantitative relation between characteristics of striaturebionic coupling unit and wear resistance of gray cast iron[J]. Applied Surface Science, 2015, 331: 179-184. (SCI收录) 7. Zuobo Pang, Hong Zhou, Guofeng Xie, Dalong Cong, Chao Meng, Luquan Ren. Effect of bionic coupling units׳ forms on wear resistance of gray cast iron under dry linear reciprocating sliding condition [J]. Optics & Laser Technology, 2015, 70: 89-93. (SCI收录)

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