发表SCI/EI论文40余篇,申请中国专利10余项。
2022年:
[1] Huaxin Li, Weijian Shen, Fuquan Yang, Chuanyang Lu, Wenjian Zheng, Yinghe Ma, Sendong Ren, Yanming He, Jianguo Yang, Microstructural, electrical, and mechanical properties of conductive SiC ceramics fabricated by spark plasma sintering [J], International Journal of Applied Ceramic Technology, 2022, 1–16. (SCI, JCR二区)
[2] Huaxin Li, Chuan Cheng, Lei Shi, Ying Jin, Junjian Wang, Wenjian Zheng, Chuanyang Lu, Yinghe Ma, Sendong Ren, Yong Zheng, Lianfeng Wei, Zhenggang Wu, Yanming He, Jianguo Yang, An ultra-strength SiC ceramic joint with an in-situ formed high-entropy carbide interlayer via diffusion bonding by spark plasma sintering [J], Materials Characterization, 2022, 194, 112350. (SCI, JCR一区)
[3] Huaxin Li, Yindian Feng, Weijian Shen, Chuanyang Lu, Wenjian Zheng, Yinghe Ma, Gang Ma, Zhongping Jin, Yanming He, Jianguo Yang, Microstructure and mechanical properties of Cu/Al joints brazed using (Cu, Ni, Zr, Er)-modified Al-Si filler alloys [J], Transactions of Nonferrous Metals Society of China, 2022, https://kns.cnki.net/kcms/detail/43.1239.tg.20220125.1154.050.html. (SCI, JCR一区)
[4] 杨建国,沈伟健,李华鑫*,贺艳明*,闾川阳,郑文健,马英鹤,魏连峰,周正强,氮掺杂导电碳化硅陶瓷研究进展[J],材料工程,2022, 50(9): 18-31. (EI)
[5] 闾川阳, 李宏志, 李亚飞, 钟丰平, 李华鑫, 郑文健, 马英鹤, 高增梁, 杨建国, 贺艳明,聚变堆新一代波导管结构材料CuCrZr合金电子束焊接头组织性能优化研究[J],中国有色金属学报,https://kns.cnki.net/kcms/detail/43.1238.TG.20221018.1620.001.html. (SCI, JCR一区)
[6] 闾川阳,陈刚强,唐夏焘,贺艳明,杨建国,郑文健,马英鹤,李华鑫,高增梁,BNi71CrSi钎料钎焊Hastelloy N合金的接头组织和性能[J],航空学报. 2022, 43 (02)。(EI)
[7] Jiahe Zhou, Yafei Li, Chuanyang Lu, Huaxin Li, Wenjian Zheng, Yinghe Ma, Zengliang Gao, Jianguo Yang, Yanming He, Molecular dynamics simulation of the tensile response and deformation mechanism of diamond/TiC combinations [J], Computational Materials Science, 2022, 215: 111779. (SCI, JCR一区)
[8] Yafei Li, Weijian Chen, Chuanyang Lu, Huaxin Li, Wenjian Zheng, Yinghe Ma, Ying Jin, Weiya Jin, Zengliang Gao, Jianguo Yang, Yanming He, Microstructural evolution mediated creep deformation mechanism for the AlCoCrFeNi2.1 eutectic high-entropy alloy under different testing conditions [J], Materials Science and Engineering: A, 2022, 857(1): 144100. (SCI, JCR一区)
[9] Yanming He, Weijian Chen, Yumeng Zhao, Yafei Li, Chuanyang Lv, Huaxin Li, Jianguo Yang, Zengliang Gao, Jiayan Luo, Revealing the impact of Cl substitution on the crystallization behavior and interfacial stability of superionic lithium argyrodites [J], Energy Storage Materials, 2022 49 (12): 19-57. (SCI, JCR一区)
2021年:
[10] Huaxin Li, Takaaki Koyanagi*, Caen. Ang, Yutai Katoh, Electric current–assisted direct joining of silicon carbide [J], Journal of the European Ceramic Society, 2021, 41(05): 3072-3081. (SCI, JCR一区)
[11] Huaxin Li, Weijian Shen, Weijian Chen, Weizhen Wang, Guohao Liu, Chuanyang Lu, Wenjian Zheng, Yinghe Ma, Jianguo Yang, Zhenyu Ding, Hai Zou, Yanming He, Microstructural evolution and mechanical properties of AlCoCrFeNi high-entropy alloy joints brazed using a novel Ni-based filler [J]. Journal of Alloys and Compounds, 2021, 860: 157926. (SCI, JCR一区)
[12] Yafei Li#, Chuanyang Lu#, Huaxin Li#(共同一作), Yanming He*, Gangqiang Chen, Weijian Chen, Wenjian Zheng, Yinghe Ma, Zengliang Gao, Jianguo Yang, Uncovering the critical factor governing the fatigue crack propagation under the coexistence of multi-interfaces in AlCoCrFeNi2.1 eutectic high-entropy alloy [J], Engineering Fracture Mechanics, 2021, 258, 108132. (SCI, JCR一区)
[13] Haitao Xu#, Lei Shi#, Chuanyang Lu#, Huaxin Li # (共同一作), Yanming He*, Weijian Chen, Yafei Li, Jianguo Yang, Wenjian Zheng, Yinghe Ma, Donghong Wang, Zhenyu Ding, Hai Zou, Zengliang Gao, A novel joining of Cf/C composites using AlCoCrFeNi2.1 high-entropy brazing filler alloys [J], Materials Characterization, 2021, 179: 111368. (SCI, JCR一区)
[14] Yanming He, Fan Xiao, Yuan Sun, Chuanyang Lu*, Shuanjian Chen, Weijian Chen, Huaxin Li, Wenjian Zheng, Yinghe Ma, Jianguo Yang, Zhenyu Ding, Zengliang Gao, Tailoring microstructure and mechanical performance of Hastelloy N-Hastelloy N superalloy joint through modifying brazing processing parameters and post thermal exposure [J]. Materials Characterization, 2021, 173: 110947. (SCI, JCR一区,IF:4.3)
[15] Yanming He, Xianshuai Zhu, Weijian Chen, Chuanyang Lu*, Yafei Li, Haitao Xu, Huaxin Li, Wenjian Zheng, Yinghe Ma, Jianguo Yang, Zengliang Gao, An ultra-high bond strength of the Cf/C composite-TC4 alloy joint brazed using pure Ni and revealing of synergetic action of multiple stress-relief mechanisms [J], Materials Letters, 2021, 308: 131245. (SCI, JCR一区)
2020年:
[16] Huaxin Li, Weijian Shen, Yanming He*, Zhihong Zhong*, Wenjian Zheng, Yinghe Ma, Jianguo Yang, Yucheng Wu, Microstructural evolution and characterization of interfacial phases in diffusion-bonded SiC/Ta–5W/SiC joints, [J]. Ceramics International, 2020, 46(14): 22650-22660. (SCI, JCR一区)
[17] Yinghe Ma, Jianguo Yang*, Xiubo Tian*, Chunzhi Gong, Wenjian Zheng, Yanming He, Huaxin Li, Zengliang Gao, Kexin Zhang, Lianfeng Wei, Chu, Paul K, Enhanced discharge and surface properties of TiSiCN coatings deposited by pulse-enhanced vacuum arc evaporation [J]. Surface & Coatings Technology, 2020, 403: 0-126413. (SCI, JCR一区)
2019年:
[18] Huaxin Li, Takaaki Koyanagi*, Xunxiang Hu, Yutai Katoh, Multiscale experimental characterization of coatings on ceramics: a case study of tungsten on SiC, Surface & Coatings Technology, 2019, 367(15): 1-10. (SCI, JCR一区)
2018年:
[19] Huaxin Li, Zhihong Zhong*, Haibin Zhang, Zhixiong Zhu, Peng Hua, Chan Chen, Yucheng Wu*, Microstructure characteristic and its influence on the strength of SiC ceramic joints diffusion bonded by spark plasma sintering [J]. Ceramics International, 2018, 44(4): 3937-3946. (SCI, JCR一区)
[20] Huaxin Li, Zhiquan Wang, Zhihong Zhong*, Qun Wen, Kuijing Song, Haibin Zhang, Yucheng Wu*, Micro-alloying effects of yttrium on the microstructure and strength of silicon carbide joint brazed with chromium-silicon eutectic alloy [J]. Journal of Alloys and Compounds, 2018, 738: 354-362. (SCI, JCR一区)
[21] Huaxin Li, Zhiquan Wang, Zhihong Zhong*, Chang Chen, Kuijing Song, Yucheng Wu*, Tailoring the interfacial microstructure and mechanical strength of SiC ceramic joints using joining temperature and interlayer thickness [J]. Materials Characterization, 2018, 142: 470-477. (SCI, JCR一区)
[22] Huaxin Li, Ankang Yang, Zhihong Zhong*, Zhiquan Wang, Qun Wen, Chan Chen, Kuijing Song, Yucheng Wu*, Interfacial microstructure evolution and mechanical properties of B4C-based composite joints bonded with Ti foil [J]. Ceramics International, 2018, 44(15): 18016-18024. (SCI, JCR一区)
[23] Zhiquan Wang, Huaxin Li (共同一作), Zhihong Zhong*, Ankang Yang, Chang Chen, Kuijing Song, Yucheng Wu*, In-situ formation of fine-grained carbide composite interlayer during diffusion bonding of SiC ceramic [J]. Journal of Alloys and Compounds, 2018, 763: 875-882. (SCI, JCR一区)
[24] Zhiquan Wang, Huaxin Li (共同一作), Zhihong Zhong*, Ankang Yang, Yucheng Wu*, Microstructure and mechanical properties of SiC joint with an in-situ formed SiC-TiB2 composite interlayer [J]. Materials Science and Engineering: A, 2018, 735: 104-113. (SCI, JCR一区)
[25] Zhiquan Wang, Zhihong Zhong*, Bowen Sun, Huaxin Li, Chang Chen, Kuijing Song, Yucheng Wu, Beneficial effects of B4C addition on the microstructure and mechanical properties of SiC ceramic joints diffusion bonded with Ti3SiC2 [J]. Materials Science and Engineering: A. 2018 742: 169-178. (SCI, JCR一区)
2017年:
[26] L. Niu, S. Wang, C. Chen, S.F. Qian, R. Liu, H. Li, B. Biao, Z.H. Zhong, P. Lu, M.P. Wang, P. Li, Y.C. Wu, L.F. Cao, Mechanical behavior and deformation mechanism of commercial pure titanium foils [J]. Materials Science and Engineering: A, 2017, 707: 435-442. (SCI, JCR一区)
2015年:
[27] Huaxin Li, Xiaoli Chen, Shigang Chen, Yucheng Wu, Kui Xie*, Composite manganate oxygen electrode enhanced with iron oxide nanocatalyst for high temperature steam electrolysis in a proton-conducting solid oxide electrolyzer [J]. International Journal of Hydrogen Energy, 2015, 40(25): 7920-7931. (SCI, JCR一区)
[28] Shigang Chen, Kui Xie, Dehua Dong, Huaxin Li, Qingqing Qin, Yong Zhang, Yucheng Wu, A composite cathode based on scandium-doped chromate for direct high-temperature steam electrolysis in a symmetric solid oxide electrolyzer [J]. Journal of Power Sources, 2015, 274: 718-729. (SCI, JCR一区)
[29] Yuanxin Li, Kui Xie, Shigang Chen, Huaxin Li, Yong Zhang, Yucheng Wu, Efficient carbon dioxide electrolysis based on perovskite cathode enhanced with nickel nanocatalyst [J]. Electrochimica Acta, 2015, 153: 325-333. (SCI, JCR一区)
2014年:
[30] Huaxin Li, Gehui Sun, Kui Xie*, Wentao Qi, Qingqing Qin, Haoshan Wei, Shigang Chen, Yan Wang, Yong Zhang, Yucheng Wu*, Chromate cathode decorated with in-situ growth of copper nanocatalyst for high temperature carbon dioxide electrolysis [J]. International Journal of Hydrogen Energy, 2014, 39(36): 20888-20897. (SCI, JCR一区)
申请中国专利20余件,其中第一作者中国专利10余件。
先进材料制备、连接、表面处理及高端装备设计
[1] 中国发明专利:李华鑫,沈伟健,杨建国,贺艳明,郑文健,闾川阳,马英鹤,郑勇,魏连峰,采用放电等离子烧结制备氮掺杂导电碳化硅陶瓷的方法,申请(专利)号:CN202111222144.8。
[2] 中国发明专利:李华鑫,杨富荃,杨建国,贺艳明,郑文健,闾川阳,马英鹤,任森栋,郑勇,魏连峰,一种电场激活的材料闪烧装置,申请(专利)号:CN202210510644.X。
[3] 中国发明专利:李华鑫,程钏,王军健,杨建国,贺艳明,郑文健,闾川阳,马英鹤,石磊,金霞,一种采用难熔高熵合金中间层放电等离子扩散连接碳化硅陶瓷的方法,申请(专利)号:CN202111175676.0。
[4] 中国发明专利:李华鑫,殷佳豪,周水清,杨建国,郑文健,高增梁,一种适用于铝合金无铬钝化的锆钛基复合钝化液及钝化工艺,申请(专利)号:CN202210317231.X。
[5] 中国发明专利:李华鑫,殷佳豪,王翔,郑文健,杨建国,一种钎焊炉废气处理系统,申请(专利)号:CN202210245085.4。
[6] 中国发明专利:李华鑫,殷佳豪,徐海涛,郑文健,杨建国,一种集成灶燃气阀用铸造铝合金的钝化处理工艺方法,申请(专利)号:CN202011013736.4。
[7] 中国实用新型专利:李华鑫,殷佳豪,杨建国,郑文健,杜高峰,一种引线键合劈刀清洗烘干装置,申请(专利)号:CN202121083725.3。
[8] 中国发明专利:李华鑫,郭杰杰,杨富荃,杨建国,贺艳明,郑文健,闾川阳,马英鹤,任森栋,一种基于发动机余热利用的制冷制纯水系统及其工艺,申请(专利)号:202211206513.9。
[9] 中国发明专利:李华鑫,王军健,杨建国,贺艳明,郑文健,闾川阳,马英鹤,任森栋,一种锆及其合金的低温快速放电等离子扩散连接方法,申请(专利)号:202211038680.7。
绿色智能厨电制造与装备设计
[10] 中国发明专利:李华鑫,殷佳豪,郑文健,杨建国,一种厨房平面自动擦洗装置,申请(专利)号:CN202011329008.4。
[11] 中国发明专利:李华鑫,杨富荃,殷佳豪,沈伟健,杨建国,一种多用厨房盛具清洗装置,申请(专利)号:CN202111052021.4。
[12] 中国发明专利:李华鑫,杨富荃,殷佳豪,沈伟健,杨建国,一种自清洁消毒灶台,申请(专利)号:CN202111077319.0。
[13] 中国发明专利:李华鑫,杨富荃,殷佳豪,沈伟健,杨建国,一种新型油烟机自动更换吸油滤纸装置,申请(专利)号:CN202110991456.9。
[14] 中国实用新型专利:李华鑫,王芬芬,何伟,一种定时自动涮菜装置,申请(专利)号:CN202022684949.1。
[15] 中国实用新型专利:李华鑫,殷佳豪,徐海涛,郑文健,杨建国,一种安全高效厨用多层剪刀,申请(专利)号:CN202022115456.6。
[16] 中国实用新型专利:李华鑫,徐海涛,殷佳豪,郑文健,杨建国,一种厨用间距可调多层剪刀,申请(专利)号:CN202022118605.4。
获奖情况:
绿色低碳集成灶关键技术及产业化,科技进步二等奖,中国轻工业联合会,2023年,8/8。