代表性论文、专利、论著:
已发表论文及专著:
[1] Xiaoyu Ding, Weigui Wang, Haojie Zhang, Xueqin Tian,Laima Luo, Yucheng Wu, Jianhua Yao. Study on Microstructure and High Temperature Stability of WTaVTiZrx Refractory High Entropy Alloy Prepared by Laser Cladding. Entropy, 2024,26, 73.
[2] Hao-Jie Zhang, Xue-Qin Tian, Xiao-Yu Ding※, Hui-Yun Zheng, Lai-Ma Luo, Yu-Cheng Wu, Jian-Hua Yao. Study on the effect of vacuum fusion infiltration technology on the properties of tungsten/copper joining interface. Nuclear engineering and technology, doi.org/10.1016/j.net.2024.01.048.
[3] Xiaoyu Ding, Jiahui Fang, Qiu Xu, Panpan Zhang, Haojie Zhang, Laima Luo, Yucheng Wu, Jianhua Yao. Microstructure Evolution and Effect on Deuterium Retention in TiC- and ZrC-Doped Tungsten under He+ Ion Irradiation. Metals, 2023,13(4): 783.
[4] Hao-Jie Zhang, Xue-Qin Tian,Xiao-Yu Ding※, Hui-Yun Zheng, Lai-Ma Luo, Yu-Cheng Wu, Jian-Hua Yao. Influence of laser texturing on interfacial bonding strength of W/Cu joint by spark plasma sintering. Fusion Engineering and Design, 2023, 195: 113972.
[5]Xiaoyu Ding, Huiyun Zheng, Panpan Zhang, Laima Luo, Yucheng Wu, Jianhua Yao. Microstructure and Mechanical Properties of WTaVCrTi Refractory High-Entropy Alloy by Vacuum Levitation Melting for Fusion Applications. Journal of Materials Engineering and Performance, 2023, 32:7869-7878.
[6] Xiaoyu Ding,Qiu Xu,Xiao-yong Zhu, Lai-Ma Luo, Jian-Jun Huang, Bin Yu, Xiang Gao, Jian-Gang Li, Yu-Cheng Wu. Microstructure evolution and effect on deuterium retention in oxide dispersion strengthened tungsten during He+ irradiation. Nuclear engineering and technology, 2020, 52(12): 2860-2866.
[7] Xiaoyu Ding, Jiaqin Liu, Laima Luo, Qiu Xu, Xiang Gao, Jianjun Huang, Bin Yu, Jiangang Li, Yucheng Wu. TEM studies of 1 MeV Fe+ ion-irradiated W alloys by wet chemical method: high-temperature annealing and deuterium retention. Nuclear Fusion, 2019, 59, 016008.
[8] Qiu Xu, Xiaoyu Ding, Laima Luo, Mitsutaka Miyamoto, Masayuki Tokitani, Jian Zhang, Yucheng Wu. Thermal stability and evolution of microstructures induced by He irradiation in W-TiC alloys. Nuclear Materials and Energy. 2018, 15: 76–79.
[9] Qiu Xu, Xiaoyu Ding, Laima Luo, Mitsutaka Miyamoto, Masayuki Tokitani, Jian Zhang, Yucheng Wu. D 2 retention and microstructural evolution during He irradiation in candidate plasma facing material W-La2O3 alloy. Journal of Nuclear Materials, 2017, 496: 227–233.
[10]Xiaoyu Ding, Laima Luo, Hongyu Chen, Xiaoyong Zhu, Xiang Zan, Jigui Cheng, Yucheng Wu. Chemical Synthesis and Oxide Dispersion Properties of Strengthened Tungsten via Spark Plasma Sintering. Materials, 2016, 9(11), 879.
[11]Xiaoyu Ding, Laima Luo, Limei Huang, Guangnan Luo, Xiaoyong Zhu, Jigui Cheng, Yucheng Wu. Preparation of TiC/W core-shell structured powders by one-step activation and chemical reduction process. Journal of Alloys and Compounds, 2015, 619, 704-708.
[12] Xiaoyu Ding, Laima Luo, Hongyu Chen, Guangnan Luo, Xiaoyong Zhu, Xiang Zan, Jigui Cheng, Yucheng Wu. Fabrication of W-1wt.%TiC composites by spark plasma sintering. Fusion Engineering and Design, 2015, 92, 29-34.
[13] Xiaoyu Ding, Laima Luo, Zelong Lu, Guangnan Luo, Xiaoyong Zhu, Jigui Cheng, Yucheng Wu. Chemically produced tungsten-praseodymium oxide composite sintered by spark plasma sintering. Journal of Nuclear Materials, 2014, 454, 200-206.
[14] Xiaoyu Ding, Laima Luo, Xiaoyue Tan, Guangnan Luo, Ping Li, Xiang Zan, Jigui Cheng, Yucheng Wu. Microstructure and properties of tungsten–samarium oxide composite prepared by a novel wet chemical method and spark plasma sintering. Fusion Engineering and Design, 2014, 89, 787-792.
[15] XiaoYu Ding, Laima Luo, Limei Huang, Xiaoyue Tan, Hao Li, Guangnan Luo, Xiang Zan, Yu Hong, Jigui Cheng, Yucheng Wu. Study on activated W powders by chemical activation pretreatment and its sintering behavior. Int. Journal of Refractory Metals and Hard Materials, 2014, 47, 12-17.
[16] 丁孝禹, 罗来马, 黄丽枚, 罗广南, 昝祥, 朱晓勇, 吴玉程. 活化处理W-1.5wt%TiC复合粉体烧结行为影响规律研究,稀有金属材料与工程. 2015, 44(8): 2063-2066.
[17] 丁孝禹, 罗来马, 黄丽枚, 罗广南, 李萍, 朱晓勇, 吴玉程. 湿化学法制备W-TiC复合粉体及其SPS烧结行为研究, 中国有色金属学报. 2014, 24(10): 2594-2600.
[18] 丁孝禹, 罗来马, 黄丽枚, 罗广南, 李萍, 吴玉程. 核聚变堆用钨及钨合金辐照损伤研究进展, 稀有金属. 2015, 39(12): 1139-1147.
[19] 丁孝禹, 李浩, 罗来马, 黄丽枚, 罗广南, 昝祥, 朱晓勇, 吴玉程. 国际热核试验堆第一壁材料的研究进展, 机械工程材料. 2013, 37 (11): 6-11.
[20] 专著:吴玉程, 丁孝禹, 罗广南著. 湿化学法钨基复合材料制备与辐照损伤行为. 合肥工业大学出版社, 2019.
专利
[1] 发明专利:姚建华, 余杭, 丁孝禹, 张群莉. 基于SLM技术制备钨铜连续梯度材料的方法,申请号:202210265308. 3
[2] 发明专利:姚建华, 余杭, 丁孝禹, 张群莉, 郑辉云. 用于核聚变偏滤器水冷模块的钨铜连续功能梯度层的制备方法及其产品, 申请号:202210526188. 8
[3] 发明专利:一种核壳结构纳米TiC/W复合粉体的制备方法, 公告号:CN103736992A