學術成果
1. X. Chen, Z. Han, X.Y. Li, K. Lu*, Lowering friction coefficients in Cu alloys with stable gradient nanostructures, Science Advances, 2, e1601942 (2016). (國際上率先提出利用朵悼乘梯度納龍判記米捆轎熱結構降低金屬摩擦係數,對提高工程材料能源效率滲戒屑烏與產品壽命具有重察局要意義槳剃悼葛,被Materials today、CAS Research News等海內外媒體報導,前該方法已授權專利1項)
2. X. Chen, R. Schneider, C. Greiner*, P. Gumbsch, Microstructure evolution and deformation mechanisms during high strain rate and cryogenic sliding of copper, Acta Materialia, 10, (2018) 138-149.
3. X. Chen, Z. Han*, K. Lu, Friction and wear reduction in copper with a gradient nano-grained surface layer, ACS Applied Materials&Interfaces, 10, (2018) 13829-13838.
4. X. Chen*, Z. Han, X.Y. Li, K. Lu, Friction of gradient nano-grained metals, Scripta Materialia,185 (2020): 82-87. (Invited viewpoint paper)
5. X. Chen, Z. Han*, K. Lu*, Enhancing wear resistance of Cu-Al alloy by controlling subsurface dynamic recrystallization, Scripta Materialia, 101 (2015) 76-79.
6. X. Chen, Z. Han*, K. Lu*, Wear mechanism transition dominated by subsurface recrystallization structure in Cu-Al alloys, Wear, 320 (2014) 41-50.
*通訊作者
研究方向
1,朵轎喇材料摩擦學
3,原位電鏡力學