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[41]Yuxiang Xu, Li Chen*, Ziqiang Liu.Structure, mechanical, and thermal properties of Ti1-xAlxN/CrAlN (x= 0.48, 0.58 and 0.66) multilayered coatings[J].J. Am. Ceram. Soc., 2018 (101) : 845-855.
[42]Yong Du, Jian L. Yue, Fei Pei, Li Chen*, Yu X. Xu.Thermal stability and oxidation resistance of V-alloyed TiAlN coatings[J].Cera. Int., 2018, 44: 1705-1710.
[43]Li Chen*, Yu X. Xu, Hui T. Wang.Optimization of Cr-Al-N coating by multilayer architecture with TiSiN insertion layer[J].J. Alloys. Compd., 2017, 728: 952-958.
[44]Paul H. Mayrhofer, Li Chen*, Yu X. Xu, Yan Yang.Improved Ti-Al-N coatings through Ta alloying and multilayer architecture.Surf. Coat. Technol., 2017, 328: 428-435.
[45]Yong Du, Fei Pei, Zi Q. Liu, Li Chen*, Yu X. Xu.Improving thermal stability of TiSiN nanocomposite coatings by multilayered epitaxial growth[J].Surf. Coat. Technol., 2017, 321: 180-185.
[46]Y. Du*, K.K. Chang, F. Pei, L. Chen*, Y.X. Xu.Effect of the modulation ratio on the interface structure of TiAlN/TiN and TiAlN/ZrN multilayers[J].Acta Materialia, 2017, 130: 281-288.
[47]Y. Xu, L. Chen*, L. He.Interfacial structure, mechanical properties and thermal stability of CrAlSiN/CrAlN multilayer coatings[J].Materials Characterization, 2017, 125: 1-6.
[48]Y. Du, L. Zhang*, L. Chen*, J. Zhong, J. Zhou.Phase equilibria, thermodynamics and microstructure simulation of metastable spinodal decomposition in c–Ti1?xAlxN coatings[J].CALPHAD, 2017, 56: 92-101.
[49]Y. Du, F. Pei, L. Chen*, Y.X. Xu.Structure and thermal properties of TiAlN/CrN multilayered coatings with various modulation ratios[J].Surface and Coatings Technology, 2016, 304: 512-518.
[50]Y.X. Xu, L. Chen*.Influence of interfacial structure on the mechanical and thermal properties of CrAlN/ZrN multilayer coatings[J].Materials & Design, 2016, 106: 1-5.
[51]L. Chen*, F. Huang, W. Pei, C.B. Liu.Improved mechanical and thermal properties of CrAlN coatings by Si solid solution[J].Vacuum, 2016, 125: 180-184.
[52]L.J. Zhang, Y.X. Xu, L. Chen*.Influence of TiN and ZrN insertion layers on the microstructure, mechanical and thermal properties of Cr–Al–N coatings[J].Surface and Coatings Technology, 2016, 285: 146-152.
[53]Y. Liu, Y. Du, Y.X. Xu, L. Chen*.Effect of bilayer period on structure, mechanical and thermal properties of TiAlN/AlTiN multilayer coatings[J].Thin Solid Films, 2015, 592: 207-214.
[54]Y. Du, Y. Xu, L. Chen*, L. He.Thermal stability and oxidation resistance of Cr1?xAlxN coatings with single phase cubic structure[J].Journal of Vacuum Science & Technology A, 2015, 33 (6)
[55]Y. Du, F. Pei, Z. Liu, L. Chen*, Y. Xu.Influence of Ti on the mechanical properties, thermal stability and oxidation resistance of Al–Cr–N coatings[J].Vacuum, 2015, 120: 127-131.
[56]S. Kolozsvári, Y. Du, Y.X. Xu, M.J. Wu, * Y. Yang, L. Chen.Correlation between arc evaporation of Ti–Al–N coatings and corresponding Ti0.50Al0.50 target types[J].Surface and Coatings Technology, 2015, 275: 309-315.
[57]Y. Du, Y.X. Xu, Z.Q. Liu, L. Chen*.Influence of Zr on structure, mechanical and thermal properties of Cr–Al–N coatings[J], 2015, 275: 289-295.
[58]Y. Du, F. Pei, L. Zhou, Y. Xu, L. He, L. Chen*.Influence of ZrN on oxidation resistance of Ti–Al–N coating[J].Surface and Coatings Technology, 2014, 244: 87-91.
[59]Y. Du, L. Zhou, F. Pei, Y. Xu, B. Yang, L. Chen*.Improved thermal stability and oxidation resistance of Al–Ti–N coating by Si addition[J].Thin Solid Films, 2014, 556: 369-375.
[60]J.L. Yue, Y. Liu, Y. Du, F. Pei, L. Chen*, Y.X. Xu.Influence of Hf on the structure, thermal stability and oxidation resistance of Ti-Al-N coatings[J], 2014, 565: 25-31.
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