专利成果
1.易取出式NiTi合金骨科固定器的制造方法. 200510010471.1 (授权号CN100403996C), 中国, 发明专利, 2005, 排名: 4.
2.一种根管器械的表面再制造方法. 200810064359.X (授权号 CN101260552 B), 中国, 发明专利, 2008, 排名: 2.
3.电镀金刚石车针的制造方法. 200810137358.3 (授权号 CN101423968 B), 中国, 发明专利,2009,排名: 2.
4.超细晶镍钛合金根管锉及其制备方法. 201210257124.9 (公布号 CN102743233 A), 中国, 发明专利, 2012, 排名: 2.
5.含有梯度分布成分的TiNi基形状记忆合金及其制备方法. ZL 2013 10000854.5中国, 发明专利, 2013, 排名: 4.
发表论文
1.Zhou HM, Du TF, Shen Y, Wang ZJ, Zheng YF, Haapasalo M. In vitro cytotoxicity of calcium silicate-containing endodontic sealers. Journal of Endodontics 2015, 41: 56-61.
2.Zhou HM, Shen Y, Zheng W, Li L, Zheng YF, Haapasalo M. Physical properties of 5 root canal sealers. Journal of Endodontics 2013;39:1281-6.
3.Zhou HM, Shen Y, Wang ZJ , Li L, Zheng YF, Häkkinen L, Haapasalo M. In vitro cytotoxicity evaluation of a novel root repair material. Journal of Endodontics 2013;,39:487-483.
4.Zhou HM, Peng B, Zheng Yufeng. An overview of the mechanical properties of nickel-titanium endodontic instruments. Endodontic Topics 2013; 29: 42-54.
5.Zhou HM, Shen Y, Zheng W, Li L, Zheng YF, Haapasalo M. Mechanical properties of controlled memory and superelastic nickel-titanium wires used in the manufacture of rotary endodontic instruments. Journal of endodontics 2012; 38 (11):1535-1540.
6.Zhou HM, Wang HX, Zhao CH, Li JR, Li QF, Li L, et al. Effect of heat treatment on fatigue behaviour of biomedical Ni-Ti alloy wires under ultrasonic conditions. Materials Technology 2012; 27 (1): 8-10.
7.Zhou HM, Li QF, Zheng YF, Li L. Fatigue Behavior of Ni-Ti Alloy Endodontic Files under Ultrasonic Unconstrained Condition. Key Engineering Materials 2010; 417-418: 77-80. (EI)
8.Zhou ZM, Li QF, Li L, Zheng ZF. A Ni/surface-modified diamond composite electroplating coating on superelastic NiTi alloy as potential dental bur design. Materials Science Forum 2009; 610-613:1339-1342.
9.Zhou HM, Li QF, Li L, Zheng YF. Ultrasonic fatigue behavior of nickel-titanium endodontic instruments under flexural conditions. SMST-2007 - Proceedings of the International Conference on Shape Memory and Superelastic Technologies 2008: 473-480.