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黄若轩

领域:高端装备制造产业 学校:大连海事大学职称:教授

➢运用先进的实验手段在不同尺度,不同应变以及不同应变率下对多种轻质复合材料的力学性能进行准确地表征,并在不同尺度以及不同应变率下模拟材料的力学行为,探索材料的破坏机理; ➢内燃机关键摩擦副的摩擦磨损评价及控制方法研究。...

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教育背景

2011.8-2015.8新加坡南洋理工大学 机械与宇航工程专业 博士 2007.9-2010.6厦门大学 材料物理与化学专业 硕士 2003.9-2007.6天津大学 材料科学与工程专业 本科

工作经历

2016.12至今 大连海事大学交通运输工程学院 2015.8-2017.6新加坡科技局加工制造研究所A-star, Research Fellow 2010.7-2011.6中国航空工业天津航空机电有限公司, 工艺工程师

项目课题经历

[1]国防科工局基础产品科研创新项目, XXXXXX设计与试验验证,2018.01-2021.12,110万,主持。 [2]辽宁省自然科学基金指导计划,2019-ZD-0165,高性能深水固体浮力泡沫塑料的制备及微观破坏机制研究,2019-2021,5万,主持。

论文、成果、著作等

[1]R Huang, S Ma, M Zhang, J Xu, Z Wang, Dynamic deformation and failure process of quasi-closed-cell aluminum foam manufactured by direct foaming technique,Materials Science and Engineering: A, 2019, 756: 302. (SCI) [2]R Huang, P Li, T Liu, J Xu, The 3D failure process in polymeric syntactic foams with different cenosphere volume fractions,Journal of Applied Polymer Science, 2019, 136: 47491. (SCI) [3]R Huang, S Ma, M Zhang, J Yang, D Wang, L Zhang, J Xu, Wear Evolution of the Glass Fiber-Reinforced PTFE under Dry Sliding and Elevated Temperature,Materials, 2019, 12 (7): 1082. (SCI) [4] S Ma, Y Liu, Z Wang, Z Wang,R Huang*, J Xu, The Effect of Honing Angle and Roughness Height on the Tribological Performance of CuNiCr Iron Liner,Metals, 2019, 9 (5): 487. (SCI) [5] S Ma, W Chen, C Li, M Jin,R Huang*, J Xu, Wear Properties and Scuffing Resistance of the Cr–Al2O3Coated Piston Rings: The Effect of Convexity Position on Barrel Surface,Journal of Tribology ASME, 2019, 141 (2): 021301. (SCI) [6] W Chen, D Liu, J Xu,R Huang*, Z Chen, F Du, Z Yan, Modeling of Gas Pressure and Dynamic Behavior of the Piston Ring Pack for the Two-Stroke Opposed-Piston Engine,Journal of Tribology ASME, 2019, 141 (1), 012203. (SCI) [7]R Huang, Z Ma, W Dong, Y Shen, F Du, J Xu, M Jin, On the Adhesive Strength Quantification and Tribological Performance of the Multilayered Fe–Ni Coating Fabricated by Electroplating,Strength of Materials, 2019, 1: 1. (SCI) [8]R Huang, P Li, Z Wang, T Liu, X‐Ray Microtomographic Characterization and Quantification of the Strain Rate Dependent Failure Mechanism in Cenosphere Epoxy Syntactic Foams,Advanced Engineering Materials, 2016,18 (9): 1550. (SCI) [9]R Huang, P Li, T Liu, X-ray microtomography and finite element modelling of compressive failure mechanism in cenosphere epoxy syntactic foams,Composite Structures, 2116, 140: 157. (SCI) [10]R Huang, P Li, Elastic behaviour and failure mechanism in epoxy syntactic foams: The effect of glass microballoon volume fractions,Composites Part B: Engineering, 2015 78: 401

专利、著作版权等

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