入职时间:2015-01-20
所在单位:粉末冶金研究院
性别:男
联系方式:yonghan@csu.edu.cn
学位:博士学位
职称:研究员
所属院系:粉末冶金研究院
学科:
材料科学与工程
招生学科:
材料科学与工程
- Microstructure and strengthening mechanisms in fine-grained and high-strength tungsten heavy alloy with a non-equiatomic Ni5.5Fe2.5CoCr high-entropy binder.Materials Science & Engineering A, 2024, 908: 146769.
- A CuZnMnNiSi alloy interlayer reinforced W alloy/304 stainless steel composite with excellent interfacial strength.International Journal of Refractory Metals and Hard Materials, 2023, 116: 106316.
- Microstructures and mechanical properties of novel MoTaVW refractory high-entropy alloys.Journal of Alloys and Compounds, 2023, 968: 172165.
- A novel Nb-W-C alloy with special microstructure and excellent mechanical property.Journal of Alloys and Compounds, 2023, 968: 172178.
- Microstructure and strength of diffusion bonding W alloy/304 stainless steel joint using a Cu interlayer.International Journal of Refractory Metals and Hard Materials, 2023, 113: 106188.
- Additive manufactured high-strength tungsten composite with high deformability by using a novel CoCrNi medium-entropy binder.Composites Part B, 2022, 246: 110256.
- A novel dissolution-precipitation mechanism during liquid phase sintering and its strengthening effects in W-Ni-Fe alloys with low W contents.Materials & Design, 2022, 220: 110841.
- Powder Extrusion Printing and Sintering Densification Behaviors of Ultrafine 98W-1Ni-1Fe Alloy Powder.Crystals, 2022, 12: 875.
- The effects of SiC addition on the sintering densification, phases, microstructure and mechanical properties of W.International Journal of Refractory Metals and Hard Materials, 2021, 98: 105528.
- Size-Dependent Alloying Ability of ImmiscibleW-Cu Bimetallic Nanoparticles: A Theoretical and Experimental Study.Nanomaterials, 2021, 11: 1047.