1) Ti6A14V alloy
Ti6A14V合金
1.
Laser surface gas nitriding is an attractive method to enhance surface hardness and wear resistance of Ti6A14V alloy.
采用高功率连续波Nd YAG激光在Ti6A14V合金表面进行激光气体氮化,获得了均匀致密、无孔洞裂纹等缺陷的氮化钛改性层。
3) Ti6AI4V alloy
Ti6A14V钛合金
4) hydrogenated Ti6Ai4Valloy
置氢Ti6A14V合金
5) Ti6Al4V
Ti6A14V
1.
Layered structure of oxygen-implanted layer on Ti6Al4V alloy by plasma based ion implantation;
Ti6A14V合金等离子体基氧离子注入层的层状结构
2.
The certain thickness and compact Mo-N surface modified layer on Ti6Al4V substrate was prepared by the plasma surface alloying technology.
利用等离子表面合金化技术在 Ti6A14V 表面 Mo-N 共渗,对试样在 Hank s 模拟人工体液及干摩擦条件下的磨损性能进行了研究。
3.
Three different processing techniques were used to produce three kinds of Ti6Al4V alloys with lamellar microstructure in which the sizes of acicular a are different,and the dynamic behavior was investigated on a split Hopkinson bar apparatus.
利用分离式 Hopkinson 压杆测试技术,对针状α尺寸不同的3种片层组织 Ti6A14V 钛合金进行动态测试。
6) metal alloy
金属合金
1.
Hydrogen-storage mechanism, absorbing and disrobing hydrogen capacity and kinetics of metal alloys and carbon materials are summarized.
论述了金属合金和碳材料的储氢机理、吸放氢量和动力学性能;探讨了活性金属Ni、Pd、Li和K对碳材料储氢的催化性能和金属Mg与多壁纳米碳管、碳纳米纤维、高比表面积活性炭、无烟煤和纳米石墨等碳材料复合储氢的性能及机理;指出了储氢材料应该向Li、Na、Mg、Al、B等轻元素和无烟煤、石墨等储量大、赋存广、成本低的碳材料方向发展。
补充资料:Ti_(3)Al基合金(金属间化合物)涡轮导风板
Ti_(3)Al基合金(金属间化合物)涡轮导风板
TiaA,基合金(金属间化合物)涡、、风*。利;:,
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