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1)  mechanical alloying
机械合金化
1.
Effect of mechanical alloying on the property of Mo-Cu alloy;
机械合金化对Mo-Cu合金性能的影响
2.
Synthesis of CoSb_3 thermoelectric material by mechanical alloying and spark plasma sintering;
机械合金化与等离子体烧结法制备CoSb_3热电材料
3.
Study of nickel's effect on the synthesis of TiC during mechanical alloying;
Ni在机械合金化合成TiC过程中的研究
2)  MA
机械合金化
1.
Study of the Formation Regularity of the Multi-Component Amorphous Alloys by MA;
机械合金化多元非晶态合金形成规律研究
2.
STUDY OF MACHINE ALLOYING FOR W/Cu MICROPOWDER;
W/Cu二元粉末的机械合金化研究
3.
The Microstructure of Al-10vol%Pb Prepared by MA;
机械合金化制备Al-10vol%Pb组织结构
3)  Mechanical alloy
机械合金化
1.
The probability and synthesis conditions of filled skutterudite compounds LayFeCo_3Sb_ 12 by mechanical alloy and hot press using La, Fe, Co and Sb as start powders are studied in this paper, and so is the effect of La filling fraction on thermoelectric properties.
研究以La,Fe,Co及Sb粉末为起始原料,用机械合金化热压法合成填充式Skutterudite化合物LayFeCo3Sb12的可能性和合成条件,研究了La填充分数对LayFeCo3Sb12电性能的影响。
2.
Nanostructured 90W-7Ni-3Fe powders(MA powders) with tungsten crystalline size of 818nm were prepared by mechanical alloying (MA).
采用机械合金化(MA)制备了晶粒尺寸为 8~18nm的 90W 7Ni 3Fe纳米晶粉末(MA粉末)。
3.
The emphasis is laid on the method of mechanical alloy and the formation mechanism of Cu-based composites.
对近期颗粒增强铜基复合材料的研究进展进行了概括性介绍,重点论述了机械合金化制备颗粒增强相的类型和铜基复合材料的机制。
4)  mechanical alloying(MA)
机械合金化
1.
In order to improve the condition of synthesizing Ti3SiC2(reducing the sintering centigrade and time, and obtaining Ti3SiC2 of higher purity), a method of mechanical alloying(MA) is adopted to treat the original powder and contrast with element powders (directly mixed DM).
为改善Ti3SiC2的合成条件,利用机械合金化的方法处理原料粉末,并与通常采用的原始粉末直接混合粉末进行比较分析。
2.
7) n-type filled Skutterudite was prepared by mechanical alloying(MA) and subsequent hot pressing(HP).
起始原料使用La、Co、Ni和Sb元素粉末,采用机械合金化(MA)和热压烧结(HP)的方法制备了名义成分为LaxNi0。
3.
Mechanical alloying(MA) is a powerful method in the preparation of powders,which can directly alloy the raw materials into target powders in a relatively low cost way.
机械合金化是一种制备粉末材料的常用方法,能够将原始粉末通过球磨直接合成合金粉末,制备出熔炼法无法合成的材料,具有低成本的优势。
5)  mechanically alloying
机械合金化
1.
Amorphous MgNi hydrogen storage alloy was synthesized by mechanically alloying (MA).
采用机械合金化法制备了MgNi非晶,并对不同制备工艺下的MgNi储氢合金的电化学性能进行了测试。
2.
The Al-Pb-Cu alloy was prepared by mechanically alloying.
机械合金化方法制备了Al-Pb-Cu合金。
3.
This paper states the mechanism of mechanically alloying & its application in rare earth permanent magnet materials.
简述了机械合金化的机理及其在稀土永磁材料中的应用。
6)  thermal mechanical alloying
热机械合金化
1.
Wactive carbon,Ni and Co powders were used as raw materials by thermal mechanical alloying(TMA) to prepare WC-M(metal) composites and the effect of mechanical alloying(MA) on W-C-M powder system and its sintering process was studied.
采用热机械合金化方法,以W、活性炭、Ni、Co为原料制备了WC-M(Ni/Co)复合材料,研究了机械合金化对W-C-M粉末体系及其合成过程的作用。
补充资料:机械合金化
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性质:将多种金属粉末在辗压力下经过反复冷焊、粉碎,最终形成合金粉末的工艺。常用高能球磨机,在真空或惰性气体保护下球磨足够的时间,便可得到成分均匀的合金化粉末。该工艺最早用于氧化物弥散强化高温合金,作航空部件,以后扩大用于轻金属、金属间化合物、微晶、纳米晶体、非晶及多种功能材料的研制。

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