我们主要注意磁光型存储的非晶态稀土-过渡金属合金薄膜和相变型光存储的非晶态半导体薄膜两个方面。
The main attention has been paid on amorphous rare earth- transition metal alloy films for magneto-optical storage and amorphous semiconductor films for phase change optical storage.
研究分析了合金过渡层与金属基体接合界面组织结构。
The microstructure between alloy transition layer and base metal has been studied.
开发金属合金载体,以及新型单钯催化剂、过渡金属型或稀土钙钛矿型催化剂是今后三效催化剂研究的热点。
Developing alloy supporters, new Pd-only TWC, transition metal oxides and alkaline earth oxides as promoters will be the research points for TWC.
采用过渡层法进行钛合金与不锈钢的焊接时,基本能够避免焊接材料之间脆性金属间化合物的大量生成,从而有效提高焊接接头的连接强度。
The intermetallics could be avoided effectively by using the method of transition layers between titanium alloy and stainless steel, and the tensile strength of welded joints is enhanced.
利用中间过渡层的作用,在镁基金属复合材料上激光熔覆了不锈钢合金层,熔覆层与基体为冶金结合。
With the effect of spraying transitional layer, a stainless steel alloy layer was obtained on the magnesium based metal matrix composites by laser cladding.
因此传统的磁光记录介质-稀土金属与过渡组金属的合金就表现出局限性,因为这种材料在短波长范围的磁光效应很小。
So the conventional magneto-optical recording median, rare earth-transition metal (Re-Tm) alloys, is limited, because of its small Kerr rotation in the region of short wavelength.
用直流共溅射方法制备了富稀土-过渡族金属非晶态合金薄膜。
The rich rare earth transition metal amorphous films were prepared by DC double target co sputtering method.
结果表明:硬质合金-45钢双金属复合耐磨材料结合层硬度过渡均匀,冲击韧性是普通硬质合金的5—6倍。
The results show that the hardness of combination area of cemented carbide-steel 45 composite is 5—6 times beyond that of the general cemented carbide.
本发明将会在超细过渡金属颗粒催化剂和金属合金制备领域有很好的应用前景。
The present invention may find its wide application in preparing superfine transition metal catalyst and metal alloy.
耦合金属封装件是一整体管结构,或由激光器固定管体、耦合过渡管、以及外封管组成。
The coupling metal packaging piece is of an integral tube structure, or formed by a laser fixing tube body, a coupling transition tube and an outer packaging tube.
耦合金属封装件是一整体管结构,或由激光器固定管体、耦合过渡管、以及外封管组成。
The coupling metal packaging piece is of an integral tube structure, or formed by a laser fixing tube body, a coupling transition tube and an outer packaging tube.
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