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1)  In-situ Reactive Liquidus Casting
原位反应液相线铸造
2)  In-situ reaction casting
原位反应铸造法
1.
The spherical VC_P/Fe composites are prepared by in-situ reaction casting.
采用原位反应铸造法,制备了含有球状VCP/Fe基复合材料。
2.
VC particles reinforced ferrous matrix composites were fabricated by in-situ reaction casting.
采用原位反应铸造法制备了VCP/Fe复合材料。
3)  liquidus casting
液相线铸造
1.
The engendering rule of organism of liquidus casting aluminum alloy A356 at different heat preservation temperature, different heat preservation time was investigated.
研究了液相线铸造 A35 6铝合金在不同保温温度、不同保温时间下的组织形成规律。
2.
The mechanisms of the grain nucleating and growing in Al alloys cast by liquidus casting were analysed theoretically.
对液相线铸造铝舍金形核机理和晶粒长大机制进行了理论分析,提出了液相线铸造形核机理:在小的过冷度下,大量的原子团簇瞬态发展成为晶核,形核数目多且均匀,有利于晶粒在互相抵触之前均呈球形长大。
3.
In this paper the development and present state of the research on semi - solid mental slurry making are discussed, and a new technology-Liquidus Casting is proposed.
论述了半固态金属浆制备技术的发展与现状,提出了制浆新工艺-液相线铸造。
4)  In-situ reaction sintering
原位反应液相烧结
5)  near-liquidus casting
近液相线铸造
1.
Al_2O_3p/Al-Cu matrix composites produced by in-situ reactive near-liquidus casting
采用原位反应近液相线铸造法制备Al_2O_3p/Al-Cu基复合材料
2.
The near-liquidus casting process was used in casting AZ91D alloy, and its microstruc- ture was compared with that prepared by liquid casting.
采用近液相线铸造的方法浇铸了镁合金 AZ91D,并与液相铸造的组织进行了对比。
3.
The microstructure evolution of AZ91D magnesium alloy SSM (semi-solid metal) ingots obtained by near-liquidus casting was investigated under altering partial remelting temperature and holding time.
对近液相线铸造AZ91D镁合金半固态坯料进行部分重熔,通过改变部分重熔时的加热温度和保温时间来研究其微观组织的演化规律。
6)  liquidus casting
近液相线铸造
1.
In this paper,the microstructural evolution of Al-Si alloys were simulated in mullti-scales during Liquidus Casting.
本文对 Al-Si 合金近液相线铸造过程微观组织进行了模拟,建立了金属凝固过程组织演变的宏-微观耦合模型。
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性质:源于拉丁语。指在原来的,正常、自然的部位或位置。

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