Liquidus temperature of actual aluminum electrolyte samples was measured directly.
直接測定了鋁電解質(zhì)實際樣品的初晶溫度.
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Semi - solid slurry of Y 112 alloy was cast by near liquidus semi - continuous ( NLSC ).
采用近液相線半連續(xù)多模鑄造法制備出 Y112 鋁合金半固態(tài)坯料.
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The liquidus temperaturecurves and spontaneous crystallization temperature curves of three systems, i . e . BaB _ 2 O _ 4 - BaF , BaB _ 2 O _ 4 - BaCl _ 2 and BaB _ 2 O _ 4 - BaB _ 2 O _ 4· Na _ 2 O, are given.
詳細地介紹了尋找適合于此晶體生長的最佳助熔劑,并給出BaB_2O_ 4Κ—BaF_2,BaB_2O_ 4—BaCl _2和BaB_2O_4—BaB_2O_4·Na_2O等三種體系的液相線溫度曲線和自發(fā)結(jié)晶溫度曲線.
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A mathematic model about the relationship between liquidus temperature and cryolite ratio was simulated.
根據(jù)分析結(jié)果擬合出該體系初晶溫度與分子比數(shù)學模型.
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The casting and remelted microstructures of ZL 201 alloy cast by liquidus semi - continuous casting ( LSC ) were studied.
研究了近液相線半連續(xù)鑄造 ZL201 合金的微觀組織及其在二次加熱過程中的變化.
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Liquidus temperature is a important parameter to the control of electrolytic aluminium reduction cell.
電解質(zhì)初晶點是鋁電解過程中一重要參數(shù).
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Mathematic models about the relationships between liquidus temperature and their components and cryolite ratio computer.
通過測定電解質(zhì)初晶溫度及時給出各組分含量、分子比,研制出一種便攜式初晶溫度、分子比槽前分析儀.
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