ternary eutectic

  • 释义

    三元共晶

数据更新时间:2026-04-19 14:47:56
1、

The ternary system is of eutectic type, the eutectic occurs at 35.7 ℃, 39.0mol% naphthalene and 12.7mol% benzoic acid.

体系为低共熔型,低共熔点为:35.7℃,39.0mol%萘和12.7mol%苯甲酸。

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2、

Supported molten salt membrane is made from a new kind of ceramic material ( lithium meta-aluminate) and ternary eutectic mixture of lithium, sodium and potassium carbonates.

支撑熔盐膜由一种新型陶瓷材料(偏铝酸锂)和锂、钠、钾的三元最低共熔点混合物制成。

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3、

The binary eutectic consists of one phase only(δ or Cu_3P) and the ternary eutectic consists of two phases(δ and Cu_3P) respectively.

在二元共晶状态中只见到一个相(δ或Cu3P),而在三元共晶状态中见到两个相(δ和Cu3P)。

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4、

Based on the better layer wellbore information in north-ⅱ-west area, author develops expansion ternary eutectic field experiment of weak alkaline system of the better layer, and explores the reasonable well network, spacing and multiple combination method, researches remaining oil distribution.

利用北二区西部二类油层聚驱井筒资料,开展二类油层弱碱化体系扩大规模的三元复合驱矿场试验,探索合理的井网、井距及层系组合方法,进行剩余油分布研究。

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5、

It was found that the pseudo-ternary system Al-Mg_5Al_8-LaAl_4 is of the ternary eutectic type.

发现:Al-Mg5Al6-LaAl4赝三元体系属低共熔型;

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6、

Liquid Ag-38.5 Cu-33.4 Ge-28.1 ternary eutectic alloy was undercooled by a great degree up to 175 K ( 0.22 T-E).

在Ag38.5Cu33.4Ge28.1三元共晶合金的深过冷实验中,获得的最大过冷度为175K(0.22TE)。

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7、

Rapid solidification of undercooled Pb-12% Sb-4% Sn ternary eutectic alloy has been investigated. The maximum undercooling of the samples is up to 65K ( 0.13T_E).

研究了三元Pb-12%Sb-4%Sn共晶合金在深过冷条件下的快速凝固,实验中获得65K(0.13T E)的最大过冷度。

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8、

Rapid solidification of Ag_ ( 38.5) Cu_ ( 33.4) Ge_ ( 28.1) ternary eutectic alloy during containerless conditions is studied in experiment, and the maximum supercooling is up to 200 K ( 0.257_l).

实验研究了三元Ag(38.5)Cu(33.4)Ge(28.1)合金的落管无容器快速凝固规律,获得最大过冷度为200K(0.25T E)。

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9、

Under the conditions of containerless processing, Pb-4wt% Sn-12wt% Sb ternary eutectic alloys exhibit a transition from lamellasome structure to granular structure;

在落管无容器快速凝固条件下,Pb-4wt%Sn-12wt%Sb三元共晶合金组织形态由层片状转变为粒状;

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10、

On the basic of it, we have predicted the Fe-Zr-B ternary phase diagram and calculated its liquid line, then we acquired the eutectic components.

并在此基础上,成功地预测了Fe-Zr-B三元相图,计算出该体系的液相线,获得了三元相图上的共晶成分点。

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