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1)  divorced eutectic
离异共晶
1.
The second-phase is mainly divorced eutectic β phase in the Mg-Al based alloys.
Mg-Al系镁合金中的第二相主要是离异共晶β相,其含量、形状、分布和大小对合金的力学性能和成形有很大的影响。
2.
Microstructure within the fusion zone consisted of the γ′ matrix and Ni 5Zr in the interdentric regions,which were the products of divorced eutectic reaction between γ phase and Ni 5Zr at elevated temperature.
对焊缝金属进行显微分析后发现:室温下凝固组织由基体γ′相和晶间Ni5Zr相组成,它们是高温下γ相与Ni5Zr相离异共晶反应的产物。
3.
The results show that,Al-Mg-Zn filler metal reacting with the base metal AZ31B,and α-Mg+β-Mg17(Al,Zn)12 divorced eutectic structure is formed in the brazed joint.
结果表明,在钎焊接头的钎缝中钎料与母材AZ31B发生反应生成离异共晶组织-αMg+-βMg17(Al,Zn)12,母材AZ31B的显微硬度最低,钎缝中的-βMg17(Al,Zn)12相显微硬度最高。
2)  α(Al)-CuAl2 divorced eutectic
α(Al)-CuAl2离异共晶
3)  anomalous eutectics
异常共晶
4)  separated eutectic
分离共晶
1.
Based on the formation of separated eutectic during electromagnetic stirring and unidirectional solidification, composite materials was prepared which was composed of hypo eutectic matrix and composite surface such as pure Si or inter metallic compound Al3Fe, Al3Ni, Al6Mn.
根据电磁搅拌下定向凝固时形成分离共晶的原理,制备了表面为 Si和 Al3Fe,Al3Ni, Al6Mn等金属间化合物的表面复合材料。
2.
The separated eutectic for nearly 20 kinds of simple and complex eutectic alloys was investigated.
研究了近20种简单和复杂二元共晶合金在强磁场搅拌下形成分离共晶的现象。
5)  eutectic segregation
共晶分离
6)  divorced eutectoid transformation
离异共析
1.
The spheroidizing annealing technologies were proposed with aid of calphad technique to process two kinds of UHCs through the divorced eutectoid transformation mechanism of the austenite of inhomogenous carbon concentration, which consist of austenitizing at intermediate temperature in three phases (γ(fcc)+α(bcc)+cem) equilibrium aera and soaking below the eutectoid transformation temperature.
利用碳浓度不均匀奥氏体离异共析转变机制 ,借助于相图计算技术 ,对UHCs 1 0Al(含Al 1 0 %wt % )和UHCs 1 5Al(含Al1 5wt % )两种锻造超高碳钢提出了在三相区奥氏体化并在共析转变温度低限等温球化工艺 ,并对不同球化组织的力学性能进行了测定。
2.
The microduplex structure formed by divorced eutectoid transformation demonstrated the best properties,with the yield strength of about 480MPa, the tensile strength of about 850MPa,the uniform elongation of about 11%and the total elongation of about 21%.
基于离异共析转变获得的超细化复相组织具有最好的综合力学性能,屈服强度约为480 MPa,抗拉强度约为850 MPa,均匀伸长率约为11%,总伸长率约为21%。
补充资料:共晶共沉淀
分子式:
CAS号:

性质:共沉淀法之一,指无法结晶的微量物质与常量物质产生共结晶沉淀而被载带出来。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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