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本文主要用X射线粉末衍射法,配合着差热分析,研究了Co-Ga二元系的平衡关系。这个系统在室温除Ga与γ-Co外,存在着α′,β和φ三个相。α′相是以面心立方为基的超结构相,可以看作是Ga溶于α-Co中,而使α-Co得在常温稳定存在的相。α′相在室温的均匀范围为2.4—10.7at.%Ga。β相于1177℃由α′+Lβ包晶反应所形成,是CsCI型结构,在常温的均匀范围为36.3—59.8at.%Ga。单相区内点阵常数随成份的变迁在47.5at.%Ga处有一最大值,这与Al-Ni二元系中的β相很相似,在这个最大值左边的富Co区域是替代式固溶体,而在最大值右边的富Ga区域,则是缺陷式固溶体。ψ相的均匀范围很窄,仅存在于75at.%Ga附近。它属于四方晶系,空间群为D4h14-P42/mnm,晶胞内含4个化合式量CoGa3,在20℃和75.4at.%Ga处的点阵常数为:a=6.2365?,c=6.4347?,c/a=1.0318。它是由包晶反应β+L←→ψ所形成的,反应温度为833℃。无论Ga在γ-Co中,或Co在Ga中都不存在可以观察得到的固溶度。从CoGa3到Ga,存在着一条27℃的共晶等温线,共晶点非常接近纯Ga。The Co-Ga binary system has been investigated by X-rays in conjunction with differential thermal analysis.It has been established that besides Ga and γ-Co which is the room temperature modification of pure cobalt, there are three phases in the entire system, α′,β and ψ. α′ is a superstructure phase based on a face-centred cubic fundamental lattice, and may be considered as a solid solution of α-Co which is the high temperature form of pure cobalt, stabilized at room temperature due to the addition of gallium. The homogeneous range of this phase at room temperature is 2.4-10.7 at % Ga. The β phase is formed by a peritectic reactio α+L ←→β at 1177℃, with a homogeneous range 36.3-59.8 at % Ga at room temperature. The structure of this phase is of the CsCl (B2) type. The lattice spacing changes with composition in such a way that it rises at first, reaches a maximum, and then falls off with the gallium content. This is similar to the β phase in the Al-Ni system. In the Co-rich side of the maximum, it appears as a substitutional type solid solution, while in the Ga-rich side, it belongs to the defect type, the addition of Ga atoms being equivalent to the dropping off of some Co atoms from the normal lattice. The homogeneous range of the ψ phase is extremely narrow, existing only at the near neighbourhood of the stoichiometric composition 75 at % Ga. This phase belongs to the tetragonal system with space group D4h14-P42/mnm. Bach unit cell contains four formula weights CoGa3, and the lattice spacings at 75.4 at % Ga and 20℃ are α=6.2365?, c=6.4347?, c/a = 1.0318. It is formed peritectically (α + L←→ψ)at 833℃.Neither Ga in γ-Co nor Co in Ga shows any detectable solid solubility. There exists an eutectic horizontal from CoGa3 to Ga at 27℃, with the eutectic point very close to pure gallium.
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