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Phase Relations of the Bi-2201-CuO Pseudobinary Join as a Function of Oxygen Pressure

机译:Bi-2201-CuO假二元连接的相关系与氧压的关系

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Phase relations on the join Bi-2201-CuO have been determined as a function of P(O_2). Most of the major changes that occur between P(O_2) of 1 and 0.01 atm occur in the most oxidizing part of the range. Stoichiometric Bi-2201 occurs only at the most oxidizing conditions and in a narrow temperature range near the solidus. In the Bi-2201-CuO system, the ternary phase that forms has higher Bi:Sr and Cu:Sr than Bi-2201. That phase, Sr_(14)Cu_(24)O_y, and CuO occur in the subsolidus and the invariant point at which they coexist with liquid is a ternary eutectic. The liquid is more Sr-rich than the Bi-2201-CuO join. Decrease in P(O_2) produces a change in the Bi-2201 solid solution so that Stoichiometric Bi-2201 does not occur. At P(O_2) ≤0.5 atm, all Bi-2201 solid solutions have Bi:Cu<2 but Bi:Sr near unity and Sr_(14)Cu_(24)O_y does not form. Small amounts of a phase believed to be Bi_9Sr_(11)Cu_5O_x form under these conditions and the primary phase field of that phase crosses the pseudobinary join and minimum melting is at a ternary tributary reaction point. The liquid there is more Bi-rich than the join. Further decrease in P(O_2) causes a continued freezing point depression and enlargement of the CuO primary phase field so that the compositions of multiply-saturated liquids move away from the CuO apex.
机译:已确定连接Bi-2201-CuO上的相位关系是P(O_2)的函数。 P(O_2)在1和0.01 atm之间发生的大多数主要变化都发生在该范围的最氧化部分。化学计量比Bi-2201仅在大多数氧化条件下和固相线附近的狭窄温度范围内发生。在Bi-2201-CuO系统中,形成的三元相比Bi-2201具有更高的Bi:Sr和Cu:Sr。该相Sr_(14)Cu_(24)O_y和CuO出现在亚固相线中,并且它们与液体共存的不变点是三元共晶的。液体比Bi-2201-CuO接头更富Sr。 P(O_2)的减少会导致Bi-2201固溶体发生变化,因此不会发生化学计量Bi-2201。在P(O_2)≤0.5atm时,所有Bi-2201固溶体均具有Bi:Cu <2,但Bi:Sr接近于一,并且不会形成Sr_(14)Cu_(24)O_y。在这些条件下,少量的被认为是Bi_9Sr_(11)Cu_5O_x的相形成,并且该相的主相场穿过假二元连接,并且最小熔融度在三级支化反应点处。那里的液体比接合处更富Bi。 P(O_2)的进一步降低会导致继续降低凝固点并增大CuO初生相场,从而使多饱和液体的成分远离CuO顶点。

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