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首页> 外文期刊>Journal of the European Ceramic Society >Anomalous increase in specific volume upon crystallization of some alloys in the zirconia—yttria—erbia system
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Anomalous increase in specific volume upon crystallization of some alloys in the zirconia—yttria—erbia system

机译:在氧化锆-氧化钇-塞尔维亚体系中某些合金结晶后,比容反常增加

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摘要

New inorganic materials with dominant ionic chemical bonds which expand upon crystallization at room temperature have been discovered. This effect has been observed in alloys of the ZrO_2–Y_2O_3–Er_2O_3 system. It can be interpreted as transition existence from crystal structure with dominant ionic bonds to the one with dominant covalent or covalent-metallic bonds while heating below the melt point. So the phase transition from cubic C phase to hexagonal H which occurs in these materials at about 2300℃ should be linked to changing in the dominant type of chemical bonds. Such a phenomenon should be take place upon oxides crystallization of rare-earth elements which have physicochemical properties and electron structure similar to those of Y_2O_3, namely of heavy lanthanides oxides Ho_2O_3 , Tm_2O_3 , and Yb_2O_3; upon the crystallization of their alloys with each other and with Er_2O_3 and Y_2O_3.
机译:已发现具有主要离子化学键的新型无机材料,该离子在室温下结晶时会膨胀。在ZrO_2–Y_2O_3–Er_2O_3系统的合金中已观察到这种效果。可以解释为在加热到熔点以下时,从具有主要离子键的晶体结构过渡到具有主要共价键或共价金属键的晶体结构的过渡存在。因此,在大约2300℃下这些材料中发生的从立方C相到六方H的相变应与化学键的主要类型的变化有关。这种现象应发生在具有类似于Y_2O_3的物理化学性质和电子结构的稀土元素的氧化物结晶上,即重镧系元素氧化物Ho_2O_3,Tm_2O_3和Yb_2O_3;它们的合金彼此之间以及与Er_2O_3和Y_2O_3一起结晶。

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