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Relationship between Grain Structure and Low-temperature Fracture Characteristics in Doped-molybdenum Wire

机译:掺杂钼丝晶粒结构与低温断裂特性的关系

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摘要

Molybdenum alloy wire doped with La_2O_3 of 0.2 percent by mass was heated in hydrogen atmosphere at temperature between 1123 and 2473K, and subjected to three-point bend tests at temperature from liquid nitrogen temperature to room temperature. Then fracture surface of the specimen failed at liquid nitrogen temperature was examined by using a scanning electron microscope and crack initiation and propagation sites were determined. Finally relationship between fracture strength and ductility at low temperatures and grain structure was discussed. In the present study the low-temperature fracture strength and ductility were represented by two parameters, critical stress and critical temperature, respectively.Results are summarized as follows.1) For the specimen mainly composed of fibrous structure;Critical stress decreased substantially and in contrast critical temperature increased slightly with the increase of heating temperature. Crack Initiation site was the boundary transversing the fiber and then the crack propagated across the fibrous structure.2) For the specimen mainly composed of large and elongated grain structure;Critical stress was almost unchanged but critical temperature decreased though only slightly, with the increase of heating temperature. The crack Initiation site was the boundary of a relatively small and equiaxed grain and then the crack propagated across the large and elongated grams.
机译:将La_2O_3掺杂的钼合金线在1123和2473k的温度下在氢气氛中加热La_2O_3,并在温度下从液氮温度到室温进行三点弯曲试验。然后通过使用扫描电子显微镜检查样品的断裂表面在液氮温度下检查,并测定裂纹引发和繁殖位点。最后讨论了低温下断裂强度与延展性之间的关系。在本研究中,低温断裂强度和延展性分别表示两个参数,临界应力和临界温度。结果总结如下1),对于主要由纤维结构组成的标本;临界压力大幅下降并相比临界温度随着加热温度的增加而略有增加。裂缝启动部位是横向纤维的边界,然后致穿过纤维结构的裂缝。加热温度。裂纹启动部位是相对较小且等轴的谷物的边界,然后在大而细长的克上传播的裂缝。

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