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Physico-mechanical Properties Of Naphthalene-acenaphthene Eutectic System By Different Modes Of Solidification

机译:凝固方式对萘-ena共晶体系的物理力学性能

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Anisotropic crystal growth kinetics from compositional melts encompassing the entire naphthalene-acenaphthene eutectic system, evidentially, evinces the dislocation mechanism. Rhe-ological properties of eutectic phase melts at different temperatures explore the occurrence of molecular interactions emanating molecular clusters, rich in one phase or the other, in the eutectic melt. Microscopic studies confirm the crystalline faceted-faceted structure of the naphthalene-acenaphthene eutectic system. Implicit in the present work is the concept of strength-growth relationship that follows an identical form of the Weibull probability distribution curve. The curve exhibits two cut-off points corresponding to a lower strength limit in the slow and fast growth regions, and an upper strength limit in the moderate growth region. Relational essence between microstructural parameters essentially structuring morphology and excess thermodynamic functions implicitly governing molten state of the naphthalene-acenaphthene eutectic system is extracted.
机译:显然,来自组成整个萘-ac共晶体系的组成熔体的各向异性晶体生长动力学证明了位错机理。共晶相熔体在不同温度下的流变学性质探讨了在共晶熔体中分子富集于一相或另一相的分子簇的分子相互作用的发生。显微镜研究证实了萘-ena共晶体系的晶体多面结构。在本工作中隐含的是强度-增长关系的概念,该关系遵循威布尔概率分布曲线的相同形式。该曲线表现出两个截止点,分别对应于慢速和快速生长区域的强度下限和中度增长区域的强度上限。提取了本质上构成形态的微观结构参数与隐式支配萘-ena共晶体系熔融态的过量热力学函数之间的关系本质。

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