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Densification and grain growth during sintering of nanosized particles

机译:纳米粒子烧结过程中的致密化和晶粒长大

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The sintering of nanosized particles is a scientific and technological topic that affects the manufacture of bulk nanocrystalline materials and the understanding of the stability of nanoparticles. Owing to their extremely small size and the high surface to volume ratio, nanoparticles during sintering exhibit a number of distinctively unique phenomena compared to the sintering of coarse powders. Particularly, it is generally found that the sintering temperatures of nanosized particles are dramatically lower than that of their micrometre or submicrometre sized counterparts. Research has also shown that the grain growth during nanosintering consists of an initial dynamic grain growth stage that occurs during heating up and the normal grain growth stage that occurs mostly during isothermal holding. For nanoparticles, the effect of the initial grain growth cannot be ignored because that it is sufficient to cause the material to lose nanocrystalline characteristics. This review aims to bring to focus the understanding of the fundamental issues of nanosinteirng, including the thermodynamic driving force of nanosintering, non-linear diffusion and the kinetics of nanosintering, and the relationships between agglomeration, densification and grain growth. This review will also examine the effects of microstructure and processing variables.
机译:纳米颗粒的烧结是一个科学技术话题,它影响着大块纳米晶体材料的制造以及对纳米颗粒稳定性的理解。由于其极小的尺寸和高的表面积与体积之比,与烧结粗粉相比,纳米颗粒在烧结过程中表现出许多独特的现象。特别地,通常发现,纳米级颗粒的烧结温度显着低于其微米或亚微米级对应物的烧结温度。研究还表明,纳米烧结过程中的晶粒生长包括在加热过程中发生的初始动态晶粒生长阶段和等温保温期间发生的正常晶粒生长阶段。对于纳米颗粒,不能忽略初始晶粒生长的影响,因为这足以使材料失去纳米晶体的特性。这篇综述的目的是使人们对纳米烧结的基本问题有更深入的了解,包括纳米烧结的热力学驱动力,非线性扩散和纳米烧结的动力学,以及结块,致密化和晶粒长大之间的关系。这篇综述还将研究微观结构和加工变量的影响。

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