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The change of YSZ nanoparticles crystalline structure by powerful ultrasound activation

机译:YSZ纳米粒子晶体结构强大的超声激活的变化

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The changes of phase composition in polymorphous ZrO/sub 2/-5wt% Y/sub 2/O/sub 3/ (YSZ) nanopowder, size of crystallites and their microstrains induced by influence of powerful ultrasound activation (PUA) were studied by XRD techniques. It was shown that during the process of dry nanopowder sonication the part of tetragonal (t) phase transforms to cubic (c) one, its significant smaller part - to monoclinic (m) phase. With PUA power W increasing from O up to 3 kW the rise of apparent crystallite sizes (ACS) was observed for all the phases. Such increasing the ACS is unusual, as it would be expected decreasing the crystallite sizes because of the destroying action of PU-oscillations on crystalline substances. The analysis of ACS values versus phase composition showed that the smallest in size crystallites of t-phase (with the sizes about 10 nm) transfer to c-phase, therewith the average value of ACS of c-phase increases (but not ACS values themselves) at the expense of rise of crystallite amount with the sizes of /spl sim/10 nm. The larger crystallites of t-phase (sizes about 40 nm) martensitely transfer to m-phase increasing the average value of ACS for this phase. As a result the t-phase loses the most part of its crystallites with small and medium sizes (from 10 up to 40 nm), and the average size of the rest of t-phase crystallites (but not the sizes by themselves) rises at increase of W. The essential influence of PUA on the relative crystallite microstrains in c-phase (consisting of small crystallites /spl sim/10 nm) and slight influence on larger crystallites of m- and t-phases were observed.
机译:通过XRD研究了多晶zro / sub 2 / sub 3 /(YSZ)纳米粉末,微晶尺寸和通过强大超声激活(PUA)诱导的微晶诱导的微晶的尺寸和微静脉的变化技巧。结果表明,在干燥纳米粉末的过程中,超凡甲基(T)相的一部分转化为立方(c),其显着较小的部分 - 至单斜核(m)相。随着PUA Power W从O增加到3 kW,所以观察到所有阶段的表观微晶尺寸(ACS)的兴起。这种增加的ACS是不寻常的,因为预期的预期由于破坏PU-振荡对晶体物质的作用而降低了微晶尺寸。 ACS值与相位组成的分析表明,T相的最小尺寸结晶(大小约为10nm)转移到C相,其中C相增加的ACS的平均值(但不是ACS值本身)以/ SPL SIM / 10nm的尺寸为代价结晶量的升高。 T相的较大的T相结晶(大约40nm)的马持转移到M相增加该阶段的ACs的平均值。结果,T相失去其微晶的大部分尺寸(从10至40nm),其余的T相结晶的平均大小(但不是自身的尺寸)上升W培养的增加。观察PUA对C相中的相对微晶微静脉的基本影响(由小晶体/ SPL SIM / 10nm组成)和对M-和T相的较大微晶的略微影响。

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