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Characteristics of Porous YAG Powders Fabricated by PVA Polymer Solution Technique

机译:PVA聚合物溶液技术制造多孔丝粉的特性

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Pure and stable YAG (Y_3Al_5O_(12)) powders were synthesized by a PVA (polyvinyl alcohol) polymer solution technique. PVA was used as an organic carrier for the precursor ceramic gel. The PVA affected crystallization behavior, powder morphology, specific surface area and crystalline size of the synthesized powders. The precursor gels were crystallized to YAG at relatively a low temperature of 900 °C. The synthesized powders, which have nano-sized primary particles, were soft and porous, and the porous powders were ground to sub-micron size by a simple ball milling process. The ball-milled powders were densified to 94% relative density at 1500 °C for 1h. In this study, the characteristics of the synthesized YAG powders were examined by using X-ray diffractometer, simultaneous differential scanning calorimetry and electrophoretic light scattering spectrophotometer. And the morphologies of the powders and the densified samples were observed by scanning electron microscopy.
机译:通过PVA(聚乙烯醇)聚合物溶液技术合成纯且稳定的YAG(Y_3AL_5O_(12))粉末。 PVA用作前体陶瓷凝胶的有机载体。 PVA影响结晶行为,粉末形态,比表面积和合成粉末的晶体尺寸。将前体凝胶在相对低温的900℃的低温下结晶至YAG。具有纳米尺寸的初级颗粒的合成粉末是柔软的且多孔的,并且通过简单的球磨过程研磨多孔粉末至亚微米尺寸。将球研磨的粉末致密于1500℃的94%相对密度1小时。在该研究中,通过使用X射线衍射仪,同时差示扫描量热法和电泳光散射分光光度计检查合成的YAG粉末的特性。通过扫描电子显微镜观察粉末和致密样品的形态。

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