首页> 外文会议>International Thermal Spray Conference, May 28-30, 2001, Singapore >Plasma Spray Dissociation ZrSiO_4 As The Basis of Forming ZrO_2-Mullite Composites from a ZrSiO_4 + AI_2O_3 Mixture
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Plasma Spray Dissociation ZrSiO_4 As The Basis of Forming ZrO_2-Mullite Composites from a ZrSiO_4 + AI_2O_3 Mixture

机译:等离子体喷雾离解ZrSiO_4作为由ZrSiO_4 + AI_2O_3混合物形成ZrO_2-莫来石复合材料的基础

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Zirconia is effective in improving the fracture toughness to a number of ceramics when introduced as a reinforcement either in the form of particulate, dispersed phase or whiskers because of its unique tetragonal-monoclinic (t → m) transformation. In this paper, the authors attempt to prepare ZrO_2 reinforced mullite by plasma spraying mixtures of zircon and alumina. Pre-mixed powders of zircon (ZrSiO_4 and alumina are injected into a dc plasma jet. The plasma sprayed particles are collected in distilled water and analyzed. The dissociation of zircon in thermal plasma is a well-established fact. The present investigation aims to utilise the plasma dissociation of zircon to produced ZrO_2-toughned mullite from a zircon + alumina mixture. The results indicate that the plasma sprayed powders consist of zircom'a, amorphous SiO_2, zircon and alumina. It was found that ball milling and plasma spraying could yield fine grained, even amorphous and chemically homogeneous composite powders. Recrystallization of amorphous phases and formation of mullite occurred at about 1000℃ in plasma sprayed powders. This value is more than 500℃ lower than the formation of mullite in as-milled powders. Uniform coatings with good structural integrity were obtained by plasma spraying. The relative quantity of mullite in coatings after heat treatment is about 4 times as much as that obtained in the spheroidized powders. Preheat treatment of the spheroidized powder promoted dissociation of zircon. Zirconia remained as tetragonal under 1000℃ in the sprayed coatings.
机译:氧化锆由于其独特的四方单斜晶系(t→m)转变而以颗粒,分散相或晶须的形式作为增强材料引入时,可有效提高多种陶瓷的断裂韧性。在本文中,作者试图通过等离子喷涂锆石和氧化铝的混合物来制备ZrO_2增强莫来石。将预混合的锆石粉(ZrSiO_4和氧化铝)注入直流等离子射流中,将等离子喷涂的颗粒收集在蒸馏水中并进行分析。锆在热等离子体中的离解是公认的事实,本研究旨在利用锆石的等离子体离解,从锆石+氧化铝混合物中制得ZrO_2-增韧莫来石,结果表明等离子喷涂粉末由锆石,无定形SiO_2,锆石和氧化铝组成,经球磨和等离子喷涂可产生细颗粒状,均匀甚至化学均匀的无定形复合粉末,等离子喷涂粉末在约1000℃发生非晶相的重结晶和莫来石的形成,该值比研磨后的粉末中莫来石的形成低500℃以上。通过等离子喷涂获得结构良好的整体,热处理后涂料中的莫来石的相对含量约为粘胶的4倍h与球化粉中所获得的相同。球化粉末的预热处理促进了锆石的离解。在喷涂涂层中,氧化锆在1000℃下仍为四方晶。

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