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Effect of Sintering Temperature on Properties of YAG Porous Ceramics via Atmospheric Sintering Method

机译:烧结温度对大气烧结法的YAG多孔陶瓷性能的影响

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Yttrium aluminum garnet (YAG) materials have a number of unique properties and their application is extensive. Burn is caused by extremely high temperature or residence time, and undercurrent occurs when the sintering temperature is too low or the holding time is insufficient, resulting in low product performance or extremely small shrinkage. In this paper, the effect of sintering temperature on the properties of YAG porous ceramics was investigated. Results show that the firing temperature of the ingredients varies and burns the same sintering process and additive content of different samples. The SiO_2 content in the furnish tends to increase due to sintering. The effect of temperature on the mechanical properties of the samples after sintering is significant. The raw materials include 60wt% YAG, 10wt% CaO, 10wt% SiO_2, and 20wt% soluble starch. Molding and sintering were conducted in 20 MPa pressure for 10 min and at 1500 °C for 2 h, respectively. The porosity and compressive strength of the sample are 42.2% and 5.8 MPa, respectively. The outside shape of the sample remained intact, and an improved pore microstructure is shown.
机译:钇铝石榴石(YAG)材料具有许多独特的特性,其应用是广泛的。烧伤是由极高的温度或停留时间引起的,并且当烧结温度过低或保持时间不足时发生暗流,导致产品性能低或极小的收缩。本文研究了烧结温度对YAG多孔陶瓷性能的影响。结果表明,成分的烧制温度变化并燃烧了不同样品的相同烧结过程和添加剂含量。提供的SiO_2内容由于烧结而往往会增加。温度对烧结后样品机械性能的影响是显着的。原料包括60wt%的YAG,10wt%CNO,10wt%SiO_2和20wt%可溶性淀粉。成型和烧结在20MPa压力下进行10分钟,分别在1500℃下进行2小时。样品的孔隙率和抗压强度分别为42.2%和5.8MPa。样品的外形保持完整,并且示出了改进的孔隙微观结构。

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