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首页> 外文期刊>Progress in Artificial Intelligence >Effect of sintering temperature in argon atmosphere on microstructure and properties of 3D printed alumina ceramic cores
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Effect of sintering temperature in argon atmosphere on microstructure and properties of 3D printed alumina ceramic cores

机译:烧结温度在氩气氛下对3D印刷氧化铝陶瓷芯的组织和性能的影响

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Alumina ceramics with different sintering temperatures in argon atmosphere were obtained using stereolithography-based 3D printing. The effects of sintering temperature on microstructure and physical and mechanical properties were investigated. The results show that the average particle size, shrinkage, bulk density, crystallite size, flexural strength, Vickers hardness, and nanoindentation hardness increased with the increase in sintering temperature, whereas the open porosity decreased with increasing sintering temperature. No change was observed in phase composition, chemical bond, atomic ratio, and surface roughness. For the sintered samples, the shrinkage in Z direction is much greater than that in X or Y direction. The optimum sintering temperature in argon atmosphere is 1350 degrees C with a shrinkage of 3.0%, 3.2%, and 5.5% in X, Y, and Z directions, respectively, flexural strength of 26.7 MPa, Vickers hardness of 198.5 HV, nanoindentation hardness of 33.1 GPa, bulk density of 2.5 g/cm3, and open porosity of 33.8%. The optimum sintering temperature was 70 degrees C higher than that sintering in air atmosphere when achieved the similar properties.
机译:使用立体基石的3D印刷获得氩气氛中具有不同烧结温度的氧化铝陶瓷。研究了研究烧结温度对微观结构和物理和物理性能的影响。结果表明,随着烧结温度的增加,平均粒度,收缩,堆积密度,微晶尺寸,弯曲强度,维氏硬度和纳米肾硬化和纳米狭窄的硬度增加,而随着烧结温度的增加,开孔率降低。在相组成,化学键,原子比和表面粗糙度下没有观察到没有变化。对于烧结样品,Z方向的收缩远大于X或Y方向的收缩。氩气氛中的最佳烧结温度为1350℃,x,y和z方向的收缩为3.0%,3.2%和5.5%,弯曲强度为26.7mPa,维氏硬度为198.5 HV,纳米狭窄硬度33.1 GPA,堆积密度为2.5克/厘米,开放孔隙率为33.8%。当达到类似的性质时,最佳烧结温度高于空气气氛中的烧结高70℃。

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