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Effect of print path process on sintering behavior and thermal shock resistance of Al2O3 ceramics fabricated by 3D inkjet-printing

机译:印刷路径工艺对3D喷墨印刷制造的Al2O3陶瓷烧结行为和热抗震的影响

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摘要

In this study, Al2O3 ceramics parts were printed by inkjet printing technology with different printed paths distributions, such as the spiral printed path, round trip straight printed path and ladder lap printed path. The influences of inkjet printed paths on sintering performance and thermal shock resistance of the Al2O3 green bodies were investigated. The sintering performance of the green sample with the ladder lap printed path is the highest among the three samples. Sintered at 1550 degrees C, its bulk density and porosity reached 3.73 g/cm(3) and 10.80%, respectively. In addition, the thermal shock resistance of the sample with the step print path reached 11 times. The results suggest that the optimization of the printed path provides an effective way to print 3D ceramics with good performances through 3D inkjet-printing technology.
机译:在本研究中,通过喷墨印刷技术用不同的印刷路径分布印刷Al2O3陶瓷部件,例如螺旋印刷路径,往返直接印刷路径和梯子圈印刷路径。 研究了喷墨印刷路径对Al2O3生坯的烧结性能和热抗冲击性的影响。 具有梯形圈印刷路径的绿色样品的烧结性能是三个样品中最高的。 烧结在1550℃,其堆积密度和孔隙率分别达到3.73g / cm(3)和10.80%。 另外,样品的热抗冲击性与步骤打印路径达到11倍。 结果表明,印刷路径的优化提供了通过3D喷墨打印技术的良好性能打印3D陶瓷的有效方法。

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