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首页> 外文期刊>Materials Characterization >Effect of debinding temperature under an argon atmosphere on the microstructure and properties of 3D-printed alumina ceramics
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Effect of debinding temperature under an argon atmosphere on the microstructure and properties of 3D-printed alumina ceramics

机译:氩气氛下促进温度对3D印刷氧化铝陶瓷微观结构和性能的影响

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Debinding at different temperatures under an argon atmosphere, combined with sintering, was used to obtain alumina ceramics fabricated from stereolithography-based 3D printing. The effect of debinding temperature under an argon atmosphere on the microstructure, physical, and mechanical properties were investigated. The results showed that the alumina ceramics had a layered structure, and the interlayer spacing first increased and then decreased with the debinding temperature. Some carbon residue was observed when debinding was performed between 350 and 450 degrees C, and no residual carbon was observed when the debinding temperature was higher than 500 degrees C. The shrinkage in the Z direction was much greater than that of the X or Y directions due to layer-by-layer forming mode. There was a slight fluctuation in mechanical properties such as flexural strength (18.9-22.3 MPa), Vickers hardness (110.6-173.7 HV), and nano-indentation hardness (16.9-22.6 GPa). The optimal debinding temperature was 500 degrees C under an argon atmosphere, which displayed a shrinkage of 2.3% in the X direction, 1.9% in the Y direction, and 3.4% in the Z direction. At this temperature, the flexural strength of the ceramics was 22.3 MPa and the open porosity of the ceramics was 35.6%.
机译:在氩气氛下的不同温度下逐渐加入烧结,用于获得由立体化的3D印刷制造的氧化铝陶瓷。研究了在微观结构,物理和机械性质下氩气氛下析出温度的影响。结果表明,氧化铝陶瓷具有分层结构,并且间隔间距首先增加,然后随着脱脂温度降低。当在350和450℃下进行脱屑时,观察到一些碳残留物,并且当脱染温度高于500℃时,没有观察到残留的碳。Z方向的收缩远大于x或y方向的收缩由于逐层形成模式。机械性能(如弯曲强度)(18.9-22.3MPa),维氏硬度(110.6-173.7 HV)和纳米缩进硬度(16.9-22.6GPa),略有波动。在氩气氛下最佳的脱脂温度为500摄氏度,在X方向上显示2.3%的收缩,在y方向上为1.9%,Z方向为3.4%。在这种温度下,陶瓷的弯曲强度为22.3MPa,陶瓷的开放孔隙率为35.6%。

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