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首页> 外文期刊>CERAMICS INTERNATIONAL >Preparation of alumina/polystyrene core-shell composite powder via phase inversion process for indirect selective laser sintering applications
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Preparation of alumina/polystyrene core-shell composite powder via phase inversion process for indirect selective laser sintering applications

机译:通过相位转化工艺制备氧化铝/聚苯乙烯核 - 壳复合粉末,用于间接选择性激光烧结应用

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摘要

Indirect selective laser sintering (SLS) is one of the promising additive manufacturing (AM) methods that can process conventionally difficult or even impossible materials such as ceramics. In this work, an innovative phase inversion technique is used to fabricate spherical alumina particles coated with a thin layer of polystyrene (PS). Then, indirect SLS is used to fabricate green parts from the 6 wt% PS coated alumina particles via a Nd:YAG laser. The assessed SLS process parameters were the scan speed, laser power, scan spacing, pulse frequency, and pulse width. The characterization of the Al2O3/PS core-shell composite particles was described using techniques including SEM (for morphology), FT-IR (for chemical bonding at the interfaces), TGA (for mass loss), and DSC (for glass transition temperature, T5). 3D green parts were then fabricated using proper process parameters as a proof of the feasibility of using SLS technique for Al2O3/PS core-shell composite powder. The results showed that using a Nd:YAG laser with less absorption by alumina and PS provides greater penetration through a powder bed. In addition, the possibility of sound connections among particles in every direction was observed due to the uniformity of the coating process in spite of a minimal amount of binder. In addition, green part density measurements show high values compared to previously reported results.
机译:间接选择性激光烧结(SLS)是有前途的添加剂制造(AM)方法之一,其可以处理常规困难甚至不可能的材料,例如陶瓷。在这项工作中,采用创新的相逆转录技术来制造涂有薄层聚苯乙烯(PS)的球形氧化铝颗粒。然后,间接SLS用于通过Nd:YAG激光从6wt%PS涂覆的氧化铝颗粒中制造绿色零件。评估的SLS工艺参数是扫描速度,激光功率,扫描间距,脉冲频率和脉冲宽度。使用包括SEM(用于形态学)的技术,FT-IR(用于在界面的化学键合),TGA(用于质量损失)和DSC(用于玻璃化转变温度, t5)。然后使用适当的工艺参数制造3D绿色零件作为使用SLS技术的Al 2 O 3 / PS核 - 壳复合粉末的可行性证明。结果表明,使用氧化铝和PS吸收不太吸收的Nd:YAG激光,通过粉末床提供更大的渗透。另外,由于涂覆方法的均匀性尽管粘合剂的均匀性,因此观察到每个方向上的颗粒中的颗粒之间的声音连接的可能性。此外,与先前报道的结果相比,绿色部分密度测量显示高值。

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