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首页> 外文期刊>Journal of Ceramic Science and Technology >Additive Manufacturing of Metal-Ceramic-Composites by Thermoplastic 3D-Printing (3DTP)
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Additive Manufacturing of Metal-Ceramic-Composites by Thermoplastic 3D-Printing (3DTP)

机译:热塑性3D打印(3DTP)通过金属陶瓷复合材料的添加剂制造(3DTP)

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摘要

In our new approach - thermoplastic 3D printing (3DTP) - high-filled ceramic and metal feedstocks based on thermoplastic binder systems were used to produce metal-ceramic-composites by means of additive manufacturing (AM). The developed AM method has some outstanding advantages compared to other methods. First, the portfolio of applicable materials is not limited. Second, it works almost independently of the properties of the dispersed material.The application of thermoplastic 3D printing with two components is in principle demonstrated with stainless-steel-zirco-nia composites. Different feedstocks with high powder content up to 50 vol% were prepared. The main challenge was the adjustment of the shrinkage behavior for the different materials, which could be achieved by high-energy milling and the adjustment of the powder content within the metal feedstock. The adapted additive manufacturing method of thermoplastic 3D printing (3DTP) offers new prospects for the fabrication of multi-material components. This AM method will be applicable not only for steel-zirconia composites but also for any other combinations of materials that can be processed to a paraffin-based thermoplastic feedstock and co-sintered.
机译:在我们的新方法中 - 热塑性3D打印(3DTP) - 基于热塑性粘合剂系统的高填充陶瓷和金属原料通过添加剂制造(AM)生产金属陶瓷复合材料。与其他方法相比,发达的AM方法具有一些出色的优势。首先,适用材料的产品组合不受限制。其次,它几乎独立地独立于分散材料的性质。具有两个部件的热塑性3D印刷的应用原则上用不锈钢 - 氧化锆 - NIA复合材料证明。制备具有高达50体积%的高粉末含量的不同原料。主要挑战是调整不同材料的收缩行为,这可以通过高能铣削和金属原料内的粉末含量的调节来实现。适应的热塑性3D打印的添加剂制造方法(3DTP)为制造多材料部件提供了新的前景。该方法不仅适用于钢 - 氧化锆复合材料,而且还可用于任何其他可以加工到基于石蜡的热塑性原料和共烧结的材料的组合。

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