首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Copper additive manufacturing using MIM feedstock: adjustment of printing, debinding, and sintering parameters for processing dense and defectless parts
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Copper additive manufacturing using MIM feedstock: adjustment of printing, debinding, and sintering parameters for processing dense and defectless parts

机译:铜添加剂制造采用MIM原料:调整印刷,逐步和烧结参数,用于加工密集和缺陷的部件

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摘要

In the present study, an additive manufacturing process of copper using extrusion 3D printing, solvent and thermal debinding, and sintering was explored. Extrusion 3D printing of metal injection moulding (MIM) feedstock was used to fabricate green body samples. The printing process was performed with optimized parameters to achieve high green density and low surface roughness. To remove water-soluble polymer, the green body was immersed in water for solvent debinding. The interconnected voids formed during solvent debinding were favorable for removing the backbone polymer from the brown body during thermal debinding. Thermal debinding was performed up to 500 degrees C, and similar to 6.5% total weight loss of the green sample was estimated. Finally, sintering of the thermally debinded samples was performed at 950, 1000, 1030, and 1050 degrees C. The highest sintering temperature provided the highest relative density (94.5%) and isotropic shrinkage. Micro-computed tomography (mu CT) examination was performed on green samples and sintered samples, and qualitative and quantitative analysis of the porosity confirmed the benefits of optimized printing conditions for the final microstructure. This work opens up the opportunity for 3D printing and sintering to produce pure copper components with complicated shapes and high density, utilizing raw MIM feedstock as the starting material.
机译:本研究探索了一种利用挤压3D打印、溶剂和热脱脂以及烧结的铜添加剂制造工艺。金属注射成型(MIM)原料的挤出3D打印用于制造绿色体样品。采用优化参数进行印刷工艺,以获得高绿密度和低表面粗糙度。为了去除水溶性聚合物,将生坯浸入水中进行溶剂脱脂。溶剂脱脂过程中形成的相互连接的空隙有利于在热脱脂过程中从棕色体中去除主链聚合物。在高达500℃的温度下进行热脱脂,估计绿色样品的总失重率为6.5%。最后,在950、1000、1030和1050摄氏度下对热脱粘样品进行烧结。最高烧结温度提供了最高的相对密度(94.5%)和各向同性收缩。对绿色样品和烧结样品进行了显微计算机断层扫描(mu-CT)检查,对孔隙率的定性和定量分析证实了优化印刷条件对最终微观结构的好处。这项工作为3D打印和烧结提供了机会,利用MIM原料作为起始原料,生产形状复杂、密度高的纯铜元件。

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