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通过金属注射成型制备的纯铜的模流模拟与表征

Moldflow Simulation and Characterization of Pure Copper Fabricated via Metal Injection Molding.

作者信息

Bahanan Warda, Fatimah Siti, Song Hyunseok, Lee Eun Hye, Kim Dong-Ju, Yang Hae Woong, Woo Chang Hoon, Ryu Jungho, Widiantara I Putu, Ko Young Gun

机构信息

School of Materials Science and Engineering, Yeungnam University, Gyeongsan 38541, Republic of Korea.

Kyerim Metal Co., Ltd., Chilgok 39910, Republic of Korea.

出版信息

Materials (Basel). 2023 Jul 26;16(15):5252. doi: 10.3390/ma16155252.

Abstract

Metal injection molding (MIM) is a representative near-net-shape manufacturing process that fabricates advanced geometrical components for automobile and device industries. As the mechanical performance of an MIM product is affected by green-part characteristics, this work investigated the green part of pure copper processed with MIM using the injection temperature of ~180 °C and injection pressure of ~5 MPa. A computational analysis based on the Moldflow program was proposed to simulate the effectivity of the process by evaluating the confidence of fill, quality prediction, and pressure drop of three distinctive regions in the green part. The results showed that the ring and edge regions of the green parts showed localized behavior, which was related to processing parameters including the position of the gate. A microstructural observation using scanning electron microscopy and a 3D X-ray revealed that both the surface and body matrix consisted of pores with some agglomeration of micro-pores on the edges and ring part, while any critical defects, such as a crack, were not found. A microhardness analysis showed that the three regions exhibited a reasonable uniformity with a slight difference in one specific part mainly due to the localized pore agglomeration. The simulation results showed a good agreement with the microstructures and microhardness data. Thus, the present results are useful for providing guidelines for the sound condition of MIM-treated pure copper with a complex shape.

摘要

金属注射成型(MIM)是一种具有代表性的近净成形制造工艺,用于为汽车和设备行业制造先进的几何形状部件。由于MIM产品的机械性能受生坯特性影响,本研究使用约180°C的注射温度和约5MPa的注射压力,对采用MIM工艺加工的纯铜生坯进行了研究。提出了一种基于Moldflow程序的计算分析方法,通过评估生坯中三个不同区域的填充置信度、质量预测和压力降来模拟该工艺的有效性。结果表明,生坯的环形和边缘区域表现出局部行为,这与包括浇口位置在内的加工参数有关。使用扫描电子显微镜和三维X射线进行的微观结构观察表明,表面和基体均由孔隙组成,边缘和环形部分存在一些微孔团聚现象,但未发现任何关键缺陷,如裂纹。显微硬度分析表明,三个区域表现出合理的均匀性,在一个特定部位存在轻微差异,主要是由于局部孔隙团聚。模拟结果与微观结构和显微硬度数据吻合良好。因此,本研究结果有助于为形状复杂的MIM处理纯铜的良好状态提供指导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4cf3/10419387/9cda83069560/materials-16-05252-g001.jpg

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