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A Review of Metal Injection Molding- Process, Optimization, Defects and Microwave Sintering on WC-Co Cemented Carbide

机译:WC-Co水泥碳化物上金属注塑成型,优化,缺陷和微波烧结综述

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This article is about a review of optimization of metal injection molding and microwave sintering process on tungsten cemented carbide produce by metal injection molding process. In this study, the process parameters for the metal injection molding were optimized using Taguchi method. Taguchi methods have been used widely in engineering analysis to optimize the performance characteristics through the setting of design parameters. Microwave sintering is a process generally being used in powder metallurgy over the conventional method. It has typical characteristics such as accelerated heating rate, shortened processing cycle, high energy efficiency, fine and homogeneous microstructure, and enhanced mechanical performance, which is beneficial to prepare nanostructured cemented carbides in metal injection molding. Besides that, with an advanced and promising technology, metal injection molding has proven that can produce cemented carbides. Cemented tungsten carbide hard metal has been used widely in various applications due to its desirable combination of mechanical, physical, and chemical properties. Moreover, areas of study include common defects in metal injection molding and application of microwave sintering itself has been discussed in this paper.
机译:本文是通过金属注射成型工艺对钨硬质合金生产的金属注射成型和微波烧结过程的优化综述。在该研究中,使用Taguchi方法优化了金属注射成型的工艺参数。 Taguchi方法已广泛用于工程分析,以通过设计参数的设置优化性能特征。微波烧结是通常在常规方法上用于粉末冶金的过程。它具有典型的特性,例如加速加热速率,缩短加工循环,高能量效率,细均匀的微观结构,以及提高的机械性能,这有利于制备金属注射成型中的纳米结构硬质合金。除此之外,通过先进和有前途的技术,金属注塑成型已经证明可以生产碳化物碳化物。由于其理想的机械,物理和化学性能组合,巩固碳化钨硬金属已广泛使用。此外,研究领域包括金属注射成型中的常见缺陷,并在本文中讨论了微波烧结本身。

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