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Experimental Investigation for the Hardness of Castings Produced by Using ZCast Process

机译:采用Zcast过程生产的铸件硬度的实验研究

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ZCast direct metal casting process is one of the important techniques of additive manufacturing which is used for printing the shell moulds for casting of non-ferrous materials. In the present work, an attempt was made to experimentally investigate the effect of different control factors on the hardness of castings produced using this ZCast process. Taguchi's design of experimental method was used to perform the experimentation. Aluminium, brass and copper alloy castings were obtained in three different sizes using 3D printed shell moulds of different wall thicknesses. The obtained results were analysed using signal-to-noise ratio and analysis-of-variance. Analysis showed that the hardness depended on the casting material and 3D printed shell mould wall thickness. Cooling curve analysis and microstructure analysis of casting obtained with mould of different thickness were also performed. Paper revealed the potential suitability of copper, brass and aluminium for producing casting using ZCast process. The present research could provide valuable data of hardness of rapid castings of different material and might confirm the effectiveness and applicability of ZCast process in foundry industry.
机译:Zcast直接金属铸造方法是添加剂制造的重要技术之一,用于印刷壳体模具以浇铸有色金属材料。在目前的工作中,试图通过该ZCAST过程实验研究不同控制因素对使用该ZCAST过程产生的铸件硬度的影响。 Taguchi的实验方法设计用于进行实验。使用不同壁厚的3D印刷壳模具,在三种不同尺寸中获得铝,黄铜和铜合金铸件。使用信噪比和方差分析分析所得结果。分析表明,硬度取决于铸造材料和3D印刷壳模壁厚度。还进行了用不同厚度模具获得的冷却曲线分析和微观结构分析。纸张揭示了铜,黄铜和铝的潜在适用性,用于使用Zcast工艺生产铸造。本研究可以提供不同材料快速铸件硬度的有价值的数据,并可确认Zcast过程在铸造工业中的有效性和适用性。

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