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DEVELOPMENT OF ADVANCED ALLOYING PROCESS USING MICRO-EDM DEPOSITION PROCESS

机译:使用微EDM沉积过程开发先进的合金化工艺

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The development of an advanced alloying process using Micro-Electrical Discharge Machining Deposition is described in the present paper. The new process uses a micro-sized bimetal tool electrode, which is composed of two halves; each part made of a different metal. The alloying process of the two metals occurs during the deposition process previously proposed by the authors, which can create 3-dimensional micro-sized objects. The quality of alloyed metal was verified using X-ray analysis. In the present experiment the two metals used are YNi-1 (nickel alloy used in TIG welding) and S45C (medium carbon steel). EPMA results of the obtained deposit show that the nickel and iron distribution in the deposit is uniform when the tool electrode spins during the deposition process. Also, it was found that the chemical composition of the main metal in the deposited object is proportional to the cross sectional area in the bi-metal electrode section. Therefore, not only the deposition process takes place but also the chemical composition of the deposit can be simultaneously controlled using this process.
机译:本文描述了使用微电路放电加工沉积的先进合金化工艺的开发。新工艺使用微型双型刀具电极,由两半组成;由不同的金属制成的每个部分。两种金属的合金化过程发生在先前由作者提出的沉积过程中,这可以产生三维微尺寸对象。使用X射线分析验证合金金属的质量。在本实验中,所用的两种金属是YNI-1(镍焊中使用的镍合金)和S45C(中碳钢)。所得沉积物的EPMA结果表明,当沉积过程中旋转电极旋转时,沉积物中的镍和铁分布是均匀的。而且,发现沉积物体中的主要金属的化学组成与双金属电极部分中的横截面积成比例。因此,不仅可以使用该方法可以同时控制沉积过程而且还可以同时控制沉积物的化学成分。

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