首页> 外文期刊>Advanced Powder Technology: The internation Journal of the Society of Powder Technology, Japan >The influence of dielectric media on nano-structured tungsten carbide (WC) powder synthesized by electro-discharge process
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The influence of dielectric media on nano-structured tungsten carbide (WC) powder synthesized by electro-discharge process

机译:电介质对电火花合成纳米结构碳化钨粉的影响

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In this investigation, nano-structured tungsten carbide (WC) powder has been synthesized using electro discharge process with tungsten and graphite electrodes submerged in two different dielectrics (kerosene and deionized water). The effect of input parameters (current and pulse duration) in the electro discharge process on the amount of powder production, structure, phases, morphological properties, and size distribution of particles were studied. The obtained results illustrated that, in the majority of setup settings, the amount of nano-structured powder in the kerosene was noticed to be approximately four times greater than the amount of powder produced in deionized water dielectric. Furthermore, it was observed that the particle size in kerosene dielectric (10-30 nm) was smaller than the particle size in deionized water (30-80 nm). According to XRD patterns, WC_(1-x) phase in kerosene and W2C phase in deionized water were the main phases of synthesized powder. After producing WC_(1-x) and W2C, both powders were put into the carburization operation under the Nitrogen gas to produce WC phase.
机译:在这项研究中,纳米结构的碳化钨(WC)粉末是通过放电工艺合成的,钨和石墨电极浸没在两种不同的电介质(煤油和去离子水)中。研究了放电过程中输入参数(电流和脉冲持续时间)对粉末产量,结构,相,形态学性质和颗粒尺寸分布的影响。获得的结果表明,在大多数设置设置中,发现煤油中的纳米结构粉末的量大约是去离子水电介质中产生的粉末量的四倍。此外,观察到煤油电介质(10-30nm)中的粒径小于去离子水(30-80nm)中的粒径。根据XRD图谱,煤油中的WC_(1-x)相和去离子水中的W2C相是合成粉末的主要相。产生WC_(1-x)和W2C之后,将两种粉末都在氮气下进行渗碳操作以产生WC相。

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