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Pengaruh Rasio Laju Alir Gas Nitrogen-Hydrogen Serta Gas Pressure pada RF Plasma Nitriding terhadap Surface Hardness Spesimen SUS304

机译:氮氢气体流量比和气压对射频等离子体渗氮对SUS304试样表面硬度的影响

摘要

RF Plasma nitriding was done on the specimen SUS304. This research had aim to obtain a high surface hardness value as a result of flow rate ratio of Nitrogen-Hydrogen. The experimental research consisted of three models. Each experimental model used varying parameters and constant parameters. Micro Vickers Hardness test was used for testing each specimen of the experimental models. The varying parameters of first experimental model were times of plasma nitriding, ie, 1 hour, 2 hours, 4 hours and 8 hours. The constant parameters were RF-Power Voltage = 250 Volts, DC-Bias Voltage = 500 Volts, N2= 100 (ml/min), H2= 20 (ml/min), Gas pressure (P) = 70 Pa and Heater Temperature (T) = 420oC. The second experimental model contained three varying parameters of nitrogen gas pressure ie, 50 Pa, 60 Pa and 70 Pa. The constant parameters of second experimental model were time of plasma nitriding (t) = 8 Hours, RF-Power Voltage = 250 Volts, Heater Temperature (T) = 420oC, N2 = 140 (ml/min), H2= 20(ml/min). The first and second experimental models had same configuration. The third experimental model used three variations of nitrogen flow rate, ie, 140 (ml/ min), 160 (ml/min), 180 (ml/min). The constant parameters were time of plasma nitriding (t) = 4 hours, RF-Voltage = 250 volts, The Heater temperature (T) = 420oC; H2 = 20 (ml/min), DC-Bias Voltage = 500 Volts, the gas pressure (P) = 60 Pa. The configuration of third experimental model was different with the configurations in first and second experimental models. Surface hardness Values of first experimental model were 379 HV, 348 HV, 474 HV and 387 HV. Surface hardness values of second experimental model were 586 HV, 607HV, 249 HV. Surface hardness values of third experimental model were 313 HV, 574 HV, and 677 HV. from the results were known that nitrogen-hydrogen flow rate ratio into vacuum chamber and gas pressure influenced the surface hardness of SUS304 specimen. The highest surface hardness value of 677 HV was happened at gas pressure of 60 Pa, nitrogen flow rate of 180 (ml/min) and hydrogen flow rate of 20(ml/min).
机译:在样品SUS304上进行了射频等离子体氮化。这项研究的目的是通过氮氢流量比获得较高的表面硬度值。实验研究包括三个模型。每个实验模型都使用变化的参数和恒定的参数。显微维氏硬度测试用于测试实验模型的每个样品。第一个实验模型的变化参数为等离子氮化时间,即1小时,2小时,4小时和8小时。恒定参数为RF电源电压= 250伏,直流偏置电压= 500伏,N2 = 100(毫升/分钟),H2 = 20(毫升/分钟),气压(P)= 70 Pa和加热器温度( T)= 420oC。第二个实验模型包含三个不同的氮气压力参数,分别为50 Pa,60 Pa和70 Pa。第二个实验模型的常数参数为等离子氮化时间(t)= 8小时,RF-电源电压= 250伏,加热器温度(T)= 420oC,N2 = 140(ml / min),H2 = 20(ml / min)。第一和第二实验模型具有相同的配置。第三个实验模型使用了三种氮气流速变化,即140(毫升/分钟),160(毫升/分钟),180(毫升/分钟)。恒定参数为等离子渗氮时间(t)= 4小时,RF电压= 250伏,加热器温度(T)= 420oC; H2 = 20(ml / min),直流偏置电压= 500伏,气压(P)= 60 Pa。第三实验模型的配置与第一和第二实验模型的配置不同。第一个实验模型的表面硬度值为379 HV,348 HV,474 HV和387 HV。第二实验模型的表面硬度值为586HV,607HV,249HV。第三实验模型的表面硬度值为313HV,574HV和677HV。从结果可知,进入真空室的氮气-氢气流量比和气压对SUS304试样的表面硬度有影响。在气压为60 Pa,氮气流量为180(ml / min)和氢气流量为20(ml / min)的情况下,发生了677 HV的最高表面硬度值。

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    Oerbandono, Tjuk;

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