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Effect of Surface Treatment on the Life of AISI H13 steel Core Pin for Die-casting

机译:表面处理对压铸AISI H13钢芯销寿命的影响

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The Effect of die surface modification on the physiochemical melt-out phenomenon was investigated. To measure the melt-out resistance more accurately, the mean depth measurement method after immersion in molten Al-alloy was proposed instead of the conventional weight change method. The validity of the mean depth method was verified by the comparison with the field service test of core-pin. The several kind of nitriding, such as gas nitriding, ion nitriding, salt-bath nitriding and TNHT™ process of PHILOS TECHNOLOGIES, INC were employed to change surface condition and their effects on melt out resistance were examined by the immersion test and the field service test of core pins. The melt-out depth was decreased with the nitriding treatments and in case of ion-nitrided specimen showed 2.8 times lower dissolution depth than as heat treated specimen. The white compound layer play a important role in the prevention of physiochemical reaction, therefore, the TNHT process, which does not form the white layer, was less effective in the view point of melt-out phenomenon only. The field test result using core-pins for producing automobile engine parts showed similar tendency with the mean depth method and this implies that the mean depth method reflects the melt-out resistance of the modified surfaces effectively.
机译:研究了模具表面改性对理化融化现象的影响。为了更准确地测量耐熔损性,提出了浸入熔融铝合金后的平均深度测量方法来代替常规的重量变化方法。通过与芯销现场服务测试的比较,验证了平均深度法的有效性。通过PHILOS TECHNOLOGIES,INC的气体渗氮,离子渗氮,盐浴渗氮和TNHT™工艺等多种渗氮方法来改变表面条件,并通过浸入测试和现场服务来检验其对耐熔体性的影响。测试核心引脚。渗氮深度随氮化处理而降低,而离子氮化试样的溶出深度比热处理试样低2.8倍。白色化合物层在防止物理化学反应中起着重要作用,因此,仅从熔解现象的角度来看,不形成白色层的TNHT工艺效果较差。使用芯销生产汽车发动机零件的现场测试结果与平均深度法显示出相似的趋势,这表明平均深度法有效地反映了改性表面的抗熔性。

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