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Enhancement Of Erosion Resistance On Aisih13 Tool Steel Byoxynitriding Treatment

机译:氧氮化处理提高Aisih13工具钢的耐蚀性

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In order to effectively improve erosion resistance and evaluate the effects of an oxy layer on AISI H13 tool steel after the oxynitriding process, this study used three different nitriding surface treatments, namely oxynitriding process 1 (using air), oxynitriding process 2 (using steam) and normal gas nitride. To evaluate the effects of microstructure and the erosion resistance of AISI H13 tool steel after different nitride processes, evaluated micro hardness, erosion tests and SEM microstructure inspections were conducted. Experimental results showed that the oxide layer can protect and improve the aluminum erosion for AISI H13 tool steel. Erosion tests of 2 and 4h for oxynitriding process 1 could produce a thicker and complex oxide layer, which has higher hardness (HV 1021.9) and optimal weight loss (0.16%). This procedure is proven to effectively reduce the ratio of Al-Fe-Si compounds during the A380 alloy erosion test.
机译:为了有效提高耐蚀性并评估氧氮化工艺后AISI H13工具钢上的氧化层的影响,本研究使用了三种不同的氮化表面处理,即氧氮化工艺1(使用空气),氧氮化工艺2(使用蒸汽)。和普通的氮化气体。为了评估不同氮化工艺后AISI H13工具钢的显微组织和耐蚀性,进行了评估的显微硬度,腐蚀试验和SEM显微组织检查。实验结果表明,氧化层可以保护和改善AISI H13工具钢的铝腐蚀。氧氮化工艺1的2和4h侵蚀试验可以产生较厚且复杂的氧化物层,该层具有较高的硬度(HV 1021.9)和最佳的重量损失(0.16%)。事实证明,该程序可有效降低A380合金腐蚀试验中Al-Fe-Si化合物的比例。

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