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Effect of different active screen hole sizes on the surface characteristic of plasma nitrided steel

机译:有源筛孔尺寸对等离子渗氮钢表面特性的影响

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Active screen plasma nitriding (ASPN) was performed on tempered 42CrMo4 low alloy steel samples. The effects of two technological parameters, namely 1) the hole size of the screen and 2) the open area ratio were investigated on the properties of the developed nitride layer. Scanning electron microscopy (SEM), atomic force microscopy (AFM) and Vickers microhardness testing were used for the characterization of the surface. The thickness of the nitride layer, the microhardness and the length of the nitride diffusion zone and surface areal parameters like surface roughness, skewness, grain diameter and area were measured and correlated with the screen hole size and open area ratio. It was found that these two major technological parameters influence different aspects of the developed nitride layer. The layer thickness and surface skewness (connected to either a balanced surface with zero skewness or the appearance of hill-like complex structures with positive skewness) is more sensitive to the open area ratio, while the surface roughness is primarily a function of the hole size. The maximum surface hardness, the length of the nitride diffusion zone or the size (diameter and surface area) of the nitride grains did not show a strong correlation with either of these two parameters.
机译:在回火的42CrMo4低合金钢样品上进行了主动筛分等离子体氮化(ASPN)。研究了两个工艺参数,即1)筛孔尺寸和2)开孔率对显影氮化层性能的影响。使用扫描电子显微镜(SEM),原子力显微镜(AFM)和维氏显微硬度测试来表征表面。测量氮化物层的厚度,显微硬度和氮化物扩散区的长度以及表面面积参数,例如表面粗糙度,偏度,晶粒直径和面积,并将其与筛孔尺寸和开口率相关。发现这两个主要技术参数影响所形成的氮化物层的不同方面。层厚和表面偏斜度(连接到具有零偏斜度的平衡表面或具有正偏斜度的山形复杂结构的外观)对开孔率比更为敏感,而表面粗糙度主要是孔尺寸的函数。最大表面硬度,氮化物扩散区的长度或氮化物晶粒的尺寸(直径和表面积)与这两个参数中的任何一个都没有显示出很强的相关性。

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