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Comparative Study of FeCl 3 and CuCl 2 on Geometrical Features Using Photochemical Machining of Monel 400

机译:FeCl 3 和CuCl 2 在Monel 400的光化学加工中的几何特征比较研究

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In this study, Monel 400 was machined using etchants, like ferric chloride (FeCl3) and cupric chloride (CuCl2) at different temperatures, concentration and type of geometry (viz. circular, hexagonal, square, rectangular and triangular). The study focuses on the comparative impact of input process parameters in perspective of depth of etch, undercut, and weight loss. Comparative study of FeCl3 and CuCl2 determines that the overall performance is better for ferric chloride etchant. The undercut observed in FeCl3 was more than CuCl2, but the better geometrical accuracy found with CuCl2 etchant solution. Type of geometries responsible for the depth of etch and weight loss. Triangular geometry shows higher weight loss and depth of etch. Higher weight loss and depth of etch is observed with FeCl3 than CuCl2 etchant. The weight loss and depth of etch increases from 0.0504g to 0.0737g and 0.0436μm to 0.1547μm respectively for FeCl3 for circular, hexagonal, square, rectangular and triangular shapes. Similarly, for CuCl2 these values are 0.0386g to 0.0686g and 0.0236μm to 0.117μm respectively.
机译:在这项研究中,Monel 400使用蚀刻剂(如氯化铁(FeCl3)和氯化铜(CuCl2))在不同的温度,浓度和几何类型(即圆形,六边形,正方形,矩形和三角形)下加工而成。该研究着重于蚀刻深度,底切和重量减轻方面的输入工艺参数的比较影响。 FeCl3和CuCl2的比较研究确定了氯化铁蚀刻剂的整体性能更好。 FeCl3中观察到的咬边大于CuCl2,但使用CuCl2蚀刻剂溶液发现更好的几何精度。造成蚀刻深度和重量损失的几何类型。三角形的几何形状显示出更高的重量损失和蚀刻深度。用FeCl 3观察到比CuCl 2蚀刻剂具有更高的重量损失和蚀刻深度。对于圆形,六边形,正方形,矩形和三角形的FeCl3,重量损失和蚀刻深度分别从0.0504g增加到0.0737g和0.0436μm增加到0.1547μm。同样,对于CuCl2,这些值分别为0.0386g至0.0686g和0.0236μm至0.117μm。

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