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Experimental data on surface roughness and force feedback analysis in friction stir processed AA7075 – T651 aluminium metal composites

机译:搅拌摩擦处理的AA7075 – T651铝金属复合材料的表面粗糙度和力反馈分析的实验数据

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摘要

Friction Stir Processing (FSP) is a surface modification technique used to enhance the mechanical properties and improve the surface integrity of the processed material. In the present data collection, aluminium alloy 7075-T651 was studied under different reinforcement conditions. Microchannel of dimension 3.5 mm depth and 2.0 mm width were machined on the aluminium plates to accommodate the particles. The process was conducted at different rotational speed of 1200 rpm, 1500 rpm and 1800 rpm with constant processing speed of 20 mm/min, plunge depth of 0.3 mm and tilt angles of 3°. Double passes were achieved for each parameter with 100% inter-pass overlap. A cylindrical tapped, AISI H13 steel tool with shoulder diameter 18 mm, pin length of 5.0 mm, pin diameter 5 mm at the top and 6 mm at the end with 10° taper was used during friction stir process. Surface integrity analysis was carried out with the aid of mitutoyo surftest SJ-210 surface roughness tester (SRT). The analysis was carried out at three different points on a parameter for a particular workpiece and the average reading for each parameter is calculated in order to ensure precision of the measurements and the coverage surface area. The following surface roughness parameters were measured and recorded, arithmetical mean roughness value (Ra), maximum height (Ry), mean roughness depth (Rz) and root mean square roughness (Rq). Force feedback from the machine data for selected reinforcement particles with respected to processing times and x-positions are also presented.
机译:搅拌摩擦加工(FSP)是一种表面改性技术,用于增强机械性能并改善加工材料的表面完整性。在本数据收集中,研究了7075-T651铝合金在不同加固条件下的情况。在铝板上加工了尺寸为3.5毫米深度和2.0毫米宽度的微通道,以容纳颗粒。该过程以1200rpm,1500rpm和1800rpm的不同转速进行,恒定加工速度为20mm / min,切入深度为0.3mm,倾斜角为3°。对于每个参数,两次通过均具有100%的通过间重叠。在摩擦搅拌过程中,使用了AISI H13圆柱形攻丝钢工具,其肩部直径为18毫米,销钉长度为5.0毫米,顶部销钉直径为5毫米,末端销钉直径为6毫米,锥度为10°。表面完整性分析是借助三丰SJ-210表面粗糙度测试仪(SRT)进行的。在特定工件的参数上的三个不同点进行分析,并计算每个参数的平均读数,以确保测量和覆盖表面积的精度。测量并记录以下表面粗糙度参数:算术平均粗糙度值(Ra),最大高度(Ry),平均粗糙度深度(Rz)和均方根粗糙度(Rq)。还显示了来自机器数据的所选补强颗粒相对于处理时间和x位置的力反馈。

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