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Surface integrity in wire-EDM tangential turning of in situ hybrid metal matrix composite A359/B 4C/Al 2O 3

机译:原位杂化金属基复合材料A359 / B 4 C / Al 2 O 3 < / sub>

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In this work, wire electric discharge turning, a novel and unconventional technique, was used for the turning operation of a newly developed hybrid metal matrix composite of aluminum (A359/B_(4)C/Al_(2)O_(3)) fabricated in-house by electromagnetic stir casting. The objective of the work was to examine the effect of rotational speed on the elements of surface integrity. It involved the measurement of various parameters such as the roughness ( Ra , Rq , Rz ), morphology of the recast layers, microhardness variation, and the formation of residual stresses on the machined surface and in the subsurface during the operation. The quality of the turned surface was examined by 3D surface visualization images and surface topographical details obtained by an Olympus LEXT OLS 3100 laser confocal microscope. Further, surface study at the microscopic level was done by field-effect scanning electron microscopy (FE-SEM) images to examine the surface defects. The measurement results revealed a successful turning operation, which showed a dull, textured surface without any specific texture or pattern on the machined surface. The surface had many peaks and valleys with small-scale of defects such as surface porosity. However, these defects were negligible and resulted in a smooth surface finish at high rotational speeds.
机译:在这项工作中,采用了一种新颖的,非常规的技术进行电火花线切割车削加工,以制造新开发的铝杂化金属基复合材料(A359 / B_(4)C / Al_(2)O_(3)在内部通过电磁搅拌铸造。这项工作的目的是研究转速对表面完整性要素的影响。它涉及各种参数的测量,例如粗糙度(Ra,Rq,Rz),重铸层的形态,显微硬度变化以及操作过程中机加工表面和次表面上残余应力的形成。通过3D表面可视化图像和Olympus LEXT OLS 3100激光共聚焦显微镜获得的表面形貌细节来检查车削表面的质量。此外,通过场效应扫描电子显微镜(FE-SEM)图像在微观水平上进行了表面研究,以检查表面缺陷。测量结果表明,车削操作成功,结果表明加工表面无光泽,无纹理,没有任何特定纹理或图案。该表面具有许多峰和谷,并且具有小规模的缺陷,例如表面孔隙率。但是,这些缺陷可以忽略不计,并在高转速下产生了光滑的表面光洁度。

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