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A New Internal Magnetic Field Assisted Machining Process Using a Magnetic Machining Jig- Machining Characteristics of Inside Finishing of a SUS304 Stainless Steel Tube

机译:一种新的内部磁场辅助加工过程,使用SUS304不锈钢管内整理的磁性加工型夹具加工特性

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This paper proposes a new magnetic field assisted machining process using a magnetic machining jig (permanent magnet tool) to finish the internal surface of thick tubing 5~30 mm in thickness. Because the magnetic machining jig consists of permanent magnets, it can generate a higher magnetic force (finishing force) than conventional magnetic abrasives, and makes possible the internal finishing of thick non-ferromagnetic tubing. First, the principle and the feature of this process were examined. It was compared that the difference of the mechanism of using the conventional magnetic abrasives and magnetic machining jig (magnet tool) was clarified. Next, a processing unit and magnetic machining jig were made, and the processing unit was set on a lathe machine. An experiment was performed on a thick SUS304 stainless steel tubing 5 mm in thickness. In this study, it was clarified that this processing method can improve the roundness of the inside tubing while improving the surface roughness. The results showed that the initial surface roughness of 6.5 μm Ra can be improved to 0.06 μm Ra, and the roundness of the inside tubing can be improved from 187 μm to 89 μm.
机译:本文采用了一种新的磁场辅助加工工艺,使用磁性加工夹具(永磁体工具)来完成厚度厚管5〜30mm的内表面。因为磁性加工夹具由永磁体组成,所以它可以产生比传统的磁力研磨剂更高的磁力(整理力),并且可以使厚的非铁磁管的内部精加工。首先,检查该过程的原理和特征。比较了使用常规磁磨料和磁性加工夹具(磁铁工具)的机理的差异被阐明。接下来,进行处理单元和磁性加工夹具,并将处理单元设置在车床机上。在厚度厚的SUS304不锈钢管中进行实验。在这项研究中,澄清了该处理方法可以改善内部管道的圆度,同时改善表面粗糙度。结果表明,6.5μmRa的初始表面粗糙度可以提高到0.06μm的Ra,内部管道的圆度可以从187μm到89μm提高。

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