Discussion on Roundness of Non-Ferromagnetic Tube by Interior Magnetic Abrasive Finishing Using a Magnetic Machining Jig

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Abstract:

In this study, mainly researching the improvement of roundness of thick SUS304 stainless steel tube by interior magnetic abrasive finishing using a magnetic machining jig. The influence of reciprocating velocity of magnetic pole unit on the improvement of roundness of interior surface was studied by establishing the dynamic equation of magnetic machining jig. Experimental results showed that low reciprocating velocity of magnetic pole unit is conducive to the improvement of interior roundness of the thick SUS304 stainless steel tube. The reason is that the low reciprocating velocity of magnetic pole unit reduces the pitch of the helical motion and can produce greater finishing force of the magnetic machining jig.

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Periodical:

Materials Science Forum (Volume 1018)

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105-110

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January 2021

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© 2021 Trans Tech Publications Ltd. All Rights Reserved

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[1] Yanhua Zou, T. Shimura, Mechanism of a Magneticd Field Assited Finishing Process Using a Magnetic Tool and Magnetic Particles, Key Engineering Materials 339 (2007) 106-113.

DOI: 10.4028/www.scientific.net/kem.339.106

Google Scholar

[2] Y.Zou, T. Shimura, A Study on the Magnetic Field Assisted Machining Process for Interior Finishing using a Magnetic Machining Jig, Key Engineering Materials 257-258 (2004) 505-510.

DOI: 10.4028/www.scientific.net/kem.257-258.505

Google Scholar

[3] Y.Zou, T. Shimura, Study on Interior Magnetic Field Assisted Machining Process using a Magnetic Machining Jig, Key Engineering Materials 291-292 (2005) 281-286.

DOI: 10.4028/www.scientific.net/kem.291-292.281

Google Scholar

[4] Yanhua Zou, JiangnanLIU, Takeo Shimura, Study on Interior Magnetic Field Assisted Machining Process using a Magnetic Machining Jig for Thick Non-Ferromagnetic Tube, Advanced Materials Research, 325 (2011) 530-535.

DOI: 10.4028/www.scientific.net/amr.325.530

Google Scholar

[5] T. Shimura, K.Takazawa, E.Hatano, T.Aizawa, study on magnetic abrasive process-finishing characteristics, Bull.JSPE 18 (1984) 347.

Google Scholar

[6] Yamaguchi H, Shinmura T, Interior Finishing Process for Alumina Ceramic Components by a Magnetic Field Assisted Finishing Process, Precis Eng 28(2004) 135-142.

DOI: 10.1016/j.precisioneng.2003.07.001

Google Scholar

[7] Yamaguchi H, Shinmura T, Interior Finishing of Capillary Tubes by Magnetic Abrasive Finishing Using a Multiple Pole-Tip System, Precis Eng 36(2012) 510-516.

DOI: 10.1016/j.precisioneng.2012.01.006

Google Scholar

[8] Hitomi Yamaguchi, Takeo Shinmura, Study of the surface modification resulting from an interior magnetic abrasive finishing process, Wear 225–229 1999 246–255.

DOI: 10.1016/s0043-1648(99)00013-7

Google Scholar