By Yingxue Yao (Editor), Xipeng Xu (Editor), Dunwen Zuo (Editor)

ISBN-10: 0878493964

ISBN-13: 9780878493968

This assortment includes a hundred and forty four papers which have been rigorously chosen from the over three hundred papers submitted for the needs of this specified quantity. the entire papers have been subjected to peer-review via not less than professional referees. The papers have been chosen at the foundation in their caliber and their relevance to the subject. the ensuing quantity offers readers with the latest advances within the box of machining and complex production expertise. it is going to accordingly be important to construction and learn engineers, examine scholars and lecturers operating within the box.

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Additional info for Advances in Machining & Manufacturing Technology IX: Selected Papers from the 9th Conference on Machining & Advanced Manufacturing Technology in China August 16– 19, 2007, Harbin, China

Sample text

Weck, S. Fischer and M. 145-148. [4] X. E. DeVor and et al: J. Manuf. Sci. and Eng. 666-678. [5] X. B. Jun, and et al: ASME Int. Mech. Eng. Congr. Expo. (Anaheim California, November 13-19, 2004). R. R. C. 61-72. M. B. Oxley: Inst. Phy. Conf. 389-396. [8] Y. Fruukawa and N. 113-116. [9] K. N. Melkote: Int. J. Mech. , (2006). R. H. Cook: Eng. Frac. 31-48. N. Zorev: ASME Proc. Conf. Int. Res. Prod. Eng. (New York, USA, 1963). Key Engineering Materials Vols. com Keywords: Powder mixed EDM; Plasma; Electrical tree; Mechanism; Powder Abstract.

3 Comparison of typical cross-section of chips produced in tests Key Engineering Materials Vols. 36mm/rev, by T1 ▲=Steady state chip,■=Saw-tooth chip. 5 illustrated the effect of cutting speed on chip deformation. It could be observed that cutting speed was the most contributive factor in forming saw-tooth chip. 6 illustrated the effect of depth of cut and feed on deformation degree of chip. It could be observed that when cutting speed was low, the feed influenced deformation coefficient ξ more significantly than depth of cut, and the lower the feed was, the larger the deformation coefficient ξ would be.

R. Shankar and et al: Mater. Sci. , Vols. 379. W. Y. Lee and H. C. Sin: Int. J. Mach. , Vol. 1507. Key Engineering Materials Vols. cn Keywords: Orthogonal turning, Wheel steel, Chip formation, Tool geometry, Cutting parameter Abstract. The chip formation and morphology are definitely affected by tool geometry and cutting parameters such as cutting speed, feed rate, and depth of cutting. An experiment investigation was presented to study the influence of tool geometry on chip morphology, and to clarify the effect of different cutting parameters on chip deformation in orthogonal turning the wheel steel.

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Advances in Machining & Manufacturing Technology IX: Selected Papers from the 9th Conference on Machining & Advanced Manufacturing Technology in China August 16– 19, 2007, Harbin, China by Yingxue Yao (Editor), Xipeng Xu (Editor), Dunwen Zuo (Editor)


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