By Yingxue Yao (Editor), Xipeng Xu (Editor), Dunwen Zuo (Editor)
This assortment includes one hundred forty four papers that have been rigorously chosen from the over three hundred papers submitted for the needs of this specific quantity. all the papers have been subjected to peer-review by way of not less than specialist referees. The papers have been chosen at the foundation in their caliber and their relevance to the subject. the consequent quantity provides readers with the latest advances within the box of machining and complicated production know-how. it is going to accordingly be valuable to construction and learn engineers, examine scholars and lecturers operating within the box.
Read Online or Download 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 PDF
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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
To investigate the reasons for the size effect captured in the simulations with the edge radius tool, a finite element model of orthogonal micro-cutting of 7050-T7451 aluminum alloy is developed in this paper. 32 Advances in Machining & Manufacturing Technology IX Finitely Element Model Material Constitutive Model. Strain rate and thermal effects were taken into account in the material model. An accurate and reliable model is necessary to represent workpiece constitutive behavior during the cutting process.
Wan, Y. J. Liu: Proceedings of the Seventh International Conference on Progress of Machining Technology (Suzhou, China, December 8-11, 2004). H. Giovanola and I. 15 (1980), pp. 2580. R. V. Swain: Journal of Materials Science, Vol. 113. R. Lawn and R. Wilshaw: Journal of Materials Science, Vol. 1049. P. J. Liu, Y. Y. Ye: Front. Mech. Eng. 2, pp. 194. Key Engineering Materials Vols. cn Keywords: Machining, Ultra-fine grained materials, Severe plastic deformation. Abstract. Microstructure of machined copper chips at very low velocity was characterized by transmission electron microscopy.
Cn Keywords: Machining, Ultra-fine grained materials, Severe plastic deformation. Abstract. Microstructure of machined copper chips at very low velocity was characterized by transmission electron microscopy. The structure of the machined chip produced by reasonable combinations of machining parameters is virtually entirely occupied by isolated equiaxed submicron grains of 100~300nm in size with high-angle boundaries. A finite element model was developed to study large plastic deformation in plain orthogonal machining copper.