Download Anti-Fatigue Design and Manufacturing Technologies I by Dunwen Zuo, Chuanzhen Huang, Ming Chen, Guo Hun PDF

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By Dunwen Zuo, Chuanzhen Huang, Ming Chen, Guo Hun

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Extra resources for Anti-Fatigue Design and Manufacturing Technologies I

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Fig. 6(a) was the microscopic picture of segmented chip of Exp. 6 in Table 2. Fig. 6(b) is the corresponding finite element simulation result of chip formation. The maximal chip thickness tcmax and minimal thickness tcmin were measured. 12mm/r) Fig. 6 Comparison of chip morphology between experimental and simulation results The results of chip morphology, with cutting parameters listed in Table 2, were shown in Fig. 7. In the case of maximal chip thickness, the simulated values were smaller than those obtained experimentally in a certain extent.

Key Engineering Materials Vol. 499 43 Conclusions t cmax(um) A finite element simulation model of AISI D2 orthogonal cutting process was presented. Cutting experiments were conducted to prove the reliability of the simulation model by comparing the simulated and experimental results in terms of chip morphology and cutting forces. The simulated results showed good agreement with the experimental results. Thus this work created reliable FEM models to simulate three-dimensional cutting operations that could be used in the future for further investigations.

7] B. H. Choi, Y. H. Lim, J. H. : Microelectronic Engineering Vol. 87 (2010), p. 1391. [8] Q. Xie, Y. L. Jiang, J. : Thin Solid Films Vol. 517 (2009), p. 4689. [9] J. Li, H. S. Lu, Y. W. : Microelectronic Engineering Vol. 635. [10] D. C. Perng, K. C. Hsu, S. W. : Microelectronic Engineering Vol. 87 (2010), p. 365. 38 Anti-Fatigue Design and Manufacturing Technologies I [11] V. R. K. Gorantla, S. B. Emery, S. : Materials Letters Vol. 59 (2005), p. 690. [12] Y. N. Prasad and S. Ramanathan: Electrochimica Acta Vol.

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