By M. Marcos, J. A. Sanchez, J. Salguero
This paintings provides the newest Advances in Non-Conventional fabrics Processing applied sciences offered on the 4th production Engineering Society overseas convention (MESIC2011), held in the course of September 2011 in Cadiz, Spain. the following, Forming, Simulation, Laser, Water-Jet, quick Prototyping, WEDM, Grinding and Additive production applied sciences are, between others, the most subject matters to be present in this e-book, that's aimed specially at production engineers who paintings within the above fields.
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Additional info for Advances in Non Conventional Materials Processing Technologies
500 500 450 400 Temperature (ºC) Temperature (ºC) 450 450 ºC 350 300 400 ºC 350 ºC 250 300 ºC 200 250 ºC 150 200 ºC 100 150 ºC 50 100 ºC 50 ºC 0 0 20 40 60 80 100 120 140 160 400 450ºC 350 300 400ºC 350ºC 250 300ºC 200 250ºC 150 200ºC 100 150ºC 100ºC 50 50ºC 0 0 180 20 40 60 80 100 120 Time (s) Time (s) a) Experimental measurements b) FEM simulations Fig. 3. Trend of the temperature in the billet before the compression tests Temperature (ºC) Fig. 3 shows that a great deal of coincidence exists between both experimental and FEM results.
A. Sánchez and J. Salguero 21 The explicit procedure requires no iterations and no tangent stiffness matrix. Based on these fundamentals, a first explicit model is created. The mesh element is taken from the explicit element library, and it is also the C3D8R element. Three “dynamic/explicit” steps are defined: the first and the third for the definition of the vertical punch displacement and the second for the horizontal translation of the punch to the next position. For the application of the displacements in every step, two amplitudes are modeled, as shown in Fig.
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