Many manufacturing and fabrication processes such as foundry shape casting, continuous casting and welding have common solidification phenomena, such as thermal stress development. One of the most important and complex among them is continuous casting which produces 90% of steel today. A new computationally efficient algorithm has been implemented into the commercial package Abaqus using a user-defined subroutine (UMAT) to solve for thermal stresses, strains, and displacements in realistic continuous casting processes which involve highly nonlinear constitutive relations. The model is successfully validated with available analytical solidification solutions and applied to simulate temperature and stress development of a solidifying steel shell in several continuous casting molds under realistic operating conditions. Besides continuous casting, the model from this book can be a valuable tool in modeling other classes of metal and nonmetal materials with highly nonlinear time-dependant constitutive laws.
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Seid Koric received his Ph.D. in Mechanical and Industrial Engineering from the University of Illinois in 2006. He is currently a computational coordinator at NCSA. Brian G. Thomas received his Ph.D in Metallurgical Process Engineering, University of British Columbia, 1985. He has been a faculty member at the University of Illinois since 1985.
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Taschenbuch. Condition: Neu. nach der Bestellung gedruckt Neuware - Printed after ordering - Many manufacturing and fabrication processes such asfoundry shape casting, continuous casting and weldinghave common solidification phenomena, such as thermalstress development. One of the most important and complex among them is continuous casting which produces 90% of steel today.A new computationally efficient algorithm has beenimplemented into the commercial package Abaqus usinga user-defined subroutine (UMAT) to solve for thermalstresses, strains, and displacements in realisticcontinuous casting processes which involve highlynonlinear constitutive relations. The model issuccessfully validated with available analyticalsolidification solutions and applied to simulatetemperature and stress development of a solidifyingsteel shell in several continuous casting molds underrealistic operating conditions. Besides continuouscasting, the model from this book can be a valuabletool in modeling other classes of metal and nonmetal materials with highly nonlineartime-dependant constitutive laws. Seller Inventory # 9783639160062
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