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dc.contributor.authorAl-Samman, Talal*
dc.date.accessioned2021-02-11T18:54:02Z
dc.date.available2021-02-11T18:54:02Z
dc.date.issued2019*
dc.date.submitted2019-06-26 08:44:06*
dc.identifier33660*
dc.identifier.urihttps://directory.doabooks.org/handle/20.500.12854/52847
dc.description.abstractThe use of lightweight structures across several industries has become inevitable in today’s world given the ever-rising demand for improved fuel economy and resource efficiency. In the automotive industry, composites, reinforced plastics, and lightweight materials, such as aluminum and magnesium are being adopted by many OEMs at increasing rates to reduce vehicle mass and develop efficient new lightweight designs. Automotive weight reduction with high-strength steel is also witnessing major ongoing efforts to design novel damage-controlled forming processes for a new generation of efficient, lightweight steel components. Although great progress has been made over the past decades in understanding the thermomechanical behavior of these materials, their extensive use as lightweight solutions is still limited due to numerous challenges that play a key role in cost competitiveness. Hence, significant research efforts are still required to fully understand the anisotropic material behavior, failure mechanisms, and, most importantly, the interplay between industrial processing, microstructure development, and the resulting properties. This Special Issue reprint book features concise reports on the current status in the field. The topics discussed herein include areas of manufacturing and processing technologies of materials for lightweight applications, innovative microstructure and process design concepts, and advanced characterization techniques combined with modeling of material’s behavior.*
dc.languageEnglish*
dc.subjectTA1-2040*
dc.subjectT1-995*
dc.subjectTA401-492*
dc.subject.classificationthema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issues::TBX History of engineering and technologyen_US
dc.subject.othern/a*
dc.subject.othermicrostructure*
dc.subject.otherMg-Al-Ba-Ca alloy*
dc.subject.otherstrength*
dc.subject.othersevere plastic deformation*
dc.subject.otherhot working*
dc.subject.othersurface roughness*
dc.subject.otherhigh pressure torsion extrusion*
dc.subject.otheroptimization*
dc.subject.otherfatigue fracture behavior*
dc.subject.othermagnesium alloys*
dc.subject.otherde-coring*
dc.subject.otherformability*
dc.subject.othermultilayered sheets*
dc.subject.otherHPDC*
dc.subject.otherspring-back*
dc.subject.othercontact heat transfer*
dc.subject.othermechanical properties*
dc.subject.otherbending*
dc.subject.otherin-die quenching*
dc.subject.otherequivalent strain*
dc.subject.otherlight metals*
dc.subject.otherprocessing*
dc.subject.otherheat transfer*
dc.subject.otherdamage*
dc.subject.othercreep aging*
dc.subject.otherthin-walled profile*
dc.subject.otherrolling*
dc.subject.otheraluminum alloy*
dc.subject.othertransmission line fittings*
dc.subject.otherceramic core*
dc.subject.otherprocessing map*
dc.subject.otherautomated void recognition*
dc.subject.otherFEA*
dc.subject.othermulti-output porthole extrusion*
dc.subject.otherdensity*
dc.subject.otherkinetic analysis*
dc.subject.othertexture*
dc.subject.othernon-ferrous alloys*
dc.subject.othermaterial characterization*
dc.subject.otherstress superposition*
dc.subject.otherhot stamping*
dc.subject.othermetal flow*
dc.subject.otherhybrid composite material*
dc.subject.otherV-bending test*
dc.subject.otherfinite element model*
dc.subject.otheraluminium alloy*
dc.subject.othershear lap test*
dc.subject.otherAl-Cu-Mg alloy*
dc.subject.othercharacterization*
dc.titleMaterial and Process Design for Lightweight Structures*
dc.typebook
oapen.identifier.doi10.3390/books978-3-03897-959-3*
oapen.relation.isPublishedBy46cabcaa-dd94-4bfe-87b4-55023c1b36d0*
oapen.relation.isbn9783038979593*
oapen.relation.isbn9783038979586*
oapen.pages162*
oapen.edition1st*


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