From the point of view of mechanics, this monograph systematically demonstrates the theory of plastic bending and its engineering applications; most of the contents of the book are based on the authors' research in the past decade. The monograph not only expounds the contributions of the authors to the fundamental theory of plastic bending, but also presents various applications of the theory in sheet metal forming, particularly in the analysis and prediction of springback and wrinkling of strips and plates subjected to bending or stamping. In addition to theoretical modelling, attention has also been paid to the development of related numerical methods; comparisons with experimental results are also presented.
This volume aims to promote the latest advances in abrasive technology. Emphasis is placed on both the development of practical methods and the understanding of the mechanisms of machining ceramics, semiconductors, steel alloys, and other advanced materials. About 50 technical papers are included in the volume, describing the recent advances in the mechanics of abrasive machining, mechanisms of grinding, difficult-to-machine materials, grinding wheel technology, machinery and measurement, polishing, lapping, and nano-machining. Theoretically, the book discusses the material removal and deformation mechanisms; from the practical point of view, it provides useful data for direct industrial applications.
From the point of view of mechanics, this monograph systematically demonstrates the theory of plastic bending and its engineering applications; most of the contents of the book are based on the authors' research in the past decade. The monograph not only expounds the contributions of the authors to the fundamental theory of plastic bending, but also presents various applications of the theory in sheet metal forming, particularly in the analysis and prediction of springback and wrinkling of strips and plates subjected to bending or stamping. In addition to theoretical modelling, attention has also been paid to the development of related numerical methods; comparisons with experimental results are also presented.
This volume aims to promote the latest advances in abrasive technology. Emphasis is placed on both the development of practical methods and the understanding of the mechanisms of machining ceramics, semiconductors, steel alloys, and other advanced materials. About 50 technical papers are included in the volume, describing the recent advances in the mechanics of abrasive machining, mechanisms of grinding, difficult-to-machine materials, grinding wheel technology, machinery and measurement, polishing, lapping, and nano-machining. Theoretically, the book discusses the material removal and deformation mechanisms; from the practical point of view, it provides useful data for direct industrial applications.