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FEM for Springs (Hardcover, 2003 ed.): Masayoshi Shimoseki FEM for Springs (Hardcover, 2003 ed.)
Masayoshi Shimoseki; Contributions by Toshio Kuwabara; Edited by Toshio Hamano, Toshiyuki Imaizumi
R4,541 Discovery Miles 45 410 Ships in 12 - 17 working days

While there are many books about Finite Element Methods, this is among the first volume devoted to the application of FEM in spring design. It has been compiled by the working group on Finite Element Analysis of Springs, sponsored by the Japan Society of Spring Research. The monograph considers the wide spectrum of spring shapes and functions, enabling readers to use FEM to optimize designs for even the most advanced engineering cases. This book provides the theoretical background and state-of-the-art methodologies for numerical spring analysis. It also employs and explains many real-world design examples, calculated by commercial software and then compared with experimental data, to illustrate the applicability of FEM to spring analysis. Engineers already dealing with spring design will find this an excellent means of learning how to use FEM in their work, while others will find here a helpful introduction to modern spring technology and design.

FEM for Springs (Paperback, Softcover reprint of hardcover 1st ed. 2003): Masayoshi Shimoseki FEM for Springs (Paperback, Softcover reprint of hardcover 1st ed. 2003)
Masayoshi Shimoseki; Contributions by Toshio Kuwabara; Edited by Toshio Hamano, Toshiyuki Imaizumi
R4,448 Discovery Miles 44 480 Ships in 10 - 15 working days

The Japanese original edition of "FEM for Springs" was published in 1997, to com memorate the 50th anniversary of Japan Society for Spring Research (JSSR). While there have been many books published about Finite Element Method (FEM), this book was among the first to address the application of FEM to spring design. When asked about springs, one might imagine a mere shape of helical coil. How ever, there are many more varieties of shapes and functions in the application of springs. Consequently, some are very difficult to calculate by design formula. FEM gives the solutions to those advanced engineering cases. Nowadays, it is strongly desired to have a design method for springs as a com mon base from a global point of view. Under these circumstances, JSSR planned to publish an English version of "FEM for Springs." By improving the contents and adding many examples, this book, FEM for Springs, has been brought to comple tion. It is a truly significant event. I am confident that this book is suitable for engineers in worldwide industrial sectors and for college students as well."

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