Contact Modeling for Solids and Particles (CISM International Centre for Mechanical Sciences)
暫譯: 固體與顆粒的接觸建模 (CISM 國際機械科學中心)
- 出版商: Springer
- 出版日期: 2018-05-31
- 售價: $6,780
- 貴賓價: 9.5 折 $6,441
- 語言: 英文
- 頁數: 228
- 裝訂: Hardcover
- ISBN: 3319901540
- ISBN-13: 9783319901541
海外代購書籍(需單獨結帳)
商品描述
The book conveys modern techniques and the latest state-of-the-art with regard to the most fundamental aspects of computational contact mechanics. However, since contact can readily be interpreted as a special type of interface problem, it seems advisable not to isolate contact mechanics, but rather to address it in the context of a broader class of problems denoted as computational interface mechanics. The book gives a clear understanding of the underlying physics of interfaces, and a comprehensive insight into the current state-of-the-art and selected cutting-edge research directions in the computational treatment of interface effects. It focuses on the modeling of friction, wear, lubrication, cohesive interfaces, grain boundaries, phase boundaries, fracture, thermo-mechanics and particulate contact (e.g. granular media). Also the most important computational aspects are addressed, including discretization techniques for finite deformations, solution algorithms for single- and multi-processor computing environments, multi-scale approaches, discrete element models and multi-physics problems including contact and interface constraints. Among the computational techniques covered in this book are finite element (FEM) and boundary element (BEM) methods, atomistic models, molecular dynamics (MD), discrete element methods (DEM), coupling approaches for multi-scale simulations, and tools for an efficient automated FEM code generation.
商品描述(中文翻譯)
本書傳達了有關計算接觸力學最基本方面的現代技術和最新的尖端技術。然而,由於接觸可以被解釋為一種特殊類型的介面問題,因此建議不要將接觸力學孤立起來,而是應在更廣泛的問題類別中進行探討,這類問題被稱為計算介面力學。本書清楚地闡述了介面的基本物理原理,並全面深入地介紹了當前的尖端技術及在介面效應計算處理中的選定前沿研究方向。它專注於摩擦、磨損、潤滑、內聚介面、晶界、相界、斷裂、熱力學及顆粒接觸(例如顆粒介質)的建模。此外,本書還探討了最重要的計算方面,包括有限變形的離散化技術、單處理器和多處理器計算環境的解決算法、多尺度方法、離散元模型以及包括接觸和介面約束的多物理問題。本書涵蓋的計算技術包括有限元素法(FEM)和邊界元素法(BEM)、原子模型、分子動力學(MD)、離散元方法(DEM)、多尺度模擬的耦合方法,以及高效自動化FEM代碼生成的工具。