Fracture Mechanics Approach to Fatigue Life of Discontinuous Fiber Reinforced Composites
Author: Takashi Matsumoto
Publisher:
Published: 1998
Total Pages: 550
ISBN-13:
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Author: Takashi Matsumoto
Publisher:
Published: 1998
Total Pages: 550
ISBN-13:
DOWNLOAD EBOOKAuthor: P.J.M. Monteiro
Publisher: Elsevier
Published: 2001-08-29
Total Pages: 313
ISBN-13: 0080535593
DOWNLOAD EBOOK"Long Term Durability of Structural Materials" features proceedings of the workshop held at Berkeley, CA in October, 2000. It brought together engineers and scientists, who have received grants from the initiative NSF 98-42, to share their results on the study of long-term durability of materials and structures. The major objective was to develop new methods for accelerated short-term laboratory or in-situ tests which allow accurate, reliable, predictions of the long-term performance of materials, machines and structures. To achieve this goal it was important to understand the fundamental nature of the deterioration and damage processes in materials and to develop innovative ways to model the behavior of these processes as they affect the life and long-term performance of components, machines and structures. The researchers discussed their approach to include size effects in scaling up from laboratory specimens to actual structures. Accelerated testing and durability modeling techniques developed were validated by comparing their results with performance under actual operating conditions. The main mechanism of the deterioration discussed included environmental effects and/or exposure to loads, speeds and other operating conditions that are not fully anticipated in the original design. A broad range of deterioration damage, such as fatigue, overload, ultraviolet damage, corrosion, and wear was presented. A broad range of materials of interest was also discussed, including the full spectrum of construction materials, metals, ceramics, polymers, composites, and coatings. Emphasis was placed on scale-dependence and history of fabrication on resulting mechanical behavior of materials.
Author: Kheng Lim Goh
Publisher: Springer
Published: 2016-10-22
Total Pages: 208
ISBN-13: 1447173058
DOWNLOAD EBOOKThis book provides a simple and unified approach to the mechanics of discontinuous-fibre reinforced composites, and introduces readers as generally as possible to the key concepts regarding the mechanics of elastic stress transfer, intermediate modes of stress transfer, plastic stress transfer, fibre pull-out, fibre fragmentation and matrix rupture. These concepts are subsequently applied to progressive stages of the loading process, through to the composite fractures. The book offers a valuable guide for advanced undergraduate and graduate students attending lecture courses on fibre composites. It is also intended for beginning researchers who wish to develop deeper insights into how discontinuous fibre provides reinforcement to composites, and for engineers, particularly those who wish to apply the concepts presented here to design and develop discontinuous-fibre reinforced composites.
Author: Ignazio Crivelli Visconti
Publisher: Woodhead Publishing
Published: 1998
Total Pages: 462
ISBN-13: 9781855734098
DOWNLOAD EBOOKAuthor: M. J. Folkes
Publisher: Research Studies Press Limited
Published: 1982
Total Pages: 200
ISBN-13:
DOWNLOAD EBOOKGood,No Highlights,No Markup,all pages are intact, Slight Shelfwear,may have the corners slightly dented, may have slight color changes/slightly damaged spine.
Author:
Publisher:
Published: 1998
Total Pages: 652
ISBN-13:
DOWNLOAD EBOOKAuthor:
Publisher:
Published: 1967
Total Pages: 742
ISBN-13:
DOWNLOAD EBOOKAuthor:
Publisher:
Published: 1995
Total Pages: 702
ISBN-13:
DOWNLOAD EBOOKAuthor: Holm Altenbach
Publisher: Springer Nature
Published: 2023-03-09
Total Pages: 254
ISBN-13: 3031224019
DOWNLOAD EBOOKThis book presents current trends in Mechanics of Time Dependent Materials. It covers a number of cutting-edge themes, such as characterization of linear and nonlinear mechanical behavior of viscoelastic materials and their composites, taking into consideration large deformations, low, moderate and large strain rates, as well as failure and fracture phenomena. The contributions are inspired by advanced applications in modern technologies, such as injection molding and extrusion.
Author: Jia-Liang Le
Publisher: Oxford University Press
Published: 2021-11-19
Total Pages: 332
ISBN-13: 0192846248
DOWNLOAD EBOOKMany modern engineering structures are composed of brittle heterogenous, or quasibrittle, materials. These include concrete, composites, tough ceramics, rocks, cold asphalt mixtures, and many brittle materials at the microscale. Understanding the failure behavior of these materials is of paramount importance for improving the resilience and sustainability of various engineering structures including civil infrastructure, aircraft, ships, military armors, and microelectronic devices. Designed for graduate and upper-level undergraduate university courses, this textbook provides a comprehensive treatment of quasibrittle fracture mechanics. It includes a concise but rigorous examination of linear elastic fracture mechanics, which is the foundation of all fracture mechanics. It also covers the fundamental concepts of nonlinear fracture mechanics, and introduces more advanced concepts such as triaxial stress state in the fracture process zone, nonlocal continuum models, and discrete computational models. Finally, the book features extensive discussion of the various practical applications of quasibrittle fracture mechanics across different structures and engineering disciplines, and throughout includes exercises and problems for students to test their understanding.