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Ductile Mode Cutting of Brittle Materials, Liu Kui, Wang Hao, Zhang Xinquan


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Автор: Liu Kui, Wang Hao, Zhang Xinquan
Название:  Ductile Mode Cutting of Brittle Materials
ISBN: 9789813298354
Издательство: Springer
Классификация:

ISBN-10: 9813298359
Обложка/Формат: Hardcover
Страницы: 291
Вес: 0.63 кг.
Дата издания: 30.01.2020
Серия: Springer series in advanced manufacturing
Язык: English
Издание: 1st ed. 2020
Иллюстрации: Xxiv, 291 p.
Размер: 23.39 x 15.60 x 1.91 cm
Читательская аудитория: Professional & vocational
Ссылка на Издательство: Link
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Поставляется из: Германии
Описание: This book provides a systematic and comprehensive interdisciplinary overview of ductile mode cutting of brittle materials, covering a range of topics from the fundamental physics to engineering practices.

Toughening Mechanisms in Quasi-Brittle Materials

Автор: S.P. Shah
Название: Toughening Mechanisms in Quasi-Brittle Materials
ISBN: 9401054983 ISBN-13(EAN): 9789401054980
Издательство: Springer
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Цена: 46570.00 T
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Описание: Proceedings of the NATO Advanced Research Workshop, Evanston, Illinois, July 16-20, 1990

Nanoindentation of Brittle Solids

Автор: Dey
Название: Nanoindentation of Brittle Solids
ISBN: 1138076538 ISBN-13(EAN): 9781138076532
Издательство: Taylor&Francis
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Цена: 83690.00 T
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Описание:

Understanding the Basics of Nanoindentation and Why It Is Important

Contact damage induced brittle fracture is a common problem in the field of brittle solids. In the case of both glass and ceramics--and as it relates to both natural and artificial bio-materials--it has triggered the need for improved fabrication technology and new product development in the industry.

The Nanoindentation Technique Is Especially Dedicated to Brittle Materials

Nanoindentation of Brittle Solids highlights the science and technology of nanoindentation related to brittle materials, and considers the applicability of the nanoindentation technique. This book provides a thorough understanding of basic contact induced deformation mechanisms, damage initiation, and growth mechanisms. Starting from the basics of contact mechanics and nanoindentation, it considers contact mechanics, addresses contact issues in brittle solids, and explores the concepts of hardness and elastic modulus of a material. It examines a variety of brittle solids and deciphers the physics of deformation and fracture at scale lengths compatible with the microstructural unit block.

  • Discusses nanoindentation data analysis methods and various nanoindentation techniques
  • Includes nanoindentation results from the authors' recent research on natural biomaterials like tooth, bone, and fish scale materials
  • Considers the nanoindentation response if contact is made too quickly in glass
  • Explores energy issues related to the nanoindentation of glass
  • Describes the nanoindentation response of a coarse grain alumina
  • Examines nanoindentation on microplasma sprayed hydroxyapatite coatings

Nanoindentation of Brittle Solids provides a brief history of indentation, and explores the science and technology of nanoindentation related to brittle materials. It also offers an in-depth discussion of indentation size effect; the evolution of shear induced deformation during indentation and scratches, and includes a collection of related research works.


Elastoplastic Behavior of Highly Ductile Materials

Автор: Zheng Maosheng, Yin Zhifu, Teng Haipeng
Название: Elastoplastic Behavior of Highly Ductile Materials
ISBN: 9811509085 ISBN-13(EAN): 9789811509087
Издательство: Springer
Цена: 139750.00 T
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Описание: Introduction.- Physical relationship in elastoplastic mechanics.- Solutions to the typical problem of elastoplasticity.- Transfer and Mitigation of Stress Concentration at the Root of a Notch for Highly Ductile Materials.- Elastic-Plastic Problems in the Manufacturing Process of Bimetal Composite Pipes.- Bending and Failure of Highly Ductile Pipes.- Effect of Defects on Pipe Bending Behavior.- Thermal Stress Problems.- Fatigue Behavior of Highly Ductile Materials.- Energy Absorption of Highly Ductile Materials.

Micromechanics Modelling of Ductile Fracture

Автор: Zengtao Chen; Cliff Butcher
Название: Micromechanics Modelling of Ductile Fracture
ISBN: 9400794746 ISBN-13(EAN): 9789400794740
Издательство: Springer
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Цена: 121890.00 T
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Описание: This book summarizes two decades of research advances in micromechanics modeling of ductile fractures, presenting a vigorous damage percolation model developed by the authors, and discussing related void damage criteria. Includes sample forming simulations.

Fracture Mechanics of Ductile and Tough Materials and Its Applications to Energy Related Structures

Автор: H.W. Liu; H.W. Liu; T. Kunio
Название: Fracture Mechanics of Ductile and Tough Materials and Its Applications to Energy Related Structures
ISBN: 9401183929 ISBN-13(EAN): 9789401183925
Издательство: Springer
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Цена: 81050.00 T
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Описание: This volume contains the proceedings of the USA-Japan Joint Seminar on "Fracture Mechanics of Ductile and Tough Materials and Its Applications to Energy Related Structures".

Elastoplastic Behavior of Highly Ductile Materials

Автор: Maosheng Zheng; Zhifu Yin; Haipeng Teng; Jiaojiao
Название: Elastoplastic Behavior of Highly Ductile Materials
ISBN: 9811509050 ISBN-13(EAN): 9789811509056
Издательство: Springer
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Цена: 139750.00 T
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Описание:

This book mainly introduces some basic phenomena and laws of highly ductile materials during elastoplastic deformation, and their engineering applications, such as the transfer and relief of stress concentration in the notch root, the mitigation of possible brittle fracture, the ductile deformation and damage, fatigue, energy absorption, plastic buckling, thermal stress problems, etc. It shows a number of revolutions in modern applications and design, which are beneficial to the safety of modern equipment, and improve applicability. In addition, the first three chapters of this book also briefly introduce the basic knowledge of elastoplastic deformation and analysis as a preliminary knowledge.
This book can be used as a textbook for advanced undergraduate students and postgraduate in non-mechanics majors such as mechanical engineering, power, material or civil engineering, as well as scholars and engineers in related fields.


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