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The fracture mechanics of plant mate...
~
Shao, Zhuoping.
The fracture mechanics of plant materials = wood and bamboo /
Record Type:
Language materials, printed : Monograph/item
Title/Author:
The fracture mechanics of plant materials/ by Zhuoping Shao, Fuli Wang.
Reminder of title:
wood and bamboo /
Author:
Shao, Zhuoping.
other author:
Wang, Fuli.
Published:
Singapore :Springer Singapore : : 2018.,
Description:
xiii, 221 p. :ill., digital ; : 24 cm.;
Contained By:
Springer eBooks
Subject:
Fracture mechanics. -
Online resource:
http://dx.doi.org/10.1007/978-981-10-9017-2
ISBN:
9789811090172
The fracture mechanics of plant materials = wood and bamboo /
Shao, Zhuoping.
The fracture mechanics of plant materials
wood and bamboo /[electronic resource] :by Zhuoping Shao, Fuli Wang. - Singapore :Springer Singapore :2018. - xiii, 221 p. :ill., digital ;24 cm.
Introduction to the application of the Fracture Mechanics in wood and bamboo -- Mechanical characteristics and stress-strain relationship of wood structure -- Fracture of wood along grain -- Transverse fracture of wood -- Finite element analysis of wood crack tip stress field and prediction of the crack propagation direction -- Fractal features and acoustic emission characteristics of wood fracture -- Mechanical characteristics of bamboo structure and its components -- Interlaminar fracture properties of bamboo -- Modeling on the toughness fracture and energy absorbing mechanism of biomaterial -- bamboo (Phyllostachs pubescens)
This book introduces readers to the application of fracture mechanics and mesomechanics to the analysis of the fracture behaviors of wood and bamboo. It presents a range of research methods to study the fracture behaviors of wood and bamboo, taking into account their various fracture mechanisms resulting from differences in their macroscopic and microscopic structures. It combines theoretical analysis with experiments, as well as various mathematical tools and experimental approaches. The research methods are illustrated by simple schematic diagrams, and the results obtained are largely presented as tables and figures, helping to make the book concise and compact. As such, it provides a valuable guide to the development of new biocomposites that possess exceptional strength and toughness properties and successfully overcome the shortcomings of biomaterials.
ISBN: 9789811090172
Standard No.: 10.1007/978-981-10-9017-2doiSubjects--Topical Terms:
566986
Fracture mechanics.
LC Class. No.: TA409 / .S536 2018
Dewey Class. No.: 620.1126
The fracture mechanics of plant materials = wood and bamboo /
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Introduction to the application of the Fracture Mechanics in wood and bamboo -- Mechanical characteristics and stress-strain relationship of wood structure -- Fracture of wood along grain -- Transverse fracture of wood -- Finite element analysis of wood crack tip stress field and prediction of the crack propagation direction -- Fractal features and acoustic emission characteristics of wood fracture -- Mechanical characteristics of bamboo structure and its components -- Interlaminar fracture properties of bamboo -- Modeling on the toughness fracture and energy absorbing mechanism of biomaterial -- bamboo (Phyllostachs pubescens)
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This book introduces readers to the application of fracture mechanics and mesomechanics to the analysis of the fracture behaviors of wood and bamboo. It presents a range of research methods to study the fracture behaviors of wood and bamboo, taking into account their various fracture mechanisms resulting from differences in their macroscopic and microscopic structures. It combines theoretical analysis with experiments, as well as various mathematical tools and experimental approaches. The research methods are illustrated by simple schematic diagrams, and the results obtained are largely presented as tables and figures, helping to make the book concise and compact. As such, it provides a valuable guide to the development of new biocomposites that possess exceptional strength and toughness properties and successfully overcome the shortcomings of biomaterials.
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Engineering (Springer-11647)
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