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MonographDOI

Mechanical Behavior of Materials

TLDR
A balanced mechanics-materials approach and coverage of the latest developments in biomaterials and electronic materials, the new edition of this popular text is the most thorough and modern book available for upper-level undergraduate courses on the mechanical behavior of materials as discussed by the authors.
Abstract
A balanced mechanics-materials approach and coverage of the latest developments in biomaterials and electronic materials, the new edition of this popular text is the most thorough and modern book available for upper-level undergraduate courses on the mechanical behavior of materials To ensure that the student gains a thorough understanding the authors present the fundamental mechanisms that operate at micro- and nano-meter level across a wide-range of materials, in a way that is mathematically simple and requires no extensive knowledge of materials This integrated approach provides a conceptual presentation that shows how the microstructure of a material controls its mechanical behavior, and this is reinforced through extensive use of micrographs and illustrations New worked examples and exercises help the student test their understanding Further resources for this title, including lecture slides of select illustrations and solutions for exercises, are available online at wwwcambridgeorg/97800521866758

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Journal ArticleDOI

Quasi-static and dynamic mechanical response of Strombus gigas (conch) shells

TL;DR: In this paper, the authors used Weibull statistics to evaluate the structural properties of Strombus gigas (conch) shells and found that the conch exhibited orientation dependence of strength as well as significant strain-rate sensitivity.
Journal ArticleDOI

A 5-V operated MEMS variable optical attenuator by SOI bulk micromachining

TL;DR: In this article, a microelectromechanical variable optical attenuator (VOA) was proposed for large optical attenuation (40 dB), corresponding to mirror angle of 0.3/spl deg.
Journal ArticleDOI

Optical coherence elastography in ophthalmology.

TL;DR: The physical processes underlying tissue mechanical response based on static and dynamic displacement methods and the assumptions commonly used to interpret displacement and strain measurements in terms of tissue elasticity for static OCE and propagating wave modes in dynamic OCE are described.
Journal ArticleDOI

An extended GTN model for ductile fracture under high and low stress triaxiality

TL;DR: In this article, two distinct damage parameters are introduced as internal variables of the degradation process and an effective damage is calculated as a sum of both contributions in the post-processed step.
Journal ArticleDOI

Yield conditions for deformation of amorphous polymer glasses.

TL;DR: This work test the onset of shear is consistent with the pressure-modified von Mises criterion, and the pressure coefficient is nearly independent of many parameters under triaxial loading conditions that are difficult to realize in experiments.
References
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Book

Theory of Dislocations

TL;DR: Dislocations in Isotropic Continua: Effects of Crystal Structure on Dislocations and Dislocation-Point-Defect Interactions at Finite temperatures.
Book

Cellular Solids: Structure and Properties

TL;DR: The linear elasticity of anisotropic cellular solids is studied in this article. But the authors focus on the design of sandwich panels with foam cores and do not consider the properties of the materials.
Book

Introduction to Ceramics

TL;DR: In this paper, the authors present a model for the development of the MICROSTRUCTURE in CERAMICS based on phase transformation, glass formation and glass-Ceramics.
Book

The stress analysis of cracks handbook

TL;DR: The Stress Analysis of Cracks Handbook as mentioned in this paper provides a comprehensive, easy-to-access collection of elastic stress solutions for crack configurations, along with other relevant information, such as displacements, crack opening areas, basic stress functions source references, accuracy of solutions, and more.
Book

The physics of rubber elasticity

TL;DR: In this paper, the Elasticity of Long-Chain Molecules (LCHs) and Elasticity in a Molecular Network (MNNs) is investigated. But the authors focus on the elasticity of the long chain Molecules.