Proceedings of the 14th Symposium on Experimental Stress Analysis and Materials Testing : selected, peer reviewed papers from the 14th Symposium on Experimental Stress Analysis and Materials Testing with the Occasion of 90 Years of Strength of Materials Laboratory from POLITECHNICA University Timisoara May 23-25, 2013, Timisoara, Romania /

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Bibliographic Details
Meeting name:Symposium on Experimental Stress Analysis and Materials Testing (14th : 2013 : Timișoara, Romania)
Imprint:Durnten-Zurich, Switzerland : Trans Tech Publications, 2014.
©2014
Description:1 online resource (268 pages) : illustrations
Language:English
Series:Key Engineering Materials, 1662-9795 ; Volume 601
Key engineering materials ; v. 601.
Subject:
Format: E-Resource Book
URL for this record:http://pi.lib.uchicago.edu/1001/cat/bib/11230096
Hidden Bibliographic Details
Other authors / contributors:Marsavina, Liviu, editor.
ISBN:9783038264293
3038264296
3038350486
9783038350484
9783038350484
Notes:Includes bibliographical references and indexes.
Online resource; title from PDF title page (ebrary, viewed May 2, 2014).
Print version record.
Summary:Collection of selected, peer reviewed papers from the 14th Symposium on Experimental Stress Analysis and Materials Testing with the occasion of 90 years of Strength of Materials Laboratory from POLITECHNICA University Timisoara, May 23-25, 2013, Timisoara, Romania. The 59 papers are grouped as follows: Chapter 1: Experimental Stress Analysis and Materials Testing, Chapter 2: Analytical and Numerical Stress Analysis, Chapter 3: Biomechanical Applications, Chapter 4: Civil Engineering Applications, Chapter 5: Mechanical Behavior of Cellular Materials. The 59 papers cover analytical and numerical stress analysis, biomechanical applications, civil engineering applications, and the mechanical behavior of cellular materials. The topics include the fatigue response of the hybrid joints obtained by hot spot welding and bonding techniques, the mathematical modeling of cracked pre-stressed elastic composite subjected to sliding force, calculating maximum tensile shear forces in restorative materials using finite element methods, a virtual geometric model of the human lower limb, and experimental case studies of compressive strength in clay fired bricks. -- Engineering-- Materials science-- Mechanical engineering.
Other form:Print version: Symposium on Experimental Stress Analysis and Materials Testing (14th : 2013 : Timișoara, Romania). Proceedings of the 14th Symposium on Experimental Stress Analysis and Materials Testing. Durnten-Zurich, Switzerland : Trans Tech Publications, [2014] 9783038350484