Impact dynamics of mechanical systems and structures, and applications in crash energy management, impulse mitigation, and impact injury biomechanics

Among the different load conditions on a mechanical system, impact loading and its contribution to the design process require special consideration. The static methods of stress, strain, and deflection analyses are not applicable under impact conditions. The main goal of this study is to address...

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Main Author: Moradi, Rasoul
Other Authors: Lankarani, Hamid M.
Format: Others
Language:en_US
Published: Wichita State University 2012
Subjects:
Online Access:http://hdl.handle.net/10057/5363
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spelling ndltd-WICHITA-oai-soar.wichita.edu-10057-53632013-04-19T21:00:28ZImpact dynamics of mechanical systems and structures, and applications in crash energy management, impulse mitigation, and impact injury biomechanicsMoradi, RasoulElectronic dissertationsAmong the different load conditions on a mechanical system, impact loading and its contribution to the design process require special consideration. The static methods of stress, strain, and deflection analyses are not applicable under impact conditions. The main goal of this study is to address the fundamental aspects of impact and to examine its applications for different design requirements. First, different approaches to the impact phenomena, namely stereomechanics, contact mechanics, stress wave propagation, finite element method, and energy method are investigated in this dissertation. The advantages and disadvantages of each method are pointed out, and the areas of application of each method and the degree of accuracy are examined. Quantification of energy absorption during impact is the most complicated part of impact modeling and is one of the topics of interest addressed in this dissertation. Application of the impact analysis methodologies in vehicular accidents and protection of occupants are the eventual goals of this research, demonstrated using some case studies and applicable examples. Because occupant safety is a major concern in the automobile and aerospace industries, a crashworthy design must be able to dissipate the kinetic energy of impact in a controlled manner. Four test cases or applications related to impact energy management or dissipation, impulse mitigation, and impact injury biodynamics are thus presented. The application examples include the design of a truck side guard and quantification of its effects on reducing occupant injury in the collison of a small car with a truck; lumbar load attenuation for seated occupants of a rotorcraft; injuries to pedestrians impacted by a sport or utility vehicle equipped with a frontal guard; and investigation of a motorcyclist impact with roadside barriers. For each case, an analysis methodolgy is developed, and from the modeling and simulations, impact design issues are addressed.Thesis (Ph.D.)--Wichita State University, College of Engineering, Dept. of Mechanical EngineeringWichita State UniversityLankarani, Hamid M.2012-11-14T22:49:57Z2012-11-14T22:49:57Z20122012-05Dissertationxvi, 209 p.d12014http://hdl.handle.net/10057/5363en_USCopyright Rasoul Moradi, 2012. All rights reserved
collection NDLTD
language en_US
format Others
sources NDLTD
topic Electronic dissertations
spellingShingle Electronic dissertations
Moradi, Rasoul
Impact dynamics of mechanical systems and structures, and applications in crash energy management, impulse mitigation, and impact injury biomechanics
description Among the different load conditions on a mechanical system, impact loading and its contribution to the design process require special consideration. The static methods of stress, strain, and deflection analyses are not applicable under impact conditions. The main goal of this study is to address the fundamental aspects of impact and to examine its applications for different design requirements. First, different approaches to the impact phenomena, namely stereomechanics, contact mechanics, stress wave propagation, finite element method, and energy method are investigated in this dissertation. The advantages and disadvantages of each method are pointed out, and the areas of application of each method and the degree of accuracy are examined. Quantification of energy absorption during impact is the most complicated part of impact modeling and is one of the topics of interest addressed in this dissertation. Application of the impact analysis methodologies in vehicular accidents and protection of occupants are the eventual goals of this research, demonstrated using some case studies and applicable examples. Because occupant safety is a major concern in the automobile and aerospace industries, a crashworthy design must be able to dissipate the kinetic energy of impact in a controlled manner. Four test cases or applications related to impact energy management or dissipation, impulse mitigation, and impact injury biodynamics are thus presented. The application examples include the design of a truck side guard and quantification of its effects on reducing occupant injury in the collison of a small car with a truck; lumbar load attenuation for seated occupants of a rotorcraft; injuries to pedestrians impacted by a sport or utility vehicle equipped with a frontal guard; and investigation of a motorcyclist impact with roadside barriers. For each case, an analysis methodolgy is developed, and from the modeling and simulations, impact design issues are addressed. === Thesis (Ph.D.)--Wichita State University, College of Engineering, Dept. of Mechanical Engineering
author2 Lankarani, Hamid M.
author_facet Lankarani, Hamid M.
Moradi, Rasoul
author Moradi, Rasoul
author_sort Moradi, Rasoul
title Impact dynamics of mechanical systems and structures, and applications in crash energy management, impulse mitigation, and impact injury biomechanics
title_short Impact dynamics of mechanical systems and structures, and applications in crash energy management, impulse mitigation, and impact injury biomechanics
title_full Impact dynamics of mechanical systems and structures, and applications in crash energy management, impulse mitigation, and impact injury biomechanics
title_fullStr Impact dynamics of mechanical systems and structures, and applications in crash energy management, impulse mitigation, and impact injury biomechanics
title_full_unstemmed Impact dynamics of mechanical systems and structures, and applications in crash energy management, impulse mitigation, and impact injury biomechanics
title_sort impact dynamics of mechanical systems and structures, and applications in crash energy management, impulse mitigation, and impact injury biomechanics
publisher Wichita State University
publishDate 2012
url http://hdl.handle.net/10057/5363
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