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Strain rate response of nano enhance...
~
Kulkarni, Shridhar S.
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Strain rate response of nano enhanced woven fabric composite beams.
Record Type:
Electronic resources : Monograph/item
Title/Author:
Strain rate response of nano enhanced woven fabric composite beams./
Author:
Kulkarni, Shridhar S.
Description:
73 p.
Notes:
Source: Masters Abstracts International, Volume: 43-06, page: 2393.
Contained By:
Masters Abstracts International43-06.
Subject:
Engineering, Mechanical. -
Online resource:
http://pqdd.sinica.edu.tw/twdaoapp/servlet/advanced?query=1425923
ISBN:
9780542045646
Strain rate response of nano enhanced woven fabric composite beams.
Kulkarni, Shridhar S.
Strain rate response of nano enhanced woven fabric composite beams.
- 73 p.
Source: Masters Abstracts International, Volume: 43-06, page: 2393.
Thesis (M.S.)--Wayne State University, 2005.
Composite materials have found many applications in aerospace and marine industries. Structural members in those applications are made from composite materials. There is a constant need for stiffer composites with lower weight. The materials used in the present study are plain woven fabric composites with the nano particle enhancements to the matrix material. Strain rate influences the tensile properties of the material. At higher strain rate materials have higher failure strength while failure strain drops down. Finite Element Solutions are solved for the complex woven fabric composites. Modeling included the detailed modeling of the yarns with local fiber volume fraction. Acoustic Emission monitoring was used to monitor the tensile tests and to understand the complex failure theory of composite materials at different strain rates.
ISBN: 9780542045646Subjects--Topical Terms:
783786
Engineering, Mechanical.
Strain rate response of nano enhanced woven fabric composite beams.
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Source: Masters Abstracts International, Volume: 43-06, page: 2393.
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Composite materials have found many applications in aerospace and marine industries. Structural members in those applications are made from composite materials. There is a constant need for stiffer composites with lower weight. The materials used in the present study are plain woven fabric composites with the nano particle enhancements to the matrix material. Strain rate influences the tensile properties of the material. At higher strain rate materials have higher failure strength while failure strain drops down. Finite Element Solutions are solved for the complex woven fabric composites. Modeling included the detailed modeling of the yarns with local fiber volume fraction. Acoustic Emission monitoring was used to monitor the tensile tests and to understand the complex failure theory of composite materials at different strain rates.
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School code: 0254.
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http://pqdd.sinica.edu.tw/twdaoapp/servlet/advanced?query=1425923
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