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Finite Element Analysis of composite laminates
Finite Element Analysis
Taschenbuch von Satish Kumar Mishra
Sprache: Englisch

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Beschreibung
The composite materials are well known by their excellent combination of high structural stiffness and low weight. This is of the fundamental importance to develop tools that allow the designer to obtain the optimized design considering the structural requirements, functional characteristics and restrictions imposed by the production process. In this work, taking into considerations the above limitations the dynamic behavior of beams and plate manufactured from fiber reinforced composite materials are considered. Modal analysis is carried out with the help of commercial finite element code ANSYS to determine the influence of fiber orientation as well as the stacking sequence on the natural frequencies and maximum central deflection in case of uniform loading over the plate. The behavior of laminated composite plate under pressure loading was studied by using ANSYS . The effect of fiber orientation, number of plies, and stiffness ratio on the displacement of symmetric and anti symmetric laminated composite plates subjected to uniform pressure loads are studied in this work.
The composite materials are well known by their excellent combination of high structural stiffness and low weight. This is of the fundamental importance to develop tools that allow the designer to obtain the optimized design considering the structural requirements, functional characteristics and restrictions imposed by the production process. In this work, taking into considerations the above limitations the dynamic behavior of beams and plate manufactured from fiber reinforced composite materials are considered. Modal analysis is carried out with the help of commercial finite element code ANSYS to determine the influence of fiber orientation as well as the stacking sequence on the natural frequencies and maximum central deflection in case of uniform loading over the plate. The behavior of laminated composite plate under pressure loading was studied by using ANSYS . The effect of fiber orientation, number of plies, and stiffness ratio on the displacement of symmetric and anti symmetric laminated composite plates subjected to uniform pressure loads are studied in this work.
Über den Autor
Satish Mishra is Lecturer of the LINGAYA'S [...] has over Five Year experience in teching and participating Machanical and Automobile engineering [...] is devoted to finiding ways of Communicating concepts to the [...] was awarded the [...],MBA,and [...] of the Lingaya's University Faridabad.
Details
Erscheinungsjahr: 2017
Fachbereich: Fertigungstechnik
Genre: Mathematik, Medizin, Naturwissenschaften, Technik
Rubrik: Naturwissenschaften & Technik
Medium: Taschenbuch
Inhalt: 68 S.
ISBN-13: 9783846582244
ISBN-10: 3846582247
Sprache: Englisch
Einband: Kartoniert / Broschiert
Autor: Mishra, Satish Kumar
Hersteller: LAP Lambert Academic Publishing
Verantwortliche Person für die EU: LAP Lambert Academic Publishing, Brivibas Gatve 197, ?-1039 Riga, customerservice@vdm-vsg.de
Maße: 220 x 150 x 5 mm
Von/Mit: Satish Kumar Mishra
Erscheinungsdatum: 03.02.2017
Gewicht: 0,119 kg
Artikel-ID: 106641979
Über den Autor
Satish Mishra is Lecturer of the LINGAYA'S [...] has over Five Year experience in teching and participating Machanical and Automobile engineering [...] is devoted to finiding ways of Communicating concepts to the [...] was awarded the [...],MBA,and [...] of the Lingaya's University Faridabad.
Details
Erscheinungsjahr: 2017
Fachbereich: Fertigungstechnik
Genre: Mathematik, Medizin, Naturwissenschaften, Technik
Rubrik: Naturwissenschaften & Technik
Medium: Taschenbuch
Inhalt: 68 S.
ISBN-13: 9783846582244
ISBN-10: 3846582247
Sprache: Englisch
Einband: Kartoniert / Broschiert
Autor: Mishra, Satish Kumar
Hersteller: LAP Lambert Academic Publishing
Verantwortliche Person für die EU: LAP Lambert Academic Publishing, Brivibas Gatve 197, ?-1039 Riga, customerservice@vdm-vsg.de
Maße: 220 x 150 x 5 mm
Von/Mit: Satish Kumar Mishra
Erscheinungsdatum: 03.02.2017
Gewicht: 0,119 kg
Artikel-ID: 106641979
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