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A numerical approach to the classica...
~
Ochsner, Andreas.
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A numerical approach to the classical laminate theory of composite materials = the composite laminate analysis tool--CLAT v2.0 /
Record Type:
Electronic resources : Monograph/item
Title/Author:
A numerical approach to the classical laminate theory of composite materials/ by Andreas Ochsner, Resam Makvandi.
Reminder of title:
the composite laminate analysis tool--CLAT v2.0 /
Author:
Ochsner, Andreas.
other author:
Makvandi, Resam.
Published:
Cham :Springer Nature Switzerland : : 2023.,
Description:
xi, 170 p. :ill., digital ;24 cm.
[NT 15003449]:
1. Introduction -- 2. Classical Laminate Theory -- 3. Composite Laminate Analysis Tool - CLAT -- 4. Application Examples -- 5. Source Codes.
Contained By:
Springer Nature eBook
Subject:
Composite materials - Mathematics. -
Online resource:
https://doi.org/10.1007/978-3-031-32975-3
ISBN:
9783031329753
A numerical approach to the classical laminate theory of composite materials = the composite laminate analysis tool--CLAT v2.0 /
Ochsner, Andreas.
A numerical approach to the classical laminate theory of composite materials
the composite laminate analysis tool--CLAT v2.0 /[electronic resource] :by Andreas Ochsner, Resam Makvandi. - Cham :Springer Nature Switzerland :2023. - xi, 170 p. :ill., digital ;24 cm. - Advanced structured materials,v. 1891869-8441 ;. - Advanced structured materials ;v. 189..
1. Introduction -- 2. Classical Laminate Theory -- 3. Composite Laminate Analysis Tool - CLAT -- 4. Application Examples -- 5. Source Codes.
This book first provides a systematic and thorough introduction to the classical laminate theory for composite materials based on the theory for plane elasticity elements and classical (shear-rigid) plate elements. The focus is on unidirectional lamina which can be described based on orthotropic constitutive equations and their composition to layered laminates. In addition to the elastic behavior, failure is investigated based on the maximum stress, maximum strain, Tsai-Hill, and the Tsai-Wu criteria. The solution of the fundamental equations of the classical laminate theory is connected with extensive matrix operations, and many problems require in addition iteration loops. Thus, a classical hand calculation of related problems is extremely time consuming. In order to facilitate the application of the classical laminate theory, we decided to provide a Python-based computational tool, the so-called Composite Laminate Analysis Tool (CLAT) to easily solve some standard questions from the context of fiber-reinforced composites. The tool runs in any standard web browser and offers a user-friendly interface with many post-processing options. The functionality comprises stress and strain analysis of lamina and laminates, derivation of off-axis elastic properties of lamina, and the failure analysis based on different criteria.
ISBN: 9783031329753
Standard No.: 10.1007/978-3-031-32975-3doiSubjects--Topical Terms:
3662737
Composite materials
--Mathematics.
LC Class. No.: TA418.9.C6
Dewey Class. No.: 620.1180151
A numerical approach to the classical laminate theory of composite materials = the composite laminate analysis tool--CLAT v2.0 /
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This book first provides a systematic and thorough introduction to the classical laminate theory for composite materials based on the theory for plane elasticity elements and classical (shear-rigid) plate elements. The focus is on unidirectional lamina which can be described based on orthotropic constitutive equations and their composition to layered laminates. In addition to the elastic behavior, failure is investigated based on the maximum stress, maximum strain, Tsai-Hill, and the Tsai-Wu criteria. The solution of the fundamental equations of the classical laminate theory is connected with extensive matrix operations, and many problems require in addition iteration loops. Thus, a classical hand calculation of related problems is extremely time consuming. In order to facilitate the application of the classical laminate theory, we decided to provide a Python-based computational tool, the so-called Composite Laminate Analysis Tool (CLAT) to easily solve some standard questions from the context of fiber-reinforced composites. The tool runs in any standard web browser and offers a user-friendly interface with many post-processing options. The functionality comprises stress and strain analysis of lamina and laminates, derivation of off-axis elastic properties of lamina, and the failure analysis based on different criteria.
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Chemistry and Materials Science (SpringerNature-11644)
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EB TA418.9.C6
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