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Mechanical Properties of Polycarbonate: Experiment and Modeling for Aeronautical and Aerospace Applications

AUTHOR Xu, Yingjie; Zhang, Weihong
PUBLISHER Iste Press - Elsevier (08/14/2019)
PRODUCT TYPE Hardcover (Hardcover)

Description

Mechanical Properties of Polycarbonate: Experiment and Modeling for Aeronautical and Aerospace Applications provides a detailed description on experimental characterization, material modeling and finite element simulation method for polycarbonate in aeronautical and aerospace applications. The book presents the experiment facilities and methods used in characterizing the mechanical properties of polycarbonate in a large range of strain rates and temperatures. The constitutive modeling of polycarbonate and the finite element simulation of polycarbonate products under impact loading are illustrated in detail. Finally, an optimization methodology is devised to optimize the injection molding process parameters for high mechanical performance of the product under impact loading.

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Product Format
Product Details
ISBN-13: 9781785483134
ISBN-10: 1785483137
Binding: Hardback or Cased Book (Sewn)
Content Language: English
More Product Details
Page Count: 184
Carton Quantity: 34
Product Dimensions: 6.00 x 0.50 x 9.00 inches
Weight: 0.92 pound(s)
Feature Codes: Bibliography, Index
Country of Origin: US
Subject Information
BISAC Categories
Technology & Engineering | Engineering (General)
Technology & Engineering | Structural
Technology & Engineering | Construction - General
Dewey Decimal: 668.423
Library of Congress Control Number: 2021275135
Descriptions, Reviews, Etc.
publisher marketing

Mechanical Properties of Polycarbonate: Experiment and Modeling for Aeronautical and Aerospace Applications provides a detailed description on experimental characterization, material modeling and finite element simulation method for polycarbonate in aeronautical and aerospace applications. The book presents the experiment facilities and methods used in characterizing the mechanical properties of polycarbonate in a large range of strain rates and temperatures. The constitutive modeling of polycarbonate and the finite element simulation of polycarbonate products under impact loading are illustrated in detail. Finally, an optimization methodology is devised to optimize the injection molding process parameters for high mechanical performance of the product under impact loading.

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Your Price  $175.00
Hardcover