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Polymer-Matrix Composites Materials Mechanics Applications by Beth Sparks Elias Rice Hardcover

Polymer-Matrix Composites Materials Mechanics Applications by Beth Sparks Elias Rice Hardcover

$ 107.7

Further Details Title: Polymer-Matrix Composites Condition: New Author: Beth Sparks EAN: 9781536133981 Format: Hardback Country/Region of Manufacture: US Contributor: Elias Rice (Edited by) ISBN-10: 1...

Description

Further Details Title: Polymer-Matrix Composites Condition: New Author: Beth Sparks EAN: 9781536133981 Format: Hardback Country/Region of Manufacture: US Contributor: Elias Rice (Edited by) ISBN-10: 1536133981 ISBN: 9781536133981 Language: English Item Height: 230mm Item Length: 155mm Item Weight: 502g Genre: Science Nature & Math Subtitle: Materials, Mechanics and Applications Publisher: Nova Science Publishers Inc Release Date: 05/01/2018 Release Year: 2018 Missing Information? Please contact us if any details are missing and where possible we will add the information to our listing.

Specifics

Author

Beth Sparks, Elias Rice

Book Series

Polymer Science and Technology Ser.

Book Title

Polymer-Matrix Composites : Materials, Mechanics and Applications

Dewey Decimal

620.118

Dewey Edition

23

Format

Hardcover

Genre

Technology & Engineering, Science

ISBN-10

1536133981

ISBN-13

9781536133981

Illustrator

Yes

Item Length

9.1 in

Item Weight

17.7 Oz

Item Width

6.1 in

LC Classification Number

TA418.9.C6P6455 2018

LCCN

2018-938290

Language

English

Number of Pages

212 Pages

Publisher

NOVA Science Publishers, Incorporated

Synopsis

This books opens with an evaluation of the effects of the acid environment on sulfur-polymer matrix composite, with Portland cement-based composite chosen as a comparative material. Unlike conventional Portland cement-based composites, sulfur-polymer matrix composites are produced without water and achieve final strength in few days. Following this, the effects of electron beam irradiation on copper oxide added polymer matrix composite was investigated. Copper oxide added polymer matrix composite has been known for engineering applications that involving plastics moving parts to reduce friction. In a separate study, inorganic Montmorillonite nanofibers and organic cellulose nanofibers obtained through acid hydrolysis were simultaneously added to plasticized starch with defined CNF-to-MMT ratio and processed into nanocomposites by melt extrusion. The continuously isothermal aerobic ageing on samples was carried out by oven-heating at 60°C so as to investigate the organic nanofillers as an alternative to inorganic nanofillers. The authors also investigate the physico-mechanical characteristic of low density polyethylene (LDPE) and starch blends when undergone acid and alkaline attacks. In the following chapter, simulation of the temperature distribution in textile composite structures is achieved by utilizing an analytical-symbolic approach. Analytical heating solutions along each yarn provide accurate solutions with far fewer nodes than numerical solutions, and require the minimum number of symbolic network nodes. The final investigation was conducted to investigate the effects of copper (II) oxide (CuO) composition on the degradability of high density polyethylene/ethylene vinyl acetate (HDPE/EVA) blends. It was observed that both degree of crystallinity and crystallites sizes of the composited increased after the ageing operation.

Table Of Content

For more information, please visit our website at:Hardcover: https://www.novapublishers.com/catalog/product_info.php'products_id=64256E-book: https://www.novapublishers.com/catalog/product_info.php'products_id=642567

Topic

Materials Science / General, Textiles & Polymers, Chemistry / Organic

brand

NOVA Science Publishers, Incorporated

gtin13

9781536133981

Reviews

  1. Riv Dev9c624

    This book is a fantastic deep dive into polymer-matrix composites, packed with clear explanations and practical applications. The authors break down complex mechanics into understandable concepts, making it great for students and professionals alike. The hardcover is sturdy, and the content is up-to-date, covering materials science and real-world uses. Highly recommended for anyone in engineering or materials research—worth every penny!