Reactor Powder Morphology

Author:   Liuba Myasnikova
Publisher:   Nova Science Publishers Inc
ISBN:  

9781616685928


Pages:   353
Publication Date:   06 July 2011
Format:   Hardback
Availability:   Awaiting stock   Availability explained
The supplier is currently out of stock of this item. It will be ordered for you and placed on backorder. Once it does come back in stock, we will ship it out for you.

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Reactor Powder Morphology


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Author:   Liuba Myasnikova
Publisher:   Nova Science Publishers Inc
Imprint:   Nova Science Publishers Inc
Dimensions:   Width: 26.00cm , Height: 3.00cm , Length: 18.00cm
Weight:   0.896kg
ISBN:  

9781616685928


ISBN 10:   1616685921
Pages:   353
Publication Date:   06 July 2011
Audience:   Professional and scholarly ,  Professional & Vocational
Format:   Hardback
Publisher's Status:   Active
Availability:   Awaiting stock   Availability explained
The supplier is currently out of stock of this item. It will be ordered for you and placed on backorder. Once it does come back in stock, we will ship it out for you.

Table of Contents

Preface; Morphology Evolution in the Early Stages of Olefin Polymerization; Morphology in Propylene polymerization; Morphology & Behavior of Reactor Powders in Thermal & Mechanical Fields; Morphology & Molecular Motion of Polyethylene Reactor Powders; Melting & Non-Isothermal Crystalization Kinetics of Gamma Irradiated UHMWPE & UHMWPOE. Theoretical Approach, Parameters, Characterizing & Crystal Structure; Fine Structure of UHMWPE Reactor Powder & its Change in Mechanical & Thermal Fields; Compaction & Sintering UHMWPE Reactor Powders; Nascent Morphology, the Important Link between Chemistry/Catalysis & Rheology/Processing; Influence of Processing Conditions on the Wear Resistance of Ultra-High Molecular Weight Polyethylene; Processing & Properties of UHMWPE Autocomposite: Nascent Particles in Recrystallized Matrix; Role of Reactor Powder Morphology in Producing High Strength High Modulus UHMWPE Fibers; Processing of Nascent Polymer Powders to High Performance Fibers; Structural Reminiscence in the Products Derived from Polyethylene Nascent Powders; Index

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