Last edited by Tygokree
Tuesday, November 24, 2020 | History

5 edition of Heat-resistant polymers found in the catalog.

Heat-resistant polymers

technologically useful materials

by J. P. Critchley

  • 266 Want to read
  • 32 Currently reading

Published by Plenum Press in New York .
Written in English

    Subjects:
  • Polymers -- Thermal properties.,
  • Heat resistant plastics.

  • Edition Notes

    Includes bibliographies and indexes.

    StatementJ.P. Critchley, G.J. Knight, and W.W. Wright.
    ContributionsKnight, G. J., 1937-, Wright, W. W. 1928-
    Classifications
    LC ClassificationsTA455.P58 C74 1983
    The Physical Object
    Paginationxiv, 462 p. :
    Number of Pages462
    ID Numbers
    Open LibraryOL3162175M
    ISBN 100306410583
    LC Control Number83003987

      Heat-resistant plastic is a body of materials composed of synthetic chemicals, usually polymers, which create a variety of physical eum and hydrocarbon atoms are strung into long molecules called monomers, and straight or branched chains of these molecules can be combined into polymers of various two- or three-dimensional structures. Aromatic polyimides, though not a panacea, are a class of heat-resistant polymers of great interest to researchers as capacitor dielectrics because of good thermal and mechanical stability.


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Heat-resistant polymers by J. P. Critchley Download PDF EPUB FB2

More than references have been published on one heat-resistant polymer system alone over a period of little more than two years. The result is that a very high degree Heat-resistant polymers book selectivity must be exercised with respect to the information reproduced.

: Heat-Resistant Polymers: Technologically Useful Materials (): Critchley, J.P., Knight, G.J., Wright, W.W.: BooksCited by: Definitions of what is meant by a heat-resistant polymer vary considerably. We have taken the term to mean a polymer which can be used, at least for short time periods, at temperatures from °C.

The greatest problem which arises in writing a monograph on such materials is the tremendous amount of. Introduction Definitions of what is meant by a heat-resistant polymer vary considerably. We have taken the term to mean a polymer which can be used, at least for short time periods, at temperatures from °C.

The greatest problem which arises in writing a monograph on such materials is the tremendous amount of data that is available. Overview Definitions of what is meant by a heat-resistant polymer vary considerably.

We have taken the term to mean a polymer which can be used, at least for short time periods, at temperatures from °C. The greatest problem which arises in writing a monograph on such materials is the tremendous amount of data that is available.

Buy Heat-Resistant Polymers: Technologically Useful Materials Softcover reprint of the original 1st ed. by J.P. Critchley (ISBN: ) from Amazon's Book Store. Everyday low prices and free delivery on eligible orders. The book is aimed at those engaged in the manufacture of polymers and the development of end-use applications.

It is essential that students of polymer science should have a thorough understanding of polymer stability and an additional aim of the book is to help in the development of such an : T. Crompton. : Fire Resistant and Thermally Stable Materials Derived from Chlorinated Polyethylene (New Concepts in Polymer Science) (): Zaikov, Gennady, Donskoi, Shashkina: BooksReviews: 1.

In book: Encyclopedia of Polymer Science and Technology, pp Heat resistant polymers possess high softening or polymer is the key perquisite for polymers to be regarded as heat resistant.

Buy Heat-Resistant Polymers: Technologically Useful Materials Sign in to Turn on 1-Click Ordering. Instant Reward Active by Critchley, J. P., Knight, G. J., Wright, W. (ISBN: ) from Amazon's Book Store. Everyday low prices and free delivery on eligible orders. Organic polymers provide one of the most versatile groups of materials and find widespread use as plastics, rubbers, fibres, adhesives and coatings.

The advantages of these materials, especially their ease of fabrication and low density, for use in an ever widening range of products have slowly become more and more appreciated by designers and.

A new kind of heat-resistant resin was predicted by rapid screening and was further verified by theoretical simulations and experimental studies. The basic framework developed for the present materials genome approach can be generalized for the rapid design of other high-performance materials.

These polymers include polyimides and their copolymers, polyamides and related copolymers, polyesters, aromatic polyethers and their derivatives, benzimidazoles, and ladder polymers. It should be noted that a number of other heat‐resistant synthetically developed or commercially successful polymers (less important) are not included in this.

Heat-Resistant Polymers: Technologically Useful Materials by J.P. Critchley and a great selection of related books, art and collectibles available now at Heat resistance of polymers of T=const tr=Bao,-', (30) where tr is the time expressed in seconds during which the required stress, i.e.

the heat resistance of a body compressed to a given deformation, is maintained, act is the constant stress expressed in kg/mm2, B and a are parameters dependent on temperature.

{ogt,seb a 3"0 20t O.O 1 3. Polymer-ceramic materials (PCMs) (vide infra) have been shown to offer thermo-oxidative resistance much higher than available organic heat-resistant polymers. Continued development of these materials often must yield to economic changes and technological focus shifts in the aerospace industry, and achieving consistent production quantities is.

ISBN: OCLC Number: Notes: At head of title: Academy of Sciences of the USSR. Institute of Hetero-Organic Compounds. The intensive interest in heat‐resistant polymers results from new technological processes requiring higher use temperatures for development.

Thermally stable or high performance polymers dictate high melting (softening) temperatures, resistance to oxidative degradation at elevated temperature, resistance to other (nonoxidative) thermolytic. Topics include: liquid crystalline polymers; high temperature polyimides; heat-resistant engineering polymers; and high temperature organic polymers, including their chemistry and key functional properties in moldings, films, fibers, and coatings, as well as Format: Hardcover.

Definitions of what is meant by a heat-resistant polymer vary considerably. We have taken the term to mean a polymer which can be used, at least for short time periods, at temperatures from DegreesC.

The greatest problem which arises in writing a monograph on such materials is the tremendous amount of data that is available. More than references have been published on one heat.

ISBN: OCLC Number: Description: xiv, pages: illustrations ; 24 cm: Contents: 1 Introduction.- 2 Thermosetting Polymers.- 3 Fluorine-Containing Polymers.- 4 Polymers with Aromatic Rings in the Chain.- 5 Polymers with Heterocyclic Rings in the Chain.- 6 Silicon-Containing Polymers-Silicones.- 7 Boron-Containing Polymers-The Carboranesiloxanes.- 8.

COVID Resources. Reliable information about the coronavirus (COVID) is available from the World Health Organization (current situation, international travel).Numerous and frequently-updated resource results are available from this ’s WebJunction has pulled together information and resources to assist library staff as they consider how to handle coronavirus.

Handbook of Benzoxazine Resins. Book • Edited by: Hatsuo Ishida and Tarek Agag. Browse book content. etc. Polyarylacetylene resins are regarded as extremely heat-resistant polymers and can be used as thermally stable resin matrices for composites and as precursors for carbon/ carbon composites.

The advantageous features of silicon. Additional Physical Format: Online version: Frazer, August Henry, High temperature resistant polymers.

New York, Interscience Publishers []. pharmaceuticals, polymers, dyes, pesticides, surfactants, stabilizers and other additives for plastics. Some of these derivatives were demonstrated and illustrated to have unique physical properties like photo & electro-luminescence, liquid crystallinity, electric conductivity and non-linear optics.

Heat resistant polymer is also known as fire-safe polymer. Heat resistant polymers are resistant to degradation at high temperatures. There is need for heat resistant polymers in construction of small, enclosed spaces such as boats, skyscrapers, and airplane cabins.

Fire-safe polymers are polymers that are resistant to degradation at high temperatures. There is need for fire-resistant polymers in the construction of small, enclosed spaces such as skyscrapers, boats, and airplane cabins. In these tight spaces, ability to escape in the event of a fire is compromised, increasing fire risk.

In fact, some studies report that about 20% of victims of airplane. Polyamides known as nylon are a group of heat-resistant materials with good chemical and mechanical stability. They can be synthesized by step-growth polymerization, such as interfacial polymerization. However, their dense membranes exhibit an extremely low permeability [96].Therefore, a thin-film polyamide is usually synthesized on top of membrane supports via interfacial polymerization and.

Heat resistant polymers have replaced metals and other ceramics. These polymers can withstand high temperature. Innovation in science and technology in heat resistant polymers has helped meet the requirement of various end-user industries such as aerospace, wherein heat resistant polymers have less weight as compared to that of heavy weight metals.4/5(28).

Heat resistant plastics are a light, versatile alternative to metal, ceramics and older-generation polymers. DuPont collaborates with designers and manufacturers to help them improve their products and application systems, increase the speed of innovation, and make production more cost-efficient – from auto engines to energy production.

Electronic books Clearwater (Fla., ) a broad-based view of polymer technology. Topics include: liquid crystalline polymers; high temperature polyimides; heat-resistant engineering polymers; and high temperature organic polymers, including their chemistry and key functional properties in moldings, films, fibers, and coatings, as well as.

Resorcinol chemistry has been providing valuable properties and products in the development of advanced technologies in the areas of pharmaceuticals, rubber compounds, wood composites and plastics. Notable technologies include steel belted radial tires, resorcinol-formaldehyde-latex adhesives (RFL), a weather proof polycarbonate (Sollx), a super heat resistant polymer (PEN.

Heat Resistant Polymer Market size is anticipated to witness healthy growth during to driven by increase in demand for temperature resistant and lightweight plastics in automotive, aerospace and electronics sector along with rise in demand for production.

Today, the high temperature melt-processable thermoplastics market comprises a number of polymer families and each family consisting of several polymer types within. The plastics industry commonly uses terms such as "high performance", "engineering polymers", and "standard" or "commodity" plastics to describe the applications for these materials.

A new class of polymers, polyamidohexazocyclanes, has been obtained by low temperature polycondensation of macroheterocyclic compounds based on phthalodinitrile and various diamiues. The dependence of the reduced viscosity of polyamidohexazocyclanes on monomer concentration and on reaction time and temperature has been studied.

The latest trending report Global Heat Resistant Polymers Market by Manufacturers, Regions, Type and Application, Forecast to offered by is an informative study covering the market with detailed analysis. The report will assist reader with better understanding and decision making.

Global Heat Resistant Polymers Players/Suppliers Profiles and Sales Data Additionally Company Basic Information, Manufacturing Base and Competitors list is being provided for each listed. Curing of a curable resin which comprises a mixture of: (a) a component which comprises at least one thermocurable compound containing 1-oxaazatetralin groups, (b) a component which comprises at least one curable halogenated epoxy resin, optionally (c) a component which comprises at least one curable, non-halogenated epoxy resin, and optionally (d) a curing agent for epoxy resins, gives.

FOREWORD This report is a summary of the research performed under NASA Grant NsG for the period 15 September to 31 January on the synthesis of heat-resistant polymers.

grant is administered by Mr. Bernard Achhanmer, Office of Advanced RIZP~UZ~~ and Technology, WA Headquarters, Washington, I).

The technical aspect of this n ____-_. U.S. heat resistant polymers market revenue by product, - (USD Million) Metals decompose when exposed to automotive fluids or salts. However, the high temperature resistant polymers can thus be considered to be the lightweight substitutes to metals.

High temperature applications require plastic materials that can resist thermal degradation and maintain sufficient strength and stiffness at the required operating temperature.

High temperature applications often require plastics to have good creep resistance, chemical resistance, and friction and wear performance. Dimensional stability can be a concern when plastic components are used in.U.S.

heat resistant polymers market value ; Distribution of polymer consumption in the GCC by end use ; Revenue of polymers in the GCC The report "Heat Resistant Polymers Market by Type (Fluoropolymers, Polyimides, Polyphenylene Sulfide, PBI, Peek), End-Use Industry (Transportation, Electronics & Electrical), and Region - Global Forecast to ", The heat resistant polymers market is projected to grow from USD Billion in to USD Billion byat a CAGR of % from to