Particulate fillers for polymers / R.N. Rothon.
Material type: TextSeries: Rapra review reports. Report 141 ; ; v. 12, no. 9.Publication details: Shawbury, U.K. : Rapra Technology Ltd., 2002.Description: 1 online resource (154 pages) : illustrationsContent type:- text
- computer
- online resource
- 1847350321
- 9781847350329
- 1280759658
- 9781280759659
- 9786610759651
- 6610759650
- Polymers
- Fillers (Materials)
- Carbon-black
- Polymères
- Produits de remplissage
- Noir de carbone
- polymers
- fill (filling material)
- weft
- carbon black
- TECHNOLOGY & ENGINEERING -- Material Science
- Carbon-black
- Fillers (Materials)
- Polymers
- Industrial chemistry and chemical process engineering
- Elastomers
- Plastics
- 620.192 22
- TA4755.P58 R68 2002eb
Item type | Home library | Collection | Call number | Materials specified | Status | Date due | Barcode | |
---|---|---|---|---|---|---|---|---|
Electronic-Books | OPJGU Sonepat- Campus | E-Books EBSCO | Available |
Includes bibliographical references and index.
Print version record.
Introduction; Filler Characteristics; Principal Filler Types; Filler Surface Modification; The Use of Fillers in Polymers; Use of Fillers in Different Polymer Types; Nanocomposites; Additional References; Abbreviations; References from the Rapra Abstracts Database; Subject Index
This is an overview of particulate filler production and use. Fillers are used in polymers for a variety of reasons: cost reduction, improved processing, density control, optical effects, thermal conductivity, control of thermal expansion, electrical properties, magnetic properties, flame retardancy and improved mechanical properties, such as hardness and tear resistance. For example, in cable applications, fillers such as metakaolinite are used to provide better electrical stability while others, such as alumina trihydrate, are used as fire retardants. Each filler type has different propertie.
English.
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