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Mixing of Rubber 14.0%OFF

Mixing of Rubber

by John F. Funt

  • ISBN

    :  

    9781847354280

  • Publisher

    :  

    iSmithers Rapra Publishing

  • Subject

    :  

    Technology, Engineering, Agriculture, Education, Chemistry

  • Binding

    :  

    PAPERBACK

  • Pages

    :  

    194

  • Year

    :  

    2009

4788.0

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  • Description

    "Introducing the new 'Classic Rapra Reprint' Series. Mixing of Rubber is the first book in a series of Classic Rapra Reprints. We have searched our previously published and successful reference books, and found some real gems! The content is sure to be of interest to those in the Rubber Mixing Industry, both new to industry and those more experience, all will benefit... Since the discovery of vulcanisation in the nineteenth century, rubber has been a major industrial product. From its inception, the use of vulcanising agents, reinforcing fillers and other additives has been a major feature of the rubber industry. Innumerable articles and texts attest to the chemist's skill in balancing the chemical and physical properties of the manufactured products. Mixing as a general operation may be considered as three basic processes occurring simultaneously. Simple mixing ensures t h a t the mixture has a uniform composition throughout its bulk, at least when viewed on a scale large compared to the size of the individual particles. In the case of solids blending (Chapter 11), the particle size need not change, but the distribution of particles throughout the mixture approaches a random distribution. If the shear forces are sufficiently large, particles may fracture, as in dispersive mixing, and the polymer may flow, as in laminar mixing (Chapter 111). In both of these processes, the size of the original particles or fluid elements changes because o f t h e mixing process. Then the properties of the mixture depend upon the size of the basic structures reached during mixing. In the case of laminar mixing, the size may be the striation thickness of a hypothetical fluid element, which is inversely related to the total shear strain. If relatively strong particles, or aggregates of particles, are present, these must be reduced in size by the action of forces generated by flow in the mixer. Then the size is the actual additive particle size.

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