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Properties of plastic materials

Poly(vinyl chloride) as previously discussed in Sec. 10.3, Formulas and Key Properties of Plastic Materials, has the following structures ... [Pg.1065]

An extensive new Section 10 is devoted to polymers, rubbers, fats, oils, and waxes. A discussion of polymers and rubbers is followed by the formulas and key properties of plastic materials. Eor each member and type of the plastic families there is a tabulation of their physical, electrical, mechanical, and thermal properties and characteristics. A similar treatment is accorded the various types of rubber materials. Chemical resistance and gas permeability constants are also given for rubbers and plastics. The section concludes with various constants of fats, oils, and waxes. [Pg.1287]

A crude approximation to computer-based systems can be achieved by considering tables of properties of plastics materials such as those published annually in the Modern Plastics Encyclopaedia. Since the tables are to be marked, the following exercise should be carried out on photocopies ... [Pg.895]

The mechanical properties of plastics materials may often be considerably enhanced by embedding fibrous materials in the polymer matrix. Whilst such techniques have been applied to thermoplastics the greatest developents have taken place with the thermosetting plastics. The most common reinforcing materials are glass and cotton fibres but many other materials ranging from paper to carbon fibre are used. The fibres normally have moduli of elasticity substantially greater than shown by the resin so that under tensile stress much of the load is borne by the fibre. The modulus of the composite is intermediate to that of the fibre and that of the resin. [Pg.921]

A number of areas in which plastics are used in electrical and electronic design have been covered there are many more. Examples include fiber optics, computer hardware and software, radomes for radar transmitters, sound transmitters, and appliances. Reviewed were the basic use and behavior for plastics as an insulator or as a dielectric material and applying design parameters. The effect of field intensity, frequency, environmental effects, temperature, and time were reviewed as part of the design process. Several special applications for plastics based on intrinsic properties of plastics materials were also reviewed. [Pg.229]

Viscoelasticity of metal This subject provides an introduction on the viscoelasticity of metals that has no bearing or relationship with viscoelastic properties of plastic materials. The aim is to have the reader recognize that the complex thermodynamic foundations of the theory of viscoplasticity exist with metals. There have been developments in the thermodynamic approach to combined treatment of rheologic and plastic phenomena and to construct a thermodynamic theory non-linear viscoplastic material that may be used to describe the behavior of metals under dynamic loads. [Pg.645]

Heat distortion temperature is one important property of plastic materials which can be improved by the incorporation of filler. Table 8.4 shows what... [Pg.444]

Plasticizers are the most voluminous additives of semi-rigid and flexible PVC formulations. Their properties, mechanisms of action, and effect on properties of plasticized materials have been extensively discussed in a specialized monographic source, and data on different grades are included in the plasticizer database. ... [Pg.45]

When articles hitherto produced from classic materials (such as wood or metal) are to be made by the injection molding process, it is advisable, to give serious consideration to the special properties of plastics materials, as well as the more salient points of injection molding as a production method. This plastics-oriented procedure requires an understanding of the basic principles of the manufacturing and production processes involved, and also of the plastics material s behaviour. The book provides a comprehensive overview of the principles involved in injection molding. [Pg.4]

THERMOPHYSICAL PROPERTIES OF PLASTIC MATERIALS AND COMPOSITES TO LIQUID HYDROGEN TEMPERATURE /423 F/. [Pg.138]

THE THERMOPHYSICAL PROPERTIES OF PLASTIC MATERIALS FROM MINUS 50 TO OVER 700 F. PART II. REPTFOR15 JAN. 64 TO 22 JAN. 65. [Pg.143]

Tensile testing machines are usually equipped with chambers, which maintain low or elevated temperatures. This is specially important in testing properties of plasticized materials. The standard also describes a machine for determination of tensile set. Equipment required to cut ring samples and fixtures needed to use them in testing equipment are also discussed in detail. Standard also evaluates within and between laboratory testing preei-sion. [Pg.89]


See other pages where Properties of plastic materials is mentioned: [Pg.1005]    [Pg.1012]    [Pg.131]    [Pg.74]    [Pg.1274]    [Pg.1281]    [Pg.131]    [Pg.892]    [Pg.900]    [Pg.323]    [Pg.237]    [Pg.74]    [Pg.218]    [Pg.123]    [Pg.53]    [Pg.161]    [Pg.193]    [Pg.194]    [Pg.196]    [Pg.198]    [Pg.200]    [Pg.202]    [Pg.204]    [Pg.204]    [Pg.206]    [Pg.208]    [Pg.210]    [Pg.212]    [Pg.214]   
See also in sourсe #XX -- [ Pg.4 , Pg.50 ]

See also in sourсe #XX -- [ Pg.4 , Pg.50 ]




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