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- W2093942217 abstract "This review describes ways of predicting quantitatively how an unreinforced thermoplastics part behaves under load or deformation. Creep, stress relaxation, recovery, creep rupture and crack growth data are discussed. A check list identifies requirements for design data. Designing for stiffness devolves on the use of a time- and temperature-dependent modulus (the pseudo-elastic design method), and reference is made to the judicious use of shape, including foam, to achieve high bending stiffness per unit weight. Designing for strength involves either the use of an appropriate failure stress downrated by a safety factor, or the use of creep data together with a maximum strain concept. Where thermoplastics behave in a brittle manner, crack growth problems are allowed for using linear-elastic sharp-crack fracture mechanics. Five numerical examples illustrate the recommended design procedures. The review also refers to the effects of processing on design and on product performance." @default.
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- W2093942217 date "1979-06-01" @default.
- W2093942217 modified "2023-09-26" @default.
- W2093942217 title "Design of load-bearing thermoplastics products" @default.
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- W2093942217 doi "https://doi.org/10.1016/0141-5530(79)90024-4" @default.
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