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- W4261856 endingPage "337" @default.
- W4261856 startingPage "231" @default.
- W4261856 abstract "Abstract Short fiber composites cover a broad spectrum of materials ranging from parallel aligned, high fiber content systems which approach advanced continuous fiber laminates in most properties including fatigue, to systems which are only moderately enhanced versions of many engineering thermoplastics used in injection molding and similar processes. Between these extremes are the widely studied chopped strand reinforced polyesters which are commonly used in automotive and other applications where fatigue resistance can be a key property. This chapter brings together the published data on each type of short fiber composite, along with treatment of continuous glass fiber composites. Much of the data has been fitted to relevant models to explore the general trends and bounds on fatigue sensitivity, and to attempt correlation with the dominant material variables such as fiber type, matrix fatigue behavior and interface quality. The mechanisms of wearout or crack advance are discussed and compared with static behavior where possible. Finally, prospects for the development of short fiber composites suitable for complex shapes, but approaching advanced composite fatigue resistance are considered." @default.
- W4261856 created "2016-06-24" @default.
- W4261856 creator A5054706184 @default.
- W4261856 date "1991-01-01" @default.
- W4261856 modified "2023-09-24" @default.
- W4261856 title "Fatigue Behavior of Short Fiber Composite Materials" @default.
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- W4261856 doi "https://doi.org/10.1016/b978-0-444-70507-5.50011-1" @default.
- W4261856 hasPublicationYear "1991" @default.
- W4261856 type Work @default.