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Titlebook: Nonmetallic Materials and Composites at Low Temperatures; Günther Hartwig,David Evans Book 1986 Springer Science+Business Media New York 1

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,Dynamic Young’s Modulus and Internal Friction in Composite Materials,s and was compared with laser transmittance. The temperature dependence was also measured in temperature range from 100 to 380 K..The strain amplitude dependence in Young’s modulus and internal friction come to notable as the fatigue progresses. The close correlation was revealed between laser trans
发表于 2025-4-1 06:36:43 | 显示全部楼层
Low Temperature Ductile Matrices for Advanced Fiber Composites,are a necessary supplement to metals because of their low electrical and thermal conductivities, the latter being related to strength or stiffness.. Their disadvantage arises from the weak polymeric matrix and results in a low interlaminar shear strength and a low transverse strength. At low tempera
发表于 2025-4-1 12:18:33 | 显示全部楼层
Fabrication of Carbon Fibre Reinforced Thermoplastics Polycarbonate and Polysulfone,ers polycarbonate PC and polysulfone PSU seem to be most suitable for carbon fibre reinforced thermoplastics at cryogenic temperature application because of their highest tensile strains up to 4.2 K.. In this temperature range sufficient adhesion between carbon fibre and thermoplastic matrix is only
发表于 2025-4-1 17:42:59 | 显示全部楼层
Interlaminar Shear Strength of Carbon-Fibre Reinforced Thermoplastics Polycarbonate and Polysulfone mechanical composite properties. Negative side-effect of this shrinkage is the built-up of enormous thermal residual stresses at the fibre-matrix interface and therfore a more brittle fracture behaviour. Matrix systems having some low temperature ductility and high cryogenic fracture strain are nec
发表于 2025-4-1 21:26:16 | 显示全部楼层
,Dynamic Young’s Modulus and Internal Friction in Composite Materials,e dependence of internal friction were found in different FRP of which Young’s modulus are just same at room temperature, because the temperature dependence of internal friction mainly reflects the behavior of matrix in FRP.
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