Fatigue of Engineering Plastics |
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Page 93
Richard W. Hertzberg, John A. Manson. that the precise temperature associated with the B - process is itself a func- tion of test frequency . We find , however , that the associated error in Fig . 3.9d ( i.e. , in the quantity T - T ) is ...
Richard W. Hertzberg, John A. Manson. that the precise temperature associated with the B - process is itself a func- tion of test frequency . We find , however , that the associated error in Fig . 3.9d ( i.e. , in the quantity T - T ) is ...
Page 169
... associated with the test results for the Delrin and Celcon samples that contained growth bands on the fracture surface while much less scatter was associated with the results from the Delrin sample tested at 10 Hz , where no bands were ...
... associated with the test results for the Delrin and Celcon samples that contained growth bands on the fracture surface while much less scatter was associated with the results from the Delrin sample tested at 10 Hz , where no bands were ...
Page 222
... associated with the fiber - matrix interaction . Similar decreases in Ę , may be seen for PMMA in Fig . 5.26b , though the relative effect of temperature is not as consistent . Interestingly , the additional damping peaks , and hence ...
... associated with the fiber - matrix interaction . Similar decreases in Ę , may be seen for PMMA in Fig . 5.26b , though the relative effect of temperature is not as consistent . Interestingly , the additional damping peaks , and hence ...
Contents
Fatigue Crack Propagation | 74 |
Fatigue Fracture Micromechanisms in Engineering Plastics | 146 |
Composite Systems | 184 |
Copyright | |
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ASTM ASTM STP Bucknall carbon cfrp component composites constant crack growth rate crack length crack tip craze crystalline cyclic loading da/dN decrease deformation discontinuous growth bands discussed ductile dynamic mechanical effect elastic elastic modulus energy epoxy fatigue behavior fatigue crack growth fatigue crack propagation fatigue failure fatigue fracture fatigue tests FCP behavior FCP rates fibers fracture mechanics fracture surface fracture toughness frequency sensitivity hysteresis hysteretic heating increase J. A. Manson Kambour Kmax laminates loading cycles M. D. Skibo material matrix mean stress mm/cycle modulus molecular weight notched nylon 66 plastic zone PMMA polyacetal polycarbonate polymeric solids polystyrene properties PVDF R. W. Hertzberg Rabinowitz rubber S-N curve samples Section shear shown in Fig specimen spherulite static strain stress intensity factor stress level striations studies temperature rise tensile test frequency thermal failure tion toughening unnotched values viscoelastic yield strength ΔΚ