Fatigue of engineering plastics |
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Page 48
Richard W. Hertzberg, John A. Manson. Fig. 2.9 Temperature increase resulting
from uniaxial cycling at 5 Hz with load control, sine wave and zero mean stress in
polyacetal. Y, 15MPa; x , 16 MPa; A, 17.4 MPa; O, 19.7 MPa; V, 21.6 MPa; •.
Richard W. Hertzberg, John A. Manson. Fig. 2.9 Temperature increase resulting
from uniaxial cycling at 5 Hz with load control, sine wave and zero mean stress in
polyacetal. Y, 15MPa; x , 16 MPa; A, 17.4 MPa; O, 19.7 MPa; V, 21.6 MPa; •.
Page 167
4.16 Dependence of band size on AK for six amorphous polymers and two
grades of polyacetal (Celcon and Delrin) [R. W. Hertzberg, M. D. Skibo, and J. A.
Manson, J. Mater. Sci. 13, 1978, 1038, Chapman and Hall, Ltd.]. discontinuous
growth ...
4.16 Dependence of band size on AK for six amorphous polymers and two
grades of polyacetal (Celcon and Delrin) [R. W. Hertzberg, M. D. Skibo, and J. A.
Manson, J. Mater. Sci. 13, 1978, 1038, Chapman and Hall, Ltd.]. discontinuous
growth ...
Page 173
Richard W. Hertzberg, John A. Manson. Fig. 4.21 Fatigue fracture in polyacetal (
Delrin). (a) Cracking through spherulite; (b) micrograph of polished and etched
surface [R. W. Hertzberg, M. D. Skibo, and J. A. Manson, J. Mater. Sci. 13, 1978 ...
Richard W. Hertzberg, John A. Manson. Fig. 4.21 Fatigue fracture in polyacetal (
Delrin). (a) Cracking through spherulite; (b) micrograph of polished and etched
surface [R. W. Hertzberg, M. D. Skibo, and J. A. Manson, J. Mater. Sci. 13, 1978 ...
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Contents
Fatigue Crack Propagation | 74 |
Fatigue Fracture Micromechanisms in Engineering Plastics | 146 |
Composite Systems | 184 |
Copyright | |
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adhesive amplitude ASTM ASTM STP Beardmore Bucknall carbon cfrp component Composite Materials composites constant crack growth rates crack length crack tip craze crystalline cyclic loading da/dN decrease deformation discontinuous growth bands discussed ductile 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 flaw fracture mechanics fracture surface fracture toughness frequency sensitivity hysteresis hysteretic heating increase J. A. Manson Kambour laminates loading cycles M. D. Skibo material matrix mean stress 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 semicrystalline shown in Fig specimen spherulite static stress intensity factor stress level striation studies temperature rise tensile test frequency thermal failure tion toughening unnotched values viscoelastic yield strength