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Fatigue life isothermal

Isothermal Fatigue Life—Influence of Maximum Fatigue Stress... [Pg.197]

Influence of Mean Stress on Isothermal Fatigue Life... [Pg.226]

Frequency and hold time effects have also been evaluated for the isothermal fatigue of 96.5Sn-3.5Ag solder (Ref 43). The number of cycles-to-failure, Nf, does not appear to be strongly dependent upon frequencies that exceed approximately 10 Hz. A similar trend was observed with file 60Sn-40Pb solder however, in the latter case, a loss of fatigue life was observed when frequencies were less than approximately 10 " Hz where the material entered the low-cycle fatigue regime (Ref 1, 32). Unfortunately, such a frequency benchmark has not been determined for the Sn-Ag Sn-Ag-Cu solders. [Pg.81]

Kim GH, Lu H. Accelerated fatigue life testing of polycarbonate at low frequency under isothermal condition. Polym Test 2008 27(1) 114—21. [Pg.26]

Sn-3.5Ag-(0-2)Cu Crack propagation, ductility, fatigue life, and isothermal fatigue life 31... [Pg.790]

Fatigue failure life defined at 50% reduction of maximum tensile Hz load for a bulk specimen subjected to isothermal fatigue loading. [Pg.193]


See other pages where Fatigue life isothermal is mentioned: [Pg.190]    [Pg.238]    [Pg.819]    [Pg.222]    [Pg.292]    [Pg.294]    [Pg.812]    [Pg.516]    [Pg.86]    [Pg.29]   
See also in sourсe #XX -- [ Pg.269 , Pg.270 , Pg.271 , Pg.272 , Pg.273 , Pg.274 , Pg.275 , Pg.276 , Pg.277 , Pg.278 , Pg.279 , Pg.280 , Pg.281 , Pg.282 , Pg.283 , Pg.284 , Pg.285 , Pg.286 ]




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