A method of estimating high temperature low cycle fatigue behavior of materials.
Mechanical properties used to estimate low cycle fatigue behavior in creep range of components in high-temperature systems
Engineering topics
Publications and source records attributed to Manson, S. S..
Mechanical properties used to estimate low cycle fatigue behavior in creep range of components in high-temperature systems
Cumulative metal fatigue damage predicted by double linear damage rule with formulas for crack formation and propagation
Double linear damage rule for predicting cumulative fatigue damage, crack initiation and propagation and fatigue life, noting improved accuracy
Method for estimating high temperature low cycle fatigue behavior of materials
Method of estimating high temperature, low-cycle strain fatigue behavior of materials from tensile and stress-rupture properties
Double linear damage rule used in conjunction with crack initiation and propagation equations, applied to cumulative fatigue damage
Crack initiation and propagation formula through fatigue process applied to interface problems, noting creep
Steel fatigue tests for evaluating fatigue life prediction based on double linear damage rule for crack formation and propagation
Text on thermal stress and low-cycle fatigue covering elastic stresses, plastic flow and creep, stress cycling, etc
Cycles required to start crack, and cycles for crack propagation to failure estimated for notched specimen
Fatigue in quasi-brittle materials, fatigue in creep range at elevated temperatures and cumulative fatigue damage
Load cycle prediction for crack initiation and propagation in notched fatigue specimens
Interfaces between fatigue, creep and fracture, discussing separation of fatigue process into crack initiation and crack propagation
Optimization of time-temperature parameters for creep and stress rupture, with application to data from German cooperative long-time creep program
Cyclic-load method of studying crack propagation and fatigue life in material testing
Crack initiation and propagation in notched fatigue specimens of annealed steel and aluminum
Interfaces between fatigue, creep, and fracture
Palmgren-Miner, Manson, Fuller, and Valluri methods of predicting fatigue life in spectrum loading