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cyclic loads

1-14 of 14 Books

View Cyclic cryogenic thermal-mechanical testing of an X-33/RLV liquid oxygen tank concept By H. Kevin Rivers

Cyclic cryogenic thermal-mechanical testing of an X-33/RLV liquid oxygen tank concept

Cyclic cryogenic thermal-mechanical testing of an X-33/RLV liquid oxygen tank concept

By H. Kevin Rivers

View Fatigue life methodology for tapered composite flexbeam laminates By Gretchen B. Murri

Fatigue life methodology for tapered composite flexbeam laminates

Fatigue life methodology for tapered composite flexbeam laminates

By Gretchen B. Murri

View Mixed-mode cyclic debonding of adhesively bonded composite joints By Mohammad Ali Rezaizadeh

Mixed-mode cyclic debonding of adhesively bonded composite joints

Mixed-mode cyclic debonding of adhesively bonded composite joints

By Mohammad Ali Rezaizadeh

View Cyclic loads tests of carbon involute solid rocket motor outer boot ring segments By Rafiq Ahmed

Cyclic loads tests of carbon involute solid rocket motor outer boot ring segments

Cyclic loads tests of carbon involute solid rocket motor outer boot ring segments

By Rafiq Ahmed

View Local strain redistribution corrections for a simplified inelastic analysis procedure based on an elastic finite-element analysis By Albert Kaufman

Local strain redistribution corrections for a simplified inelastic analysis procedure based on an elastic finite-element analysis

Local strain redistribution corrections for a simplified inelastic analysis procedure based on an elastic finite-element analysis

By Albert Kaufman

View Cyclic creep analysis from elastic finite-element solutions By A. Ḳaʾufman

Cyclic creep analysis from elastic finite-element solutions

Cyclic creep analysis from elastic finite-element solutions

By A. Ḳaʾufman

View Ultrasonic stress wave characterization of composite materials By John C. Duke

Ultrasonic stress wave characterization of composite materials

Ultrasonic stress wave characterization of composite materials

By John C. Duke

View Probabilistic material strength degradation model for Inconel 718 components subjected to high temperature, high-cycle and low-cycle mechanical fatigue, creep, and thermal fatigue effects By Callie Corinne Scheidt Bast

Probabilistic material strength degradation model for Inconel 718 components subjected to high temperature, high-cycle and low-cycle mechanical fatigue, creep, and thermal fatigue effects

Probabilistic material strength degradation model for Inconel 718 components subjected to high temperature, high-cycle and low-cycle mechanical fatigue, creep, and thermal fatigue effects

By Callie Corinne Scheidt Bast

View Prediction of microcracking in composite laminates under thermomechanical loading By Jason R. Maddocks

Prediction of microcracking in composite laminates under thermomechanical loading

Prediction of microcracking in composite laminates under thermomechanical loading

By Jason R. Maddocks

View Characterization of failure processes in tungsten copper composites under fatigue loading conditions By Kim, Yŏng-suk.

Characterization of failure processes in tungsten copper composites under fatigue loading conditions

Characterization of failure processes in tungsten copper composites under fatigue loading conditions

By Kim, Yŏng-suk.

View Rhenium material properties By James A. Biaglow

Rhenium material properties

Rhenium material properties

By James A. Biaglow

View Characterization of damage progression in SCS-6/Timetal 21S [0]₄ under thermomechanical fatigue loadings By Michael G. Castelli

Characterization of damage progression in SCS-6/Timetal 21S [0]₄ under thermomechanical fatigue loadings

Characterization of damage progression in SCS-6/Timetal 21S [0]₄ under thermomechanical fatigue loadings

By Michael G. Castelli

View Probabilistic material strength degradation model for Iconel 718 components subjected to high temperature, high-cycle and low-cycle mechanical fatigue, creep, and thermal fatigue effects By Callie Corinne Scheidt Bast

Probabilistic material strength degradation model for Iconel 718 components subjected to high temperature, high-cycle and low-cycle mechanical fatigue, creep, and thermal fatigue effects

Probabilistic material strength degradation model for Iconel 718 components subjected to high temperature, high-cycle and low-cycle mechanical fatigue, creep, and thermal fatigue effects

By Callie Corinne Scheidt Bast

View A review of fracture mechanics life technology By Philip M. Besuner

A review of fracture mechanics life technology

A review of fracture mechanics life technology

By Philip M. Besuner