2023 Boeing IRAD Testing: Difference between revisions

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(Created page with "{| class="wikitable" style="width: 50%;" |- |'''Point of Contact:''' ''Moises Ocasio'' |- |'''Description:''' A spike overload test was conducted on 7075-T6 to improve the understanding of crack growth rate constraint-loss behavior as a function of thickness and finite width effects. |- |'''Data that is made available:''' *“[https://residualstress.org/images/8/86/IndividualP11_-_forERSI.xlsx individualP11 - forERSI.xlsx]” = digitized markers along with the numeric...")
 
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|'''Data that is made available:'''
|'''Data that is made available:'''
*“[https://residualstress.org/images/8/86/IndividualP11_-_forERSI.xlsx individualP11 - forERSI.xlsx]” = digitized markers along with the numerical solutions for specimen marked PE-1-1
*7075-T6 Spike Overload Test
*“[https://residualstress.org/images/5/5d/IndividualP12_-_forERSI.xlsx individualP12 - forERSI.xlsx]” = digitized markers along with the numerical solutions for specimen marked PE-1-2
*“[https://residualstress.org/images/1/13/IndividualP31_-_forERSI.xlsx individualP31 - forERSI.xlsx]” = digitized markers along with the numerical solutions for specimen marked PE-3-1
*“[https://residualstress.org/images/6/62/IndividualP22_-_forERSI.xlsx individualP22 - forERSI.xlsx]” = digitized markers along with the numerical solutions for specimen marked PE-2-2
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|'''Reference'''
 
* [https://residualstress.org/images/1/15/LoghinHarter_PVP2023-101256_v4.pdf Adrian Loghin, James Harter, Validation of Fatigue Crack Growth Modeling Solutions using Measurements Collected on API X65 Piping Specimens, PVP2023-101256, ASME PVP Proceedings, 2023.]
* Reference for the experimental measurements used in the validation: Li, Z, Jiang, X., Hopman, H, Liu, Z., An investigation on the circumferential surface crack growth in steel pipes subjected to fatigue bending, Theoretical and Applied Fracture Mechanics, pp. 205, 2020.
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Revision as of 14:56, 7 August 2024

Point of Contact: Moises Ocasio
Description: A spike overload test was conducted on 7075-T6 to improve the understanding of crack growth rate constraint-loss behavior as a function of thickness and finite width effects.
Data that is made available:
  • 7075-T6 Spike Overload Test