Effect Of Long Term Thermal Aging On The Fracture Toughness Of Austenitic Stainless Steel Base And Weld Metals PDF Download

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Effect of Long-term Thermal Aging on the Fracture Toughness of Austenitic Stainless Steel Base and Weld Metals

Effect of Long-term Thermal Aging on the Fracture Toughness of Austenitic Stainless Steel Base and Weld Metals
Author:
Publisher:
Total Pages: 128
Release: 1995
Genre:
ISBN:

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Compact tension specimens taken from FFTF primary piping materials (Type 316 stainless steel (SS) and 16-8-2 SS weld metal) and from reactor vessel materials (304 SS and 308 SS weld metal) were heated in laboratory furnaces from 100,000 hours. Fracture toughness testing was performed on these specimens, which are 7.62- and 25.4-mm thick, respectively at the aging temperature (482 and 427 degrees). Results were analyzed with the multiple-specimen method. Thermal aging continues to reduce the fracture toughness of FFTF component materials. Results show that thermal aging has a strong effect on the toughness degradation of weld metals, particularly for 16-8-2 SS weld whose aged/unaged Jc ratio is only 0.31 after 100,000-hour aging. The fracture toughness of the 308 and 16-8-2 SS weld metals fluctuated during 20,000 to 50,000-hour aging but deteriorated as the aging time increased to 100,000 hours; the toughness degradation is significant. Fracture control based on a fracture mechanics approach should be considered.


Fracture Mechanics

Fracture Mechanics
Author:
Publisher: ASTM International
Total Pages: 685
Release: 1989
Genre:
ISBN: 0803112505

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Effect of Loading Rate and Thermal Aging on the Fracture Toughness of Stainless-Steel Alloys

Effect of Loading Rate and Thermal Aging on the Fracture Toughness of Stainless-Steel Alloys
Author: WJ. Mills
Publisher:
Total Pages: 17
Release: 1989
Genre: Dynamic
ISBN:

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The effect of loading rate on the fracture toughness of Types 304 and 316 stainless-steel plate and Type 308 weld before and after thermal aging was characterized using both fracture mechanics and Charpy specimens. Aging at 566°C for 10 000 h reduced static Jc initiation toughness values for both wrought and weld metals by 10 to 20%, and tearing moduli were reduced by 20 to 30%. Under semi-dynamic and dynamic loading conditions, the fracture resistance was not decreased below the static response for either unaged or aged materials. The present results also demonstrated that the large degradation in Charpy V-notch impact energy after aging was not representative of the impact resistance for stainless-steel components containing cracks or crack-life defects. Fractographic examinations revealed that the large loss in Charpy energy was associated with aging-induced microstructural changes that substantially decreased the energy required to initiate a crack from a blunt notch. At very slow strain rates, creep crack growth was found to cause a significant degradation in fracture toughness.


Effects of Thermal Aging on Stress Corrosion Cracking and Mechanical Properties of Stainless Steel Weld Metals

Effects of Thermal Aging on Stress Corrosion Cracking and Mechanical Properties of Stainless Steel Weld Metals
Author: Jeff Hixon
Publisher:
Total Pages: 589
Release: 2006
Genre:
ISBN:

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Stress Corrosion Cracking (SCC) in and around primary loop piping welds in Boiling Water Reactors has been observed worldwide as plants continue to operate at temperatures and pressures near 2880C (5500F) and 6.9 MPa (1000 PSI). An experimental program was designed to explore the effect of thermal aging on the SCC crack growth rate in weld materials for type 316 and 304 stainless steels. An autoclave facility was designed and constructed for the measurement of SCC crack growth rates under BWR conditions and testing was underway at the time of this writing. The effects of composition and thermal aging on mechanical properties (i.e. tensile, micro-hardness, nano-hardness, Jic, and Charpy-impact toughness) was in process and initial results show an increase in yield strength and a decrease in fracture toughness after aging for 1000 hours at 430 and 400 *C. Thermal aging results in no discernable changes to the 6-ferrite morphology when viewed optically at 500 X agnifications and in the scanning electron microscope.


Energy Research Abstracts

Energy Research Abstracts
Author:
Publisher:
Total Pages: 664
Release: 1985
Genre: Power resources
ISBN:

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