Effect of cold work on the irradiation creep of SUS 316L (cas 11134-23-9)
-
Add time:07/21/2019 Source:sciencedirect.com
The network dislocation density in structural materials is one of the important factors of radiation-induced deformation. Hence creep deformation under 17 MeV proton irradiation was examined for SUS 316L with 5% and 25% cold work at ∼300 °C. At relatively low stresses, irradiation creep of 5%CW specimen was larger than that of the 25%CW specimen, and the measured creep rates of both specimens were close to the results of computer simulation. The stress dependencies of the two specimens are roughly similar, and their stress exponents appear to correspond well with the simulation results. At relatively high stresses, the dependence of creep rate on the applied stress was stronger for both cold-worked specimens. Acceleration of thermal creep mechanism due to irradiation might be one of the causes for the increase.
We also recommend Trading Suppliers and Manufacturers of SUS 316L (cas 11134-23-9). Pls Click Website Link as below: cas 11134-23-9 suppliers
Prev:Recycling high purity silicon (cas 11133-78-1) from solar grade silicon (cas 11133-78-1) cutting slurry waste by carbothermic reduction in the electric arc furnace
Next:Enhanced fatigue properties of nanostructured austenitic SUS 316L (cas 11134-23-9) stainless steel) - 【Back】【Close 】【Print】【Add to favorite 】
- Related Information
- Influence of filler metals and welding techniques on the structure–property relationships of Inconel 718 and AISI 316L dissimilar weldments07/29/2019
- Small Punch Creep deformation and rupture behavior of 316L(N) stainless steel07/28/2019
- Giga-cycle Fatigue of AISI 316L After Sensitising of Structure07/27/2019
- Investigation on un-peened and laser shock peened dissimilar weldments of Inconel 600 and AISI 316L fabricated using activated-TIG welding technique07/26/2019
- Keyhole gas tungsten arc welding of AISI 316L stainless steel07/25/2019
- Antibacterial 316L Stainless Steel Containing Silver and Niobium07/24/2019
- Measurement methods for surface oxides on SUS 316L (cas 11134-23-9) in simulated light water reactor coolant environments using synchrotron XRD and XRF07/23/2019
- Influence of macro segregation on hydrogen environment embrittlement of SUS 316L (cas 11134-23-9) stainless steel07/22/2019
- Enhanced fatigue properties of nanostructured austenitic SUS 316L (cas 11134-23-9) stainless steel07/20/2019


