Use of the Larson-Miller parameter to study the influence of ageing on the hardness of cold-worked austenitic stainless steel. Vasudevan, M., Venkadesan, S., Sivaprasad, P. V., & Mannan, S. L. Journal of Nuclear Materials, 211(3):251–255, August, 1994. Paper doi abstract bibtex The Larson-Miller parameter (L-M parameter) was used for studying the influence of thermal ageing on hardness of cold-worked titanium-modified 15Cr-15Ni-2.2Mo austenitic stainless steel, which is commonly referred to as alloy D-9. The samples were given 15–22.5% prior cold work and aged in the temperature range 873–1223 K for durations ranging from 0.25–4800 h. Using a non-linear regression analysis of hardness data as a function of cold-work level and ageing conditions, the optimum cold-work level for alloy D-9 has been determined to be 20%.
@article{vasudevan_use_1994,
title = {Use of the {Larson}-{Miller} parameter to study the influence of ageing on the hardness of cold-worked austenitic stainless steel},
volume = {211},
issn = {0022-3115},
url = {https://www.sciencedirect.com/science/article/pii/0022311594903557},
doi = {10.1016/0022-3115(94)90355-7},
abstract = {The Larson-Miller parameter (L-M parameter) was used for studying the influence of thermal ageing on hardness of cold-worked titanium-modified 15Cr-15Ni-2.2Mo austenitic stainless steel, which is commonly referred to as alloy D-9. The samples were given 15–22.5\% prior cold work and aged in the temperature range 873–1223 K for durations ranging from 0.25–4800 h. Using a non-linear regression analysis of hardness data as a function of cold-work level and ageing conditions, the optimum cold-work level for alloy D-9 has been determined to be 20\%.},
language = {en},
number = {3},
urldate = {2022-03-05},
journal = {Journal of Nuclear Materials},
author = {Vasudevan, M. and Venkadesan, S. and Sivaprasad, P. V. and Mannan, S. L.},
month = aug,
year = {1994},
pages = {251--255},
}
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