CREEP BEHAVIOR OF 1Cr0.5Mo STEEL . PART 2 – CHARACTERIZATION AND DATA PARAMETERIZATION IN THE EX-SERVICE CONDITION

Associacao Brasileira de Metalurgia,  Materiais e Mineracao
Levi de Oliveira Bueno
Organization:
Associacao Brasileira de Metalurgia, Materiais e Mineracao
Pages:
8
File Size:
1168 KB
Publication Date:
Aug 16, 2017

Abstract

Constant stress testing was used for characterization of creep behavior of a 1Cr0.5Mo steel plate in the ex-service condition. The tests were performed on creep machines equipped with Andrade-Chalmers type profiles, high sensitivity SLVC transducer extensometry, high stability temperature controllers, and facilities for monitoring the creep curves with an automatic data logging system. Ten creep machines of this type were used in this research, in an experimental work that lasted for one year. Three temperature levels were selected: 538, 565 and 593°C, with stress in the range from 52 to 224 MPa producing rupture times varying from 5 to about 3950h. The creep curves were all followed with great scrutiny using data logger scanning rates which enabled storing thousands of readings in each case. The experimental analysis involved measurements of minimum creep rate, rupture time and final elongation at rupture. The data were analyzed according to the classical phenomenological / physical relations (Norton, Arrhenius, Zenner-Hollomon, Monkman-Grant) and also considering five traditional parameterization methodologies (Larson-Miller, Orr-Sherby-Dorn, Goldhoff-Sherby, Manson- Haferd and Manson-Succop). Comparisons are presented among the possibilities of data extrapolation from five different methodologies. Comparison is also made with creep results obtained on a similar plate of the same material in the virgin condition.
Citation

APA: Levi de Oliveira Bueno  (2017)  CREEP BEHAVIOR OF 1Cr0.5Mo STEEL . PART 2 – CHARACTERIZATION AND DATA PARAMETERIZATION IN THE EX-SERVICE CONDITION

MLA: Levi de Oliveira Bueno CREEP BEHAVIOR OF 1Cr0.5Mo STEEL . PART 2 – CHARACTERIZATION AND DATA PARAMETERIZATION IN THE EX-SERVICE CONDITION. Associacao Brasileira de Metalurgia, Materiais e Mineracao, 2017.

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