FATIGUE THRESHOLD IN STEELS - MEAN STRESS AND MICROSTRUCTURE INFLUENCES

被引:10
作者
BULLOCH, JH
机构
[1] Head Office, Electricity Supply Board
关键词
D O I
10.1016/0308-0161(94)90013-2
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Tle purpose of the present paper was (i) to closely investigate the effect of R-ratio on a large variety of microstructures commonly found in low C steels and (ii) to assess the predictability of a selection of approaches or models which deal specifically with R-ratio effects on threshold fatigue stress intensity range values, DELTAK(th). Essentially the extent of the R-ratio response on the DELTAK(th) was found to be significantly microstructure dependent but the trends were by no means simple. Generally the predictions of the various models dealing with R-ratio-DELTAK(th) trends exhibited poor commonality with the experimentally determined DELTAK(th) values. Marked complex yield strength sigma(y) effects on DELTAK(th) were observed at low R-ratio levels (R congruent-to 0), viz. (a) DELTAK(th) levels initially increased with sigma(y), (b) attained a maximum DELTAK(th) value of 9 MPa square-root m which remained constant with increasing sigma(y) level over the range 300-500 MPa and (c) above sigma(y) congruent-to 600 MPa DELTAK(th) decreased with sigma(y).
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页码:103 / 127
页数:25
相关论文
共 34 条
[1]  
Paris, Erdogan, A critical review of crack propagation, Journal of Basic Engineering, 85 D, pp. 528-534, (1963)
[2]  
Masounave, Bailon, The dependence of the threshold stress intensity factor in fatigue of a ferritic steel, Scripta Metallurgica, 9, pp. 723-730, (1975)
[3]  
Beevers, Fatigue crack growth characteristics at low stress intensities of metals & alloys, Metal Science, 11, pp. 362-367, (1977)
[4]  
Klesnil, Lukas, Effect of stress cycle asymmetry on fatigue crack growth, Materials Science and Engineering, 9, pp. 231-240, (1972)
[5]  
Masounave, Bailon, Effect of grain size on the threshold stress intensity factor in fatigue of a ferritic steel, Scripta Metallurgica, 10, pp. 165-170, (1976)
[6]  
Ellyin, Li, Fatigue crack growth in large specimens with various stress ratios, Journal of Pressure Vessel Technology, 106, pp. 255-260, (1984)
[7]  
Usami, Shida, Elastic-plastic analysis of the fatigue limit for a material with small flaws, Fatigue & Fracture of Engineering Materials and Structures, 1, pp. 471-481, (1979)
[8]  
Stephens, Et al., Constant and variable amplitude fatigue behaviour of five cast steels at room temperature, Journal of Engineering Materials and Technology, 106, pp. 25-37, (1984)
[9]  
Ritchie, Influence of microstructure on near-threshold fatigue crack propagation in ultra-strength steel, Metal Science, 11, pp. 368-381, (1977)
[10]  
Ritchie, Near threshold fatigue crack propagation in ultra-high strength steel influence of load ratio and cyclic strength, Journal of Engineering Materials and Technology, 99, pp. 195-204, (1977)