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Effect of Interlamellar Spacing on the Low Cycle Fatigue Behavior of a Fully Pearlitic Steel

Metallography, Microstructure, and Analysis, 2021
The present study aims at investigating the low cycle fatigue behavior of two fully AISI 1080 pearlitic steels which differed in their interlamellar spacing (72 ± 15 and 143 ± 32 nm). Low cycle fatigue tests were performed under positive strain control at different total strain variations (0.6% ≤ Δet ≤ 1.6%). It is shown that both alloys presented an
Laís Ávila de Oliveira Silva   +5 more
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Effect of interlamellar spacing on the delamination of pearlitic steel wires

Scripta Materialia, 1996
Abstract The increased interlamellar spacing causes the larger sized globular cementite particles in colonies initially aligned transverse to the drawing axis, and results in the occurrence of more frequent and larger sized void formation during drawing.
Bae, CM, Nam, WJ, Lee, CS
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Measurement of fine pearlite interlamellar spacing by atomic force microscopy

Journal of Materials Science, 1997
Pearlite interlamellar spacing is an important parameter controlling ductility and strain hardening of carbon steels. Fine pearlite is the appropriate initial microstructure for drawing high carbon steel with exponential strain hardening rate, leading to high final tensile strengths. The majority of optical and electron microscopy methods for measuring
V. T. L BUONO   +3 more
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Coupling physics in machine learning to predict interlamellar spacing and mechanical properties of high carbon pearlitic steel

Materials Letters, 2021
Abstract The present study proposed an improved composition-structure–property model which incorporates physical features in the machine learning(ML) process. Herein, the physical parameters, the volume fraction of ferrite, cementite and carbides and the transformation temperature of pearlite, were included to the dataset as extra input variables to ...
Ling Qiao, Jingchuan Zhu, Yuan Wang
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A Review of the Data on the Interlamellar Spacing of Pearlite

Metallurgical Transactions A, 1984
After defining interlamellar spacing the various optical and electron optical methods for measuring spacing are outlined. It is clear for both isothermal and forced velocity transformation conditions that pearlite can grow at a constant velocity with a range of true spacings.
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Effect of interlamellar spacing of pearlite on the attenuation of ultrasound

NDT International, 1979
The attenuation of ultrasound was studied in samples of pearlitic steel taken from railway wheels containing between 0.53 and 0.61% carbon. A strong dependence of ultrasonic attenuation on grain size was observed; in addition a relationship was shown between the interlamellar spacing of pearlite in the steel and the attenuation coefficient.
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The correlation of the average true interlamellar spacing of pearlite and the transformation temperature in DIN39Cr4 steel

Metallography, 1981
Abstract In this study, the effect of undercooling on the average interlamellar spacing of pearlite in DIN39Cr4 steel was examined. A new simple procedure is introduced, which is similar to the Swartz-Saltykov method elaborated for spherical phases, and by which the frequency function of the true interlamellar spacing, and therefore, the average true
A. Roósz, Z. Gácsi
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Effect of interlamellar spacing on cementite dissolution during wire drawing of pearlitic steel wires

Scripta Materialia, 2000
Cold drawing is an effective process to increase the strength of fully pearlitic steels with an acceptable level of ductility. Microstructural changes and deformation behavior of the pearlite during wire drawing are closely related to the initial microstructure of the pearlite.
Nam, WJ, Bae, CM, Oh, SJ, Kwon, SJ
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Influence of Pearlite Interlamellar Spacing on the Deformation Behavior and Fracture Characteristics in Spring Steel 60Si2MnA

Applied Mechanics and Materials, 2013
Specific features of plastic deformation and tensile failure of a spring steel with systematically various pearlite fineness obtained by isothermal transformation have been investigated by uniaxial tensile tests and electron microscopes. The results indicated that pearlite interlamellar spacing has an important influence on that.
Chao Lei Zhang, Ya Zheng Liu, Le Yu Zhou
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The effect of interlamellar spacing on strength of pearlite in annealed eutectoid and hypoeutectoid plain carbon steels

Acta Metallurgica et Materialia, 1991
Abstract The strength of pearlite in an eutectoid steel with varying interlamellar spacings and in five hypoeutectoid steels with varying volume fraction of the constituent phases, have been studied using microhardness measurements. In the eutectoid steel, the strength of pearlite derived on its proportionality with microhardness, is found to ...
K.K. Ray, D. Mondal
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