Acta Metallurgica Sinica (English Letters) ›› 2020, Vol. 33 ›› Issue (2): 281-289.DOI: 10.1007/s40195-019-00941-z
• Orginal Article • Previous Articles Next Articles
Received:
2019-05-13
Revised:
2019-06-15
Online:
2020-02-10
Published:
2020-03-23
Contact:
Zhang Xinfang
Siqi Xiang, Xinfang Zhang. Residual Stress Removal Under Pulsed Electric Current[J]. Acta Metallurgica Sinica (English Letters), 2020, 33(2): 281-289.
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Fig. 2 Surface residual stress of approximately 70 as-quenched samples before and after electropulsing treatment at different current densities: a 3942 A/mm2, b 4482 A/mm2, c 5184 A/mm2, d 5562 A/mm2. Square and circular points with the same serial number correspond to the same sample before and after electropulsing treatment, respectively
Fig. 4 Residual stress reduction in the samples with initial residual stresses ranging from 50 to 500 MPa after electropulsing treatment at different current densities: a 3942 A/mm2, b 4482 A/mm2, c 5184 A/mm2, d 5562 A/mm2
Fig. 6 Plastic strain \(\Delta \varepsilon_{\text{p}}\) versus current density. The solid line is the experimentally obtained relationship between the plastic strain and the current density of six groups of samples, where the initial residual stress of the samples in each group was the same. The dashed lines are the experimental results of Conrad [13]
Fig. 7 TEM images of a as-quenched sample, b sample treated by electropulsing at a current density of 5184 A/mm2. These samples were observed from the [110] direction
Fig. 8 Determination of dislocation line directions. a Image obtained in the [001] beam direction. The dislocation lines are 65° from the horizontal. b Image obtained in the [023] beam direction. The dislocation lines are 58° from the horizontal. The samples were treated by electropulsing at a current density of 5184 A/mm2
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