Research on Microstructures and Properties of Steel 40CrNiMoA Homogeneous Electrode Welded Joint
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Research on Microstructures and Properties of Steel 40CrNiMoA Homogeneous Electrode Welded Joint
Special SteelVol. 41, Issue 3, Pages: 59-63(2020)
作者机构:
1. 天津职业技术师范大学天津市高速切削与精密加工重点实验室,天津,300222
2. 中国科学院金属研究所,沈阳,110016
3. 天津重型装备工程研究有限公司,天津,300457
作者简介:
基金信息:
DOI:
CLC:
Received:05 December 2019,
Online First:25 April 2022,
Published:25 April 2020
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刘艳梅, 陈静, 赵美兰, et al. Research on Microstructures and Properties of Steel 40CrNiMoA Homogeneous Electrode Welded Joint[J]. Special Steel, 2020, 41(3): 59-63.
DOI:
刘艳梅, 陈静, 赵美兰, et al. Research on Microstructures and Properties of Steel 40CrNiMoA Homogeneous Electrode Welded Joint[J]. Special Steel, 2020, 41(3): 59-63.DOI:
Research on Microstructures and Properties of Steel 40CrNiMoA Homogeneous Electrode Welded Joint
90A on the microstructure and mechanical properties of steel 40CrNiMoA weld joint is investigated. With the increase of welding current
the appearance quality of the welding seam is better. With the increase of welding current
the temperature of molten pool and the austenite grain size increase
which lead to coarsening of martensite. The microstructure of the weld is martensite and very small amount of residual austenite. The hardness of welding seam is much higher than that of base metal
and the hardness fluctuates greatly. The hardness of the heat affected zone (HAZ) increases gradually from base metal to weld metal. The longitudinal stress at weld center is compressive
while the external compressive stress gradually decreases. The longitudinal stress at the boundary of welding color zone is tensile stress
and the maximum tensile stress is found at this point. The transverse stress of weld center is tensile stress
and it gradually increase outward. The maximum transverse tensile stress is obtained at the boundary of welding color zone
and with increasing the welding current and heat input
the toughness of the material reduces
the ferrite in the structure increases
and the welding residual stress is the cause of brittle fracture. The optimum welding current intensity of 40CrNiMoA homogeneous electrode plate butt welding process is 80 A.