2020
DOI: 10.3390/ma13194316
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Numerical Simulation and Experimental Study on Residual Stress in the Curved Surface Forming of 12CrNi2 Alloy Steel by Laser Melting Deposition

Abstract: The performance and service life of the nuclear emergency diesel engine shaft made of 12CrNi2 alloy steel is very important for the safety of nuclear power. Laser melting deposition (LMD) is a challenging camshaft-forming technology due to its high precision, rapid prototyping, and excellent parts performance. However, LMD is an unsteady process under the local action of laser, especially for curved surface forming, which is more likely to generate large residual stress on components, resulting in cracks and o… Show more

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Cited by 8 publications
(4 citation statements)
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“…First, a single-layer, single-track laser cladding experiment is carried out, the height and width of the experimental results are measured, and the lap ratio is calculated with equation (1). According to previous investigations [20][21][22], most of the studies on the overlap rate are in the range of 30% to 70%, and our research is based on this range of experiments.…”
Section: Laser Additive Manufacturing Processmentioning
confidence: 99%
“…First, a single-layer, single-track laser cladding experiment is carried out, the height and width of the experimental results are measured, and the lap ratio is calculated with equation (1). According to previous investigations [20][21][22], most of the studies on the overlap rate are in the range of 30% to 70%, and our research is based on this range of experiments.…”
Section: Laser Additive Manufacturing Processmentioning
confidence: 99%
“…The plasticity during mechanical calculation was considered. The relation is defined as [ 19 ]: where is the yield function, is the yield stress function depend on temperature ( ) and plastic strain ( ).…”
Section: Fem Modelmentioning
confidence: 99%
“…The double ellipsoidal heat source model is shown in Figure 1 . It is widely used for the thermal simulation of the moving heat source in AM [ 19 ]. The movement of the heat source during material deposition generates inconsistent energy distribution.…”
Section: Fem Modelmentioning
confidence: 99%
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