Fan Zhenzhong, Wang Duanzhi, Wang Kunpeng, et al. Structural Design and Technological Development of Large Ring Aluminum Castings[J]. Special Casting & Nonferrous Alloys, 2017,37(7):804-809.
Fan Zhenzhong, Wang Duanzhi, Wang Kunpeng, et al. Structural Design and Technological Development of Large Ring Aluminum Castings[J]. Special Casting & Nonferrous Alloys, 2017,37(7):804-809. DOI: 10.15980/j.tzzz.2017.07.031.
The optimized design of gating system for large-scale ring castings was completed by optimizing the structure
selecting the appropriate material and solidification shrinkage process parameters in combination with the FDM and FEM numerical simulation.The density of oxidized slagis decreases from(12
1
5)/cm2 to(2
3
)/cm
2
and the average diameter is reduced from 2.6 mm to 0.4 mm after the graded melting and refining process.The average grain size is reduced from 176μm to 68μm
and the average tensile strength and elongation are increased about 8%
1
0% and 60% by selecting composite grain refinement
respeotively.The average tensile strength
yield strength and elongation of ZL114 A alloy reach 360 MPa
310 MPa and 8.2%
respectively
based on the multi-stage solid solution and aging process
While the corresponding values of ZL205 Aare 520MPa
460 MPa and 7.4%
and the fractures are characterized by typical dimple rupture.The internal residual stress is reduced from 140MPa
2
50 MPa to 50 MPa
1
05 MPa
and the machining accuracy of high and radial direction is increased about 180% after the cryogenic treatment.In addition the average tensile strength and elongation are increased by 20 MPa