Hull transition joint, aluminum steel composite material and production method thereof
A technology of composite materials and transition joints, which is applied in the direction of hulls, hull parts, and shipbuilding, can solve the problems of reduced shear strength and increased thickness of the composite interface, and achieves the effects of good surface quality, low production cost, and excellent bonding performance
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Embodiment 1
[0054] According to this embodiment figure 1 The process flow shown prepares aluminum-steel composite materials for hull transition joints, and the specific process is as follows:
[0055] 11) Prepare a 7mm aluminum alloy plate and a 3mm steel plate. In this embodiment, a 5083 aluminum alloy plate (see Table 1 for its chemical composition) and steel plates shown in Table 4 are used.
[0056] 12) Perform O-state annealing on the aluminum alloy plate and the steel plate, then remove the oil stains on the surface of the aluminum alloy plate and the steel plate, and polish the steel plate.
[0057] 13) Heat the aluminum alloy plate to 300°C, heat the steel plate to 100°C, and then carry out rolling compounding. Single-pass rolling, the rolling reduction rate is 30%.
[0058] 14) Perform stress relief annealing on the rolled aluminum-steel composite material. The annealing temperature is 280°C, and the holding time is 1.5h.
[0059] The average shear strength of the obtained a...
Embodiment 2
[0061] According to this embodiment figure 1 The process flow shown prepares aluminum-steel composite materials for hull transition joints, and the specific process is as follows:
[0062] 21) Prepare a 10mm aluminum alloy plate and a 5mm steel plate. In this embodiment, a 3003 aluminum alloy plate (see Table 2 for its chemical composition) and steel plates shown in Table 4 are used.
[0063] 22) Perform O-state annealing of the aluminum alloy plate and the steel plate, then remove oil stains on the surface of the aluminum alloy plate and the steel plate, and polish the steel plate.
[0064] 23) Heat the aluminum alloy plate to 400°C, heat the steel plate to 200°C, and then carry out rolling compounding. Single-pass rolling, the rolling reduction rate is 35%.
[0065] 24) Perform stress relief annealing on the rolled aluminum-steel composite material. The annealing temperature is 300°C, and the holding time is 1h.
[0066] The average shear strength of the obtained alumin...
Embodiment 3
[0068] According to this embodiment figure 1 The process flow shown prepares aluminum-steel composite materials for hull transition joints, and the specific process is as follows:
[0069] 31) Prepare an 8mm aluminum alloy plate and a 4mm steel plate. In this embodiment, a 5183 aluminum alloy plate (see Table 3 for its chemical composition) and steel plates shown in Table 4 are used.
[0070] 32) Perform O-state annealing of the aluminum alloy plate and the steel plate, then remove oil stains on the surface of the aluminum alloy plate and the steel plate, and polish the steel plate.
[0071] 33) Heat the aluminum alloy plate to 350°C, heat the steel plate to 150°C, and then carry out rolling compounding. Single pass rolling, the rolling reduction rate is 40%.
[0072] 34) Perform stress relief annealing on the rolled aluminum-steel composite material. The annealing temperature is 320°C, and the holding time is 0.5h.
[0073] The average shear strength of the obtained alum...
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