Isothermal die forging technology for large-size high-strength aluminum alloy parts
A technology for isothermal die forging of aluminum alloy parts, applied in the field of warm die forging technology, can solve problems such as increased die damage, uneven structure, increased cost, etc., and achieves reduced deformation difficulty, uniform grain distribution, and easy deformation Effect
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Embodiment 1
[0046] An isothermal die forging process for large-scale high-strength aluminum alloy parts. The size is Φ800×160mm, and the composition is (wt.%): zinc (Zn) 6-6.5, magnesium (Mg) 2-2.8, copper (Cu) 1.8~2.3, zirconium (Zr) 0.1~0.12, chromium (Cr)≤0.04, manganese (Mn)≤0.12, titanium (Ti)≤0.05, silicon (Si)≤0.10, iron (Fe)≤0.12, the balance is The large-size high-strength aluminum alloy forging billet is subjected to isothermal die forging, and the diameter is 820mm, the minimum wall thickness is 20mm, the maximum is 100mm, and the projected area reaches 0.6m 2 aluminum alloy parts; including the following steps:
[0047] 1. Machining and flaw detection of billets: Remove visible cracks and oxide scales on the surface of large-size aluminum alloy forging cakes and process them into billets with a size of Φ800×160mm. Ultrasonic waves are used to detect flaws on the billets to ensure that there are no obvious cracks and shrinkage inside the billets. Holes, inclusions and other de...
Embodiment 2
[0054] An isothermal die forging process for large-scale high-strength aluminum alloy parts. The size is Φ800×180mm, and the composition is (wt.%): zinc (Zn) 6-6.5, magnesium (Mg) 2-2.8, copper (Cu) 1.8~2.3, zirconium (Zr) 0.1~0.12, chromium (Cr)≤0.04, manganese (Mn)≤0.12, titanium (Ti)≤0.05, silicon (Si)≤0.10, iron (Fe)≤0.12, the balance is The large-sized high-strength aluminum alloy forging cake of aluminum is subjected to isothermal die forging to prepare a diameter of 900mm, a minimum wall thickness of 20mm, a maximum of 100mm, and a maximum horizontal projection area of 0.7m 2 aluminum alloy parts; including the following steps:
[0055] 1. Machining and flaw detection of billets: Remove visible cracks and oxide scales on the surface of large-size aluminum alloy forging cakes and process them into billets with a size of Φ800×180mm. Ultrasonic waves are used to detect flaws on the billets to ensure that there are no obvious cracks and shrinkage inside the billets. Hole...
Embodiment 3
[0062] An isothermal die forging process for large-scale high-strength aluminum alloy parts. The size is Φ1000×160mm, and the composition is (wt.%): zinc (Zn) 6-6.5, magnesium (Mg) 2-2.8, copper (Cu) 1.8~2.3, zirconium (Zr) 0.1~0.12, chromium (Cr)≤0.04, manganese (Mn)≤0.12, titanium (Ti)≤0.05, silicon (Si)≤0.10, iron (Fe)≤0.12, the balance is The large-sized high-strength aluminum alloy forging cakes of aluminum are subjected to isothermal die forging, and the diameter is 1000mm, the minimum wall thickness is 20mm, the maximum is 100mm, and the maximum horizontal projection area is 0.8m 2 aluminum alloy parts; including the following steps:
[0063] 1. Machining and flaw detection of billets: Remove visible cracks and oxide scales on the surface of large-size aluminum alloy forging cakes and process them into billets with a size of Φ820×160mm. Ultrasonic waves are used to detect flaws on the billets to ensure that there are no obvious cracks and shrinkage inside the billets. ...
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