The invention discloses a high-Zn, high-Mg and low-Cu ultrahigh-strength 
corrosion-resisting aluminum 
alloy and a heat treatment method. The 
alloy comprises the following components by 
mass percentage: 6.5-8.3% of Zn, 2.3-3.0% of Mg, 0.8-1.2% of Cu, 0.1-0.2% of Zr, less than 0.15% of Fe, less than 0.1% of Si, and the balance of Al. A preparation method of the 
alloy comprises the steps of blending, 
smelting, semi-
continuous casting, homogenizing, 
thermoplastic deformation, short time 
solid solution, and 
ageing heat treatment. For the high-Zn, high-Mg and low-Cu ultrahigh-strength 
corrosion-resisting aluminum alloy prepared with the method, the 
hardness (HV) is 185-209, the tensile strength sigma b is greater than or equal to 650Mpa, the percentage elongation 
delta is greater than or equal to 7%, the pitting resistance is high, the cast 
ingot yield is high, and the stress 
corrosion resistance is further improved while the 
mechanical property is kept after multiple regression reageing treatment. The alloy and the heat treatment method solve the problems that the cast 
ingot yield in the existing high-
copper Al-Zn-Mg-Cu ultrahigh-strength 
aluminium alloy is low, and the strength, 
toughness and corrosion resistance cannot be compromised. The heat treatment method is simple to operate, and the industrial production is facilitated.