High-strength Al-Mg-Si aluminum alloy bar for automobile chassis and manufacturing method
A technology of al-mg-si and automobile chassis, which is applied in the field of aluminum alloy rods and its manufacture, can solve the problems of low tensile strength and pre-yield strength, difficulty in meeting the requirements of the carrying capacity of automobile chassis, etc., and achieve strength and plasticity enhancement Effect
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specific Embodiment approach 1
[0021] Specific Embodiment 1: This embodiment is a high-strength Al-Mg-Si aluminum alloy bar for automobile chassis. The mass percentages of each element are as follows: Si is 0.8% to 1.6%, Cu is 0.6% to 1.2%, and Mn is 0.4%-1.0%, Mg 1.0%-2.0%, Zn 0.2%-1.0%, Ti 0.02%-0.05%, Zr 0.06%-0.14%, and the balance Al.
[0022] Advantages of this specific embodiment: the preparation method of aluminum alloy rods for automobile chassis in this specific embodiment strictly controls the percentage of each element in the alloy, and the ingot is subjected to homogenization treatment, so that the second phase in the alloy is fully dissolved into the matrix , the grain structure tends to be uniform, and there is no coarse and uneven second phase, which significantly enhances the strength and plasticity of the aluminum alloy rod after extrusion.
[0023] The aluminum alloy bar for automobile chassis in this specific embodiment is controlled by alloy composition design and heat treatment process...
specific Embodiment approach 2
[0025] Embodiment 2: The difference between this embodiment and Embodiment 1 is that the mass percentages of each element in a high-strength Al-Mg-Si aluminum alloy rod for automobile chassis are as follows: Si is 1.2% to 1.6%, Cu 1.0% to 1.2%, Mn 0.65% to 1.0%, Mg 1.5% to 2.0%, Zn 0.8% to 1.0%, Ti 0.04% to 0.05%, Zr 0.10% to 0.14%, and the balance is Al. Others are the same as the first embodiment.
specific Embodiment approach 3
[0026] Specific embodiment three: present embodiment is a kind of manufacturing method of high-strength Al-Mg-Si aluminum alloy bar material for automobile chassis is completed according to the following steps:
[0027] 1. Weighing:
[0028] According to the mass percentage of each element in aluminum alloy rods for automobile chassis, Si is 0.8% to 1.6%, Cu is 0.6% to 1.2%, Mn is 0.4% to 1.0%, Mg is 1.0% to 2.0%, and Zn is 0.2%. ~1.0%, Ti is 0.02%~0.05%, Zr is 0.06%~0.14%, and the balance is Al. Weigh aluminum-silicon master alloy, aluminum-copper master alloy, aluminum-manganese master alloy, aluminum-zirconium master alloy, pure magnesium ingot, Al-Zn master alloy, Al-Ti master alloy and pure aluminum ingot;
[0029] 2. Melting:
[0030] Add the aluminum-silicon master alloy, aluminum-copper master alloy, aluminum-manganese master alloy, aluminum-zirconium master alloy, pure magnesium ingot, aluminum-zinc master alloy, aluminum-titanium master alloy and pure aluminum ingo...
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