High-strength bending-resistant aluminum alloy and preparation process thereof
A preparation process and aluminum alloy technology, which is applied in the field of aluminum alloy preparation, can solve the problems of thick aluminum alloy workpieces and non-light weight, and achieve the effects of improving profile performance, improving tensile strength, and prolonging service life
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Embodiment 1
[0025] This embodiment provides a high-strength and bending-resistant aluminum alloy. The raw materials for the preparation of the aluminum alloy include the following components (by mass percentage): Cu: 3.5%, Mg: 0.13%, Zn: 0.15%, Mn: 0.5% , Cr: 0.25%, Zr: 0.22%, Si: 0.21%, Fe: 0.15%, Ti: 0.4%, Ni: 0.2%, Sr: 0.05%, V: 0.1%, modified rare earth: 2.6%, and the rest are Al.
[0026] This embodiment provides a modified rare earth and its preparation method. The raw materials for the preparation of the modified rare earth include the following components: Y: 40%, Gd: 30%, Lu: 30%, wherein the preparation method of the modified rare earth element Including the following steps:
[0027] 1. Grinding and sieving silicon carbide ceramics to obtain nano silicon carbide particles;
[0028] 2. Get Y, Gd and Lu in the beaker according to the weight ratio, add an appropriate amount of hydrochloric acid in the beaker, stir to make it mix evenly, then add the nano-silicon carbide particles...
Embodiment 2
[0038] This embodiment provides a high-strength and bending-resistant aluminum alloy. The raw materials for the preparation of the aluminum alloy include the following components (by mass percentage): Cu: 3.2%, Mg: 0.14%, Zn: 0.16%, Mn: 0.6% , Cr: 0.27%, Zr: 0.25%, Si: 0.22%, Fe: 0.2%, Ti: 0.3%, Ni: 0.22%, Sr: 0.06%, V: 0.2%, modified rare earth: 2.8%, and the rest are Al.
[0039] This embodiment provides a modified rare earth and its preparation method. The raw materials for the preparation of the modified rare earth include the following components: Y: 45%, Gd: 25%, Lu: 30%, wherein the preparation method of the modified rare earth element Including the following steps:
[0040] 1. Grinding and sieving silicon carbide ceramics to obtain nano silicon carbide particles;
[0041] 2. Get Y, Gd and Lu in the beaker according to the weight ratio, add an appropriate amount of hydrochloric acid in the beaker, stir to make it mix evenly, then add the nano-silicon carbide particles...
Embodiment 3
[0051] This embodiment provides a high-strength and bending-resistant aluminum alloy, the raw materials for the preparation of the aluminum alloy include the following components (by mass percentage): Cu: 4%, Mg: 0.15%, Zn: 0.16%, Mn: 0.6% , Cr: 0.3%, Zr: 0.25%, Si: 0.22%, Fe: 0.2%, Ti: 0.3%, Ni: 0.22%, Sr: 0.06%, V: 0.2%, modified rare earth: 3%, and the rest are Al.
[0052] This embodiment provides a modified rare earth and its preparation method. The raw materials for the preparation of the modified rare earth include the following components: Y: 50%, Gd: 25%, Lu: 25%, wherein the preparation method of the modified rare earth element Including the following steps:
[0053] 1. Grinding and sieving silicon carbide ceramics to obtain nano silicon carbide particles;
[0054] 2. Get Y, Gd and Lu in the beaker according to the weight ratio, add an appropriate amount of hydrochloric acid in the beaker, stir to make it mix evenly, then add the nano-silicon carbide particles prep...
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