Aluminum silicon alloy series possessing granulated silicon phase and its process
A technology of aluminum-silicon alloy and silicon phase, which is applied in the field of aluminum-silicon alloy series and its preparation, can solve the problems of difficult production process, difficult popularization and application, etc., and achieves the effects of high wear resistance, avoiding technical difficulties and light weight.
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Embodiment 1
[0026]The chemical composition of the electrolytic eutectic aluminum-silicon alloy ingot is: Si 12.12%, Cu 0.88%, Mg 0.91%, Mn 0.01%, Ni 0.81%, Fe 0.25%, Ti 0.09%, Srfigure 1 ). After solution treatment at 500°C for 6 hours, the silicon phase transformed into particles, which were evenly distributed on the aluminum substrate, most of which were less than 5 μm in size. (See figure 2 ).
Embodiment 2
[0028] Electrolytic eutectic Al-Si alloy ingot. Chemical composition and melting process are the same as Example 1. Remelt 3 times. After solid solution treatment at 500°C for 6 hours, the silicon phase transforms into particles, which are evenly distributed on the aluminum substrate, with a slight increase in size, most of which are still less than 10 μm (see image 3 ). It shows that the spheroidization property of the silicon phase of the electrolytic Al-Si alloy gradually weakens with the increase of remelting times.
Embodiment 3
[0030] The chemical composition of the hypereutectic aluminum-silicon alloy is Si 13.7%, Cu 0.98%, Mg 0.55%, Mn 0.49%, Ni 0.30%, Fe 0.26%, Ti 0.08%, and Srfigure 1 Description), Al-25% Si master alloy. Melt in a resistance furnace. Raise the temperature to 720°C and degas with nitrogen. No modifiers are added. After 15 minutes of heat preservation, pour into the metal mold preheated to 300°C. The sample size is 45×50×120mm. In the as-cast metallographic structure of the alloy, no primary silicon phase appears, and the Al-Si eutectic and a large number of dendritic primary aluminum phases are the main components. The silicon phase is metamorphic, unusually fine and distorted. After solution treatment at 500°C for 6 hours, the silicon phase transformed into particles, which were evenly distributed on the aluminum substrate, most of which were less than 5 μm in size. Some larger silicon phases are distributed around the eutectic (see Figure 4 ). It shows that the addition...
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