A device for preparing semi-solid slurry and rheological deformation by splitting and merging runners
A semi-solid slurry and rheological forming technology, which is applied in the field of equipment for preparing semi-solid slurry and rheological forming by splitting and converging runners, can solve problems such as disadvantages, and achieve lower preparation costs, lower production costs, and reduced production costs. The effect of preparing energy consumption
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example 1
[0028] (1) The liquidus line of the ZL101A aluminum alloy used in the test is 615°C. Melt the alloy in a crucible resistance furnace. When the temperature of the alloy reaches about 720°C, use a bell jar to press the dried hexachloroethane into the melt The lower part (the addition amount is 0.5% of the total weight of the alloy liquid) is gently shaken to carry out the degassing and slag removal refining treatment of the alloy melt, and finally the temperature of the alloy melt is lowered to 630°C for heat preservation.
[0029] (2) Set the temperature of the diverging and converging runner of the device of the present invention to 200°C, the angle between the diverging and converging runner and the horizon is 45°, and pour the molten alloy melted in the previous step into the diverging and converging channel through the feed port , the alloy melt flows from top to bottom along the sprue wall, first diverging and then converging, under the sufficient cooling of the cylinder wa...
example 2
[0031] (1) The liquidus temperature of the A356 aluminum alloy used in the test is 615°C. The aluminum alloy ingot is put into a crucible resistance furnace with a preheating temperature of 400°C. After the temperature of the alloy liquid reaches 700°C, it is refined. Press the dried hexachloroethane into the lower part of the melt (the amount added is 0.5% of the total weight of the alloy liquid), and shake it gently to degas the alloy melt, remove slag and refine it, and finally melt the alloy Body temperature drops to 640°C for heat preservation.
[0032] (2) Combine the two half-molds of the diverging and converging runners, set the temperature of the diverging and converging runners to 150°C, and the angle between the diverging and converging runners and the horizon to be 60°, and pass the molten alloy smelted in the previous step through the feed The mouth is poured into the diversion and confluence channel, and the alloy melt flows from top to bottom along the runner wa...
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