Automobile axle forging die
A technology of automobile half shaft and forging, which is applied in the direction of forging/pressing/hammer device, forging/pressing/hammering machinery, manufacturing tools, etc. Fatigue cracks and other problems, to achieve long service life, reduce thermal sensitivity, and uniform structure
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Embodiment 1
[0042] Automobile semi-axis forging dies are smelted from the following materials in parts by weight: 90 parts of 45 steel, 0.8 parts of ferrosilicon, 0.6 parts of ferro-vanadium, 5 parts of tungsten carbide powder, 0.6 parts of medium-carbon ferromanganese, and 0.05 parts of low-carbon ferrochrome share.
[0043] The silicon content of the ferrosilicon is 80%.
[0044] The vanadium content of the ferrovanadium is 60%.
[0045] The manganese content of the medium carbon ferromanganese is 80%.
[0046] The chromium content of the low-carbon ferrochrome is 75%.
Embodiment 2
[0048] Automobile semi-axis forging molds are smelted from the following materials in parts by weight: 110 parts of 45 steel, 1.5 parts of ferrosilicon, 1.2 parts of ferro-vanadium, 10 parts of tungsten carbide powder, 1 part of medium-carbon ferromanganese, and 0.1 parts of low-carbon ferrochrome share.
[0049] The silicon content of the ferrosilicon is 74%.
[0050] The vanadium content of the ferrovanadium is 50%.
[0051] The manganese content of the medium carbon ferromanganese is 75%.
[0052] The chromium content of the low-carbon ferrochrome is 63%.
Embodiment 3
[0054] Automobile semi-axis forging dies are smelted from the following materials in parts by weight: 95 parts of 45 steel, 1.1 parts of ferrosilicon, 0.8 parts of ferro-vanadium, 6 parts of tungsten carbide powder, 0.7 parts of medium-carbon ferromanganese, and 0.07 parts of low-carbon ferrochrome share.
[0055] The silicon content of the ferrosilicon is 76%.
[0056] The vanadium content of the ferrovanadium is 55%.
[0057] The manganese content of the medium carbon ferromanganese is 78%.
[0058] The chromium content of the low-carbon ferrochrome is 70%.
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