Production process of automobile high-strength shock-absorbing part
A production process and high-strength technology, applied in the field of auto parts, can solve the problems of short service life, easy damage, poor shock absorption effect, etc., and achieve the effect of improving service life, improving mechanical strength, and improving shock absorption and shock absorption effect.
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Embodiment 1
[0034] see Figure 1-5 As shown, the present embodiment is a production process of high-strength shock-absorbing and shock-absorbing parts for automobiles, including the following steps:
[0035] Step 1: Weigh 90 parts of iron powder, 3 parts of carbon fiber, 4 parts of molybdenum disilicide, 1 part of manganese, 0.5 part of titanium dioxide, 2 parts of chromium, and 0.6 part of carbon black according to parts by weight, and set aside;
[0036] Step 2: Mix iron powder, molybdenum disilicide, manganese, titanium dioxide, and chromium evenly to obtain a mixture A, and add the mixture A into the inner cavity of the grinding bin 212 from the inlet and outlet pipe 211 of the wet grinding and drying equipment, and then add The water of 50% by weight of the mixture A is stuffed into the sealing plug 205;
[0037] Step 3: start the driving motor 208, the driving motor 208 runs through the transmission pulley 207 and the transmission ring 206 to drive the grinding cylinder 204 to rota...
Embodiment 2
[0045] see Figure 1-5 As shown, the present embodiment is a production process of high-strength shock-absorbing and shock-absorbing parts for automobiles, including the following steps:
[0046] Step 1: Weigh 110 parts of iron powder, 5 parts of carbon fiber, 6 parts of molybdenum disilicide, 3 parts of manganese, 1.5 parts of titanium dioxide, 4 parts of chromium, and 1.2 parts of carbon black according to parts by weight, and set aside;
[0047] Step 2: Mix iron powder, molybdenum disilicide, manganese, titanium dioxide, and chromium evenly to obtain a mixture A, and add the mixture A into the inner cavity of the grinding bin 212 from the inlet and outlet pipe 211 of the wet grinding and drying equipment, and then add The water of 60% by weight of the mixture A is stuffed into the sealing plug 205;
[0048] Step 3: start the driving motor 208, the driving motor 208 runs through the transmission pulley 207 and the transmission ring 206 to drive the grinding cylinder 204 to ...
Embodiment 3
[0056] see Figure 1-5 As shown, the wet grinding and drying equipment in this embodiment includes a drying mechanism 100 and a grinding and feeding mechanism 200, and one side of the drying mechanism 100 is provided with a grinding and feeding mechanism 200;
[0057] The drying mechanism 100 includes a heating box 101, an input air pipe 102, a blower 103, a conveying air pipe 104, a material inlet 105, a first support frame 106, a second support frame 107, a cyclone separator 108, and a collection box 109 , several electric heating panels are installed in the inner cavity of the heating box 101, and an input air duct 102 is installed on one side of the heating box 101, and the end of the input air duct 102 away from the heating box 101 is connected to The input end of the air blower 103, the output end of the air blower 103 is equipped with a delivery air duct 104, the delivery air duct 104 is installed on the top of the first support frame 106, and the end top of the air del...
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