Method for producing multi-metal wear-resistant steel pipe
A production method and multi-metal technology, applied in the field of pipe production and manufacturing, can solve problems such as multi-metal layer collapse, steel pipes are easy to be burned through, and affect product quality, and achieve high strength, excellent wear resistance, and good toughness.
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Embodiment 1
[0012] A method for producing a multi-metal wear-resistant steel pipe, characterized in that it comprises the following steps:
[0013] 1), mixing materials: get the following components by weight and mix evenly: copper-chromium alloy powder 58% (wherein the preferred weight ratio of copper and chromium is 3; 2), iron oxide powder 18%, aluminum powder 23.999%, nano-carbide Silicon fume 0.001%;
[0014] 2), take a seamless steel pipe with a wall thickness of 3 mm for cutting and processing, and cut off an appropriate length;
[0015] 3), the steel pipe in step 2) is fixed on the pipe molding machine, and the steel pipe is rotated at a speed of 1400rpm;
[0016] 4), Centrifugal casting: Feed the mixture powder obtained in step 1) into the inner cavity of the steel pipe, and ignite it, generate high temperature to make each component in a molten state, and distribute evenly along the pipe wall, and centrifugal separation occurs at the same time, until the aluminum The complete ...
Embodiment 2
[0019] Another production method of multi-metal wear-resistant steel pipe is characterized in that it comprises the following steps:
[0020] 1), mixing: take the following components by weight and mix evenly: copper-chromium alloy powder 61%, iron oxide powder 16.997%, aluminum powder 22%, nano-silicon carbide powder 0.003%;
[0021] 2) Take a straight seam steel pipe with a wall thickness of 5mm for cutting and processing, and cut off an appropriate length;
[0022] 3), the steel pipe in step 2) is fixed on the pipe molding machine, and the steel pipe is rotated at a speed of 1200rpm;
[0023] 4), Centrifugal casting: Feed the mixture powder obtained in step 1) into the inner cavity of the steel pipe, and ignite it, generate high temperature to make each component in a molten state, and distribute evenly along the pipe wall, and centrifugal separation occurs at the same time, until the aluminum The complete reaction of the hot agent is completed; the thickness of the multi-...
Embodiment 3
[0026] The third production method of multi-metal wear-resistant steel pipe is characterized in that it comprises the following steps:
[0027] 1), mixing: take the following components by weight and mix evenly: 60% of copper-chromium alloy powder, 16% of iron oxide powder, 23.995% of aluminum powder, and 0.005% of nano-silicon carbide powder;
[0028] 2) Take a seamless steel pipe or a straight seam steel pipe with a wall thickness of 4mm for cutting and processing, and cut off an appropriate length;
[0029] 3), the steel pipe in step 2) is fixed on the pipe molding machine, and the steel pipe is rotated at a speed of 1300rpm;
[0030] 4), Centrifugal casting: Feed the mixture powder obtained in step 1) into the inner cavity of the steel pipe, and ignite it, generate high temperature to make each component in a molten state, and distribute evenly along the pipe wall, and centrifugal separation occurs at the same time, until the aluminum The complete reaction of the hot agen...
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