A kind of alloy material used for the surface of the axle frame and the axle frame
An alloy material, axle technology, applied in the direction of additive processing, vehicle components, transportation and packaging, etc., can solve the problems of general hardness and general wear resistance of the axle coating, and achieve long service life and good wear resistance. , the effect of high hardness
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Embodiment 1
[0027] The embodiment of the present invention provides an alloy material for the surface of the axle frame and the axle frame. The raw materials for preparing the alloy material are composed of the following components: 650g of aluminum oxide, 250g of titanium nitride, 150g of zirconium dioxide, 350g of TPU, 30g of iron powder, 5g of lutetium powder, the particle diameters of aluminum oxide, titanium nitride, zirconium dioxide, lutetium powder and iron powder are all 50-250 microns. The particle size of TPU powder is 50-500 microns.
[0028] Stir and mix the above raw materials evenly to obtain the alloy material for the surface of the axle frame, add the alloy material to the 3D printer and apply the alloy material on the surface of the axle frame by using 3D printing technology to obtain the axle frame provided by the present invention.
Embodiment 2
[0030] The embodiment of the present invention provides an alloy material for the surface of the axle frame and the axle frame. The raw materials for preparing the alloy material are composed of the following components: 850g of aluminum oxide, 200g of titanium nitride, 250g of zirconium dioxide, 200g of TPU, 100g of iron powder, 22g of ytterbium powder, the particle diameters of aluminum oxide, titanium nitride, zirconium dioxide, iron powder and ytterbium powder are all 50-250 microns. The particle size of TPU powder is 50-500 microns.
[0031] Stir and mix the above raw materials evenly to obtain the alloy material for the surface of the axle frame, add the alloy material to the 3D printer and apply the alloy material on the surface of the axle frame by using 3D printing technology to obtain the axle frame provided by the present invention.
Embodiment 3
[0033] The embodiment of the present invention provides an alloy material for the surface of the axle frame and the axle frame. The raw material for preparing the alloy material is composed of the following components: 700g of aluminum oxide, 240g of titanium nitride, 170g of zirconium dioxide, 330g of TPU, 50g of iron powder, 20g of yttrium powder, 10g of ferric oxide, aluminum oxide, titanium nitride, zirconium dioxide, yttrium powder and iron powder have a particle size of 50-250 microns. The particle size of TPU powder is 50-500 microns.
[0034]Stir and mix the above raw materials evenly to obtain the alloy material for the surface of the axle frame, add the alloy material to the 3D printer and apply the alloy material on the surface of the axle frame by using 3D printing technology to obtain the axle frame provided by the present invention.
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Abstract
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