Preparation method of high-temperature anti-wear Fe-Cr-B-Al alloy
A fe-cr-b-al, high-temperature anti-wear technology, applied in the field of wear-resistant materials, can solve problems such as insufficient high-temperature wear resistance, and achieve the effects of improved anti-wear performance, excellent high-temperature wear resistance, and high hardness
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Embodiment 1
[0021] The high-temperature wear-resistant Fe-Cr-B-Al alloy is prepared by laser cladding, and the specific preparation process steps are:
[0022] ① First, low-carbon ferrochrome powder with a particle size of 100-160 mesh and a mass fraction of 15.0% (the mass fraction of the chemical composition of the low-carbon ferrochrome powder is: 60.93% Cr, 0.24% C, 1.30% Si, 0.036% P, 0.013% S, balance Fe), 12.0% high-carbon ferrochrome powder (the chemical composition mass fraction of high-carbon ferrochrome powder is: 65.48% Cr, 7.72% C, 2.66% Si, 0.021% S, 0.047% P, remaining Fe), 6.0% ferroboron powder (the chemical composition mass fraction of ferroboron powder is: 19.38% B, 0.25% C, 0.84% Si, 0.29% Al, 0.007% S, 0.065% P, the balance Fe), 6.0% metal aluminum powder, 1.5% rare earth ferrosilicon powder (the chemical composition mass fraction of rare earth ferrosilicon powder is: 27.96% RE, 39.93% Si, 2.06% Mn, 3.81% Ca, 1.38% Ti, 0.013% S, 0.028% P, balance Fe), 5.0% Fe 2 o ...
Embodiment 2
[0025] The high-temperature wear-resistant Fe-Cr-B-Al alloy is prepared by laser cladding, and the specific preparation process steps are:
[0026] ① First, low-carbon ferrochrome powder with a particle size of 100-160 mesh and a mass fraction of 12.0% (the mass fraction of the chemical composition of the low-carbon ferrochrome powder is: 64.28% Cr, 0.31% C, 1.29% Si, 0.030% P, 0.018% S, balance Fe), 15.0% high-carbon ferrochrome powder (mass fraction of chemical composition of high-carbon ferrochrome powder is: 63.56% Cr, 8.20% C, 2.69% Si, 0.025% S, 0.044% P, remaining Fe), 8.0% ferroboron powder (the chemical composition mass fraction of ferroboron powder is: 19.05% B, 0.31% C, 1.08% Si, 0.24% Al, 0.008% S, 0.072% P, the balance Fe), 5.0% metal aluminum powder, 2.0% rare earth ferrosilicon powder (the chemical composition mass fraction of rare earth ferrosilicon powder is: 28.84% RE, 40.58% Si, 1.83% Mn, 3.57% Ca, 1.20% Ti, 0.014% S, 0.027% P, balance Fe), 4.0% Fe 2 o 3 ...
Embodiment 3
[0029] The high-temperature wear-resistant Fe-Cr-B-Al alloy is prepared by laser cladding, and the specific preparation process steps are:
[0030] ① First, low-carbon ferrochrome powder with a particle size of 100-160 mesh and a mass fraction of 14.0% (the mass fraction of the chemical composition of the low-carbon ferrochrome powder is: 62.85% Cr, 0.28% C, 0.75% Si, 0.031% P, 0.016% S, balance Fe), 14.0% high-carbon ferrochrome powder (mass fraction of chemical composition of high-carbon ferrochrome powder is: 65.17% Cr, 7.94% C, 2.88% Si, 0.018% S, 0.046% P, remaining Fe), 7.0% ferroboron powder (the chemical composition mass fraction of ferroboron powder is: 19.96% B, 0.35% C, 1.48% Si, 0.15% Al, 0.005% S, 0.049% P, the balance Fe), 5.5% metal aluminum powder, 1.8% rare earth ferrosilicon powder (the chemical composition mass fraction of rare earth ferrosilicon powder is: 29.50% RE, 40.83% Si, 1.37% Mn, 3.01% Ca, 2.26% Ti, 0.013% S, 0.028% P, balance Fe), 4.5% Fe 2 o 3 ...
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