A kind of preparation method of carbon-containing high-entropy alloy composite material
A high-entropy alloy and composite material technology, applied in additive manufacturing, additive processing, energy efficiency improvement and other directions, can solve problems such as reducing product accuracy, weakening the significance of selective laser melting engineering, increasing industrial energy consumption, etc., to improve strength , without loss of plasticity, the effect of fast forming speed
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Embodiment 1
[0040] The invention provides a method for preparing a carbon-containing high-entropy alloy composite material, comprising the following steps:
[0041] (1) Fe, Co, Cr, Ni metal elements and chromium carbide are selected as raw materials, the atomic ratio of Fe, Cr, Ni, Co, and C in the composite material is 1:1:1:1:0.05, and the gas atomization method is used Preparation of high-entropy pre-alloyed powder; wherein, the alloying element powder does not contain other impurities except a small amount of unavoidable impurity oxygen, and the raw material does not contain other elemental components except Fe, Co, Cr, Ni, C; high-entropy pre-alloyed The particle size of the alloy powder ranges from 15 to 55 μm, and the D50 is controlled at 45 μm;
[0042] (2) Establish a three-dimensional model of the part on the computer, plan the scanning path of the component, and scan using a checkerboard pattern layer by layer; when scanning layer by layer, the deflection angle is 65°;
[0043...
Embodiment 2
[0051] The invention provides a method for preparing a carbon-containing high-entropy alloy composite material, comprising the following steps:
[0052] (1) Fe, Co, Cr, Ni metal elements and chromium carbide are selected as raw materials, and the atomic ratio of Fe, Cr, Ni, Co, and C in the composite material is 1:1:1:1:0.1, and the gas atomization method is used Preparation of high-entropy pre-alloyed powder; wherein, the alloying element powder does not contain other impurities except a small amount of unavoidable impurity oxygen, and the raw material does not contain other elemental components except Fe, Co, Cr, Ni, C; high-entropy pre-alloyed The particle size of alloy powder ranges from 15 to 45 μm, of which d50 is controlled at 40 μm;
[0053] (2) Establish a three-dimensional model of the part on the computer, plan the scanning path of the component, and scan using a checkerboard pattern layer by layer; when scanning layer by layer, the deflection angle is 70°;
[0054...
Embodiment 3
[0061] The invention provides a method for preparing a carbon-containing high-entropy alloy composite material, comprising the following steps:
[0062] (1) Fe, Co, Cr, Ni, Mn metal elements and chromium carbide are selected as raw materials, and the atomic ratio of Fe, Cr, Ni, Co, Mn, and C in the composite material is 1:1:1:1:1:0.07 , using the gas atomization method to prepare high-entropy pre-alloyed powder; wherein, the alloying element powder does not contain other impurities except a small amount of unavoidable impurity oxygen, and the raw material does not contain other than Fe, Co, Cr, Ni, Mn, C Other elemental components; high-entropy pre-alloyed powder powder particle size range 15 ~ 45μm, of which d50 is controlled at 35μm;
[0063] (2) Establish a three-dimensional model of the part on the computer, plan the scanning path of the component, and scan using a checkerboard pattern layer by layer; when scanning layer by layer, the deflection angle is 63°;
[0064] (3)...
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