Preparation method of zirconium dioxide dispersion strengthened copper alloy
A technology of dispersion strengthening and zirconia, which is applied in the field of metal matrix composite materials and preparation, can solve problems such as complex process, low diffusion efficiency, and low solid solubility of oxygen, and achieve simple process, high diffusion efficiency, and solid solubility big effect
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Embodiment 1
[0016] Example 1 ODS-Cu alloy with nominal composition Cu-0.2 wt.% Zr
[0017] Step 1. The preparation component is Cu 75 Zr 25 Alloy Ingots and Amorphous Ribbons
[0018] Using metal raw materials of Cu (99.99 %) and Zr (99.9 %), the atomic percentage of Cu 75 Zr 25 Converted into weight percent components, weighed and prepared Cu-Zr alloy, mixed the raw materials and placed them in a water-cooled copper crucible of a non-consumable arc melting furnace, and then vacuumed to 5×10 -3 - 1×10 -2 Pa, then filled with 0.01 - 0.08 MPa pure argon protective gas for melting, and the working current of arc melting is 150-200 A; then the alloy ingot is turned upside down, and the melting is repeated 3 times to obtain an alloy ingot with uniform composition;
[0019] The alloy ingot is crushed and put into a quartz tube, and the diameter of the nozzle of the quartz tube is about 1-1.5 mm. The charged quartz tube was placed in an induction heating coil, and the alloy sample was me...
Embodiment 2
[0026] Example 2 ODS-Cu alloy with nominal composition Cu-10.0 wt.% Zr
[0027] Step 1. Preparation of atomic percent composition Cu 50 Zr 50 Alloy Ingots and Amorphous Ribbons:
[0028] Same as step 1 in embodiment 1. Here Cu is measured by X-ray diffraction 50 Zr 50 Amorphous map as attached figure 1 As shown, the crystallization temperature Tx was 460°C.
[0029] Step 2, Cu 50 Zr 50 Oxidation of Amorphous Ribbons:
[0030] Same as step 2 in embodiment 1. Cu here 50 Zr 50 The amorphous oxidation treatment temperature was 360 °C, and the temperature was kept for 3 h. The obtained Cu 50 Zr 50 The X-ray diffraction pattern of the oxide amorphous is attached figure 1 shown.
[0031] Step 3. Smelting to prepare ODS-Cu alloy
[0032] It is the same as step 3 in the first embodiment. The microstructure and morphology are similar to those of the alloy in Example 1, and the particles of the oxide strengthening phase are slightly larger (average diameter 10 nm), and t...
Embodiment 3
[0033] Example 3 ODS-CuCrZr alloy with nominal composition Cu-0.75 wt.%Cr-0.2 wt.%Zr
[0034] Step 1. The preparation component is Cu 75 Zr 25 Alloy Ingots and Amorphous Ribbons
[0035] Same as step 1 in embodiment 1.
[0036] Step 2, Cu 75 Zr 25 Oxidation of Amorphous Ribbons
[0037] Same as step 2 in embodiment 1.
[0038] Step 3. Smelting to prepare ODS-CuCrZr alloy
[0039] It is the same as step 3 in Embodiment 1. 0.75 wt.% Cr was added, and a new type of ZrO with both precipitation strengthening and dispersion strengthening effects was obtained by direct smelting 2 The structure and morphology of the dispersion-strengthened CuCrZr alloy are similar to those of Example 1. The performance test results show that the as-rolled hardness of the cast ODS-CuCrZr alloy is 145 HV0.2 / 20, the room temperature tensile strength exceeds 420 MPa, its room temperature plastic strain is 10%, but its room temperature conductivity is only 35% IACS; After proper solution aging tr...
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