Preparing method for nanometer toughening ultra-fine grain WC-Co cemented carbide
A hard alloy and ultra-fine-grained technology, which is applied in the field of preparing strong and tough ultra-fine-grained hard alloys, can solve the problems of fine-grained hard alloys with complicated processes, little practical production significance, and high requirements for process parameters. Uniform microstructure, saving working hours and energy consumption, good metallurgical compatibility
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Embodiment 1
[0026] (1) Grind the WC coarse powder with a particle size of less than 5mm into a fine powder with an average particle size of 0.2μm by JZDB-100 jet mill under the protection of high-purity argon with a working pressure of 0.75MPa and an oxygen content of ≤10ppm in the grinding chamber. material;
[0027] (2) The binder phase Co powder is prepared by JTSWH-50 high-pressure water atomization production line, under the protection of argon gas, the high-pressure water pressure is 80MPa, and the spherical fine powder with an average particle size of 0.2μm is prepared;
[0028] (3) Vacuum arc melting ingot + fast-in-situ packaging plasma arc method was used to prepare Ce-V nano-metal mixed powder with an average grain size of 50nm;
[0029] (4) In an argon protective atmosphere, use HDQH-1 pulse type high-speed airflow mixer to mix the WC hard phase and Co binder phase fine powder prepared in (1) and (2) by WC 94 co 6.0 (wt%) The Ce-V nano-metal mixed additive that accounts for 6....
Embodiment 2
[0038] (1) Grind the WC coarse powder with a particle size of less than 5mm into a fine powder with an average particle size of 0.2μm by JZDB-100 jet mill under the protection of high-purity argon with a working pressure of 0.75MPa and an oxygen content of ≤10ppm in the grinding chamber. material;
[0039] (2) The binder phase Co powder is prepared by JTSWH-50 high-pressure water atomization production line, under the protection of argon gas, the high-pressure water pressure is 80MPa, and the spherical fine powder with an average particle size of 0.2μm is prepared;
[0040] (3) Y-Ce-Co-V nano-metal mixed powder with an average grain size of 50nm was prepared by vacuum arc melting ingot + fast-in-situ packaging plasma arc method;
[0041] (4) In an argon protective atmosphere, use HDQH-1 pulse type high-speed airflow mixer to mix the WC hard phase and Co binder phase fine powder prepared in (1) and (2) by WC 94 co 6.0 (wt%) The Y-Ce-Al-Co-V nano-metal mixed additive that acco...
Embodiment 3
[0050] (1) Grind the WC coarse powder with a particle size of less than 5mm into a fine powder with an average particle size of 0.2μm by JZDB-100 jet mill under the protection of high-purity argon with a working pressure of 0.75MPa and an oxygen content of ≤10ppm in the grinding chamber. material;
[0051] (2) The binder phase Co powder is prepared by JTSWH-50 high-pressure water atomization production line, under the protection of argon gas, the high-pressure water pressure is 80MPa, and the spherical fine powder with an average particle size of 0.2μm is prepared;
[0052] (3) Sm-Cr nano-metal mixed powder with an average grain size of 50nm was prepared by vacuum arc melting ingot + fast-in-situ packaging plasma arc method;
[0053] (4) In an argon protective atmosphere, use HDQH-1 pulse type high-speed airflow mixer to mix the WC hard phase and Co binder phase fine powder prepared in (1) and (2) by WC 92 co 8.0 (wt%) The ratio is the same as the Sm-Cr nano-metal mixed addi...
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