A double nanostructure tungsten alloy with good high temperature stability and its preparation method and application
A nanostructure, tungsten alloy technology, applied in the field of material science, achieves excellent strength, high temperature stability, and simple preparation methods
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Embodiment 1
[0047] This embodiment provides a kind of double nanostructure tungsten alloy, and its preparation method comprises the following steps:
[0048] (1) Weigh and mix tungsten powder, titanium powder and zirconium carbide powder according to the mass percentage of 98.5%, 1.0% and 0.5% respectively, and place them in an argon atmosphere for ball milling to achieve alloying and nanocrystallization , the rotating speed of ball milling is 600r / min, and the time of ball milling is 48h, obtains nanocrystalline alloy powder; The transmission electron microscope (TEM) figure of this nanocrystalline alloy powder is as follows figure 1 shown;
[0049] (2) Place the nanocrystalline alloy powder obtained in step (1) in a die set (mold), and then place it together with the die set (mold) in a dry and flowing argon atmosphere, and then place it in a spark plasma sintering process. Sinter in a furnace at a temperature of 1400°C and a pressure of 50 MPa for 40 minutes to obtain a dense alloy bl...
Embodiment 2
[0053] This embodiment provides a kind of double nanostructure tungsten alloy, and its preparation method comprises the following steps:
[0054] (1) Weigh and mix tungsten powder, titanium powder and zirconium carbide powder according to the proportions of 97%, 2.0% and 1.0% by mass respectively, and place them in a vacuum environment <10Pa for ball milling to achieve alloying and nano Crystallization, the speed of ball milling is 450r / min, and the time of ball milling is 60h to obtain nanocrystalline alloy powder;
[0055] (2) Place the nanocrystalline alloy powder obtained in step (1) in a die set (mold), and then place it together with the die set (mold) in a dry and flowing argon atmosphere, and then place it in a spark plasma sintering process. Sinter in a furnace at a temperature of 1600°C and a pressure of 60 MPa for 30 minutes to obtain a dense alloy block (the density of the alloy block is higher than 96%, and the block has no cracks), which is a double nanostructure...
Embodiment 3
[0058] This embodiment provides a kind of double nanostructure tungsten alloy, and its preparation method comprises the following steps:
[0059] (1) Weigh and mix tungsten powder, titanium powder and zirconium carbide powder according to the mass percentage of 98.5%, 1.0% and 0.5% respectively, and place them in an argon atmosphere for ball milling to achieve alloying and nanocrystallization , the rotating speed of ball milling is 300r / min, the time of ball milling is 72h, and nanocrystalline alloy powder is obtained;
[0060] (2) Place the nanocrystalline alloy powder obtained in step (1) in a mold cover (mould), and then place it together with the mold cover (mould) in a dry and flowing argon atmosphere. Sintering at a temperature of 1400°C and a pressure of 50 MPa for 40 minutes to obtain a dense alloy block (the density of the alloy block is higher than 96%, and the block has no cracks), which is a double nanostructure tungsten alloy.
[0061] The double nanostructure tu...
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Abstract
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