Preparation method of micro low-oxygen titanium hydride powder
A technology of titanium hydride powder and titanium hydride, which is applied in the field of preparation of titanium hydride powder and can solve problems such as the difficulty in preparing high-quality titanium powder
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Embodiment 1
[0019] (1) Under vacuum conditions, hydrogenate the massive titanium sponge at 450°C and 0.04Mpa high-purity hydrogen pressure for 0.5h to obtain massive brittle titanium hydride.
[0020] (2) The titanium hydride powder obtained above is ball-milled at a speed of 300r / min, the ball-to-material ratio is 3:1, and the ball-milling time is 1h. The D 50 It is 7.74 μm, and the oxygen content is 650 ppm.
[0021] (3) SEM test is carried out to the obtained titanium hydride powder, the results are shown in figure 1 .
Embodiment 2
[0023] (1) Hydrogenate the blocky titanium sponge at 450°C and 0.04Mpa high-purity hydrogen pressure for 0.5h to obtain blocky brittle titanium hydride
[0024] (2) The titanium hydride powder obtained above is ball-milled at a speed of 300r / min, the ball-to-material ratio is 5:1, and the ball-milling time is 1h. The D 50 is 5.93 μm, and the oxygen content is 750 ppm.
[0025] (3) SEM test is carried out to the obtained titanium hydride powder, the results are shown in figure 2 .
Embodiment 3
[0027] (1) Hydrogenate the blocky titanium sponge at 500°C and 0.04Mpa high-purity hydrogen pressure for 0.5h to obtain blocky brittle titanium hydride
[0028] (2) The titanium hydride powder obtained above is ball-milled at a speed of 300r / min, the ball-to-material ratio is 7:1, and the ball-milling time is 1h. The D 50 is 5.84 μm, and the oxygen content is 700 ppm.
[0029] (3) SEM test is carried out to the obtained titanium hydride powder, the results are shown in image 3 .
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