Acting device for hydrogen material at ultralow temperature
A technology of ultra-low temperature and hydrogen materials, which is applied in household refrigeration devices, piezoelectric effect/electrostrictive or magnetostrictive motors, fixed tubular catheter assemblies, etc., and can solve problems that affect safe use, knocking, instability, etc. , to achieve the effect of creating economic benefits, energy saving and emission reduction economic benefits
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Embodiment 1
[0034] The embodiment of the present invention provides a hydrogen material working device at ultra-low temperature, such as figure 1 As shown, the device includes B1 metal hydrogen storage material reaction bed 4, B2 metal hydrogen storage material reaction bed 5, liquid hydrogen booster pump 50, liquid hydrogen heat exchanger 51, hydrogen heat exchanger 32, hydrogen compressor 33, cooling A liquefier 34 , an air heat exchanger 45 , a primary piezoelectric device 47 and a secondary piezoelectric device 48 .
[0035] The B1 metal hydrogen storage material reaction bed 4 is provided with a first hydrogen absorption inlet pipeline 39, a first unabsorbed hydrogen outlet 40, a first hydrogen discharge inlet pipeline 41 and a first hydrogen discharge outlet 42, and the first hydrogen absorption inlet pipe The road 39 and the first hydrogen discharge inlet pipeline 41 are connected to the same inlet of the B1 metal hydrogen storage material reaction bed 4 through a three-way valve, ...
Embodiment 2
[0053] Embodiment 2 of the present invention provides another kind of work device for hydrogen material at ultra-low temperature, such as Figure 5 As shown, the device includes B1 metal hydrogen storage material reaction bed 4, B2 metal hydrogen storage material reaction bed 5, liquid hydrogen booster pump 50, liquid hydrogen heat exchanger 51, hydrogen heat exchanger 32, hydrogen compressor 33, cooling A liquefier 34 , an air heat exchanger 45 , a primary piezoelectric device 47 and a secondary piezoelectric device 48 .
[0054] The B1 metal hydrogen storage material reaction bed 4 is provided with a first hydrogen absorption inlet pipeline 39, a first unabsorbed hydrogen outlet 40, and a first hydrogen discharge outlet 42, and the first hydrogen absorption inlet pipeline 39 reacts with the B1 metal hydrogen storage material The beds 4 are connected, and the inlet of the first hydrogen absorption inlet pipeline 39 is set above the gas distributor 17, so that the hydrogen gas...
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