Hydrogen supply subsystem module and fuel cell
The utility model relates to the technical field of fuel cells, in particular to a hydrogen supply subsystem module and a fuel cell, the hydrogen supply subsystem module comprises a stop valve, a proportional valve and an ejector, the stop valve, the proportional valve and the ejector are all fixed...
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creator | LU YAN HAN LINGHAI LYU WENBO PU JI ZHAO LINA ZHAO HONGHUI LI XINYU QIN XIAOJIN GUO WEIHAO |
description | The utility model relates to the technical field of fuel cells, in particular to a hydrogen supply subsystem module and a fuel cell, the hydrogen supply subsystem module comprises a stop valve, a proportional valve and an ejector, the stop valve, the proportional valve and the ejector are all fixed on a base, the stop valve is communicated with the proportional valve, the base is provided with a hydrogen inlet hole and a hydrogen outlet hole, and the hydrogen inlet hole is communicated with the proportional valve. The hydrogen inlet hole is communicated with an inlet of the stop valve, an outlet of the ejector is communicated with an inlet of the electric pile through the hydrogen outlet hole, and a first flow channel is further formed in the base and used for communicating the proportional valve and the ejector. The base is arranged, the stop valve, the proportional valve and the ejector are integrated into a whole, the hydrogen inlet hole, the hydrogen outlet hole and the first flow channel are formed in th |
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The hydrogen inlet hole is communicated with an inlet of the stop valve, an outlet of the ejector is communicated with an inlet of the electric pile through the hydrogen outlet hole, and a first flow channel is further formed in the base and used for communicating the proportional valve and the ejector. 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The hydrogen inlet hole is communicated with an inlet of the stop valve, an outlet of the ejector is communicated with an inlet of the electric pile through the hydrogen outlet hole, and a first flow channel is further formed in the base and used for communicating the proportional valve and the ejector. 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The hydrogen inlet hole is communicated with an inlet of the stop valve, an outlet of the ejector is communicated with an inlet of the electric pile through the hydrogen outlet hole, and a first flow channel is further formed in the base and used for communicating the proportional valve and the ejector. The base is arranged, the stop valve, the proportional valve and the ejector are integrated into a whole, the hydrogen inlet hole, the hydrogen outlet hole and the first flow channel are formed in th</abstract><oa>free_for_read</oa></addata></record> |
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language | chi ; eng |
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subjects | BASIC ELECTRIC ELEMENTS ELECTRICITY PROCESSES OR MEANS, e.g. BATTERIES, FOR THE DIRECT CONVERSIONOF CHEMICAL INTO ELECTRICAL ENERGY |
title | Hydrogen supply subsystem module and fuel cell |
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