轻便便携,高导热储/放氢瓶

Chao-Yen Chen, Xi-Wen Yang, Jun-Hong Lai, Chien-Chon Chen
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引用次数: 0

摘要

为了解决氢气的储存和运输问题,首先想到的是将氢气直接储存在气缸中。但是,这种方法是不可取的,因为即使在700atm的高压下,钢瓶内氢气的重量也不到钢瓶本身的1%,是非常不安全的。一旦泄漏,遇到火花就会爆炸。在这项研究中,我们设计了一种轻质储/放氢瓶。储氢瓶由铝合金制成。这种储氢/放氢瓶中的储氢合金用于吸附氢气,瓶内的气体阀用于释放氢气。为了达到轻量化的目的,本便携式储氢瓶采用7075铝合金制造。经机加工将瓶体掏空后,形成整体成型的储氢瓶体。铝垫片固定在法兰结构上,整体储氢瓶无焊接部分。此外,在瓶的内外表面形成坚硬的阳极膜,以增加瓶的拉伸应力,防止瓶中的氢脆,并对瓶进行防腐。本储氢罐的设计包括以下特点:(1)轻便轻便的铝合金瓶储存/解吸;(2)瓶身外层覆盖阳极膜,加强瓶张力;(3)瓶外覆盖优质阳极膜;(4)瓶内进行阳极处理,防止氢脆。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Lightweight Portable and High Thermal Conductivity Storage/Release Hydrogen Bottle
In order to solve the problem of hydrogen storage and transportation, the first thought is to store the hydrogen directly in the cylinder. However, this approach is not advisable, because even under the high pressure of 700 atm, the weight of hydrogen in the cylinder is less than the cylinder itself 1% of it, and it is very unsafe. Once it leaks, it will explode when it encounters sparks. In this study, we designed a lightweight hydrogen storage/release bottle. The hydrogen storage bottle is made of aluminum alloy. This hydrogen storage alloy in the hydrogen storage/release bottle is used to adsorb hydrogen, and the gas valve of the bottle is used to release hydrogen. In order to achieve the purpose of light weight, this portable hydrogen storage bottle was made of 7075 aluminum alloy. After the bottle body is hollowed out by machining, an integrally formed hydrogen storage bottle body is formed. The aluminum gasket is fixed to the flange structure, so the overall hydrogen storage bottle has no welded part. Further, a hard anodic films were formed on the bottle inner an d outer surfaces to increase the tensile stress of the bottle, prevent hydrogen embrittlement in the bottle, and anti-corrosion on the bottle. The design of this hydrogen storage tank includes the following features: (1) the lightweight portable storage/desorption of aluminum alloy bottle, (2) The outer layer of the bottle body is covered with an anodic film to strengthen bottle tension, (3) The outside of the bottle with a high quality anodic film, and (4) the inside of the bottle is anodized to prevent hydrogen embrittlement.
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