首页> 外文期刊>International journal of hydrogen energy >Pulverization, expansion of La_(0.6)Y_(0.4)Ni_(4.8)Mn_(0.2) during hydrogen absorption-desorption cycles and their influences in thin-wall reactors
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Pulverization, expansion of La_(0.6)Y_(0.4)Ni_(4.8)Mn_(0.2) during hydrogen absorption-desorption cycles and their influences in thin-wall reactors

机译:氢吸收-解吸循环中La_(0.6)Y_(0.4)Ni_(4.8)Mn_(0.2)的粉碎,膨胀及其对薄壁反应器的影响

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摘要

The pulverization, expansion characteristics of La_(0.6)Y_(0.4)Ni_(4.8)Mn_(0.2) and their influences in horizontal and vertical thin-wall reactors were investigated. Granulometric and SEM results revealed particle decay history and the transform from polydisperse to mono-disperse state, then the reactor strain in both longitudinal and tangential directions was tested with packing fractions being 20-58.5 vol%. Results indicated that the longitudinal strain was less than the hoop strain; both increased with cycle numbers, initial packing fractions and hydrogen contents, while decreased from the lower to the upper positions. Horizontal reactors exhibited less strain than vertical ones; the former mainly bended and swelled while the latter bulged angularly. The strain increments were approximate linear along with cycles, while the absorption strain increments grew exponentially along with hydrogen contents. It is suggested that the optimal hydrogen contents for La_(0.6)Y_(0.4)Ni_(4.8)Mn_(0.2) in the fully packed thin-wall reactors be less than 0.6 mol H/mol alloy whereas the packing fractions should not exceed 35 vol% for the case of hydrogen contents around 1.0 mol H/mol alloy.
机译:研究了La_(0.6)Y_(0.4)Ni_(4.8)Mn_(0.2)的粉碎,膨胀特性及其在水平和垂直薄壁反应器中的影响。粒度和SEM结果揭示了颗粒的衰减历史以及从多分散状态到单分散状态的转变,然后测试了在纵向和切向两个方向上的反应器应变,填充分数为20-58.5vol%。结果表明,纵向应变小于环向应变。两者均随循环数,初始填充分数和氢含量的增加而增加,而从较低位置到较高位置则降低。卧式反应堆的应变要小于立式反应堆。前者主要弯曲和隆起,而后者则成角度地鼓起。应变增量随循环近似线性,而吸收应变增量随氢含量呈指数增长。建议在完全填充的薄壁反应器中La_(0.6)Y_(0.4)Ni_(4.8)Mn_(0.2)的最佳氢含量应小于0.6 mol H / mol合金,而填充分数不应超过35对于氢含量为约1.0mol H / mol合金的情况下,vol%。

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