Machining of proton exchange membrane fuel cells using micromilling tools

M. Jackson, G. Robinson, M. Brady
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Abstract

Bipolar proton exchange membrane (PEM) fuel cell plates are composed of flat pieces of graphite with channels or trenches machined into the face of the plate so that gases can flow in the channels of the plate. The operation of the fuel cell is dependent on the flow of oxygen and hydrogen gases around a fuel cell stack, which is composed of many thin plates connected to each other in very close proximity. Owing to the brittle nature of graphite, fuel cells plates are now made from nickel-chromium alloys that are coated with a thin solid layer of CrN or TiN to improve corrosion resistance. However, nickel-chromium alloys are notoriously difficult to machine. This paper describes the development of micromachining processes that allows fuel cells plates to be machined are very high speeds using novel nanocrystalline diamond and titanium coatings that have been specifically designed to cut strain hardening alloys at extremely high speeds
用微铣刀加工质子交换膜燃料电池
双极质子交换膜(PEM)燃料电池极板由平面石墨片组成,在极板的表面加工出通道或沟槽,以便气体可以在极板的通道中流动。燃料电池的运行依赖于燃料电池堆周围氧气和氢气的流动,燃料电池堆是由许多薄板组成的,它们彼此紧密相连。由于石墨的易碎性,燃料电池板现在由镍铬合金制成,表面涂有一层薄薄的CrN或TiN固体层,以提高耐腐蚀性。然而,镍铬合金是出了名的难加工。本文描述了微加工工艺的发展,该工艺允许使用新型纳米晶金刚石和钛涂层以非常高的速度加工燃料电池板,这种涂层专门用于以极高的速度切割应变硬化合金
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