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procedure for quality plasmabogen and laser cutting of stainless steel and aluminum

机译:铝和铝的优质等离子发生器和激光切割的程序

摘要

Plasma arc or laser cutting uses a mix of reactive and reducing gas flows to cut sheets of stainless steel, aluminum and other non-ferrous metals. The reducing gas flow to the cut varies as a percentage of the total gas flow to maintain a reducing atmosphere down through the cut, but to leave a predominantly oxidizing atmosphere at the intersection of the cut and the bottom surface of the sheet being cut. In plasma arc cutting these flows can also be characterized as either a plasma gas flow, one that forms the arc, or a shield gas flow that surrounds the arc. The reactive gas is preferably a flow of air, oxygen, nitrogen, carbon dioxide or a combination of these gases. The reducing gas is preferably hydrogen, hydrogen 35, methane, or a mixture of these gases. For aluminum, the reactive gas is preferably air or nitrogen and the reducing gas is preferably methane or a mixture of methane and air. In laser cutting the reducing gases such as methane can be used by mixing them with reactive assist gases.
机译:等离子弧或激光切割使用反应性气体流和还原性气体流的混合物来切割不锈钢,铝和其他有色金属板。进入切口的还原气体流量占总气体流量的百分比,以保持还原气氛向下通过切口,但在切口与被切割的薄板底面的交点处主要保留氧化气氛。在等离子弧切割中,这些流的特征还可以是形成电弧的等离子气流或围绕电弧的保护气流。反应性气体优选是空气,氧气,氮气,二氧化碳或这些气体的组合的流。还原性气体优选为氢,氢35,甲烷或这些气体的混合物。对于铝,反应性气体优选为空气或氮气,还原性气体优选为甲烷或甲烷和空气的混合物。在激光切割中,可通过将诸如甲烷之类的还原性气体与反应性辅助气体混合来使用。

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