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Fluid dynamic effects on plasma torch anode erosion

机译:流体动力学对等离子炬阳极腐蚀的影响

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Anode erosion in plasma spray torches results in coating deterioration. The usable life of a torch anode is strongly dependent on the fluid dynamic behavior of the plasma inside the torch, which in turn depends on the geometric design of the anode and the operating parameters. To study the relative importance of these effects, cold flow investigations have been performed with a torch having a glass anode with the same geometric dimensions as a commercial plasma torch. The density differences between the arc and the cold gas were simulated by injecting heated helium from the tip of the cathode into the cold argon gas flow from the regular gas injector. Flow visualization was achieved by seeding the flow with micron-sized particles. A finite-element computational fluid dynamics code was used to simulate the cold flow structure. The results were compared with erosion patterns observed with an actual plasma torch. The results indicate that recirculation eddies inside the torch will force a preferred anode attachment, which is different for different gas injectors. The minimization of such recirculation regions by appropriate fluid dynamic design will result in more random attachment of the arc and prolonged anode life.
机译:等离子喷枪中的阳极腐蚀导致涂层变质。焊炬阳极的使用寿命在很大程度上取决于焊炬内部等离子体的流体动力学行为,而流体动力学行为又取决于阳极的几何设计和工作参数。为了研究这些影响的相对重要性,已经对具有玻璃阳极的炬进行了冷流研究,该阳极具有与商用等离子炬相同的几何尺寸。通过将来自阴极尖端的加热的氦气注入到来自常规气体注入器的冷氩气流中,可以模拟电弧和冷气体之间的密度差。流量可视化是通过用微米尺寸的粒子播种流量实现的。有限元计算流体动力学代码用于模拟冷流结构。将结果与实际等离子炬观察到的腐蚀模式进行了比较。结果表明,炬内部的再循环涡流将迫使优选的阳极连接,这对于不同的气体喷射器是不同的。通过适当的流体动力学设计使这种再循环区域最小化将导致电弧的更多随机附着并延长阳极寿命。

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