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Effects of angular injection, and effervescent atomization on high-velocity suspension flame spray process

机译:角喷射和泡腾雾化对高速悬浮火焰喷涂过程的影响

摘要

This work presents the nanostructured coating formation using suspension thermal spraying through the HVOF torch. The nanostructured coating formation requires nanosize powder particles to be injected inside a thermal spray torch using liquid feedstock. The liquid feedstock needs to be atomized when injected into the high-velocity oxygen fuel (HVOF) torch. This paper presents the effects of angular injection and effervescent atomization of the liquid feedstock on gas and droplet dynamics, vaporization rate, and secondary breakup in the high-velocity suspension flame spray (HVSFS) process. Different angular injections are tested to obtain the optimum value of the angle of injection. Moreover, effervescent atomization technique based on twin-fluid injection has been studied to increase the efficiency of the HVSFS process. Different solid nanoparticle concentrations in suspension droplets are considered. In angular injection the droplets are injected into the core of the combustion zone; this immediately evaporates the droplets, and evaporation is completed within the torch. The value of 10°–15° is selected as the optimal angle of injection to improve the gas and droplet dynamics inside the torch, and to avoid the collision with the torch's wall. The efficiency of the effervescent atomization can be enhanced by using high gas-to-liquid mass flow rate ratio, to increase the spray cone angle for injecting the suspension liquid directly into the combustion flame. It is also found that the increment in the nanoparticle concentration has no considerable effects on the droplet disintegration process. However, the location of evaporation is significantly different for homogeneous and non-homogeneous droplets.
机译:这项工作介绍了通过HVOF喷枪的悬浮热喷涂形成的纳米结构涂层。纳米结构涂层的形成需要使用液体原料将纳米级粉末颗粒注入热喷枪内部。将液态原料注入高速氧气燃料(HVOF)割炬时需要雾化。本文介绍了在高速悬浮火焰喷射(HVSFS)过程中,液体原料的角喷射和泡腾雾化对气体和液滴动力学,汽化速率和二次破碎的影响。测试不同的角度喷射以获得最佳的喷射角值。此外,已经研究了基于双流体注射的泡腾雾化技术以提高HVSFS工艺的效率。考虑了悬浮液滴中不同的固体纳米颗粒浓度。在角喷射中,液滴被喷射到燃烧区的核中。这立即使液滴蒸发,并且在割炬内蒸发完成。选择10°–15°作为最佳喷射角度,以改善割炬内部的气体和液滴动态,并避免与割炬壁发生碰撞。可以通过使用较高的气液质量流量比来提高泡腾雾化的效率,以增加用于将悬浮液直接注入燃烧火焰中的喷雾锥角。还发现纳米颗粒浓度的增加对液滴崩解过程没有显着影响。但是,均匀和不均匀液滴的蒸发位置明显不同。

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