Investigation of the characteristics of an indirect plasma torch

IF 0.3 Q4 PHYSICS, MULTIDISCIPLINARY
A. Kengesbekov, Zhuldyz Sagdoldina, D. Buitkenov, I. Ocheredko, K. Torebek, S. Abdulina
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Abstract

The main task of creating plasma technologies is to improve the operation parameters of its main element - the plasma torch, which is achieved by designing and constructing its main nodes. The paper analyzes the principles of designing a plasma torch and investigates the characteristics of an arc discharge plasma torch. The possibilities of increasing the thermal stability of the anode structure are considered; the speed and trajectory of powder particles are studied; the axial introduction of the powder through the cathode and the thermal stability of the cathode are studied. Using the finite element method, the effect of the anode shape on the service life of the plasma torch is studied by estimating the heat release power under the condition above the melting temperature of copper (anode). The optimal anode geometry for effective cooling of the unit with radial inlet and outlet of the coolant is determined. The influence of the thermal load on the cathode part of the plasma torch is studied, the thermophysical characteristics of the cathode on the operational characteristics of the plasma torch during the thermal load are taken. The dynamics of the particle by axial injection of the powder through the cathode is calculated, and the dynamics of the heating of the powder particle is determined. The output of the carrier gas is stabilized by a swirler and has great dynamics and is located in the high-temperature part of the arc. The trajectory of the movement of a powder particle in the nozzle area is calculated, which corresponds to the average value of the velocity ≈450-500 m/s. It is found that an increase in the cathode diameter from 3 to 5 mm reduces the thermal load by 50%.
间接等离子炬的特性研究
等离子体技术的主要任务是通过设计和构建其主要节点来提高其主要元件等离子体炬的操作参数。分析了等离子体炬的设计原理,研究了电弧放电等离子体炬的特性。考虑了提高阳极结构的热稳定性的可能性;研究了粉末颗粒的速度和轨迹;研究了粉末通过阴极的轴向引入和阴极的热稳定性。采用有限元方法,通过估算在铜(阳极)熔化温度以上条件下的放热功率,研究了阳极形状对等离子体炬使用寿命的影响。确定了具有冷却剂径向入口和出口的单元的有效冷却的最佳阳极几何形状。研究了热负荷对等离子体炬阴极部分的影响,得出了热负荷作用下阴极的热物理特性对等离子体炬工作特性的影响。通过阴极轴向注入粉末,计算了颗粒的动力学,并确定了粉末颗粒加热的动力学。载气的输出由旋流器稳定,具有良好的动力学特性,位于电弧的高温部分。计算了粉末颗粒在喷嘴区域的运动轨迹,对应于速度≈450-500m/s的平均值。发现阴极直径从3毫米增加到5毫米可减少50%的热负荷。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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50.00%
发文量
32
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