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Modeling, project, numerical simulation, and AES temperature diagnostics of an inductively coupled plasma torch for the deposition of high-purity fused silica for optical waveguide production

机译:电感耦合等离子体炬的建模,投影,数值模拟和AES温度诊断,用于沉积高纯度熔融石英,用于光波导生产

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An inductively coupled plasma torch has been designed for the synthesis of high-purity, low-OH, fused silica in fiber optics preform production by means of a new technological process, within the framework of plasma outside deposition. The torch, working at atmospheric pressure, is attached to a 13.56 MHz, 5.4 kW RF generator; system geometry, inlet gas velocities, heat exchange, and electrical coil configurations have been selected in accordance with the physical modeling and numerical simulation results. Temperature, velocity, and electromagnetic fields have been computed by using a two-dimensional (2-D) fluid-magnetic code assuming LTE for the plasma. A 2-D treatment of electromagnetic field equations has been performed using boundary conditions, treating the torch as a point magnetic dipole, within a grid extending outside the plasma zone; results for the electric field in the torch will be presented in different steps of plasma initiation in test Ar discharges. Temperature diagnostics have been performed within atomic emission spectroscopy techniques: side-on experimental profiles have been treated through Abel inversion. Results obtained with the Boltzmann plot method (lateral and radial excitation temperature profiles) are presented, and conclusions are drawn concerning possible plasma deviations from LTE conditions. The first results on the deposition of soot silica will be described, together with torch operating conditions and reactive mixture O/sub 2/+SiCl/sub 4/ characteristics.
机译:已经设计了一种感应耦合等离子体炬,用于在外部等离子体沉积的框架内,通过一种新的技术工艺,在光纤预制棒生产中合成高纯度,低羟基,熔融二氧化硅。炬管在大气压下工作,并连接到13.56 MHz,5.4 kW射频发生器;根据物理模型和数值模拟结果,选择了系统几何形状,进气速度,热交换和线圈结构。温度,速度和电磁场已通过使用二维(2-D)流体电磁代码(假定等离子为LTE)进行了计算。已经使用边界条件对电磁场方程进行了二维处理,将火炬视为在等离子区外部延伸的网格内的点磁偶极子。在测试Ar放电中,在等离子体引发的不同步骤中将显示割炬电场的结果。温度诊断已在原子发射光谱技术范围内进行:侧面实验概况已通过Abel反演处理。给出了使用Boltzmann绘图方法获得的结果(横向和径向激发温度曲线),并得出了有关LTE条件下可能存在的血浆偏离的结论。将描述烟灰二氧化硅沉积的最初结果,以及焊枪的工作条件和反应性混合物O / sub 2 / + SiCl / sub 4 /特性。

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