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首页> 外文期刊>Journal of Thermal Spray Technology >Segmented Thermal Barrier Coatings for ID and OD Components Using the SinplexPro Plasma Torch
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Segmented Thermal Barrier Coatings for ID and OD Components Using the SinplexPro Plasma Torch

机译:使用SINPlexPro等离子炬进行ID和OD部件的分割热阻挡涂层

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摘要

Thermal barrier coatings (TBCs) with high thermal strain tolerance and erosion resistance are commonly applied onto the inner and outer diameters of hot sections of gas-turbine engine components. In this work, strain-tolerant, segmented TBCs were developed using the SinplexPro-cascaded torch. Design of experiments were carried out to study the effect of process variables such as plasma power, powder feeding rate, spraying distance and surface speed on the coating microstructure and properties. Optimized process parameters for the segmented coating microstructures at shorter spray distance (<75mm) and longer spray distance (>114mm) are achieved, which are targeted for spraying inner diameter (ID) and outer diameter (OD) engine components, respectively. The plasma torch hardware life was evaluated by torch cycle duration runs. Examples of highly strain-tolerant TBCs onto the ID and OD engine components were demonstrated, highlighting the wide versatility and process range of the SinplexPro.
机译:具有高热应变耐受性和耐腐蚀性的热阻挡涂层(TBC)通常施加到气体涡轮发动机部件的热部分的内径和外径上。在该工作中,使用SINPlexPro-Cascaded焊炬开发应变分段的TBC。进行实验设计,以研究过程变量如等离子体电源,粉末进给速率,喷涂距离和表面速度对涂层微观结构和性能的影响。实现了较短的喷射距离(<75mm)和更长的喷射距离(> 114mm)的分段涂层微结构的优化工艺参数,其靶向喷射内径(ID)和外径(OD)发动机部件。通过火炬循环持续时间进行评估等离子体炬硬件寿命。对ID和OD发动机组件的高度应变耐受性TBC的实例进行了说明,突出了SINPlexPro的宽通用性和过程范围。

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