...
首页> 外文期刊>Journal of Thermal Spray Technology >Environmental, Economical, and Performance Impacts of Ar-H-2 and N-2-H-2 Plasma-Sprayed YSZ TBCs
【24h】

Environmental, Economical, and Performance Impacts of Ar-H-2 and N-2-H-2 Plasma-Sprayed YSZ TBCs

机译:AR-H-2和N-2-H-2等离子体喷涂YSZ TBC的环境,经济和性能影响

获取原文
获取原文并翻译 | 示例
           

摘要

Since the 1970s, the Ar-H-2 plasma has been the standard air plasma spray (APS) gas system employed to deposit ZrO2-Y2O3 (YSZ) thermal barrier coatings (TBCs) for the gas turbine industry, particularly regarding the legacy plasma spray torches. Although much less costly and yielding higher YSZ deposition efficiency (DE) levels, N-2-H-2 plasmas did not become the mainstream plasma system. This N-2-H-2 issue likely occurred due to problems like preliminary APS torch Cu-nozzle erosion (Cu contamination on TBCs) and the tendency to produce denser coatings, potentially leading to TBCs exhibiting higher thermal conductivity (TC) and lower thermal cycle lifetimes. However, in the twenty-first century, environmental footprint reduction and economical aspects are becoming paramount. In addition, the introduction of new technologies (e.g., tungsten-lined Cu nozzles, particle T&V sensors, and computer-controlled automation) has dramatically increased the stability and reproducibility of APS processing. Therefore, the N-2-H-2 plasma concept needs to be revisited with respect to the legacy plasma spray torches, which are still highly used by the gas turbine industry original engine manufacturers and service centers worldwide. In this paper, different sets of APS YSZ TBCs were deposited via Ar/H-2 and N-2/H-2 plasmas using the legacy 3MB APS torch. The DE, TC, and furnace cycle test (FCT) were evaluated. The best FCT-performing Ar-H-2 and N-2-H-2 TBCs exhibited equivalent lifetimes. Moreover, the best FCT-performing N-2-H-2 TBC demonstrated a 100% increase in DE and an overall 55% reduction in production cost when compared to the best FCT-performing Ar-H-2 TBC. Finally, the TC values at room temperature and 1200 degrees C of best FCT-performing N-2-H-2 TBC were within the range of those of Ar-H-2 TBCs.
机译:自20世纪70年代以来,AR-H-2等离子体是标准的空气等离子体喷雾(APS)气体系统,用于沉积用于燃气轮机行业的ZrO2-Y2O3(YSZ)热阻挡涂层(TBC),特别是关于遗留等离子体喷雾剂火把。虽然昂贵并产生更高的YSZ沉积效率(DE)水平,但N-2-H-2等离子体未成为主流等离子体系统。这种N-2-H-2问题可能发生在初步APS炬Cu - 喷嘴腐蚀(Cu污染TBCS上)的问题以及生产更密集涂层的趋势,可能导致TBC表现出较高的导热率(TC)和下热量循环生命周期。然而,在二十一世纪,环境足迹减少和经济方面变得至高无上。此外,引入新技术(例如,钨衬里Cu喷嘴,粒子T&V传感器和计算机控制自动化)大大提高了APS处理的稳定性和再现性。因此,需要对遗产等离子体喷射炬重新求解N-2-H-2等离子体概念,该遗传等离子体喷射炬仍然是全球燃气轮机行业原始发动机制造商和服务中心的高度使用。在本文中,使用遗留3MB APS火炬通过Ar / H-2和N-2 / H-2等离子体沉积不同的APS YSZ TBC。评估DE,TC和炉循环试验(FCT)。表现最佳的FCT-H-2和N-2-H-2 TBC表现出相同的寿命。此外,与最佳FCT-H-2 TBC相比,表现最佳的FCT-DE-2-H-2 TBC在DE和总体上减少了100%,总体增加55%。最后,室温下的TC值和最佳FCT-DET-2-H-2 TBC的1200摄氏度在Ar-H-2 TBC的范围内。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号