Low Reflection-Loss Thermal Barrier Coating on Hastelloy C276 for Radio Control Rocket Tip Nosecone Using Yttria-Stabilized Zirconia (YSZ) at Extreme Temperature

Widyastuti Widyastuti, R. Wahyuono, R. Fajarin, S. Sulistijono, Arif Nur Hakim, Lilis Mariani, Herry Purnomo, Ibrahim Fatahillah Hizbul Islam
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Abstract

The nosecone tip during the launch process becomes the first part that experiences friction against the atmosphere so that heat is generated, which continues to increase over time. Therefore, the nosecone tip material must have high-temperature resistance, and the materials used must not interfere with the avionics and telemetry systems of the rocket. When the sounding rocket orbits at an altitude of 200-300 Km, the atmospheric environmental conditions also fluctuate, so the nose cone tip must also be able to adapt to this condition. The end of the nose cone must be protected with a high heat-resistant Thermal Barrier Coating (TBC) coating using Yttria Stabilized Zirconia (YSZ). YSZ modified with Al2O3 has impressive performance against high thermal by increasing the temperature resistance of the substrate to about 1200°C. In this paper, the experiment done for the first time using Hastelloy C276 coated with YSZ with thermal spray method has shown good performance. The pull of test results shows the highest bond tensile strength after heat exposure value at 23,04 MPa. And the thermal torch testing resulted in mass decreasing by 0.493 grams at 1200°C. The vector analyser also offers good performance reflection loss, valued at -0.324 dB at 10 GHz, and the thermal gravimetry of the material tip nose is 93,2% at 1200°C.
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使用钇稳定氧化锆 (YSZ) 在哈氏合金 C276 上进行极端温度下的低反射损耗热障涂层,用于无线电遥控火箭喷嘴鼻锥
在发射过程中,推进器顶端是与大气层发生摩擦的第一个部位,因此会产生热量,并随着时间的推移而不断增加。因此,短舱顶端的材料必须具有耐高温性,而且所使用的材料不能干扰火箭的航电和遥测系统。当探空火箭在 200-300 千米的高空运行时,大气环境条件也会发生变化,因此鼻锥体顶端也必须能适应这种情况。鼻锥末端必须使用钇稳定氧化锆(YSZ)高耐热隔热涂层(TBC)进行保护。经 Al2O3 改性的 YSZ 具有出色的耐高温性能,可将基材的耐温性能提高到约 1200°C。本文首次使用热喷涂法对涂有 YSZ 的哈氏合金 C276 进行了实验,结果表明其性能良好。测试结果表明,热暴露后的最高粘接拉伸强度值为 23.04 兆帕。热喷枪测试结果表明,在 1200°C 时质量减少了 0.493 克。矢量分析仪也提供了良好的反射损耗性能,10 千兆赫时的反射损耗值为 -0.324 dB,1200°C 时材料尖端鼻端的热重力测量值为 93.2%。
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