加力燃烧室出口超高温测头研制与试验验证
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中国飞行试验研究院 西安 710089

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TN98

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带收-扩尾喷管性能确定技术研究(61901080503)项目资助


Development and test verification of ultra-high temperature probe at the afterburner outlet
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Chinese Flight Test Establishment,Xi′an 710089, China

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    摘要:

    针对航空发动机加力燃烧室出口高温气流参数难以测量的问题,提出采用新型耐高温CMC-SiC碳化硅陶瓷基复合材料为主体,钨管作为内嵌式双铂铑热电偶保护套管的形式,自主研制了加力燃烧室出口超高温测头,通过主体材料气密性试验和烧蚀试验、高温粘结胶拉伸试验、测头疲劳振动试验等前期验证试验考核,最终将超高温测头装机并通过地面台架试验检查,结果表明:超高温测头在发动机全加力状态下工作正常,测得全加力状态下的加力燃烧室出口温度测点处最高温度为1 680℃,与相关理论计算值相当,超高温测头的成功应用提升了航空发动机超高温测量水平,为后续发动机加力燃烧室飞行试验试飞方法改进和设计改进提供了技术支持。

    Abstract:

    A new type of ultra-high temperature probe at the aero-engine afterburner outlet has been independently developed to address the problem of difficult measurement of high-temperature airflow parameters at the outlet of aircraft engine afterburner combustion chambers. The ultra-high temperature probe solution is composed of a new type of ultra-high temperature resistant CMC-SiC silicon carbide ceramic matrix composite material as the main body,with a tungsten tube as the protective sleeve of embedded platinum rhodium thermocouple. We conducted preliminary verification tests such as airtightness and ablation tests on the main material of the probe,tensile tests on high-temperature bonding adhesive,and fatigue vibration tests on the entire probe. Finally,the ultra-high temperature probe was installed and passed the ground bench test inspection. The experiment results show that the ultra-high temperature probe can work normally under the full boost state of the engine,and the highest temperature measured at the outlet measuring point of the boost combustion chamber under full boost state is 1 680℃,which is comparable to the theoretical calculation value. The successful application of ultra-high temperature probe has improved the level of ultra-high temperature measurement for aviation engines,providing technical support for the improvement of flight test methods and design improvements for subsequent aviation engine afterburner combustion chamber flight tests.

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齐海帆.加力燃烧室出口超高温测头研制与试验验证[J].电子测量技术,2025,48(24):97-102

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  • 在线发布日期: 2026-02-04
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