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Tensile behavior of SiC/C and Rene′41 following isothermal exposure and thermal fatigue

机译:等温暴露和热疲劳后SiC / C和Rene'41的拉伸行为

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The performance of a coated silicon carbide/carbon composite under isothermal and thermal fatigue conditions was investigated. The material studied is known as Ceracarb~(TM) which consists of eight-harness satin weave Nicalon silicon carbide cloth reinforcement, a carbonaceous matrix, and a silicon carbide composite coating. This advanced composite is being considered for replacing the nickel based superalloy Rene′41, as the exhaust nozzle components on military afterburning turbine engines. Thermal fatigue experiments, performed in the laboratory using a thermal cycling test system, were intended to roughly simulate the thermal excursions of an afterburning exhaust nozzle. Several thermal profiles were used to characterize the role of temperature, number of cycles, temperature range, and time at temperature, on the room temperature residual tensile strength of the material. The same thermal profiles were also conducted on test specimens of Rene′41 in order to compare its durability in the laboratory simulation test set-up to the composite. Both materials showed no loss in strength from the as-received condition following thermal testing. However, the Rene′41 showed evidence of microstructural instability at the maximum test temperature of 1093℃ (2000°F) which did affect the toughness of the material. While the results from this study showed that both materials retained strength when thermally exposed in the laboratory under no loads, thermal testing under load may provide a more realistic view of how the materials perform in the afterburning exhaust nozzle application.
机译:研究了涂覆的碳化硅/碳复合材料在等温和热疲劳条件下的性能。研究的材料称为CeracarbTM,它由八线缎纹编织Nicalon碳化硅布增强材料,碳质基质和碳化硅复合涂层组成。这种先进的复合材料被认为可以替代镍基超级合金Rene'41,作为军用加力涡轮发动机的排气喷嘴组件。在实验室中使用热循环测试系统进行的热疲劳实验旨在粗略地模拟后燃排气喷嘴的热偏移。使用几种热曲线来表征温度,循环次数,温度范围和温度时间对材料在室温下的残余拉伸强度的作用。还对Rene'41的试样进行了相同的热分析,以比较其在实验室模拟测试装置中对复合材料的耐用性。两种材料在热测试后均未显示出从接收到的状态开始的强度损失。然而,Rene'41在最高测试温度1093℃(2000°F)下显示出微观结构不稳定性的证据,这确实影响了材料的韧性。虽然这项研究的结果表明,两种材料在无负载的情况下在实验室中进行热暴露时都可以保持强度,但在负载下进行的热测试可能提供了一种更真实的视图,说明了材料在加力排气喷嘴应用中的性能。

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