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Influence of deformation and environmental degradation of Inconel 792

机译:Inconel 792的变形和环境退化的影响

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摘要

Industrial gas turbines are often used as a mechanical drive for pumps and compressors or in power generation as an electric power supply. The gas turbine has for many years been a popular engine due to its flexibility with respect to different types of fuel and due to a design, that enables a high power-to-weight ratio. A simplified description of a gas turbine is that the engine consists of a cold and hot section. The turbo compressor section belongs to cold section and the combustion chamber together with the turbine section belongs to the hot section. In the hot section of a gas turbine, the condition is extremely severe because of an aggressive environment characterized by high temperatures, increased temperature gradients, high pressure and centrifugal forces resulting in large stresses on individual components together with an oxidizing and corroding atmosphere. Materials used in the high temperature section (hot gas path) of a modern gas turbine are different types of superalloys, as single crystal, directionally solidified or polycrystalline alloys, depending on temperature and load conditions. In the first turbine stage, temperature is very high due to exposure to the combustion gas. To handle the problem with creep, single crystal superalloys are often used in this section. In the second row of turbine blades, the temperature of the gas is lower and polycrystalline superalloys are typically used. IN-792 is a cast polycrystalline superalloy with high strength, good resistance to hot corrosion and a cheaper option than single crystals. In the hot section of gas turbine, IN-792 is a suitable material for components such as turbine blades and vans where a complex load condition, high temperature and severe environment prevails. Due to startup and shutdown of the gas turbine engine during service, the components in the hot section are exposed to cyclic load and temperature. This will generate mechanical and thermal fatigue damage in gas turbine components. Steady state temperature gradient arises by the cooling system acting at cold spots during service to introduce tensile stress, which indirectly gives rise to creep damage in the component. This work includes tree studies of deformation and damage mechanisms of superalloy IN-792. The first study is made on test bars exposed to thermomechanical fatigue in laboratory environment, the second and the third study is made on turbine blades used during service. In the second study, the machines are placed off-shore and exposed to marine environment. In the third study the machine is landbased and exposed to an industrial environment. In the second study, the deformation and damage mechanisms are compared between the turbine blades used during service and the test bars exposed to thermomechanical fatigue testing in the first study.
机译:工业燃气轮机通常用作泵和压缩机的机械驱动器,或在发电中用作电源。燃气轮机多年来一直是受欢迎的发动机,这是因为其对于不同类型的燃料具有灵活性,并且由于其设计能够实现高功率重量比。燃气轮机的简化描述是,发动机由冷热部分组成。涡轮压缩机部分属于冷部分,燃烧室与涡轮部分一起属于热部分。在燃气轮机的高温区域,由于高温,高温梯度,高压和离心力等侵蚀性环境导致极端恶劣的环境条件,导致单个部件承受较大的应力,并伴有氧化和腐蚀气氛。现代燃气轮机的高温部分(热气路径)中使用的材料是不同类型的高温合金,取决于温度和负载条件,如单晶,定向凝固或多晶合金。在第一涡轮级中,由于暴露于燃烧气体,温度非常高。为了解决蠕变问题,本节中通常使用单晶高温合金。在第二排涡轮叶片中,气体的温度较低,通常使用多晶高温合金。 IN-792是一种铸造的多晶高温合金,具有高强度,良好的抗热腐蚀性能,并且比单晶便宜。在燃气轮机的高温区域,IN-792是适用于部件(例如,复杂的负载条件,高温和恶劣环境)的部件(例如涡轮叶片和货车)的合适材料。由于在维修期间燃气涡轮发动机的启动和关闭,热部分中的组件会承受周期性的负载和温度。这将对燃气轮机部件产生机械和热疲劳损伤。稳态温度梯度是由冷却系统在使用过程中作用在冷点处引入拉应力而产生的,间接引起零件的蠕变损坏。这项工作包括对高温合金IN-792的变形和损坏机理的树研究。第一项研究是在实验室环境中暴露于热机械疲劳的测试棒上进行的,第二项和第三项研究是在维修期间使用的涡轮叶片上进行的。在第二项研究中,这些机器被放置在离岸并暴露于海洋环境中。在第三项研究中,该机器是陆基的,并处于工业环境中。在第二项研究中,比较了在服务期间使用的涡轮叶片和暴露于热机械疲劳试验中的测试杆之间的变形和损坏机理。

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    Kanesund, Jan-erik;

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  • 年度 2017
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  • 原文格式 PDF
  • 正文语种 eng
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