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首页> 外文期刊>International Journal of Materials, Mechanics and Manufacturing >SiAlON Ceramics for the High Temperature Applications: High Temperature Creep Behavior
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SiAlON Ceramics for the High Temperature Applications: High Temperature Creep Behavior

机译:用于高温应用的SiAlON陶瓷:高温蠕变行为

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Gas turbine engines have been widely used in electricity power generation in industry and aviation. The performance of gas turbine engines is limited by the temperature and strength capabilities of the materials used in the engine. Silicon nitride based ceramics have been expected to be candidates for gas turbine engine components due to their promising mechanical properties at high temperatures. On this basis, over the last 40 years large number of programs in the world has been working to produce ceramic components for gas turbines with the goals of increasing e fficiency and lowering emissions. But there are some difficulties that limit the use of structural ceramics based silicon nitride in gas turbine components. Creep performance is one of those problems and creep performance of a material is one of the major factors for determining its high temperature application. In this study creep behavior of SiAlON ceramics, which are solid solutions of silicon nitride ceramics, were investigated at temperatures from 1100 ?C to 1400 ?C under stresses from 50 to 150 MPa in air.
机译:燃气涡轮发动机已广泛用于工业和航空业的发电中。燃气涡轮发动机的性能受到发动机中所用材料的温度和强度的限制。由于氮化硅基陶瓷在高温下具有良好的机械性能,因此有望成为燃气涡轮发动机组件的候选材料。在此基础上,过去40年来,世界上许多计划一直在致力于生产用于燃气轮机的陶瓷组件,以提高效率和降低排放为目标。但是存在一些困难,限制了在燃气轮机部件中使用基于结构陶瓷的氮化硅。蠕变性能是这些问题之一,材料的蠕变性能是决定其高温应用的主要因素之一。在这项研究中,研究了氮化硅陶瓷固溶体SiAlON陶瓷在1100°C至1400°C的温度和50至150 MPa的空气压力下的蠕变行为。

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