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首页> 外文期刊>CERAMICS INTERNATIONAL >A numerical approach to the heat transfer and thermal stress in a gas turbine stator blade made of HfB2
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A numerical approach to the heat transfer and thermal stress in a gas turbine stator blade made of HfB2

机译:HFB2制成的燃气轮机定子叶片中传热和热应力的数值方法

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摘要

Conventional gas turbine blades often face corrosion and oxidation at high temperatures. For resolving these problems, another way in addition to the cooling ducts is selecting appropriate materials for the fragment: manufacturing. The present work offers a solution to reduce the metallurgical issues at higher temperatures b) using ultra-high temperature ceramics. Despite the rotor blades, stator ones are exposed to hot fluid without an) rotation and consequence centrifugal forces. Because brittle materials such as ordinary ceramics are not applicable in the case of high tension forces, hafnium diboride is selected to examine its feasibility for the fabrication of gas turbine stator blades. Thermal stress and deformation of gas turbine stator blades are investigatec numerically. Comsol Multiphysics software, utilizing Finite Element Method, was used to analyze the heal transfer and possibility of failure in the stator blades. HfB2 can be a resistant alternative for manufacturing the turbine blades, which does not fail against the applied compressive stresses according to both Von Mises ant Coulomb-Mohr theories. In addition, a comparison study between HfB2 and two other diboride ceramics, ZrB2 and TiB2, is conducted.
机译:传统的燃气轮机叶片经常在高温下面对腐蚀和氧化。为了解决这些问题,除了冷却管道之外的另一种方式是为片段选择适当的材料:制造。本工作提供了一种解决方案,可以使用超高温陶瓷在较高温度下减少冶金问题。尽管转子叶片,但定子被暴露于没有)旋转和后果离心力的热流体。因为诸如普通陶瓷的脆性材料不适用于高张力力的情况下,选择铪二硼化物以检查其用于燃气涡轮定子叶片的制造的可行性。燃气轮机定子叶片的热应力和变形在数值上是Investigatec。 COMSOL MultiphySics软件采用有限元方法,用于分析定子叶片中的愈合转移和失效的可能性。 HFB2可以是制造涡轮机叶片的耐药替代方案,其根据von Mises蚂蚁库仑理论的两个von误差,这不会对所施加的压缩应力进行失效。此外,对HFB2和另外两种Diboride陶瓷,ZRB2和TIB2之间的比较研究是进行的。

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