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THE STUDY OF TIP CLEARANCE OF A WIDE-CHORD FAN BLADE OF A HIGH BYPASS RATIO TURBO-FAN ENGINE

机译:高通量比涡轮风扇发动机宽风扇叶片的叶尖间隙研究

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The wide-chord swept fan blade (WCSFB) has been extensively used in a advanced high bypass ratio turbofan engines. This paper explores the nature of WCSFB tip clearance. From the static analysis, it is found that the tip radial clearance at leading and trailing edge of WCSFB will be reduced with either bending or torsional deformation of the blade. And the change of the tip radial clearances varies with the twist angle. In this study, dynamic response of the WCSFB with different angular accelerations of the engine has been analyzed. It shows that when the angular acceleration of the fan rotor reaches a certain level, considerable bending and torsional deformation of the blade will occur, accompanied by the reduction of the tip radial clearance, which may lead to abnormal rubbing/impact between the blade tip and the casing. This may cause severe consequence for the blade and casing of the engine. The numerical simulation results show that the rubbing/impact between the WCSFB tip and the casing under angular acceleration loads can lead to local buckling of the tip leading edge of the blade, which will cause severe damage at the blade tip. Moreover, the influence of vibration and mass imbalance of the rotor on the fan blade tip clearance is also analyzed. In this paper, the results of a rig test under irregular acceleration for the WCSFB rotor is also presented, which validates the analytical results. The numerical simulation and test results will assist the blade tip clearance design to reflect the nature of the WCSFB under irregular acceleration to ensure safety.
机译:宽弦扫频风扇叶片(WCSFB)已广泛用于先进的高旁路比涡轮风扇发动机。本文探讨了WCSFB尖端间隙的性质。从静态分析中发现,随着刀片的弯曲或扭转变形,WCSFB的前缘和后缘的尖端径向间隙将减小。并且尖端径向间隙的变化随扭转角而变化。在这项研究中,分析了WCSFB在发动机不同角加速度下的动态响应。结果表明,当风扇转子的角加速度达到一定水平时,叶片将发生相当大的弯曲和扭转变形,同时叶尖的径向间隙减小,这可能导致叶尖与叶片之间的异常摩擦/碰撞。外壳。这可能会对发动机的叶片和机壳造成严重后果。数值模拟结果表明,在角加速度载荷下,WCSFB尖端与壳体之间的摩擦/碰撞会导致叶片尖端前缘局部弯曲,从而对叶片尖端造成严重损坏。此外,还分析了转子的振动和质量不平衡对风扇叶片尖端间隙的影响。本文还介绍了WCSFB转子在不规则加速下的钻机测试结果,从而验证了分析结果。数值模拟和测试结果将有助于叶片尖端间隙设计,以反映WCSFB在不规则加速下的特性,从而确保安全性。

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