首页> 外文会议>Proceedings of the ASME international design engineering technical conferences and computers and information in engineering conference 2009 >NUMERICAL INVESTIGATION OF ABRADABLE COATING WEAR THROUGH PLASTIC CONSTITUTIVE LAW: APPLICATION TO AIRCRAFT ENGINES
【24h】

NUMERICAL INVESTIGATION OF ABRADABLE COATING WEAR THROUGH PLASTIC CONSTITUTIVE LAW: APPLICATION TO AIRCRAFT ENGINES

机译:塑性本构关系对可涂覆涂层磨损的数值研究:在飞机发动机中的应用

获取原文
获取原文并翻译 | 示例

摘要

In the field of turbomachines, better engine performances are achieved by reducing possible parasitic leakage flows through the closure of the clearance distance between blade tips and surrounding casings. Together with new technologies involving higher casing conicity for improved compression rates, direct contact is now considered as part of aircraft engines normal life.rnIn order to avoid possibly catastrophic scenarios due to high contact efforts between the rotating and static components, implementation of abradable coatings has been widely recognized as a robust solution offering several advantages: reducing potential damage to the incurring blade as well as adjusting operating clearances, in-situ, to accept physical contact events. Nevertheless, the process of wear undergone by abradable coatings is not well understood and its consequences are still under investigation. In the present work, its macroscopic behavior is numerically approximated through a piecewise linear plastic constitutive law which allows for real time access to the current abradable layer profile.rnFirst results prove convergence in time and space of the proposed approach and show that the frequency content of the blade response is clearly affected by the presence of abradable coatings. It seems that opening the clearance between the blade tip and the casing during wear leads to large amplitudes of motion far from the usual linear conditions provided by the well-known Campbell diagrams.
机译:在涡轮机领域,通过减小叶尖与周围机壳之间的间隙距离,可以减少可能的寄生泄漏流,从而获得更好的发动机性能。为了提高压缩率,再加上涉及更高锥度的新技术,现在已将直接接触视为飞机发动机正常寿命的一部分。为了避免由于旋转和静态部件之间的大量接触而造成的灾难性情况,耐磨涂层的实现被广泛认为是一种健壮的解决方案,它具有以下优点:减少对正刀的潜在损坏,并就地调整操作间隙以接受物理接触事件。但是,人们对耐磨涂层的磨损过程尚不甚了解,其后果仍在研究中。在目前的工作中,其宏观行为是通过分段线性塑性本构定律进行数值逼近的,该定律可以实时访问当前的可磨耗层轮廓。rn第一结果证明了该方法在时间和空间上的收敛性,并表明了该方法的频率成分。刀片的响应明显受到耐磨涂层的影响。似乎在磨损期间打开叶片尖端与壳体之间的间隙会导致较大的运动幅度,这与众所周知的坎贝尔图提供的通常线性条件相去甚远。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号