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All-Electric Aircraft Nose Wheel Steering System with Two Worm Gears
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作者 Zhang Ming Li Chuang +1 位作者 Wu Xin Zhu Yin 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI CSCD 2018年第1期170-180,共11页
As all-electric aircraft has many advantages,an aircraft nose wheel steering system would be developed to the all-electric direction.Concerning the control demand of the nose wheel steering system,based on the basic p... As all-electric aircraft has many advantages,an aircraft nose wheel steering system would be developed to the all-electric direction.Concerning the control demand of the nose wheel steering system,based on the basic principles of nose wheel steering system and the design technique of mechanotronics,an all-electric aircraft nose wheel steering system,composed of a nose wheel steering mechanism of two worm gear and a control servo system of fly-by-wire with both steering and anti-shimmy functions is designed to meet the demand for operation control in the nose wheel steering system.Then,based on the LMS-AMESim software,the simulation model of the system is established to simulate the dynamics for the verification of its steering function.The simulation results indicate that the nose wheel steering system is reasonable,and can meet the requirements of the general project.Furthermore,the prototypes of the steering mechanism and control system are studied to validate the design,and the steering test bench is prepared to test the designed system.The test results,such as steer angle,rotate speed of motor are analyzed in details and compared with the theoretical results.The analysis and comparison results show that the design is reasonable and the property of the prototype can achieve the design objectives. 展开更多
关键词 mechanotronics design NOSE wheel STEERING SYSTEM all-electric aircraft design LANDING gear
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飞机全电式前轮转弯系统设计与优化分析 被引量:1
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作者 聂青 聂宏 +1 位作者 张明 冀美珊 《机械科学与技术》 CSCD 北大核心 2013年第9期1291-1297,共7页
由于全电飞机具有诸多优点,飞机前轮转弯系统必将向全电化这一方向发展。以飞机全电式前轮转弯系统为研究对象,基于飞机前轮转弯系统基本原理和机电一体化系统设计方法,针对前轮转弯系统对操作控制的要求,设计一套由蜗轮蜗杆式前轮转弯... 由于全电飞机具有诸多优点,飞机前轮转弯系统必将向全电化这一方向发展。以飞机全电式前轮转弯系统为研究对象,基于飞机前轮转弯系统基本原理和机电一体化系统设计方法,针对前轮转弯系统对操作控制的要求,设计一套由蜗轮蜗杆式前轮转弯机构与兼具转弯和减摆功能的电传伺服操纵系统组成的全电式前轮转弯系统,并建立仿真模型,进行动态性能优化和仿真分析,对系统的各项功能进行检验,研究结果表明所设计的飞机全电式前轮转弯系统合理有效,能够满足工程应用要求。 展开更多
关键词 机电一体化设计 动态仿真分析 前轮转弯系统 飞行器设计
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