IT Technique FAI for ARJ-21 Program
Transcription
IT Technique FAI for ARJ-21 Program
Professor Ning Zhen Bo 22 March 2006 IT Technique FAI for ARJ-21 Program Page.1 FAI’S LOCATION Xi’an Xian Aircraft Design and Research Institute (19612003) ShangHai Shanghai Aircraft Design and Research Institute (1970-2003) The First Aircraft Institute was established on June 28, 2003 by merging of the Xi‘an Aircraft Design and Research Institute and Shanghai Aircraft Design and Research Institute, headquartered in Xi’an City. Page.2 CONTENT • FAI OVERVIEW • DIGITAL DESIGN FBC-1 ARJ21 • ARJ21 PROGRAM CAE Application Page.3 FAI HUMAN RESOURCE z Total employee 3000(750 in shanghai ),technicians 1939。 Acad. 1 Prof. 108 S.Eng. 537 Eng. 598 Tech. 695 院 士 高 工 技术员 Page.4 研究员 工程师 其他职工 FAI DISCIPLINES The design and research departments in FAI cover all aeronautic engineering disciplines, such as general configuration, aerodynamics, structure design, strength analysis, mechanical system, electric system, avionics system, environment control, airworthness, aero-material, service support, computer center, calibration center, information center, etc. The institute is well equipped with test facilities, such as flight control and simulation lab, hydraulic lab, fuel lab, environmental control lab, ejection and life saving lab, electric net lab, fire control lab, avionic system lab, aircraft strength labs, etc. Page.5 PRODUCTS LIST 运十 MD-82 远轰 小鹰500 Page.6 MD-90 DIGITAL DESIGN Page.7 DIGITAL DESIGN (FBC-1) Page.8 ARJ21 PROGRAM Page.9 ARJ21 PARTNERS SACG Xi’an Design Manu. FAI CAC XAC Shanghai SAC Suppliers USA Germany UK Page.10 France …… Australia ARJ21-700 SUPPLIERS Toronto Yeovil EP HQ, Systems Integration Engineering & Manufacturing Bournemouth NGL HQ, Engineering Customer Support & Manufacturing Raunheim Customer Support Tulsa (LORI) Nanjing Customer Support Manufacturing Torrance Vendome ECS HQ, Engineering Customer Support Singapore & Manufacturing Anniston Phoenix Customer Support Customer Support Manufacturing & Customer Support · NGA Sydney · · Tucson Engineering & Manufacturing Tempe Engineering & Manufacturing Witry -Le- Reims Mexicali Manufacturing Fuel Tanks Manufacturing Gennevilliers SECAN HQ, Engineering & Manufacturing Airframe Systems a global business Page.11 NGA Melbourne ARJ21-700 SUPPLIERS Lighting – Equipment Propulsion Emergency Evacuation- Tail Cone ATA536 MAN Technologie AG (D) Powerplant PS EES Goodrich Hella Aerospace High lift deviceGE Aircraft Engines Air Cruisers Hamilton Sundstrand + design Avionics Empennage Fairing / Floor Panels COMTAS (D) Rockwell Collins + design Auxiliary Power Unit Oxygen- COS Hamilton Sundstrand B/E Aerospace, INC EPS Hamilton Sundstrand Water/Waste Water EVAC Environmental Solutions AMS Liebherr Aerospace Toulouse S.A. Fire Protection Kidde Aerospacet Interior FACC Hydraulic Windshield heater controller & windshield wiper system Parker Aerospace Rosemount Aerospace INC. Flight Deck MLG Control Sagem NLG Door / RAT Door Liebherr Aerospace Oil System Liebherr Aerospace Parker Aerospace + design Primary Flight Control Honeywell/ Parker CPA & PWM Dimming Control Eaton Aerospace Page.12 Center Wing Box/ Wing / Flaps / Ailerons / Empennage Parker Aerospace + design Provisions for systems Inflite (UK) (b.t.p.) Flight Control Parker Aerospace ARJ21-700 3D MUCK-UP Page.13 ARJ21 PROGRAM CAE APPLICATION Page.14 LMS Virtual.Lab Structual Analysis Page.15 Front fuselage structure model Page.16 Rear cargo bridge structure Page.17 X Type Aircraft Cargo Bridge Structure Model Page.18 The Distribution of Stress Page.19 LMS Virtual.Lab Optimization Page.20 Optimization Process Page.21 The Optimization of the round radius Page.22 LMS Virtual.lab Motion应用通过将在CATIA中完成的ARJ前起落架运动 机构模型在LMS V.L Motion中重新进行装配定义运动副以实现正常收 放运动,并在Motion中定义起落架开锁作动筒力、弹簧力、风阻及预紧 力等参数后,测量出起落架收放作动筒载荷曲线与其它分析工具 (ADAMS)所得曲线比较,曲线基本一致,充分验证了仿真计算结果 1、Through the Virtual.lab Motion we got the same results that we had done with ADMAS, 2、The simulation process are more simple , virtual.lab motion highly improved our CAE simulation efficiency. 3、with the other application, it proved that the virtual.lab motion solver is very accurate and robust. Page.23 ARJ21Main Landing Gear Draw in and Lock Page.24 ARJ21 Front Landing Gear emergency Drop Page.25 ARJ21 Landing Page.26 ARJ21 Slide Run and Swerve Page.27 Co-simulation with easy 5 Page.28 Co-simulation with Matlab Page.29 The Virtual Test Table Page.30 The Aircraft Landing Gear Draw in process considering the air force 模拟飞机加入风载力的起落架收起过程 Page.31 飞机主起落架着陆过程中起落架机构的运动情况 The Landing Gear System motion while Droping Page.32 FBC-1左主起落架在自编制载荷谱加载情况下的落震仿真 The FBC-1 Left Main Landing Gear Drop test Simulation Page.33 机构运动副生成功能做的上支撑调节机构中四对涡轮蜗杆的协调运动情况 Turbine and Worm Simulation with Motor Page.34 ARJ-21 FIRST CLASS CABIN THANKS ! 图3 头等舱布置 Page.35