[1]陈雷,李大力,王婧雯,等.航空发动机叶片进排气边缘形状自动评价方法[J]. 航空动力学报, 2023,38(4):986-993.
CHEN Lei, LI Dali, WANG Jingwen, et al. Automatic Shape Evaluation Method of Aeroengine Blade Inlet and Exhaust Edges[J]. Journal of Aerospace Power, 2023,38(4):986-993.
[2]杨根,张立昌,林何,等.航空叶片精锻模具设计与数控加工[J]. 机床与液压, 2020,48(15):109-113.
YANG Gen, ZHANG Lichang, LIN He, et al. Design and NC Machining of Precision Forging Die of Aviation Blade[J]. MachineTools and Hydraulics, 2020,48(15):109-113.
[3]吴捍疆,张丰收,燕根鹏.航空发动机叶片精锻成形可靠性技术[J]. 锻压技术, 2019,44(5):1-5.
WU Hanjiang, ZHANG Fengshou, YAN Genpeng. Reliability Technology of Precision Forging of Aeroengine Blade[J]. Forging & Stamping Technology, 2019,44(5):1-5.
[4]夏巨谌,邓磊,金俊松,等.我国精锻技术的现状及发展趋势[J]. 锻压技术, 2019,44(6):1-16.
XIA Juchen, DENG Lei, JIN Junsong, et al. Current Situation and Development Trend of Precision Forging Technology in China[J]. Forging & Stamping Technology, 2019,44(6):1-16.
[5]任军学,冯亚洲,米翔畅,等.航空发动机精锻叶片自适应数控加工技术[J]. 航空制造技术, 2015(22):52-55.
REN Junxue, FENG Yazhou, MI Xiangchang, et al. Adaptive Techniques in CNC Machining of Aeroengine Precision Forging Blades[J]. Aeronautical Manufacturing Technology, 2015(22):52-55.
[6]张凱尧,吴动波,郭相峰,等.用于叶片加工的高分辨率榫头畸变测试系统[J]. 机械科学与技术, 2020,39(1):88-95.
ZHANG Kaiyao, WU Dongbo, GUO Xiangfeng, et al. High-resolution Test System of Tenon Distortion for Blade Processing[J]. Mechanical Science and Technology for Aerospace Engineering, 2020,39(1):88-95.
[7]WU Dongbo, WANG Hui, PENG Jinsong, et al. Machining Fixture for Adaptive CNC Machining Process of Near-net-shaped Jet Engine Blade[J]. Chinese Journal of Aeronautics, 2019, 33(4):1311-1328.
[8]ARSLANE M, SLAMANI M, CHATELAIN J F. Development and Validation of a Machining Fixture for Complex-shaped Components Based on Plückerian Matrix Approach and SDT Concept[J]. The International Journal of Advanced Manufacturing Technology, 2021,1/20:1697-1716.
[9]FEI J, LIN B, XIAO J, et al. Investigation of Moving Fixture on Deformation Suppression during Milling Process of Thin-walled Structures[J]. Journal of Manufacturing Processes, 2018, 32:403-411.
[10]WANG Y, CHEN X, GINDY N. Surface Error Decomposition for Fixture Development[J]. International Journal of Advanced Manufacturing Technology, 2007, 31(9/10):948-956.
[11]陈海瑛,郭相峰,余杰,等.一种用于叶片精锻的叶片-工装系统设计的分析方法: 201911303381 .X[P].2023-05-30.
CHEN Haiying, GUO Xiangfeng, YU Jie, et al. The Invention Relates to an Analytical Method for Designing a Blading-tool System for Blade Precision Forging:201911303381 .X[P].2023-05-30.
[12]王山.六点定位原理在发动机叶片夹具设计中的应用[J]. 机械设计与制造, 2020(4):24-27.
WANG Shan. Application of Six-point Positioning Principle in Engine Blade Fixture Design[J]. Mechanical Design and Manufacturing, 2020(4):24-27.
[13]张凱尧.航空发动机精锻叶片铣削工装结构分析与优化设计[D]. 烟台:烟台大学, 2020.
ZHANG Kaiyao. Structural Analysis and Optimal Design of Milling Tooling for Aero-engine Precision Forged Blades[D]. Yantai:Yantai University, 2020.
[14]张姚,祝效华,董亮亮.弱刚性机匣橡胶减振柔性夹具研究[J]. 工程设计学报, 2022,29(5):587-594.
ZHANG Yao, ZHU Xiaohua, DONG Liangliang. Research on Rubber Damping Flexible Fixture for Weakly Rigid Casing[J]. Chinese Journal of Engineering Design, 2022,29(5):587-594.
[15]赵峻林,乔百杰,罗现强,等.基于单传感器测量的多模态叶片动应力场预测[J].机械工程学报,2024,60(16):19-33.
ZHAO Junlin, QIAO Baijie, LUO Xianqiang, et al. Single-sensor-based Prediction of Blade Multimodal Dynamic Stress Field Variation[J].Journal of Mechanical Engineering, 2024,60(16):19-33.
[16]吴宝海,郑志阳,张阳,等.面向薄壁零件加工变形与振动控制的智能装夹技术研究进展[J]. 机械工程学报, 2021,57(17):21-34.
WU Baohai, ZHENG Zhiyang, ZHANG Yang, et al. Intelligent Clamping Technology for Machining Deformation and Vibration Control of Thin-wall Parts:a Review of Recent Progress[J]. Journal of Mechanical Engineering, 2021,57(17):21-34.
[17]王张浩,李东升,翟雨农.弱刚性薄壁件夹具布局优化方法研究概述[J]. 航空制造技术, 2023,66(14):118-135.
WANG Zhanghao, LI Dongsheng, ZHAI Yunong. Overview of Research on Optimization Method of Fixture Layout for Weakly Rigid Thin-walled Parts[J]. Aeronautical Manufacturing Technology, 2023,66(14):118-135.
[18]刘春,孙杰,刘凯,等.聚氨酯泡沫辅助加固钛合金薄壁件铣削性能研究[J]. 航空制造技术, 2017(11):93-98.
LIU Chun, SUN Jie, LIU Kai, et al. Study on Milling Performance of Titanium Alloy Thin-walled Parts with Polyurethane Foam Reinforcement[J]. Aeronautical Manufacturing Technology, 2017(11):93-98.
[19]王文峰,雍占福,王裕成,等.聚氨酯支撑结构免充气轮胎仿真模拟与优化[J]. 工程塑料应用, 2018,46(5):48-51.
WANG Wenfeng, YONG Zhanfu, WANG Yucheng, et al. Simulation and Optimization of Non-pneumatic Tire with Polyurethane Support Structure[J]. Engineering Plastics Application, 2018,46(5):48-51.
[20]HARRIS BENJAMIN D, NILSSON S, POOLE CHRISTOPHER M. A Feasibility Study for Using ABS Plastic and a Low-cost 3D Printer for Patient-specific Brachytherapy Mould Design[J]. Australasian Physical & Engineering Sciences in Medicine, 2015, 38(3):1-14.
[21]楚佳,陈文博,陈历波,等.通过聚丙烯/聚乙烯二元体系的流变控制制备聚合物多层片材[J]. 高分子材料科学与工程, 2018,34(6):108-113.
CHU Jia, CHEN Wenbo, CHEN Libo, et al. Preparation of Multilayer Sheets by Controlling the Rheological Behavior of PP/PE Binary System[J]. Polymer Materials Science and Engineering, 2018,34(6):108-113.
[22]石增祥,王哲,蔡帆,等.球刀铣削钛合金TC11切削力建模与分析[J]. 机械设计与制造工程, 2023,52(6):48-52.
SHI Zengxiang, WANG Zhe, CAI Fan, et al. Modeling and Analysis of Cutting Force in Milling Titanium Alloy TC11 with Ball Cutter[J]. Mechanical Design and Manufacturing Engineering, 2023,52(6):48-52.
[23]徐艺峰,李健,王杰,等.基于天河二号超算的网格无关性及并行研究[J]. 计算机工程与设计, 2018,39(7):2036-2041.
XU Yifeng, LI Jian, WANG Jie, et al. Grid Independence and Parallel Study Based on Tianhe Ⅱ Supercomputing[J]. Computer Engineering and Design, 2018,39(7):2036-2041.
|