浏览全部资源
扫码关注微信
1.重庆大学 高端装备机械传动全国重点实验室, 重庆 400044
2.江阴天澄机械装备有限公司, 江苏 无锡 214400
Published:15 January 2024,
Received:19 October 2022,
移动端阅览
刘桂源,张磊,魏沛堂等.同向平双齿轮传动系统设计分析软件开发[J].机械传动,2024,48(01):52-60.
Liu Guiyuan,Zhang Lei,Wei Peitang,et al.Development of a Design and Analysis Software of Co-rotating Twin-screw Gear Transmissions[J].Journal of Mechanical Transmission,2024,48(01):52-60.
刘桂源,张磊,魏沛堂等.同向平双齿轮传动系统设计分析软件开发[J].机械传动,2024,48(01):52-60. DOI: 10.16578/j.issn.1004.2539.2024.01.008.
Liu Guiyuan,Zhang Lei,Wei Peitang,et al.Development of a Design and Analysis Software of Co-rotating Twin-screw Gear Transmissions[J].Journal of Mechanical Transmission,2024,48(01):52-60. DOI: 10.16578/j.issn.1004.2539.2024.01.008.
同向平双齿轮传动系统设计过程复杂、参数众多,型号更迭导致结构参数匹配困难、工作量大,亟待开发专用设计分析软件以提高设计效果和效率。建立了同向平双齿轮传动系统优化模型,基于C++语言与Qt应用程序框架开发了同向平双齿轮传动系统专用设计分析软件;结合工程案例对软件的可运行性、优化效果、信效度进行了对比分析,验证了软件的有效性和可靠性。结果表明,所开发的软件实现了某同向平双齿轮传动系统比现有水平减重7.98%,优化结果稳定收敛且收敛精度达99.02%,齿轮安全系数偏差率控制在8%以内,实现了良好的高功率密度设计,有望推动行业设计方法转型升级。
For co-rotating twin-screw gear transmissions
due to the complexity of the design process
multiple parameters as well as model iterations
cumbersome process and manifold work are needed. It is essential to develop a design and analysis software to improve the designing effect and efficiency. In this work a design and optimization model for co-rotating twin-screw gear transmission is established to develop a professional design and analysis software. The software development is based on the C++ programing language and the Qt application framework. Combining engineering practice cases
the operability
effect of optimization
and reliability of the developed software have been verified. The results show that the mass of the gear transmission is reduced by 7.98% compared to engineering applications. Optimization results can achieve stable convergence with a convergence accuracy of 99.02%
and the gear safety factor can be controlled within 8%. The developed software is expected to promote the transformation and upgrading of industrial design methods.
同向平双齿轮传动系统设计分析结构参数优化软件开发
Co-rotating twin-screw gear transmissionsDesign and analysisStructural parameters optimizationSoftware development
REZAYAT A,CATERA P G,CAPALBO C,et al.Numerical and experimental analysis of the transmission error in hybrid metal-composite gears[J].Composite Structures,2022,298:116012.
ZHU P F,YAN H Z,ZHOU J B,et al.Surface integrity and transmission performance of spiral bevel gears subjected to shot peening:a comparison between concave and convex surfaces[J].Surface and Coatings Technology,2022,445:128675.
OUYANG T C,MO X Y,LU Y C,et al.CFD-vibration coupled model for predicting cavitation in gear transmissions[J].International Journal of Mechanical Sciences,2022,225:107377.
SHEHATA A,ADNAN A,MOHAMMED O D.Modeling the effect of misalignment and tooth microgeometry on helical gear pair in mesh[J].Engineering Failure Analysis,2019,106:104190.
WEIS P,KUČERA Ľ,PECHÁČ P,et al.Modal analysis of gearbox housing with applied load[C]//International Scientific Conference on Sustainable,Modern and Safe Transport.Procedia Engineering,2017,192:953-958.
HAIGH J,HOFMANN D A,BICKER R.Validation of a software tool for optimizing the design of low noise,high strength gears[J].Proceedings of the Institution of Mechanical Engineers,Part G:Journal of Aerospace Engineering,2007,221(1):73-84.
YU Y X,LIU J K,YE B L,et al.Design and experimental research on seedling pick-up mechanism of planetary gear train with combined non-circular gear transmission[J].Chinese Journal of Mechanical Engineering,2019,32(3):54-66.
CUI Y H,GAO J,JI X M,et al.The multi-attribute topological graph method and its application on power flow analysis in closed planetary gear trains[J].Advances in Mechanical Engineering,2018,10(8):1-9.
LI S T.Design and strength analysis methods of the trochoidal gear reducers[J].Mechanism and Machine Theory,2014,81:140-154.
FENG R,VAN DEN BERG F W J,LILLEVANG S K,et al.High shear cooking extrusion to create fibrous mozzarella cheese from renneted and cultured curd[J].Food Research International,2022,157:111192.
BAUER H,MATIC J,KHINAST J.Detecting mixing barriers in twin-screw extruder elements via Lagrangian coherent structures[J].Chemical Engineering Science,2021,230:118069.
DHAVAL M,SHARMA S,DUDHAT K,et al.Twin-screw extruder in pharmaceutical industry:history,working principle,applications,and marketed products:an in-depth review[J].Journal of Pharmaceutical Innovation,2022,17(2):294-318.
IDE A,ENDOH K,HATAMOTO M.Drive transmission apparatus for twin-screw extruder:US6298751[P].2001-10-09.
刘根伸,刘怀举,朱才朝,等.飞行汽车变速器齿轮传动可靠性优化设计[J].重庆大学学报,2022,45(4):1-11.
LIU Genshen,LIU Huaiju,ZHU Caichao,et al.Reliability based design optimization of flying car speed changer gear transmission[J].Journal of Chongqing University,2022,45(4):1-11.
International Organization for Standardization.Calculation of load capacity of spur and helical gears—part 1:basic principles,introduction and general influence factors:ISO 6336-1:2019[S].International Organization for Standardization,2019:20-92.
International Organization for Standardization.Calculation of load capacity of spur and helical gears—part 2:calculation of surface durability (pitting):ISO 6336-2:2019[S].International Organization for Standardization,2019:7-36.
International Organization for Standardization.Calculation of load capacity of spur and helical gears—part 3:calculation of tooth bending strength-corrigendum:ISO 6336-3:2019[S].International Organization for Standardization,2019:7-43.
CHOI C,AHN H,YU J,et al.Optimization of gear macro-geometry for reducing gear whine noise in agricultural tractor transmission[J].Computers and Electronics in Agriculture,2021,188:106358.
LIU G S,LIU H J,ZHU C C,et al.Design optimization of a wind turbine gear transmission based on fatigue reliability sensitivity[J].Frontiers of Mechanical Engineering,2021,16(1):61-79.
ECKERT J J,SILVA S F D,SANTICILLI F M,et al.Multi-speed gearbox design and shifting control optimization to minimize fuel consumption,exhaust emissions and drivetrain mechanical losses[J].Mechanism and Machine Theory,2022,169:104644.
成大先.机械设计手册:第2卷.第7章[M].北京:化学工业出版社,2016:19-28.
CHENG Daxian.Handbook of mechanical design:Volume 2.Chapter 7[M].Beijing:Chemical Industry Press,2016:19-28.
International Organization for Standardization.Rolling bearings — dynamic load ratings and rating life:ISO 281:2007[S].International Organization for Standardization,2007:6-31.
0
Views
8
下载量
0
CSCD
Publicity Resources
Related Articles
Related Author
Related Institution