【溫馨提示】 dwg后綴的文件為CAD圖,可編輯,無水印,高清圖,壓縮包內(nèi)文檔可直接點(diǎn)開預(yù)覽,需要原稿請(qǐng)自助充值下載,請(qǐng)見壓縮包內(nèi)的文件及預(yù)覽,所見才能所得,請(qǐng)細(xì)心查看有疑問可以咨詢QQ:414951605或1304139763
DOI 10.1007/s00170-003-1741-8 ORIGINAL ARTICLE Int J Adv Manuf Technol (2004) 24: 789–793 Feng Xianying · Wang Aiqun · Linda Lee Study on the design principle of the LogiX gear tooth profile and the selection of its inherent basic parameters Received: 2 January 2003 / Accepted: 3 March 2003 / Published online: 3 November 2004 ? Springer-Verlag London Limited 2004 Abstract The development of scientific technology and pro- ductivity has called for increasingly higher requirements of gear transmission performance. The key factor influencing dynamic gear performance is the form of the meshed gear tooth profile. To improve a gear’s transmission performance, a new type of gear called the LogiX gear was developed in the early 1990s. How- ever, for this special kind of gear there remain many unknown theoretical and practical problems to be solved. In this paper, the design principle of this new type of gear is further studied and the mathematical module of its tooth profile deduced. The in- fluence on the form of this type of tooth profile and its mesh performance by its inherent basic parameters is discussed, and reasonable selections for LogiX gear parameters are provided. Thus the theoretical system information about the LogiX gear are developed and enriched. This study impacts most significantly the improvement of load capacity, miniaturisation and durability of modern kinetic transmission products. Keywords Basic parameter · Design principle · LogiX gear · Minute involute · Tooth profile 1 Introduction In order to improve gear transmission performance and satisfy some special requirements, a new type of gear [1] was put for- ward; it was named “LogiX” in order to improve some demerits of W-N (Wildhaver-Novikov) and involute gears. Besides having the advantages of both kinds of gears men- tioned above, the new type of gear has some other excellent F. Xianying (a117) · W. Aiqun School of Mechanical Engineering, Shandong University, P.R. China E-mail: FXYing@ Tel.: +86-531-8395852(0) L. Lee School of Mechanical here, i is an optional number