AGMA 94FTM3-1994 Application of Ausforming to Gear Finishing - Process Design and Manufacturability Issues《应用形变热处理进行齿轮光整加工.加工 设计和可制造性问题》.pdf
《AGMA 94FTM3-1994 Application of Ausforming to Gear Finishing - Process Design and Manufacturability Issues《应用形变热处理进行齿轮光整加工.加工 设计和可制造性问题》.pdf》由会员分享,可在线阅读,更多相关《AGMA 94FTM3-1994 Application of Ausforming to Gear Finishing - Process Design and Manufacturability Issues《应用形变热处理进行齿轮光整加工.加工 设计和可制造性问题》.pdf(9页珍藏版)》请在麦多课文档分享上搜索。
1、 STD-ALMA 94FTM3-ENGL 1994 E b87575 0004547 b113 94FTM3 Application of Ausforming to Gear Finishing - Process, Design and Manufacturability Issues by: N. Sonti, A.J. Lemanski and S.B. Rao Pennsylvania State University American Gear Manufacturers TECHNICAL PAPER COPYRIGHT American Gear Manufacturers
2、Association, Inc.Licensed by Information Handling ServicesSTD-AGMA 94FTM3-ENGL 1774 m Ob87575 0004550 3b5 m Application of Ausforming to Gear Finishing - Process, Design and Manufacturability Issues N. Sonti, A. J. Lemanski and S.B. Rao, Pennsylvania State University The statements and opinions cont
3、ained herein are those of the author and should not be construed as an official action or opinion of the American Gear Manufacturers Association. ABSTRACT: Ausforming is a thermomechanicai process which integrales surface induction heating with precision hot gear roll finishing, and is capable of fi
4、nishing spur and helical gears, theEby eliminating tooth-grinding and some associated operations. Gears are in the hobbed, carburized and hardened condition prior to ausform finishing. Ausforming involves controlled execution of the following four processing steps: (1) contour induction hearing of t
5、he hardened gear tooth surface layers, followed by (2) rapid quenching of the gear in marquenching oil maintained at 300-450OF to achieve a metastable austenitic condition, (3) roll finishing of gear teeth in the metastable austenitic condition in the processing tank containing the hot marquenching
6、oil, to final tooth dimensions using power-dnvenprecision gearroll finishing dies, and (4) final quenching to martensite. Ausforming is applicable to carburizing grade low alloyed steels, usedin a broad spectrum of gearapplications, as well as through-hardening steels. Potential benefits of ausformi
7、ng as demonstrated on the existing singleae ausforming machine at Penn State include improved gear tooth accuracy up to AGMA 12, enhanced surface finish of 3 to 6 pin Ra, and improved metallurgical features such as ausform strengthening induced in the surface layers, finer grain microstructure, and
8、higher compressive residual stresses on gear tooth surfaces. Metallurgical characterization of ausformed gear tooth surfaces and performance testing of ausfomed surfaces is in process. This paper discusses the potential applications of ausform finishing of spur and helical gears, including process d
9、esign and related manufacturability issues. Ausforming can be applied for finishing of gears with bores, integral shaft gears, cluster gears, and double helical herringbone gears. Examples are presenteddescribing the flexible tooling arrangements possible to process a variety of gear geometries. Imp
10、lementation of ausforming for a given application requires integrated tooling design of the hob or shaper cutter to produces appropriate stock allowance for optimal roii finishing. Machine design, controls and material handling features of the production-capable double die gear ausform finishing mac
11、hine currently being built are briefly described showing the flexibility in tool arrangements and processing of a variety of gear geometries. Copyright O 1994 American Gear Manufacturers Association 1500 King Street, Suite 201 Alexandria, Virginia, 223 14 Oc tober, 1994 ISBN 1-55589437-5 COPYRIGHT A
12、merican Gear Manufacturers Association, Inc.Licensed by Information Handling ServicesSTD-AGMA SLiFTM3-ENGL LLi = Ob87575 0004553 2TL m Application of Ausforming to -ar Finishing - Process Design and tdanufacturability Issues N. Sonti, Research Associate A. J. Lemanski, Associate Director S. B. Rao,
13、Director National Center for Advanced Gear Manufacturing Technologies Applied Research Laboratory The Pennsylvania State University, University Park, PA 16804. 1 Introduction Over the past several years, the US gear industry has encountered considerable challenges from the industrialized countries i
14、n Europe and far east The competitive position of the US gear industry has been substantially weakened and the share of imports to the US gear market is continuing to rise. l Investment in gear machine tools and infrastructure in the US gear industry is steadily declining, and use of out-dated equip
15、ment and processes only worsens the problem of delivery times, quality and manufacturing costs.2 There is a strong need for the development of new and improved gear manufacturing techniques and equipment to improve the competitive status of the US gear industry The National Center for Advanced Gear
16、Manufacturing Technologies (NCAGMT) at Penn State is developing innovative techniques in gear manufacturing and metrology to strengthen the technological base of the gear industry. One of the research and development programs in the area of advanced gear manufacturing is Gear Finishing by Aucforming
17、. The ausfornung process is capable of finishing case-hardened spur and helical gears to achieve improved strength accuracy, surface finish, and through-put production rates. In this paper, the process, and manufacturability issues involved in applying ausfornung to the finishing of high performance
18、 transmission gears are discussed. 2. Ausforming Process Details 2.1 Process Description Ausform finishing integrates three of the widely used gear manufacturing processes, namely, (1) induction heat treating, (2) martempering (also called marquenching), and (3) gear roll finishing, into a single in
19、-line automated manufacturing operation which is capable of finishing spur and helical gears to AGMA quality rating of 12 or better.4 Prior to ausform finishing, gears are hobbed, carburized and hardened to specifications required for the service requirements. The ausform finishing process involves
20、the following processing steps: b Contour induction heating of the carburized surface layers of the gear teeth (including profile, fillet and root areas) to austenitize only the case region; Rapid quenching of the gear into hot marquenching oil maintained at 300 to 45OoF to achieve a metastable aust
21、enitic condition in the carburized surface layers of the gear teeth; a Precision gear roll finishing of the gear teeth in hot marquenching oil to final dimensions using master gear rolling dies and a feed-back controlled servo-hydraulic system; 0 Final quenching of roll finished gear to 120- 150F fo
22、r transformation of austenite to martensite. The thermal excursion of gear tooth surface temperature during the above four processing steps involved in gear ausform finishing is shown schematically in a Time-Temperature-Transformation (TTT) diagram (Figure 1) for a typical carburizing grade low allo
23、yed steel. It is important to note that gears must be in the carburized and hardened condition prior to ausforming in order to achieve the core properties, especially the combination of microstructure, hardness and toughness required. Ausform finishing is preferably performed prior to the tempering
24、cycle. This facilitates optimization of the induction heating cycle and to ensure rapid solutionization of alloy carbides and complete austenitization of the gear tooth case region prior to the roll finishing step. Line a-b (Figure 1) represents the induction heating step of ausforming when the gear
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