AGMA 98FTM4-1998 Effect of Uncontrolled Heat Treat Distortion on the Pitting Life of Ground Carburized and Hardened Gears《不受控制的热处理变形对于磨光 渗碳和硬化齿轮的点蚀寿命的影响》.pdf
《AGMA 98FTM4-1998 Effect of Uncontrolled Heat Treat Distortion on the Pitting Life of Ground Carburized and Hardened Gears《不受控制的热处理变形对于磨光 渗碳和硬化齿轮的点蚀寿命的影响》.pdf》由会员分享,可在线阅读,更多相关《AGMA 98FTM4-1998 Effect of Uncontrolled Heat Treat Distortion on the Pitting Life of Ground Carburized and Hardened Gears《不受控制的热处理变形对于磨光 渗碳和硬化齿轮的点蚀寿命的影响》.pdf(7页珍藏版)》请在麦多课文档分享上搜索。
1、i i 98FIlV4 1 Effect of Uncontrolled Heat Treat IDistortion on the Pitting Life of Ground, Carburized and Hardened Gears by: A.K. Rakhit, Solar Turbines Incorporated TECHNICAL PAPER COPYRIGHT American Gear Manufacturers Association, Inc.Licensed by Information Handling ServicesEffect of Uncontrolled
2、 Heat Treat Distortion on the Pitting Life of Ground, Carburized and Hardened Gears A.K. Rakhit, Solar Turbines Incorporated The statements and opinions contained herein are those of the author and should not be construed as an official action or opinion of the American Gear Manufacturers Associatio
3、n. Abstract Heat treatment causes distortion of gear tooth geometry. To improve tooth quality, particularly after carburizing and hardening, gears are generally ground. For low distortion, stock removal is small up to a maximum of 0.005 inch from each tooth flank. This allows minimum surface hardnes
4、s reduction with no possible detrimental effect on gear pitting life. Uncontrolled distortion, on the other hand, results in an undue amount of stock removal with a significant loss of tooth surface hardness. Lower surface hardness accelerates contact-stress-induced tooth pitting that reduces gear l
5、ife. For heavily distoeed gears, the pitting life may be reduced as much as 30 percent after grinding. For a realistic evaluation of the pitting life of ground, carburized and hardened gears with uncontrolled distortion, derating factors are necessary and established for a number of gear materials.
6、Copyright O 1998 American Gear Manufacturers Association 1500 King Street, Suite 201 Alexandria, Virginia, 22314 October, 1998 ISBN: 1-55589-722-3 COPYRIGHT American Gear Manufacturers Association, Inc.Licensed by Information Handling ServicesEFFECT OF UNCONTROLLED HEAT TREAT DISTORTION ON THE PITTI
7、NG LIFE OF GROUND, CARBURIZED AND HARDENED GEARS A. K. Rakhit Solar Turbines Incorporated, San Diego, California Introduction All heat-treated gears experience distortion. Of the various hardening processes, carburizing and quenching causes the highest distortion of the pre-heat treat tooth geomey.
8、The mechanics of this distortion phenomenon are quite complex. Its in-depth analysis is beyond the scope of this paper. But the fact is that all carburized and hardened gears distort. For most applications, these gears need to be finish-machined for improved tooth geometry. Presently, ginding is Con
9、sidered to be the most economical process to achieve this qualiy. However, the higher the distortion, the more stock needs to be removed from the tooth surface. This not only reduces case thickness but also lowers the surface hardness, detrimentally affecting gear pitting life. For a gear to meet ex
10、pected pitting life, it is thus necessary that stock removed by pnding be minimized. To establish minimum grind stock, distortion data of a gear after heat treatment are essential for which a clear definition of distortion is necessary. In general, a change in any one or more of the following dimens
11、ions are considered to define gear distortion and its severity Flatness ofrim and hub Profile, lead and spacing of teeth Pitch diameter (PD) growth and runout In a well controlled carburizing and hardening process, distortions could be held to within one American Gear Manufacturers Association (AGMA
12、) class below the pre-heat treat quality for gears made of commonly used materials in industnal application, such as 4320H, 8620H and 93 10H. Such a process allows the establishment of a minimum grind stock on a tooth surface and the maintenance of the minimum surface hardness required after grindin
13、g. This satisfies the design requirement for minimum gear pitting life in most applications. Unfortunately, the state-of-the-art carburizing and quenching technology is unable to assure low gear distortion consistently in a production mode of operation. Sometimes, distortions within the same batch o
14、f gears are found to vary widely. Hence, it is very likely to find some gears after heat treatment with distortion far more than others. Gnnding of gears with unpredictable distortion necessitates inspection of every gear in a batch for distortion severity. Certainly, this increases the cost of gear
15、s. Furthermore, tooth surface hardness and effective case depth may not be acceptable after grinding. Besides grinding, surface hardness reduction of carburized and hardened teeth is also influenced by the slope of hardness vs case depth gradient of gear steel. Each carburizing grade steel has its o
16、wn unique slope and is primarily controlled by its alloying elements. The steeper the slope, the greater the hardness reduction on tooth surface after grinding. However, some special carburizing process or cycles such as boost-diffuse may produce a flatter slope of this gradient that allows larger s
17、tock removal without any appreciable loss of surface hardness. Unfortunately, at present these processes, which are complicated and expensive, have limited use in industry and are not considered in this investigation. In addition to the slope of hardness gradient, grinding machine Set-up plays an im
18、portant role in the amount of equal stock removal from each flank of the gear teeth, and its associated hardness reduction. COPYRIGHT American Gear Manufacturers Association, Inc.Licensed by Information Handling Services0.020 - 14 16 18 20 22 24 26 28 PD OVER THE PINS, Inch 972262-001M Figure 1 : He
19、at Treat Growth of Experimental Gears 5 B 3 4 - o OUT-OF-ROUNDNESS, Inch 972282.002M Figure 2: Out-of-Roundness of Gears after Heat Treatment 12 11 10 B 8 7 6 5 4 3 2 1 O FLATNESS DISTOFTION AT RIM, Inch + Grindina Stock To establish an ideal grind stock, detailed distortion characteristics and grow
20、th data of gears are beneficial. These are best obtained from a pre-production processing of gears using production equipment and facilities. Results of a typical processing for a family of gears made of AIS1 8620H are shown in Figures 1 through 3 that depict the average heat treat growths, out of r
21、oundnesses and rim flatness dimensions i. Figure 4 shows the configuration of one such gear. In this investigation, even though an improved carburizing and quenchmg system was utilized and gears were normalized for uniform grain structure prior to heat treat, distortion and growth varied from one ge
22、ar to another. The data so collected were still quite useful in determining the optimum grind stock for these gears. For a great majority of gears that are designed for carburizing and hardening, this type of investigation may not be eumomicaiiyjustified. In such cases, distortion data of similar ge
23、ars are sometimes useful. For gears without any pre-production or historical data, general knowledge on heat treat response of the gear material heipsio establish effective gnnd stock. 2.500 I-+- GEAR DATA NDP NPA: No. OF TEEM: HEUX ANGLE: 5 20 77 17.5 Figure 4: Basic Dimensions of an Experimental G
24、ear Grindina of Distorted Gears With the pd stock so determined either by a pre-production investigation or from data of similar gears, grinding of carburized and hardened gears is performed by properly positioning the grinding wheel in the tooth space. In modem gear grinding machmes with advanced m
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