AGMA 94FTM7-1994 Allowable Surface Compressive Stresses of Gear Teeth Made of Cast Iron Tempered Carbon Steels and Tempered Alloys Steels《铸铁 回火碳钢和回火合金钢制轮齿的可允许表面压应力》.pdf
《AGMA 94FTM7-1994 Allowable Surface Compressive Stresses of Gear Teeth Made of Cast Iron Tempered Carbon Steels and Tempered Alloys Steels《铸铁 回火碳钢和回火合金钢制轮齿的可允许表面压应力》.pdf》由会员分享,可在线阅读,更多相关《AGMA 94FTM7-1994 Allowable Surface Compressive Stresses of Gear Teeth Made of Cast Iron Tempered Carbon Steels and Tempered Alloys Steels《铸铁 回火碳钢和回火合金钢制轮齿的可允许表面压应力》.pdf(15页珍藏版)》请在麦多课文档分享上搜索。
1、STD-AGMA 94FTfl7-ENGL 1794 W Ub87575 0004587 22T 94FTM7 Allowable Surface Compressive Stresses of Gear Teeth Made of Cast Iron, Tempered Carbon Steels and Tempered Alloy Steels by: Hirofumi Kotorii Mechanical Engineering Laboratory, Japan American Gear Manufacturers TECHNICAL PAPER COPYRIGHT America
2、n Gear Manufacturers Association, Inc.Licensed by Information Handling ServicesAllowable Surface Compressive Stresses of Gear Teeth Made of Cast Iron, Tempered Carbon Steels and Tempered Alloy Steels Hirofumi Kotorii Mechanical Engineering Laboratory, Japan The statements and opinions contained hemi
3、n are those of the author and should not be consmed as an oficial action or opinion of the American Gear Manufacturers Association. ABSTRACT: Load endurance tests have been conducted to obtain dowable surface CompresSiVe stresses for materials required for strength and high reliability of power gear
4、s. The foilowing JIS materiais were used in conducting the tests: spheric graphite cast iron, G5502; carbon steel, G4051 and steel G4502. Using a designed gear with mdde 4 and u) degree pressure ange as a prototype, load endurance tests were conducted and data concerning tooth damage was accumulated
5、. The results of these tests and comparison of the durability of the materials are presented in this paper. Copyright O 1994 American Gear Manufacairers Association 1500 King Street, Suite 201 Aiexandria, Virginia, 22314 October, 1994 ISBN 1-55589-619-7 COPYRIGHT American Gear Manufacturers Associat
6、ion, Inc.Licensed by Information Handling ServicesSTD.AGMA qFTM7-ENGL 1774 Ob87575 0004591 988 Allowable Surface Compressive Stresses of Gear Teeth made of Cast Iron, Tempered Carbon Steels and Tempered Alloy Steels Senior Research Officer Hirofumi Kotorii Mechanical Engineering Laboratory, Japan 30
7、5 Ibaraki-ken Tsukuba-shi Namiki 1-2 Introduction It has been know for long time that clutching surfaces of gear teeth made of steel are damaged by the occurrence of so-called “pitting“ when the gear is operated under load for certain period, and the occurrence of “pitting would occasionally bring a
8、bout the breakages of not only the gear teeth but also the whole system with the increase of vibration noise if operation of the gear is continued under the same conditions. Occurrence of “pitting“ phenomena are also observed in other mechanical elements than gears, in rolling bearings for instance.
9、 Predominant opinion on the cause of “pittingc phenomena basing on the results of researches made for prolonged period is that they are due to the surface fatigue of the materials. Although classifications and causes of “pitting“ phenomena are not discussed in this presentation, “pittingm have been
10、the most serious problem among the damages to be observed on gear teeth surfaces dom to the present time. It has been revealed by the recent research work that the occurence of pitting phenomena was closely related to lubrication. In this connection, one started to have another look at the pitting p
11、henomena, especially from the view point of elastic fluid lubrication. Therefore, it has been urged to change the notion of the durability of tooth surface against pitting, that is, the calculation method of the intensity of gear tooth. circle is frequently compared with the stress of the material i
12、n order to derive the equation for determining the intensity of the teeth surfaces of gear. necessary to obtain the allowable stress of gear teeth surfaces made of various materials beforehand, as in the case of obtaining the bending strength. For this purpose, two test methods, the roller test usin
13、g cylindrical specimens and the test operating a pair of actual gear under load, have been applied for long time. Results obtained by these tests have been adopted as the designing standards. However, it is almost impossible to let the contacting conditions of rollers coincide with those of the toot
14、h surfaces of gears. Therefore, it is theoretically impossible to expect the agreements of the test results obtained by those two test methods respectively since there are several other additional differences between the two in respect to dimensional effects, temperature effects, etc. In this connec
15、tion, it is considered that test results obtained by the gear test should preferably be adopted as the precise designing standard, although those obtained by the roller test may be taken as reference only in case there is no other data available. However, calculated Hertz stress on pitch Standing on
16、 this view point, it should be 1 COPYRIGHT American Gear Manufacturers Association, Inc.Licensed by Information Handling ServicesDue to the above reasons, tests using actual gears were exclusively carried out in this experimental program for obtaining allowable stresses of gear teeth surfaces. exper
17、imental program were compared with the experimental data which has been presented and with the specification limits which had been referred to. Finally, test results obtained by this 1. Running Test 1.1 Test Equipment device was built as a trial. Its profile and specifications are shown in Fig.l and
18、 Table 1 respectively. A recirculation power type gear testing Luricating Device Operating Box Variable Speed Device Fig. 2 The characteristics of this tester are the adoptions of stepless phase adjustable coup1 ing applying harmonic driving mechanism being marketed under the trade name of i* Just 4
19、0“ as loading device and the torque pick-up applying pneumatic signal transmission device (slipringless) as torque measurement devi ce. circulating system, twisting load can be applied even while the tester is at rest. bearings. By setting these devices in the axis of the Both ends of the test gear
20、are supported by Needle bearings are used for the r I I I ia Ei RI A /lest Gear / lorqe Pick Up/ JUST Load Device Fig. 1 Table 1 Recirculation power type gear tester Bearing Distance : 100 I Circular Gear : W,b60.221,29 Spur gear.P.A Zdeg. Max. Trens. Power : 280pS (2051tl) Yax. Trens. Torque : M) I
21、(efi(49Wb)/pinion Max. Tang. driv. force : 1190(1167N) Wpinion : i, , 2000. m. 4o Max. Pitch-line velocity :17.6Us Motor : 22gl Apply load pethod : Applying huwoic driving i.chanim Uust 40) Appearance of this tester is shown in the photographs in Fig. 2. I I I Fie. 3 2 COPYRIGHT American Gear Manufa
22、cturers Association, Inc.Licensed by Information Handling ServicesSTD-AGUA SqFTM7-ENGL 1774 H b87575 17174573 7517 outer ends of the gear box and roller bearings are mainly used for the others. Both gear and bearings are lubricated by the same lubricating oil forcely fed from the same reservoir. The
23、 oil temperature can be controlled at any temperatures within the range of oil temperature to 80C in the accuracy of21“C. Cntrolling diagram of the measurement system is shown in Fig.3. temperature, torque and vibration are recorded on the recorder and rotational frequencies, flow rates of lubricant
24、 and impact loads are read on the indicators. Upper and lower 1 imi t s of operat ional conditions at the necessary parts of the tester can be set and the operation of the tester can automatically be discontinued in emergency including in the case of damage. Changes of oil 1.2 Materials and Specific
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