AGMA 2000FTM4-2000 Parametric Influences in the ISO Project Concerning Worm Gear Rating《在关于蜗轮分级的ISO项目中的参数影响》.pdf
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1、2000FTM4 I Parametric Influences in the IS0 Project Concerning Worm Gear Rating by: M. Octrue, Centre Technique des Industries Mecaniques TECHNICAL PAPER COPYRIGHT American Gear Manufacturers Association, Inc.Licensed by Information Handling Servicesr O Parametric Influences in the IS0 Project Conce
2、rning Worm Gear Rating Michel Octrue, Centre Technique des Industries Mecaniques The statements and opinions contained herein are those of the author and should not be construed asan official action or opinion of the American Gear Manufacturers Association. Abstract The author analyses the influence
3、 of different parameters taking into account in the CD IS0 14521 for worm gear ratting for the different criteria such as: efficiency, wear load capacity, surface durability (Pitting) deflection tooth root strength The influencing parameters are divided in different categories, like intrinsic parame
4、ters to the worm gear like geometry or materials, environmental parameters like lubricants and temperature, external parameters like loading conditions, and driving and driven machines. Some criteria are compared to analytical methods and experimental results. Copyright O 2000 American Gear Manufact
5、urers Association 1500 King Street, Suite 201 Alexandria, Virginia, 22314 October, 2000 ISBN: 1-55589-765-7 COPYRIGHT American Gear Manufacturers Association, Inc.Licensed by Information Handling Servicest PARAMETRIC INFLUENCES IN THE IS0 PROJECT CONCERNING WORM GEAR RATING By Dr Michel OCTRUE - CET
6、IM - France 1-Introduction In the framework of IS0 Technical committee TC60, a new work item concerning the calculation of load capacity of worm gear is in Focess since 4 years. The future reference of the standard IS0 14521: load capacity calculation of worm gear. This standard is based on DIN 3996
7、 which has been adopted in Germany in September 1998. The following conditions that can limit the rated load capacity : o wear: such damage usually appears on the tooth flanks of bronze wormwheels pitting : this form of damage may appear on the flanks of wormwheel teeth. Its development is strongly
8、influenced by the load transmitted and the loadsharing conditions. tooth breakage : shear failure of wormwheel teeth or worm threads can occur when teeth become thin due to wear or overload. Worm thread and worm shaft breakage: shaft breakage can occur as a result of bending fatigue or overload. wor
9、m shaft deflection : excessive deformation under load modifying contact pattern between worm and worm wheel. o scuffing : this form of damage often appears suddenly. It is strongly influenced by transmitted load, sliding velocities and the conditions of lubrication. working temperature : when excess
10、ively high working temperature leads to accelerated degradation of the worm gear lubricant. Among this, IS0 14521 defines criteria for: wear, pitting, tooth breakage of worm wheel, worm shaf deflection. Table 1 indicates the rdationship between different forms of capacity limits in combination with
11、speed and torque. In order to illustrate the behaviour of IS0 14521, this paper : presents result calculations based on 3 worm gears sets which are those used in our laboratory for testing, o presents synthesis of influencing parameters for each criteria calculation, with comments, and an identifica
12、tion of the best choice for some parameters. 2Principles of calculations in IS0 14521 As it has been introduced, the calculation of load capacity is based on 4 criteria, which are linked together as follows : criteria for pitting and criteria for worm shaft deflection are independent of others, crit
13、eria for wear and criteria for tooth breakage of worm wheel are dependent because the reduction of worm wheel tooth thickness by wear is taken into account for the calculation of shear stress at tooth root. criteria for wear is function of oil film thickness, which depends on oil film temperature, s
14、o the calculation of different type of power losses in order to determine the wheel bulk temperature, is the first step for wear calculation. Note: This concept of wheel bulk temperature calculation is very important in IS0 14521. It must be considered by new users of this standard. At design stage
15、it is not always easy to evaluate all data for such calculation. 3-Definition of gear data Since more than IO years CETIM undertook endurance tests for worm gears in order to check their behaviour according to wear. Three bench tests have been setup, with a centre distance of 125 mm, for 3 different
16、 gear ratios: 1/40, 3131, 5/24 (see Table 2 and Table 3). 1 COPYRIGHT American Gear Manufacturers Association, Inc.Licensed by Information Handling ServicesCSensitivity of IS0 14521 to geometry In order to isolate the influence of geometry on the zone of contact and the lines of contact, it has defi
17、ned nondimensional parameters (see Table 4): p, for the mean Hertzian stress, h, for the mean lubricant film thickness s, for the mean slip path. IA Worm surface B I C Table 2-Geometrical data of worm gears Gear ratio u=zl/z2 Axial module mm Normal pressure angle I Worm PROFILE Lead angle I 1/40 3/3
18、1 5/24 4.95 6.45 8.36 5.4375 21.1369 40.2592 21.81 20.65 25 A A A Worm material Worm wheel Lubricant Worm wheel face width mm I 45 I 45 I 45 External diameter of worm wheel mm I 220 I 220 I 220 Case hardened steel Bronze with 12 % of tin an x% of Nickel. Synthetic Oil : Polyglycol SHELL TIVELA A - 1
19、22 Cst at 40C p, parameter for the mean Hertzian stress si parameter for the mean slip path h, parameter for the mean lubricant film thickness Geometry p, (Type of profile, q, z, x, hjrnfl, u) s (Type of profile, y, u) h (Type of profile, q,. z, x, WQ, 9 u) 2 COPYRIGHT American Gear Manufacturers As
20、sociation, Inc.Licensed by Information Handling Services. These parameters are defined by formulae (method C) in the standard but they can be determined numerically with a detailed study in each point of the lines of contact (method B) of Hertzian stress, lubricant film thickness, slip path. For the
21、 type of profile IS0 14521 considers C profile (known commercially CAVEX) and other profiles A, I, N, K, C which are considered in the same category. Note: The pressure angle and the external diameter of worm wheel are not taken into account by IS0 14521. In order to show the sensitivity it is possi
22、ble to establish that: the allowable torque for pitting resistance is proportional to p,*, the oil film thickness is proportional to h*, the life for a given expected wear (increase of backlash) is proportional to *.(p*).(h*)- the allowable torque for a given expected wear (increase of backlash) is
23、proportional to *.(p*).(h*).* + 0.5) O ( with 0.7912 = 2.24*0.13 The simulation on the 3 gear sets gives the results presented in Table 5. Note: IS0 14521 gives a strong advantage for C Profile with +30% on allowable torque for pitting and wear criteria. This tendency has been checked on different g
24、eometry. So, with IS0 14521, it will be strongly influenced to use C Profile for worm gears Sensitivity : For normal used, it is preferable to use Cu Sn 12 Ni bronze ( sHhmT = 520 MPa) than Cu Sn 12 (sIMT = 425 MPa). For low sliding velocities ( 1,l is recommended. No considerations of thermal excha
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