AGMA 07FTM02-2007 Study of the Correlation Between Theoretical and Actual Gear Fatigue Test Data on a Polyamide《关于聚酰胺理伦和实际齿轮疲劳试验数据之间相互关系的研究》.pdf
《AGMA 07FTM02-2007 Study of the Correlation Between Theoretical and Actual Gear Fatigue Test Data on a Polyamide《关于聚酰胺理伦和实际齿轮疲劳试验数据之间相互关系的研究》.pdf》由会员分享,可在线阅读,更多相关《AGMA 07FTM02-2007 Study of the Correlation Between Theoretical and Actual Gear Fatigue Test Data on a Polyamide《关于聚酰胺理伦和实际齿轮疲劳试验数据之间相互关系的研究》.pdf(8页珍藏版)》请在麦多课文档分享上搜索。
1、07FTM02Study of the Correlation Between Theoretical andActual Gear Fatigue Test Data on a Polyamideby: S. Wasson, DSM Engineering PlasticsTECHNICAL PAPERAmerican Gear Manufacturers AssociationStudy of the Correlation Between Theoretical andActual Gear Fatigue Test Data on a PolyamideSteve Wasson, DS
2、M Engineering PlasticsThe statements and opinions contained herein are those of the author and should not be construed as anofficial action or opinion of the American Gear Manufacturers Association.AbstractDSMEngineeringPlasticsisaproducerofnylonplasticmaterialsusedforgears. Inthepasttwoyears,theyha
3、vebeenrunningfatiguetestsonactualmoldedgearsinordertoprovidedesigndata.Thisexperimentusedspur gears that are fully lubricated and temperature controlled. Testing for the materials has been done atDSMResearch,whilethegeartestsarebeingconductedattheUniversityofBerlin. Thepurposeofthetestingis to see i
4、fthere is a good correlation between fatigue data,generated on testbars,versusthe actualfatigueperformance in a gear.In order to do this, the theories of gear calculations to get root stresses also had to be examined. AdvancedFEA showed that there are corrections needed to account for high loading o
5、r high temperatures in plasticgears. This corroborates other work within the industry.With proper corrections to get accurate root stresses, there can be shown good correlation between tensilebar fatigue and actual spur gear fatigue.Thechemistryofvariousnylonsusedingearsisexplained. Ahighcrystalline
6、nylonhasbeenfoundwhichisan excellent material for gears in demanding applications and can withstand high torques and operatingtemperatures. The material has a crystallinity of 70%, which results in very good wear properties andexcellent retention of mechanical properties (strength, stiffness, and fa
7、tigue) especially at elevatedtemperatures.Several commercial gear applications are currently utilizing these properties. These will be shown todemonstrate the benefits and manufacturability of this material.Copyright 2007American Gear Manufacturers Association500 Montgomery Street, Suite 350Alexandr
8、ia, Virginia, 22314October, 2007ISBN: 978-1-55589-906-61Study of the Correlation Between Theoretical and Actual Gear Fatigue Test Dataon a PolyamideSteve Wasson, DSM Engineering PlasticsIntroductionPlastic gears have gained in their use and are nowseen in the home, office, and automobile. Theyhave g
9、ained acceptance due to manufacturingmethods such as injection molding which produceseconomical yet very reproducible gears. Noise re-duction and corrosion resistance are also reasonswhy plastic gears are used. Plastic gears are nownot only used for light loaded applications such asprinters and toys
10、, but for highly loaded or elevatedtemperature environments, such as automotivestarter gears, turbo actuators, electronic throttlecontrol, etc.With the higher demands it would be desirable tohave increased predictive ability especially with re-gards to long term endurance capability. To thisend, a s
11、tudy was done to look at fatigue on actualplastic gears and relate that to tensile bar fatigue.Tensile fatigue is quicker and easier to generate.The materials suppliers usually have this data al-ready available. It is also independent of geometryasthestressontensilespecimensissimplytheloaddivided by
12、 the cross sectional area. The goal is tohave a method where root stresses could be calcu-lated and compared to the more readily availabletensile fatigue for prediction of gear life.Critical to this predictive capability then is the meth-odsforcalculationofgeartoothrootbendingstress.Finite Element A
13、nalysis (FEA) and semi-analytic(e.g. ISO standards, KISSsoft) must be comparedand validated for use in heavily loaded or high tem-perature plastic gears.MethodsThe portion of the fatigue study that is on the actualplastic gears was conducted at the University ofBerlin in Germany, while the tensile b
14、ar fatigue wasperformed at DSM Engineering Plastics in Geleen,the Netherlands. The gear test parameters wereselected to minimize wear and thus isolate the fail-uremodeinthegeartotruefatigue. The testrig isa2closed-loop(4-square)testerwithdiplubrication.The oil lubrication is maintained at 140 C. Thi
15、s istypical automotive under hood temperatures andmotoroilwasutilizedasthelubricant. Thegearsarespur with the driver being steel and the driven plas-tic. Theyarebothmoduleof2,facewidthof12mm,witha 20degree pressureangle. A standardprofileaccording to DIN 867 was used.The FEA was conducted on the sam
16、e gear pair us-ing a commercially available software package,MSC.MARC. The gears were modeled as 2 discswith 4 teeth each, under plain strain conditions.80,000 first order quads were used, with mesh re-finementsinthetoothandatthesurfacesinordertoalso capture contact stresses, see figures 1, 2 and3.
17、Linear elastic modeling was used for the initialruns.Figure 1. Finite element mesh2Figure 2. Mesh refinementFigure 3. Mesh refinement for contactstressesResultsCalculationsIngeneralcontactratiosoftwospurgearsare intherangeof1to2. Thismeansthatinpartof themesh-ing cycle, 1 tooth will carry the entire
18、 transmittedtorque load. The classic theory shows this as1/3-2/3-3/3 rule. That is, at first contact, the toothcarries 1/3 of the load and increases its sharesteadily to 2/3 until the preceding tooth leaves themesh and then it carries the entire load for a shortperiod and then symmetrically reverses
19、 this loadcycle. Our FEA shows this to be more like2/5-3/5-5/5 for a steel gear pair, with a modulus of206 GPa. This is reinforced in other literature also.Whenweintroduceaplasticdrivengearwithasteeldriver gear, the load sharing is quite different thanthe theory. The curve skews to later in the rota
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