Table of Contents:
TableofC TableofConten ontents:.............. ts:.......................... ...................... ..................... ....................... ....................... ...................... ..................... ...................... ....................... ...................... ........... i Disclaime Disclaimerr ....................... .................................. ..................... ...................... ....................... ...................... ....................... ...................... ..................... ...................... ....................... .............. .. 1 Preamble Preamble ...................... ................................. ..................... ...................... ....................... ...................... ....................... ...................... ..................... ...................... ....................... ................ .... 1 DevelopmentFlowChart..................................................................................................................2 BevelGear BevelGearFoun Foundatio dation n ....................... ................................. ...................... ....................... ....................... ....................... ..................... ..................... ...................... ................ ..... 2 Setup............................. Setup........................................ ..................... ...................... ....................... ...................... ....................... ..................... ..................... ....................... ...................... ............. 2 TemplateP TemplateParame arameters ters ...................... ................................ ..................... ....................... ....................... ....................... ..................... ..................... ....................... ............. 2 Relations.......... Relations..................... ....................... ...................... ..................... ....................... ....................... ...................... ..................... ...................... ....................... .....................3 ..........3 Straight/Sp Straight/Spiral iralTooth ToothBase Base ...................... ................................ ...................... ....................... ...................... ..................... ..................... ....................... ......................3 ..........3 ToothDatum ToothDatums s ....................... .................................. ...................... ...................... ...................... ....................... ....................... ....................... ....................... ...................... .............. ... 3 ToothCoord ToothCoordinat inateSys eSystem[T tem[TCSYS] CSYS] ...................... .................................. ....................... ...................... ....................... ..................... ..................... .............. 3 ToothDatum ToothDatumPla Planes nes ...................... ................................. ...................... ...................... ...................... ....................... ..................... ..................... ....................... .............. ... 3 SectionDa SectionDatumPo tumPointL intLayou ayout[SDP t[SDP]] ..................... ................................. ....................... ...................... ....................... ...................... ..................... .............. ... 3 SpiralGea SpiralGearSpe rSpecific cificFeat Features ures ...................... ................................. ...................... ....................... ....................... ..................... ..................... ....................... .................. ......5 5 PitchCone PitchConeSurfa Surface[P ce[PCS] CS] ...................... ................................. ...................... ....................... ....................... ...................... ..................... ...................... ....................5 ........5 SpiralPla SpiralPlaneAx neAxis[S is[SPA] PA] ....................... ................................. ...................... ....................... ...................... ....................... ....................... ....................... ......................6 ..........6 SpiralAnglePlane[SAP]..............................................................................................................6 PostFeatureCreation...............................................................................................................7 SpiralCu SpiralCurvePa rvePath th ....................... .................................. ..................... ...................... ....................... ...................... ..................... ...................... ....................... .....................7 ..........7 Geometry Geometry ...................... .................................. ...................... ..................... ....................... ....................... ...................... ..................... ..................... ....................... ....................8 ........8 ProjectontoPitchCone................................................................................................................8 Reference References s ....................... .................................. ...................... ...................... ...................... ....................... ....................... ..................... ..................... ....................... ................ ....9 9 SpiralCu SpiralCurveDa rveDatumPo tumPoints ints[S#CD [S#CDP] P] ...................... .................................. ....................... ....................... ....................... ..................... ..................... .............. ... 9 Reference References s ....................... .................................. ...................... ...................... ...................... ....................... ....................... ..................... ..................... ....................... ................ ....9 9 SectionC SectionCoordi oordinate nateDatum Datums s ..................... ................................ ....................... ....................... ...................... ...................... ..................... ...................... ......................9 ..........9 Primary[SX Primary[SXPCSYS PCSYS]] ...................... .................................. ...................... ..................... ....................... ....................... ..................... ..................... ....................... .................. ......9 9 Reference References s ....................... .................................. ...................... ...................... ...................... ....................... ....................... ..................... ..................... ....................... ................ ....9 9 Secondary[S#SCSYS]...............................................................................................................10 Relation...................................................................................................................................10 Tertiary[S Tertiary[S#TCS #TCSYS] YS].......... ..................... ....................... ...................... ..................... ....................... ....................... ..................... ..................... ....................... .................. ...... 10 Relation...................................................................................................................................10 ProtoTooth ProtoTooth ....................... .................................. ..................... ...................... ....................... ...................... ....................... ..................... ..................... ....................... .....................10 ..........10 SectionCu SectionCurves rves ....................... .................................. ..................... ...................... ....................... ....................... ..................... ..................... ....................... .......................10 ............10 ParametricEquations..............................................................................................................10 InvoluteC InvoluteCurve[ urve[S#C{ S#C{1;3}] 1;3}] ....................... .................................. ...................... ...................... ....................... ...................... ..................... ...................... .............. ... 10 Side(AxistoInvolute)Curve[S#C{2;4}] Side(AxistoInvolute)Curve [S#C{2;4}] .......................... .............. ......................... .......................... ........................... ........................... ............... .. 11 GroupSec GroupSection tionFeatu Features res ...................... ................................ ...................... ....................... ...................... ....................... ...................... ..................... .....................11 ..........11
SideSurface[T{L/R}S] ............................................................................................................... 11 RevolvedTubeSurface[RTS]....................................................................................................12 StraightToothGears:..............................................................................................................12 SpiralToothGears:.................................................................................................................12 SketchReferences:.................................................................................................................12 Geometry ................................................................................................................................12 SurfaceMerge........................................................................................................................... 12 FirstFeature ........................................................................................................................... 13 SecondFeature ......................................................................................................................13 SolidTooth .................................................................................................................................13 GearTemplate ............................................................................................................................... 13 UsingtheTemplates ......................................................................................................................14 InitialModification.......................................................................................................................14 Pinion/Miter .............................................................................................................................. 14 ToothGroup............................................................................................................................14 Pattern ....................................................................................................................................14 Core........................................................................................................................................ 15 Gear ...........................................................................................................................................17 GearTooth..............................................................................................................................17 GearPartAssembly................................................................................................................17 GearCore ............................................................................................................................... 17 Merge...................................................................................................................................... 18 MatingPairs ...................................................................................................................................18 AssemblySetup .........................................................................................................................18 ExistingShafts........................................................................................................................18 FirstParts ...............................................................................................................................18 AngleModification ......................................................................................................................19 ModifyingGears.............................................................................................................................19 ZerolBevelGears ......................................................................................................................19 Crowning ....................................................................................................................................19
ii
Disclaimer
Thetemplates,suppliedwithorcreatedusingthisdocument,areintendedfortechnicalillustrative purposesonly.Theauthorlaysnoclaimthattheresultingmodelsaretruerepresentationsof bevelgearsproducedbygearmanufacturers. Preamble
Duringthedevelopmentofthismethod,theauthordiscoveredaproblemwithinthe Pro/ENGINEERWildfiresoftware.Whenmodifyingtheparameterstocreategears,thesurface mergefeaturesfail.Fixingthisandthentryingtopatternthetooth,themergesfailagain.Pitch coneanglesgreaterthan45°leadtofailures.Aworkaroundwasdevisedtocircumventthe problem. TheauthorinitiallyusedEmptyfilestocreatealltemplates.Allpartdatumfeatures,coordinate systemanddatumplanesweregeneratedandrenamedinaccordancetothenamingconvention displayedinthisdocument.Anydefaultsketchreferencesweredeleted.
1
Development Flow Chart
Bevel Gear Foundation
Bevel Gear Core
Bevel Gear Part Assembly
Straight Tooth Base
Cup Face Tooth Pinion
Spiral Tooth Base
Left-Hand
Flat Faced Tooth Pinion
Cup Face Tooth Gear
Cup Face Tooth Pinion
Right-Hand
Flat Faced Tooth Pinion
Cup Face Tooth Gear Cup Face Tooth Pinion
Flat Faced Tooth Pinion
Cup Face Tooth Gear Bevel Gear Foundation
SETUP
Template Parameters Parameter Name Tooth Parameters DIAMETRAL_PITCH NUMBER_OF_TEETH
Real Number Integer
10 20
Pinion ● ●
NUMBER_OF_TEETH_MG
Integer
20
●
●
FACE_WIDTH
Real Number
0.5
●
●
PRESSURE_ANGLE
Real Number
20
●
SHAFT_ANGLE
Real Number
90
●
SPIRAL_ANGLE
Real Number
30
●
CLEARANCE
Real Number
0.01
●
●
MOUNTING_DISTANCE
Real Number
0
●
●
BORE_DIAMETER
Real Number
0
●
●
BORE_LENGTH
Real Number
0
●
●
HUB_DIAMETER
Real Number
0
●
●
HUB_LENGTH Real Number 0 APEX_TO_BACK Real Number BOLT_CIRCLE Real Number 0 THROUGH_HOLE Real Number 0 NUMBER_OF_HOLES Integer 0 CBORE_DIAMETER Real Number 0 CBORE_DEPTH Real Number 0 WEB_THICKNESS Real Number 0
●
●
Type
Initial Value
Designate Where Used Gear(Assy) ●
Gear(Core) ● ●
●
Gear Blank Parameters
0
● ●
● ● ●
● ● ● ● ● ● ●
2
Relations CUTTER_DIAMETER=(NUMBER_OF_TEETH+NUMBER_OF_TEETH_MG)/(2*DIAMETRAL_PITCH) IF NUMBER_OF_TEETH_MG>NUMBER_OF_TEETH PITCH_CONE_ANGLE=ATAN(SIN(SHAFT_ANGLE)/((NUMBER_OF_TEETH_MG/NUMBER_OF_TEETH)+COS(SHAFT_ANGLE))) ELSE PITCH_CONE_ANGLE=SHAFT_ANGLE ATAN(SIN(SHAFT_ANGLE)/((NUMBER_OF_TEETH/NUMBER_OF_TEETH_MG)+COS(SHAFT_ANGLE))) ENDIF PITCH_DIAMETER=NUMBER_OF_TEETH/DIAMETRAL_PITCH ADDENDUM=DIAMETRAL_PITCH^-1 DEDENDUM=CLEARANCE+ADDENDUM PITCH_CONE_RADIUS=PITCH_DIAMETER/(2*SIN(PITCH_CONE_ANGLE)) ADDENDUM_ANGLE=ATAN(ADDENDUM/PITCH_CONE_RADIUS) DEDENDUM_ANGLE=ATAN(DEDENDUM/PITCH_CONE_RADIUS) ANGULAR_ADDENDUM=ADDENDUM*COS(PITCH_CONE_ANGLE) OUTER_DIAMETER=PITCH_DIAMETER+(2*ANGULAR_ADDENDUM) FACE_ANGLE=PITCH_CONE_ANGLE+ADDENDUM_ANGLE ROOT_ANGLE=PITCH_CONE_ANGLE-DEDENDUM_ANGLE VERTEX_DISTANCE=OUTER_DIAMETER/(2*TAN(FACE_ANGLE)) PHI=((180/PI)*(TAN(PRESSURE_ANGLE)-(PRESSURE_ANGLE*PI/180)))/COS(PITCH_CONE_ANGLE) TCRA=(90/NUMBER_OF_TEETH)+PHI
Straight / Spiral Tooth Base
TOOTH DATUMS
Thesearetheinitialdatumfeaturesusedintheprimarytooth’sdevelopment. Tooth Coordinate System [TCSYS]
Thiscoordinatesystemistheonlyconnection fortheprimarytoothtotherestofthemodel. Allfurtherdatumsandgeometrywillbebased offofthisfeature.Thesinglenon-zero dimensionisusedforcreatingthetoothpattern. UsethePartCSYS[PCSYS]asthereference. RotatethefeatureabouttheZ-axisanarbitrary angle. Note:Unlessotherwisenoted,theauthoruses Note: 30°forallarbitraryangles. SeeFigure1 Tooth Datum Planes
Figure1 Figure1:ToothCoordinateSystemDefinition :ToothCoordinateSystemDefinition
Therearethreedatumplanesneededfor referencinglaterfeaturesandgeometry.Theyhaveazero(0)offsetalongeachaxisofthe TCSYScoordinatesystem. •
X [TYZPLN]
•
Y [TXZPLN]
•
Z [TXYPLN] Section Datum Point Layout [SDP]
ThisisaSketchedDatumPointfeature.Thisfeaturecontainsthepointsandreference dimensionsnecessarytocreatethepropertoothcross-sections. ThesketchingplaneistheTYZPLNplaneandthetopreferenceistheTXZPLNplane. 3
Note:Forall“sideview”sketches,theauthordoesnotusethedefaultreferences.Theusercan Note: usethedefaults,ifsodesired,andmodifythesubsequentinstructionsaccordingly. ThereferenceforthesketchitselfistheTCSYScoordinatesystem. SKETCH
CreateaHorizontalConstructionLine(CL)throughtheTCSYS;thisisthegear’s‘RotationAxis’. Next,createonemore,angledthroughtheTCSYSfromthelowerlefttotheupperright;thisisthe gear’s‘PitchLine’(PL).ThedimensionshouldbeangularandbasedfromtheHorizontalCL. ModifythevaluetoberelatedtothePITCH_CONE_ANGLE(PCA). POINTS ALONG PITCH LINE HeelPitchPoint HeelPitchPoint
PlaceasketchpointontheupperportionofthePL.ModifytheWeakDimensiontoberelatedto PITCH_DIAMETER/2. ToePitchPoint ToePitchPoint
PlaceanotherpointonthePLbetweenthe heelpointandtheTCSYS.Thisistobe dimensionedfromheelpointalignedwiththe PL.Thedimensionvalueisequaltothe FACE_WIDTH(FW)[sd3 ]. Atthispointintheconstruction,thefour variancesbegintodiverge. SeeFigure2. InternalPoints InternalPoints
Note:ThesearenotrequiredfortheStraight Note: Toothedgears. Theinternalpointsareusedforthecreationof additionalsectionssothatSpiralGearsare generatedwithasmootherprofile.
Figure2 Figure2:BasicToothDimensions :BasicToothDimensions
FortheSpiralGears,placethree(3)pointsbetween theHeelandToepoints.SeeFigure3.Dimension betweenthemalignedtothePLwiththedimensions equaltoFW/4.Theinitialrelationcanbeequalto sd3/4 andthetwo(2)successivedimensionsequalto theinitial. ExternalPoints ExternalPoints
Figure3 Figure3:SpiralPitchPints :SpiralPitchPints
Theexternalpointsallowthesidesurfacestoextend pasttherevolvedsurfacefeaturetobecreatedlater. Thiscanbethenextmajordifferentiationpointinthe development,butthesingledimensionalmodification canbeperformedatalatertime.Thisallowsfora morestraightforwarddevelopment.
OnepointistobeplacedalongthePLontheoutside oftheHeelpoint.Thealigneddimensionisequaltosd3/4 ,thesameastheInternalPointsabove. AnotherpointislocatedalongthePLbetweentheToepointandTCSYS.Thisisthedimension thatneedstodifferentiate.ForParallelteeth,thedimensionisthetypicalFW/4 . SeeFigures3&4.
4
FLAT FACE TOOTH EXCEPTION
Toallowforthetoothsidestopassthroughthe rotatedtoeendsurface,thisdimensionmustbe doubledtoFW/2 .Asstatedbefore,thiscanbe modifiedpost,deviation,aftertheclosed rotatedsurfaceisgenerated. POINTS ALONG REVOLUTION AXIS ConstructionLines ConstructionLines
Theconstructionlinesdeterminethelocationof thedatumpointsthatfollow.Thepoints,in turn,willbethelocationmarkersfortheprimary coordinatesystemusedtogeneratethe involutecurves. AllconstructionlinesareNormaltothePL.
Figure4 Figure4:StraightPitchPoints :StraightPitchPoints
ForStraightToothGears,onlytheouterpoints alongthePLareused. ForSpiralToothGears,thelinespassthrougheachpointalongthePLisused. Points Points
AsketchpointisplacedateveryintersectionoftheConstructionLinesandHorizontalCL. REFERENCE DIMENSIONS
Theequationusedindeterminingthebaseradiusoftheinvoluterequiresthepitchdiameter.The teetharenotorientedonacylinder,butratheracone.Thesedimensionssimplifythe development,bygivingtheproper,required“pitchradius”forthesections. Goto:Sketch>Dimension>Reference.Dimensionbetweencorrespondingpointsandalignedto theCL. SeeFigures5&6.
Figure5 Figure5:CompletedStraightSketch :CompletedStraightSketch
Figure6 Figure6:CompletedSpiralSketch :CompletedSpiralSketch
Spiral Gear Specific Features
PITCH CONE SURFACE [PCS]
ThisisaR Revolved evolvedSurfaceFeature SurfaceFeature.Itisrevolvedthrough90°includedangleonBothSides BothSides. SurfaceFeature BothSides Forthesketchplacement:UsePrevious . ThesketchreferencesaretheTCSYSandtheouter-mostdatumpointsalongthepitchline.
5
ThissketchconsistsofahorizontalconstructionlinethroughtheTYSCSandageometryline betweentheexternalendpoints.SeeFigures7&8.
Figure7 :CompletedPCSSketch Figure 7:CompletedPCSSketch
Figure8 Figure8:PitchConeSurface :PitchConeSurface
SPIRAL PLANE AXIS [SPA]
ThisfeatureisusedtoproperlylocatetheSpiralPlane. CreateaDatumAxisthroughthemiddledatumpointalongPitchLineandnormaltothePCS. SeeFigure9. SPIRAL ANGLE PLANE [SAP]
Thisfeatureisusedtoproperlyorientthesketchgeometrythatwillbecomethecurvepath. PlacetheplanethroughtheSPAandangledfromtheTYZPLNplane,thedefaultvalueOK. NexteditthedimensionsothatitisequaltotheSPIRAL_ANGLEparameter. SeeFigure10.
Figure9 Figure9:SpiralPlaneAxis :SpiralPlaneAxis
Figure10 Figure 10:SpiralAnglePlane 10:SpiralAnglePlane :SpiralAnglePlane
6
Post Feature Creation
DuetothegeometryoftheSpiralcurveisbestatthisjuncturetodivergethemodelintotheLeft Hand/RightHandspirals. •
Save the file.
•
Save a copy to indicate the proper hand, as indicated by the current SAP orientation.
•
Comment out the SPIRAL_ANGLE relation, place “/*” at the start of line containing the relation.
•
Edit Feature and add a negative “-” sign in front of the value.
•
Regenerate.
•
Remove the comment, delete the “/*”.
•
Save a copy to indicate the new SAP orientation.
•
Erase the template from memory.
•
Open one of the diverged models. SPIRAL CURVE PATH
Theactualcurveisanarcsegment,whichisprojectedontothePCS.UsetheSketchToolto createthesketch[SPCRVSKTCH].Thesketchplaneismade‘onthefly’. Usethefollowing,intheorderindicated,tocreateit. 1. Middle SDP Point along the Pitch Cone - Thorough (default) 2. TYZPLN - Normal 3. Pitch Cone - Tangent
TheorientationreferenceshoulddefaulttotheTYZPLN.ThisisOK. SeeFigures11&12.
Figure11 Figure11:SpiralCurveSketchPlane 11:SpiralCurveSketchPlane :SpiralCurveSketchPlane
Figure12 Figure12:SpiralCurveSketchPlane 12:SpiralCurveSketchPlane :SpiralCurveSketchPlane
7
SketchReferences Thefollowingisalistforthesketchreferences. •
SPA or middle SDP point
•
SAP
•
Inner Arc Edge of PCS
SeeFigure13. Geometry
PlaceaConstructionLinethroughtheSPA/middle SDPreferenceandnormaltotheSAPreference. PlaceacirclecenteredontheCLsothatthecenteris locatedonthearccenterreferencesideoftheSAP. ThecirclecanbeeitherTangenttotheSAPor coincidentwiththeSPAreferencepoint.
Figure13 Figure13:SpiralCurveReferences 13:SpiralCurveReferences :SpiralCurveReferences
Thediameterdimensionisequalto:CUTTER_DIAMETER.Convertthecircleintoconstruction geometry,RMB>Construction. CreateanOffsetsegmentusingtheouterPCSedge. Theoffsetdistanceisequalto:2*CLEARANCE.This willallowthearcsegmenttointersecttheouteredge whenprojectedontoit. Note:Thiscannotbeconvertedintoconstruction Note: geometry. Next,drawanarcconcentrictotheConstruction CirclebetweentheintersectionsoftheConstruction Circleandtheinnerarcreferenceandtheoffset segment. Figure14 Figure14:CompletedSpiralCurveSketch 14:CompletedSpiralCurveSketch :CompletedSpiralCurveSketch (Right(Right-Hand) Hand)
Thesketchiscomplete.SeeFigure14.
PROJECT ONTO PITCH CONE
ThesketchnowneedstobeprojectedontothePCS.Select Edit> Edit>ProjectfromthePull-DownMenu(PDM). roject ThetypeofitemtobeprojectedisCURVE.Selecttheconcentricarc fromsketchfeature. Forthedirection,selectNormaltosurfaceandselectthePCS. SpecialNote:Fromthispointon,itisbesttocreateeachsection SpecialNote: (markedwithS#...)independentlyfromtheothersections. SeeFigure15.
Figure15 Figure15Section 15Section Section Grouping Grouping
8
SectionPlanes[S#PDP] Thisfeaturesetsupthedatumpointusedto orienttheprimarycoordinatesystem. References
SelecttheSectionPitchLinePoint(SDP)then theTXZPLN.Itshoulddefaulttothroughand parallelrespectively. EXCEPTION
FortheCenter,FW/2,point,thisfeatureisnot created;thepointisthereference. Figure16 Figure 16:SectionPlane(TYP) 16:SectionPlane(TYP) :SectionPlane(TYP)
SeeFigure16.
SPIRAL CURVE DATUM POINTS [S#CDP]
Thisisusedtoorientthesection’sprimary coordinatesystem’s‘X’axis. References
SelecttheS#PDPandtheSpiralCurvePath. Note:TheS#PDPshouldautomaticallybe Note: selectedifcreatedimmediatelyafteritscreation. EXCEPTION
FortheCenter,FW/2,point,thisfeatureisnot created;thepointisthereference. SeeFigure17. Figure17 Figure17:SpiralCurveDatumPoint(TYP) 17:SpiralCurveDatumPoint(TYP) :SpiralCurveDatumPoint(TYP)
ThisconcludestheSpiralGearSpecificFeaturecreation. Section Coordinate Datums
Therearethree(3)coordinatesystemsneededtocreatethetooth.Thesecondaryandtertiaryare copiesoftheprimary. PRIMARY [SXPCSYS]
References
TheOriginforallPCSYS’sisthecorrespondingAxial DatumPointfromtheSDPfeature. Thepositive‘X’directionissetusingthe: STRAIGHT TOOTH GEARS
CorrespondingSDPpointalongPitchLine SPIRAL TOOTH GEARS
CorrespondingPrimaryDatumPlane/CurvePoint, S#CDP Thepositive‘Z’directionissetusingtheZ-axisofthe TCSYS.
Figure18 Figure18:PrimaryCSYSReferences 18:PrimaryCSYSReferences :PrimaryCSYSReferences
SeeFigure18&19. 9
SECONDARY [S#SCSYS]
ThisisaRotatedCopyofthePCSYS.Select Edit>F Copy, dit>Feature >FeatureO eatureOperations OperationsfromthePDM.SelectC perations opy, thenM Move/ Dependent//Done. ove/Dependent one PicktheS#PCSYSthenD Done.SelectR Rotate/ one otate/CSYS SYS andpicktheTCSYS.SelectZ Zaxis Zaxis/ axis/Okay. kay Enteranarbitraryangle.SelectD DoneM oneMove Movethen ove Done/ one/OK. OK Relation Figure19 Figure 19:SectionPrimaryCoordinateSystem 19:SectionPrimaryCoordinateSystem :SectionPrimaryCoordinateSystem
Editthefeatureandsetthedimensionvalueequalto TCRA(relationequation).
TERTIARY [S#TCSYS]
ThisisaRotatedCopyofthePCSYS.SelectE Edit>F dit>Feature >FeatureO eatureOperations OperationsfromthePDM.Select perations Copy,thenM Move opy, ove/Dependent Dependent ependent/Done. one PicktheS#TCSYSthenD Done.SelectR Rotate/ Zaxis Flip one otate/CSYSandpicktheTCSYS.SelectZ SYS Zaxis/ axis/F /Okay /Okay. kay Enteranarbitraryangle.SelectD DoneM oneMove Done/ one/OK. OK MovethenD ove Relation
EditthefeatureandsetthedimensionvalueequaltoTCRA(relationequation). Proto Tooth
Foreachsection,regardlessoftoothtype,therearefour(4)curvestobegenerated. SECTION CURVES
Theauthoremployedthefollowingstrategy.TheinvolutecorrespondingtotheS#SCSYSwas created,followedbythesidecurve.Thiswasrepeatedfortheoppositeside.Thecurvesare numbered1through4. Parametric Equations R=D##*COS(PRESSURE_ANGLE) THETA=T*45 THETA_RAD=PI/180*THETA X=R*(COS(THETA)+(THETA_RAD*SIN(THETA))) Y=R*(SIN(THETA)-(THETA_RAD*COS(THETA)))
Hint:Entertheequationsintoatextdocumentforeasyaccess. Hint: Involute Curve [S#C{1;3}]
CreatethisfeaturewiththeD DatumC atumCurve Curve>FromEquat urve>FromEquation >FromEquationoption. ion SelectthecoordinatesystemfromthemodeltreeandusetheCartesian Cartesianequationstyle. Cartesian FortheS#SCSYS: Enterequations,substitutingthesection’scorrespondingSDPreferencedimensionfortheD##in the‘R=D##…’part.Adanegativesign(-)infrontofthe‘R’forthe‘Y’equationsothatitresembles ‘Y=-R…’ FortheS#TCSYS:
10
The‘D##’isthesameasaboveforthesectionbeingcreated.Thenegativesign(-)isnotapplied inthisinstance. Side (Axis to Involute) Curve [S#C{2;4}]
ThisiscreatedwiththeDatumCurve>ThruPoints DatumCurve>ThruPointsoption.Thereferencesarefromthe DatumCurve>ThruPoints correspondingAxialDatumPointfromtheSDPfeaturetotheinnerendpointoftheInvoluteCurve. SeeFigure20. Tangencycanbeapplied,selectingEnd Endfromthemenuandpicktheinvolutecurve.Thetangency End arrowshouldpointawayfromtherotationaxis. SeeFigure21.
Figure20 Figure 20:SideCurveCreation 20:SideCurveCreation :SideCurveCreation
Figure21 Figure21:SideCurveTangency 21:SideCurveTangency :SideCurveTangency
GROUP SECTION FEATURES
Fororganizationalpurposes,itisagoodpracticetogroupspecificsectionfeaturestogether. ForStraightToothedgears,grouptheCoordinateSystemsplustheCurves. ForSpiralToothedgears,groupallfeaturesfromtheS#PDPtoS#C4. Collapsethecopiedcoordinatesystemsifnecessary. Hint:Hidingthegroupaftercreationallowseasier Hint: visibilitywhenconstructingproceedingsections. SIDE SURFACE [T{L/R}S]
Forthesesurfaces,usetheInsert>Blend>Surface Insert>Blend>Surface Insert>Blend>Surface optionfromthePDM.UsetheGeneral General; SelectSec; General SelectSec andSmoothselectionstodefinethefeature. Smooth Foreachsection,selectadjoiningcurves.Repeatas necessary.Thenrepeatfortheoppositeside. Hint:SelectingtheSideCurvefirsteliminatestheneed Hint: tomodifythestartpoints. SeeFigure22. Figure22 Figure22:SideSurfaceSelection(TYP) 22:SideSurfaceSelection(TYP) :SideSurfaceSelection(TYP)
11
REVOLVED TUBE SURFACE [RTS]
Thisfeaturesetsupthesurfaceinwhichthesidesurfacesenclosetobecomethesolidtooth.Itis aRevolved Revolved BothSides. RevolvedSurface SurfaceFeature rfaceFeaturerevolvedthrough90°onBothSides Feature BothSides ForthePlacement: Straight Tooth Gears:
PicktheUsePrevious option. Spiral Tooth Gears:
ThesketchplaneisdefinedastheTYZPLN,withthetopreferenceastheTXZPLN. Sketch References: •
TCSYS
•
Heel Pitch Point (PITCH_DIAMETER/2)
•
Toe Pitch Point (FACE_WIDTH) Geometry
DrawaConstructionLine(CL)horizontallythroughtheTYSCSreferencepoint.PlaceanotherCL throughbothPitchPoint(PP)references;thisdefinesthePitchLine. AddadditionalCLsthrougheachPPthatarenormaltothePitchLine. OnthenormallinethroughtheheelPP,placeoneSketchPointabovethePitchLineandone below.DimensionthepointsfromthePitchLine.Theupperdimensionisequaltothe ADDENDUM.ThelowerisequaltotheDEDENDUM. Througheachpoint,makeaCLatananglewithnootherconstraints.Theweakdimensions shouldbeangularfromthehorizontalCL.Modifytheupperpoint’sdimensiontobeequaltothe FACE_ANGLEandthelowerequaltotheROOT_ANGLE. TraceageometrylinebetweenthesketchpointsandalongthefaceangleCLtotheintersection withthetoePPnormalCL. Atthispoint,thegeometrydiffersforeachtoothtype. CUP FACE TOOTH
DrawalinealongtheCLtowardstherootangleCL. SeeFigure23. Tip:Azoominmayberequiredforproperlyconstrainingthegeometry. Tip: FLAT FACE TOOTH
DrawalineverticallydowntowardsrootangleCL. SeeFigure24. ClosethegeometrybydrawingalinealongtherootangleCLtothededendumpoint.
Figure23 Figure23:CompletedFlatFacedToothSketch 23:CompletedFlatFacedToothSketch :CompletedFlatFacedToothSketch
Figure24 Figure24:CompletedCupFacedToothSketch 24:CompletedCupFacedToothSketch :CompletedCupFacedToothSketch
12
SURFACE MERGE
ReferringtotheFlatFaceToothExceptionintheSectionDatumPointLayoutsection,the modificationtotheinnermostpoint’sdimension,changetoFW/2 ,mustbeperformedbefore proceedingforthattypeofgear. First Feature
SelecttheRTSandone(1)sidesurface(theorderisunimportant).FromthePDM,select Edit>Merge.Flippingthesidesmaybenecessaryforproperclosure. Edit>Merge SeeFigure25. Second Feature
Selectthefirstmergefeatureandtheremainingsurfaceandrepeattheprocedureasstated above. SeeFigure26.
Figure25 Figure 25:FirstSurfaceMerge(Representative) 25:FirstSurfaceMerge(Representative) :FirstSurfaceMerge(Representative)
Figure26 Figure26:SecondSurf. 26:SecondSurf.Merge(Rep.) :SecondSurf.Merge(Rep.) Merge(Rep.)
Figure27showsthefinalresultsforthelatFacedStraightToothandCupFaced(right-hand) SpiralTooth.
Figure27 Figure27FinalToothForms 27FinalToothForms FinalToothForms SOLID TOOTH
SelectthesecondmergefeatureandfromthePDMselectEdit>Solidify Edit>Solidify Edit>Solidify ThePinion/Mitertemplateisnowcomplete,sosave. Gear Template
TomaketheGeartemplateitisbesttousethePiniontemplateasatemplate,doublingthe NUMBER_OF_TEETHparameter.Geometryconstructionfailurewilloccurforthesecondsurface feature,andthusthesolidifyfeatureaswell. 13
ChoosetoClipSuppress ClipSuppressthefaults. ClipSuppress Redefinethefirstmergeflippingthedirectionsasnecessaryforproperclosure. Un-suppressthesecondmergefeatureandperformthesameredefinitionroutine. Finally,un-suppressthesolidifyfeature. TheGeartemplateisnowcomplete,sosave. Tip:Todisplayabettermeshrepresentationinuse,modifyeitherthePinionortheGearTCSYS Tip: dimensionfromthearbitraryangleuseduponcreationtoeither0°or90/NUMBER_OF_TEETH. Thematinggear’stemplatedimensionisthenadjustedtotheremainingvalue.Anexception pertainswhenMiterGearsarecreatedsincebotharederivedfromPiniontemplates.
Using the Templates
Thefollowingnowdescribesthemethodtobuildagearset. INITIAL MODIFICATION
Afteropeninganewpartwithatemplate,PinionorGear,itisbesttomodifyanyknowntooth geometrytothemanufacturer’svalues. Therearefourmainvaluesthatcanbemodifiedtoadjustthetoothform. •
ADDENDUM
•
DEDENDUM
•
FACE_ANGLE
•
ROOT_ANGLE
ThesearethedrivingdimensionsfortheRTS,tomodifythem,openTools>Relations Tools>Relationsfromthe Tools>Relations PDM.Atthebeginningofeachdefinition,place‘/*’(slashstar).Thisactioncommentsoutthatline. NextopenTools>Parameters Tools>Parametersandphysicallymodifythevaluestothe Tools>Parameters knownvaluesandregeneratethemodel. AnyflatsorroundscanbeaddedbymodifyingtheRTSsketchwiththe appropriategeometry. Tip:Asketchpointwillneedtobeplacedattheintersectionofthetoe Tip: normalCLandthefaceangleCLasadimensionreference. PINION / MITER
Tooth Group
Toefficientlypatterntheprototooth,allfeaturesfromtheTCSYStothe Solidifyaregrouped.Ensureallbrancheswithinthesefeaturesare collapsed.SelecttheTCSYSand,withthe‘Shift’keydepressed,select theSolidifyfeature.PresstheRightMouseButton(RMB)andselect Group. Group SeeFigure28. Pattern
SelectthegroupcreatedaboveandRMBandselectPattern Pattern.Select Pattern theTCSYSzrotationalangleasthedrivingdimension.Enteran arbitraryangleandleavethenumberofcopiesatthedefaultvalueof two(2). SeeFigure29.
Figure28 Figure28:GroupFeatures 28:GroupFeatures :GroupFeatures
14
RELATIONS
SelectthepatternandRMB.PickEdit Editfromthe Edit menu.Selecttheangledimensionandenter NUMBER_OF_TEETH,agreeingwiththerelation uponexiting. FromthePDMpickInfo>Switch Info>SwitchDims Info>SwitchDims.Notethe Dims dimensionforthenumberofcopiesinthepattern, P## . OpentheTools>Relations Tools>RelationsfromthePDM.Scroll Tools>Relations tothebottomandentertherelation: P##=NUMBER_OF_TEETH.Thisdimensional typecannotbedirectlymodifiedintoarelation. Figure29 Figure 29:ToothPatternDimension 29:ToothPatternDimension :ToothPatternDimension
SeeFigure30.
Note:Awarningwilldisplayinformingofdisconnection Note: inallcopiesofthetooth.Afterthecoreisbuilt connectionwilloccur. Core
Forclarityofworkspace,itwouldbebeneficialtomodify thedisplayto“WireFrame”mode. ThecoreisaRevolvedSolidFeature RevolvedSolidFeaturerotatedthrough RevolvedSolidFeature 360°. Note:Therearemanyvarietiesofgearblanks.Forthe Note: sakeofsimplicity,onlythebasicmiterstyleinstructions aregiven.Othergeneraltypesareintheexamplefiles forreference.
Figure30 Figure30:CompletedPattern(Rep.) 30:CompletedPattern(Rep.) :CompletedPattern(Rep.)
SKETCH PLANE
ThesketchplaneistheRight(PYZPLN)withtheTop(PXZPLN)asthetopreference. REFERENCE GEOMETRY
SelectthePartCoordinateSystem(PCSYS)asthereference. SKETCH, CONSTRUCTION GEOMETRY
ThecoresketchbeginsasacombinationoftheSPDandRTSsketches.AhorizontalCLisplaced throughthePCSYSreference.Asecond,angledCLisplacedthroughtheTCSYSfromthelower lefttotheupperright,thePL.ModifytheweakdimensiontobeequaltothePCA. PlaceasketchpointontheupperportionofthePL,theHeelPitchPoint(HPP).ModifytheWeak DimensiontoberelatedtoPITCH_DIAMETER/2. PlaceanotherpointonthePLbetweentheHPPandthePCSYS,theToePitchPoint(TPP).This istobedimensionedfromheelpointalignedwiththePL.Thedimensionvalueisequaltothe FACE_WIDTH(FW). AddadditionalCLsthrougheachPPthatarenormaltothePL. OnthenormallinethroughtheHPP,placeoneSketchPointbelowthePL.Dimensionthepoint fromthePLequaltotheDEDENDUM. Throughthepoint,makeaCLatananglewithnootherconstraints.Theweakdimensionsshould beangularfromthehorizontalCL.Modifythepoint’sdimensiontobeequaltotheROOT_ANGLE.
15
FLAT FACE GEARS
AddanadditionalpointabovetheHPP.TheupperdimensionisequaltotheADDENDUM. Throughthepoint,makeaCLatananglewithnootherconstraints.Theweakdimensionsshould beangularfromthehorizontalCL.Modifythepoint’sdimensiontobeequaltotheFACE_ANGLE. PlaceaVerticalCLthroughtheintersectionthefaceangleandToenormalCL. SKETCH, FEATURE GEOMETRY
DrawahorizontallinebetweentheTPPpasttheHPP,thenaverticallineuptoaboutmidwayto theHPP.Next,drawanotherhorizontallinetowards,butnotto,theHPPNormalCL. Note:ForFlatFaceGears,ignorethenextinstruction. Note: Modifythefirstline’sweakdimensiontobeequaltotheBORE_LENGTH. Modifythelastline’sweakdimension(itshouldbethelengthfromthesecondline)tobeequalto theHUB_LENGTH. AddahorizontaldimensionfromthePCSYS referencetothevertical(second)line.Thisis equaltotheMOUNTING_DISTANCE.Besure thatthecoordinatereferencepointisselected. SeeFigure31. AddadiametricaldimensionbetweentheBore LengthlineandtheHorizontalCL.Thisisequal totheBORE_DIAMETER. AddadiametricaldimensionbetweentheHub LengthlineandtheHorizontalCL.Thisisequal totheHUB_DIAMETER. DrawalinefromtheappropriateToeDedendum Figure31 Figure 31: 31:PCSYSReference :PCSYSReference PCSYSReference Point,forthetypebeingconstructed,totheHeel DedendumPoint.Then,drawalinealongtheHPPnormalCLsothattheendpointisconstrained collinearlytotheHubLengthline.Fillanygap,ifoneexists,betweentheendpointsofthetwo lines. SeeFigure32. CUP FACE GEARS
DrawalinealongtheTPPnormalCLtowardsthe horizontalCL,butnottoit.Drawaverticallinefrom thefreeendpointoftheBoreLengthlineuptowards thepreviousline.Trimtointersect. SeeFigure33. FLAT FACE GEARS
Figure32 Figure 32:GapFiller 32:GapFiller :GapFiller
DrawalinefromtheDedendumCLandVerticalCL intersection,atthetoeend,verticallydownwards towardstheBoreLengthline.Trimtointersect.
Thesketchisnowcomplete.Saveandclosethesketchandfeature.SeeFigure34.
16
Figure33 Figure33:CoreSketch&Relations 33:CoreSketch&Relations :CoreSketch&Relations GEAR
Gear Tooth
Usetheappropriatetoothtemplateandmodifytheparameters forthetooth. Note:Theauthorusesthenamingstructure:PARTNote: NAME_T.PRTforthetooth.Thegearassemblyisnamed: PART-NAME_PRT.PRT.ThegearcoreisnamedPARTNAME.PRT,sincethiswillbethepartusedwithitsmate. Figure34 Figure 34:Pinion 34:Pinion :Pinion
Gear Part Assembly
Theonlyaddition,besidestheNUMBER_OF_TEETH parameter,toabasicassemblyfileistheadditionofadatumaxisusedtoalignthetoothpart. UsetheassemblytemplateandmodifytheNUMBER_OF_TEETHparameter.Assemblethetooth (PART-NAME_T.PRT)usingthePCSorRTSaxisasanAlignoptiontotheGEAR_AXISaxis. UsethePXZPLNorPYZPLNtomateusingtheanglealigntypeofconstrainttotherespective assemblyplane.AssemblethePXYPLNtothe PAXYPLNwithazero(0)offset. Patternthetooth,RMB>Pattern RMB>Pattern,andusethezero(0) RMB>Pattern dimensiontodrivethepattern.Theincrementis 360/NUMBER_OF_TEETH,agreeingtotherelation. Leavethenumberofcopiesasthedefaultvalue(2). UnderTools>Relations Tools>Relations,enter Tools>Relations Dy=NUMBER_OF_TEETH,whereDyisthedimension forthenumberofcopies(Info>SwitchDims Info>SwitchDimstoverifythe Info>SwitchDims dimensionnumberbeforehand). SeeFigure35.
Figure35 Figure35:PatternedGearToothPart 35:PatternedGearToothPart :PatternedGearToothPart
Gear Core
DrawthecoreinasimilarmannerasthatoutlinedinthePinion/MiterCoresectionabove, modifyingtheproceduretosuitthetype. SeeFigure36. Insertintothegearpartassemblyusingacoordinatesystemmate.SeeFigure37.
17
Figure36 Figure 36:GearCoreSketch&Relations 36:GearCoreSketch&Relations :GearCoreSketch&Relations
Merge
Figure37 Figure37:GearPartAssembly 37:GearPartAssembly :GearPartAssembly
Nowthepatternedteethareaddedtothecore. UnderEdit>ComponentOperations>Merge Edit>ComponentOperations>Merge,SelectthecorepartandclickOK OK. Edit>ComponentOperations>Merge OK IntheModelTree,expandthetoothpatternsothatallinstancesaredisplayed. Selectfirstinstance,andwiththeShift keyhelddown,selectthelastinstanceandclickOK OK. OK Fortheoptions,selectReference Reference,OK NoDatums. Reference OK,andNoDatums OK NoDatums SelectDone Doneonetimeforeveryinstance! Done ThenselectDone/Return Done/Returnafterthelasttoothhasbeenadded. Done/Return Mating Pairs
ASSEMBLY SETUP
Therearetwomethodsinwhichthegearpairisusedinanoverallassembly. Existing Shafts
Thisisthemostlikelymethodtobeemployed. Usetheboreandtheappropriateshaftsegmentasmatingreferences.Matethemountingsurface totheshaft.Mateoneofthepartplanesperpendiculartothegearaxistoasimilarshaftplane. Tip:Useanangulartypeonthelastconstraintsothatanangleisathandtoallowrotational Tip: adjustment,ifrequired(seebelow). First Parts
Twoaxesarerequiredwiththemutualincludedshaftanglebetweenthem.Alsorequiredaretwo planes(orsurfaces),eachnormaltotherespectiveaxisforthegear.Theplanescanbeateither thecommonvertexortheactualmatingdistanceforthegear.Itwouldbebeneficial,forrotational alignment,tohaveacommonassemblylevelplanethroughbothaxes. Theauthor,intestcases,usedplanesatthecommonvertex. MATING CONSTRAINTS
Eachgearisassembledwitha“PinConnection”constraint.Thisallowsfortheapplicationof BehavioralModeling. Thepredefinedassemblyaxisisconstrainedtothe‘core’featureaxisofthegearfortheAxis alignment. ThePXYPLNortheactualmountingsurfaceisthepartreferencewhiletheprescribedmating surfacesaretheassemblyreferencefortheTranslation. TheRotationAxisreferencewouldbethecommonplanethroughbothaxesasmentionedabove. Setthezeropositionforbothgearsinthesetsothatthepairappearsinmesh. Remembertocheckthe“Enableregenerationvalue”toregainmeshappearance. 18
ANGLE MODIFICATION
Onoccasion,todisplaythegearpairinproper mesh,itwillbecomenecessarytomodifythevalue fortheRotationAxistosomevalueotherthanzero (0).Intestcases,thevaluewas5°.Rememberto resettheregenvalue(makezero).SeeFigure38.
Figure38 Figure 38:AssemblyAngleModification 38:AssemblyAngleModification :AssemblyAngleModification
Modifying Gears
ZEROL BEVEL GEARS
BysettingtheSpiralAngletozero(0),thegearwillgeneratewith “Zerol”styleteeth.
CROWNING
Bymodifyingtherotationalangleamount,viapercentages,Tooth Crowningcanbesimulated.SeeFigure39.
Figure39 Figure39:Crowning 39:Crowning :Crowning Modification Modification
19