AGMA 07FTM04-2007 Applying Elemental Gear Measurement to Mold Modification of Molded Plastic Gears《应用自然力齿轮测量对模造塑料齿轮进行模制修形》.pdf
《AGMA 07FTM04-2007 Applying Elemental Gear Measurement to Mold Modification of Molded Plastic Gears《应用自然力齿轮测量对模造塑料齿轮进行模制修形》.pdf》由会员分享,可在线阅读,更多相关《AGMA 07FTM04-2007 Applying Elemental Gear Measurement to Mold Modification of Molded Plastic Gears《应用自然力齿轮测量对模造塑料齿轮进行模制修形》.pdf(12页珍藏版)》请在麦多课文档分享上搜索。
1、07FTM04Applying Elemental Gear Measurement to MoldModification of Molded Plastic Gearsby: G. Ellis, ABA-PGT, Inc.TECHNICAL PAPERAmerican Gear Manufacturers AssociationApplying Elemental Gear Measurement to MoldModification of Molded Plastic GearsGlenn Ellis, ABA-PGT, Inc.The statements and opinions
2、contained herein are those of the author and should not be construed as anofficial action or opinion of the American Gear Manufacturers Association.AbstractAlthoughelementalgearinspectionisrarelyspecifiedformoldedplasticgears,themeasurementequipmentand practices can be valuable in advancing the mold
3、ing processes and improving the quality of the moldedgears. After a brief description of plastic gear tooling and molding, this paper gives examples of specificelementalmeasurementsandrelatesthemtoprocesschangesandqualityimprovements.Suchexamplesforspur and helical gears include: profile measurement
4、s leading to gear mesh noise reduction; leadmeasurementleadingtoincreasedfacewidthloaddistributionand,continuingfromthat,eventothemoldingof crowned gears; and index measurement leading to improved roundness of gears molded from fiberreinforced plastic materials.Copyright 2007American Gear Manufactur
5、ers Association500 Montgomery Street, Suite 350Alexandria, Virginia, 22314October, 2007ISBN: 978-1-55589-908-01Applying Elemental Gear Measurement to Mold Modificationof Molded Plastic GearsGlenn Ellis, ABA-PGT Inc.Elemental inspection of molded plastic gears hasnot been practiced until recent years
6、. Its use hasbeen limited to a few plastic molders specializing ingears,possiblybecauseofthecostoftheelementalinspection machine or the unfamiliarity with itsbenefits. Theyarenotcommonlyusedforeverydayinspection of molded plastic gears. They are, how-ever, used very successfully as a diagnostic tool
7、during the advanced development of the mold andmolding process. This paper will present examplesof such use.Thegearmoldingprocessincludesthemoldingma-chineandthemold. Theplasticmaterial,ingranularform,isloadedinto themachine wherethe plasticisheatedandmelted. Atthestartofthemoldingcycle,after the mo
8、ld is closed, the molten plastic is in-jected into the mold at a controlled temperature,flowrateandpressure. Inthemold,themoltenplas-tic flows through a runner system and enters eachgearcavitythroughagatingsystem. Aftersufficientcooling and solidification, the mold is opened andthe gears are ejected
9、 with the help of knockout(ejector) pins. After the ejected gear is furthercooled and the plastic adequately conditioned, it isready for inspection (figure 1).All parts of this process determine the accuracy ofthemoldedgear,startingwiththechoiceoftheplas-tic material and whether it is filled or unfi
10、lled. Somefillersmayincludeglassorcarbonfibersforadditionstrength or PTFE for lubrication. The influencescontinuewiththedesignofthegear,includingprovi-sion for gate location and shape, features, such asribs and posts, out-of-round bore, and wall thick-ness size. All these features can introduce vary
11、ingcross sections and lead to varying degrees of moldshrinkage throughout the gear. Ideally, designchange can be made to the gear to make it more“molderfriendly”. Uniformwallthicknessisnormallythe best. There are some exceptions including ta-per for ejection. With uniform walls there is a betterchan
12、ce of similar shrinkage through out the part.Ribsmayberequiredforstructuralreasonsbuttheycause irregular wall sections leading to varyingshrinkage. Posts and holes will also disrupt theshrinkage. Some of these features also alter theflow of material. This is particularly a problem withfilledmaterial
13、s. Whentwomaterialmeltflowscometogetherthefiberorientationwillchangealteringtheshrinkage. This isknown asa knit(weld) line. Allofthesewillhaveaninfluenceonthefinalshapewhichwill have to be compensated for so that an accept-able gear can be molded. Proper and experiencedmolding can further help impro
14、ve the part outcomebut in some cases actual steel rework is required.Close OpenFigure 1. Plastic gear injection mold2Mold design can also have an influence on the finalshapeofthe gear. Thefirst itemsselected mightbethe location and design of the gates and knockoutpins. The gear design then has a shr
15、inkage allow-ance added to the gear tooth form to arrive at thecavitydesign. Inmanycases,withasimplepartandwith an unfilled plastic material, this cavity designwillleadtoagearmoldedtoprintwithoutfurtherstu-dy. In many other cases, further evaluation, includ-ing the elemental inspection, is required
16、to upgradethe quality of the gear.Double-flank gear checkers are typically used onthe initial inspection to compare gear accuracy topart specifications. This will indicate whether themolded gear is acceptable without further effortIn the double-flank check, the plastic gear is rolledtogetherinclosem
17、eshwith amaster gear. Aspringload or its equivalent is used to maintain the closemesh condition. The recorded center distance willtypicallyvaryoverthefullrotationoftheplasticgear.This plotted record compares the gear accuracy tothe gear part specifications pointing out any exces-sive deviations. The
18、re are times when a solutioncan be found right away. Other times are when thediagnostic service of the elemental inspection isneeded. Thedoubleflankinspectionwillcontinuetobe used for in-process inspection where the ele-mental inspection is used for initial evaluation andtrouble shooting.It is commo
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