




已閱讀5頁,還剩1頁未讀, 繼續(xù)免費(fèi)閱讀
版權(quán)說明:本文檔由用戶提供并上傳,收益歸屬內(nèi)容提供方,若內(nèi)容存在侵權(quán),請(qǐng)進(jìn)行舉報(bào)或認(rèn)領(lǐng)
文檔簡(jiǎn)介
DOI10.1007/s00170-004-2328-8ORIGINALARTICLEIntJAdvManufTechnol(2006)28:6166Fang-JungShiouChao-ChangA.ChenWen-TuLiAutomatedsurfacefinishingofplasticinjectionmoldsteelwithsphericalgrindingandballburnishingprocessesReceived:30March2004/Accepted:5July2004/Publishedonline:30March2005Springer-VerlagLondonLimited2005AbstractThisstudyinvestigatesthepossibilitiesofautomatedsphericalgrindingandballburnishingsurfacefinishingpro-cessesinafreeformsurfaceplasticinjectionmoldsteelPDS5onaCNCmachiningcenter.Thedesignandmanufactureofagrindingtoolholderhasbeenaccomplishedinthisstudy.TheoptimalsurfacegrindingparametersweredeterminedusingTaguchisorthogonalarraymethodforplasticinjectionmoldingsteelPDS5onamachiningcenter.Theoptimalsurfacegrind-ingparametersfortheplasticinjectionmoldsteelPDS5werethecombinationofanabrasivematerialofPAAl2O3,agrind-ingspeedof18000rpm,agrindingdepthof20m,andafeedof50mm/min.ThesurfaceroughnessRaofthespecimencanbeimprovedfromabout1.60mto0.35mbyusingtheoptimalparametersforsurfacegrinding.SurfaceroughnessRacanbefurtherimprovedfromabout0.343mto0.06mbyusingtheballburnishingprocesswiththeoptimalburnishingparameters.Applyingtheoptimalsurfacegrindingandburnishingparame-terssequentiallytoafine-milledfreeformsurfacemoldinsert,thesurfaceroughnessRaoffreeformsurfaceregiononthetestedpartcanbeimprovedfromabout2.15mto0.07m.KeywordsAutomatedsurfacefinishingBallburnishingprocessGrindingprocessSurfaceroughnessTaguchismethod1IntroductionPlasticsareimportantengineeringmaterialsduetotheirspecificcharacteristics,suchascorrosionresistance,resistancetochemi-cals,lowdensity,andeaseofmanufacture,andhaveincreasinglyF.-J.Shiou(a117)C.-C.A.ChenW.-T.LiDepartmentofMechanicalEngineering,NationalTaiwanUniversityofScienceandTechnology,No.43,Section4,KeelungRoad,106Taipei,TaiwanR.O.C.E-mail:.twTel.:+88-62-2737-6543Fax:+88-62-2737-6460replacedmetalliccomponentsinindustrialapplications.Injec-tionmoldingisoneoftheimportantformingprocessesforplas-ticproducts.Thesurfacefinishqualityoftheplasticinjectionmoldisanessentialrequirementduetoitsdirecteffectsontheappearanceoftheplasticproduct.Finishingprocessessuchasgrinding,polishingandlappingarecommonlyusedtoimprovethesurfacefinish.Themountedgrindingtools(wheels)havebeenwidelyusedinconventionalmoldanddiefinishingindustries.Thegeometricmodelofmountedgrindingtoolsforautomatedsurfacefinish-ingprocesseswasintroducedin1.Afinishingprocessmodelofsphericalgrindingtoolsforautomatedsurfacefinishingsys-temswasdevelopedin2.Grindingspeed,depthofcut,feedrate,andwheelpropertiessuchasabrasivematerialandabrasivegrainsize,arethedominantparametersforthesphericalgrind-ingprocess,asshowninFig.1.Theoptimalsphericalgrindingparametersfortheinjectionmoldsteelhavenotyetbeeninvesti-gatedbasedintheliterature.Inrecentyears,someresearchhasbeencarriedoutinde-terminingtheoptimalparametersoftheballburnishingpro-cess(Fig.2).Forinstance,ithasbeenfoundthatplasticde-formationontheworkpiecesurfacecanbereducedbyusingatungstencarbideballoraroller,thusimprovingthesurfaceroughness,surfacehardness,andfatigueresistance36.Theburnishingprocessisaccomplishedbymachiningcenters3,4andlathes5,6.Themainburnishingparametershavingsignifi-canteffectsonthesurfaceroughnessareballorrollermaterial,burnishingforce,feedrate,burnishingspeed,lubrication,andnumberofburnishingpasses,amongothers3.Theoptimalsur-faceburnishingparametersfortheplasticinjectionmoldsteelPDS5wereacombinationofgreaselubricant,thetungstencar-bideball,aburnishingspeedof200mm/min,aburnishingforceof300N,andafeedof40m7.Thedepthofpenetrationoftheburnishedsurfaceusingtheoptimalballburnishingparameterswasabout2.5microns.Theimprovementofthesurfacerough-nessthroughburnishingprocessgenerallyrangedbetween40%and90%37.Theaimofthisstudywastodevelopsphericalgrindingandballburnishingsurfacefinishprocessesofafreeformsurface62plasticinjectionmoldonamachiningcenter.Theflowchartofautomatedsurfacefinishusingsphericalgrindingandballbur-nishingprocessesisshowninFig.3.Webeganbydesigningandmanufacturingthesphericalgrindingtoolanditsalignmentde-viceforuseonamachiningcenter.TheoptimalsurfacesphericalgrindingparametersweredeterminedbyutilizingaTaguchisorthogonalarraymethod.FourfactorsandthreecorrespondinglevelswerethenchosenfortheTaguchisL18matrixexperiment.Theoptimalmountedsphericalgrindingparametersforsurfacegrindingwerethenappliedtothesurfacefinishofafreeformsurfacecarrier.Toimprovethesurfaceroughness,thegroundsurfacewasfurtherburnished,usingtheoptimalballburnishingparameters.Fig.1.SchematicdiagramofthesphericalgrindingprocessFig.2.Schematicdiagramoftheball-burnishingprocessFig.3.Flowchartofautomatedsurfacefinishusingsphericalgrindingandballburnishingprocesses2DesignofthesphericalgrindingtoolanditsalignmentdeviceTocarryoutthepossiblesphericalgrindingprocessofafreeformsurface,thecenteroftheballgrindershouldcoincidewiththez-axisofthemachiningcenter.Themountedsphericalgrindingtoolanditsadjustmentdevicewasdesigned,asshowninFig.4.Theelectricgrinderwasmountedinatoolholderwithtwoad-justablepivotscrews.Thecenterofthegrinderballwaswellalignedwiththehelpoftheconicgrooveofthealignmentcom-ponents.Havingalignedthegrinderball,twoadjustablepivotscrewsweretightened;afterwhich,thealignmentcomponentscouldberemoved.Thedeviationbetweenthecentercoordi-natesoftheballgrinderandthatoftheshankwasabout5m,whichwasmeasuredbyaCNCcoordinatemeasuringmachine.Theforceinducedbythevibrationofthemachinebedisab-sorbedbyahelicalspring.Themanufacturedsphericalgrind-ingtoolandball-burnishingtoolweremounted,asshowninFig.5.Thespindlewaslockedforboththesphericalgrindingprocessandtheballburnishingprocessbyaspindle-lockingmechanism.63Fig.4.Schematicillustrationofthesphericalgrindingtoolanditsadjust-mentdevice3Planningofthematrixexperiment3.1ConfigurationofTaguchisorthogonalarrayTheeffectsofseveralparameterscanbedeterminedefficientlybyconductingmatrixexperimentsusingTaguchisorthogonalarray8.Tomatchtheaforementionedsphericalgrindingpa-rameters,theabrasivematerialofthegrinderball(withthediam-eterof10mm),thefeedrate,thedepthofgrinding,andtherevolutionoftheelectricgrinderwereselectedasthefourexperi-mentalfactors(parameters)anddesignatedasfactorAtoD(seeTable1)inthisresearch.Threelevels(settings)foreachfactorwereconfiguredtocovertherangeofinterest,andwereidenti-Fig.5.aPhotoofthesphericalgrindingtoolbPhotooftheballburnishingtoolTable1.TheexperimentalfactorsandtheirlevelsFactorLevel123A.AbrasivematerialSiCAl2O3,WAAl2O3,PAB.Feed(mm/min)50100200C.Depthofgrinding(m)205080D.Revolution(rpm)120001800024000fiedbythedigits1,2,and3.Threetypesofabrasivematerials,namelysiliconcarbide(SiC),whitealuminumoxide(Al2O3,WA),andpinkaluminumoxide(Al2O3,PA),wereselectedandstudied.Threenumericalvaluesofeachfactorweredeterminedbasedonthepre-studyresults.TheL18orthogonalarraywasse-lectedtoconductthematrixexperimentforfour3-levelfactorsofthesphericalgrindingprocess.3.2DefinitionofthedataanalysisEngineeringdesignproblemscanbedividedintosmaller-the-bettertypes,nominal-the-besttypes,larger-the-bettertypes,signed-targettypes,amongothers8.Thesignal-to-noise(S/N)ratioisusedastheobjectivefunctionforoptimizingaproductorprocessdesign.Thesurfaceroughnessvalueofthegroundsur-faceviaanadequatecombinationofgrindingparametersshouldbesmallerthanthatoftheoriginalsurface.Consequently,thesphericalgrindingprocessisanexampleofasmaller-the-bettertypeproblem.TheS/Nratio,isdefinedbythefollowingequation8:=10log10(meansquarequalitycharacteristic)=10log10bracketleftBigg1nnsummationdisplayi=1y2ibracketrightBigg.(1)where:yi:observationsofthequalitycharacteristicunderdifferentnoiseconditionsn:numberofexperimentAftertheS/NratiofromtheexperimentaldataofeachL18orthogonalarrayiscalculated,themaineffectofeachfactorwasdeterminedbyusingananalysisofvariance(ANOVA)tech-niqueandanF-ratiotest8.Theoptimizationstrategyofthe64smaller-thebetterproblemistomaximize,asdefinedbyEq.1.Levelsthatmaximizewillbeselectedforthefactorsthathaveasignificanteffecton.Theoptimalconditionsforsphericalgrindingcanthenbedetermined.4ExperimentalworkandresultsThematerialusedinthisstudywasPDS5toolsteel(equiva-lenttoAISIP20)9,whichiscommonlyusedforthemoldsoflargeplasticinjectionproductsinthefieldofautomobilecom-ponentsanddomesticappliances.ThehardnessofthismaterialisaboutHRC33(HS46)9.Onespecificadvantageofthisma-terialisthataftermachining,themoldcanbedirectlyusedforfurtherfinishingprocesseswithoutheattreatmentduetoitsspecialpre-treatment.Thespecimensweredesignedandmanu-facturedsothattheycouldbemountedonadynamometertomeasurethereactionforce.ThePDS5specimenwasroughlyma-chinedandthenmountedonthedynamometertocarryoutthefinemillingonathree-axismachiningcentermadebyYang-IronCompany(typeMV-3A),equippedwithaFUNUCCom-panyNC-controller(type0M)10.Thepre-machinedsurfaceroughnesswasmeasured,usingHommelwerkeT4000equip-ment,tobeabout1.6m.Figure6showstheexperimentalset-upofthesphericalgrindingprocess.AMP10touch-triggerprobemadebytheRenishawCompanywasalsointegratedwiththemachiningcentertoolmagazinetomeasureanddeterminethecoordinatedoriginofthespecimentobeground.TheNCcodesneededfortheball-burnishingpathweregeneratedbyPowerMILLCAMsoftware.ThesecodescanbetransmittedtotheCNCcontrollerofthemachiningcenterviaRS232serialinterface.Table2summarizesthemeasuredgroundsurfaceroughnessvalueRaandthecalculatedS/NratioofeachL18orthogonalar-rayusingEq.1,afterhavingexecutedthe18matrixexperiments.TheaverageS/Nratioforeachlevelofthefourfactorscanbeobtained,aslistedinTable3,bytakingthenumericalvaluespro-videdinTable2.TheaverageS/NratioforeachlevelofthefourfactorsisshowngraphicallyinFig.7.Fig.6.Experimentalset-uptodeterminetheop-timalsphericalgrindingparametersTable2.GroundsurfaceroughnessofPDS5specimenExp.InnerarrayMeasure
溫馨提示
- 1. 本站所有資源如無特殊說明,都需要本地電腦安裝OFFICE2007和PDF閱讀器。圖紙軟件為CAD,CAXA,PROE,UG,SolidWorks等.壓縮文件請(qǐng)下載最新的WinRAR軟件解壓。
- 2. 本站的文檔不包含任何第三方提供的附件圖紙等,如果需要附件,請(qǐng)聯(lián)系上傳者。文件的所有權(quán)益歸上傳用戶所有。
- 3. 本站RAR壓縮包中若帶圖紙,網(wǎng)頁內(nèi)容里面會(huì)有圖紙預(yù)覽,若沒有圖紙預(yù)覽就沒有圖紙。
- 4. 未經(jīng)權(quán)益所有人同意不得將文件中的內(nèi)容挪作商業(yè)或盈利用途。
- 5. 人人文庫網(wǎng)僅提供信息存儲(chǔ)空間,僅對(duì)用戶上傳內(nèi)容的表現(xiàn)方式做保護(hù)處理,對(duì)用戶上傳分享的文檔內(nèi)容本身不做任何修改或編輯,并不能對(duì)任何下載內(nèi)容負(fù)責(zé)。
- 6. 下載文件中如有侵權(quán)或不適當(dāng)內(nèi)容,請(qǐng)與我們聯(lián)系,我們立即糾正。
- 7. 本站不保證下載資源的準(zhǔn)確性、安全性和完整性, 同時(shí)也不承擔(dān)用戶因使用這些下載資源對(duì)自己和他人造成任何形式的傷害或損失。
最新文檔
- 2024年四川省西南醫(yī)科大學(xué)選調(diào)筆試真題
- 2024年四川阿壩師范學(xué)院選調(diào)筆試真題
- 2024年廈門銀行福建漳州分行招聘筆試真題
- 2024年莆田九十五醫(yī)院招聘筆試真題
- 2024年馬鞍山市福利院招聘筆試真題
- 2024年吉安縣農(nóng)業(yè)農(nóng)村局招聘筆試真題
- 行業(yè)最佳實(shí)踐分享與討論計(jì)劃
- 法學(xué)概論論文寫作指導(dǎo)試題及答案
- 信息處理技術(shù)員考題及答案收錄
- 2025屆江蘇省揚(yáng)州市儀征市第三中學(xué)數(shù)學(xué)八下期末經(jīng)典模擬試題含解析
- 跨學(xué)科實(shí)踐制作微型密度計(jì)人教版物理八年級(jí)下學(xué)期
- 2025屆高考語文作文備考之審題立意30道選擇題訓(xùn)練(附答案)
- 21. 三黑和土地 課件
- 挖掘機(jī)理論試題及答案
- 2025年銀行從業(yè)資格考試個(gè)人理財(cái)真題卷權(quán)威解讀
- 興安盟2025年興安盟事業(yè)單位春季專項(xiàng)人才引進(jìn)30人筆試歷年參考題庫附帶答案詳解
- 西部計(jì)劃考試試題及答案
- 2023江蘇南通軌道交通集團(tuán)有限公司運(yùn)營分公司公開社會(huì)招聘97名工作人員筆試參考題庫附帶答案詳解
- 嬰兒保姆協(xié)議書范本
- 裝修施工危險(xiǎn)性較大工程應(yīng)急處理預(yù)案:保障施工安全
- 2025年中考物理模擬考試卷(帶答案)
評(píng)論
0/150
提交評(píng)論