下載本文檔
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),請進(jìn)行舉報或認(rèn)領(lǐng)
文檔簡介
MitsubishiHeavyIndustriesTechnicalReviewVol.52No.3(September2015)
PAGE
45
ModernTechnologyAchievingHigh-Precision,High-EfficiencyProcessingforMachiningCenters
YOSHIKATSUSATO*1
Inrecentyears,demandforhigh-precisionprocessinghasalsobeenincreasing,inmachiningofrelatively-longpartsanddiesusedforautomobiles,semiconductormanufacturingdevices,electroniccomponents,etc.Thesizerangeoftheseworkpiecesispositionedbetweenmachiningcentersandlargemachines.Lookingattheentireindustry,thereareonlyafewmachinetoolsthattargetsuchworkpiecesizes,andthereforethedemandedaccuracyhasnotbeenfullymet.MitsubishiHeavyIndustries,Ltd.(MHI)developedandmarketstheLH250,whichisoneofthelargestmachiningcentersrealizingmachiningaccuracyequaltothatofmicromillingmachines.Thistime,MHIdevelopedadditionalnewoptionalfunctionsthatenablehigh-precisionmachiningwithoutsignificantlychangingthefactoryenvironment.
|1.Introduction
Asmanyproductsaroundus,typifiedbyautomobiles,havebeenenhancingtheirfunctionalityinrecentyears,demandforveryhigh-precisionprocessingisalsoincreasinginmachiningofrelatively-largeparts.Evenacrossallindustries,however,thereareonlyafewmachinetoolsforworkpieceswithasizerangepositionedbetweenmachiningcentersandlargemachines,andthereforethedemandedaccuracyfortheseworkpieceshasnotbeenfullymet.Thereareanumberofrelatively-longpartsthatrequirehighaccuracyincludingnotonlyautomotivecomponents,butalsosemiconductormanufacturingdevicesandpartsneededfortheproductionofelectroniccomponents.Atthemanufacturingsitesoftheseparts,itisnecessarytorepeatedlyexecutetrialanderror,andthereforethepooryieldhasbeenaproblem.
MHIdevelopedtheLH250high-precisiondoublecolumnmachiningcenter,whichisalreadyonthemarket.Table1showsthemainspecifications.Inthedevelopmentofthisproduct,fundamentaltechnologiesfortheμV1micromillingmachinedesignedforhigh-precisionmachininganddoublecolumnlargemachinemanufacturingtechniqueswerecombined.Withahigh-speedspindleasstandardequipment,theLH250attainslong-termstableandhigh-precisionmachiningequivalenttothatofmicromillingmachines.Followingthedevelopmentofthemachineitself,MHIadvancedthedevelopmentofnewoptionsinordertosatisfyfurthermarketdemand.Thispaperpresentsthesetechnologiesandtheirexamples.
Table1 LH250specifications
Tablesize
(mm)
2,500x1,000
Maximumloadingcapacity
(kg)
3,000
Axestravel(XxYxZ)
(mm)
2,500x1,000x600
Spindletaper
HSK-A63
Spindlediameter
(mm)
Φ80
Spindlespeed
(min-1)
Max20,000
Spindlemotoroutput
(kW)
22/18.5
ATCtoolstoragecapacity
(tools)
40(Opt:64)
Machinefootprint
(mm)
7,200x3,300
Machineheight
(mm)
3,593
Machinemass
(kg)
21,000
*1 Manager,EngineeringDepartment,MachineToolDivision,Machinery,Equipment&Infrastructure
|2.FeaturesofLH250high-precisiondoublecolumnmachiningcenter
High-performancespindle
Typicalmachiningcentershaveaspindleaspeedofaround10,000min-1asstandard,andahigh-speedspindleisavailableasanoption.Whenahigh-speedspindleisused,theinitialpreloadofthebearingthatsupportsthespindlehastobereducedbecauseofgreaterheatgeneration,andthereforetherigidityofthespindledecreasestothelevelwhereroughprocessingatalowspeedcannotbeperformed.Forthisreason,twospecificationsofthespindleareavailablesothatcustomerswhoneedroughprocessingandothercustomerswhoneedhigh-speedoperationonlycanselectonethatsuitstheirrespectivepurpose.
However,throughtheemploymentofcoolingbothinsideandoutsideofthespindleandspeciallubricationofthebearing,whichwasdevelopedfortheμV1,theLH250achievesahigherinitialpreloadandreductionofheatgenerationatthemaximumspeed,andthenrealizesasstandardahigh-rigidityspindlerotatingatahighspeedof20,000min-1thatcanalsoperformroughprocessingatalowspeed.Thismachinehandlesroughprocessingandhigh-speedfinishingwithitssingleunit,andthereforeimprovesmachiningefficiency.
Evenwhenthespindlerotatesatthemaximumspeedof20,000min-1fromacoldstart,theLH250limitsthespindlethermaldisplacementto2μmorlessinalloftheX,Y,andZaxesdirections(1)andthespindlevibrationto2μmP-Porlessovertheentirerotationspeedrangeusingnoelectricalcorrection.Asaresult,theLH250contributestotheimprovementofthemachiningaccuracyandthemachinedsurfacequality.
High-precisionfeedingmechanism
Alsoforthefeedaxes,theLH250employsnarrow-pitchlarge-diameterballscrewsandastrongsupportingmethodsimilartotheμV1toattainahigh-rigidityandhigh-responsefeedaxessystem.Inaddition,theLH250usestheHGP2control,whichfeaturesproprietarycontroltuning,andrealizesmachiningoperationwithoutlosingitsshapeeveninhigh-speedshapemachining.Forexample,aroundnessof1.8μm,whichisequivalenttomicromillingmachines,wasachievedforthecirclecutting(Φ218mm)performedbysynchronizedtwo-planeaxes(1).
Furthermore,coolantflowsintotheinsideoftheballscrews,nuts,supportbearings,anddrivingmotormountingflangesinasimilarmannertothespindletodrasticallyreduceheatgeneration,consequentiallyrealizingastableandaccuratefeedingmechanism.
|3.W-2thermo-stabilizer
TheLH250employsthecoolingoftheheat-generatingpartsofthemachinesuchasthespindleandthefeedaxestosuppressthermaldisplacementcausedbytheheatgenerationofthemachineitself.Ifachangeintheambienttemperaturearoundthemachineoccurs,however,thethermaldisplacementofthemachineisaninevitablephysicalphenomenon.Althoughthereisanelectricalcorrectionmethodusingtemperaturesensorsembeddedinvariouspointsofthemachine,thermaldisplacementisnotalwayssimplemotionandthemethodmayresultinanadverseeffect.
Figure1 Columndeformationcausedbytemperaturedifferencearoundmachine
Whenthereisatemperaturedifferencebetweenthefrontandrearorupperandlowerpositionsaroundthemachine,forexample,thecolumndeformsandthespindleinclines(Figure1).Inthiscase,someelectricaloffsettingmethodsintendedtocorrectthedisplacementintheXaxisdirectionsucceedinthecorrection,butotherelectricaloffsettingmethods,movingtheZaxisfor
example,resultinafurtherincreaseofdisplacement(Figure2).Squarenesscorrectionorspatialcorrectionmaybepossiblesolutions,butinsuchcases,correctionbecomesdifficultwhenusingtoolsofdifferentlengthsorwhenwarpageunlikesimpleinclinationoccurs,aswellasunderothercircumstances(Figure3).
Figure2 AdverseeffectcausedbymovingtheZaxisincorrectionofspindleinclination
Figure3 Exampleofconditionswherethespindleinclinationisdifficulttocorrect
Figure4 ConfigurationofW-2thermo-stabilizer
ThereforetheLH250doesnotuseelectricalcorrectionandemploystheoptionalW-2thermo-stabilizer,amethodtomakethecolumntemperatureuniformtosuppressinclinationandthermaldisplacementusingatemperaturecontrolfluidthatcirculatesandcontrolstemperatureinthecolumn(Figure4).Thetemperatureofthetemperaturecontrolfluidiscontrolledtosamelevelasthatofthebedbyinstallingatemperaturesensorthereon,becausethebedisplacednearthelarge-heat-capacityfloor,andthereforeisrelativelystableandrarelyresultsinatemperaturedifference.Inaddition,thetemperatureoftheaforementionedcoolantthatflowsintothespindleandthefeedaxesiscontrolledinreferencetothebedtemperature.Furthermore,whentheoptionalcuttingfluidtemperaturecontrollerisadded,temperaturesofthespindle,thefeedaxes,thecolumn,thebed,thetable,andtheworkpieceallbecomeidenticalandthereforeattitudinalchangesandthethermaldisplacementofthemachinecanbesuppressed.
Figure5showstheactualmeasurementresultsofthethermaldisplacementofthemachineagainsttheenvironmentaltemperaturechangeofthemachineperiphery.TheresultsindicatethatthethermaldisplacementofamachineequippedwiththeW-2isapproximatelyhalfofthatofamachinewithouttheW-2.
Figure5 ComparisonofmachinethermaldisplacementbetweenunitwithandwithoutW-2
|4.Large-diametertoolhandlingcapabilityofopticalimagetypetoolmeasurementsystem
Theopticalimagetypetoolmeasurementsystemisanon-machinetoolmeasurementapplicationdevelopeduniquelyasoptionalequipmentfortheμV1.Asitsadvantage,thissystemcanconfirmthatthermaldisplacementhassaturatedandstabilizedusingaCCDcameratoperformmeasurementofthetoolthatrotatesatthesamespeedasmachining,andthereforecansuppressmachiningerrorscausedbythermaldisplacementandtoolchange.
ThespindleusedfortheμV1istheHSK-E32(toolholderflangediameterof32mm),whichusesatoolwithamaximumdiameterofaround10mm,andtheopticalimagetypetoolmeasurementsystemhasspecificationsthatsuitthetoolsused.Ontheotherhand,thespindleusedfortheLH250istheHSK-A63(toolholderflangediameterof63mm),whichusesatoolwithamaximumdiameterof125mm.Theopticalimagetypetoolmeasurementsystemcanmeasurelarge-diametertoolsinprinciple,butthelensfocusingrangeinwhichaccuratemeasurementcanbemade(depthoffield)isverynarrow,andthereforetheprobabilitythatthetipoftherotatingtoolissettledwithinthedepthoffielddecreasesproportionallytothetooldiameter(Figure6).Asaresult,therewereconcernsaboutunstablemeasurementaccuracy,longmeasurementtime,etc.,inthemeasurementoflarge-diametertools.
Figure6Conceptualdiagramoflarge-diametertoolmeasurementwiththeuseofopticalimagetypetoolmeasurementsystem
Thistime,theimagingmethodwaschangedfromtheconventionaloneinwhichmultipleimagesweretakeninarandommanner,tothenewoneinwhichimagesaretakenefficientlyaccordingtothespindlespeedinordertoaccuratelymeasureevenlarge-diametertools.Figure7showstheactualmeasurementofatoolwithadiameterof125mmwiththeuseoftheopticalimagetypetoolmeasurementsystemandanexampleimage.Table2comparesrepeatedmeasurementresultsoftheconventionalrandomimagingmethodandthedevelopedmethodforfivetypesoftools.Itwasverifiedthatthedevelopedmeasurementmethodcanimprovethemeasurementaccuracyandreducethemeasurementtimegenerally,dependingonconditionssuchasthenumberoftoolflutesandthespindlespeed.
Figure7 Exampleoflarge-diametertoolmeasurementwiththeuseofopticalimagetypetoolmeasurementsystem
Table2 Toolmeasurementresultswiththeuseofopticalimagetypetoolmeasurementsystem
No.
Tooltype
TooldiameterΦ(mm)
Numberofflutes
Spindlespeed(min-1)
Timeofthree-timerepeatedmeasurement(Ratiotoconventional
methodofNo.1)
Fluctuationoften-timerepeatedmeasurement(Ratiotoconventional
methodofNo.1)
Conventionalmethod
Newmethod
Conventionalmethod
Newmethod
1
Endmilling
10
2
10,000
1
0.69
1
0.67
2
Endmilling
20
4
4,000
1.05
0.93
1.78
1.33
3
Milling
50
6
2,000
1.08
1.07
3.44
1.56
4
Milling
125
6
800
1.12
1.28
6.78
1.22
5
Boring
36
1
500
1.25
0.7
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)僅提供信息存儲空間,僅對用戶上傳內(nèi)容的表現(xiàn)方式做保護(hù)處理,對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, 同時也不承擔(dān)用戶因使用這些下載資源對自己和他人造成任何形式的傷害或損失。
最新文檔
- 中華傳統(tǒng)美德心得體會(10篇)
- 員工表揚(yáng)信15篇
- 會飛的教室讀后感集合
- 中國好人李培生先進(jìn)事跡
- 他鄉(xiāng)的童年日本紀(jì)錄片觀后感
- 二八定律讀后感
- 個人無收入證明書(9篇)
- DB12∕T 1050-2021 畜禽糞污異位發(fā)酵床處理技術(shù)規(guī)范
- 報關(guān)實(shí)務(wù)-教學(xué)課件 第三章 海關(guān)檢驗(yàn)檢疫
- 影響我國自主創(chuàng)新因素的SVAR分析
- 初中數(shù)學(xué)規(guī)律探索公開課完整教學(xué)課件
- 2022-2023學(xué)年天津市河西區(qū)高一年級上冊學(xué)期期中數(shù)學(xué)試題【含答案】
- 工密閉空間施工方案
- 備用金申請單(完美版)
- 健康營養(yǎng)科學(xué)減脂課件
- 三國演義作品簡介名著導(dǎo)讀PPT 模板
- 直角角焊縫的受力性能
- 固定資產(chǎn)情況表
- 水利工程管理單位定崗標(biāo)準(zhǔn)(試點(diǎn))
- 《建筑施工技術(shù)》課后習(xí)題答案(大學(xué)期末復(fù)習(xí)資料)
- 廣東開放大學(xué)風(fēng)險投資(本2022春)-練習(xí)4答案
評論
0/150
提交評論