參考成果第6章_第1頁
參考成果第6章_第2頁
參考成果第6章_第3頁
參考成果第6章_第4頁
參考成果第6章_第5頁
已閱讀5頁,還剩11頁未讀, 繼續(xù)免費(fèi)閱讀

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(qǐng)進(jìn)行舉報(bào)或認(rèn)領(lǐng)

文檔簡(jiǎn)介

PAGE

10

CHAPTER6

TheEDMWorkpiieceSurface

6.1Workpiece'sSurfaceQuality

Workpiece'ssurfacequalitymachinedbyEDMmainlyincludesthreeparts:

Surfaceroughness,

Alteredmetalzoneand

Surfacemechanicalproperties.

Zhidongliu

2

6.1.1.SurfaceRoughness

ThesurfaceproducedbyEDMsparkingisnon-directionalandnon-reflectiveandismadeupofmanysphericalcavities.Theaffectingfactorsare:

Pulseenergyofpowersupply

Workpiecephysicalcharacteristic

Electrodesurface

Zhidongliu

3

PulseEnergyofPowerSupply

Thesizeofthesphericalcavitiesdependsonthemeltingtemperatureoftheworkpiece,theelectricalpowercontainedinthespark,andhowlongtheelectricalpowerisappliedtotheworkpiecesurface.

Zhidongliu

4

WorkpiecePhysicalCharacteristic

Workpieceswithhighmeltingtemperatureandthermalconductivitywillhavelessmaterialremovedforeachsparkthanmaterialswithlowerones.

Zhidongliu

5

ElectrodeSurfaceImperfections

Theelectrode’ssparkingsurfaceisreproducedintheexactoppositeformasthatoftheworkpiece.Ifthissurfaceisscratched,araisedlinewillbeproducedintothemachinedsurfaceoftheworkpiece.

TheEDMsurfaceisalsoaffectedbythestructureoftheelectrodematerial.Ifitisacoarse-grainsubstancewithvoidsbetweenthegrains,thissurfaceconditionwillbereproducedonthemachinedsurfaceoftheworkpiece.

TocreatethefinestEDMsurface,ametallicelectrodematerialshouldbeused,suchascopper,withanelectrodesurfacefinishatleastequaltothedesiredworkpiecesurfacefinish.

Zhidongliu

6

GraphiteGrainSizeSurface

Zhidongliu

7

Spark Energy

Sparkenergyisdeterminedbytheamountofelectricalpowercontainedineachspark,multipliedbytheamountoftimetheelectricalpowerisflowing.Theequationfordeterminingsparkenergyis:

Wt=E×I×t

Where:

Wt:(joule,J)E=sparkingvoltageI=peakamperest=spark-ONtime

Zhidongliu

8

Foranyparticularapplication,thesparkingvoltageisconsideredconstantsinceitisprimarilydeterminedbythecharacteristicsofthedielectricfluidused.Whensparkingvoltageismaintainedatasetvalue,thepeaksparkamperes,multipliedbythespark-Ontimeinmicroseconds,determinesparkenergy.Thetwoprimaryconditionsthatdeterminesparkenergyarewhen:

Maintainingspark-ONtime,sparkenergyisincreasedaspeaksparkamperesareincreased.

Maintainingpeaksparkamperes,sparkenergyisincreasedasspark-ONtimeisincreased.

Zhidongliu

9

Figure12-1.Increasingsparkenergybyincreasingspark-ONtime.

Zhidongliu

10

Figure12-2.Increasingsparkenergyincreasessurfaceroughness.

Zhidongliu

11

DETERMININGSURFACEFINISH

Sincepeaksparkamperesandspark-ONtimeareprincipalfactorsindeterminingsparkenergy,thefollowingeffectsexist:

anincreaseineitherpeakamperesorspark-ONtimeincreasessparkenergy;

anincreaseinsparkenergyincreasesthevolumeofworkpiecematerialremovedbythespark;and

anincreaseinthevolumeofworkpiecematerialremovedbythesparkresultsinacoarserEDMsurfacefinish.

Zhidongliu

12

VARIATIONINSPARK-CAVITYSIZE

WhileEDMsurfacefinishsparkingisnormallythoughttoproducesphericalcavitiesofuniformdiameteranddepth,thisisnotatruerepresentationofmostactualEDMmachinedsurface.Spark-ONtimeisnotalwaysequalforallsparksbecausethespark-ONtimesetatthepower-supplycontrolmaybequitedifferentthantheactualspark-ONtime.

Zhidongliu

13

Sinceallsparksdonothavethesameactualspark-ONtime,thesurfacefinishproducedconsistsofsparkcavitiesofdifferentsizes.Thelargestsparkcavity,however,willbethesizeofafullON-timesparkasdeterminedbythepower-supplycontrol’speakampereandspark-ONsettings.Allothersparkcavitieswillbesmaller.

Zhidongliu

14

Figure12-3.Actualspark-ONtimedeterminedbythedielectricfluid'sionizationpoint.

Zhidongliu

15

EQUALSPARK-ENERGYPOWERSUPPLIES

Onepower-supplydesigndoesproducesparkswithequalenergy.Itisbasedontheactualspark-ONtimestartingfromthepointofdielectricfluidionization.

Spark-ONtimeandpeaksparkamperesaresetatthepowersupplycontrol,priortostartingthemachiningoperation.Peakamperesandspark-ONtimedeterminesparkenergy,thus,usingthispower-supplydesignmeansthateachsparkremovesthesamevolumeofworkpiecematerialandproducesasurfacefinishofuniformlysized,sphericalsparkcavities.

Zhidongliu

16

Figure12-4.Equalspark-ONtimeandvariablespark-OFFtime

Zhidongliu

17

2.RecastandHeat-AffectedZone

TheEDMprocesscreatesthreelayersofsurfaces.Thetopsurfacecontainsathinlayerofspatteredmaterialthathasbeenformedfromthemoltenmetalandthesmallamountsofelectrodematerial.ThissurfacelayerofspatteredEDMresidueiseasilyremoved.

Zhidongliu

18

Zhidongliu 19

Underneaththespatteredmaterialistherecast(white)layer.WhenthecurrentfromtheEDMprocessmeltsthematerial,itheatsuptheunderlyingsurfaceandaltersthemetallurgicalstructure.

Thisrecastlayerisformedbecausesomeofthemoltenmetalhasnotbeenexpelledandhasinsteadbeenrapidlyquenchedbythedielectricoil.Dependingonthematerial,therecastlayersurfacecanbealteredtosuchanextentthatitbecomesahardenedbrittlesurfacewheremicrocrackscanappear.Thislayercanbereducedsubstantiallybyfinishingoperations.

Zhidongliu

20

Thenextlayeristheheat-affectedzone.Thisareaisaffectedbytheamountofcurrentappliedintheroughingandfinishingoperations.Thematerialhasbeenheatedbutnotmeltedasintherecastlayer.Theheat-affectedzonemayaltertheperformanceofthematerial.

Zhidongliu

21

DifferencesBetweenWire-cutandRamEDMHeatAffectedZones

WhenroughingwithramEDM,muchmoreenergycanbesuppliedthanwithWire-cutEDM.Thisgreatlyincreasestheheat-affectedzonewithramEDM.Onthinwebsitcancreateseriousproblemsbecausethematerialwillbeheattreatedandquenchedinthe

dielectricoil.Thiscancausethinwebstobecomebrittle.

Whendielectricoilisheated,thehydrocarbonintheoilbreaksdownandcreatesanenrichedcarbonareainthecuttingzone.Thiscarbonbecomesimpregnatedintothesurfaceandalterstheparentmaterial.Oftenthissurfacebecomeshardandmakespolishingmoredifficult.ToavoidheatproblemswhenEDMingthinwebs,partsshouldbepremachinedandEDMedwithlowerpowersettings.

Zhidongliu

22

White(Recast)Layer

Zhidongliu

23

3SurfaceMechanicalProperties

Becauseofthetensilestresscausedbyinstantaneoushightemperatureheatingandrapidcooling,therearemicrocracksonworkpiece'ssurfaceprocessedbyEDM.

ThereareresidualtensilestressandmicrocrackinsurfaceofworkpiecemachinedbyEDM,whichmakesthefatigueperformancemanytimeslowerthanthatmachinedbymechanicalprocessing.

Zhidongliu

24

Micro-crack

Zhidongliu

25

MachiningDefectbyMaterialStress

Zhidongliu

26

SEMPhotos

Grinding

EDM

Wire-cutEDM

Zh

MachiningEfficiency&SurfaceRoughness

VSMmm3/min

4,5

4

3,5

3

2,5

2

1,5

1

0,5

0

CCD0.25

CCA0.25

Ra

25μm 18μm 07μm 05μm 03μm 02μm 015μm012μm

Zhidongliu

28

SurfacePolishing

Zhidongliu

29

6.2Near-mirror-finishingUsingPowderSuspendedinDielectric

Itisdifficulttoobtainsurfacewithsmallroughness(verysmooth)byEDM,especiallywhenthesurface’sareaisbig(forexamplebiggerthan10×10cm2).Soforthediewithsmallroughness,afterbeingmachinedbyEDM,itshouldbepolishedbyhuman,whichislabourconsumingandtimeconsuming.Furthermore,itisverydifficulttopolishsomenarrowslits,deeptroughsanddieswithcomplexshapes.

Zhidongliu

30

1.ReasonsofBeingDifficulttoFinishLargeNear-mirror-finishingSurfacebyEDM

ThereasonisthatsurfacesprocessedbyEDMismadeupofnumeroussmalloverlappingcavitiesandflanging.Thesmallercavities’diameteranddepthare,thesmallersurfaceroughnessis.Onlywhenthepower(pulsewidth×pulsecurrent)ofasinglepulseisverysmall,dischargecavitiesareverysmallandshallow.

Zhidongliu

31

Zhidongliu 32

產(chǎn)

ThoughtheoreticallyaverynarrowpulsewidthandaverysmallpulsecurrentcanbedesignedinEDMpowersupply,atoolelectrodeandaworkpieceareimmergedintheinsulatingdielectricoilandthetoolelectrodeandtheworkpiece’smachinedsurfaceareequivalenttopositiveandnegativeelectrodesofacapacitor.

Zhidongliu

33

Twoelectrodesofthecapacitoronlycanbechargedbysmallsinglepulseenergywhichcannotionizethedielectricoilbetweentwoelectrodes.Afterseveralordozensofpulsesareaccumulatedonthetwoelectrodes,thegapvoltagecanjustriseto60~100v.Whenthevoltagereachtoionizationvoltage,sparkdischargehappens.

Zhidongliu

34

Oncesparkdischarge,allelectricalenergyaccumulatingonsurfacesofthetoolelectrodeandtheworkpieceisquicklyreleased.Becauseofthatabig,deepandroughdischargecavityisproducedonthesurface.Therefore,eventhoughminimumsinglepulseenergyisapplied,asurfacewithsmallroughnesscannotbeobtained.

Zhidongliu

35

ReasonsofBeingDifficulttoFinishLargeNear-mirror-finishingSurfacebyEDM

Mirrorsurfacecavity

Pulsepowerenergy

高頻電源

Capacitorchargedbysmallpulseenergy

accumulated

sparking

Zhidongliu

36

Twoelectrodeascapacitor

2.EffectofPowder-MixedEDM(PowderSuspendedinDielectric)

AdvancesinthecontrolsandthedielectricfluidhavedramaticallyimprovedsurfacefinishinJapan.Somemachinesuseaspeciallyformulateddielectricfluidforfinishingoperationsthatproducesmirrorfinishesoflessthan1.5μmRmax.Somemachinescontaintwodielectricfluidtanks,oneforconventionalroughingandsemi-finishingandtheotherforproducingnear-mirrorfinishes.

Zhidongliu

37

Zhidongliu 38

Zhidongliu 39

Zhidongliu 40

3.MachiningPrincipleofPowder-MixedEDM

Siliconoraluminumpowdersaremixedinthedielectricoil.Thepowders’diametershouldbeabout1-2μm,otherwisewhicheasilysink.Powdersfirstlyaremixedandtheninjectedintotheoiltroughandthedischargegapbetweenthetoolelectrodeandtheworkpiece.Duringprocessing,thetoolelectrodeusuallycanliftandmoveorshakeandbythisprocessthemachinedsurfaceismoreuniformandsmoother.

Manufacturershavediscoveredthatafteraddingsilicon,graphite,oraluminumpowdertothedielectricoil,excellentsurfacefinishesareproduced.ThisprocessisalsocalledDiffusedDischargeMachining(DDM).

Zhidongliu

41

Powder-mixedEDMcanreachthenear-mirrorwitharelativelylargearea.Themajorreasonsis:

(1)Conductivepowdermaketheinter-resistivitygreatlyreduced,processinggapincreased,inter-electrodecapacitancereduced,theactualsinglepulseenergycanbereducedtoverysmallvalue.Thiscanprocessasmallcavity.Inaddition,asthegapisincreased,chipremovaliseasy,soflowfliedgetbetter,stabilityalsoimproved.

(2)WhattranspiresinDDMistheelectricaldischargesfromtheelectrodedonotfirstbombardtheworkpiece,butbombardthesiliconorotherparticlesandgenerateminutedischarges.Theseminuteelectricaldischargesresultincavitiessoshallowthattheyproduceanear-mirrorfinish.

Zhidongliu

42

43

Zhidongliu 44

(3)Withpositivepolaritymachining,toolelectrode(cathode)launchedelectronic,throughalongdischargegaptoreachsurfaceoftheworkpiece,thedischargechanneldiameterhasbeenexpanded,sosparkcavitiesaredishshallowwithlargerdiameterandsmallerdepth.

(4)Siliconpowder,aluminumpowdercanform"vitreous"orsolid-fluxingalloylayerontheworkpiecesurfaceattransienthightemperatureandhighpressuredischarge,thesurfaceismoresmooth,resistanttowearandcorrosion,soprolongthelifeofcavitymold.

Zhidongliu

45

6.3DCArcing

Arcdischarge

Dischargecontinuouslyoccursinthesamelocationontheelectrodesurfacetoformastablearcdischarge,apulsevoltagewaveformcharacteristicsusuallyhavenotionizationpointdelayordischargesustainingvoltageisslightlylowerandthehigh-frequencycomponentsismorefewer.

Arcinthefirstfewsecondsshowsagreatdealharm,theelectrodeandtheworkpiecewillbeablatedintoadeepcrater,resultinginaseriousheat-affectedzoneasdeepasafewmillimeters,thezonemaygrowatarateofmorethan1mm/minandtoolelectrodemaybescrapped.

Zhidongliu

46

(2)Shortcircuit

Althoughtheshort-circuitdoesn’tproducematerialablationorinjuryofelectrodes,butcancauseahotspotatshort-circuit,andaftertheshort-circuitmanytimes,theautomaticservosystemallowstoolelectrodefallbacktoeliminateshort-circuit,thiseasycausesarcing。

Zhidongliu

47

NORMALSPARKINGPULSE

withapreciseEDMspark,theflowofsparkelectricitystartsatthebeginningofthespark-ONtimeandstopsatthebeginningofthespark-OFFtime.Spark-ONand-OFFtimeisdeterminedbythecontrolsettingattheEDM-powersupply.

Zhidongliu

48

Figure13-1.EDM-sparktiming.

Zhidongliu

49

ACTUALFLOWOFSPARKELECTRCITY

Inreality,manyEDMsparksdonotoccurasillustrated.Instead,conditionsexistinginthesparkingareamaynotallowtheflowofelectricitytostopimmediatelyatthesametimesetasthebeginningofthespark-OFFperiod.

ThepeakamperewaveforminthedrawingshowsthatthesparkelectricitydoesnotimmediatelyturnOFFatthetimecommandedbythepower-supplycontrol.

Zhidongliu

50

Twopossibilitiesforthisare:

misuseofcapacitors(alsocalledcondensers)withanEDMpulse-typepowersupply.Thiscommentdoesnotapplytocapacitorsusedwithresistor-capacitor(R-C)-typeEDMpowersupplies;and

excessiveelectricalinductance,causedbyseparationoftheelectrodeandworkpiecesparkingwires.

Zhidongliu

51

Figure13-2.Sparkelectricityflowduringspark-OFFtime.

Zhidongliu

52

Figure13-3.Separationofsparkingwiresincreasesinductance.

Zhidongliu

53

ifspark-OFFtimeisreducedtoapointwheresparkelectricitycontinuestoflowfromonesparkintothenext,therewillbenospark-OFFtimebetweentheelectrodeandworkpiece,eventhoughthepowersupplyhascommandedone.

Zhidongliu

54

Figure13-4.Sparkelectricityextendingfromonesparktothenext.

Zhidongliu

55

POORCHIPREMOVAL

Dielectricfluiddoesnotnecessarilyflowequallyoverallsparking-gapsurfaces.

Forasquareelectrode,thatwouldbefromthecenterholetothecenterpointoneachside.Sincethereisagreaterdistancefromthecenterholetotheelectrodecorners,thecomersreceivelessfluidflowand,consequently,havelessthanidealchip-removalconditions.EDMsparkingby-products,primarilycarbon,alsoha

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。

評(píng)論

0/150

提交評(píng)論