基于端面微磨削的硬脆材料磨削力建模的研究

基于端面微磨削的硬脆材料磨削力建模的研究

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时间:2019-02-26

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1、基于端面微磨削的硬脆材料磨削力建模研究ABSTRACTWiththedevelopmentofscienceandtechnology,miniaturizationpartshavebeenappliedextensivelyinthefieldsofaerospace,defense,machineryetc.Thehardandbrittlematerials,suchasengineeringceramicandglass,havegoodmechanicalpropertiesandphysicalpropertieswhic

2、harehighhardness,highstrength,thegoodabrasionresistanceandsoon.Theycanbeusedinreliablyandpersistentlyinhighpressure,highspeedandoverloadedenvironment,especiallyinhigh-profileindustries.Hardandbrittlematerialswiththeirspecialcharacteristicsandcomponentsofminiaturizationar

3、edifficultlyprocessedandthenlimitedtopopularizationandapplication.Theexistingmicromachiningmethodsformicropartswithcomplicatedsurfacehavemanydisadvantages,sofar.Inordertomakeitmoresuitableforpracticalproductions,thispaperadoptstheendmicrogrindingmachiningmethodtosolvesom

4、eproblemsexistinginthemicrogrinding.Grindingforcesareimportantcharacteristicparametersofmicrogrindingmechanismresearch,thisarticlemainlyaimsatgrindingforcesofmicroendgrindingofhardandbrittlematerials.Duetothecuttingdepthofmicroendgrindingisfixed,theundeformedchipthicknes

5、sisanimportantparameterconnectingthegrindingparametersandgrindingresults.Basedontheexistingresearchonmicrogrindingmechanism,theanalysisofthesinglediamondgritsisveryimportantonaccountofthemicrogrindingdepthandtheratioofparticleradiusisfarlessthan1.ThisarticlefromtheAngleo

6、fthesinglediamondgritsmaterialremovalisstudied.Firstly,thephasesofdifferentgrindingwaysinthemicrogrindingprocessareanalyzed,andthecriticallocationsofthedeformationmodelofthechipthicknessaresetupthroughstudyingthemechanismofbrittle-ductiletransition.Secondly,thepaperestab

7、lishesthemodelsoftheinstantaneouscuttingthickness,notdeformationmodelofchipthickness,singlediamondgrindingforce,andthewholeworkpieceforcemodelcombinedwiththestaticdistributionofthegrindingwheelongrindinggrain.Atlast,simulationofsinglediamondgritsalongwiththechangeofproce

8、ssparametersandmachiningsurfacequalityalongwiththechangeofgrindingforceandmachiningparametersarestudied

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