PROE-NC-高速加工概述课件.ppt
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- PROE NC 高速 加工 概述 课件
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1、global solutionsinnovationcollaboration 2001 PTCUtilizing Pro/NC High Speed Machining Strategies 2000 PTC2High Speed MachiningOverviewlWhy High Speed Machining?lComponents of High Speed MachininglMisconceptions about High Speed MachininglWhat is High Speed Machining?lThe High Speed MachiningProcessl
2、How to Start?2000 PTC3Why High Speed Machining?lReduces machining timelShortens lead timelReduces,even eliminates,post-machining processeslShortens preparation timelEnhances the quality of the finished part 2000 PTC4HSM:Machining TimeReduces machining timelFor various materiallGraphitelAluminumlCast
3、 ironlMild steellPre-hardened steellTough-to-cut material lHardened steel,Titanium,Inconel,etc.lGreater rate of material removallHigher speed advantages offset disadvantages of greater number of slices 2000 PTC5Why High Speed Machining?lReduces machining timelShortens lead timelReduces,even eliminat
4、es,post-machining processeslShortens preparation timelEnhances the quality of the finished part 2000 PTC6HSM:Lead TimeShortens lead timelEven for hardened steelConventional ProcessPolishingEDMBurningHeat Treat Roughing Making Electrodes High Speed Machining ProcessRough to finish operations in one m
5、achining processHigh Speed Machining 2000 PTC7Why High Speed Machining?lReduces machining timelShortens lead timelReduces,even eliminates,post-machining processeslShortens preparation timelEnhances the quality of the finished part 2000 PTC8HSM:Post-Machining ProcessesReduces,even eliminates,post-mac
6、hining processeslHigh quality machined surfaceslSuperb machining accuracyMirror quality finishlNo need for bench work and polishingLess time spent on adjustments during insert or mold base assembly 2000 PTC9Why High Speed Machining?lReduces machining timelShortens lead timelReduces,even eliminates,p
7、ost-machining processeslShortens preparation timelEnhances the quality of the finished part 2000 PTC10HSM:Preparation TimeShortens preparation timeReduces the requirement for different toolslConventional machining requires 3 tools to make an entry hole and pocketlHSM can make use of one tool onlyCor
8、ners of differing radii can be machined with one toolConventional Machining:High Speed Machining:Spot Drill Drill Mill Ball Nose Endmill Helical Cutting of the hole 2000 PTC11Why High Speed Machining?lReduces machining timelShortens lead timelReduces,even eliminates,post-machining processeslShortens
9、 preparation timelEnhances the quality of the finished part 2000 PTC12HSM:Part QualityEnhances the quality of the finished partlLess tool deflectionlLess warpage on thin wallsEliminates bench worklMaintains accuracy of small detailed geometry lEliminates blending of electrode marginslMaintains accur
10、acy of radiiMore consistent geometrylLess tool wear 2000 PTC13Components of High Speed Cutting 2000 PTC14Components of High Speed CuttingMachine Tool&Controller 2000 PTC15Components of High Speed CuttingSpindles,Holders and Cutting ToolslControlled temperaturelHigh precision bearingslGood concentric
11、itylQuick acceleration and deceleration 2000 PTC16Components of High Speed CuttingMachine StructurelWithstand heavy loadslHigh responsiveness&high feed rateslThe bed,column&table ensure a high structural rigidity 2000 PTC17Components of High Speed CuttingLinear Guide Ways Linear MotorslNo ballscrews
12、lMinimumbacklashlHigh responsiveness 2000 PTC18Components of High Speed CuttingController SystemlGood control software for data handlinglGeometric errors arising from the servo lag can be overcomeServo Lag 2000 PTC19Axis Reversal ErrorslErrors when movement direction is reversedFast Data Processingl
13、At high feed,tool can finish the move before the next move is ready,or vice-versalTool dwells,undershoots or overshootsLook AheadlAnticipate tool path changes,&vary the feed accordinglylGouge AvoidancelSmoother Acceleration&DecelerationComponents of High Speed Cutting 2000 PTC20Speeding in the corne
14、rsHow Fast?2000 PTC21Arc the CornersBlindly adding arcs on toolpath corners is NOT High Speed MachininglFor this example,a distance between the path of 1 mm became 1.5 mm at the cornersl50%more loadlConsidering the heavier material at the corner,and the load shoots up to more than 100%lMore severe c
15、onditions for sharper corners 2000 PTC22Spline/NURBS dataNURBS or Spline interpolation is NOT High Speed MachininglStraight lines can be represented in NURBSlNURBS is not exact data from the CAD systemlEven if CAD data was in NURBSlCannot offset easily NURBS curve or surfacelToolpath seldom follows
16、UV linesNURBS are controller requirementslUse if the controller behave better with NURBS,rather than linear,circular or helical interpolation 2000 PTC23What is High Speed Machining?Stable Cutting ConditionslMaintain low temperatures at the tool cutting edgelShallow cuts,both in depth and radial dire
17、ctionlSmall cutting loadlAdditional advantages for low rigidity workpieceslMaintain constant cutting loadlConsistent tool deflectionlLess vibration and chatterlLess tool wearlEffectively remove the cut chipslThru-spindle coolant or airlThru-tool coolant or air(deep cavity)2000 PTC24Axial DepthAxial
18、DepthRadial DepthRadial DepthStable Cutting ConditionsMaintain low temperatures at the tool cutting edgelShallow cuts,both in depth and radial directionlSmall cutting loadlAdditional advantages for low rigidity workpieces 2000 PTC25Stable Cutting ConditionsCutting LoadTool Life Cutting LoadTool Life
19、Maintain constant cutting loadlConsistent tool deflectionlLess vibration and chatterlLess tool wearMaximizedTool Life 2000 PTC26Stable Cutting ConditionsEffectively remove the cut chipslThru-spindle coolant or airlThru-tool coolant or air(deep cavity)2000 PTC27High Speed MachiningTOOLSHigh stress 20
20、00 PTC28High Speed MachiningTOOLSMore Constant Material Removal Process 2000 PTC29High Speed RoughinglConstant cutting conditionlConstant chip loadlApproach from outside materiallContinuous tool engagementlMinimization of sudden tool direction changes lReduction of repositioning movesBalancing all t
21、hese sometimes-contradictory requirements 2000 PTC30Roughing:Cutting ConditionConstant Cutting ConditionlClimb CuttinglLess heat is generatedlSmaller forces on toollWork hardening is minimized,even eliminatedlBetter surface finish 2000 PTC31High Speed RoughinglConstant cutting conditionlConstant chi
22、p loadlApproach from outside materiallContinuous tool engagementlMinimization of sudden tool direction changes lReduction of repositioning moves 2000 PTC32Constant Chip LoadlRate of material removal as constant as possiblelMaintains constant chip sizelBetter heat transferlBoth tool and workpiece sta
23、y coollNo need to manipulate feedrates and spindle speedslLonger tool lifelBetter part qualityNever bury in the materialRoughing:Chip Load 2000 PTC33High Speed RoughinglConstant cutting conditionlConstant chip loadlApproach from outside materiallContinuous tool engagementlMinimization of sudden tool
24、 direction changes lReduction of repositioning moves 2000 PTC34Roughing:Approaching the CutsApproach from outside the material,when possiblelFor regions with open wallslReal-time analysis of the cut materialClosed regionslAll regions with no open wallslHelical plunging approachlOpens up an approach
25、location 2000 PTC35High Speed RoughinglConstant cutting conditionlConstant chip loadlApproach from outside materiallContinuous tool engagementlMinimization of sudden tool direction changes lReduction of repositioning moves 2000 PTC36Roughing:Tool EngagementContinuous tool engagementlWhenever possibl
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