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MSC.Marc
version
2005
TrainingMACHININGSheng
PingWangMSC.Marc
DevelopmentFEM
Simulation
of
NC
Machining
ProcessesObjectivesTo
predict
the
effects
of
insitu
residual
stressredistribution
due
to
complex
3Dmachiningof
bulk
components.To
streamline
process
design
so
as
tominimize
partfit-upissues.Bottomline
:
To
reduce manufacturing
cycletime
thereby
achieving
productivityimprovement
and
cost
savings.FEM
Simulation
of
NC
Machining
ProcessesApproachPseudo-simulation
ofmachiningprocessthroughautomated
material
removal
using
NC
cuttingfiles
(apt
or
cl
files)
asinput.AssumptionApriori
residual
stresses
in
depth
ofwork-pieceinfluence
resulting
distortions
more
than
surfaceresidual
stresses
introduced
by
cuttingprocess.Companies
that
have
been
using
ApproachBoeing,
UTC
(Sikorsky),
Embraer,
PicheneyProductSolver
-
MSC.Marc
2005GUI
-
MSC.Marc
Mentat
2005Material
Removal
SimulationMaterial
toberemovedMaterial
to
be
removedBeam
#1Material
Removal
Simulation
FlowchartFEModel(FEA
Input
Data)FEA
Results(Post-processing)NC/CAD
DATA(Cutter
Path-
apt,clfiles)Initial
StressCAD/CAMSystemFEA
Solver(MSC.Marc)Solution
ProcedureNC
Data
InterfaceInitial
Residual
Stress
InputFE
SolutionVisualizationNC
/
CAD
DataPPRINT************************************************************PPRINT
LOAD
2"
DIA
FACE
MILL
WITH
.312
CORNERRADIUSPPRINT************************************************************LOADTL/230002,LENGTH,0,OSETNO,1SPINDL/9963,CLWCOOLNT/FLOODRAPIDCUTTER/2.000000,
.312000,.688000,CUTTER/
2.0,.3120,.6880,.3120,.0,.0,4.0.312000,.000000,$FEDRAT/
50.0.000000,4.000000GOTO/
20.0,20.0,20.0TLAXIS/.000000,.000000,
1.000000PPRINT***************************************FEDRAT/50.0000*********************GOTO/20.00000,20.00000,20.00000PPRINT
LOAD
2"
DIA
FACE
MILL
WITH
.312
CORNERPT1RADIUSPPRINT************************************************************LOADTL/
230002.0,LENGTH,.0,OSETNO,1.0SPINDL/
9963.0,CLWCOOLNT/
FLOODRAPIDGOTO/
-2.0,19.0,20.0RAPIDGOTO/
-2.0,19.0,14.0FEDRAT/
150.0GOTOPTRAPID/2-2.00000,19.00000,20.00000GOTO/
-2.0,19.0,13.30GOTO/
.0,19.0,13.30FEDRAT/
105.0GOTO/-2.00000,19.00000,14.00000GOTO/
28.0,19.0,13.30PT3FEDRAT/
150.0FEDRAT/150.0000GOTO/
28.0,17.60,13.30GOTO
/PTGOTO
/4-2.00000,.00000,19.00000,19.00000,13.3000013.30000PT5APT
SourceDataCL
DataNC
Data
InterfaceCutter
Geometry
IdentificationCutter
statement:CUTTER/d,r,e,f,
,
,hdf
ehrDifferent
Cutter
ShapesNC
Data
InterfaceCutter
Path/Passes
IdentificationDetection
of
the
starting
pointandending
point
of
each
path/sub-passes.Calculation
of
cut
volume.Based
on
cutter
cross-section
and
cuttermotion.Cutter-Mesh
Intersection
DetectionDetection
ofelement-cutterintersection.Initial
Residual
StressInputMethods
availableinMSC.Marc:NumericalDataInput(Pre-State)TransferofstressesfromendofpreviousmanufacturingsimulationtometalremovalsimulationusingPRE-STATE.Accurate:Fromint.
point
to
int.point.
ofthesame
FE
mesh.User
friendly.Initial
Residual
StressInputPre-State:Initial
Residual
StressInputMethods
availableinMSC.Marc(cont.)Text
datafileTransferofmeasurementdata
(X-raydiffraction,etc.)tomodelviatextdata.ResidualStressdataintheworkpieceareautomaticallyextrapolatedtotheunderlyingmesh.Initial
Residual
StressInputText
datafileInitial
Residual
StressInputMethods
availableinMSC.Marc(cont.)Tabular
formatFESolutionTreatmentofIntersectedFinite
ElementEntitiesFullyIntersectedFiniteElementsAutomatically
deactivated
andStressesreleased.PartiallyIntersectedFinite
ElementsSubdivided
using
Local
Adaptive
Remeshing.User
setslevels
of
sub-divisiontobeused.Fullyintersectedchildelementsaredeactivated.FESolutionwith
ReducedNumber
ofElementsFESolutionAdaptiveRemeshingfor
MachiningFESolutionMachiningLoadcase
definitionAdaptiveMeshingExampleHole
DrillingInitial
FEMmodel:408brickelements,
668nodesFinalFEMmodel:Onelevelsplitting:600:528elementsTwolevelsplitting
:2328:1656elementsThreelevelsplitting:
8472:5112elementsNote:redreferstothe
activeelementsExample:Hole
DrillingWithout
remeshingWith
1levelremeshingAccuracyComparisonbaccutterExample:Hole
DrillingcWith
2levels
remeshing With
3levels
remeshingSignificantimprovementofaccuracywith
adaptive
remeshingcutterExample:PocketCuttingCutsintheLowerSurfa
ceCutsintheUpperSurfaceMore
CutsintheUpperSurfaceFirstpocketcut…Secondpocket
cutSpring-backafterReleasePocketCuttingFrameCuttingFrameCuttingSale
Points:Practicaltooltosimulatereal-world
machiningprocesses.CADgenerated
NC
files
areused
to
determinethecuttergeometry
andpath.Convenient
residual
stressimportmechanism
isprovided.AutomatedNCdatainte
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