Finishing to Light CuttingLight to Medium CuttingFinishing to Light CuttingDepth of Cut ap (mm) Depth of Cut ap (mm) Depth of Cut ap (mm) Depth Depth Depth Depth Depth Depth Depth Depth DepthDepth Depth Depth Depth CeramicsSolid CBNPos.Neg.Insert AY pe FT SJ ST 2.5 Chipbreaker Selection 30° TCypeD TRypeS T V W 2.50 By CuCttinDg CC 0.1DD5 CRRRo1.n35dSSSitioTTTn1s5VVV° WWW C D R S T V W 1.35 0.15 CCC TDDDypeRRR SSS 1.2TTT VVV WWW 0.18 CCC DDD RRR SSS TTT VVV WWW 1.2 CCCCCCCC DDDD0T.1yRRRR8pe SSSS DDDD RRRR0.15SSSS TTTT1.65VVVV TTTT VVVV WWWWWWWW M Class Positive TyMpMe (Finishing to MediumCCutting) pe 2.5015° FFBB MM LULB CLUW pe FT SJ ST 0.30 -15° 15°MM LLBB FCWSU SSFSPS pe 0.5 pe 20° 0.4 MM FW C SS FP 25° CC DD RR SS TT VV WW C D R S T V W Type CCC D R DD0.15RR SSS2.95TTT VVV WWW CCCC TDDypeRR SS DD RR0.15SS TT2T.15 VVV T V WWWW CCCCCCC DDDDDDDTTyyTpRRRRRRRpyeepeFgPSSSSSSSionois0dhMci.nh5gipbTTTTTTTcreoKankterorlfNaonVVrVVVVVdmsiludSrfsatceWWWWWWWeeHl,finwiisthh TCCypeDD C D C5°0.157D° RR0.15SS R S 11R° 2.9S5 1T.35 T VV20°WW T V W T V CCMT09T3 ○○WType C D R S T V W CCCCCCCCCCC5° 7DDDDDDDDDDD° TTy11pyRRRRRRRRRRR°p1e0e°LePSSSSSSSSSSSdigg0het.-Mac8nuCdttCiTTTTTTTTTTTgnMogKobTdr0ec9ahNkTipVVeVVVVVVVVV3rcw○oinSt1ht○ros5lhWWWWWWWWWWWTaHy°rppe CCC DDD TyRRRpe SSS TTT VVV WWW TCCCypeDDDTypRRRe TCPSSSy1hpip0Mec°oTTTnKtrol sNiVVVgnifSicaWWWnHtly TCCCCypeDDDD TyRRRRpe HPSSSSighM-p1TTTTeK4rf°orNmVVVVaSncWWWWeH Tyimppreoved in fine finishing TCCC0y.p15eDDD RRR2.9SSS50.11850TTT°.08.8VVV1.2WWW 10° CCC5° 7DD°0.1115RR° D R SSS2.15CCTTTMT09TVVV3 ○○WType WW 15°CCCCCCCC7°Wip1eDD1DDDDDDr°In0s.eT1rt5yRRRRRRRRpefwiSSSSSSSS1n2ip4iT.s1e11°hy5rC.i0n4pCeTT0TTTTTT°gMd10.e1gTb.055er9eTVVVVVVVVa3k○e1○r01WWWWWWWWwTy°.ip6teh5 CCC (mm)6 TDDDyTpyeR4RRpe GePSSS1xecn4eeM°llreanlTTTtbKeredagkeNeVVVsrhwaSirthpnW1RWW57eH1°°es°lPPisePoofossAs..n.g(CCCCmlem46) Type DDDD TRRRRypeMbSPSSSreedaMkiuemTTTTrK-p1R7cr1°eou°lPNietvPVVVVotfioisdAns.niS.gnggleWWWWH CCC DDD 2RR00.90SS R S 1.45 0F.e28TTTed°R(a12teVVV50(m°°0m).4/rWWWev) 2 CCC0.60 DDD C D RRR0.2 RFeed RgSSSSaoteo1(d.m10mc5TTTT.4/hreipv) cVontroWl V5° W V W 0.6 V W 7° 11° TPMT1103 ○○ Type TCCypeDD C D (mm) TRRRypeSSS TTT VVV WWW 1C1° CC TDDDypeRRR SSS T V CPMH0903 ○○WType TyTTpe VV WW FWMU SSF TCCCCCCCCCCypeDDDDDDDDDD0.T9y0RRRRRRRRRR0p0.1e0.53.LlPSSoSSSSSSSS15owngcM-u(lit12ftTTTTTTTTTTe1i24n50Kb0g.°°°r91er°)ea5.Nsk8VVVVVVVVVVies2rtawS0nict°heWWWWWWWWWWH CCCCCCC Type T4260DDDDDDDy0p.9e0RRRRRRR010.F..21e2VwePSSSSSSS5ed0itrRh.y1Mast1r(5ee12h.TTT(TTTTlm1a6i50Ka0mr54.°°bp4/°)°rR1lee71eN12ev°VVVVVVV°d)l4ibP.e1Pg°foro5Seaessn.a.g0WWkWWWWWl.eH6eorf UUJJ CCC DDDTyTpRRRye1p.1eEliPSfS5SnesuMreTTTsK5st°aNbVVVle1S.t4oWWWo0Hl CCC DDD RRR0.1SSS 1.5 TTT5° VVV WWW GX0.15 1.65 Type 1.50 UM T1y5p°e CC DD RR SS TT 1.VV50 WW C D R S T V W2.00 15° 0.15 14° CC FP DD RR SS Type TT VV WW C D R S T V W CC DD RR SS TT 1.4VV0 WW C D R S T V W 10° FFPP CC DDTyTpyRRpeePSSProviMdesTTgKoodNVVchipSWWH GX control in finTe fyinipsheing FCKD CC DD RR SS 1.4TT0 VV 10WW1°51°.50C DTypReR P M K N S H UM FinSishingTbreakeVr withW sharp edge and control 1.1 goodTchyippe S T V W0.15 2.0014 7° 11° CCMT09T3 ○○ Type 11° TPMT1604 ○○ Type CC DD RR SS TT VV WW C D (mm) R S T V W 6 ReliefAngle USUJ CC DD TyRRpeTSBSPSymaprasMlel HTTKoleN S H BVVoringWW C 4D2 RR DS 11°Pos. TTypeV W 0.11.951.5 0 2.00 B CC DD RR SS TT 10VV°5° WW 0.2 0.4 0.6 Feed Rate (mm/rev) C D R S T V W 11° CPMH0903 ○○ Type UJ CC DD(mm)6 RD CC10° D4 D TRRypeSS 0.1 1TT.55° RR TSSypeTT VV WW Reliefangleof 11°Pos. VV WW CC RD Type D R S T V 2.00 AW Type D R S T V WW A 2 2.00 10.5 0 25° CC DD RR S0.2 Feed S 0.4 TT VV Rate (mm/rev) 0.6 WW C D R S T V W er 7C° 11D° R C D R Positive Type EM G Class (GrounAdXType) AY Handed BreakerCCC(mm6) CC 4 DDDDD RRRRR For ChamCCfe2 rDDingRR SSSSSSS TT VV TPMT1604 ○○WWType T V W TTTT R71°1e°PVVVVliePofosA.sn.gWWWWle SS TT VV WW FFWW EM FXSS AXFYS UJ FAYY CC RD CC 0 DDDD Type TRRRRyp0F.2eeeWwSdPSSSiitdhReas-Mthdeaimr(TTTTmpp0Kmel.e4dd/greceNvhVVVV)ipbrSea0kWWWW.e6Hr EM AX AY TCCCCypeDDDD RRRR2.5SSSS00.90TTTT V W VVV (12WWW50°°) 5C°0.10D15° 0R° GH RH FB C D R TPMT1102 ○○ Type SS TT VV WW CC DD RR SS TT VV WW W SD SDW CCCC DDDDTypeRRRR0.1WbSPSSS5reidaMeketTTTTyr1pKe.0fNiVVVVnisShinWWWWgH GH RH FB C D R S T 1V0° W C D R 5C° 1D1° 0R° SS T V W T V TPGR1103 ○○WType GHEM RH AX FB AY LB TCypeD TyRpe S T V W CC D3D° RR0.035.SS5(mm6) TT2.50VV WWGD LD C D R S 4 T V W CC DD RR SS 2 TT VV WW TTyyppee TTyyppee T1TCCCCCCCCCCCCCCCCCCCCCC51y°°yp0p.TTe0Te7DDDDDDDDDDDDDDDDDDDDDDy(y5m°y(p0mpm426p0).me3e104260e)1°RRRRRRRRRRRRRRRRRR5RRRR° 23T.05PsSgyP°hSSSSSSSSSSSSSSSSSSPSSSS0a2rt0pFaor2e..ea2rupM503eF.epMl.5dnlepT2e1.T0ePedR05ePTTTTTTTTTTTlTTTTTTTTTTTd0M5a.dKG1dbK9ttRT.eg°Ty.ra911p1e(eptm601eaN5a0eN.0m4(VVVVVVVVVVVrVVVVVVVVVVV4km3a/0eR1○r○mel.1S4lervSe○/°○l)ri1Rwe57elP1f°°veWWWWTWWWWWWWWWWWWWWWWWWoTia°H)yltPPyHis5enphPp.oofge0°eossA.le6s..n.o0gf.l61eCCCCCCCCCCCCCCCCCCCCC51W°°ipeTTr7DDDDDDDDDDDDDDDDDDDDDyIy°nsppeTrTeetT(RRRRRRRRyRRRRRRRRRRRRRymypmp3p426-0)e10e0eHwb5Fw°PSSrSSSSSS.PSSSSSSSSSSSSSiiegt23hia°hink-3wt.p0ehei5repMMT0re-TfCors2cP°rey0CmTThTTTTTT20TTTTTTTTTTTTTdMu.ga0GpFa.K5Kn.et.R.91ec.5Tt2r101ePeiep0n5a6fd14irn0N0NagXei°RlVVsVVVVVVVVVVVVVVVVVVV35le1h.dalbi○n5g°○tggrerSoS○b1eeu○(rn1mead.aWWWWWWWWT0WWWWWWWWWWWWWTkmk55yt5.HHeyy4pepr/p°°ere1Rr57ee1v°°e°)lPPiePoofossCCCCCCCCCCCCCCC5As..°n.g0l.e6 Type DD RR SS TT 2VV.50 WW 15° DD RR SS TT VV WW TyTpyepeWPidMe brKeaTkNyepr wSeithH DD RR sSSharp2TTe.5d10g5e1°VV.5 WW2.00 15° 7DD° 11RR° SS T V W T V TPGT1103 ○○WType D R TSypeT V W DD R(mm)6 S R S TT0.5 VV WRelief Angle W5° Pos. D R 4 S T V W7° Pos. 2011°° Pos. D R 2 S D TRyp0 eS TT VV 0.2 WW0.4 0.6 D R S TFeed VRate W (mm/rev) 7° 311°° 3.5 TPGT1103 ○○ Type 1C1° CC TDypeR TySpe D R(mm) S 0.360 TT VV2.5 Relief Angle 4 CC151°°PTPoDDosys..p-1eR5R°2 SS 30°15° T V T V WW CC Reliefangleof 7°Pos. C 11°Pos. WW CC D 0R.30 S T V W TPGX1103 ○○ Type 15° D -1TR5y°peS TyTpe V W CC DD R(mm)6 R S T S0.5 T 4 V W C V W C 2.5R0eliefangle 111°5P°os. of D TRypeS T V20°W D R2 S T V W C DDDDD RR TySS0p.e5 TT R S T VV WW V20° W R S T0.8 V W 15° R S T V W 00.8 0.2 0.4 0.6 0 0.4 0.2 0.4 0.6 C AW Type 10.5 25°D LB Type R 0.8 15° LB Type S 0.8 15° T CCC D RDDRRS 0TSSTTV 0.2 W Feed Rate C0.4C (mm/rev) DD R 0.6 RGD VV WW TypeSS Feed Rate (mm/rev)T 20V°W C D RTVWLD Type S Feed Rate (mm/rev)TV25°WC D R S T V W V C D R S T VGDGH TCCypeDD RR SS TypeTTVVCCDD0.8RR3°SS20TT°3.5VVCCDDRRSSTTVVWLD WW RH FB LB WW Chipbreaker Application Range WW CC DD 0.8RR SS TT VV WW C D R S T V W 0.4 C D R S T V W CC TDDypeRR0T.4ySSpe02.03TT°0 VV WW C D R S Typ2e5° T V W 0.5 Bumpy ChipbTreaykpere Standard Chipbreaker C D RBreSak MTasterV(CBWN0./8PCD) Applicable Work-M15a°t2e5ri°al: P 15° Steel M Stainless CC BDDumRRpySSInseTTrt VVStaWWndarCd D R S Breaker HStaeTneldKeVdCBWarseta2Ir0koC°enrND Non-Ferrous Metal S R S T V W Exotic1A5l°loy CC BDD reRRak SSMaTTsteVVr (CWBNC/PCDD)R W S T For Chamfering V W C D R S T V W Handed Chipbreaker For Chamfering H Hardened SteelW Class MCFiniDshingRto LigSht CuTttingV WClass M Light to Medium Cutting Class G Ground Type 4 GC DD TRypeS T V W 4 LD CBumDpyRInsSert C D R S TStaVndWard T V W BCreaDkerR 4 Break MTayspeter (CBN/PCD) HaSndTed BVreaWker C D R For Chamfering S T V W 2 BFKuTmypepy Inse0rt.8 Standard2 BSCCUreTyapDDekerRRSFHTyUapSSSe TnypedTTe0Md.U4TBVypereaWker C V W 2 FX DType R SD Type S TSDW TypeV W C D R S T V W Break C D LU Type FB Type RMLaUSsWtTeyTper (CV B20NW° /PCD) For Ch25a°mFYSfeTyrpeingW Type LB Type 0 0.2 0.4 0 CC DD R SR0.2 STV WT0V.4W C0 D FRY S Type 0.2 T V W0.4 C D R S T V W C FDeed RRate f (mSm/reTv) V W Feed Rate f (mm/rev) Feed Rate f (mm/rev) Indicated chipbreaker application ranges and shapCCes arDDe repRRresenSStativeTTvalueVVs onWlWy. ActuCal valDues mRay chSangeTaccoVrdingWto the CactuaDl cataRlogueSnumTber. FVor deWtails, refer to "Stock Items" in Chapter B. CC DD RR SS TT VV WW C D R S T V W C D R S T V W B13