Technical Information for Endmills Solid Endmills Solid Endmills Brazed Endmills Special Endmill order Form ENDMILLS Endmills
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2 Technical Information for Endmill Code System KORLOY Solid 07 Technical Information for H-MAX 10 H-MAX 12 Technical Information for H Endmill 15 H Endmill 17 Technical Information for V Endmill 19 V Endmill 20 Technical Information for Z Endmill 23 Z Endmill 27 Technical Information for I + Endmill 30 I + Endmill 42 Technical Information for Endmill 44 Endmill 45 Technical Information for Micro Endmill 46 Micro Endmill 47 Technical Information for Solid Endmill for Hard-to-cut material 49 Solid for Hard-to-cut material Solid 50 Technical Information for S+ Endmill 52 S+ Endmill 53 Technical Information for Solid Endmill for Aluminum 54 Solid Endmill for Aluminum 56 Technical Information for A+ Endmill 58 A+ Endmill 61 Technical Information for C-Max 62 C-Max 65 Technical Information for D-Max 67 D-Max 68 Technical Information for PCD Endmill 69 PCD Endmill Brazed Technical Information for Brazed Endmill Brazed Endmill Special Endmill order orm 76 Special Endmill Order orm ENDMILLS
3 Code System HP B E Series Type Endmill No. of lutes Cutting Dia. Overall Length Series Cutting Dia HP B E R T -V N S HP B E R T -V N S IP, Z : Infinity-Max Endmill HP, P : High performance-max Endmill C : Copper-Max Endmill D : Dia coated-max Endmill V : Variable Endmill M : eed-up Endmill SSEA, AP : Aluminum Endmill ISE, SP : Stainless Endmill Type HP B E R T - V N S lat type Ball type Radius type B R Notation ØD Ø4.0 Ø6.0 Ø8.0 Ø10.0 Endmill HP B E R T - V N S Overall Length HP B E R T - V N S No. of lutes HP B E R T - V N S 2 lutes 3 lutes 2 3 Overall Length Notation L 4 lutes 6 lutes The above code system is not applied for SSEA and ZSE. 2
4 Code System R02 T00 - V05 N12 S06 Corner Radius Taper Angle Taper Length Neck Length Shank Diameter Corner Radius Neck Length HP B E R T -V N S HP B E R T -V N S Corner Radius Notation R R02 r 0.2 R05 R10 r 0.5 r 1.0 Long Neck Taper Long Neck R15 r : Neck Length Long Neck Taper Long Neck Taper Angle HP B E R T - V N S Notation N05 N Notation N0510 N N10 10 N N12 12 N T( ) : Taper Angle Taper Angle Notation T10 T( ) 1 Shank Diameter HP B E R T - V N S T T20 2 Taper Length HP B E R T - V N S Shank Diameter Notation Taper Length Notation S06 S08 Ød Ø6 Ø8 V05 5 S10 Ø10 V10 10 S12 Ø12 V15 15 S16 Ø16 This code system is also for special endmills. 3
5 KORLOY Type Shape Designation igure Coated Used No. of flute Min 3Size Max Workpiece P M K N S H Steel Stainless steel Cast iron Non-ferrous metal Heat resistant alloy, Titanium alloy Hardened steel page Ball HPBE2000 PC203 HPBE2000T PC203 High speed High hardness High speed High hardness H-Max Radius HPRE2000 PC203 HPRE4000 PC203 HPRE2000T PC203 High speed High hardness High speed High hardness High speed High hardness HPRE4000T PC203 High speed High hardness H Endmill Ball PBE2000 PC303S Radius PRE4000 PC310U High speed High hardness High speed High hardness V Endmill lat VE4000 PC215 General ZE2000 PC315E General lat ZE4000 PC315E General Z Endmill Short lat ZSE2000 PC315E General ZSE4000 PC315E General Ball ZBE2000 PC315E General lat IPE2000 PC320 General IPE4000 PC320 General I+ Endmill Long lat IPLE2000 PC320 General IPLE4000 PC320 General Ball IPBE2000 PC320 General IPBE4000 PC320 General : Excellent : Good 4
6 KORLOY Type Shape Designation igure Coated Used No. of flute Min Size Max Workpiece P M K N S H Steel Stainless steel Cast iron Non-ferrous metal Heat resistant alloy, Titanium alloy Hardened steel page Long Ball IPLBE2000 PC320 General I+ Endmill Radius IPRE2000 PC320 General IPRE4000 PC320 General Long Radius IPLRE2000 PC320 General IPLRE4000 PC320 General Endmill Standard ME4000 PC203 High speed Long MLE4000 PC203 High speed Micro lat MSE2000 PC215 High speed Ball MSBE2000 PC215 High speed Solid for difficult to cut material lat ISE3000 PC210 STS S+ Endmill lat SPE4000 PC325 STS Long lat SPLE4000 PC325 STS Solid for aluminum lat Ball SSEA2000 SSEA3000 SSBEA2000 H01 PD3000 H01 PD3000 H01 PD3000 Aluminum Aluminum Aluminum APE2000 H05S Aluminum lat APE3000 H05S Aluminum A+ Endmill Long lat APLE2000 H05S Aluminum APLE3000 H05S Aluminum Ball APBE2000 H05S Aluminum Roughing APRE3000 H05S Aluminum : Excellent : Good 5
7 KORLOY Type Shape Designation igure Coated Used No. of flute Min Size Max Workpiece P M K N S H Steel Stainless steel Cast iron Non-ferrous metal Heat resistant alloy, Titanium alloy Hardened steel page lat CE2000 PC210C Copper, Copper alloy Long Neck lat CNE2000 PC210C Copper, Copper alloy C-Max Ball CBE2000 PC210C Copper, Copper alloy Long Neck Ball CBNE2000 PC210C Copper, Copper alloy Radius CRE2000 PC210C Copper, Copper alloy Long Neck Radius CRNE2000 PC210C Copper, Copper alloy Ball DBE2000 ND3000 Graphite, Aluminum D-Max lat DE2000 ND3000 Graphite, Aluminum Radius DRE2000 ND3000 Graphite, Aluminum PCD Endmill lat PDE1000 DP200 PDE2000 DP200 Nonferrous, High speed Nonferrous, High speed ZSE200 CC PC221 Cast iron, Steel ZSE300 CC PC221 Cast iron, Steel lat ZSE400 CC PC221 Cast iron, Steel Brazed Endmill ZSE600 ZSEA200 ZSEL200 CC PC221 CC CC PC221 Cast iron, Steel Aluminum, Copper Cast iron, Steel Long lat ZSEL400 CC PC221 Cast iron, Steel ZSEXL200 CC PC221 Cast iron, Steel Ball ZSBE200 CC PC221 Cast iron, Steel
8 New PVD coating technology for anti-corrosion and wear resistance H-Max H-max can be used for pre-hardened steel and heat-treated steel H-max guarantees highly accurate machining (diameter and radius) New PVD coating technology improves anti-corrosion and wear resistance Technical Information for H-Max HPBE HPRE High speed machining for hardened steel (~HRC70) High accuracy (Radius, diameter) Strong corner edge for longer too life Diameter : 0~ Radius : 0~ Ultra fine grade for tougher edge and less chipping Combination of the new PVD coating and the hardened anti corrosion substrate guarantees excellent performance Application area (Ball. Radius type) by diameter Test examples Test Result Point Edge Edge H - Max Competitor Joint mold core machining (STD11 HRC54~59) RC54~59 wear resistance, no chipping found % H - Max 100% Competitor Tool life 125% up 7
9 Technical Information for H-Max Recommended Cutting Condition (HPBE) Workpiece Condition Diameter(Ø) NAK80, STD61 (~ HRC 50) eed Axial depth ap STD11, STS420 (HRC 50~60) eed Axial depth ap SKH (HRC 60~65) eed Axial depth ap 1 40,000 4, ,000 3, ,000 3, ,000 5, ,000 4, ,000 2, ,000 7, ,000 4, ,000 1, ,000 6, ,000 1, ,000 1, ,000 5, ,000 2, ,000 1, ,000 3, ,000 2, , ,000 3, ,000 1, , ,000 2, ,000 1, , ,000 1, , , Recommended Cutting Condition (HPRE) Workpiece Condition Diameter(Ø) NAK80, STD61 (~ HRC 50) eed Axial depth ap STD11, STS420 (HRC 50~60) eed Axial depth ap SKH (HRC 60~65) eed Axial depth ap 1 40, , , ,000 1, , , ,000 2, ,000 1, , ,000 2, ,000 1, , ,000 3, ,000 1, ,300 1, ,000 3, ,000 1, ,000 1, ,600 3, ,800 1, ,200 1, ,000 2, ,000 1, , ,000 2, ,000 1, , ,800 1, , , Cutting speed formulas (Ball ) -1 ) : Slope angle Slope angle Slope angle Slope angle Slope angle Slope angle Cutting speed formulas (Ball, Slope angle = 0 ) Ex) Diameter -1 ) Slope angle 0 Slope angle 15 : 8
10 Technical Information for H-Max Veff (efficient cutting speed) technical data as per depth and workpiece hardness (H-max, Ball ) Dimensions HRC45~55 Efficient cutting speed by depth (z-step=ap) vc Tool diameter Ball R RPM , , , , , , , , , , , , , , , , , , , , , , , , Dimensions HRC45~55 Efficient cutting speed by depth (z-step=ap) vc Tool diameter Ball R RPM , , , , , , , , , , , , , , , , , , , , , , , ,
11 H-Max HPBE2000 (Ball) / 2000L (Long Ball) HPBE2000T (Taper Ball) ØD Tolerance R Tolerance Ø0.6~Ø6 0 ~ ±0.005 Ø7~Ø16 0 ~ ±0.010 Designation R ØD Ød L HPBE HPBE 2060L L L L L HPBE 2010-T T T T T T T T T T T T T T T T
12 H-Max HPRE2000 / 4000 (Radius) ØD Tolerance R Tolerance Ø0.6~Ø6 0 ~ ±0.005 Ø7~Ø16 0 ~ ±0.010 Designation ØD Ød L r HPBE 2020-R HPRE 4030-R R R R R R R HPRE2000T / 4000T (Taper Radius) ØD Tolerance R Tolerance Ø0.6~Ø6 0 ~ ±0.005 Ø7~Ø16 0 ~ ±0.010 Designation ØD Ød L r HPRE 2020-R0.5-T R0.5-T HPRE 4020-R0.5-T R0.5-T R0.5-T R0.5-T R0.5-T R0.5-T R1.0-T R1.0-T R2.0-T R2.0-T R2.0-T R2.0-T R2.0-T R2.0-T R2.0-T R2.0-T
13 Technical Information for H Endmill Endmill series for high speed machining for high hardened steel H Endmill or cutting high hardened and heat-treated steel under HRC70 New coating technology improves wear resistance A new shape improves machinability High speed and highly accurate machining available eatures before After special edge treatment Improved stability New grade(pc303s, PC310U) - Ultra fine substrate and AlTiSiN coating guarantee excellent wear resistance Special edge treatment - Special cutting edge design was applied for less chipping and longer tool life High accuracy with tolerance-h5 - High quality production system enables tolerance-h5 throughout the whole series. PBE Series (Ball) PRE Series (Radius) Cutting load is dispersed High precision S shape of ball The S shape of ball disperses cutting loads The tolerance of ball R is under ±0.005mm H Endmill radius New shape of corner R The new shape of corner R reduces cutting loads The tolerance of corner R is under ±0.005mm Measurement result of tolerance of corner R Workpiece RC60 Cutting conditions -1 Tools PRE R05 Special cutting edge design reduces cutting loads and prolongs tool life. Cutting 80 forces(n) H Endmill Competitor A Competitor B Cutting time(s) Reduced cutting loads 12
14 Recommended cutting conditions(pre4000 Radius) Workpiece Conditions Diameter(Ø) Pre hardened steel (HRC35~45) eed Technical Information for H Endmill Hardened steel (HRC45~55) eed High hardened steel (HRC55~70) eed 3 17,300 1,250 11, , ,200 1,300 8, , ,500 1,500 8,300 1,000 5, ,350 1,400 6, , ,800 1,350 5, , ,150 1,260 4, , ,250 1,260 3, , Application tip Shouldering depth(ap) and radial depth(ae) reduce and feed rate by the same ratio Recommended cutting conditions(pre4000 Radius) Workpiece Conditions Diameter(Ø) Pre hardened steel (HRC35~45) eed Hardened steel (HRC45~55) eed High hardened steel (HRC55~70) eed 3 17, , , , , , , , , , , , , , , , , , , , , Application tip Slotting depth(ap) reduce and feed rate by the same ratio Cutting condition by overhang Cutting conditions of the shank taper type in case of being clamped at neck. In case of the straight type adjust conditions according to the overhang. Notice Use cutting fluid that is proper to the workpiece and produces few temperature reaction. 13
15 Technical Information for H Endmill Recommended cutting conditions (PBE2000 Ball) Workpiece Conditions Diameter(Ø) Pre hardened steel (HRC35~45) Hardened steel (HRC45~55) High hardened Steel (HRC55~HRC70) eed eed eed ,000 1,470 31,500 1,330 28,000 1, ,000 2,940 31,500 2,660 28,000 2, ,600 3,010 30,100 2,695 26,600 2, ,600 3,150 30,100 2,800 25,900 2, ,460 3,360 28,000 2,800 24,500 2, ,900 3,710 22,400 2,800 17,500 2, ,260 3,710 18,550 2,800 16,500 2, ,730 3,710 14,000 2,800 13,000 2, ,800 4,900 15,000 3,750 12,500 2, ,400 4,100 11,000 3,100 10,000 2, ,700 3,500 9,000 2,700 8,000 2, ,900 3,100 7,500 2,400 6,600 1, ,680 2,500 5,600 1,900 5,000 1,550 Application tip and feed rate by the same ratio Cutting condition by overhang Cutting conditions of the shank taper type in case of being clamped at neck. In case of the straight type adjust conditions according to the overhang. Notice Use cutting fluid that is proper to the workpiece and produces few temperature reaction. Cutting speed formulas (Ball ) -1 ) ) Deff n1000 Cutting speed formulas (Ball, Slope angle = 0 ) : Slope angle Slope angle Slope angle Slope angle Slope angle Slope angle Ex) Diameter -1 ) Slope angle 0 Slope angle 15 : 14
16 H Endmill PBE2000 (Ball) h5 shank ØD Tolerance ~ Ø ~ Ø6.0 ~ 0.00 ~ Designation R ØD Ød L PBE PBE PBE PBE PBE PBE PBE PBE PBE PBE PBE PBE PBE PBE
17 H Endmill PRE4000 (Radius) h5 shank ØD Tolerance ~ Ø ~ Ø6.0 ~ 0.00 ~ Designation ØD Ød L r PRE PRE R PRE R PRE R PRE R PRE R PRE R PRE R PRE R PRE R PRE R PRE R PRE R PRE R PRE R PRE R PRE R PRE R PRE R PRE R PRE R PRE R PRE R PRE R
18 Improved productivity with effective machining due to less vibration V Endmill Variable Endmill Technical Information for V Endmill Irregular helix angle Irregular indexing angle Irregular flute spacing : Decreased vibration Performance(Vibration test) [ V Endmill ] [ Conventional ] N 3000 N 3000 Vibration section x y z Time(S) x y z Time(S) Workpiece Alloy steel Cutting condition -1 Tools V Endmill VE Conventional endmill Advantage of V Endmill Type Cutting speed(vc) eed(vf) Vibration Quality V Endmill 30% up 30% up Minimize Excellent Higher cutting speed and feed rate increase productivity. Less vibration realizes excellent surface finish and higher quality machining. Performance(Surface finish) Cutting length(m) Edge Broken Surface finish V Endmill Competitor A Competitor B Conventional V Endmill Irregular flute spacing endmill Irregular flute spacing endmill Workpiece Stainless steel Cutting condition -1 Tools VE Machining example Tool Life(ea) 80ea expected 36ea V Endmill(VE4080) 36ea Broken Conventional endmil V Endmill Workpiece Alloy steel Cutting condition Tools VE
19 Technical Information for V Endmill Cutting condition Shouldering Diameter Alloy & Carbon steel, HRC25 or less(sm, SCM) Mold steel, HRC35~45(STS, KP4M) (ØD) (min -1 ) eed(mm/min) ap ae (min -1 ) eed(mm/min) ap ae ,915 1, ,263 1, , ,368 1, , ,947 1, , ,958 1, , ,631 1, , ,684 1, , ,974 1, , ,421 1, , ,979 1, , ,316 1, , ,842 1, , ,487 1, , Application tip Cutting condition by overhang 1. Standard overhang : ollow cutting condition above. Slotting Diameter Alloy & Carbon steel, HRC25 or less(sm, SCM) Mold steel, HRC35~45(STS, KP4M) (ØD) (min -1 ) eed(mm/min) ap (min -1 ) eed(mm/min) ap , , ,263 1, , ,268 1, , ,947 1, , ,958 1, , ,631 1, , ,687 1, , ,974 1, , ,421 1, , ,979 1, , ,316 1, , ,842 1, , ,487 1, , Application tip Cutting condition by overhang 1. Standard overhang : ollow cutting condition above. 18
20 V Endmill VE4000 (lat) A B ØD Tolerance Ø3~Ø ~ Ø10~Ø ~ Designation ØD Ød d1 L Type VE B B B B B A B A B A A A A 19
21 Technical Information for Z Endmill Endmill series for general cutting Z Endmill Endmill for general cutting of various workpieces under HRC45 (carbon steel, alloy steel, cast iron, pre hardened steel, etc.) New shape and coating improves performance and tool life Optimized blade design for less chipping and stable machining eatures before After special edge treatment Improved stability New grade(pc315e) - ine substrate and lubricative coating guarantee excellent performance at high speed and high temperature. Special edge treatment - Special cutting edge design was applied for less chipping and longer tool life High accuracy with tolerance-h5 - High quality production system enables tolerance-h5 throughout the whole series. ZE Series (lat) ZBE Series (Ball) Cutting load is dispersed and improve surface S shape of ball The S shape of ball disperses cutting loads The tolerance of ball R is under ±0.005mm 20
22 Technical Information for Z Endmill Cutting performance Carbon steel [1045(AISI) / C45(DIN) / S45C(JIS), HRC20) ] Cutting conditions n(min -1 Cutting length (m) Result 125m 105m 1.2 times increased Edge in good shape dry Z Endmill Competitor Z Endmill Competitor Tools ZE Carbon steel [ 1045(AISI) / C45(DIN) / S45C(JIS), HRC20) ] Cutting conditions n(min -1 Cutting length (m) Result 70m 50m 1.3 times increased Excellent wear resistance dry Z Endmill Competitor Z Endmill Competitor Tools ZBE Recommended cutting conditions (ZE2000 / ZSE2000 lat) Workpiece Condition Diameter(Ø) Alloy steel and carbon steel (under HRC30) eed Pre hardened steel (HRC30~45) eed Stainless steel eed 1 19, , , , , , , , , , , , , , , , , , , , , , , , , , , , , , Application tip Slotting depth(ap) Ø3 (ap 0.5D) reduce and feed rate by the same ratio 21
23 Technical Information for Z Endmill Recommended cutting conditions (ZE4000 / ZSE4000 lat) Workpiece Condition Diameter(Ø) Alloy steel and carbon steel (under HRC30) eed Pre hardened steel (HRC30~45) eed Stainless steel eed 2 11, , , , , , , , , , , , , , , , , , , , , , , , , , , Application tip Shouldering depth(ap) and radial depth(ae) reduce and feed rate by the same ratio Recommended cutting conditions (ZBE2000 Ball) Workpiece Condition Diameter(Ø) Alloy steel and carbon steel (under HRC30) eed Pre hardened steel (HRC30~45) eed 1 30,000 2,880 30,000 2, ,000 3,060 28,800 2, ,000 3,240 28,800 2, ,820 3,420 28,680 2, ,860 3,600 19,080 3, ,940 3,600 14,340 3, ,160 3,480 10,680 2, ,340 2,910 8,040 2, ,660 2,520 6,420 2, ,580 2,220 5,340 1, ,170 1,770 4,008 1,500 Application tip reduce and feed rate by the same ratio Cutting condition by overhang Cutting conditions of the shank taper type in case of being clamped at neck. In case of the straight type adjust conditions according to the overhang. Notice Use cutting fluid that is proper to the workpiece and produces few temperature reaction. 22
24 Z Endmill ZE2000 (lat) h5 shank ØD Tolerance ~ Ø ~ Ø6.0 ~ 0.00 ~ Designation ØD Ød L ZE ZE S ZE S ZE S ZE S ZE S ZE S ZE S ZE S ZE S ZE S ZE S ZE S ZE ZE S ZE S ZE ZE ZE ZE ZE ZE ZE ZE ZE ZE ZE ZE ZE ZE ZE
25 Z Endmill ZE4000 (lat) h5 shank ØD Tolerance ~ Ø ~ Ø6.0 ~ 0.00 ~ Designation ØD Ød L ZE ZE S ZE S ZE S ZE S ZE S ZE S ZE S ZE S ZE S ZE S ZE S ZE S ZE ZE S ZE S ZE ZE ZE ZE ZE ZE ZE ZE ZE ZE ZE ZE ZE ZE ZE
26 Z Endmill ZSE2000 / 4000 (Short lat) h5 shank ØD Tolerance ~ Ø ~ Ø6.0 ~ 0.00 ~ Designation ØD Ød L ZSE ZSE S ZSE S ZSE S ZSE S ZSE S ZSE S ZSE S ZSE S ZSE S ZSE S ZSE S ZSE S ZSE S ZSE S ZSE ZSE ZSE ZSE ZSE ZSE S ZSE S ZSE S ZSE S ZSE S ZSE S ZSE S ZSE S ZSE S ZSE S ZSE S ZSE S ZSE S ZSE S ZSE ZSE ZSE ZSE
27 Z Endmill ZBE2000 (Ball) h5 shank ØD Tolerance ~ Ø ~ Ø6.0 ~ 0.00 ~ Designation R ØD Ød L ZBE ZBE S ZBE S ZBE S ZBE S ZBE S ZBE S ZBE S ZBE S ZBE S ZBE S ZBE S ZBE S ZBE ZBE S ZBE S ZBE ZBE ZBE ZBE ZBE ZBE ZBE ZBE ZBE ZBE ZBE
28 Stable performance guaranteed for workpiece which is under HRC45 I + Endmill - Stable performance guaranteed for workpiece which is under 45 HRC Saving cost by higher productivity Technical Information for I + Endmill Micrograin carbide PC320 Product line-up Application area Hardness(HRC) H-Max V Endmill + Endmill 20 H Hardened steel S Heat resistant ally, Titanium alloy P M K N Steel Stainless steel Cast iron Non-ferrous metal Workpiece Comparison Processing length(m) Endmill Competitor A Competitor B + Endmill Competitor A Competitor B : SM45C -1 : IPBE
29 Technical Information for I + Endmill Recommended Cutting Condition (lat) IPE2000 Diameter (ØD) Carbon steel, Alloy steel ~ HRC30 (SM50C, SCM, GC250, Cast iron) Alloy steel, High speed steel HRC30~45 (Pre hardened steels, STD61, NAK) Stainless steel (STS304, STS316) eed (mm/min) eed (mm/min) eed (mm/min) (min -1 ) Shouldering Slotting (min -1 ) Shouldering Slotting (min -1 ) Shouldering Slotting , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , Application tip Shouldering depth (ap) and radial depth (ae) Slotting depth(ap) IPE4000 Diameter (ØD) Carbon steel, Alloy steel ~ HRC30 (SM50C, SCM, GC250, Cast iron) Alloy steel, High speed steel HRC30~45 (Pre hardened steels, STD61, NAK) Stainless steel (STS304, STS316) eed (mm/min) eed (mm/min) eed (mm/min) (min -1 ) Shouldering Slotting (min -1 ) Shouldering Slotting (min -1 ) Shouldering Slotting , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , Application tip Shouldering depth (ap) and radial depth (ae) Slotting depth(ap) 28
30 Technical Information for I + Endmill Recommended Cutting Condition (Ball) IPBE2000 Diameter (ØD) (min -1 ) Carbon steel (SM50C) eed (mm/min) Alloy steel (SCM, STD, STS, KP4M, NAK) (min -1 ) eed (mm/min) Mold steel ~HRC45 ( STD61 ) (min -1 ) eed (mm/min) Non-ferrous metal (Aluminum) (min -1 ) eed (mm/min) ,000 1,200 38,000 1,200 29, ,000 1, ,000 1,270 25,500 1,100 19, ,000 1, ,000 1,160 19, , ,000 2, ,000 1,000 15, , ,000 2, , , , ,000 2, , , , ,300 2, , , , ,000 2, , , , ,000 2, , , , ,000 2, , , , ,000 2, , , , ,600 2, , , , ,000 2, , , , ,800 2, , , , ,000 2, , , , ,800 2,000 Application tip Slotting depth(ap) RC) 0.08 R(~50HRC) 0.3 R Shouldering depth (ap) and radial depth (ae) RC) RC) RC) ~0.05 R (~50HRC) Recommended Cutting Condition (Radius) IPRE2000 Diameter (ØD) Carbon steel, Alloy steel ~ HRC30 (SM50C, SCM, GC250, Cast iron) Alloy steel, High speed steel HRC30~45 (Pre hardened steels, STD61, NAK) Stainless steel (STS304, STS316) eed (mm/min) eed (mm/min) eed (mm/min) (min -1 ) Shouldering Slotting (min -1 ) Shouldering Slotting (min -1 ) Shouldering Slotting , , , , , , , , , , , , , , , , , , , , , , , , Application tip Shouldering depth (ap) and radial depth (ae) Slotting depth(ap) 29
31 I + Endmill IPE2000(Standard ard lat) h6 shank ØD Tolerance Ø1~Ø ~ Ø12.1~Ø ~ Designation ØD Ød L IPE S S S S S S S S S S S S
32 I + Endmill IPLE2000 (Long lat) h6 shank ØD Tolerance Ø1~Ø ~ Ø12.1~Ø ~ Long Shank Type Designation ØD Ød L IPLE Long lute Type Designation ØD Ød L IPLE V7S V9S V12S V12S V15S V15S V20S V20S V25S V25S V30S V30S V40S V40S V40S V40S V50S V50S V60S V90S
33 I + Endmill IPE4000 (Standard lat) h6 shank ØD Tolerance Ø1~Ø ~ Ø12.1~Ø ~ Designation ØD Ød L IPE S S S S S S S S S S S S
34 I + Endmill IPLE4000 (Long lat) h6 shank ØD Tolerance Ø1~Ø ~ Ø12.1~Ø ~ Long Shank Type Designation ØD Ød L IPLE Long lute Type Designation ØD Ød L IPLE V6S V9S V12S V12S V15S V15S V20S V20S V25S V25S V30S V30S V40S V40S V40S V40S V50S V50S V60S V90S
35 I + Endmill IPBE2000 (Standard Ball) h6 shank ØD Tolerance Ø1~Ø ~ Ø12.1~Ø ~ Designation R ØD Ød L IPBE S S S S S S S S S S S S
36 I + Endmill IPLBE2000 (Long Ball) h6 shank ØD Tolerance Ø1~Ø ~ Ø12.1~Ø ~ Designation R ØD Ød L IPLBE
37 I + Endmill IPBE4000 (Standard ard Ball) h6 shank ØD Tolerance Ø1~Ø ~ Ø12.1~Ø ~ Designation R ØD Ød L IPBE S S S S S S S S
38 I + Endmill IPRE2000 (Standard ar Radius) h6 shank ØD Tolerance Ø1~Ø ~ Designation ØD Ød L r IPRE R R R R R R R R R R02-S R03-S R05-S R10-S R R R R R R R R R R R R R R R R R R R
39 I + Endmill IPRE2000 (Standard ar Radius) h6 shank ØD Tolerance Ø1~Ø ~ Designation ØD Ød L r IPRE R R R R R R R R R R R R R R R R R R R R R
40 I + Endmill IPLRE2000 (Long Radius) h6 shank ØD Tolerance Ø3~Ø ~ Designation ØD Ød L r IPLRE R R R R R R R R R R R R R R R R R R R R R R R R R R R R R R R R R
41 I + Endmill IPRE4000 (Standard Radius) h6 shank ØD Tolerance Ø2~Ø ~ Designation ØD Ød L r IPRE R R R R R02-S R03-S R05-S R10-S R R R R R R R R R R R R R R R R R R R R R R R R R R R R R R R R R R R R R R R R
42 I + Endmill IPLRE4000 (Long Radius) h6 shank ØD Tolerance Ø3~Ø ~ Designation ØD Ød L r IPLRE R R R R R R R R R R R R R R R R R R R R R R R R R R R R R R R R R
43 Technical Information for Endmill High efficiency and high feed in machining Endmill eed-up Endmill eature High feed machining possible by dispersing cutting forces Application by workpiece HPM1, KP4M STD11, STD61 NAK55, NAK80 Stavax Productivity example Productivity comparison Productivity 2.8 times up Time(h) -Endmill (High feed) Radius endmill lat endmill Type -Endmill (High feed) Radius Endmill lat Endmill Speed (vc) eed (fz) Higher productivity by feed increase. ap D.O.C 2.8 times ae Machining volume (mm 3 /min) , , ,000 Programing information Ramping Helical ramping CAM program information Ramping angle eed 100% 80% 60% 50% Diameter (ØD) Min. diameter ØDc : eed(tool center) ØDh : Machining area Max. diameter Diameter(ØD) Endmill-R CAM-Radius Un-cut part
44 Technical Information for Endmill Machining example Tool Life(min) 70 min. operation Broken Endmill Competitor's high feed endmill Workpiece STD61+SKT4(HRC 45~50) Cutting condition -1 Tools ME R12 Cutting condition Cusp height by radial depth of cut Diameter Radial depth ae (ØD) 0.1XD 0.2XD 0.3XD 0.4XD 0.5XD 0.6XD Medium cut Diameter (ØD) Mold steel HRC35~45(HPM1, KP4M) Mold steel HRC45~55(NAK55, NAK80, STAVAX) Heat treated HRC55(SKD11, STD61) RPM eed (mm/min) ap ae RPM eed (mm/min) ap ae RPM eed (mm/min) ap 6 11, , , , , , ,200 7,570 3, , , , , , , ae Roughing cut Diameter (ØD) Mold steel HRC35~45(HPM1, KP4M) Mold steel HRC45~55(NAK55, NAK80, STAVAX) Heat treated HRC55(SKD11, STD61) RPM eed (mm/min) ap ae RPM eed (mm/min) ap Cutting condition by overhang 1. Standard overhang : ollow cutting conditions above. ae RPM eed (mm/min) ap 6 8, , , , , , ,167 6,112 2, , , , , , , ae 43
45 Endmill ME4000 (Standard) ØD Tolerance Ø6~Ø ~ Designation R ØD Ød L Max. ap CAM-Radius ME R R R R MLE4000 (Long) ØD Tolerance Ø6~Ø ~ Designation R ØD Ød L Max. ap CAM-Radius MLE R R R R
46 Ideal Endmill for ultra precision geometry machining Micro Enhanced rigidity of neck eliminates braking of the tool It is ideal for ultra precision geometry machining Slotting, Die-sinking, Profiling, Miniature, inishing Technical Information for Micro Endmill Notice Micro Code System MS E S Solid Endmill Type No. of edge Diameter Shank diameter Micro Solid E : lat BE : Ball 2 Edges Ø0.4 S : Ø3.0mm No code : Ø4.0mm (Diameter Ø2, Ø3) Ø6.0mm (Others) Product shape MSBE MSE Ball ended lat ended Recommended Cutting Condition - MSE2000 Workpiece Condition Diameter(Ø) Carbon steel, Alloy steel, Cast iron HRC45 ~ SM50C,SCM,STD eed Radial depth ae Alloy steel, High speed steel HRC45~55 STD61,STAVAX eed Radial depth ae , , , , , , ,000 1, ,000 1, ,000 1, ,000 1, ,000 1, ,000 1, ,000 1, ,000 1, Application tip reduce feed rate 40~60% 45
47 Micro Endmill MSE2000 (lat) ØD Tolerance Ø0.2~Ø1.0 0 ~ Designation ØD Ød L MSE S S S S S S S MSBE2000 (Ball) ØD Tolerance Ø0.2~Ø1.0 0 ~ Designation R ØD Ød L MSBE S S S S S S S Special endmills order - MSE : MSE20 l-l EX.1) Diameter : 0.45, l : 1.2, L : 50 MSE L Ex.2) Ball R0.225(Ø0.45), l : 1.2, L : 55 MSBE L The diameter should be smaller than Ø1.0 for MSE, MSBE. In case of above Ø1.0, please refer to SSE-Q and SSBE-Q. 46
48 Technical Information for Solid Endmill for Hard-to-cut material Optimal design for stainless steel machining Solid for Hard-to-cut material High rake angle and curvilinear designed pocket for improved chip evacuation. Special edge for work hardening Optimized for stainless steel machining (Stainless steel, Titanium alloy, Inconel, Steel, Alloy steel ) Multi applications (Shouldering, Slotting, Ramping) for Hard-to-cut materials Code System I S E Coating lat solid Endmill No. of edges Diameter Tool length 3 Edge Ø3.0 45mm Product shape (Good hardness with toughness) (Good wear resistance) Trouble shooting for Stainless steel machining Stainless steel machining Work hardening Stainless steel machining Trouble shooting 47
49 Technical Information for Solid Endmill for Hard-to-cut material Comparison Stainless steel to Carbon steel Classifications KS grade Tensile strength (kgf/mm 2 ) Thermal expansion coefficient (10-6 /) Thermal expansion Rate (10-2 cal/cm.s.) Magnetic Annealing hardening Hardness (HB) Machine Ability rate (%) Carbon steel SS34 SS41 SM10C SM15C 38~ ~180 50~70 Stainless steel Martensite series errite series Austenite series STS403 STS410 STS431 STS405 STS430 STS301 STS304 STS316 ~55 9.9~ ~60 50~ ~60 55~ ~ ~45 Recommended Cutting Condition Workpiece Condition Diameter(Ø) Stalnless steel STS eed Titanium alloy / Inconel eed Normal steel (SS, SM) (Under HRC25) eed Alloy steel (SCM) (HRC25~35) eed Hardened steel (STD) (HRC40~50) eed 2 5, , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , Application tip Shouldering depth (ap) and radial depth (ae) Slotting depth(ap) 48
50 Solid Endmill for Hard-to-cut material ISE3000 (lat) ØD Tolerance Ø1 ~Ø ~ Ø7 ~ Ø ~ Ø11 ~Ø ~ Designation ØD Ød L ISE ISE3 -L-l(V00) Ex.1) 3 flutes, diamater : 6.3.l : 17, L : 60 - ISE V17 49
51 Technical Information for S + Endmill Stainless Endmill Series S + Endmill Strong cutting edge ensures long tool life. Special coating with high oxidation resistance High rake angle and curvilinear chip pocket allow chip evacuation. Special cutting edge prevents hardening of tools. Optimal machinability in stainless steel machining Available for steel, alloy steel and hardening steel machiningng Available for multiple operations (Shouldering, slotting and ramping etc.) Application area Hardness(HRC) H-Max S + Endmill V Endmill I + Endmill A + Endmill H Hardened steel S Heat resistant ally, Titanium alloy P M K N Steel Stainless steel Cast iron Non-ferrous metal Workpiece Comparison Processing length(m) S + Endmill Competitor A Competitor B S + Endmill Competitor A Competitor B : STS304-1 : SPE
52 Technical Information for S + Endmill Recommend Cutting Conditions Workpiece Condition Diameter(Ø) Stainless steel STS eed Titanium alloy / Inconel eed Normal steel(ss, SM) (Under HRC 25) eed Alloy steel(scm) (HRC 25~35) eed Hardened steel(std) (HRC 40~50) eed 2 5, , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , Application tip Shouldering depth (ap) and radial depth (ae) Slotting depth(ap) Stainless steel machining Trouble shooting for stainless steel 51
53 S + Endmill SPE4000 (Standard lat) h6 shank ØD Tolerance Ø1~Ø ~ Designation ØD Ød L SPE S S SPLE4000 (Long lat) h6 shank ØD Tolerance Ø1~Ø ~ Designation ØD Ød L SPLE S S
54 Good chip evacuation Technical Information for Solid Endmill for Aluminum Solid for Aluminum Minimum cutting load and built-up edge Good surface finish DLC coating - Higher hardeness(hv ), longer tool life comparing uncoated endmill - Excellent lubrication by low friction co-efficient (u<0.1) - Good chip evacuation Superior in Aluminum, Aluminum alloys, Copper and Copper alloys for Aluminum Code System SSE A Solid endmill Application No. of edges Diameter or Aluminum 2 : 2 Edge Ø1.0 3 : 3 Edge Recommended Cutting Condition (SSEA2000) Workpiece Condition Diameter(Ø) Aluminum alloy (A7075) eed Shouldering Aluminum alloy (cast) (AC4B) eed Aluminum alloy (A7075) eed Slotting Aluminum alloy (cast) (AC4B) eed 1 40, , , , , , , , ,000 1,120 25, , , ,000 1,200 19, , , ,000 1,280 15, , , ,000 1,520 13, , , ,000 1,520 9, , , ,500 1,520 7, , , ,000 1,520 6, , , ,000 1,520 4, , , ,800 1,200 3, , , Application tip Shouldering depth (ap) and radial depth (ae) Slotting depth(ap) Copper & Aluminum machining 1. Built-up edge 2. Low heat resistance could create unnessary stress or accuracy problem after machining 3. Scratch due to low hardness 4. Low tool life due to flank wear Trouble shooting for Copper & Aluminum machining 1. Use a higher rake, sharp edge, oil (MQL) mist to decrease cutting load and built-up edge 2. Increase Vc and reduce the depth of cut for a better surface finish 53
55 Solid Endmill for Aluminum SSEA2000 / 3000 (lat) ig. 1 ig. 2 ØD Tolerance Ø1 ~Ø ~ Ø7 ~ Ø ~ Ø11 ~Ø ~ Designation ØD Ød L ig. SSEA SSEA Special endmills order : SSEA l-l Ex.1) 3 flutes, diameter : 6.3.l:17, L : 60 SSEA L Ex.2) 3 flutes, diameter : 6.3.standard type SSEA
56 Solid Endmill for Aluminum SSBEA2000 (Ball) ØD Tolerance All 0 ~ Designation R ØD Ød L SSBEA Special endmills order : SSBEA2 l-l Ex.1) 2 flutes, diameter : 6.3.l :17, L : 60 SSBEA L Ex.2) 2 flutes, diameter : 6.3.standard type SSBEA Applying higher cutting speed and shallower depth, able to make surface finishing and productivity improved 55
57 Technical Information for A + Endmill Aluminum Endmill Series A + Endmill Exclusive U shaped flute - Excellent chip evacuation even in high feed machining - U shaped and buffed flute reduces built-up-edge. Double relief angle - High rigidity of cutting edge ensures high productivity. Sharp cutting edge - or both roughing and finishing (Shouldering, slotting and ramping etc.) Application area Hardness(HRC) H-Max 40 S + Endmill V Endmill I + Endmill A + Endmill H Hardened steel S Heat resistant ally, Titanium alloy P M K N Steel Stainless steel Cast iron Non-ferrous metal Workpiece Comparison Processing length(m) 1, A + EndmillCompetitor A Competitor B A + Endmill Competitor A Competitor B : A : APE
58 Technical Information for A + Endmill Recommend Cutting Conditions Workpiece Condition Diameter(Ø) Application tip Aluminum alloy (A7075) eed Shouldering Aluminum alloy (cast) (AC4B) eed Aluminum alloy (A7075) eed Slotting Aluminum alloy (cast) (AC4B) eed 1 40, , , , , , , , ,000 1,120 25, , , ,000 1,200 19, , , ,000 1,280 15, , , ,000 1,520 13, , , ,000 1,520 9, , , ,500 1,520 7, , , ,000 1,520 6, , , ,000 1,520 4, , , ,800 1,200 3, , , Shouldering depth (ap) and radial depth (ae) Slotting depth(ap) Clamp the workpiece rigidly. In case of vibration, reduce RPM and feed rate by the same ratio. Aluminum machining Trouble shooting for Aluminum machining cutting load and built-up edge. 57
59 A + Endmill APE2000 / 3000 (lat) Standard ig. 1 ig. 2 h6 shank ØD Tolerance Ø1~Ø ~ Ø12.1~Ø ~ Designation ØD Ød L ig. APE APE
60 A + Endmill APLE2000 / 3000 (Long lat) ig. 1 ig. 2 h6 shank ØD Tolerance Ø1~Ø ~ Ø12.1~Ø ~ Designation ØD Ød L ig. APLE APLE
61 A + Endmill APBE2000 (Ball) Standard 25 h6 shank ØD Tolerance Ø1~Ø ~ Designation ØD Ød L APBE APRE3000 (Roughing) h6 shank ØD Tolerance Ø1~Ø ~ Designation ØD Ød L APRE
62 Long tool life and good surface roughness for electrode machining C-Max (Copper) due to the K-Silver coating layer and optimal substrate Optimal for copper and nonferrous metal machining Long tool life and good surface roughness for electrode machining Technical Information for C-Max Optimal cutting edge for copper and nonferrous metals machining PC210C (Copper) Coating layer(k-silver) : Enhancing wear resistance and lubrication Good quality due to high precision cutting edge : Optimal for wear and chipping resistance Machining example Workpiece : Cu Cutting condition Designation : CRE R10 CRE Competitor A Competitor B (%) Tool life 120% up CRE Competitor A Competitor B Recommended Cutting Condition Workpiece Condition Diameter(Ø) Application tip CBE/CBNE CE/CNE CRE/CRNE Copper Alloys eed eed eed ,000 2,600 40,000 1, ,000 2,800 40,000 2,000 40,000 2, ,000 3,200 40,000 2,400 30,000 2, ,000 3,600 30,000 1,800 30,000 1, ,000 4,000 23,000 1,380 20,000 1, ,000 3,200 15, , ,000 2,500 12, , ,000 2,100 10, , ,000 1,600 8, , ,000 1,300 6, , , , , If vibration occurs, please reduce and feed rate at the same rate 61
63 C-Max (Copper) CE2000 (lat) ØD Tolerance Ø0.5~Ø6 0 ~ 0.01 Ø8~Ø12 0 ~ 0.02 Designation ØD Ød L CE CNE2000 (Long Neck lat) ØD Tolerance Ø0.5~Ø6 0 ~ 0.01 Ø8~Ø12 0 ~ 0.02 Designation ØD Ød L CNE N N N N N N N N N N N N N N N N N N N N N N N
64 C-Max (Copper) CBE2000 (Ball) ØD Tolerance R Tolerance Ø0.5~Ø6 0 ~ 0.01 ±0.005 Ø8~Ø12 0 ~ 0.02 ±0.005 Designation R ØD Ød L CBE CBNE2000 (Long Neck Ball) ØD Tolerance Ø0.5~Ø6 0 ~ 0.01 Ø8~Ø12 0 ~ 0.02 Designation R ØD Ød L CBNE N N N N N N N N N N N N N N N N N N N N N N N N
65 C-Max (Copper) CRE2000 (Radius) ØD Tolerance R Tolerance Ø0.5~Ø6 0 ~ 0.01 ±0.005 Ø8~Ø12 0 ~ 0.02 ±0.005 Designation r ØD Ød L CRE R R R R R R R R CRNE2000 (Long Neck Radius) ØD Tolerance R Tolerance Ø0.5~Ø6 0 ~ 0.01 ±0.005 Ø8~Ø12 0 ~ 0.02 ±0.005 Designation r ØD Ød L CRNE R02N R02N R02N R02N R02N R02N R02N R02N R05N R05N R05N R05N R05N R05N R05N R05N R05N R05N R05N
66 Technical Information for D-Max D-Max Unique diamond coating technology Good surface roughness through improved endmill geometry and ultra fine substrate 10~20 times longer tool life than uncoated carbide endmill Coating and Endmill geometry Good sharpness due to high rake angle X3000 Optimal coating layer and geometry for graphite machining ND3000 Coated Machining example Workpiece: graphite Cutting condition : n -1 ) vfapae Wear Detail Wear D-Max (%) 130 Tool life 130% up 100 Competitor 0 D-Max Competitor 65
67 Technical Information for D-Max Recommended Cutting Condition (DE2000 lat) Workpiece Condition Diameter(Ø) Graphite Aluminum alloys Copper alloys eed eed eed 3 21,000 1,280 21, , ,000 1,180 16, , ,500 1,180 10, , ,000 1,080 8, , Recommended Cutting Condition (DBE2000 Ball) Workpiece Condition Diameter(Ø) Graphite Aluminum alloys Copper alloys eed eed eed 4 15,000 1,900 15,900 1,550 11,900 1, ,000 1,900 10,500 1,550 7,950 1, ,900 1,900 7,950 1,550 5,950 1,150 Recommended Cutting Condition (DRE2000 Radius) Workpiece Condition Diameter(Ø) Graphite Aluminum alloys Copper alloys eed eed eed 4 13,990 1,180 15, , ,900 1,180 10, , ,000 1,080 7, , Application tip Graphite Aluminum alloys Copper alloys Graphite Aluminum alloys Copper alloys Graphite Aluminum alloys Copper alloys 66
68 D-Max DBE2000 (Ball) Designation R ØD Ød L DBE DE2000 (lat) Designation ØD Ød L DE DRE2000 (Radius) Designation r ØD Ød L DRE R R R
69 Technical Information for PCD Endmill Longer tool life and good surface finishes PCD Longer tool life and good surface roughness Reducing burrs at nonferrous metals machining 1000 series : Ultra finishing for nonferrous metals 2000 series : Optimal for aluminum alloy, carbon steel, graphite and reinforced Plastic machining PCD Endmill Code System PDE Endmill PDE : PCD Endmill No. of lute Diameter 2 lutes Ø8.0 Recommended Cutting Condition Work piece vc(m/min) fz(mm/t) Aluminum Alloy, Copper 30~300 2,000~12, ~0.07 Reinforced Plastic 35~300 2,800~16, ~0.12 Carbon steel, Graphite 10~100 5,300~16, ~0.2 Special Endmill Order orm ig.1 ig.2 Designation ig. No. of lute Dimension ØD Ød r a L PDES Depending on customer requests, we can make special Endmill 68
70 PCD Endmill PDE1000 / 2000 (lat) Designation ØD Ød L PDE
71 Technical Information for Brazed Endmill High precision machining with our high stiffness design Brazed Possible to machine with high precision due to high stiffness design High speed cutting by increasing wear resistance, decreasing frictional resistance through PVD coating and substrate Long tool life due to absorbing impact through brazed body in heavy interruption General steel, Alloy steel, mild steel, dice steel, stainless steel, cast iron, ductile cast iron ZSEA: Aluminum, Aluminum alloy, Cooper, Cooper alloy, Non-ferrous materials Coating brazed endmills (special) Guaranteed long tool life due to high new-concept hardness and oxidation resistant coating PC221 Coating Top layer Main layer Improvement of hardness and oxidation resistance Improvement of adhesion and chipping resistance Ultra fine substrate New PVD films New hardness and oxidation resistance coating Brazed Code System Z S E 2 14 S Brazed Spiral Endmill No. of lutes E : lat (Steel) EA : lat (Al, Cu) EL : lat Long (Steel) EXL : lat Long (Steel) BE : Ball (Steel) 2 : 2 lutes 3 : 3 lutes Diameter Shank Dia. Ø14 S : Ø42.0 Q : Coated SQ : Ø42.0 Coated Standard Shank Diameter : none Wear resistance test (W.P:STD61) Carbide ZSE Double tool life Coated ZSE(PC221) Workpiece Condition Diameter(Ø) Recommended Cutting Condition (ZSE200 lat) SM50C,SCM,GC (~HRC30) eed STD61,STD11 (HRC30~45) eed STD61 (HRC45~55) eed 20 1, , , Workpiece Condition Diameter(Ø) Recommended Cutting Condition (ZSE400 lat) SM50C,SCM,GC (~HRC30) eed STD61,STD11 (HRC30~45) eed STD61 (HRC45~55) eed 20 1, , , Application tip Side milling (under HRC45) Side milling (over HRC45) Above table based on side milling, when it enters to ae direction, you should apply reduced cutting condition 70
72 Brazed Endmill ZSE200 / 300 (lat) ØD Tolerance All 0 ~ Designation ØD Ød L ZSE (Q) (Q) (Q) (Q) S (Q) S S S S ZSE Special order : ZSE l-l Ex.1) 2 flutes, diameter : 6.3, l : 10, L : 60 ZSBE L Ex.2) 2 flutes, diameter : 6.3, standard type ZSE
73 Brazed Endmill ZSE300 / 400 / 600 (lat) ØD Tolerance All 0 ~ Designation ØD Ød L ZSE S S S S ZSE (Q) (Q) (Q) (Q) S (Q) S S S ZSE S S S S Special order : ZSE l-l Ex.1) 2 flutes, diameter : 6.3, l : 10, L : 60 ZSBE L Ex.2) 2 flutes, diameter : 6.3, standard type ZSE2063
74 Brazed Endmill ZSEA200 (lat) ØD Tolerance All 0 ~ Designation ØD Ød L ZSEA
75 Brazed Endmill ZSEL, ZSEXL (lat) ØD Tolerance All 0 ~ Designation ØD Ød L ZSEL ZSEL ZSEXL
76 Brazed Endmill ZSBE200 (Ball) ØD Tolerance All 0 ~ Designation R ØD Ød L ZSBE Q Q S S S S S S S S Special order : ZSBE2 l-l Ex 1) 2 flutes diameter : 6 3 l: 10 L: 60 ZSBE L Ex.2) 2 flutes, diameter : 6.3, standard type ZSBE2063 Special order : ZSEA2 l-l Ex.1) 2 flutes, diameter : 16.3, l:28, L:95 ZSEA L Ex.2) 2 flutes, diameter : 17.0, standard type ZSEA2170 Special orde r: ZSEL l-l 75
77 Special Endmill order form Designation lute R ØD Ød Ød1 L Designation lute R ØD Ød L Designation lute ØD Ød Ød1 r L Designation lute ØD r Ød L Designation lute ØD Ød Ød1 L 76
78 77
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