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Sandvik Coromant 690-044C4-1046H CoroMill™ 690 long edge square shoulder milling cutter
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Sandvik Coromant 690-040C6-1046H CoroMill™ 690 long edge square shoulder milling cutter
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R 19 357,95
inc. vat
Out of stock
SKU
5765064
CoroMill® 690 long edge square shoulder milling cutter
Reliable nationwide shipping
Delivery in 4 - 5 days
CoroMill® 690 long edge square shoulder milling cutter
CP - Coolant Pressure | 1000000Pa |
---|---|
DFC - Functional Diameter | 44mm |
DCON - Connection Diameter | 63mm |
KAP - Kappa (z-axis Rot) | 0deg |
LF - Functional Length | 95mm |
TQ - Torque | 3Nm |
RPMX - Rotational Speed Maximum | 50001/min |
WT - Weight Of Item | 1.543kg |
OAL - Overall Length | 133mm |
OHX - Maximum Overhang | 95mm |
KAPR - Tool Cutting Edge Angle | 90deg |
RMPX - Maximum Ramping Angle | 0deg |
GAMO - Orthogonal Rake Angle | -1deg |
LAMS - Inclination Angle | 7deg |
AN - Clearance Angle Major | 11deg |
IC - Inscribed Circle Diameter | 10mm |
Insert Thickness | 5.2mm |
LU - Usable Length | 55mm |
APMX - Depth Of Cut Maximum | 53mm |
W1 - Insert Width | 10mm |
DC - Cutting Diameter | 40mm |
DCF - Cutting Diameter Face Contact | 38.4mm |
GAMF - Radial Rake Angle | -0.99999972deg |
GAMP - Axial Rake Angle | 6.99999995deg |
AZ - Maximum Plunge Depth | 0mm |
ORDCODE | 690-040C6-1053H |
ADINTMS - Adaptive Interface Machine Direction | M_CCS01_C0630_1 |
CNSC - Coolant Entry Style Code | 3 |
CXSC - Coolant Exit Style Code | 8 |
BMC - Body Material Code | 1 |
CHANGEDATE | 2022-09-26 13:52:00.000 |
STDNO - Standard Number | ISO26623-1 |
MTP - Clamping Type Code | S |
CUTINT_MASTER - Part 2 Of Cutting Item Interface Identifiers | WCOR_MK1005P_1 |
Hand | R |
MIID - Master Insert Identification | 690-100508M-E-SL |
IFS - Insert Mounting Style Code | 3 |
SC - Insert Shape Code | S |
SSC - Insert Seat Size Code | 10P |
CICT - Cutting Item Count | 2 |
ZEFP - Peripheral Effective Cutting Edge Count | 2 |
DPC - Damping Property | False |
NROTF - Non Rotating Functionality | False |
RTOF - Rotating Functionality | True |
CPDF - Cutting Pitch Differential | False |
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