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TS2000 & TS2500
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Catalog excerpts

TS2000 & TS2500 - 1

NEW GRADES FOR TURNING HEAT RESISTANT ALLOYS

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TS2000 & TS2500 - 2

INSERTS THAT CUT FASTER, WORK HARDER AND LAST LONGER HEAT RESISTANT ALLOYS We fly more often and further away, we produce and consume more electricity every day, and we manufacture more and better products for healthcare ... Aerospace, Power Generation and Biomedical Engineering, growing industries with large potentials, depending on first class production in heat resistant materials like superalloys Turning heat resistant alloys is a difficult and demanding process which requires advanced technology cutting tools of the highest possible quality. To meet these challenges Seco has developed...

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TS2000 & TS2500 - 3

TING GIVES AN EXCELLENT ANCE AND OFFERS INCREASED PROVED RELIABILITY!

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TS2000 & TS2500 - 4

THE NEW GRADES TS2000 & TS2500 HAVE LANDED 4

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TS2000 & TS2500 - 5

NEW GRADES THAT KEEP YOUR PRODUCTION ON THE RIGHT TRACK for turning superalloys and titanium alloys. Thanks to a new edge preparation process, the grades have a better edge integrity and an improved adhesion between substrate and coating which also improves surface quality on machined parts and gives the insert a more consistent tool life. For TS2000 we have also developed a new unique PVD coating which gives an excellent wear resistance and offers improved reliability. The coating is thicker than present state of the art and reduces the risk of plastic deformation as well as crater wear...

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TS2000 & TS2500 - 6

THE NEW TURNING GRADES TS2000 & TS2500 GIVE YOU MORE POWER 6

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TS2000 & TS2500 - 7

NEW GRADES THAT BRING MORE STRENGTH AND SPEED TO TURNING AEROSPACE, POWER GENERATION AND BIOMEDICAL The new grades are designed for difficult to turn heat resistant alloys, which are widely used in aero- space, power generation industry and in chemical Thanks to the improved properties, such as edge integrity and adhesion of the coating, turning applications in these areas can be made with higher speeds resulting in more profitable production. FOR SUPERALLOYS AND TITANIUM ALLOYS Most superalloys are developed for applications demanding exceptional mechanical and chemical properties at...

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TS2000 & TS2500 - 9

NEW GRADES FOR A MORE FLEXIBLE INNOVATIVE TECHNOLOGY and productive high-quality turning grades for heat resistant superalloys and titanium alloys available on the market. Thanks to the improved properties, the new grades provide excellent possibilities to increase cutting data and tool life in a wide range of applica- tions and workpiece materials. They come in a range of insert styles that cover all turning applications from finishing to roughing, where long and predictable tool life and increased cutting data are of major importance. FULL RANGE SUPPLIER Seco Tools is well-known for a...

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TS2000 & TS2500 - 10

LATEST FIELD TESTS IN HEAT RESISTANT ALLOY TURNING for consistency, reliability and increased productivity. This is our contribution to make turning heat resist- ant alloys such as superalloys and titanium alloys both easy and profitable. Real life applications show that Seco Tools is help- ing our customers to progress to the next level in machining heat resistant alloys. TS2000 - The perfect choice for finishing and semi-finishing of heat resistant alloys TS2500 - The ideal grade for roughing and semi-roughing of heat resistant alloys

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TS2000 & TS2500 - 11

THE NEW GRADES CAN MORE THAN DOUBLE TOOL LIFE AND PRODUCTIVITY Comp. S-grade

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TS2000 & TS2500 - 12

JETSTREAM TOOLING" COOLANT STRAIGHT TO THE EDGE Answering a call from the aerospace industry to improve the machining of difficult to machine alloys, Seco developed Jetstream Tooling - a revolutionary With Jetstream Tooling you no longer have to make a choice between tool life and productivity - now you can have both. With higher cutting speeds, longer tool life and improved chip control, low cost unmanned Jetstream Tooling works by delivering a concentrated high pressure jet of coolant at high velocity straight to the optimum position close to the cutting edge. This jet of coolant lifts...

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TS2000 & TS2500 - 13

SECO TOOLS A FULL RANGE SUPPLIER Today, Seco's family of grades provides excellent capability for the widest range of different kinds of materials such as steel, stainless steel and various heat resistant alloys. With the new TS2000 and TS2500, you have the easy first choice grades for superalloys and titanium alloys. HEAT RESISTANT ALLOYS • TS2000: First choice for high productivity finishing and semi-finishing and a perfect grade for high speed machining. • TS2500: First choice for cost effective roughing and semi-roughing and a perfect grade to handle inter- rupted cuts and higher...

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TS2000 & TS2500 - 14

CUTTING DATA GENERAL CUTTING DATA of all kinds of heat resistant alloys. The recommended cutting speed vc (m/min) in the table to the right are for 10 minutes tool life in Inconel 718 bar material. Stainless steel Cast iron CUTTING DATA CALCULATOR When machining workpiece materials corresponding to other material groups and with other depths of cut and/or feed rates, use the cutting data calculator on our website. The calculator can also be used for changing the required tool life. INDIVIDUAL CUTTING DATA ON THE INSERT BOX The cutting data located on the cover of the box refer to the black...

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TS2000 & TS2500 - 15

MACHINABILITY FACTORS Inconel 708 (bar, forge, ring) Inconel 625 (bar, forge, ring) Inconel 718 (bar, forge, ring) Inconel X750 (prec. hardened) The machlnability factors are normed after the machinability of Inconel 718, bar material. Decreasing machinability factors indicates increasing machining difficulty. Use the machinability factors to calculate the recommended cutting speed for any specific alloy by multiplying its machining factor with the recommended cutting speed in the general cutting data table for

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TS2000 & TS2500 - 16

GEOMETRIES FOR IMPROVED CHIP CONTROL AND TOOL LIFE The complete programme of chipbreaker geometries includes both negative and positive inserts. For many applications the use of a chipbreaker will reduce the cutting forces produced and minimise the burr on the component. Use the recommendations below to select suitable chipbreaker geometry. POSITIVE INSERTS F1 CORNER For Finishing CUTTING EDGE 17° 16° 0,12 F2 For Semi-Finishing to Medium-Roughing 46 For Semi-Finishing to Medium-Roughing PS 0,17 For Finishing to Medium-Roughing 16° 15° NEGATIVE DOUBLE SIDED MF1 M1 14° 15° For Finishing and...

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