Sandvik Coromant Ceramic Ceramic Turning Insert, TNGA, Triangle, RNGA Chipbreaker, CC620 Grade, Uncoated, TNGA 332T0820, 3/8" iC, 0.0315" Corner Radius (Pack of 10)
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The Sandvik Coromant VNGP GC1005 indexable turning insert with a choice of DS or groove chipbreaker style has a 35-degree diamond shape (also called rhombic), providing wear resistance without limiting shock resistance for medium machining to finishing heat resistant super alloys (HRSAs) in average to good machining conditions. This double-sided negative insert has chip grooves on both sides, a hole in the center, and four cutting edges. It has strong edges, zero clearance, and is a better choice for external turning than a positive insert. It can also be used for longitudinal turning, profiling, and when there is limited machine power or tendency toward vibration. GC1005 grade is a combination of carbide and a coating of titanium nitride (TiN) and titanium aluminum nitride (TiAlN) applied through physical vapor deposition (PVD), which provides hardness for wear resistance without limiting shock resistance, resistance to plastic deformation, and the ability to withstand high temperatures. PVD coatings give the insert longer life and better wear resistance than uncoated inserts, and maintain a sharper cutting edge than those with chemical vapor deposition (CVD) coatings.
The VNGP GC1005 is available with a choice of two chipbreakers: DS or groove. The DS chipbreaker is designed for medium machining cutting depths and feed rates, and the groove chipbreaker is designed for low cutting depths and feed rates. Tolerance of the distance from the outer edge of the inscribed circle to the point of the diamond is + or - 0.001”. Tolerance of the theoretical diameter of the insert is + or - 0.001”. Insert thickness tolerance is + or - 0.005”. Different insert shapes and sizes may have different inscribed circle (iC) measurements, which are related to the insert’s range of cutting depths, speeds, lead angle, and feed rates. The inscribed circle is the largest circle that can be drawn within the edges of the insert shape. In general, as the insert size and iC become larger, the maximum cutting depth increases. The cutting depth influences the metal removal rate, number of cuts, chip evacuation, and power required when using the insert.
Indexable inserts are small cutting tools designed to remove material in external and internal cutting applications such as turning, milling, drilling, and grooving. They are held by an insert holder, have multiple cutting edges, and can be rotated when one edge wears down. Multiple inserts can be used to accomplish a variety of cuts in one operation. An insert is either positive or negative, which refers to the rake or clearance angle at which the insert removes material. Inserts are coded according to their specific cutting and application capability (e.g. VNMG 16 04 04-QM). Each part of the code represents details of the insert shape, nose angle, clearance, tolerance, size, geometry, grade, and chipbreaker style.
Sandvik Coromant manufactures tools for turning, milling, and drilling. The company, headquartered in Sweden, makes tools used throughout the metalworking field, including the automotive and aerospace, die and mold, and general engineering industries. Sandvik Coromant inserts meet International Organization for Standardization (ISO) and American National Standards Institute (ANSI) standards.
Matching Inserts to Holders
These inserts are part of the Sandvik Coromant TMax P Negative Insert family, which means they can be used with CoroTurn RC, a clamp-style insert holding system. This system is for use when stability and security are essential for productive turning of large components. The system is mostly used for external turning, from roughing to finishing, but also for internal turning.
High perrformance Cubic Boron Nitride grade. First choice for continuous and light interrupted cuts in hardened steel.
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CVD-coated carbide grade for finishing and light roughing of stainless steels. A substrate, which can handle high temperatures, combined with a wear resistant coating makes this grade a first choice for continuous cuts at moderate to high cutting speeds.
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The Sandvik Coromant TCMT GC1525 indexable turning insert with a choice of UM or PM chipbreaker style has a triangle shape with a 7-degree clearance angle, providing wear resistance without limiting shock resistance for medium machining of steel in average to good machining conditions. This single-sided positive insert has chip grooves on one side, a countersunk hole in the center, and three cutting edges. It has a 7-degree clearance angle for light cutting forces and side clearance, making it better than a negative insert for internal turning. It can also be used when there is limited machine power, a tendency toward vibration, or when either a large or small lead angle is required. GC1525 grade is a combination of carbide and a coating of titanium carbonitride (TiCN) and titanium nitride (TiN) over cermet applied through physical vapor deposition (PVD), which provides hardness for high wear resistance without limiting shock resistance, making this grade suitable for machining of steel at medium to high cutting speeds. PVD coatings give the insert longer life and better wear resistance than uncoated inserts, and maintain a sharper cutting edge than those with chemical vapor deposition (CVD) coatings.
The TCMT GC1525 is available with a choice of two types of chipbreakers: UM or PM, which are for medium machining cutting depths and feed rates. The UM chipbreaker has a higher range of feed rates and cutting depths than the PM chipbreaker. Tolerance of distance from the base to the tip of the triangle is + or - 0.002” to 0.005”. Tolerance of the theoretical diameter of the insert is + or - 0.002” to 0.005”. Insert thickness tolerance is + or - 0.005”. Different insert shapes and sizes may have different inscribed circle (iC) measurements, which are related to the insert’s range of cutting depths, speeds, lead angle, and feed rates. The inscribed circle is the largest circle that can be drawn within the edges of the insert shape. In general, as the insert size and iC become larger, the maximum cutting depth increases. The cutting depth influences the metal removal rate, number of cuts, chip evacuation, and power required when using the insert.
Indexable inserts are small cutting tools designed to remove material in external and internal cutting applications such as turning, milling, drilling, and grooving. They are held by an insert holder, have multiple cutting edges, and can be rotated when one edge wears down. Multiple inserts can be used to accomplish a variety of cuts in one operation. An insert is either positive or negative, which refers to the rake or clearance angle at which the insert removes material. Inserts are coded according to their specific cutting and application capability (e.g. VNMG 16 04 04-QM). Each part of the code represents details of the insert shape, nose angle, clearance, tolerance, size, geometry, grade, and chipbreaker style.
Sandvik Coromant manufactures tools for turning, milling, and drilling. The company, headquartered in Sweden, makes tools used throughout the metalworking field, including the automotive and aerospace, die and mold, and general engineering industries. Sandvik Coromant inserts meet International Organization for Standardization (ISO) and American National Standards Institute (ANSI) standards.
Matching Inserts to HoldersThese inserts are part of the Sandvik Coromant CoroTurn 107 Positive Insert family, which means they can be used with CoroTurn 107 screw clamping system. The CoroTurn 107 is the first choice system for internal longitudinal turning of small diameters, and is also used for external light roughing to finishing of smaller, slender components.
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MM medium chipbreaker stainless steel insert type. The substrate consists of a hard fine-grained WC with 6% Co for high hot hardness and good resistance against plastic deformation. The new thin PVD TiAlN-coating with excellent adhesion, also on sharp edges, guarantees toughness, even flank wear and outstanding performance in heat resistant super alloys.
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