WO2006138115A1 - Helical cutting insert with axial clearance slash - Google Patents
Helical cutting insert with axial clearance slash Download PDFInfo
- Publication number
- WO2006138115A1 WO2006138115A1 PCT/US2006/021975 US2006021975W WO2006138115A1 WO 2006138115 A1 WO2006138115 A1 WO 2006138115A1 US 2006021975 W US2006021975 W US 2006021975W WO 2006138115 A1 WO2006138115 A1 WO 2006138115A1
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- cutting insert
- cutting
- helical
- insert
- angle
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Ceased
Links
Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B23—MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
- B23C—MILLING
- B23C5/00—Milling-cutters
- B23C5/16—Milling-cutters characterised by physical features other than shape
- B23C5/20—Milling-cutters characterised by physical features other than shape with removable cutter bits or teeth or cutting inserts
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B23—MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
- B23C—MILLING
- B23C5/00—Milling-cutters
- B23C5/16—Milling-cutters characterised by physical features other than shape
- B23C5/20—Milling-cutters characterised by physical features other than shape with removable cutter bits or teeth or cutting inserts
- B23C5/202—Plate-like cutting inserts with special form
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B26—HAND CUTTING TOOLS; CUTTING; SEVERING
- B26D—CUTTING; DETAILS COMMON TO MACHINES FOR PERFORATING, PUNCHING, CUTTING-OUT, STAMPING-OUT OR SEVERING
- B26D3/00—Cutting work characterised by the nature of the cut made; Apparatus therefor
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B23—MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
- B23C—MILLING
- B23C2200/00—Details of milling cutting inserts
- B23C2200/08—Rake or top surfaces
- B23C2200/085—Rake or top surfaces discontinuous
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B23—MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
- B23C—MILLING
- B23C2200/00—Details of milling cutting inserts
- B23C2200/12—Side or flank surfaces
- B23C2200/123—Side or flank surfaces curved
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B23—MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
- B23C—MILLING
- B23C2200/00—Details of milling cutting inserts
- B23C2200/12—Side or flank surfaces
- B23C2200/125—Side or flank surfaces discontinuous
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B23—MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
- B23C—MILLING
- B23C2200/00—Details of milling cutting inserts
- B23C2200/20—Top or side views of the cutting edge
- B23C2200/208—Wiper, i.e. an auxiliary cutting edge to improve surface finish
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B23—MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
- B23C—MILLING
- B23C2200/00—Details of milling cutting inserts
- B23C2200/28—Angles
- B23C2200/287—Positive rake angles
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B23—MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
- B23C—MILLING
- B23C2210/00—Details of milling cutters
- B23C2210/04—Angles
- B23C2210/0407—Cutting angles
- B23C2210/0442—Cutting angles positive
- B23C2210/045—Cutting angles positive axial rake angle
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B23—MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
- B23C—MILLING
- B23C2210/00—Details of milling cutters
- B23C2210/04—Angles
- B23C2210/0407—Cutting angles
- B23C2210/0442—Cutting angles positive
- B23C2210/0457—Cutting angles positive radial rake angle
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B23—MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
- B23C—MILLING
- B23C2210/00—Details of milling cutters
- B23C2210/04—Angles
- B23C2210/0485—Helix angles
-
- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y10—TECHNICAL SUBJECTS COVERED BY FORMER USPC
- Y10T—TECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
- Y10T407/00—Cutters, for shaping
- Y10T407/23—Cutters, for shaping including tool having plural alternatively usable cutting edges
Definitions
- the present invention relates to cutters and cutting inserts used thereon, and in particular to a cutter system that includes a cutter body with tangentially-mounted, indexable, helical cutting inserts with multiple cutting edges.
- indexable insert is not the first choice for small machine tools because the spindles on such small machines produce relatively lower horsepower and torque than larger machine tools. Because current cutting insert designs need more power to cut effectively, small machine tools are typically relegated to using solid end mill cutters and shell end mill cutters. However, solid end mill cutters and shell end mill cutters wear as they lose diameter, and if broken, can be entirely scraped. In addition, the limited size of the cutters that can be used with indexable insert designs may result in a loss of productivity. [0004] The inventor of the present invention has recognized these and other problems associated with end mill cutters, such as solid end mill cutters and shell end mill cutters, which utilize a helical cutting edge geometry.
- the present invention provides an improved cutter body that utilizes an indexable cutting insert design that has at least two indexable cutting edges.
- High positive axial and radial rake angles of the improved indexable cutting insert design uses less power and torque than conventional inserts, thereby allowing smoother cutting action and increased feedrates that would have previously stalled a smaller machine tool.
- the cutting insert of the invention can be used in larger cutters with an increased number of cutting edges to increase productivity on both small and large machine tools. Further, the only scrap is the cutting insert and not the entire cutter body, thereby minimizing production costs as compared to conventional designs.
- the present invention comprises an indexable cutting insert that includes a flat back that is held in a mounting pocket of a cutter body.
- the mounting pocket can be designed for ease of manufacture and repeatability. Stub length tooling may be used for rigid setups and lower cost.
- the cutting insert is located in the mounting pocket on two outboard walls.
- the cutting insert is secured to the cutter body by use of a screw in a cross hole fashion.
- the face of the cutting insert has a helical cutting edge on two sides and can be indexed by rotating the cutting insert approximately 180 degrees.
- the cutter body has a maximum core diameter for strength and rigidity, thereby minimizing tool deflection and extending the life of the cutter body.
- the cutting insert of the invention can be used in a variety of milling cutter body designs, such as end mill cutters, shell end mill cutters, or the like.
- Fig. 1 is a top perspective view of an indexable, helical cutting insert having two helical cutting edges according to an exemplary embodiment of the invention
- Fig. 2 is a side perspective view of the cutting insert of Fig. 1
- Fig. 3 is another side perspective view of the cutting insert of Fig. 1
- Fig. 4 is a side view of the cutting insert of Fig. 1
- Fig. 5 is aperspective view of the bottom of the cutting insert of Fig. 1
- Fig. 6 is another perspective view of the bottom of the cutting insert of Fig. 1
- Fig. 7 is a another perspective view of the side of the cutting insert of Fig. 1
- Fig. 8 is a diagram showing the true helix of the cutting inserts of the invention
- FIG. 9 is a top perspective view of an indexable, helical cutting insert according to another exemplary embodiment of the invention.
- Fig. 10 is a top view of an improved cutting insert according to yet another exemplary embodiment of the invention.
- FIG. 11 is a side view of the cutting insert of Fig. 10;
- Fig. 12 is a bottom view of the cutting insert of Fig. 10;
- Fig. 13 is a bottom perspective view of the cutting insert of Fig. 10;
- FIG. 14 is another side view of the cutting insert of Fig. 10;
- FIG. 15 is a top view of an indexable, helical cutting insert according to yet another exemplary embodiment of the invention.
- Fig. 16 is a side view of the cutting insert of Fig. 15;
- Fig. 17 is a bottom view of the cutting insert of Fig. 15;
- Fig. 18 is a top view of an indexable, helical cutting insert according to yet another exemplary embodiment of the invention.
- Figs. 19a and 19b is a side view of the cutting insert of Fig. 18 when used on a cutter having two different diameters.
- the cutting insert 10 is generally diamond in shape and includes a front face or top surface 52, a pair of opposed side walls or surfaces 54 and 56, another pair of opposed side walls or surfaces 58 and 60, a base surface or back face 40.
- the top surface 52 includes a substantially flat central portion 52a, a first curved facet surface 52b, and a second curved facet surface 52c located on the opposite side of the central portion 52a.
- the side wall 58 includes a first substantially flat faceted surface 58a, and a second substantially flat faceted surface 58b having a smaller surface area than the faceted surface 58 a.
- the opposite side wall 60 includes a first substantially flat faceted surface 60a, and a second substantially flat faceted surface 60b having a smaller surface area than the faceted surface 60a.
- the other two side walls 54 and 56, and the back surface 40 are substantially flat.
- edges 62, 64, 66 and 68 are Formed at the intersection between the top surface 52 and the side walls 54, 56, 58 and 60.
- At least one of the edges 62, 64, 66 and 68 is a helical cutting edge, and preferably at least the two opposite edges 66 and 68 are helical cutting edges, thereby allowing the cutting insert 10 to be indexable by rotating the cutting insert 10 by approximately 180°.
- the helical cutting edges 66 and 68 form an angle 63 of approximately 30° with the central, longitudinal axis of the cutter body (along the z-axis) to cut a true 30° helix about the cutting diameter of the cutter.
- the helical cutting edge 66 to have an angle of approximately 30°, it should be realized that the helical cutting edge 68 is substantially parallel to the helical cutting edge 66, and thus will also have an angle of approximately 30°. It will be appreciated that the invention is not limited by the angle of the cutting edges, but the invention can be practiced with any desirable angle for the helical cutting edges 66, 68.
- inserts that include helical cuts 70 in the side walls 58 and 60 with the angle 63 for the helix that ranges between 0° and 60°.
- the helical cutting edges 66 and 68 form an angle 65 of approximately 60° with respect to the edges 62 and 64, respectively.
- the angle 65 can be any desirable angle between about 20° and 90°.
- the top surface 52 of the insert 10, and in particular the curved facet surfaces 52b and 52c form a rounded or radiused top surface having a radius of curvature, R, as best shown in Figure 4.
- the radius of curvature, R is approximately equal to a cutting diameter of the milling body, as shown in Figure 8. Because of the radius of curvature, R, the top surface 52 follows the curvature of the outer surface of the head 18 to provide a true helical cutting insert that follows the curvature of the outer surface of the head 18, unlike conventional inserts with front faces or surfaces that are substantially flat.
- a helical cut face 70 is formed in two opposite side surfaces 58 and 60 with respect to a central, longitudinal axis of the cutter body to form a side face helix that creates a smooth cutting action as a solid helical end mill, unlike conventional inserts.
- the helical cut face 70 on the opposite side surfaces 58 and 60 allows the cutting insert 10 to be indexable on two sides by rotating the cutting insert 10 approximately 180°. High positive radial and axial rake angles enable free cutting machining with a fine finish and low horsepower consumption.
- the cutting insert 10 can be tightly secured to the mounting pocket by a locking fastener (not shown), such as an Allen or Torx screw, or the like, that passes through a clearance hole 46 located in the cross hole location of the cutting insert 10.
- the clearance hole 46 includes a tapered counterbore 46A, which is engaged by a corresponding tapered surface on the head of the locking fastener, thereby allowing the cutting insert 10 to be tightly secured to the pocket face.
- the location of the clearance hole 46 in the cross hole location of the cutting insert 10 allows an unobstructed cutting face and a larger diameter center core in the cutter body, thereby creating maximum strength and allowing longer cutting lengths.
- the cutting edges 66 and 68 are non-progressive edges that form an angle 65 with respect to the edges 62 and 64, respectively.
- a helical cutting insert 100 is shown according to another exemplary embodiment of the invention. Similar to the cutting insert 10, the face of the cutting insert 10 has helical cutting edges on two sides and can be indexed by rotating the cutting insert 100 approximately 180 degrees.
- the top surface 152 has a radius of curvature, R, is approximately equal to a cutting diameter of the milling body, as shown in Figure 8. Because of the radius of curvature, R, the top surface 152 follows the curvature of the outer surface of the head 18 to provide a true helical cutting insert that follows the curvature of the outer surface of the head 18.
- the helical cutting insert 100 differs from the helical cutting insert 10 in that the helical cutting edge 66 of the helical cutting insert 10 is replaced with helical cutting edges 102 and 166 having a radius blend 106 therebetween. Similarly, the helical cutting edge 68 of the helical cutting insert 10 is replaced with helical cutting edges 104 and 168 with a radius blend 108 therebetween.
- the combination of the helical cutting edges 102 and 166 along the same side of the helical cutting insert 100 provide a progressive helical cutting edge.
- the combination of the helical cutting edges 104 and 168 along the opposite side of the helical cutting insert 100 provide a second, progressive helical cutting edge.
- the helical cutting edges 166, 168 form an angle 165 with respect to the edges 162, 164.
- the helical cutting edges 102 and 104 form an angle 167 with respect to the edges 162 and 164, wherein the angle 167 is greater than the angle 165.
- the difference between the angles 165, 167 provides an initial axial rake angle 169 that is lower than the axial rake angle provided by the non-progressive helical cutting edges 166 and 168.
- the helical cutting edges 102, 104 provide an initial cutting edge that progresses from a lower axial rake angle as the cutting insert 100 enters the workpiece (not shown) to a relatively higher axial rake angle as the helical cutting insert 100 exits the workpiece.
- the progressive helical cutting edges 102, 104 are relatively stronger than the non-progressive cutting edges 66, 68 of the helical cutting insert 100 of the invention.
- the cutting edges 66 and 68 are non-progressive edges that form an angle 65 with respect to the edges 62 and 64, respectively.
- the cutting edges 166, 168 of the cutting insert 100 form a substantially similar angle 165 with respect to the edges 162, 164.
- an indexable, helical cutting insert 200 is shown according to another exemplary embodiment of the invention. Similar to the cutting inserts 10, 100, the face of the cutting insert 200 has a helical cutting edge on two sides and can be indexed by rotating the cutting insert 200 approximately 180 degrees.
- the top surface 52 has a radius of curvature, R, is approximately equal to a cutting diameter of the milling body to provide a true helical cutting insert that follows the curvature of the outer surface of the head 18, as shown in Figure 8.
- R a radius of curvature
- the helical cutting insert 200 differs from the helical cutting inserts 10, 100 in that the cutting insert 200 include an axial clearance slash 202, 204 forming a wiper 206, 208 on the edge of the axial clearance slash 202, 204.
- the axial clearance slash 202, 204 is in the form of a faceted surface extending from the bottom surface 240 to the side surfaces 254, 256, 258, 260 at an angle 210 in a range between about 10 degrees to about 70 degrees with respect to the bottom surface 240.
- the purpose of the axial clearance slash 202, 204 and the wiper radius 206, 208 is to produce a fine finish on the workpiece (not shown).
- the feature of the progressive cutting edges 102, 104 on the helical cutting insert 100 can be included on the helical cutting insert 200 of the invention.
- a helical cutting insert 300 is shown according to another exemplary embodiment of the invention.
- the face of the cutting insert 300 has a helical cutting edge on two sides and can be indexed by rotating the cutting insert 300 approximately 180 degrees.
- the top surface 352 has a radius of curvature, R, is approximately equal to a cutting diameter of the milling body to provide a true helical cutting insert that follows the curvature of the outer surface of the head 18, as shown in Figure 8.
- the bottom surface 340 and the side surfaces 354, 356, 358, 360 of the cutting insert 300 include an axial clearance slash 302, 304 forming a wiper 306, 308 on the edge of the axial clearance slash 302, 304, similar to the helical cutting insert 200.
- the axial clearance slash 302, 304 is in the form of a faceted surface having an angle 310 in a range between about 10 degrees to about 70 degrees with respect to the bottom surface 340.
- the axial clearance slash 302, 304 and the wiper radius 306, 308 produce a fine finish on the workpiece.
- the cutting insert 300 differs from the helical cutting insert 200 in that the side surfaces 354, 356, 358, 360 of the cutting insert 300 includes a feature that permits a ramp-plunge and feeding (RPF) operation, while maintaining a fine finish on the workpiece.
- This feature comprises an inside cutting edge 310, 312 that is formed along a portion 314, 316 of the side surfaces 354, 356 that extend outwardly a distance 318 from the remainder of the side surfaces 354, 356 of the cutting insert 300.
- the helical cutting inserts 10, 100, 200, 300 include a top surface that has a radius of curvature, R, that is approximately equal to a cutting diameter of the milling body, as shown in Figure 8. Because of the radius of curvature, R, the top surface follows the curvature of the outer surface of the head 18 to provide a true helical cutting insert with the helical cutting edges that follow the curvature of the outer surface of the head 18. However, the helical cutting edges follow the curvature of the head 18 with a specific diameter, and may produce a concave error in the workpiece when placed in cutters having diameters other than what the cutting inserts 10, 100, 200, 300 were originally designed.
- R radius of curvature
- a helical cutting insert 400 is shown according to another exemplary embodiment of the invention.
- the helical cutting insert 400 of being used in cutters with different diameters, while maintaining the lead angle of the helical cutting insert 400 substantially constant to greatly minimize any errors in the workpiece.
- the helical cutting insert 400 is substantially identical to the helical cutting insert 300, except the helical cutting insert 400 includes curved or "inward bowed" helical cutting edges 466, 468, rather than the substantially straight helical cutting edges 366, 368 (only cutting edge 366 is shown as a dashed line in Figure 18).
- the curved or radiused helical cutting edges 466, 468 allows the helical cutting insert 400 to be positioned in cutters having different diameters, while minimizing lead angle errors and lap lines, as shown in Figures 19a and 19b. Without the radiused helical cutting edges 466, 468, the cutter may create a slight concave curve in the workpiece that increases with an increase in the cutting diameter. As shown in Figure 20, the helical cutting insert 400 can be placed in the cutter with the desired diameter by simply pivoting around a tangent point of the cutting diameter to create the desired effect.
- the helical cutting insert 400 is pivoted to a first angle 404 with respect to a central axis 406 of the cutter, as shown in Figure 19a.
- the helical cutting insert 400 is pivoted to a second angle 410 that is larger than the angle 404 for the first diameter 402, as shown in Figure 19b.
- the radiused helical cutting edges 466, 468 of the helical cutting insert 400 are capable of maintaining full engagement with the workpiece during the cutting operation.
- the features of the progressive cutting edges 102, 104 of the helical cutting insert 100, an axial clearance slash 202, 204 forming a wiper 206, 208 on the edge of the axial clearance slash 202, 204 of the helical cutting insert 200, and/or an inside cutting edge 310, 312, along with the wiper radius 306, 308 on the edge of the axial clearance slash 302, 304 of the cutting insert 300 can be included on the helical cutting insert 400 of the invention.
- the cutter system of the invention is designed to create a continuous true helical cut.
- the cutter system of the invention provides an indexable helical insert that is indexable on at least two cutting edges by rotating the insert 180 degrees.
- the cutter system of the invention provides for a more cost- effective cutter system because indexing the insert maintains cutting diameter and edges, unlike scrapping the entire cutter when the insert is worn or broken in a conventional solid endmill design.
- the indexable cutting insert of the invention is not limited to the type of cutter body, and that the invention can be practiced with other types of cutter body designs.
- the indexable cutting insert of the present invention can be utilized in a cutter system that includes a shell end mill type of cutter body.
- the indexable cutting insert of the invention can be utilized in a cutter system that includes another type of end mill cutter body, commonly known as a "router".
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- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Life Sciences & Earth Sciences (AREA)
- Forests & Forestry (AREA)
- Milling Processes (AREA)
Abstract
Description
Claims
Priority Applications (4)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| KR1020077028965A KR101277665B1 (en) | 2005-06-13 | 2006-06-06 | Helical cutting insert with clearance slash surface |
| CN2006800211449A CN101198448B (en) | 2005-06-13 | 2006-06-06 | Spiral cutting blade with multiple cutting edges |
| JP2008515837A JP2008546543A (en) | 2005-06-13 | 2006-06-06 | Spiral cutting insert with axial clearance slash |
| DE112006001553T DE112006001553T5 (en) | 2005-06-13 | 2006-06-06 | Helical cutting insert with axial free space recess |
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| US11/151,025 US7090444B1 (en) | 2005-06-13 | 2005-06-13 | Helical cutting insert with axial clearance slash |
| US11/151,025 | 2005-06-13 |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| WO2006138115A1 true WO2006138115A1 (en) | 2006-12-28 |
Family
ID=36781656
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| PCT/US2006/021975 Ceased WO2006138115A1 (en) | 2005-06-13 | 2006-06-06 | Helical cutting insert with axial clearance slash |
Country Status (6)
| Country | Link |
|---|---|
| US (1) | US7090444B1 (en) |
| JP (1) | JP2008546543A (en) |
| KR (1) | KR101277665B1 (en) |
| CN (1) | CN101198448B (en) |
| DE (1) | DE112006001553T5 (en) |
| WO (1) | WO2006138115A1 (en) |
Families Citing this family (11)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US7753625B2 (en) * | 2005-06-13 | 2010-07-13 | Kennametal Inc. | Helical cutting insert with multiple cutting edges |
| IL178813A (en) * | 2006-10-23 | 2010-06-30 | Iscar Ltd | Tangential cutting insert having a base protrusion seating arrangement |
| US7708038B1 (en) * | 2006-11-27 | 2010-05-04 | Stewart John S | Substantially helical, stepped blade row cutterhead having removable blade units |
| US20090052999A1 (en) * | 2007-08-24 | 2009-02-26 | Aggressive Equipment, Inc. | Cutting insert and method |
| SE536590C2 (en) * | 2012-07-05 | 2014-03-11 | Sandvik Intellectual Property | Milling inserts with primary and secondary release surface as well as peripheral, narrow chip surface |
| US9475136B2 (en) * | 2013-07-30 | 2016-10-25 | Kennametal Inc. | High-speed milling cutter and cutting insert therefor |
| KR101704629B1 (en) * | 2013-09-11 | 2017-02-08 | 미츠비시 히타치 쓰루 가부시키가이샤 | Replaceable-cutting-edge rotary cutting tool |
| US9505066B2 (en) * | 2014-08-01 | 2016-11-29 | Kennametal Inc. | Rotary cutting tool with regrindable cutting inserts |
| US20160121406A1 (en) | 2014-10-29 | 2016-05-05 | Illinois Tool Works Inc. | Interchangeable cutting inserts and methods associated with the same |
| JP6612152B2 (en) * | 2016-03-03 | 2019-11-27 | 住友電工ハードメタル株式会社 | Cutting inserts and cutting tools |
| US10518339B2 (en) | 2017-03-22 | 2019-12-31 | Kennametal Inc. | Tangentially mounted cutting insert with angled seating surface and recessed clearance surface |
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| US6773209B2 (en) * | 2002-05-31 | 2004-08-10 | Kennametal Inc. | Helical insert and cutter bodies |
| IL153252A0 (en) * | 2002-06-04 | 2003-07-06 | Iscar Ltd | Tangential cutting insert and milling cutter |
| CN2650917Y (en) * | 2003-11-28 | 2004-10-27 | 株洲钻石切削刀具股份有限公司 | Rotary milling blade |
-
2005
- 2005-06-13 US US11/151,025 patent/US7090444B1/en not_active Expired - Fee Related
-
2006
- 2006-06-06 KR KR1020077028965A patent/KR101277665B1/en not_active Expired - Fee Related
- 2006-06-06 CN CN2006800211449A patent/CN101198448B/en not_active Expired - Fee Related
- 2006-06-06 DE DE112006001553T patent/DE112006001553T5/en not_active Withdrawn
- 2006-06-06 WO PCT/US2006/021975 patent/WO2006138115A1/en not_active Ceased
- 2006-06-06 JP JP2008515837A patent/JP2008546543A/en active Pending
Patent Citations (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US4190128A (en) * | 1978-12-21 | 1980-02-26 | Fansteel Inc. | Roof drill bit with hexagonal body portion |
| US6811359B2 (en) * | 2002-05-31 | 2004-11-02 | Kennametal Inc. | True helical cutter system |
Also Published As
| Publication number | Publication date |
|---|---|
| US7090444B1 (en) | 2006-08-15 |
| CN101198448B (en) | 2012-06-27 |
| JP2008546543A (en) | 2008-12-25 |
| DE112006001553T5 (en) | 2008-04-30 |
| KR20080009330A (en) | 2008-01-28 |
| KR101277665B1 (en) | 2013-06-21 |
| CN101198448A (en) | 2008-06-11 |
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