Cutting insert for milling titanium and titanium alloys

Cutters – for shaping – Comprising tool of specific chemical composition

Patent

Rate now

  [ 0.00 ] – not rated yet Voters 0   Comments 0

Details

407118, C23C 1406

Patent

active

059845937

ABSTRACT:
A cutting tool for milling titanium and titanium alloys which includes a substrate that comprises tungsten carbide and cobalt. The substrate further includes cobalt in the range of between 5.7 to 6.3 weight percent and chromium in the range of between 0.3 and 0.5 weight percent. The cutting tool has a coating of tungsten carbide applied to the substrate by physical vapor deposition.

REFERENCES:
patent: 4437800 (1984-03-01), Araki et al.
patent: 4583431 (1986-04-01), Komanduri et al.
patent: 4590031 (1986-05-01), Eichen et al.
patent: 4652183 (1987-03-01), Veltri et al.
patent: 4698266 (1987-10-01), Buljan
patent: 4716083 (1987-12-01), Eichen et al.
patent: 4828584 (1989-05-01), Cutler
patent: 4933058 (1990-06-01), Bache et al.
patent: 4942062 (1990-07-01), Ducarroir et al.
patent: 4984940 (1991-01-01), Bryant et al.
patent: 5011514 (1991-04-01), Cho et al.
patent: 5038645 (1991-08-01), Walter et al.
patent: 5066553 (1991-11-01), Yoshimura et al.
patent: 5106674 (1992-04-01), Okada et al.
patent: 5131481 (1992-07-01), Smith
patent: 5145739 (1992-09-01), Sarin
patent: 5173328 (1992-12-01), Reiter et al.
patent: 5183362 (1993-02-01), Kuroyama et al.
patent: 5193948 (1993-03-01), Noggle
patent: 5279866 (1994-01-01), Bourget et al.
patent: 5292417 (1994-03-01), Kugler et al.
patent: 5325747 (1994-07-01), Santhanam et al.
patent: 5405448 (1995-04-01), Jost et al.
patent: 5413684 (1995-05-01), Bergmann
patent: 5415756 (1995-05-01), Wolfe et al.
patent: 5418003 (1995-05-01), Bruce et al.
patent: 5421891 (1995-06-01), Campbell et al.
patent: 5427665 (1995-06-01), Hartig et al.
patent: 5443337 (1995-08-01), Katayama
patent: 5626909 (1997-05-01), Iacovangelo
patent: 5718541 (1998-02-01), Bryant
D. Mari et al., "A New Look at Carbide Tool Life" Wear, 165 (1993) pp. 9-17.
Zlatin et al., "Procedures and Precautions in Machining Titanium Alloys", Titanium Sci. & Tech., vol. 1. (1973) pp. 489-504.
Konig et al. "Applied Research on the Machinability of Titanium and its Alloys", Proc. AGARD Cont. Advanced Fabrication Processes (1978), pp. 1-1 through 1-10.
Komanduri et al. "New Observations on the Mechanism of Chip formation when Machining Titanium Alloys", Wear, 69 (1981), pp. 179-188.
Christopher, "Trends in cutting Tool Materials", 1981 Int'l Conf. on Trends in Conventional and Non-Traditional Machining (1981) The Society of Carbide and Tool Engineers, pp. 195 and 211.
Jensen, "High Speed Machining of Titanium", Master of Science Theses at MIT ((1984) pp. 1-151.
Lehtihet, "Face Milling Tool Geometry and Cutting Performance of Silicon Nitride Tool Materials", Ph.D. Dissertation at Lehigh University (185), p. 123.
Trucks, "Machining Titanium Alloys", Machine and Tool Blue Book (1987), pp. 39-41.
Min et al. "Diffusion Wear in Milling Titanium Alloys", Materials Science and Technology, vol. 4 (1988), pp. 548-553.
Bhattacharyya et al. "The Milling of Titanium with Coated Carbide Tools", Annals of the 8th CBECIMAT Unicamp, Campinas Spain (1988), pp. 271-275.
Chandrasekaran et al. "Role of Tool Microstructure and Stress-State upon the Wear Mechanisms in Milling", Annals of the CIRP, vol. 39 (1990), pp. 65-69.
Metals Handbook Ninth Edition, vol. 16, Machining (1989), pp. 602-606.
Chandler, "Machining of Reactive Metals", Metals Handbook Ninth Edition, vol. 16, Machining (1989), pp. 844-857.
Kennametal Tooling Applications Program Brochure, Kennametal Inc. Latrobe Pennsylvania (1990), pp. 3, 39-43.
Gettlemen et al. "Think Positive!", Modern Machine Shop (Oct. 1990), pp. 57-64.
Szyp, "Milling: Pushing Carbide to the Edge", Tool & Production (May 199), pp. 60-66.
Dillon et al. "The Effects of Temperature on the Machining of Metals", J. Materials Shaping Tech. vol. 8, No. 1 (1990), pp. 23-29.
Coll et al. "(Ti-Al)N Advanced Film Prepared by Arc Process", Materials Science and Engineering A140 (1991), pp. 816-824.
"Tooling Up for Exotic Cutting", Aircraft Engineering (May 1991) pp. 6 and 12.
"Tips for Aerospace Machining", Manufacturing Engineering (Mar. 1993), pp. 67-69.
Eckstein et al. "Face-Cut Milling of Titanium Alloys at High Cutting Rates", Verein Deutscher Ingenieure Zeitschrift 133 (12) (1991), pp. 28-31, 34 (English translation).
Ezugwu et al. "Face Milling of Aerospace Materials", First Int'l Conf. on the Behavior of Materials in Machining, Stratford-upon-Avon, England (1988), Paper No. 3 (Institute of Metals) pp. 3.1 to 3.11.
Negishi et al. "Study of Tool Failure of Carbide Tools in Interrupted Turning", Annals of the CIRP vol. 30, No. 1 (1981), pp. 43-46.
Handbook of High Temperature Compounds: properties, Production, Applications, Kosolapova Editor, Hemisphere Pub. Crop. pp. 530, 557, 574.
Cook et al. "The Thermal Mechanisms of Tool Wear", J. of Engineering for Industry, Feb. 1966, pp. 93-100.
Kennametal Brochure entitled "Tools, Tooling Systems and Services for the Global Metalworking Industry" (1991), pp. 1, 2, and 274.
Siekmann, "How to Machine Titanium", The Tool Engineer, Jan. 1955, pp. 78-82.
Israelsson, "Turning Inserts TTTake Off", Cutting Tool Engineering, Sep. 1993, pp. 36 & 38-40.
Chandler, "Machining of Reactive Metals", Metals Handbook, vol. 16, 9th Ed., pp. 844-857.
Machado et al. "Machining of Titanium and Its Alloys--A Review", Proc. Inst. Mech. Engrs. vol. 204 (1990), pp. 53-60.
Olsson et al. "Chemical Vapour Deposition of Boron Carbides on Uncoated and TiC-Coated Cemented Carbide substrates", Surface & Coatings Tech, 42 (1990), pp. 187-201.
Jansson, "Chemical Vapor Deposition of Boron Carbides", Mat'ls & Mfg. Processes, vol. 6, No. 3 (1991), pp. 481-500.
Hartung et al. "Tool Wear in Titanium Machining", Annals of CIRP, vol. 31, No. 1 (1982), pp. 75-80.
Narutaki et al. "Study on Machining Titanium Alloys", Annals of CIRP, vol. 32, No. 1 (1983), pp. 65-69.
Peterson et al. "Coatings for Tribological Applications", Fundamentals of Friction and Wear--1980 ASM Seminar, pp. 331-372.
Kossowsky et al. "Friction and Wear" Surface Modification Engineering, vol. 1, CRC Press Inc., pp. 145-185.
Meyers et al. "Mechanical Metallurgy", Prentice Hall Inc., pp. 600-624.
Backofen, Deformation Processing, Addision-Wesley Pub. Co. pp. 174-175.
Rabonowicz, Friction and Wear of Materials, John Wiley & sons, pp. 10-31.
Dearnley et al. "Evaluation of Principal Wear Mechanisms of Cemented Carbides and Ceramics Used for Machining Titanium Alloy IMI 318", Mat'ls Science & tech., Jan. 1986 vol. 2, pp. 47-58.
Dearnley et al. "Wear Mechanisms of Cemented Carbides and Ceramic Used for Machining Titanium Alloys", High Tech Ceramics, Elsevier Science Publishers (1987), pp. 2269-2712.
Mari et al. "A New Look at Carbide Tool Life", Wear 165 (1993), pp. 9-17.

LandOfFree

Say what you really think

Search LandOfFree.com for the USA inventors and patents. Rate them and share your experience with other people.

Rating

Cutting insert for milling titanium and titanium alloys does not yet have a rating. At this time, there are no reviews or comments for this patent.

If you have personal experience with Cutting insert for milling titanium and titanium alloys, we encourage you to share that experience with our LandOfFree.com community. Your opinion is very important and Cutting insert for milling titanium and titanium alloys will most certainly appreciate the feedback.

Rate now

     

Profile ID: LFUS-PAI-O-1316104

  Search
All data on this website is collected from public sources. Our data reflects the most accurate information available at the time of publication.