This application is the US national phase of PCT application PCT/DE2006/002043, filed 21 Nov. 2006, published 7 Jun. 2007 as WO2007/062622, and claiming the priority of German patent application 202005018963.4 itself filed 2 Dec. 2005, whose entire disclosures are herewith incorporated by reference.
The invention relates to a milling cutter head with several blade holders set in seats of a base body and onto which holders blades are welded, the blade holders being axially shiftable via wedges and fixed by clamping elements in the milling cutter head.
Such a milling cutter head is known in principle from DE 40 03 862. The seats for the blade holders extend in the cutter head described in it from the one end face of its base body parallel to its axis of rotation and offset inward from its outer edge, the cutting edges of the cutting plates in use projecting only slightly past the end face of the base body. Furthermore, the axes of the round wedges serving for retaining are skewed relative to the axes of the cutting-plate holders carrying the cutting plates. Finally, a further round wedge is provided with a differential screw for the axial adjustment of each cutting plate and is arranged in a seat extending radially inward from the circumference of the base body. Geometrically identical round wedges are used for axial adjustment and for the radially outward directed retention. It is emphasized that this cutting head has the advantage that as a result of the position of the seats receiving the cutting-plate holders, centrifugal forces without an axial component that are only radially directed parallel to the axis of the base body occur. These forces can be readily absorbed because the seats are not located directly on the outer periphery of the base body but rather radially inward at a spacing from the outer periphery. The cutter head is therefore also suitable for extremely high speeds and the centrifugal forces that then occur. Fine adjustment of the cutting elements in the axial direction without application of radial components is advantageously possible.
Such millers are used in orthogonal milling without axial is advance with eccentric tool positioning, in particular in the manufacture of automobile crankshafts. To this end the workpiece is machined in one or several cycles with the initially cited multiblade millers. The workpiece rotates relative to the miller about its longitudinal axis, that extends perpendicular to the axis of rotation of the miller. Since the blades of the milling cutter head extend with their points on different radii, different cutting arcs result, which causes uneven stressing of the cutting edge along its length and consequently uneven wear.
In manufacturing technology the price of a final product produced by machining, such as, in particular, a crankshaft, is determined by several factors including even the tool cost and retooling cost.
The present invention therefore has the object of improving a milling cutter head of the above-described type in such a manner that a longer blade service life can be achieved.
According to the invention at least one of the blades is angled and comprises, relative to the axis of the milling cutter head, a long, radially outer part and a short, radially inner part that is angled by 3° to 7°, preferably 5°, so that the two parts form an angle of 177° to 173°, preferably 175°. As a result of this construction the short cutting-edge parts do not participate in the cutting operation at the beginning of use of a milling cutter head provided with new blades. The long blades performs the final cut and thus wear down more rapidly than the short blades. As a result of the construction of the invention the convex surface profile is constantly adapted to the actual wear and is thus maintained for a longer blade contact time.
Thus, the length ratio of the short part to the long part of the angled blade is preferably selected to be between 4:17 and 6:17, preferably 5:17.
According to a concrete embodiment of the invention to be discussed later, the milling cutter head comprises three blade holders with blades arranged at an angle of 120° to each other. Preferably, one of three or two of three blades are angled whereas the non-angled blade is straight.
Furthermore, it has a wear-reducing effect if the ends of the blades are rounded, preferably with a radius of 0.1 mm and/or if the cutting edges themselves are rounded, preferably with a radius of 0.01 mm.
According to another embodiment of the invention the blades consist of a hard metal body, CBN body or PKD body.
Other advantages and illustrated embodiments are described in the following with reference to the drawings. Therein:
The milling cutter head 10 consists substantially of a base body 10 in which three blade holders 11 with welded-on blades 12 are mounted. The blade holders 11 are inserted in bores extending parallel to a longitudinal axis 13. Other bores provided in the base body 10 extend substantially radially or at a slight angle thereto and accommodate respective bore wedges 14 that can each be moved in radially by a respective adjusting screw 15, preferably a double-threaded screw. As is apparent from
The difference between the blades 12 running at least substantially in a straight line and angled blades 12′ becomes clear in particular from
In the illustrated embodiment shown only one blade 12′ is angled back over the length b, whereas on the other hand the two other blades 12 (except for the short angling b and the edge rounding) run in a straight line.
However, according to an alternative those milling cutter heads are also covered in which two or three blades are angled according to the views in
The illustrated miller is especially suitable for orthogonal rotary milling work but also for the fine milling of aluminum workpieces. A particular application possibility for the miller according to the invention is the finish machining of crankshafts (instead of grinding), in particular to replace wet grinding that has the disadvantage that contaminated cooling lubricants must be disposed of in an expensive and labor-intensive manner. The milling cutter head according to the invention meets high requirements of rotation, surface quality, convexity of the bearing seat and permits an economical manufacture of its parts.
Number | Date | Country | Kind |
---|---|---|---|
20 2005 018 963 U | Dec 2005 | DE | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
---|---|---|---|---|
PCT/DE2006/002043 | 11/21/2006 | WO | 00 | 4/29/2008 |
Publishing Document | Publishing Date | Country | Kind |
---|---|---|---|
WO2007/062622 | 6/7/2007 | WO | A |
Number | Name | Date | Kind |
---|---|---|---|
4930945 | Arai et al. | Jun 1990 | A |
5199827 | Pantzar | Apr 1993 | A |
5971676 | Kojima | Oct 1999 | A |
7040844 | Daiguji | May 2006 | B1 |
7520699 | Ballas et al. | Apr 2009 | B2 |
20020192041 | Wallstrom | Dec 2002 | A1 |
20040223816 | Sheffler et al. | Nov 2004 | A1 |
Number | Date | Country |
---|---|---|
4003862 | Feb 1991 | DE |
2005111651 | Apr 2005 | JP |
Number | Date | Country | |
---|---|---|---|
20080279643 A1 | Nov 2008 | US |