Field of the Invention
The invention relates to a cutting tool. More particularly, the invention pertains to a cutting tool for milling a rail top with a plurality of different types of cutting inserts helically mounted on the cutting tool.
Description of Related Art
Conventional cutting tools for milling a rail top consists of random spacing of the cutting inserts and a square pocket design for the chip flutes. As a result, conventional cutting tools experience increased tool pressure, shortened tool life, and less efficiency during the milling of the rail form. Thus, there is a need to provide a cutting tool that provides smoother, efficient milling of the rail form, while providing consistent tool pressure, thereby improving tool life.
The problem of providing a cutting tool with smoother, efficient milling of a rail form, while providing consistent tool pressure and improving tool life is solved by helically mounting a plurality of different types of cutting inserts on the cutting tool.
In one aspect of the invention, a cutting tool assembly for milling a rail top comprises a first section, and a second section mounted to the first section. Each section includes a plurality of insert-receiving pockets for receiving a plurality of different types of cutting inserts, wherein the plurality of different types of cutting inserts are arranged in a plurality of helical teeth separated by a helical chip flute.
In another aspect of the invention, a cutting tool assembly for milling a rail top comprises a first section, and a second section mounted to the first section. Each section includes a plurality of insert-receiving pockets for receiving a plurality of different types of cutting inserts arranged in a plurality of helical teeth separated by a helical chip flute, wherein the plurality of different types of cutting inserts comprises a first type of cutting insert having a top surface formed with a radius, R, a second type of cutting insert having a top surface formed with a first radius, R1, smaller than the radius, R, and a third type of cutting insert having a top surface formed with a second radius, R2, smaller than the first radius, R1.
In yet another aspect of the invention, a cutting tool assembly for milling a rail top comprises a first section, and a second section mounted to the first section. Each section includes a plurality of insert-receiving pockets for receiving a plurality of different types of cutting inserts arranged in a plurality of helical teeth separated by a helical chip flute, wherein the plurality of different types of cutting inserts comprises a first type of cutting insert having a top surface formed with a radius, R, a second type of cutting insert having a top surface formed with a first radius, R1, smaller than the radius, R, and a third type of cutting insert having a top surface formed with a second radius, R2, smaller than the first radius, R1. The first type of cutting insert contacts sidewalls, and contacts a top surface of the rail top in an area of a longitudinal plane of the cutting tool assembly, and the second type of cutting insert contacts a first curved portion of the rail top, and the third type of cutting insert contacts a second curved portion of the rail top during a milling operation.
While various embodiments of the invention are illustrated, the particular embodiments shown should not be construed to limit the claims. It is anticipated that various changes and modifications may be made without departing from the scope of this invention.
Referring now to
One section 12, 14, for example, the first section 12 may include a dowel pin 23 and a drive key 25 for ensuring that the first section 12 is properly mounted to the second section 14 (
In the illustrated embodiment, the cutting tool assembly 10 has a total of seven (7) rows of helically-mounted cutting inserts effectively forming helical teeth 44, each helical tooth 44 comprising a total of ten (10) cutting inserts 18, 20, 22. In the illustrated embodiment, each helical tooth 44 has a total of six (6) cutting inserts 18, two (2) cutting inserts 20, and two (2) cutting inserts 22 (some of the cutting inserts 18, 20, 22 may not be visible in
In one aspect of the invention, the cutting tool assembly 10 includes a plurality of helical teeth 44 comprising a plurality of different types of cutting inserts 18, 20, 22. As used herein, a helix (or helical) is a type of smooth space curve, i.e., a curve in three-dimensional space. It has the property that the tangent line at any point makes a constant angle with a fixed line called the axis. Examples of helices are coil springs and the handrails of spiral staircases. Helices can be either right-handed or left-handed. With the line of sight along the helix's axis, if a clockwise screwing motion moves the helix away from the observer, then it is called a right-handed helix; if towards the observer, then it is a left-handed helix. The pitch of a helix is the width of one complete helix turn, measured parallel to the axis of the helix.
In the illustrated embodiment, the helical teeth 44 are arranged in a left-handed orientation. However, it will be appreciated that the invention can be practiced with helical teeth 44 that are arranged in a right-handed orientation. In this embodiment, the second section 14 would be on the left hand side of the longitudinal plane 26, rather than on the right hand side as shown in
In the illustrated embodiment, the cutting tool assembly 10 has a total of seven (7) rows of helical teeth 44, each helical tooth 44 comprising a total of ten (10) cutting inserts 18, 20, 22. In the illustrated embodiment, each tooth 44 has a total of six (6) cutting inserts 18, two (2) cutting inserts 20, and two (2) cutting inserts 22 (some of the cutting inserts 18, 20, 22 may not be visible in
Referring now to
The cutting insert 18 includes a countersunk bore 76 extending between the first and second surfaces 48, 50 for accommodating a mounting screw 78 (
Referring now to
The cutting insert 20 includes a countersunk bore 100 extending between the top and bottom surfaces 84, 86 for accommodating the mounting screw 78 (
Referring now to
The cutting insert 22 includes a countersunk bore 120 extending between the top and bottom surfaces 104, 106 for accommodating the mounting screw 78 (
Referring now to
It has been demonstrated that the cutting tool assembly 10 tooling pressures tend to push the cutting tool assembly 10 into the spindle, rather than trying to pull the cutting tool out of the spindle. As a result, the cutting tool assembly 10 of the invention provides smoother, more efficient milling of the rail form, a consistent tool pressure during milling operation, improved tool life, and more efficient chip evacuation as compared to conventional cutting tools in which the cutting inserts are randomly arranged on the cutting tool with square pocket chip flutes. Specifically, tests have shown that the cutting tool assembly 10 of the invention reduced power consumption by 20-25% as compared to a conventional cutting tool with randomly-arranged cutting inserts and square pocket chip flutes.
The patents and publications referred to herein are hereby incorporated by reference.
Having described presently preferred embodiments the invention may be otherwise embodied within the scope of the appended claims.
Number | Name | Date | Kind |
---|---|---|---|
1495067 | Conklin | May 1924 | A |
4218159 | Langen | Aug 1980 | A |
4464086 | Bentjens | Aug 1984 | A |
5577954 | Okumura | Nov 1996 | A |
5890854 | Naumann | Apr 1999 | A |
8690494 | Fang | Apr 2014 | B2 |
9834891 | Hughes | Dec 2017 | B2 |
20030167613 | Rydberg | Sep 2003 | A1 |
20080206007 | Hughes | Aug 2008 | A1 |
20110243671 | Kretschmer | Oct 2011 | A1 |
20130189045 | Behrens | Jul 2013 | A1 |
20130202376 | Meyer | Aug 2013 | A1 |
20140072376 | Sjoo | Mar 2014 | A1 |
20140271012 | Hughes | Sep 2014 | A1 |
20150321276 | Sjoo | Nov 2015 | A1 |
20170252835 | Saffels | Sep 2017 | A1 |
Number | Date | Country |
---|---|---|
2413827 | Jan 2001 | CN |
201140294 | Oct 2008 | CN |
201309018 | Sep 2009 | CN |
201823994 | May 2011 | CN |
202539661 | Nov 2012 | CN |
103658799 | Mar 2014 | CN |
203817488 | Sep 2014 | CN |
107150140 | Sep 2017 | CN |
3222208 | Mar 1985 | DE |
19917478 | Aug 2004 | DE |
102006008093 | Sep 2007 | DE |
20122924 | Apr 2010 | DE |
102017103543 | Sep 2017 | DE |
1820902 | Jun 2011 | EP |
1983100 | Oct 2013 | EP |
2896745 | Jul 2015 | EP |
2279333 | Jul 2006 | RU |
Entry |
---|
Feb. 9, 2018 First Office Action. |
Nov. 25, 2019 Foreign OA. |
Number | Date | Country | |
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20170252835 A1 | Sep 2017 | US |