Cutting apparatus employing a magnet
10279497 ยท 2019-05-07
Assignee
Inventors
- Robert E. Jones (College Place, WA, US)
- Kenneth G. Carambot (Milton-Freewater, OR, US)
- Louis D. Jausoro (Walla Walla, WA, US)
Cpc classification
B26D1/36
PERFORMING OPERATIONS; TRANSPORTING
B26D1/11
PERFORMING OPERATIONS; TRANSPORTING
B26D2210/02
PERFORMING OPERATIONS; TRANSPORTING
B26D7/26
PERFORMING OPERATIONS; TRANSPORTING
International classification
B26D1/11
PERFORMING OPERATIONS; TRANSPORTING
B26D1/36
PERFORMING OPERATIONS; TRANSPORTING
B26D7/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A cutting apparatus is disclosed which includes a cutter knife which is reciprocally moveable along a path of travel; a track member mounted adjacent to the cutter knife and which mechanically cooperates with the cutter knife so as to define, at least in part, a first non-cutting position, and a second cutting position for the cutter knife; and a magnet is mounted in a location on the track member and which releasably, magnetically restrains the cutter knife when the cutter knife is in the first non-cutting position.
Claims
1. A cutting apparatus comprising: a cutter knife supported for reciprocal movement along a path of travel, and wherein the path of travel has a first end which locates the cutter knife in a retracted, non-cutting position, and a second end, and which locates the cutter knife in an extended, cutting position; a source of fluid pressure selective delivered to the cutter knife to move the cutter knife along the path of travel from the first end to the second end; a track member positioned adjacent to, and mechanically cooperating with the cutter knife, and which is effective in defining, at least in part, the reciprocal movement of the cutter knife along the path of travel; a magnet mounted on the track member and which is effective in magnetically attracting and restraining the cutter knife when the cutter knife is at the first end of the reciprocal path of travel; and wherein the track member has a generally circular shaped main body which defines a circumscribing peripheral edge, and wherein the main body further defines a first, substantially circular shaped track which is located in a radially inwardly spaced relationship relative to the circumscribing peripheral edge of the main body; and a second, arcuately shaped track which communicates with the first track, and which is further located in a region of the main body which is between the first track, and the circumscribing peripheral edge, and wherein the magnet is located in juxtaposed, radially inwardly spaced relation relative to the first substantially circular shaped track.
2. A cutting apparatus as claimed in claim 1, and wherein the second, arcuately shaped track has a first end which diverges in a radially outward direction away from the first track, and towards the circumscribing peripheral edge of the main body, and an opposite, second end, and which converges with the first track, and further is oriented in a generally radially inward direction, and away from the circumscribing peripheral edge of the main body, and wherein the cutter knife, when traveling along the first track remains in the first, retracted, non-cutting position, and wherein upon the selective application of fluid pressure to the cutter knife, the cutter knife diverges from the first track, and into the second track, and is further carried along the path of travel into the second, extended cutting position, and then travels back to the first non-cutting position when the cutter knife moves along the second track and then converges with the first track.
3. A cutting apparatus as claimed in claim 2, and wherein the magnet is oriented, at least in part, in a region of the circular shaped main body where the second track diverges from, and then converges back with, the first substantially circular shaped track.
4. A cutting apparatus as claimed in claim 3, and wherein the magnet has a first and second arcuately shaped portion, and wherein each portion of the magnet has a substantially uniform width dimension.
5. A cutting apparatus as claimed in claim 4, and wherein the first track has a circumferential dimension, and the first portion of the magnet occupies less than about 86 degrees of circumference of the first track; and the second portion of the magnet occupies less than about 37 degrees of circumference of the first track.
6. A cutting apparatus as claimed in claim 5, and wherein the first portion of the magnet is spaced from the second portion of the magnet by less than about 40 degrees of circumference of the first track.
7. A cutting apparatus as claimed in claim 5, and wherein the first and second portions of the magnet each exerts a magnetic force which is uniform along the length thereof, and wherein the magnetic force exerted by each of the first and second portions of the magnet is directed substantially radially inwardly relative to the first track.
8. A cutting apparatus as claimed in claim 7, and wherein first and second portions of the magnet each has a north and south pole, and wherein the north pole is located in a juxtaposed, closely spaced relationship relative to the first track, and the south pole is located radially inwardly, and in spaced relation relative to the first track.
9. A cutting apparatus as claimed in claim 8, and wherein the first and second portions of the magnet are formed of a plurality of magnets which are juxtaposed, end-to-end, relative to each other.
10. A cutting apparatus as claimed in claim 8, and wherein the cutter knife is formed, at least in part, of a metal which is magnetically attracted by the first and second portions of the magnet.
11. A cutting apparatus as claimed in claim 2, and wherein the respective first and second tracks each have a given width, and depth dimension, and are defined, at least in part, by an intermediate region of the circular shaped main body which is located between the respective first and second tracks, and wherein the intermediate region has opposite first and second ends, a mid-point located between the first and second ends, and a diminishing width dimension when measured from the mid-point, and in the direction of the first and second ends thereof, and wherein the intermediate region has a height dimension which diminishes when measured in a direction extending from the mid-point and towards the first end thereof, and a substantially uniform height dimension when measured from the mid-point, and in the direction of the second end of the intermediate region.
12. A cutting apparatus as claimed in claim 11, and wherein the intermediate region is further defined by opposite, curved side walls each having a different degree of curvature, and wherein the intermediate region further defines a cavity which matingly receives a releasable, curved, camming insert which cooperates with, and forms a portion of the respective curved sidewalls of the intermediate region, and wherein the track member is fabricated from a first material having a predetermined wear factor, and wherein the curved, camming insert, is fabricated, at least in part, of a second material which has a wear factor which is greater than the first material.
13. A cutting apparatus as claimed in claim 11, and wherein the path of travel of the cutting knife extends through an area of the circular main body where the second track diverges from the first track, and wherein the area where the path of travel extends has a width dimension of less than about 30 mm.
14. A cutting apparatus as claimed in claim 11, and further comprising a cutter knife removal region which is defined by the circular shaped main body, and which further extends from the peripheral edge thereof, and communicates with the second track at a location which is near where the second track diverges from the first track.
15. A cutting apparatus, comprising: a cutter knife which has a lea shaped main body with a foot-shaped first end, and wherein the foot-shaped end defines a blade, and a lea shaft extends from the first end, and terminates at a second end, and wherein the cutter knife further has a cam follower which extends perpendicularly, outwardly, relative to the leg shaft, and wherein the cam follower has a given length dimension, and wherein the cutter knife is supported for reciprocal movement along a path of travel which has a first end which locates the cutter knife in a retracted, non-cutting position, and a second end, and which locates the cutter knife in an extended, cutting position; a knife support member which defines at least one cutter knife station, and which reciprocally supports the cutter knife when the cutter knife moves along the path of travel; a source of fluid pressure which is selectively delivered to the second end of the cutter knife, and which moves the cutter knife along the path of travel from the first end to the second and thereof; a track member positioned adjacent to the knife support member, and wherein the track member further cooperates with the cam follower of the cutter knife, and is further effective in defining, at least in part, the reciprocal movement of the cutter knife along the path of travel; a magnet mounted on the track member, and which is effective in magnetically attracting and restraining the cutter knife when the cutter knife is at the first end of the reciprocal path of travel, and wherein the magnet has a first and second portion which are arcuately shaped, and which are further spaced a given distance apart, and wherein the first and second portions of the magnet have a substantially uniform width dimension, and emit a substantially uniform magnetic force; and wherein the track member has a generally circular shaped main body which defines a circumscribing peripheral edge, and wherein the main body further defines a first, substantially circular shaped track which is located in a radially inwardly spaced relationship relative to the circumscribing peripheral edge of the main body; and a second, arcuately shaped track which communicates with the first track, and which is further located in a region of the main body which is between the first track, and the circumscribing peripheral edge, and wherein the magnet is located in juxtaposed, radially inwardly spaced relation relative to the first substantially circular shaped track.
16. A cutting assembly as claimed in claim 15, and wherein the second, arcuately shaped track has a first end which diverges in a generally radial outward direction away from the first track, and towards the circumscribing peripheral edge of the main body, and an opposite, second end which converges with the first track, and further is located in a generally radial inward direction, and is spaced from the circumscribing peripheral edge of the main body, and wherein the cutter knife, when traveling along the first track remains in the first, retracted, non-cutting position, and wherein upon the selective application of fluid pressure to the second end of the cutter knife, the cutter knife diverges from the first track, and into the second track, and is further carried along the path of travel into the second, extended cutting position, and then travels back to the first non-cutting position when the cutter knife converges with the first track.
17. A cutting assembly as claimed in claim 16, and wherein the magnet is oriented, at least in part, in a region of the circular shaped main body where the second track diverges from, and then converges back with the first substantially circular shape track, and wherein the first track has a circumferential dimension, and the first portion of the magnet occupies less than about 86 degrees of circumference of the first track; and the second portion of the magnet occupies less than about 37 degrees of circumference of the first track; and the first portion of the magnet is spaced from the second portion of the magnet by less than about 40 degrees of circumference of the first track.
18. A cutting apparatus as claimed in claim 17, and wherein, the first and second portions of the magnet each has a north and south pole, and wherein the north pole is located in a juxtaposed, closely spaced relationship relative to the first track, and the south pole is located radially inwardly, and in spaced relation relative to the first track.
19. A cutting apparatus as claimed in claim 18, and wherein the respective first and second tracks each have a given width, and depth dimension, and are defined, at least in part, by an intermediate region of the circular shaped main body which is located between the respective first and second tracks, and wherein the intermediate region has opposite first and second ends, a mid-point located between the first and second ends, and a diminishing width dimension when measured from the mid-point and in the direction of the first and second ends thereof, and wherein the intermediate region has a height dimension which diminishes when measured in a direction extending from the mid-point and in the direction of the first end thereof, and a substantially uniform height dimension when measured from the mid-point, and in the direction of the second end of the intermediate region.
20. A cutting apparatus as claimed in claim 19, and wherein the intermediate region is further defined by opposite, curved side walls each having a different degree of curvature, and wherein the intermediate region further defines a cavity which matingly receives a releasable, curved, camming insert which cooperates with, and forms a portion of the respective curved sidewalls of the intermediate region, and wherein the track member is fabricated from a first material having a predetermined wear factor, and wherein the curved, camming insert, is fabricated, at least in part, of a second material which has a wear factor which is more desirable than the first material.
21. A cutting apparatus as claimed in claim 19, and wherein the path of travel of the cutting knife extends through an area of the circular main body where the second track diverges from the first track, and wherein the area, where the path of travel extends, has a width dimension of less than about 30 mm.
22. A cutting apparatus as claimed in claim 19, and further comprising a cutter knife removal region which is defined by the circular shaped main body, and which extends from the peripheral edge thereof, and communicates with the second track at a location which is near where the second track diverges from the first track.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Preferred embodiments of the invention are described below with reference to the following accompanying drawings.
(2)
(3)
(4)
(5)
(6)
(7)
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
(8) This disclosure of the invention is submitted in furtherance of the constitutional purposes of the U.S. patent Laws to promote the progress of science and useful arts (Article 1, Section 8).
(9) Referring now to a study of
(10) A circular knife support ring 20 which is similar in structure to that described in the above-identified U.S. patents is employed in the cutting apparatus 10 of the present invention. (
(11) As seen in the drawings, mentioned above, it should be understood that the annular track member 40 further defines a second arcuately shaped track or race 52 which has a first end 53 which diverges from the first circular track 51, and further has a second or converging end 54 which rejoins the first circular track at a predetermined location which is spaced from the first end 53.
(12) Referring now to
(13) The annular shaped track member 40, and the main body 41, thereof, defines, in part, an intermediate region 80 which is located between the first and second tracks 51 and 52, respectively, and further defines, in part, portions of the first and second track 51, 52 as described hereinafter (
(14) Referring now to
(15) Referring now to
(16) In the arrangement as seen in the drawings, it should be appreciated that the first and second portions of the magnet 111 and 112, respectively, are operable to magnetically restrain the individual cutter knives 130 in the first track 51 in the absence of the application of selective fluid pressure 14 which would urge the individual cutter knives 130 along the reciprocal path of travel 140 from the first end 141 to the second end 142 as described, above. Further, and with regard to the second portion 112 of the magnet 110, this magnet 112 is operable not only to magnetically attract cutter knives 130 which are converging with the first track 51 after traveling along the second track 52, but further is operable to prevent inadvertent movement of cutter knives moving along the first track 51 to a location spaced from the first track because of the gap or space presented by the convergence of the first and second tracks at the second end 82 of the intermediate region 80. This movement might be caused by the effect of centrifugal force acting on the respective cutting knives. In addition to this function, the second portion 112 of the magnet 110 also functions to retain the cutter knives in the first track 51 when the cutting apparatus is rotated backwards when a user is clearing a malfunction, or removing broken or damaged cutting knife. It should be appreciated that the individual cutter knives 130 are formed, at least in part, of a material which is magnetically attracted by the first and second portions of the magnet 110. The magnetic force exerted by the first and second portions of the magnet 111 and 112 respectively principally attract the projection or cam follower 136 in contrast to the teachings of the earlier prior art patent where the magnet was effective to attract both the projection as well as the foot shaped end of the cutter knife. The preferred form of the cutter knives 130 are typically fabricated from nylon which has a filler material formed of a small percentage of a magnetically attractive metal which allows the respective cutter knives to magnetically cooperate with the magnet 110 as described, above. Stainless steel may also be employed. The respective cutter knives 130 and have a length dimension of about 55 mm, and a thickness of about 1.5 mm.
Operation
(17) The operation of the described embodiment of the present invention is believed to be readily apparent and briefly summarized at this point.
(18) In its broadest aspect the present invention 10 relates to a cutting apparatus which includes a cutter knife 130 which is supported for reciprocal movement along a path of travel 140. The path of travel 140 has a first end 141 which locates the cutter knife 130 in a retracted, non-cutting position, and a second end 142 and which locates the cutter knife in an extended, cutting position. The present invention includes a source of fluid pressure 14 which is selectively delivered to the cutter knife 130 to move the cutter knife 130 along the path of travel 140 from the first end to the second end 141 and 142 respectively. The present invention 10 also includes a track member 40 which is positioned adjacent to, and mechanically cooperates with the cutter knife 130, and which is further effective in defining, at least in part, the reciprocal movement of the cutter knife along the path of travel 140. Further, and in its broadest aspect, the present invention 10 includes a magnet 110 which is located on the track member 40, and which further is effective in magnetically attracting, and restraining, the cutter knife 130 when the cutter knife is at the first end 141 of the reciprocal path of travel 140. In its broadest aspect the track member 40 has a generally circular shape main body 41 which defines a circumscribing peripheral edge 42. The main body 41 further defines a first substantially circular shaped track 51 which is located in a radially inwardly spaced relationship relative to the circumscribing peripheral edge 42 of the main body 41. A second, arcuately shaped track 52 communicates with the first track 51, and is further located in a region of the main body 41 which is between the first track and the circumscribing peripheral edge 42. The magnet 110 is located in juxtaposed, radially inwardly spaced relation relative to the first substantially shaped track 51.
(19) The second, arcuately shaped track 52 has a first end 53 which diverges in a radially outward direction away from the first track 51, and towards the circumscribing peripheral edge 42 of the main body 41. Still further the second track 52 has an opposite second end 54, and which converges with the first track 51, and further is oriented in a generally radially inward direction, and away from the circumscribing peripheral edge 42 of the main body 41. The cutter knife 130 when traveling along the first track 51 remains in the first, retracted or non-cutting position 141, and upon the selective application of fluid pressure 14 to the cutter knife 130, the cutter knife 130 diverges from the first track 51 and into the second track 52, and is further carried along the path of travel 140 into the second extended cutting position 142 and then travels or otherwise returns back to the first non-cutting position 141 when the cutter knife 30 moves along the second track and then converges with the first track 51. This movement of the cutter knife 130 is effected by the rotation of the knife support ring 20 relative to the non-rotatable axle 11 as earlier disclosed in this reference, and in the earlier patents.
(20) In its broadest aspect the cutting apparatus 10 includes a magnet 110 which is oriented, at least in part, in a region of the circular shaped main body 41 where the second track 52 diverges from, and then converges back with the first substantially circular shaped track 51. As earlier discussed, the magnet 110 has a first and second arcuately shaped portion 111 and 112 respectively. Each portion of the magnet has a substantially uniform width dimension. Still further, the first track 151 has a circumferential dimension and the first portion 111 of the magnet 110 occupies less than about 86 of the circumference of the first track. Further, the second portion 112 of the magnet 110 occupies less than about 37 of the circumference of the first track 51. It should be understood that the first portion 111 of the magnet 110 is spaced from the second portion 112 of the magnet 110 by less than about 40 of the circumference of the first track 51. The first and second portions of the magnet 111 and 112, respectively, each exerts a magnetic force which is uniform along the length thereof. The magnetic force exerted by each of the first and second portions 111 and 112 of the magnet 110 is directed substantially radially inwardly relative to the first track 51. In the arrangement as seen in the drawings the first and second portions of the magnet 111 and 112 respectively each has a north and southpole labeled 113 and 114 respectively. The northpole 113 is located in a juxtaposed, closely spaced relationship relative to the first track 51; and the southpole 114 is located radially inwardly, and in spaced relation relative to the first track 57. The first and second portions of the magnet 111 and 112, respectively, in one form of the invention are formed of a plurality of magnets 115 which are juxtaposed, end-to-end relative to each other. As earlier discussed the cutter knife 130 is formed, at least in part, of a metal which is magnetically attracted by the first and second portions of the magnet 111 and 112 respectively.
(21) In its broadest aspect, the first and second tracks, 51 and 52, as defined by the annular shaped track member 40, each have a given width, and depth dimension, and are defined, at least in part, by an intermediate region 80 of the circular shaped main body 41, and which is located between the respective first and second tracks 51 and 52, respectively. The intermediate region 80 of the main body 40 has opposite first and second ends 81 and 82, respectively, and a midpoint 83 which is located between the first and second ends. The intermediate region has a diminishing width dimension when measured from the midpoint 83, and in the direction of the first and second ends 81 and 82 thereof. The intermediate region 80 has a height dimension which diminishes when measured in a direction extending from the midpoint and towards the first end thereof, and a substantially uniform height dimension when measured from the midpoint 83 and the direction of the second end 82 of the intermediate region 80.
(22) The intermediate region 80 is further defined by opposite curved sidewalls 84 and 85 respectively. Each of the curved sidewalls have a different degree of curvature, and the immediate region 80 further defines a cavity 90 which matingly receives a releasable, curved camming insert 90. The camming insert 90 cooperates with, and forms a portion of the respective curved sidewalls 84 and 85 of the intermediate region 80. The track member 40, in one form of the invention, is fabricated from a first material having a predetermined hardness, durability and/or functional compatibility, hereinafter defined as a wear factor. Further, the curved camming insert 90, is fabricated, at least in part, of a second material which has a wear factor which is greater than or more desirable than the first material. In the present invention, the path of travel 140 of the respective cutting knives 130 extends through an area of the circular main body 70 where the second track 52 diverges from the first track 51. The area where the path of travel 140 extends has a width dimension of less than about 30 mm. In the present arrangement the invention 10 includes a cutter knife removal region 60 which is defined by the circular shaped main body 41, and which extends from the peripheral edge 42 thereof and communicates with the second track 52 at a location which is near where the second track 52 diverges from the first track 51.
(23) Therefore it will be seen that the cutting apparatus of the present invention provides a convenient means whereby the perceived shortcomings in the performance of the prior art device as seen in U.S. Pat. No. 4,520,702 are effectively overcome and thereby provides a cutting assembly having an increased robustness and reliability exceeding that which has been experienced, heretofore. The invention further provides increased operating speeds over that which may be achieved by utilizing the apparatus as seen in U.S. Pat. No. 8,978,530. As noted above, the teachings of both of these patents are incorporated by reference, herein.
(24) In compliance with the statute, the invention has been described in language more or less specific as to structural and methodical features. It is to be understood, however that the present invention is not limited to the specific features shown and described, since the means herein disclosed comprise preferred forms of putting the invention into effect. The invention is, therefore, claimed in any of its forms or modifications within the proper scope of the appended claims appropriately interpreted in accordance with the Doctrine of Equivalence.