Cam device

Machine element or mechanism – Mechanical movements – Rotary to or from reciprocating or oscillating

Reexamination Certificate

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Details

C074S569000

Reexamination Certificate

active

06758109

ABSTRACT:

FIELD OF THE INVENTION
The present invention relates to a cam device (for example, a positive cam) including a rotatable cam follower (for example, a roller) moving along a groove.
BACKGROUND OF THE INVENTION
U.S. Pat. No. 6,073,503 discloses a cam device comprising a cam, a follower and elastic member for causing the follower to follow the cam. This type of cam is not suitable for high-speed movement.
FIG. 6
shows a positive cam of the type described above. As shown in
FIG. 6
, a cam follower
200
tends to be rotated in opposite directions when it is in contact with a first sidewall
101
of a cam groove
100
and when it is in contact with a second sidewall
102
thereof. To state more specifically, when the cam follower
200
moves relatively in the direction shown by arrow X along the cam groove
100
, at a first position P
1
, the cam follower
200
moves forward while rotating clockwise keeping contact with the first sidewall
101
. At a second position P
2
, however, the cam follower
200
moves forward while rotating counterclockwise keeping contact with the second sidewall
102
.
Since the direction of the rotation of the cam follower
200
is reversed during the movement from the first position P
1
to the second position P
2
, the cam follower
200
experiences sliding contact without rolling during this movement. The degree of friction due to sliding contact is markedly great compared with that due to rolling contact, and this sliding friction is noticeable when the cam follower moves at high speed.
An object of the present invention is to provide a cam device superior in durability with reduced friction.
SUMMARY OF THE INVENTION
In a first aspect of the present invention, in a cam device including a rotatable cam follower performing predetermined movement along a groove defined by first and second sidewalls, the cam follower includes individually rotatable first and second cam followers, and these cam followers are placed so that their axes extend in the same direction. Movement of the first cam follower is restricted by at least part of the first sidewall, and movement of the second cam follower is restricted by at least part of the second sidewall.
In a second aspect of the present invention, in a cam device including a rotatable cam follower performing predetermined movement along a groove defined by first and second sidewalls, the cam follower includes individually rotatable first and second cam followers, and these cam followers are placed so that their axes extend in the same direction. The first sidewall has a portion protruding toward the center of the groove, and the second sidewall has a portion protruding toward the center of the groove.
According to the first and second aspects of the present invention, the first cam follower is in contact with the first sidewall. Therefore, theoretically, the rotation direction of the first cam follower is prevented from changing even when the orientation of the cam changes in direction. Likewise, since the second cam follower is in contact with the second sidewall, the rotation direction of the second cam follower is theoretically prevented from changing even when the orientation of the cam changes in direction.
The first cam follower may come into contact with the second sidewall, or vice versa, for a brief period of time due to a disturbance (for example, due to an attaching of foreign matter and dirt). In such a case, however, since the first cam follower is prevented from rotating in reverse, the wear is small and thus the life of the cam device is prolonged.
According to another aspect of the present invention, the two cam followers are placed in one groove. Preferably, at least one of the sidewalls of the groove includes a lower sidewall face and an upper sidewall face, and these sidewall faces are displaced from each other with respect to the center of the groove.
Preferably, the two cam followers share the same rotation axis, that is, they are placed or situated coaxially. As the construction enabling the two cam followers to rotate individually, the first cam follower and/or the second cam follower preferably have a ball bearing or a roller bearing.
The first and second cam followers may be the same or different in thickness. In particular, one of the cam followers that wears more easily may be made thicker than the other cam follower. Alternatively, one of the cam followers that wears more easily may be made of a material more rigid (for example, higher in wear resistance) than the other cam follower. Otherwise, the wear of the two cam followers may be made uniform by performing a surface treatment, and such uniformity ensures constant outer-diameters of the first and second cam followers.
The first and/or second cam followers may have a barrel-shaped circumference.
Examples of the positive cam to which one of the present invention is applicable include cylindrical cams, columnar cams, conical cams, spherical cams, and face cams.


REFERENCES:
patent: 3883016 (1975-05-01), Simpatico
patent: 4069724 (1978-01-01), Sobotta
patent: 4186542 (1980-02-01), Oyagi
patent: 4415126 (1983-11-01), Nakazawa et al.
patent: 4836040 (1989-06-01), Brems
patent: 5025910 (1991-06-01), Lasure et al.
patent: 5040426 (1991-08-01), Wueller
patent: 5353909 (1994-10-01), Mukai et al.
patent: 5556504 (1996-09-01), Rajala et al.
patent: 5899404 (1999-05-01), McNeil et al.
patent: 5913490 (1999-06-01), McNeil et al.
patent: 6073503 (2000-06-01), Matsuno et al.
patent: 6390804 (2002-05-01), Akino et al.
patent: 2002/0125105 (2002-09-01), Nakakado
patent: 2003/0034226 (2003-02-01), Kato
patent: 415 399 (1966-06-01), None
patent: 1 062 929 (2000-12-01), None
patent: 001209381 (2002-05-01), None
patent: 58 037364 (1983-03-01), None
patent: 60 044655 (1985-03-01), None
patent: 63-317576 (1988-12-01), None
patent: 01-272803 (1989-10-01), None
patent: 03 199748 (1991-08-01), None
patent: 2000 337469 (2000-12-01), None
Translations of JP 3-199748, CH 415399, JP 6-44655, JP 58-037364 and JP 2000-337469.*
European Search Report (2 pgs).

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