This invention relates to a roller arm unit for a vehicle sliding door and, more particularly to a cable pulley provided at a roller arm unit.
A power unit J of a powered slide device for moving the sliding door B may be disposed on the vehicle body A or, as shown in Figures, in an inner space of the sliding door B. In the latter case, as shown in FIGS. 1 to 3, two wire cables, that is, a door-opening cable K′ and a door-closing cable K″ are extending from the power unit J. Tip ends of the opening cable K′ and the closing cable K″ are anchored to positions in the vicinity of rear and front end portions of the center rail F, respectively, by way of a pulley L of the center arm H. When the power unit J is actuated to open the door, the opening cable K′ is taken up and the closing cable K″ is paid out, and the sliding door B is then moved in a door-opening direction (rightward in
Incidentally, as shown
In the above prior art, when the center roller arm H swings due to the influence of the curved portion N, the path length (hereinafter, it designates the path length between the roller arm H (pulley L) and the door B unless special references are made) of the take-up side cable becomes long, and the path length of the pay-out side cable short. And the increasing amount of the path length of the take-up side cable and the decreasing amount of the path length of the pay-out side cable are not matched with each other. Thus, the balance between the increasing and decreasing amounts of the path length is lost, and the smooth movement of the sliding door B will be obstructed.
On the contrary, U.S. Pat. No. 6,530,619 discloses another roller arm H, as shown in
In the above configuration, for example, when the roller arm H is swinging counterclockwise in response to the door-opening movement of the sliding door B, a contact surface (a take-up side contact angle) between the second pulley L″ and the opening cable K′ as a take-up cable becomes large gradually, and a contact surface (a pay-out side contact angle) between the second pulley L″ and the closing cable K″ as a pay-out cable becomes small gradually. Although the increase and decrease of the path lengths are not prevented, there is a good balance between the increase of the take-up side contact angle in respect to the second pulley L″ and the decrease of the pay-out side contact angle in respect to the second pulley L″. Therefore, a substantive fluctuation of total path length is prevented.
In the configuration of
Therefore, it is an object of the present invention to provide a roller arm unit in which undesirable load is applied to a wire drum when the roller arm unit is caused to be swung due to influence of a curved portion of guide rail.
The preferred embodiment of the present invention will now be explained with reference to the drawings.
It is possible that the roller arm unit 10 is rotatably mounted on the vehicle body 14 instead of the sliding door 17. In this configuration, the guide rail 15 is fixed onto the sliding door 17 and the power unit 18 is provided on the vehicle body 14. That is, in
The door-opening cable 20 and the door-closing cable 21 are intersected with each other between the first pulley 11 and the second pulley 12 and also intersected with each other between the second pulley 12 and the third pulley 13.
The center roller arm unit 10 is caused to be swung counterclockwise in
A pulley unit 30 is fixed to the lower portion of the roller arm unit 10 with screws 31. The pulley unit 30 has an upper case 32 and lower case 33, and said pulleys 11, 12 and 13 are rotatably supported inside the pulley unit by pulley shafts 34, 35 and 36, respectively. The arrangement of the pulleys 11, 12 and 13 may be comparatively free as long as both the door-opening cable 20 and the door-closing cable 21 always come into contact with each of pulleys 11, 12 and 13. Thus, it is not necessary to align the pulleys 11, 12 and 13.
A cable holder 38 is attached to an inner surface of the panel 23 through a rubber seal 37, and a base or inner side portion of the pulley bracket 39 is fixed to the cable holder 38. A front or outer side portion of the pulley bracket 39 is fixed to the upper case 32. The pulley bracket 39 is fixedly provided with a vertically extending support cylinder 40. Into a lower portion of the support cylinder 40, the third pulley shaft 36 of the third pulley 13 is rotatably inserted, and the lower portion of the hinge shaft 25 is rotatably inserted into the upper portion of the support cylinder 40. Thereby, the third pulley shaft 36 and the hinge shaft 25 are held on the same axis.
An upper portion of a reinforcing plate 41 is fixed to the hinge bracket 24 by welding or the like, and an lower portion of the reinforcing plate 41 is fixed to the pulley bracket 39 by a screw 42 or the like.
This invention has the above-mentioned configuration, and when assembling it, first, the base portion of the first arm plate 26 of the roller arm unit 10 is rotatably mounted on the hinge bracket 24 by the hinge shaft 25, and the upper portion of the support cylinder 40 is engaged with the lower part of the hinge shaft 25 while the inner side portion of the pulley bracket 39 fixed to the pulley unit 30 is inserted inside the panel 23 through the opening of the panel 23, and the inner side portion of the pulley bracket 39 is then fixed to the cable holder 38. Subsequently, the pulley unit 30 is attached to the first arm plate 26 with screws 31, the upper portion of the reinforcing plate 41 is fixed the hinge bracket 24 by welding or the like, and the lower portion of the reinforcing plate 41 is then attached to the pulley bracket 39 by screw 42 or the like.
After the second arm plate 28 of the roller arm unit 10, as a sole component, is slidably engaged with the guide rail 15, and the second arm plate 28 is fixed to the first arm plate 26 with the bolts 27. Then, each tip end of the door-opening cable 20 and the door-closing cable 21 is fixed to the portions near the front and rear portions of the guide-rail 15.
Although the roller arm unit 10 is swung counterclockwise when the roller arm unit 10 passes through the curved portion 22 formed in the guide rail 15 in the opening direction and is swung clockwise when the roller arm unit 10 passes through the curved portion 22 in the closing direction, in the present invention, it is arranged that the contact surface (the take-up side contact angle) between the third pulley 13 and the cable 20 or 21 as a take-up side cable becomes small gradually and the contact surface (the pay-out side contact angle) between the third pulley 13 and the cable 21 or 20 as a pay-out side cable becomes large gradually. For this reason, the cable 20 or 21 as a take-up side cable is not pulled by the increasing of path length of the take-up side cable even if the roller arm unit 10 passes through the curved portion 22, and it can be prevented that an additional load is applied to the wire drum 19 (the power unit 18). Moreover, since the sliding resistance of the sliding door 17 becomes maximum when the roller arm unit 10 is passing through the curved portion 22, the prevention of the increase of the resistance at the time of the roller arm unit 10 passing through the curved portion 22 carries out the stable sliding movement of the slide door 17, and gives a surplus power to the power unit 18.
In the second embodiment of the present invention as shown in
In this embodiment, when the roller arm unit 10 is swung, the contact surface (the take-up side contact angle) between the second pulley 12 and the cable 20 or 21 as a take-up side cable becomes small gradually and the contact surface (the pay-out side contact angle) between the second pulley 12 and the cable 21 or 20 as a pay-out side cable becomes large gradually.
Advantages
In this invention, even if the roller arm unit 10 is swung due to due to influence of the curved portion 22, the total path length does not change, and the path length of the take-up side cable becomes long contrary to the prior art device. Therefore, it can be prevented that the swinging movement of the roller arm unit 10 applies the wire drum 19 (the power unit 18) to undesirable load.
Number | Date | Country | Kind |
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2004-186367 | Jun 2004 | JP | national |