The present application is National Phase of International Application No. PCT/JP2012/065418 filed Jun. 15, 2012, and claims priority from Japanese Application No. 2011-134905 filed Jun. 17, 2011.
The present invention relates to a slide structure.
Recently, a slide structure is being developed, in which a first member maintaining a constant width and a second member covering at least two width-direction side portions of the first member are relatively slidably assembled, and an urging device is interposed between the first member and the second member.
For example, in Patent Document 1, a slide structure for an armrest in a console box is disclosed, in which two width-direction (lateral-direction) side portions of a slider (a first member) are slidably supported by a pair of side-rails, (second members) attached to a vehicle body side (a box main body side), and an urging device is respectively interposed between each side-rail and each side portion in the width direction of the slider. According to the Patent Document 1, wobbling in the width direction of the slider can be controlled so as to obtain a stable usability.
Patent Document 1: Japanese Unexamined Patent Application Publication No. 2005-254881
In the slide structure in the Patent Document 1, however, although the wobbling in the width direction of the slider (the first member) can be controlled, the wobbling in a direction (an up-and-down direction) facing a plate face of the slider is not considered, so that the wobbling in that direction cannot be controlled. Consequently, if the wobbling in the direction facing the plate face of the slider is attempted to be controlled as well, a specialized urging device thereof is newly required so as to increase the number of components.
The present invention is made in view of the aforementioned circumstances, and an object of the present invention is to provide a slide structure which can control the wobbling in the width direction of the first member and in the direction facing the plate face of the first member without increasing the number of components.
In order to obtain the aforementioned object, the present invention is a slide structure in which a first member maintaining a constant width is slidably assembled relative to a second member covering at least two side portions of the first member in a width direction, and an urging device is interposed between the first member and the second member. In at least one member of either the first member or the second member, there is provided an inclined face inclining relative to the width direction of the first member at a portion wherein the first member and the second member slide. In the other member of either the first member or the second member, the aforementioned urging device is interposed between a portion facing the inclined face of the aforementioned one member and the inclined face so as to have a structure urged in a direction to separate the facing portion and the inclined face from each other.
In the slide structure according to the present invention, if an angle of the inclined face is set approximately at 45 degrees relative to the width direction of the first member, an urging force of the urging device can be equally divided into a component force in the width direction of the first member and a component force in a direction facing a plate face of the first member so as to effectively control wobbling in the width direction of the first member and in the direction facing the plate face of the first member.
In the slide structure according to the present invention, if the urging device is detachably provided in at least one of either the first or second member, the urging device can be appropriately replaced by an urging device having a different urging force so as to easily adjust the urging force.
In the slide structure according to the present invention, if the urging device includes a pressing piece displaceably supported in at least one of either the first or second member, and a spring urging the pressing piece toward the other member, an urging force is generated by using the pressing piece and the spring. Namely, the wobbling in the width direction of the first member and in the direction facing the plate face of the first member can be controlled.
In the slide structure according to the present invention, if the urging device is a flexure piece integrally provided in at least one of either the first or second member, the number of management components can be reduced so as to ease management burdens.
If the slide structure according to the present invention is used by being interposed between a box main body and a lid body forming an armrest on an upper side of the box main body in a console box, it is preferable in the armrest which slides.
According to the present invention, based on the inclined face of at least one member of either the first member or the second member, the urging force of the urging device can be divided into the component force in the width direction of the first member and the component force in the direction facing the plate face of the first member so as to allow each component force thereof to act between the first and second members. Consequently, even if an urging device for controlling the wobbling in the direction facing the plate face of the first member is not newly provided (even if the number of components is not increased), due to both component forces described hereinabove, the wobbling can be controlled not only in the width direction of the first member but also in the direction facing the plate face of the first member.
Hereinafter, an embodiment of the present invention will be explained with reference to attached drawings.
In
As shown in
In the box main body 2, there is provided with a base body 7 (a first member) to be formed as an upper wall portion in an upper portion thereof. The base body 7 is formed as a long plate body corresponding to the opening 6 of the housing portion 5, and in a back portion thereof (a right side in
As shown in
Also, as shown in
As shown in
As shown in
As shown in
The pressing piece 65 integrally includes an abutment plate portion 67 having a plate shape (a band plate shape); a pair of locking leg portions 68; and a guide axis portion 69. The abutment plate portion 67 is formed in the band plate shape to correspond to the recess 61, and the abutment plate portion 67 thereof covers an opening of the recess 61 in a state wherein a longitudinal direction thereof faces in the front-back direction of the base body 7.
The pair of locking leg portions 68 droops from both sides in the longitudinal direction of the abutment plate portion 67 so as to be entered into the recess 61. Claw portions 68a of the pair of locking leg portions 68 thereof are detachably locked in the pair of locking holes 64 of the bottom portion 61a of the recess. Thereby, the pressing piece 65 is controlled from being detached from an inside of the recess 61. Also in a range of not receiving a control by a locking relationship (an abutment relationship) between the locking hole 64 (a peripheral border portion) and the claw portion 68a of the locking leg portion 68 (in a range wherein the locking leg portion 68 can slide the locking hole 64), the pressing piece 65 can be displaced inside and outside the recess 61 in the vertical direction relative to the slide guide face 60. Also, since the pressing piece 65 is made of resin, each locking leg portion 68 can bend, and based on that, if a pull-out force with a predetermined degree or above acts on the pressing piece 65, the claw portion 68a of each locking leg portion 68 comes out of the peripheral border portion of the locking hole 64, so that the pressing piece 65 can be pulled out.
The guide axis portion 69 is provided in a center portion in a longitudinal direction of the abutment plate portion 67 on a back face of the abutment plate portion 67. The guide axis portion 69 thereof extends in a direction departing from the back face of the abutment plate portion 67. The guide axis portion 69 is slidably inserted to pass through the aforementioned guide hole 63, and by a guide operation of the guide axis portion 69 and the guide hole 63, the pressing piece 65 (the abutment plate portion 67) is smoothly displaced inside and outside the recess 61. In the present embodiment, a pin 69 having a head portion 69a is used as the guide axis portion 69. Consequently, the head portion 69a having a curved face shape of the pin 69 thereof is positioned in a state protruding to a surface of the abutment plate portion 67.
The coil spring 66 is provided to be placed between the abutment plate portion 67 and the recess bottom portion 61a in a state wherein the guide axis portion 69 has been inserted inside the coil spring 66. The coil spring 66 provides an urging force in a direction away from the recess bottom portion 61a relative to the abutment plate portion 67. By the urging force of the coil spring 66, when an external force does not act on the abutment plate portion 67, the claw portion 68a of the locking leg portion 68 becomes a state locked in the peripheral border portion of the locking hole 64, and at that time, the surface of the abutment plate portion 67 thereof is positioned slightly outward more than the slide guide face 60 together with the head portion 69a.
In addition to that, as shown in
As shown in
The slide main body 22 is formed approximately as a long plate body corresponding to the base body 7, and on both width-direction sides of the slide main body 22, there are respectively provided drooping wall portions 24. In an inner face of each drooping wall portion 24, there is respectively provided a guide portion 25 in such a way as to extend in a front-back direction (a longitudinal direction), and as shown in
In that case, as shown in
In
As shown in
Also, as shown in
The engagement piece 29 is disposed in such a way that a movement area thereof accompanied by a slide of the slide main body 22 faces relative to the first positioning recess 15 and the second positioning recess 16. Thereby, in a state of a non-operation time of the operation button 40, when the lower end portion of the engagement-piece main body portion 30 is positioned in a position facing an inside of the first positioning recess 15, the lower end portion of the engagement-piece main body portion 30 enters into the first positioning recess 15, and by an engagement relationship between the lower end portion of the engagement-piece main body portion 30 and inner walls (front and back walls) of the first positioning recess 15, the lid body 3 is held in a state overlapped with the base body 7 approximately in whole (a state in
Therefore, in such console box 1, when the lower end portion of the engagement-piece main body portion 30 has entered into the first positioning recess 15, the lid body 3 is positioned in the state overlapped with base body 7 approximately in whole, and when the lower end portion of the engagement-piece main body portion 30 has protruded into the second positioning recess 16, the lid body 3 is positioned in a protrusion state protruding forward more than the base body 7. Each state thereof is held as long as the engagement piece 29 is prevented from exiting from the inside of each positioning recess 15 (16) by pressing the operation button 40, and the lid body 3 is held by a strong positioning held state. On the other hand, regarding a positioning adjustment of the lid body 3, by pressing the operation button 40, the engagement piece 29 in an entered state exits from the positioning recess (the first or second positioning recess 16), and while maintaining that state, if a slide force is provided to the lid body 3, the lid body 3 smoothly slides relative to the base body 7. Consequently, by moving the engagement piece 29 of the lid body 3 to another positioning recess (the second or first positioning recess 15), the positioning at that portion can be easily carried out.
Also, between the slide inclined face 70 of the inner face of the drooping wall portion 24 of the slide main body 22 and the slide guide face 60, there is interposed the pressing piece 65 (the urging structure 62) on both width-direction sides of the base body 7. Since the pressing piece 65 (the abutment plate portion 67) retracts to the inside of the recess against the coil spring 66, the repulsion force of the coil spring 66 vertically acts on the slide inclined face 70 as the urging force, and the urging force thereof acts as the upward component force and the width-direction outward component force. Consequently, the lid body 3 (the slide main body 22) can control the wobbling in the up-and-down direction and the width direction thereof at the slide time as well as the positioning time only by the urging structure 62 without providing both the urging structure 62 for controlling the wobbling in the up-and-down direction and an urging structure for controlling the wobbling in the width direction thereof.
Especially, in the present embodiment, since the slide inclined face 70 and the slide guide face 60 are set approximately at 45 degrees relative to the horizontal face, the urging force acts on the slide main body 22 equally in the up-and-down direction and outward on both width-direction sides thereof so as to reliably and effectively control the wobbling of the lid body 3.
Furthermore, when the urging force is provided to the slide inclined face 70, the head portion 69a having the curved face shape abuts against the slide inclined face 70, so that a sliding resistance can be reduced more than in a case wherein a whole abutment plate portion 67 abuts against the slide inclined face 70. Consequently, while controlling the wobbling, a decrease of operability of an occupant can be controlled.
Also, when an operator provides a pull-out force to the pressing piece 65, and unlocks the claw portion of the locking leg portion 68 and the peripheral border portion of the locking hole 64, the pressing piece 65 can be removed from the recess 61. Consequently, the coil spring 66 can be easily replaced with a spring having a different spring coefficient, and accompanied by that, an urging force by the pressing piece 65 can be easily adjusted.
In the embodiment in
Namely, the flexure piece 73 having the cantilever shape is integrally provided respectively in each slide guide face 60, and when the guide portions 25 on both width-direction sides in the slide main body 22 are slidably fitted in both side portions of the base body 7, the flexure piece 73 abuts against the slide inclined face 70 of the slide main body 22 and is bended so as to generate a repulsive urging force. The urging force acts on the slide main body 22 (the slide inclined face 70) as in the case of the above-mentioned embodiment, so that the lid body 3 (the slide main body 22) is controlled from wobbling in the up-and-down direction and the width direction thereof.
The embodiments have been explained hereinbefore, however, in the present invention, the following aspects will be included.
(1) Only one of either the slide guide face 60 or the slide inclined face 70 has the inclined face.
(2) The urging structure 62 is provided on a slide main body 22 side.
(3) In place of the head portion 69a, the surface of the abutment plate portion 67 forming the pressing piece 65 is curved, and the curved abutment plate portion 67 thereof abuts against the slide inclined face 70.
(4) The slide structure according to the present invention is applied to something other than the console box.
An object of the present invention implicitly includes providing of an embodiment which is not limited to the specified ones and is described as being substantially preferred or as an advantage.
Number | Date | Country | Kind |
---|---|---|---|
2011-134905 | Jun 2011 | JP | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
---|---|---|---|---|
PCT/JP2012/065418 | 6/15/2012 | WO | 00 | 1/24/2014 |
Publishing Document | Publishing Date | Country | Kind |
---|---|---|---|
WO2012/173249 | 12/20/2012 | WO | A |
Number | Name | Date | Kind |
---|---|---|---|
6045173 | Tiesler et al. | Apr 2000 | A |
7029049 | Rockafellow et al. | Apr 2006 | B2 |
7731258 | Bazinski et al. | Jun 2010 | B2 |
8162369 | Tsuda et al. | Apr 2012 | B2 |
20030107228 | Ono et al. | Jun 2003 | A1 |
20040108740 | Maierholzner | Jun 2004 | A1 |
20070262632 | Cody et al. | Nov 2007 | A1 |
20090256376 | Schneider et al. | Oct 2009 | A1 |
20120049601 | von Rothkirch und Panthen et al. | Mar 2012 | A1 |
Number | Date | Country |
---|---|---|
S64-032250 | Feb 1989 | JP |
H06-010038 | Feb 1994 | JP |
2000-159026 | Jun 2000 | JP |
2004-058832 | Feb 2004 | JP |
2005-254881 | Sep 2005 | JP |
Entry |
---|
PCT, International Search Report for PCT/JP2012/065418. |
Number | Date | Country | |
---|---|---|---|
20140138975 A1 | May 2014 | US |