This application is based on and claims priority from Korean Patent Application No. 10-2013-0027738, filed on Mar. 15, 2013 in the Korean Intellectual Property Office, the disclosure of which is incorporated herein in its entirety by reference.
The present disclosure relates to an invisible sliding door link structure, and more particularly, to a link structure for opening or closing an invisible sliding door capable of being operated without a rail structure of a vehicle body.
Generally, a vehicle provided with a sliding door has a structure in which the door is slid to be as close as possible to a vehicle body when opening to improve convenience in getting on and getting off the vehicle in a narrow space.
As shown in
However, the sliding door according to the prior art as described above has problems in that a structure of the door opening part 200 of the vehicle body 100 becomes complicated by the rail 300, the center rail 302 is provided on the outer surface of the vehicle body 100, such that an appearance of the vehicle is deteriorated, and many design restrictions are present in the vehicle due to the rail.
The present disclosure has been made to solve the above-mentioned problems occurring in the prior art while advantages achieved by the prior art are maintained intact.
One subject to be achieved by the present disclosure is to provide an invisible sliding door link structure for an invisible sliding door capable of being operated without a rail structure of a vehicle body.
An aspect of the present disclosure, provides an invisible sliding door link structure including: a door bracket provided at an inner side surface of a door sliding a door opening part of a vehicle body to open or close the door opening part; a body bracket provided in an invisible slider for sliding the door; a main arm having one end rotatably connected to one side of the door bracket and the other end rotatably connected to one side of the body bracket; a first link having one end rotatably connected to the other side of the body bracket; a second link having one end rotatably connected to the other end of the first link and the other end rotatably connected to the other side of the door bracket; and a third link having one end rotatably connected to one side of the main arm and the other end rotatably connected to a hinge point at which the first and second links are rotatably connected to each other.
The first link, the third link, the main arm, and the body bracket may form a parallelogram, and the second link, the door bracket, the main arm, and the third link may form a non-parallelogram.
The door bracket may have a length longer than that of the third link.
The second link may have a length longer than that of the first link.
The main arm may be connected to a driver provided in the invisible slider to receive a driving force.
The driver may include a motor and a sector gear having one side connected to the motor and the other side connected to the main arm.
A connection between main arm and the body bracket and a connection between the main arm and the third link may be connected to the sector gear, respectively.
The above and other objects, features and advantages of the present disclosure will be more apparent from the following detailed description taken in conjunction with the accompanying drawings, in which:
Hereinafter, the present disclosure will be described in detail with reference to the accompanying drawings. A sliding door link structure according to an exemplary embodiment of the present invention as seen in
The door bracket 30 is fixed to the inner side surface of the door 2 opening or closing the door opening part by sliding and rotating.
The body bracket 40 is fixed to the invisible slider 10 for sliding the door 2.
According to
The first link 61 has one end rotatably connected to the other side of the body bracket 40 and the other end extended toward the door bracket 30.
The second link 62 has one end rotatably connected to the other end of the first link 61 and the other end rotatably connected to the other side of the door bracket 30.
The third link 63 has one end rotatably connected to one side of the main arm 50 and the other end rotatably connected to a hinge point H corresponding to a portion at which the first and second links 61 and 62 are rotatably connected to each other (see
Here, the third link 63 has the same length as that of the body bracket 40. That is, a length between a point at which the main arm 50 disposed at one side of the body bracket 40 is rotatably connected to the body bracket 40 and a point at which the first link 61 is rotatably connected to the body bracket 40 is the same as that of the third link 63.
In addition, it is preferable that the door bracket 30 has a length longer than the third link 63. That is, a length between a point at which the main arm 50 disposed at one side of the door bracket 30 is rotatably connected to the door bracket 30 and a point at which the second link 62 is rotatably connected to the door bracket 30 is longer than that of the door bracket 30.
Therefore, a connection between the main arm 50 and the door bracket 30 is longer than that of the second link 62 and the door bracket 30.
As described above, the body bracket 40, the door bracket 30, the main arm 50, the first link 61, the second link 62, and the third link 63 are formed in a rotatable six-bar link structure (see
Here, it is preferable that the second link 62 has a length longer than that of the first link 61. Therefore, a rotating radius of the second link 62 is decreased at the time of opening the door 2 to decrease a degree in which it is protruded outwardly of the vehicle body.
Link movement and sliding movement of the six-bar link structure as described above are combined with each other, such that the door is rotated and slid. To this end, the body bracket 40 is fixed to the invisible slider 10 for sliding the door, and the main arm 50 is connected to a driver 80 transferring a driving force to the invisible slider 10 and the six-bar link structure.
The invisible slider 10 is a component of sliding the door 2 to open or close the door opening part. More specifically, the invisible slider 10 includes a first slider fixed to the vehicle body, a slider rail 12 slid with respect to the first slider, and a second slider 19.
As shown in
The slider rail 12 is slidably mounted on the mounting bracket of the first slider 18. The slider rail 12 receives the two mounting brackets and rollers to roll-contact the roller and is slid with respect to the first slider 18.
In order to allow the slider rail 12 to be slid, the slider rail 12 is provided with the driver 80 and a second slider 19 for sliding the slider rail 12 with respect to the first slider 18.
More specifically, the second slider 19, which is a component for sliding the slider rail 12 with respect to the first slider 18, includes a drum and a wire. The drum is connected to a motor 81 of a driver 80 to be described below to receive a driving force from the motor 81. The wire winds around the drum and also around a pulley fixed to the slider rail 12 to be placed between the drum and the pulley. Therefore, when the drum is rotated by the driving force from the motor 81, the wire is wound and unwound to slide the slider rail 12 with respect to the first slider 18.
The body bracket 40 is connected to the slider rail 12 of the second slider 19 having the above-mentioned configuration to slide the door 2 along the slider rail 12.
The driver 80 includes the motor 81, a transfer gear 84 connected to the motor 81, and a sector gear 82 connected to the transfer gear 84. The motor 81 is supported by a motor bracket provided on the slider rail 12, and the sector gear 82 is connected to the motor 81 through the transfer gear 84.
As shown in
The driver 80 and the main arm 50 are connected to each other to transfer the driving force for a six-bar link movement.
More specifically, the main arm 50 has two bars disposed at upper and lower portions and formed integrally with each other. The sector gear 82 is inserted between the two bars, and a center shaft 51 and a support shaft 52 rotatably coupled to the center hole 822 and the support hole 823, respectively, of the sector gear 82 are vertically inserted into the center hole 822 and the support hole 823, respectively. Due to the above-mentioned configuration, when the sector gear 82 is rotated, the main arm 50 is also rotated around the center shaft 51 inserted into the center hole 822 of the sector gear 82. Although the case in which the main arm 50 has the two bars formed integrally with each other has been described in the present embodiment, the main arm 50 may also have a single bar and be connected to the sector gear 82.
An operation of the invisible sliding door link structure having the configuration as described above will be described. First, as shown in
One end of the second link 62 is rotatably connected to the hinge point H at which the first and third links 61 and 63 are rotatably connected to each other. As the parallelogram link is rotated as described above, as shown in
After the tilting operation as described above, when the main arm 50 further rotates, the door bracket 30 connected to the other end of the main arm 50 moves according to the rotation of the main arm 50. Therefore, the second link 62 rotatably connected to the other side of the door bracket 30 also rotates by a large angle in the counterclockwise direction, that is, a B direction of
Together with the six-bar link movement as described above, as shown in
As set forth above, an invisible sliding door link structure for an invisible sliding door that may be operated without a rail structure of a vehicle body is developed, thereby making it possible to solve a design restriction and a space restriction due to the rail of the vehicle body according to the prior art.
Although the present disclosure has been described with reference to the exemplary embodiment shown in the accompanying drawings, it is only illustrative and various exemplary embodiments are possible. Therefore, the scope of the present disclosure is to be defined by the claims.
Number | Date | Country | Kind |
---|---|---|---|
10-2013-0027738 | Mar 2013 | KR | national |
Number | Name | Date | Kind |
---|---|---|---|
4606146 | Jozefozak | Aug 1986 | A |
5507119 | Sumiya et al. | Apr 1996 | A |
5921613 | Breunig et al. | Jul 1999 | A |
6030024 | Schmidhuber et al. | Feb 2000 | A |
6248172 | Shirotani et al. | Jun 2001 | B1 |
6382705 | Lang et al. | May 2002 | B1 |
6793268 | Faubert et al. | Sep 2004 | B1 |
7143548 | Kleinmann et al. | Dec 2006 | B2 |
7393044 | Enomoto | Jul 2008 | B2 |
7644976 | Suzuki et al. | Jan 2010 | B2 |
7731270 | Fischer et al. | Jun 2010 | B2 |
7748770 | Heuel et al. | Jul 2010 | B2 |
7765740 | Heuel et al. | Aug 2010 | B2 |
7856759 | Elliott et al. | Dec 2010 | B2 |
8096606 | Hanaki et al. | Jan 2012 | B2 |
8141297 | Elliott et al. | Mar 2012 | B2 |
8469441 | Heuel et al. | Jun 2013 | B2 |
20030204999 | George et al. | Nov 2003 | A1 |
20090000200 | Heuel et al. | Jan 2009 | A1 |
20090051194 | Elliott et al. | Feb 2009 | A1 |
20090072583 | Elliott et al. | Mar 2009 | A1 |
20090200833 | Heuel et al. | Aug 2009 | A1 |
20090212592 | Takahashi | Aug 2009 | A1 |
20100095595 | Hanaki et al. | Apr 2010 | A1 |
20100263283 | Yoshioka | Oct 2010 | A1 |
20110010998 | Elliott et al. | Jan 2011 | A1 |
20110061304 | Elliott et al. | Mar 2011 | A1 |
20110131883 | Heuel et al. | Jun 2011 | A1 |
20110133516 | Heuel et al. | Jun 2011 | A1 |
20110198883 | Heuel et al. | Aug 2011 | A1 |
Number | Date | Country |
---|---|---|
6-18033 | Mar 1994 | JP |
2009-161086 | Jul 2009 | JP |
10-0448753 | Sep 2004 | KR |
10-2014-0082278 | Jul 2014 | KR |
Number | Date | Country | |
---|---|---|---|
20140259938 A1 | Sep 2014 | US |