1. Field of the Invention
The present invention relates to a supporting mechanism for webs, and more particularly, to a supporting mechanism with greater webs route and a printer thereof.
2. Description of the Prior Art
Generally, a web exchange mechanism of a conventional printer is disposed inside the casing and located at a position close to an opening of the casing. A door for covering the opening can be unfolded for manually taking the web disposed inside the casing away when the conventional printer is a front-door printer. A lateral wall for covering the opening can be unfolded for taking out the web from the casing when the conventional printer is an edge-door printer. After the web is disposed inside the casing, the lateral wall is folded to close the opening and to finish exchange procedure of the edge-door printer. As mentioned above, the web is disposed on a position adjacent to the opening of the casing in the conventional printer. A user opens the door (or the lateral wall) to take the web away immediately. However, if the printer has huge volume, the web disposed inside the casing can not be taken away via the opening easily after the door (or the lateral wall) is open. Therefore, an exchange mechanism capable of moving the web from inner of the casing to the position close to the opening is an important issue in the mechanical industry.
The present invention provides a supporting mechanism with greater webs route and a printer thereof for solving above drawbacks.
According to the claimed invention, a supporting mechanism is applied to a printer. The supporting mechanism includes a base, a holder slidably disposed on the base for holding a web, a door pivotably disposed on a bottom of a casing, and a linkage set for moving the holder relative to the base. The linkage set includes a first rod, an arm rod and a second rod. Two ends of the first rod are respectively connected to the holder and the door, the first rod moves the holder relative to the base along a second direction when the door pivots relative to the base along a first direction. An end of the arm rod pivots to the casing. Two ends of the second rod respectively pivot to the door and the arm rod. The second rod drives the arm rod to press the holder when the door pivots relative to the base along a direction opposite to the first direction, so as to move the holder relative to the base along a direction opposite to the second direction.
According to the claimed invention, a contacting portion is disposed on a lateral side of the holder adjacent to the arm rod, and the arm rod presses the contacting portion to move the holder relative to the base.
According to the claimed invention, the supporting mechanism further includes a slide set disposed on the casing. The slide set includes a sliding rail disposed on a wall of the casing, and a sliding component movably disposed inside the sliding rail for moving the holder. The end of the first rod pivots to the sliding component.
According to the claimed invention, the linkage set further includes a constraining component pivoting to the base, and a hook of the constraining component is for hooking a pin of the holder. The linkage set further includes an actuating component pivoting to a wall of the casing, and a third rod. Two ends of the third rod respectively pivot to the door and the actuating component. The third rod rotates the actuating component relative to the base when the door pivots relative to the base along the first direction, so as to separate the hook of the constraining component from the pin.
According to the claimed invention, the linkage set further includes a resilient component disposed between the base and the constraining component for locking the hook of the constraining component on the pin.
According to the claimed invention, the third rod includes a first part and a second part, and two ends of the first part are respectively connected to the door and the second part. The second part is bent relative to the first part and connected to the actuating component.
According to the claimed invention, a slot is formed on a surface of the constraining component, and a protrusion of the base is disposed inside the slot.
According to the claimed invention, a direction of the slot is substantially equal to a pivoting direction of the constraining component relative to the base.
According to the claimed invention, the constraining component and the actuating component are L-shaped structures.
According to the claimed invention, a printer includes a casing, and a supporting mechanism disposed inside the casing. The casing includes a bottom and a plurality of walls, and an opening is formed between the bottom and the walls. The supporting mechanism includes a base, a holder slidably disposed on the base for holding a web, a door pivotably disposed on a bottom of a casing, and a linkage set for moving the holder relative to the base. The linkage set includes a first rod, an arm rod and a second rod. Two ends of the first rod are respectively connected to the holder and the door, the first rod moves the holder relative to the base along a second direction when the door pivots relative to the base along a first direction. An end of the arm rod pivots to the casing. Two ends of the second rod respectively pivot to the door and the arm rod. The second rod drives the arm rod to press the holder when the door pivots relative to the base along a direction opposite to the first direction, so as to move the holder relative to the base along a direction opposite to the second direction.
The supporting mechanism of the present invention can utilize the linkage set and the slide set to move the holder relative to the base when the door opens, so as to pull out the holder from the inner casing to the position close to the opening of the casing, and then the user can exchange the web on the holder easily. Therefore, the supporting mechanism of the present invention can be applied to a specific printer with huge volume, the holder can be pushed in and pulled out by the linkage set and the slide set when folding and unfolding the door, so as to effectively simplify the procedures of webs exchange for increasing operating convenience.
These and other objectives of the present invention will no doubt become obvious to those of ordinary skill in the art after reading the following detailed description of the preferred embodiment that is illustrated in the various figures and drawings.
Please refer to
The supporting mechanism 14 includes a base 18 disposed on the bottom 121, a holder 20 slidably disposed on the base 18 for holding the web 16, a door 22 pivotably disposed on a shaft of the bottom 121 for covering the opening 123 of the casing 12, and two linkage sets 24 for moving the holder 20 relative to the base 18. The shaft can be disposed on the edge of the bottom 121 whereon the wall 122 is not disposed. Two ends of the shaft can be respectively fixed on the opposite lateral walls 122, so that a rotary center of the door 22 is positioned on the walls 122. The linkage sets 24 can be respectively disposed on two opposite sides of the holder 20, such as the left side and the right side. The base 18 can includes several mechanical elements, such as rolls, motors, gear wheels and so on. When the web 16 moves into the casing 12 at a predetermined position with a movement of the holder 20, the base 18 can be utilized to execute paper pick-up procedures and feed-delivery procedures. The bottom 121 and the base 18 can be regarded as the same structural element.
The linkage set 24 includes a first rod 26, an arm rod 28 and a second rod 30. Two ends of the first rod 26 are respectively connected to the holder 20 and the door 22. When the door 22 pivots relative to the base 18 (or the bottom 121 of the casing 12) along a first direction D1 (as a clockwise direction shown in
As shown in
Furthermore, the third rod 42 can pivot the actuating component 40 relative to the base 18 in a counterclockwise direction (the direction opposite to the first direction D1) when the door 22 rotates relative to the base 18 along the first direction D1, so as to separate the hook 381 of the constraining component 38 from the pin 202. Meanwhile, the holder 20 can be pulled to the position close to the opening 123 of the casing 12 by the door 22 via the first rod 26. It is to say, the constraining component 38 and the actuating component 40 can respectively be L-shaped structures, and low edges of the L-shaped structures overlap for synchronal rotation.
It should be mentioned that the third rod 42 can includes a first part 421 and a second part 422. Two ends of the first part 421 are respectively connected to the door 22 and the second part 422. The second part 422 is bent relative to the first part 421 and connected to the actuating component 40 for forming a curved structure. The actuating component 40 can pivot relative to the base 18 by the curved structure of the third rod 42 smoothly. For example, the first part 421 can provide an upward force to the second part 422 when the door 22 moves the first part 421, so that the second part 422 can rotate the actuating component 40 relative to the base 18 upwardly (or pivoting the actuating component 40 relative to the base 18 in the counterclockwise direction). The third rod 42 can be designed as a boomerang-type structure. The boomerang-type structure can prevent the door 22 and an axle center of the arm rod 28 from interference when the door 22 opens to a maximum angle, such as the door 22 is in a position parallel to the bottom 121. A slot 382 can be formed on a surface of the constraining component 38, and a protrusion 181 of the base 18 can be disposed inside the slot 382. A direction of the slot 382 can be substantially equal to a pivoting direction of the constraining component 38 relative to the base 18, so that the constraining component 38 can pivot relative to the base 18 stably by an assembly of the slot 382 and the protrusion 181.
Please refer to
Besides, the holder 20 can be put at the position close to the opening 123 from outside of the casing 12 after the web 16 is installed, as shown in
Comparing to the prior art, the supporting mechanism of the present invention can utilize the linkage set and the slide set to move the holder relative to the base when the door opens, so as to pull out the holder from the inner casing to the position close to the opening of the casing, and then the user can exchange the web on the holder easily. Therefore, the supporting mechanism of the present invention can be applied to a specific printer with huge volume, the holder can be pushed in and pulled out by the linkage set and the slide set when folding and unfolding the door, so as to effectively simplify the procedures of webs exchange for increasing operating convenience.
Those skilled in the art will readily observe that numerous modifications and alterations of the device and method may be made while retaining the teachings of the invention. Accordingly, the above disclosure should be construed as limited only by the metes and bounds of the appended claims.
Number | Date | Country | Kind |
---|---|---|---|
101100859 A | Jan 2012 | TW | national |
Number | Name | Date | Kind |
---|---|---|---|
2319651 | Wilkinson et al. | May 1943 | A |
5528278 | Takizawa et al. | Jun 1996 | A |
6183153 | Kamoda et al. | Feb 2001 | B1 |
7563045 | Nagata | Jul 2009 | B2 |
20020096075 | Kaya | Jul 2002 | A1 |
20070009305 | Sakaino et al. | Jan 2007 | A1 |
20090193836 | Ertz et al. | Aug 2009 | A1 |
20110097131 | Ishida | Apr 2011 | A1 |
Number | Date | Country |
---|---|---|
1269311 | Oct 2000 | CN |
1736838 | Feb 2006 | CN |
1935524 | Mar 2007 | CN |
100519213 | Jul 2009 | CN |
2 329 953 | Jun 2011 | EP |
4298356 | Oct 1992 | JP |
10181964 | Jul 1998 | JP |
2011088372 | May 2011 | JP |
2011168029 | Sep 2011 | JP |
Number | Date | Country | |
---|---|---|---|
20130175906 A1 | Jul 2013 | US |