1. Field of the Invention
The present invention relates to a continuous sheet processing method and a continuous sheet processing apparatus for performing a processing such as printing or thermal activation with respect to a continuous sheet.
2. Description of the Related Art
Hitherto, there is commonly-known a continuous sheet processing apparatus, in which a continuous sheet is successively drawn out from a roll body to perform a processing such as printing or thermal activation with respect to the continuous sheet which is drawn out and a portion thereof subjected to the processing is performed is cut off, thereby obtaining cut form paper.
As a method of holding the roll body in the continuous sheet processing apparatus as described above, as disclosed in Patent Document 1, there is available a method in which a central shaft (roll shaft) is inserted into a central hole of a roll body and end portions of the central shaft, which laterally protrude from the roll body, are supported by a frame (first related art example) Further, as disclosed in Patent Document 2, there is available a method in which a fitting portion of each of bobbins (holders) provided to a frame is inserted into a central hole of a roll body from a side thereof, for supporting the roll body (second related art example). Further, as disclosed in Patent Documents 3 and 4, there is also available a method in which a roll body is merely placed on a bottom surface of a roll body accommodating portion (third and fourth related art examples).
[Patent Document 1] JP 2003-146493 A
[Patent Document 2] JP 2000-211777 A
[Patent Document 3] JP 2003-251875 A
[Patent Document 4] JP 2001-293927 A
In the first related art example described above, there are required an operation of inserting the central shaft into the central * hole of the roll body and an operation of attaching the central shaft holding the roll body to the frame, thereby being troublesome. Further, in order to prevent a situation where the central shaft detachable with respect to the frame is lost by mistake, thereby making supporting of the roll body thereafter impossible, a user must be cautious. In particular, in a case where the user. misconceives that the central shaft is an accessory of the roll body, after processing of an entire continuous sheet drawn out from the roll body is completed, when the roll body is consumed, the central shaft is discarded. After that, when there is a need for a new roll body to be used, the central shaft is not available, so there may arise a problem in that holding of the roll body cannot be performed.
In the second related art example, the bobbin is provided to the frame so as not to be removable therefrom. Accordingly, unlike in the first related art example, there is no risk of losing the bobbin by mistake. Further, only by one operation of inserting the bobbin into the central hole of the roll body, the holding of the roll body is completed. Accordingly, the number of operations decreases compared to the first related art example requiring the two operations. However, the operation of inserting the bobbin into the central hole of the roll body in a confined space of the roll body accommodating portion is extremely complicated. Specifically, positioning of the fitting portion of the bobbin with respect to the central hole of the roll body by fumbling of the user, and moving the fitting portion of the bobbin with respect to the frame to insert the fitting portion into the central hole are extremely complicated. In particular, in a case where a clearance between the fitting portion of the bobbin and the central hole of the roll body is smaller, positioning and insertion operations become more complicated. Further, at a time of positioning or attaching, there is a risk of damaging a side portion of the roll body by a tip of the fitting portion of the bobbin, thereby leaving a flaw or deformation in an edge portion of the continuous sheet.
In the first and second related art examples, when the roll body is not set in a correct position by the central shaft or the bobbin, it is impossible to draw out the continuous sheet from the roll body to supply the continuous sheet to a processing portion.
In contrast, in the third and fourth related art examples, there is no need of an attachment operation of inserting the central shaft or the fitting portion of the bobbin into the central hole of the roll body, or the like, and there is only need of inserting the roll body into the roll body accommodating portion, so operability is remarkably favorable.
An example of the above-mentioned structure is shown in
The roll body 1a is hardly restricted in a space of the roll body accommodating portion 2 and freely movable therein. Therefore, when the continuous sheet 1 drawn out from the roll body 1a is transported while being pulled by a platen roller 5 provided to the processing portion 3, there is such a risk that the roll body 1a randomly moves in the roll accommodating body 2 by the pulling force. In particular, in the structure as shown in
Further, in the roll body accommodating portion 2, there may be provided a sensor 18 for detecting a size of the roll body 1a, that is, a remaining amount of the sheet by performing detection on a part of the roll body 1a. In this case, when the roll body 1a performs the irregular operations such as the lifting up of the roll body 1a as described above in the roll body accommodating portion 2 and the roll body 1a temporarily gets out of a detection region of the sensor 18, there is a risk of making misjudgment that the remaining amount of the sheet is small regardless of the size of the roll body 1a.
It is therefore an object of the present invention to provide a continuous sheet processing apparatus and a continuous sheet processing method capable of, even with a structure in which setting of the roll body in the roll body accommodating portion is extremely easy, stably transporting the continuous sheet drawn out from the roll body without causing the irregular movements such as the lifting up of the roll body.
A continuous sheet processing apparatus according-to the present invention includes: a roll body accommodating portion for accommodating a roll body formed of a wound continuous sheet; a processing portion, which is arranged in a position above the roll body accommodating portion and horizontally shifted from a position directly above a central axis of the roll body accommodated in the roll body accommodating portion, for performing a processing with respect to the continuous sheet drawn out from the roll body; and a guide member, which is positioned between the roll body accommodating portion and the processing portion, for guiding the continuous sheet drawn out from the roll body, in which the guide member has an engagement portion engaging with the continuous sheet drawn out from the roll body and is arranged so that at least a part of the engagement portion is positioned in a position above the roll body accommodated in the roll body accommodating portion and on an opposite side of the processing portion with respect to the central axis of the roll body.
With this structure, even in a case where, when accommodating the roll body in the roll body accommodating portion, there is no need of special positioning and attachment operations and setting can easily be achieved by only inserting the roll body into the roll body accommodating portion, when the continuous sheet drawn out from the roll body is transported by being pulled by the processing portion positioned above the roll body accommodating portion, the roll body does not involve a movement such as lifting up thereof.
In particular, it is preferable that the engagement portion be arranged in such a position that the engagement portion once guides the continuous sheet drawn out from the roll body accommodated in the roll body accommodating portion to an opposite side of the processing portion with respect to a straight line connecting a drawing-out portion-of the roll body and the processing portion. Note that the drawing out portion herein means a portion where the continuous sheet comes off from the roll body. In the present invention, the guide member exists. Accordingly, there is a possibility of the drawing out portion of the roll body being different in position from that in a case where there is formed a transport path for linearly supplying the continuous sheet from the roll body to the processing portion. It is preferable that the engagement portion be arranged in such a position that the engagement portion once guides the continuous sheet to the opposite side of the processing portion with respect to both a straight line connecting the processing portion and the drawing out portion of the roll body in a case where there exists the guide member, and a straight line connecting the processing portion and the drawing out portion of the roll body in a case where there exists no guide member.
It is preferable that the engagement portion be positioned while being biased to an opposite side of the processing portion with respect to an outermost end of the roll body accommodated in the roll body accommodating portion.
In this case, when the engagement portion is positioned while being biased to the opposite side of the processing portion with respect to an outermost end of the roll body of a maximum size which can be accommodated in the roll body accommodating portion, it is possible to always obtain an operational effect of the present invention with reliability. However, a problem such as lifting up of the roll body is caused mainly in a state where the roll body is relatively small, so there may be employed a structure in which, with reference to the roll body having a size with which the problem is likely to occur, the engagement portion is positioned while being biased to the opposite side of the processing portion with respect to the outermost end of the roll body.
The continuous sheet processing apparatus may include a cutter portion positioned on a downstream side of the processing portion and capable of cutting the continuous sheet drawn out from the roll body.
The processing portion includes: a processing head for performing the processing with respect to the continuous sheet drawn out from the roll body; and a platen roller, which is arranged to oppose the processing head, for transporting the continuous sheet. The processing portion may include a printing portion for performing printing on the continuous sheet drawn out from the roll body. Alternatively, the processing portion may include a thermal activation portion for heating and thermally activating the continuous sheet drawn out from the roll body.
Further, the present invention has another characteristic point in that, in a continuous sheet processing method of performing a processing with respect to a continuous sheet by a processing portion by drawing out the continuous sheet from a roll body accommodated in a roll body accommodating portion and guiding the continuous sheet to the processing portion arranged in a position above the roll body accommodating portion and horizontally shifted from a position directly above a central axis of the roll body accommodated in the roll body accommodating portion, the continuous sheet drawn out from the roll body accommodated in the roll body accommodating portion is transported so that the continuous sheet is once guided by an engagement portion of a guide member, positioned between the roll body accommodating portion and the processing portion, to an opposite side of the processing portion with respect to a straight line connecting a drawing out portion of the roll body and the processing portion, and is then guided to the processing portion.
The continuous sheet which has been subjected to the processing by the processing portion may be cut off by a cutter portion positioned on a downstream side of the processing portion.
Printing may be performed by the processing portion on the continuous sheet drawn out from the roll body. Further, the continuous sheet drawn out from the roll body may be heated and thermally activated by the processing portion.
According to the present invention, even in the structure in which the roll body can easily be set only by being put into the roll body accommodating portion, there is not involved the movement such as the lifting up of the roll body at the time of transporting the continuous sheet drawn out from the roll body, thereby enabling favorable transportation thereof.
In the accompanying drawings:
Hereinafter, a description will be made of embodiments of the present invention with reference to the drawings.
(Structure of Continuous Sheet Processing Apparatus)
The roll body accommodating portion 2 has a pair of inclination surfaces 2a forming a substantially V shape section, for supporting an outermost peripheral surface of the roll body 1a. Both the pair of inclination surfaces 2a come into line contact (point contact when viewed in sectional view as shown in
The processing portion 3 includes a processing head 4 and a platen roller 5 positioned so as to be opposed to the processing head 4. The processing head 4 and the platen roller 5 sandwich therebetween the continuous sheet 1 processed in the present invention. The platen roller 5 supports the continuous sheet 1 while pressing the continuous sheet 1 to the processing head 4 and is driven by driving means (not shown) to be rotated to successively transport the continuous sheet 1. The processing head 4 performs the processing with respect to the continuous sheet 1 supported by the platen roller 5. Examples thereof include a recording head for performing recording on a continuous sheet having a recordable surface, and a thermal activation head for generating adhesiveness by heating a continuous sheet having a heat-sensitive adhesion surface. On a downstream side of the processing head 4 and the platen roller 5, a cutter portion is provided. Further, on a downstream side of the cutter portion, an outlet 7 to an outside is provided. The cutter portion of this embodiment includes a movable blade and a stationary blade 6 opposed to the movable blade (not shown). The movable blade moves toward the stationary blade 6, thereby making it possible to cut the continuous sheet 1. In each of
In the continuous sheet processing apparatus, there is provided a cover 8. The cover 8 pivots about a shaft 9, thereby being capable of opening and closing with respect to a frame 17. The platen roller 5 and the stationary blade 6 of the cutter portion are mounted to the cover 8 through support members 10 and move integrally with the cover 8.
To the cover 8, a guide plate (guide member) 11 is mounted through arms 12. Each of the arms 12 is mounted to each of first projection portions 8a, which are provided to the cover 8, so as to be pivotal about a shaft 13. Further, between each of the arms 12 and each of second projection portions 8b provided to the cover 8, a link arm 14 is mounted. Each of the link arms 14 is pivotal about a shaft 15 (see
Each of the link arms 14 is provided with a protruding portion 14a. An inner surface of the frame 17 is provided with cams 17a. Further, each of the arms 12 is provided with a protruding portion 12a. The inner surface of the frame 17 is also provided with guide grooves 17b. Therefore, in a later-described operation of closing the cover 8, when the protruding portions 14a come into contact with the cams 17a, the link arms 14 are pushed, and against a spring force of the springs (not shown), the link arms 14, the arms 12, and the guide plate 11 are moved as an operation independent of a movement of the cover 8 or as a combined operation of an opening and closing operation of the cover 8 and a relative movement with respect to the cover 8. Further, the movement is regularly performed by allowing the protruding portions 12a of the arms 12 to slide into the guide grooves 17b.
As shown in
Here, when a consideration is made of a transport path for the continuous sheet, if the guide plate 11 does not exist, the transport path for the continuous sheet is formed along a straight line L1 connecting between a drawing out portion of the roll body 1a and the processing portion 3. In contrast to this, in the structure of this embodiment, as shown in
In this embodiment, a bottom surface portion, on which the inclination surfaces 2a for supporting the roll body 1a are provided, is also connected to the cover 8. On an outer portion of the frame 17, although not described in detail, a panel 19 provided with a display portion, an input portion, and the like is arranged.
(Outline of Processing Method for Continuous Sheet)
A description will be made of an outline about a processing operation by the continuous sheet processing apparatus. First, the roll body 1a is set in the continuous sheet processing apparatus. The setting operation may be performed by only inserting the roll body 1a into a space of the roll body accommodating portion 2. At this time, in a state where an end of the continuous sheet 1 is pulled out from the roll body 1a and is sandwiched between the processing head 4 of the processing portion 3 and the platen roller 5, the cover 8 is closed. At this time, the continuous sheet 1 pulled out from the roll body 1a is guided to the opposite side of the processing portion 3 (left side in
In this state, a drive signal is sent from control means (not shown) to the processing head 4. As a result, the processing head 4 performs a processing with respect to the continuous sheet 1 and the driving means (not shown) allows the platen roller 5 to be rotated, thereby transporting the continuous sheet 1. An operation of the processing head 4 and an operation of the platen roller 5 are synchronized with each other, thereby successively performing a processing with respect to the continuous sheet 1. Note that the processing head 4 may be a thermal head or the like. Printing on the continuous sheet 1 or thermal activation by heating the heat-sensitive adhesive layer provided to the continuous sheet 1 is performed. When the processing of the continuous sheet 1 of a predetermined length is completed, the transportation of the continuous sheet 1 is stopped and the movable blade (not shown) of the cutter portion is moved toward the stationary portion 6, thereby cutting off the continuous sheet 1 which has undergone the processing. In a case of successively performing the processing of the continuous sheet 1, the transportation of the continuous sheet 1 by the platen roller 5 and the processing by the processing head 4 are performed again, the transportation of the continuous sheet 1 is stopped, and the continuous sheet 1 is cut off.
As described above, also in a case of intermittently transporting the continuous sheet 1 through the rotation of the platen roller 5, according to this embodiment, the roll body hardly moves and only rotates, so the stable transportation of the continuous sheet 1 is possible.
(Consideration of Transportation State of Continuous Sheet)
As described above, consideration will be made below of a reason why the stable transportation of the continuous sheet 1 is enabled by this embodiment.
In the related art structure in which the guide plate 11 does not exist, the reason for performing the irregular movement such as the lifting up of the roll body 1a together with the transportation of the continuous sheet 1 is conceived that, as schematically shown in
In contrast to this, in this embodiment, as schematically shown in
Further, in this embodiment, the position of the portion of the continuous sheet 1 engaged with the engagement portion 11a of the guide plate 11 is biased to the opposite side (left side in
Further, in this embodiment, the path is formed in the processing portion 3 such that the continuous sheet 1 is once moved upwardly by a slight distance, and after that, the continuous sheet 1 is allowed to reach a position between the processing portion 3 and the platen roller 5 to be transported in the horizontal direction. A portion for allowing the continuous sheet 1 to be transported upwardly by the slight distance also has a buffering function regarding the transmission of the transportation force. As described above, it is probable that the more direction conversion portions are provided in the transmission path for the force (path corresponding to transport path of continuous sheet 1), which extends from the portion generating the transportation force (platen roller 5) to the portion which may be moved (roll body 1a), the larger effects of absorbing and buffering the impact become, thereby suppressing the abrupt and irregular movement of the roll body 1a. For that implication, in this embodiment, there are provided more direction conversion portions than in a related art invention. Accordingly, it is possible to prevent undesirable movements such as the lifting up of the roll body.
In order to obtain the effect of the present invention as described above, when viewed in the horizontal direction (left-and-right direction in
(Opening and Closing Operation of Cover)
Next, the opening and closing operation of the cover 8 according to this embodiment will be described with reference to
Next, the cover 8 starts to be closed. At this time, the protruding portions 14a of the link arms 14 abut on the cams 17a of the frame 17. A state at a start of the abutment is shown in
In the state where the protruding portion 14a of the link arms 14 abut on the cams 17a, when the cover 8 itself is closed toward the frame 17, as shown in
Note that, in an operation in which the cover 8 is opened in a state where the cover 8 is closed, an operation completely opposite to that described above is performed. That is, the operation is performed in the state shown in
In this embodiment, as shown in FIGS. 1 to 3A-3B and 11A-11C, when the cover 8 is in the closed state, the position P1 of the end portion of the engagement portion 11a of the guide plate 11 is on the opposite side of the processing portion 3 (left side in the figures) with respect to the position P3 (the same as center of roll body accommodating portion 2) directly above the central axis of the roll body 1a. If the guide plate 11 is fixed to the above-mentioned position, in a case where the cover 8 is opened to insert the roll body 1a into the roll body accommodating portion 2, it is highly difficult to set the end portion of the continuous sheet 1 drawn out from the roll body 1a such that the end portion passes above the guide plate 11 to be guided to the processing portion 3. That is, an operation, in which the end portion of the continuous sheet 1 drawn out from the roll body 1a is allowed to pass through a confined space between the roll body 1a and an upper wall of the frame 17 within an extremely small operation space as being understood with reference to
If the structure allows the cover 8 to be opened to nearly 180 degrees, before the roll body 1a is inserted into the roll body accommodating portion 2, in a state where a relatively large operation space is ensured, it is possible to perform the operation of allowing the end portion of the continuous sheet 1 to pass through a space above the guide plate 11. Therefore, it is probable that operability increases. However, with the structure according to this embodiment, in which the processing portion 3 is positioned above the roll body accommodating portion 2 and the cover 8 pivots about the shaft 9 positioned on a lower portion of the frame 17 to be opened and closed, the cover cannot be opened to 90 degrees or more in a state where the apparatus of the present invention is kept placed on a plane. Accordingly, there is a need of temporarily tilting the apparatus to open the cover 8. Thus, the apparatus becomes a product which is extremely difficult to use practically, thereby being unpreferable.
When considerations are made for those cases, the applicant of the present invention conceives that it is preferable that, in the state where the cover 8 is opened, the guide plate 11 be not in the position on the opposite side (left side in the figure) of the processing portion 3 with respect to the P3 directly above the central axis of the roll body 1a as shown in FIGS. 1 to 3A-3B and 11, and the guide plate 11 be provided outside the frame 17 in the same manner as with the cover 8. In the present invention, with the structure with which the guide plate 11 is made movable as the operation independent of the cover 8 or as the combined operation of the opening and closing operation of the cover 8 and the relative movement with respect to the cover 8, there is first realized the structure in which, in the state where the roll body 1a is inserted into the roll body accommodating portion 2, when the cover 8 is closed, while keeping the end portion of the continuous sheet 1 drawn out from the roll body 1a positioned above the guide plate 11, the guide plate 11 can be moved to the position P1 on the opposite side (left side in the figures) of the processing portion 3. In particular, in the above embodiment, with the link mechanism including the arms 12 and the link arms 14, the guide plate 11 can move as the combined operation of the opening and closing operation of the cover 8 and relative pivoting with respect to the cover 8. As a result, by only performing an operation in which, when the cover 8 is opened, the roll body 1a is inserted into the roll body accommodating portion 2 in the state where the end portion of the continuous sheet 1 is drawn out, and the cover 8 is closed, it is possible to arrange the continuous sheet 1 on the guide plate 11 and to move the guide plate to the predetermined position P1. There is no need for the user to allow the continuous sheet 1 to pass through the confined space between the guide plate 11 and the upper wall of the frame 17. Further, there is also no need to directly move the guide plate 11 itself. It is only necessary to perform the operation of inserting the roll body 1a and closing the cover 8, so the operability is extremely high. As is apparent from
Note that, as an additional effect of this embodiment, it is exemplified that, as shown in
Next, with reference to FIGS. 13 to 18A-18C, another embodiment of the present invention will be described.
The continuous sheet processing apparatus according to this embodiment does not include the link arms 14, the shafts 15 and 16 for connecting the link arms 14, the cams 17a, and the guide grooves 17b. Further, the springs (not shown) biases the arms 12 toward the frame 17 side. That is, a direction of a bias force applied to the arms 12 by the springs is substantially opposite to that of the first embodiment described above. Other constructions are the same as those of the first embodiment shown in
In this embodiment as well, as shown in
In this embodiment, the guide plate 11 and the arms 12 do not move together with the opening and closing operation of the cover 8 and are moved manually. Here, a description will be made of an operation in which the cover 8 is opened to set the roll body la in the state where the cover 8 is closed as shown in
First, by opening the cover 8 in the state shown in
In this state, after the roll body 1a is inserted into the roll body accommodating portion 2, when a hand is moved off from the guide plate 11 and the arms 12, by the bias force of the springs (not shown), the guide plate 11 and the arms 12 are moved to the deeper side (left side of the figures) of the frame. Note that a relative moving angle of each of the arms 12 with respect to the cover 8 is restricted by a stopper 20. Accordingly, as shown in
At last, when the cover 8 is closed, the guide plate 11 and the arms 12 are moved integrally with each other to enter inside the frame 17 to reach the deeper side therein, thereby realizing the state as shown in each of
In this embodiment as well, the same operational effect as that of the first embodiment described above is obtained. Note that the guide plate 11 and the arms 12 have to be manually moved, so the operation becomes a little complicated, but at the same time, the need of the link arms 14 and the cams 17a is eliminated. As a result, it is possible to simplify the structure.
In the two embodiments described above, the guide plate 14 is attached to the cover 8 through the arms 12. However, there may be employed a structure in which the guide plate 14 is pivotally attached to the frame 17 through the arms 12 or another member. In this case, it is possible to more easily realize the structure in which the guide plate 11 and the arms 12 are moved manually in the same manner as that of the second embodiment of the present invention than the structure in which the guide plate 11 and the arms 12 automatically move together with the opening and closing of the cover 8 in the same manner as that of the first embodiment of the present invention. In both the cases, when the guide plate 14 is movable between the predetermined position P1 and the outside of the frame 17 as the operation independent of the opening and closing of the cover 8 or as the combined operation of the opening and closing operation of the cover 8 and the relative movement with respect to the cover 8, the same effect as that described above can be achieved.
Number | Date | Country | Kind |
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2007-013945 | Jan 2007 | JP | national |