This application claims priority from Japanese Patent Application No. 2019-141362 filed Jul. 31, 2019. The entire content of the priority application is incorporated herein by reference.
The present disclosure relates to a tape cassette to be attached to a cassette holder of a printer.
There has been known a printing technology where a tape cassette is attached to a cassette holder of a printer, and printing is performed on a tape supplied from the tape cassette as described in United States Patent Application Publication No. 2019/0023038 A1. According to the US Publication, a regulation guide (a tape lead-out portion) is positioned adjacent to a tape exit of the tape cassette to restrict displacement of the tape in a widthwise direction of the tape (fabric tape) when the tape paid out from a tape roll is conveyed along a conveying passage.
However, the regulation guide may not exhibit sufficient function of restricting the displacement of the tape in its widthwise direction due to an employment of a tape having low rigidity or linearity. Therefore, diagonal running of the tape, folding of the tape and wrinkle of the tape may occur.
In view of the foregoing, it is an object of the disclosure to provide a tape cassette capable of avoiding occurrence of diagonal running of the tape, folding of the tape and wrinkle of the tape even by an employment of the tape having low rigidity.
In order to attain the above and other objects, according to one aspect, the disclosure provides a tape cassette used for a printer including a thermal head and a cassette holder to which the tape cassette is attachable. The tape cassette includes a tape roll, a casing, a regulation guide and a pressure member. The tape roll is formed by winding a tape. The tape has a width defining a widthwise direction. The casing accommodates therein the tape roll. A tape conveying passage is defined in the casing. The regulation guide is positioned at the tape conveying passage to restrict displacement of the tape in the widthwise direction. The pressure member is positioned upstream of the regulation guide in a conveying direction of the tape and along the tape conveying passage. The pressure member is in contact with the tape in a contacting direction to apply pressing force to the tape in the contacting direction.
The particular features and advantages of the embodiment(s) as well as other objects will become apparent from the following description taken in connection with the accompanying drawings, in which:
Hereinafter, a tape cartridge according to the present disclosure will be described with reference to accompanying drawings. The terms “front”, “rear”, “right”, “left”, “above”, “below”, and the like will be used throughout the description on a basis of
First, a tape cartridge according to a first embodiment will be described with reference to
[Outline of Tape Printer]
A general structure of a tape printer 1 to which the tape cartridge is attachable will be described. As illustrated in
The main body cover 2 has a left rear portion where an ejection slit 9 is formed for ejecting printed fabric tape 153 described later outside of the main body cover 2. Further, the main body cover 2 is formed with a locking hole 7. The cover 6 includes a left side wall where an ejection window 11 is formed. The cover 6 has a front center portion where a locking protrusion 4 is provided. Upon closure of the cover 6, the locking protrusion 4 is engaged with the locking hole 7.
[Cartridge Receiving Portion]
As illustrated in
Further, a roller holder 22 is provided in the cartridge receiving portion 8. The roller holder 22 is pivotally movable about an axis of a support shaft m (
Incidentally, a tape cutter mechanism is provided at a cutting position adjacent to the ejection slit 9 for cutting the fabric tape 153 ejected out of the tape cartridge 30 at a predetermined position to provide a printed tape,
[Internal Structure of Tape Cartridge]
Next, an internal structure of the tape cartridge 30 in connection with the cartridge receiving portion 8 will be described with reference to
A combination of the upper wall portion 31U and the lower wall portion 31L provides a generally box-like configuration having an upper surface 31C, a bottom surface 31A, and a side surface 31B connecting the upper surface 31C to the bottom surface 31A in upward downward direction. The tape cartridge 30 is configured to be inserted into the cartridge receiving portion 8 such that the bottom surface 31A is a leading end for the insertion, and the cartridge receiving portion 8 supports the tape cartridge 30 from below.
The side surface 31B has a specific area 31Ba formed with a tape discharge opening 49a through which the fabric tape 153 on which an image is printed is configured to be discharged outside the cartridge case 31 such that a widthwise direction of the fabric tape 153 is directed in upward/downward direction. The specific area 31Ba is positioned at a most downstream end portion of a tape conveying passage along which the printed fabric tape 153 is conveyed inside the cartridge case 31.
The cartridge case 31 has a rear left portion where a support hole 65 is formed, and a tape spool 40 is rotatably supported by the support hole 65, The fabric tape 153 as an example of “tape” or “fabric tape” is wound over the tape spool 40. Incidentally, a combination of the tape spool 40 and the fabric tape 153 wound thereover constitutes a tape roll 206. The tape roll 206 has an axis K which is also an axis of the tape spool 40. The axis K extends in upward/downward direction.
A resin film 207 having a disc shape is positioned between an upper end of the tape roll 206 and a lower surface of the upper wall portion 31U. The resin film 207 is in contact with a widthwise edge (specifically an upper edge) of the fabric tape 153 of the tape roll 206.
Further, a ribbon spool 42 is positioned at a front right internal portion of the cartridge case 31, and an ink ribbon 60 is wound over the ribbon spool 42. A combination of the ribbon spool 42 and the ink ribbon 60 wound thereover constitutes a ribbon roll 306 as an example of a “ribbon supply roll.”
The cartridge case 31 is formed with a support hole 67, and a ribbon take-up spool 44 is rotatably supported by the support hole 67. The ribbon take-up spool 44 is at a position between the tape spool 40 and the ribbon spool 42 inside the cartridge case 31. The ribbon take-up spool 44 is configured to pull out the ink ribbon 60 from the ribbon spool 42 and to take-up the ink ribbon 60 used for priming. Incidentally, a combination of the ribbon take-up spool 44 and the ink ribbon 60 used for printing and taken-up by the ribbon take-up spool 44 constitutes a ribbon take-up roll 307.
Upon attachment of the tape cartridge 30 to the cartridge receiving portion 8, the ribbon take-up shaft 95 is inserted in the ribbon take-up spool 44 to rotate the ribbon take-up spool 44.
Inside the cartridge case 31, guide portions b1, b2 are provided for regulating a conveying passage of the fabric tape 153 paid out from the tape roll 206, and a guide roller g is provided for regulating a conveying passage of the ink ribbon 60 paid out from the ribbon roll 306.
An arm portion 34 constitutes a front right portion of the tape cartridge 30. The arm portion 34 protrudes frontward from the cartridge case 31, and then is bent at right angle toward a center portion in leftward/rightward direction of the cartridge ease 31. The fabric tape 153 paid out from the tape roll 206 and moved past the guide portions b1, b2, and the ink ribbon 60 paid out from the ribbon roll 306 and moved past the guide roller g are configured to be guided into an internal space of the arm portion 34. In the internal space of the arm portion 34, a regulation guide 500A (described later) for guiding the fabric tape 153 is provided.
A space between the front surface of the cartridge case 31 and a rear surface of the arm portion 34 constitutes a head installing portion 39 where the head holder 74 on which the thermal head 10 is mounted can be positioned when the tape cartridge 30 is attached to the cartridge receiving portion 8. Further, a tape lead-out opening 34a is positioned at a tip end portion of the arm portion 34. The tape lead-out opening 34a is configured to direct the fabric tape 153 and the ink ribbon 60 positioned close to each other or overlapped with each other toward a head insertion recessed portion DB described later. The tape lead-out opening 34a is an example of a “lead-out portion”.
Further, the cartridge case 31 is formed with a support hole at a position downstream of the head installing portion 39 in a conveying direction of the fabric tape 153 and the ink ribbon 60 from the tape lead-out opening 34a of the arm portion 34 to the tape discharge opening 49a. A tape drive roller 46 is rotatably supported by the support hole.
Upon attachment of the tape cartridge 30 to the cartridge receiving portion 8, the tape drive shaft 100 is inserted in the tape drive roller 46 to rotate the tape drive roller 46. Further, when the roller holder 22 is changed over to the printing position, the platen roller 20 and the conveyer roller 21 are in pressure contact with the thermal head 10 and the tape drive roller 46, respectively. More specifically, the tape drive roller 46 nips the fabric tape 153 conveyed in leftward/rightward direction in cooperation with the conveyer roller 21 in order to pay out convey the fabric tape 153 from the tape spool 40. Further, the above-described cutter mechanism is positioned at the tape conveying passage and between the tape discharge opening 49a and the ejection slit 9.
A pair of upper and lower guide members 36 is positioned upstream of the tape drive roller 46. The guide members 36 are configured to guide the fabric tape 153 toward the tape discharge opening 49a allowing the fabric tape 153 to pass through between the guide members 36.
A guide wall 38 extends in upward/downward direction at a position adjacent to the guide members 36. The guide wall 38 is configured to position the used ink ribbon 60 conveyed and moved past the head installing portion 39 away from the fabric tape 153 and to guide the fabric tape 153 toward the ribbon take-up spool 44. Further, a separation wall 48 extends in upward/downward direction at a position between the guide wall 38 and the ribbon take-up spool 44 so as to prevent the used ink ribbon 60 moved past the guide wall 38 to contact the fabric tape 153 wound over the tape spool 40.
Further, the tape cartridge 30 has a contact treatment recessed portion D positioned upstream of the tape discharge opening 49a in the conveying passage of the fabric tape 153. The contact treatment recessed portion D provides a treatment space for performing conveyance of the fabric tape 153 and printing on the fabric tape 153.
That is, the contact treatment recessed portion D includes an abutment purpose recessed portion DA and the head insertion recessed portion DB positioned upstream of the abutment purpose recessed portion DA. The conveyer roller 21 is movable toward the tape drive roller 46 to convey the fabric tape 153 in the abutment purpose recessed portion DA. The thermal head 10 is insertable in the head insertion recessed portion DB. The arm portion 34 extends toward the head insertion recessed portion. DB. The head insertion recessed portion DB is an example of a “recessed portion).
The tape cartridge 30 also includes a tape insertion portion 49. The tape insertion portion 49 has a downstream end in the conveying passage where the above-described tape discharge opening 49a is funned, and has an upstream end in the conveying direction where a tape introduction opening 49b opening to the abutment purpose recessed portion DA is formed, hence, the tape insertion portion 49 allows the fabric tape 153 to be inserted therein through the tape introduction opening 49b, and to be discharged outside of the tape cartridge 30 through the tape discharge opening 49a.
The above-described tape lead-out opening 34a formed in the arm portion 34 is open to the head insertion recessed portion DB. Hence, the fabric tape 153 paid out from the tape roll 206 and the ink ribbon 60 paid out from the ribbon roll 306 are directed toward the head insertion recessed portion DB through the tape lead-out opening 34a and are exposed to the outside of the cartridge case 31.
Further, as illustrated in
On the other hand, as illustrated in
When the tape cartridge 30 is inserted into the cartridge receiving portion 8, the compatible portions 32 are supported by the cartridge support portions 8b from below. The compatible portions 32 and the cartridge support portions 8b have dimensional relationship with each other so that a widthwise center of the fabric tape 153 supplied from the tape cartridge 30 is generally coincident with a center portion of an array of the heat generating elements in upward/downward direction of the thermal head 10 upon attachment of the tape cartridge 30 to the cartridge receiving portion 8.
Incidentally, various kinds of tape cartridges 30 are prepared. For example, a first kind of the tape cartridge 30 accommodates therein a first kind of fabric tape 153 having a first widthwise length, and a second kind of the tape cartridge 30 accommodates therein a second kind of fabric tape 153 having a second widthwise length different from the first widthwise length. The cartridge receiving portion 8 can receive various kinds of the tape cartridges 30 by previously determining dimension of the compatible portions 32 and the like so that the widthwise center of the fabric tape 153 of the attached tape cartridge 30 is generally coincident with the center portion of then array of the heat generating elements.
[Structure of Fabric Tape]
A structure of the fabric tape 153 will next be described. The fabric tape 153 is produced by weaving warp extending in a longitudinal direction of the tape and weft extending in a widthwise direction of the tape. According to the present embodiment, the fabric tape 153 is produced by satin weave where the warp area appearing on a surface of the fabric tape 153 is greater than weft area as illustrated in
As illustrated in
[Operation in Tape Printer]
Operation performed in the tape printer 1 will be described with reference to
The ribbon take-up shaft 95 and the tape drive shaft 100 are rotated in synchronism with each other by the driving force of the tape feed motor. The rotation of the tape drive shaft 100 causes rotation of the tape drive roller 46, the platen roller 20, and the conveyer roller 21, so that the fabric tape 153 is paid out from the tape roll 206, and is conveyed as in a manner described above.
At this time, the plurality of heat generating elements mounted on the thermal head 10 generate heat, and the ink ribbon 60 is brought into contact with the image receiving surface 153a of the fabric tape 153 by being pressed against the thermal head 10. As a result, an ink in the ink ribbon 60 is thermally transferred onto the image receiving surface 153a to form a visible ink image on the image receiving surface 153a. The fabric tape 153 in which the image is formed is conveyed to the cutting position and is cut by the cutter mechanism. Then the fabric tape 153 is conveyed outside the tape cartridge 30 through the tape discharge opening 49a.
[Regulation Guide and Technical Task in Connection with the Guide]
As illustrated in
The regulation guide 500A is positioned at the tape lead-out opening 34a positioned at the tip end of the arm portion 34. The regulation guide 500A extends in the widthwise direction (upward/downward direction) of the tape. The regulation guide 500A includes a base portion 500a, an upper guide portion 500h and a lower guide portion 500c.
The base portion 500a extends in upward/downward direction and protrudes frontward from the front surface 500C of the separation wall 500. The upper guide portion 500b extends frontward from one end portion (upper end portion) in the widthwise direction of the base portion 500a. The lower guide portion 500c extends frontward from another end portion (lower end portion) the widthwise direction of the base portion 500a. Thus, the regulation guide SODA has a generally U-shape. The base portion 500a is an example of one of the two protrusions.
With this structure, the regulation guide 500A restricts displacement in the widthwise direction (upward/downward direction) of the tape 153 that is conveyed along the conveying passage in the arm portion 34, while the fabric tape 153 passes through a space defined by the base portion 500a, the upper guide portion 500b, and the lower guide portion 500c.
However, in the tape cartridge 30, in case of employment of the tape having low rigidity such as the fabric tape 153, the regulation guide 500A cannot sufficiently exhibit function of restricting widthwise displacement of the tape, and therefore, it would be difficult to avoid diagonal running of the tape and generation of folding and wrinkle of the tape.
[Film Spring]
To this effect, a film spring 600 (
As illustrated in
The spring body portion 601 is bent at a bending line 601a to provide a tip end portion 601b positioned leftward of the bending line 601a and a base portion 601c positioned rightward of the bending line 601a. The spring body portion 601 protrudes rearward at the bending line 601a. The tip end portion 601b and the base portion 601c define therebetween an obtuse angle θ1 of nearly 180 degrees.
As illustrated in
The attachment portion 602 is bent into V-shape at a bending line 602a. That is, the attachment portion 602 includes a support portion 602b and an engagement portion 602c connected to the support portion 602b at the bending line 602a. The support portion 602b is integral with and flush with the base portion 601e of the spring body portion 601. The support portion 602b is in abutment with a front surface of the pawl portion 34b.
The engagement portion 602c extends along an inner surface of the sloped wall 34c, and has a tip end 602d engaged with the engagement protrusion 34d. That is, the engagement protrusion 34d is positioned downstream of the tip end 602d of the engagement portion 602.c in the conveying passage of the fabric tape 153 so as to prevent the tip end portion 602d from further moving in downward direction.
In a state illustrated in
Further, the resilient restoration force urges the spring body portion 601 rearward (in a direction perpendicular to the surface of the fabric tape 153) to contact the fabric tape 153 conveyed in the arm portion 34. That is the spring body portion 601 applies rearward force to the fabric tape 153 as indicated by an arrow P in
Further, the separation wall 500 further includes a guide protrusion 500E protruding frontward from the front surface 500C of the separation wall 500 and positioned upstream of the regulation guide 500A in the conveying direction of die fabric tape 153. The guide protrusion 500B is an example of one of the two protrusions. The film spring 600 is configured to nip the fabric tape 153 in cooperation with the separation wall 500. Specifically, the bending line 601a and a portion adjacent thereto of the spring body portion 601 contacts the fabric tape 153 at a position between the base portion 500a and the guide protrusion 500B.
According to the above-described first embodiment, displacement of the fabric tape 153 in its widthwise direction can be restricted by the regulation guide 500A when the fabric tape 153 paid out from the tape roll 206 is conveyed along the conveying passage. At this time, the film spring 600 contacts and presses against the fabric tape 153 as indicated by the arrow P in
Specifically, as described in connection with
Further, the pressing force from the film spring 600 in the direction of the arrow P also urges the fabric tape 153 toward the base portion 500a. Consequently, the regulating function by means of the upper guide portion 500b and the lower guide portion 500c for restricting widthwise displacement of the fabric tape 153 can be sufficiently exhibited during moving past the regulation guide 500A, thereby restraining the fabric tape 153 from diagonal moving, folding, and generation of wrinkle at the time of conveyance of the fabric tape 153.
Particularly, the regulating function of the regulation guide 500A can be promoted by applying tension to the fabric tape 153 in such a manner that the film spring 600 positioned in the arm portion 34 presses against the fabric tape 153 in the direction perpendicular to the surface of the fabric tape 153.
Particularly, tensile force is imparted on the fabric tape 153 by the film spring 600, while the fabric tape 153 is nipped between the film spring 600 and the separation wall 500 that is positioned between the conveying passage of the ink ribbon 60 and the conveying passage of the fabric tape 153. Hence, the regulating function of the separation wall 500 can further be improved.
Particularly, the separation wall 500 includes the base portion 500a and the guide protrusion 500B, and the film spring 600 contacts the fabric tape 153 at the position between the base portion 500a and the guide protrusion 500B. Therefore, the fabric tape 153 is conveyed along the meandering passage contacting the guide protrusion 500B, the film spring 600, and the base portion 500a in this order. The contacts of the fabric tape 153 with the guide protrusion 500B, the film spring 600, and the base portion 500a and the meandering of the conveying passage can stably impart tension on the fabric tape 153.
Particularly, the film spring 600 is set in the arm portion 34 in resiliently deformed state against its natural shape, so that the film spring 600 contacts and presses against the fabric tape 153 by the resilient restoration force of the film spring 600. This restoration force can stably apply pressing force to the fabric tape 153.
Particularly, the engagement wall 34d is positioned downstream of the tip end 602d of the film spring 600 in the conveying direction of the fabric tape 153. Hence, even though the film spring 600 is urged to be moved toward downstream side in the conveying direction of the fabric tape 153 along with the movement of the fabric tape 153, the engagement wall 34d can prevent the film spring 600 from moving toward the downstream side. Further, displacement of the film spring 600 from its regular position due to user's handling error can also be obviated.
Generally, the fabric has low rigidity or linearity. Hence, deformation or buckling may likely to occur during conveyance of the fabric tape. However, in the tape cartridge 30 according to the first embodiment, conveyance of the fabric tape 153 can be performed under tension. Thus, regulating effect by the regulation guide 500A can be sufficiently exhibited.
Particularly, as illustrated in
Next, a tape cartridge 130 according to a second embodiment will be described with reference to
As illustrated in
The elastic member 700 is adhesively fixed to a lower surface of the upper wall 31U, the lower surface facing the resin film 207. The elastic member 700 is preferably made from sponge or rubber. The elastic members 700A, 700B each having a sector shape are illustrated by a solid line and two dotted chain line in
As illustrated in
The second embodiment exhibits the function the same as that of the first embodiment. That is, displacement of the fabric tape 153 in its widthwise direction can be restricted by the regulation guide 500A when the fabric tape 153 paid out from the tape roll 206 is conveyed along the conveying passage. At this time, the resin film 207 contacts and presses against the fabric tape 153 by the pressing force from the elastic member 700. Hence, a tensile force is applied to the fabric tape 153 conveyed along the conveying passage. Accordingly, the fabric tape 153 can be conveyed under tension in spite of low rigidity of the fabric tape 153. As a result, the regulation guide 500A can exhibit sufficient function of restricting widthwise displacement of the fabric tape 153.
As a result, the regulating function by means of the upper guide portion 500b and the lower guide portion 500c for restricting widthwise displacement of the fabric tape 153 can be sufficiently exhibited during moving past the regulation guide 500A, thereby restraining the fabric tape 153 from diagonal moving, folding, and generation of wrinkle at the time of conveyance of the fabric tape 153, Even though the fabric tape 153 is inherently easily deformed or buckled, the regulating function by the regulation guide 500A can be sufficiently exhibited, since the fabric tape 153 can be conveyed under tension. Further, as described in the first embodiment in connection with
Particularly, in the second embodiment, restricting function of the regulation guide 500A can be sufficiently exhibited, since the resin film 207 is positioned between the tape roll 206 and the cartridge case 31 and presses against the widthwise end of the fabric tape 153 to impart tension on the fabric tape 153.
Particularly, in the second embodiment, the elastic member 700A positioned between the resin film 207 and the cartridge case 31 presses against the resin film 207, so that the pressure from the elastic member 700A is applied to the widthwise end of the fabric tape 153 through the resin film 207, thereby generating sufficient tension in the fabric tape 153. Hence, sufficient restricting function of the regulation guide 500A can be exhibited.
Particularly, in the second embodiment, the elastic members 700A and 700B are positioned at diametrically opposite sides to each other with respect to the axis K of the tape roll 206. Hence, stabilized pressing force can be applied to the tape roll 206 from the elastic members.
Particularly, in the second embodiment, the elastic member 700 presses against at least the portion of the resin film 207, the portion being overlapped with the feed out portion FO of the fabric tape 153 from the tape roll 206. Therefore, pressing force of the elastic member 700 can be securely applied to the fabric tape 153 fed out to the conveying passage from the tape roll 206.
Particularly, in the second embodiment, the elastic member presses against at least the portion of the resin film 207, the portion being overlapped with a tangential lire TL at the outer diameter 206d of the tape roll 206. Therefore, pressing force of the elastic member 700 can be securely applied to the fabric tape 153 fed out to the conveying passage from the tape roll 206.
In the second embodiment, the elastic members 700A, 700B may be omitted as long as (a) the resin film 207 is in intimate contact with the upper wall 31U and the widthwise edge of the roll of the fabric tape 153, (h) the resin film 207 has a sufficient elasticity for pressing against the widthwise edge of the roll of the fabric tape 153, and (c) the resin film 207 has a low friction co-efficient with respect to the widthwise edge of the roll of the fabric tape 153.
In the above-description, the terms “vertical”, “parallel”, and “flat”, and the like are not in the narrowest sense. That is, production tolerance and manufacturing error are inclusive in these terms, and thus, “substantially vertical” “substantially parallel” and “substantially flat” are also within the meaning of these terms.
In the above description, the terms “identical”, “equal”, “different” and the like with respect to dimension and size are not in the narrowest sense. Production tolerance and manufacturing error are inclusive in these terms, and thus, “substantially identical”, “substantially equal”, and “substantially different” are also within the meaning of these terms.
While the description has been made in detail with reference to the specific embodiments, it would be apparent to those skilled in the art that various changes and modifications may be made without departing from the scope of the disclosure. For example, the film spring 600 in the first embodiment and the elastic member 700 in the second embodiment may be co-provided in the tape cartridge.
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2019-141362 | Jul 2019 | JP | national |
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Number | Date | Country | |
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20210031546 A1 | Feb 2021 | US |