JP4472489B2 - Transfer part support structure and transfer tool - Google Patents

Transfer part support structure and transfer tool Download PDF

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JP4472489B2
JP4472489B2 JP2004312378A JP2004312378A JP4472489B2 JP 4472489 B2 JP4472489 B2 JP 4472489B2 JP 2004312378 A JP2004312378 A JP 2004312378A JP 2004312378 A JP2004312378 A JP 2004312378A JP 4472489 B2 JP4472489 B2 JP 4472489B2
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transfer
transfer medium
support structure
tip
substrate
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JP2006123255A5 (en
JP2006123255A (en
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正人 中村
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General Co Ltd
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General Co Ltd
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Description

本発明は、蛇行や円弧、直線状に転写媒体を転写させるときに、安定して転写具に力をかけることができ、蛇行、円弧、直線状のいずれの操作においても転写媒体を意図どおりにかつ確実に転写させることができる転写部支持構造及び転写具に関するものである。 The present invention can stably apply a force to a transfer tool when transferring a transfer medium in a meandering, arc, or linear shape, and the transfer medium can be used as intended in any of the meandering, arcing, or linear operations. and it relates to reliably transcription unit Ru can be transcribed support structure and transfer tool.

近年、例えば液状の修正液や液状の糊に代って、適量を容易に使用できる使い易さなどといった利点から、転写媒体を紙などの被転写体に転写する転写具が普及している。修正用の白色の転写媒体は、被転写体に転写媒体を転写して修正個所を修正する。また、被転写体と貼着体とを貼着する粘着性を有する転写媒体は、被転写体に転写した転写媒体に貼着体が貼着される。   2. Description of the Related Art In recent years, transfer tools for transferring a transfer medium to a transfer medium such as paper have become widespread because of the advantage that, for example, an appropriate amount can be easily used instead of a liquid correction liquid or liquid glue. The white transfer medium for correction is corrected by transferring the transfer medium to the transfer medium. Moreover, as for the transfer medium which has the adhesiveness which sticks a to-be-transferred body and a sticking body, a sticking body is stuck to the transfer medium transferred to the to-be-transferred body.

上記した転写具は、粘着性を呈した転写媒体、白色の転写媒体、が異なる他は両者ともにほぼ同様であり、例えば次の構成となっている。転写具は、送出軸部、巻取軸部、及び転写部を備えている。送出軸部は、筐体内に設けられ、転写媒体が塗布された長尺帯状の基材をその回転により送り出す。巻取軸部は、筐体内に設けられ、被転写体に転写媒体を転写した後の基材をその回転により巻き取る。   The transfer tool described above is substantially the same except that the transfer medium exhibiting adhesiveness and the white transfer medium are different. For example, the transfer tool has the following configuration. The transfer tool includes a delivery shaft portion, a winding shaft portion, and a transfer portion. The delivery shaft portion is provided in the housing, and feeds a long belt-like base material coated with a transfer medium by its rotation. The winding shaft portion is provided in the housing, and winds the substrate after the transfer medium is transferred to the transfer target body by the rotation thereof.

転写部は、筐体の一端部に形成した開口から先端部が露出した状態で設けられている。転写部は、転写媒体を塗布した基材を送出軸部から送り出し、被転写体に転写媒体を転写し、その後、該基材を巻取軸部へ送る。   The transfer part is provided in a state where the tip part is exposed from an opening formed in one end part of the housing. The transfer unit feeds the substrate coated with the transfer medium from the delivery shaft, transfers the transfer medium to the transfer target, and then sends the substrate to the take-up shaft.

例えば、以下の特許文献1,2には、上記した構成とされた転写具において、転写媒体の転写方向を変更できる構成が示されている。
特開平6−286926号公報 特開平8−290699号公報
For example, Patent Documents 1 and 2 below show a configuration in which the transfer direction of the transfer medium can be changed in the transfer tool having the above-described configuration.
JP-A-6-286926 JP-A-8-290699

特許文献1には、転写部の先端部を筐体に支持する部位(以下、本願ではこの部位を「接続部」という)が弾性的に相対回転変位可能に設けられた構成が示されている。特許文献1の構成では、転写具を所望の転写方向に向けると、接続部が弾性で撓んでこれに伴って先端部が一体的に移動する。   Patent Document 1 shows a configuration in which a portion for supporting the tip of a transfer portion on a casing (hereinafter, this portion is referred to as a “connecting portion”) is provided so as to be capable of relative rotational displacement. . In the configuration of Patent Document 1, when the transfer tool is directed in a desired transfer direction, the connecting portion is elastically bent and the tip portion moves integrally with the connection portion.

特許文献2には、先端部がローラー状の転写部について、この先端部を貫通するシャフトに例えば円球部を設け、この円球部を、該先端部のシャフトが挿通される部位において円球部を受けるボール軸受け部を介して、左右に傾動自在に保持する構成が示されている。特許文献2の構成では、転写具を所望の転写方向に向けると、これに追随して先端部が円球部及びボール軸受け部を中心に傾動する。   In Patent Document 2, for a transfer portion having a roller-like tip portion, for example, a round sphere portion is provided on a shaft that passes through the tip portion, and the sphere portion is formed into a sphere at a portion where the shaft of the tip portion is inserted. The structure which hold | maintains so that it can tilt to right and left via the ball bearing part which receives a part is shown. In the configuration of Patent Document 2, when the transfer tool is directed in a desired transfer direction, the tip portion is tilted about the circular ball portion and the ball bearing portion following the transfer tool.

しかしながら、特許文献1は、転写方向の変更が接続部の捻れ方向の弾性変形に依存しているため、過度な力がかかったときには、接続部が破損してしまうといった問題がある。また、接続部が弾性復元力ですぐさま自然状態に戻ろうとするので、例えば弦の長い円弧状に転写媒体を転写しようとしても安定して操作することができないといった問題がある。   However, since the change in the transfer direction depends on the elastic deformation in the twist direction of the connection portion, Patent Document 1 has a problem that the connection portion is damaged when an excessive force is applied. In addition, since the connection portion immediately returns to a natural state by an elastic restoring force, there is a problem in that, for example, even if an attempt is made to transfer the transfer medium in a long circular arc shape of a string, it cannot be stably operated.

さらに、特許文献1は、上記した問題に起因して、直線状に転写媒体を転写する際には、転写具の操作にかかる力、このときは基材搬送方向に対して左右の不均一な力が先端部に反映されるので、安定して直線状に転写媒体を転写することができない。   Further, in Patent Document 1, due to the above-described problems, when transferring a transfer medium in a straight line, the force applied to the operation of the transfer tool, in this case, unevenness on the left and right with respect to the substrate transport direction Since the force is reflected on the tip, the transfer medium cannot be stably transferred linearly.

また、特許文献2は、ボール軸受けで円球部を受けているので、先端部が基材搬送方向の左右に揺動するのみならず、基材搬送方向の前後にも揺動してしまうから、先端部が安定せず、転写媒体を被転写体に転写するその初期の段階において方向が定めにくいといった問題がある。また、特許文献2は、先端部が上記したように前後左右に揺動するので、操作時の力がかけにくく安定して蛇行状や円弧状に転写媒体を転写できないといった問題がある。   Further, in Patent Document 2, since the ball portion is received by the ball bearing, the tip portion swings not only to the left and right in the substrate transport direction but also to the front and back in the substrate transport direction. However, there is a problem that the tip portion is not stable, and the direction is difficult to determine at the initial stage of transferring the transfer medium to the transfer medium. Further, Patent Document 2 has a problem that the transfer medium cannot be stably transferred in a meandering shape or an arc shape because the tip portion swings back and forth and left and right as described above, and a force during operation is difficult to be applied.

さらに、特許文献2は、被転写体の傾斜に追従させる構成であるために、転写具の操作で先端部が移動しにくく、この結果、直線状に転写媒体を転写しようとしても、意図しない方向に転写してしまうといった問題ある。   Furthermore, since Patent Document 2 is configured to follow the inclination of the transfer object, the tip portion is difficult to move by operating the transfer tool, and as a result, an unintended direction even if the transfer medium is to be transferred linearly. There is a problem that the image is transferred.

本発明が解決しようとする問題点は、転写媒体を蛇行状や円弧状、直線状に転写させようとしても安定して力をかけることができないという点、また、転写媒体を意図通りに確実に転写させることができない点である。   The problems to be solved by the present invention are that the transfer medium cannot be stably applied even when trying to transfer the transfer medium in a meandering shape, an arc shape, or a linear shape. It is a point that cannot be transferred.

本発明は、転写部の先端部に可動軸を設け、基材搬送方向と直交する方向に先端部を挟んで対向状に設けられた両壁面に被転写体と平行な長孔をそれぞれ形成し、両壁面の長孔に可動軸を各々配置した。   In the present invention, a movable shaft is provided at the front end of the transfer unit, and long holes parallel to the transfer target are formed on both wall surfaces provided opposite to each other across the front end in the direction perpendicular to the substrate transport direction. The movable shafts are arranged in the long holes on both wall surfaces.

本発明に係る転写部支持構造及び転写具は、可動軸が長孔内で揺動するから転写方向を変更することができるが、長孔が被転写体に対して平行となっているので不要な方向に可動軸が揺動しない。従って、転写媒体を蛇行状や円弧状に転写するときには安定して力をかけることができる。 Engaging Ru transcription unit support structure and transfer tool in the present invention can change the direction of transcription from the movable shaft is swung in the long hole, the long hole is parallel with respect to the transferred object Therefore, the movable shaft does not swing in unnecessary directions. Therefore, when transferring the transfer medium in a meandering or arcuate manner, a stable force can be applied.

また、直線状に転写媒体を転写しようとするときには、可動軸が揺動しないで長孔内における基材の搬送方向の端部で当接するから、確実かつ安定して直線状に転写媒体を転写することができる。   In addition, when trying to transfer the transfer medium in a straight line, the movable shaft does not oscillate and abuts at the end of the substrate in the transport direction in the long hole, so the transfer medium is transferred reliably and stably in a straight line. can do.

本発明は、例えば図1〜図9に示す形態で実施可能である。
図において、1は、例えば不図示の、筐体から転写媒体を塗布した基材を送り出す一方で、被転写体に転写した後の基材を巻き取る転写具に採用され、被転写体に転写媒体を転写するための転写部である。
The present invention can be implemented, for example, in the form shown in FIGS.
In the figure, for example, 1 is used for a transfer tool (not shown) that feeds a base material coated with a transfer medium from a casing, and is used for a transfer tool that winds the base material after transfer to the transfer target, and transfers it to the transfer target. It is a transfer part for transferring a medium.

上記した転写部1は、例えば転写媒体が塗布された基材を巻装した送出軸部、転写媒体を被転写体へ塗布した後の基材を巻き取る巻取軸部における、基材の搬送方向の途中に位置する。転写部1は、先端部1A(図1〜図5),1B(図6〜図9)が、筐体から露出しており、転写媒体及び基材を介して被転写体と接触するように設けられている。   The transfer unit 1 described above is, for example, transporting a base material in a feeding shaft portion wound with a base material coated with a transfer medium, and a winding shaft portion that winds the base material after the transfer medium is applied to a transfer target. Located in the middle of the direction. The transfer unit 1 has tip portions 1A (FIGS. 1 to 5) and 1 </ b> B (FIGS. 6 to 9) exposed from the housing so as to come into contact with the transfer target via the transfer medium and the base material. Is provided.

図1〜図5に示す先端部1Aは、例えば粘着性を有する転写媒体を被転写体へ転写する際に用いるローラー状のものである。図6〜図9に示す先端部1Bは、例えば修正用の白色の転写媒体を被転写体へ転写する際に用いる舌状のものである。   The tip portion 1A shown in FIGS. 1 to 5 is, for example, in a roller shape used when transferring a transfer medium having adhesiveness to a transfer target. The tip portion 1B shown in FIGS. 6 to 9 has a tongue-like shape used when, for example, a correction white transfer medium is transferred to a transfer target.

先端部1Aは、その回転中心位置で、基材の搬送方向と直交する両側に可動軸1aが形成されている。可動軸1aは断面円形とされ、これを中心に先端部1Aは回転する。一方、先端部1Bは、基材の搬送方向と直交する両側で、かつ筐体へ向かう途中部位に可動軸1bが形成されている。この可動軸1bは断面矩形とされ、これを中心には回転しない。   1 A of front-end | tip parts are the center of rotation, and the movable shaft 1a is formed in the both sides orthogonal to the conveyance direction of a base material. The movable shaft 1a has a circular cross section, and the tip 1A rotates around this. On the other hand, the distal end portion 1B is formed with a movable shaft 1b on both sides orthogonal to the conveyance direction of the base material and in a midway portion toward the housing. The movable shaft 1b has a rectangular cross section and does not rotate around this.

2は、先端部1A,1Bを挟んで、基材搬送方向と直交する方向に対向状に設けられた壁面である。壁面2,2は、先端部1A,1Bから基材がはみ出さないよう規制しておく機能を有する。そして、壁面2,2間は、先端部1A,1Bが揺動可能な程度の隙間とされている。   Reference numeral 2 denotes a wall surface provided in an opposing manner in a direction orthogonal to the substrate transport direction with the front end portions 1A and 1B interposed therebetween. The wall surfaces 2 and 2 have a function of restricting the base material from protruding from the front end portions 1A and 1B. And between the wall surfaces 2 and 2, it is set as the clearance | gap of the grade which can rock | fluctuate front-end | tip parts 1A and 1B.

上記両壁面2,2には、通常の最も適切な位置で転写具を使用する際において、被転写体の転写部位と平行な長孔2A,2Aをそれぞれ形成している。この長孔2A,2Aに先端部1A,1Bのそれぞれの可動軸1a,1bの両端部を位置させる。   The wall surfaces 2 and 2 are respectively formed with long holes 2A and 2A that are parallel to the transfer portion of the transfer object when the transfer tool is used at a normal and most appropriate position. Both ends of the movable shafts 1a and 1b of the tip portions 1A and 1B are positioned in the long holes 2A and 2A.

図1には例えば、先端部1Aを採用した例を示している。図1の構成で、転写媒体を円弧状に転写しようとすると、図2(a)又は(b)に示すように、円弧内側の可動軸1aが長孔2Aの基材搬送方向の端部(図示する長孔2A内の下端)に当接し、円弧外側の可動軸1aが長孔2Aの基材搬送方向と反対の端部(図示する長孔2A内の上端)に当接する。   For example, FIG. 1 shows an example in which the tip portion 1A is employed. In the configuration of FIG. 1, when the transfer medium is transferred in an arc shape, as shown in FIG. 2 (a) or (b), the movable shaft 1a on the inner side of the arc is the end of the long hole 2A in the substrate transport direction ( The movable shaft 1a on the outer side of the arc contacts the end (the upper end in the long hole 2A shown in the figure) opposite to the substrate transport direction.

このように、転写媒体を円弧状や蛇行状に転写しようとするときには、転写具の力のかけ具合に反応して可動軸1aが長孔2Aで移動して先端部1Aが揺動する。このとき、可動軸1aが長孔2A内の、基材搬送方向の端部又は基材搬送方向と反対の端部で当接し、それ以上の力が加わっても可動軸1aが移動しないから、転写媒体を安定して転写させることができる。   As described above, when the transfer medium is to be transferred in an arc shape or a meandering shape, the movable shaft 1a moves through the long hole 2A in response to the force applied by the transfer tool, and the tip portion 1A swings. At this time, the movable shaft 1a abuts at the end of the long hole 2A in the base material transport direction or the end opposite to the base material transport direction, and even if more force is applied, the movable shaft 1a does not move. The transfer medium can be stably transferred.

さらに、図1の構成で、転写媒体を直線状に転写しようとすると、図2(c)に示すように、先端部1Aの両方の可動軸1a,1aが長孔2Aの基材搬送方向の端部に当接する。従って、長孔2A内において可動軸1aが移動しないから、安定して直線状に転写媒体を転写することができる。   Further, when the transfer medium is to be transferred linearly with the configuration of FIG. 1, as shown in FIG. 2 (c), both the movable shafts 1a, 1a of the front end portion 1A are in the direction of transporting the base of the long hole 2A. Abuts the end. Therefore, since the movable shaft 1a does not move in the long hole 2A, the transfer medium can be transferred in a straight line stably.

本発明の転写部支持構造及び転写具は、上記に加えて図3に示す形態でも実施可能である。すなわち、図3は、長孔2Aにおける基材の搬送方向の端部に、絞り部2aを介した枢支孔2Bを該長孔2Aから連続して形成した構成である。 Transcription unit support structure and the transfer device of the present invention can also be embodied in the form illustrated in FIG. 3 in addition to the above. That is, FIG. 3 shows a configuration in which a pivotal support hole 2B is formed continuously from the elongated hole 2A at the end of the elongated hole 2A in the substrate transport direction.

蛇行など転写方向を変更可能な状態のときは、図3(a)に示すように、可動軸1aを長孔2A内に移動させて使用する。このときに蛇行操作を行うと図3(b)に示すように、長孔2A内で絞り部2aを端部として図2で示したように先端部1Aが揺動する。   When the transfer direction can be changed, such as meandering, the movable shaft 1a is moved into the elongated hole 2A as shown in FIG. When the meandering operation is performed at this time, as shown in FIG. 3B, the distal end portion 1A swings as shown in FIG. 2 with the throttle portion 2a as the end portion in the long hole 2A.

直線状に転写媒体を転写するときは、図3(c)に示すように、可動軸1aを絞り部2aを介して枢支孔2Bに移動させて使用する。このときに直線操作を行うと図3(d)に示すように、可動軸1aが枢支孔2B内のみで回転して揺動しない。   When transferring the transfer medium in a straight line, as shown in FIG. 3C, the movable shaft 1a is moved to the pivot hole 2B via the restricting portion 2a. If linear operation is performed at this time, as shown in FIG. 3D, the movable shaft 1a rotates only within the pivotal support hole 2B and does not swing.

図3のように構成すれば、蛇行の操作状態と、直線の操作状態とを明確に使い分けることができるので、例えば蛇行操作中に直線状になってしまったり、直線操作中に蛇行してしまうといったことが防止できる。   If it is configured as shown in FIG. 3, the operation state of the meander and the operation state of the straight line can be clearly used properly. For example, the meandering state becomes straight during the meandering operation or meanders during the straight line operation. Can be prevented.

さらに、上記した図1及び図2に示した構成例に加えて、図4に示すように、長孔2Aにおける基材の搬送方向と反対の端部に、壁面2の縁部から切り欠いた切欠部2Cを該長孔2Aから絞り部2bを介して連続して形成してもよい。また、上記した図3に示した構成例に加えて、図5に示すように、長孔2Aにおける基材の搬送方向と反対の端部に、壁面2の縁部から切り欠いた切欠部2Cを該長孔2Aから絞り部2bを介して連続して形成してもよい。   Further, in addition to the configuration example shown in FIGS. 1 and 2 as described above, as shown in FIG. 4, the end of the long hole 2A opposite to the conveying direction of the base material is cut out from the edge of the wall surface 2. The cutout portion 2C may be continuously formed from the elongated hole 2A through the throttle portion 2b. Further, in addition to the configuration example shown in FIG. 3 as described above, as shown in FIG. 5, a notch 2C cut out from the edge of the wall surface 2 at the end opposite to the conveying direction of the base material in the long hole 2A. May be continuously formed from the elongated hole 2A through the narrowed portion 2b.

上記した切欠部2Cは、例えば径の異なる先端部1Aを取り換えたり、または先端部1Aを先端部1Bに取り換えるといった場合に用いる。   The above-described notch portion 2C is used when, for example, the tip portion 1A having a different diameter is replaced or the tip portion 1A is replaced with the tip portion 1B.

径の異なる先端部1Aを取り換えたり、または先端部1Aを先端部1Bに取り換える場合は、可動軸1aまたは可動軸1bを長孔2Aから絞り部2bを越えて切欠部2Cへと移動させる。そして切欠部2Cにより壁面2の縁部へと案内し、取り出し、交換する。   When the tip portion 1A having a different diameter is replaced or the tip portion 1A is replaced with the tip portion 1B, the movable shaft 1a or the movable shaft 1b is moved from the long hole 2A to the notch portion 2C beyond the throttle portion 2b. And it guides to the edge part of the wall surface 2 by the notch part 2C, takes out, and replaces | exchanges.

先端部1Bを採用する場合を図6〜図9に示す。先端部1Bの可動軸1bは、上記したように断面矩形とされ、これを中心には回転しない。図6は、図1及び図2に示した構成で先端部1Bを採用している。図6に示す例では、可動軸1bは回転はしないが、長孔2A内の可動軸1bは上記同様に揺動するから図1及び図2と同じ作用効果を得ることができる。   The case where the tip 1B is employed is shown in FIGS. The movable shaft 1b of the distal end portion 1B has a rectangular cross section as described above, and does not rotate around this. FIG. 6 employs the tip 1B in the configuration shown in FIGS. In the example shown in FIG. 6, the movable shaft 1 b does not rotate, but the movable shaft 1 b in the long hole 2 </ b> A swings in the same manner as described above, so that the same operational effects as in FIGS. 1 and 2 can be obtained.

図7は、図3に示した構成で先端部1Bを採用している。図7に示す例では、上記同様に枢支孔2Bに可動軸1bを位置させれば直線操作が可能な状態となり、蛇行などの操作状態とを明確に使い分けることができる。   FIG. 7 employs the tip 1B in the configuration shown in FIG. In the example shown in FIG. 7, if the movable shaft 1b is positioned in the pivot support hole 2B in the same manner as described above, a linear operation is possible, and an operation state such as meandering can be clearly used.

図8及び図9は、図4及び図5に示した構成で先端部1Bを採用している。図8及び図9に示す例では、上記同様、先端部1Bから先端部1Aへと取り換えたり、先端長さの異なる先端部1Bを取り換えたりすることができる。   8 and 9 employ the tip 1B in the configuration shown in FIGS. In the example shown in FIGS. 8 and 9, as described above, the tip portion 1B can be replaced with the tip portion 1A, or the tip portion 1B having a different tip length can be replaced.

以下、本発明に係る転写部支持構造及び転写具の効果を確認する実験について説明する。実験は、1)転写媒体を30°(r=5cm)の円弧の中心が基材搬送方向を中心として左右で交互に位置するように、つまり蛇行状に転写する、2)r=15cmから0.5cmずつ半径を小さくして真円を描くように転写する、3)90°(r=5cm)の円弧状に転写した後、20cmだけ直線状に転写し、これを連続的に3回繰り返す、ときの使用感、転写媒体の転写状況について確認した。 The following describes experiments to confirm the effect of the engagement Ru transcription unit support structure and transfer tool in the present invention. Experiment is 1) as the center of the arc of 30 ° to the transfer medium (r = 5 cm) is located alternately on the left and right around the substrate conveying direction, that is transferred in a meandering shape, 2) from r = 15cm 3) Transfer in a circular pattern of 90 ° (r = 5cm), then transfer in a straight line by 20cm, and repeat this three times continuously. Repeatedly, the feeling of use at the time and the transfer state of the transfer medium were confirmed.

比較する対象は、特許文献1(比較例1)と特許文献2(比較例2)の構成である。
比較例1の結果は、次の通りである。
1)円弧の中心を変えたときには、転写具への力のかけ方にばらつきが生じ、これが接続部へ反映されてきれいな蛇行線を描くように転写媒体を転写することができなかった。 2)r=7.5cmのときに、接続部の弾性復元により先端部が円弧外側に戻ろうとして、または先端部の一部が被転写体から浮いて(これを「片当たり」という)、転写媒体が転写できない又は転写媒体が一部転写できない場合が生じた。
3)直線状に転写する際に、基材搬送方向に対して左右均等に力をかけたつもりでも接続部が容易に弾性変形するため、ふにゃふにゃとした感触と共に転写具がふらついて蛇行状に転写してしまった。
The objects to be compared are the configurations of Patent Document 1 (Comparative Example 1) and Patent Document 2 (Comparative Example 2).
The results of Comparative Example 1 are as follows.
1) When the center of the arc was changed, the method of applying force to the transfer tool varied, and this was reflected on the connecting portion, and the transfer medium could not be transferred so as to draw a beautiful meander line. 2) When r = 7.5 cm, the tip portion tries to return to the outside of the arc due to elastic restoration of the connection portion, or a part of the tip portion floats from the transfer target (this is referred to as “single contact”), There were cases where the transfer medium could not be transferred or the transfer medium could not be partially transferred.
3) When transferring in a straight line, the connection part is easily elastically deformed even if the force is applied evenly in the left-right direction with respect to the substrate transport direction. have done.

比較例2の結果は、次の通りである。
1)先端部が転写具の動きに追従するのではなく、被転写媒体の傾斜に追従する傾向が強いために、意図した蛇行線を描くように転写媒体を転写させることができなかった。
2)1)同様の理由により、最初から意図した真円を描くように転写媒体を転写させることができなかった。
3)円弧部分は1)2)の通り意図通りに描くように転写媒体を転写させることができず、かつ直線部では、基材搬送方向に対して左右均等に力をかけたつもりでも先端部のふらつき、つまり転写具の動きに追従させることが困難であったために、意図どおりに直線を描くように転写媒体を転写することができなかった。
The results of Comparative Example 2 are as follows.
1) Since the tip portion does not follow the movement of the transfer tool but tends to follow the inclination of the transfer medium, the transfer medium cannot be transferred so as to draw the intended meandering line.
2) 1) For the same reason, the transfer medium could not be transferred so as to draw the intended perfect circle from the beginning.
3) The circular arc part cannot transfer the transfer medium as intended as 1) 2), and the straight part is the tip part even if it is intended to apply force evenly in the right and left direction in the substrate conveyance direction. Because of this, it was difficult to follow the movement of the transfer tool, so the transfer medium could not be transferred in a straight line as intended.

(第1実施例)
第1実施例は図1及び図2に示した構成であり、結果は次の通りである。
1)転写具の力のかけ具合にうまく追従して、可動軸1aが長孔2Aに案内され、かつ長孔2Aは被転写媒体と平行とされていることから、可動軸1aつまり先端部1Aが不要な挙動をせず、良好に蛇行線を描くように転写媒体を転写させることができた。
2)r=5cmまで良好に真円を描くように転写媒体を転写させることができた。
3)円弧部は2)同様に良好に転写でき、可動軸1aが長孔2Aの基材搬送方向の端部と当接して安定状態となったため、直線状に転写媒体を転写することができた。
(First embodiment)
The first embodiment has the configuration shown in FIGS. 1 and 2, and the results are as follows.
1) The movable shaft 1a is guided to the long hole 2A following the force applied by the transfer tool, and the long hole 2A is parallel to the medium to be transferred. However, the transfer medium could be transferred so as to draw a meandering line without causing unnecessary behavior.
2) The transfer medium could be transferred so as to draw a perfect circle well up to r = 5 cm.
3) The arc portion can be transferred in the same manner as in 2), and the movable shaft 1a comes into contact with the end of the long hole 2A in the substrate conveyance direction to be in a stable state, so that the transfer medium can be transferred linearly. It was.

(第2実施例)
第2実施例は図3に示した構成であり、結果は次の通りである。
1)2)第1実施例と同様に、意図する蛇行線、r=5cmまで真円を描くように転写媒体を転写させることができた。
3)円弧部は2)同様良好に転写でき、可動軸1aが絞り部2aを越えて枢支孔2Bに移動して直線状に転写媒体を転写することができた。一方、直線部から円弧部に移行するときに、基材搬送方向に対して左右不均一に力をかけると、円弧の内側となる可動軸1aが絞り部2aを越えて長孔2Aに移動し、さらに円弧の内側となる側に力を加えると先端部1Aの大きな傾きによって円弧の外側となる可動軸1aもまた長孔2Aに移動し円弧状に転写媒体を転写することができた。この結果、連続的に意図どおりに円弧部と直線部で転写媒体を転写することができた。
(Second embodiment)
The second embodiment has the configuration shown in FIG. 3, and the results are as follows.
1) 2) As in the first embodiment, the transfer medium could be transferred so as to draw a perfect circle up to the intended meander line, r = 5 cm.
3) The arc portion could be transferred satisfactorily as in 2), and the movable shaft 1a moved over the throttle portion 2a to the pivot hole 2B to transfer the transfer medium linearly. On the other hand, when moving from the straight line portion to the circular arc portion, if the force is applied non-uniformly in the left-right direction with respect to the substrate conveyance direction, the movable shaft 1a, which is the inner side of the circular arc, moves over the throttle portion 2a to the long hole 2A. Further, when a force was further applied to the inner side of the arc, the movable shaft 1a that became the outer side of the arc also moved to the long hole 2A due to the large inclination of the tip 1A, and the transfer medium could be transferred in an arc shape. As a result, the transfer medium could be continuously transferred between the arc portion and the straight portion as intended.

(第3実施例)
第3実施例は、図4及び図5の構成についてであり、この結果は1)〜3)共に第1又は第2実施例と同様であった。
実施例1及び2と較べて、第3実施例の構成で特筆すべき点は、上記した効果に加えて先端部1Aを取り換えることができる点が挙げられる。
(Third embodiment)
The third example relates to the configuration of FIGS. 4 and 5, and the results are the same as those of the first or second example in all of 1) to 3).
Compared to the first and second embodiments, the point that should be noted in the configuration of the third embodiment is that the tip portion 1A can be replaced in addition to the effects described above.

そして、図6〜図9に示す構成、すなわち先端部1Bを採用しても第1及び第2実施例と同等の作用効果を得ることができた。なお、図8及び図9に示す先端部1Bを用いた構成は、絞り部2bを介して切欠部2Cから図4及び図5に示した先端部1Aを取り出して先端部1Bを取り換えている。   And even if it employ | adopted the structure shown in FIGS. 6-9, ie, the front-end | tip part 1B, the effect equivalent to the 1st and 2nd Example was able to be acquired. In the configuration using the distal end portion 1B shown in FIGS. 8 and 9, the distal end portion 1B is replaced by taking out the distal end portion 1A shown in FIGS. 4 and 5 from the notch portion 2C via the throttle portion 2b.

本発明に係る転写具は、上記転部支持構造を採用することに特化しているので、それ以外の転写具の構成には特に限定はないが、少なくとも筐体、送出軸部、巻取軸部、及び転写部を備えた構成において本発明に係る転写具支持構造を採用すればよい。また、消耗部材、つまり転写媒体を塗布した基材とその周辺部品のみを交換するいわゆるカートリッジ式の転写具に採用しても上記と同等の作用効果を得ることができる。 Transfer tool according to the present invention, since specializing in adopting upper Kiten shooting unit supporting lifting structure is not particularly limited in the other transfer tool configuration, at least the housing, the delivery shaft portion, What is necessary is just to employ | adopt the transfer tool support structure which concerns on this invention in the structure provided with the winding shaft part and the transfer part. Further, even when employed in a so-called cartridge-type transfer tool that replaces only a consumable member, that is, a base material coated with a transfer medium and its peripheral parts, the same effect as described above can be obtained.

さらに、例えば粘着性を呈した転写媒体、白色の転写媒体、蛍光色の転写媒体、のいずれが基材に塗布されていても採用でき、上記実施例と同等の作用効果を得ることができるのは言うまでもない。   Furthermore, for example, any of a transfer medium exhibiting adhesiveness, a white transfer medium, and a fluorescent color transfer medium can be employed even if it is applied to the base material, and the same effects as the above embodiments can be obtained. Needless to say.

本発明の転写部支持構造及び転写具の第1実施例構成を示し、基材搬送方向の側方から見た図である。It shows a first embodiment configuration of the transcription unit support structure and the transfer device of the present invention, as viewed from the side of the substrate carrying direction. 本発明の転写部支持構造及び転写具の第1実施例構成における図1のA−A線断面図であり、(a)は紙面右曲がりの円弧を、(b)は紙面左曲がりの円弧を、(c)は直線を、それぞれ描くように使用している状況を示す。An A-A line sectional view of FIG. 1 in the first embodiment configuration of the transcription unit support structure and the transfer device of the present invention, (a) represents an arc of the paper right bending, (b) the arc of the paper left bend (C) shows a situation where straight lines are used to draw each line. 本発明の転写部支持構造及び転写具の第2実施例構成を示し、(a)は円弧又は蛇行操作時の基材搬送方向の側方から見た図、(b)は(a)のB−B線断面図、(c)は直線走行時の基材搬送方向の側方から見た図、(d)は(c)のC−C線断面図、である。Shows a second embodiment configuration of the transcription unit support structure and the transfer device of the present invention, (a) is viewed from the side of the arc or serpentine-operation of the substrate conveying direction drawing, of (b) is (a) FIG. 4B is a cross-sectional view taken along line B-B, FIG. 5C is a cross-sectional view taken along the line C-C in FIG. 本発明の転写部支持構造及び転写具の第3実施例構成を示し、基材搬送方向の側方から見た図である。It shows a third embodiment configuration of the transcription unit support structure and the transfer device of the present invention, as viewed from the side of the substrate carrying direction. 本発明の転写部支持構造及び転写具の第3実施例の他の構成を示し、基材搬送方向の側方から見た図である。It shows another configuration of the third embodiment of the transcription unit support structure and the transfer device of the present invention, as viewed from the side of the substrate carrying direction. 本発明の転写部支持構造及び転写具の第1実施例において先端部を代えた例を示し、基材搬送方向の側方から見た図である。It shows an example of substituting the distal portion in the first embodiment of the transcription unit support structure and the transfer device of the present invention, as viewed from the side of the substrate carrying direction. 本発明の転写部支持構造及び転写具の第2実施例において先端部を代えた例を示し、基材搬送方向の側方から見た図である。It shows an example of substituting the distal portion in the second embodiment of the transcription unit support structure and the transfer device of the present invention, as viewed from the side of the substrate carrying direction. 本発明の転写部支持構造及び転写具の第3実施例において先端部を代えた例を示し、基材搬送方向の側方から見た図である。It shows an example of substituting the distal portion in the third embodiment of the transcription unit support structure and the transfer device of the present invention, as viewed from the side of the substrate carrying direction. 本発明の転写部支持構造及び転写具の第3実施例の他例において先端部を代えた例を示し、基材搬送方向の側方から見た図である。It shows an example of replacing the tip in another example of the third embodiment of the transcription unit support structure and the transfer device of the present invention, as viewed from the side of the substrate carrying direction.

符号の説明Explanation of symbols

1 転写部
1A 先端部
1B 先端部
1a 可動軸
1b 可動軸
2 壁面
2A 長孔
2B 枢支孔
2C 切欠部
2a 絞り部
2b 絞り部
DESCRIPTION OF SYMBOLS 1 Transfer part 1A Tip part 1B Tip part 1a Movable shaft 1b Movable shaft 2 Wall surface 2A Long hole 2B Pivot hole 2C Notch part 2a Restriction part 2b Restriction part

Claims (4)

筐体から転写媒体を塗布した基材を送り出す一方で、被転写体に転写媒体を転写した後の基材を巻き取る転写具において被転写体に転写媒体を転写する転写部の支持構造であって、転写媒体及び基材を介して被転写体と接触する先端部に可動軸を設け、基材搬送方向と直交する方向に前記先端部を挟んで対向状に設けられた両壁面に被転写体と平行な長孔をそれぞれ形成し、前記両壁面の前記長孔に前記可動軸を各々配置したことを特徴とする転写部支持構造。 This is a support structure for a transfer unit that transfers a transfer medium onto a transfer medium in a transfer tool that winds the substrate after transferring the transfer medium onto the transfer medium while feeding the base material coated with the transfer medium from the housing. Then, a movable shaft is provided at the tip that contacts the transfer medium via the transfer medium and the substrate, and the object is transferred to both wall surfaces provided opposite to each other with the tip in the direction perpendicular to the substrate transport direction. body and parallel to the long holes are formed respectively, wherein the transcription unit support structure you characterized in that respectively arranged the movable shaft to the slot of both walls. 長孔における基材の搬送方向の端部に、絞り部を介した枢支孔を該長孔から連続して形成したことを特徴とする請求項1記載の転写部支持構造。 The end of the conveying direction of the substrate in the long hole, transcription unit support structure according to claim 1, characterized by forming in succession a pivot hole through the throttle portion from the long hole. 長孔における基材の搬送方向と反対の端部に、壁面縁部から切り欠いた切欠部を該長孔から連続して形成したことを特徴とする請求項1又は2記載の転写部支持構造。 The end opposite to the transport direction of the substrate in the long hole, transcription unit support according to claim 1 or 2, wherein the formed continuously notch cut away from the wall edge of the long hole Construction. 請求項1〜3のいずれかに記載の転写部支持構造を備えたことを特徴とする転写具。A transfer tool comprising the transfer part support structure according to claim 1.
JP2004312378A 2004-10-27 2004-10-27 Transfer part support structure and transfer tool Expired - Fee Related JP4472489B2 (en)

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