JPS617147A - Guide device for sheet material - Google Patents

Guide device for sheet material

Info

Publication number
JPS617147A
JPS617147A JP12494984A JP12494984A JPS617147A JP S617147 A JPS617147 A JP S617147A JP 12494984 A JP12494984 A JP 12494984A JP 12494984 A JP12494984 A JP 12494984A JP S617147 A JPS617147 A JP S617147A
Authority
JP
Japan
Prior art keywords
guide
guides
sheet material
document
original
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
JP12494984A
Other languages
Japanese (ja)
Inventor
Hiroaki Matsumoto
博明 松本
Hiromichi Nagane
永根 宏道
Akio Okubo
明夫 大久保
Toshiyuki Okuma
利幸 大熊
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Canon Inc
Original Assignee
Canon Inc
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Canon Inc filed Critical Canon Inc
Priority to JP12494984A priority Critical patent/JPS617147A/en
Publication of JPS617147A publication Critical patent/JPS617147A/en
Pending legal-status Critical Current

Links

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65HHANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
    • B65H5/00Feeding articles separated from piles; Feeding articles to machines
    • B65H5/36Article guides or smoothers, e.g. movable in operation
    • B65H5/38Article guides or smoothers, e.g. movable in operation immovable in operation

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Manual Feeding Of Sheets (AREA)
  • Registering Or Overturning Sheets (AREA)
  • Sheets, Magazines, And Separation Thereof (AREA)

Abstract

PURPOSE:To improve slidability ever so better, by installing a guiding device, guiding guide members shiftably in a fixed direction, and a rotary member performing its rolling contact with these guide members and/or the guiding device, in case of a pair of these guide members for guiding a sheet material for a copying machine or the like. CONSTITUTION:A sheet material guiding device of a facsimile unit is provided with an original positioning part which makes a center line of an original table 3 as a criterion and thereby performs the positioning of an original, and this part has two shiftable guides 5 and 6. In this case, racks 8 and 9 are locked to each of these guides 5 and 6, interlocking both racks 8 and 9 via a pinion 16 engaging them at the same time. In addition, two round long holes 18 and 19 extending in a direction right-angled with an original feeding direction are formed in the original table 3 in point symmetrical relation centering on the pinion 16. And, each of these guides 5 and 6 makes rotary members 10, 11 and 14, 15 being rotatably supported on bosses 20-23 installed in these guides get fitted in each of these round long holes 18 and 19, and further makes them do sliding guidance.

Description

【発明の詳細な説明】 産業上の利用範囲 本発明Fi複写機・印刷機・記録機・ファクシミリ・そ
の他原稿・複写材等のシート材を搬送する機構を具備す
る各種1機械等に利用できるシート材の案内装置に関す
るもので、特にシート材の搬送方向中心に対して中央振
分けで位置決めする際のシート材の案内装置に関するも
のである。
[Detailed Description of the Invention] Scope of Industrial Application This invention Fi sheets can be used in various machines equipped with a mechanism for conveying sheet materials such as copying machines, printing machines, recording machines, facsimile machines, and other sheet materials such as manuscripts and copying materials. The present invention relates to a sheet material guiding device, and particularly relates to a sheet material guiding device for positioning the sheet material by central distribution with respect to the center of the sheet material in the conveying direction.

従来の技術及び発明が解決しようとする問題点 従来、この種のファクシミリ装置等の例えば原稿の位置
決めガイドは原稿台等とすベシ接触で摺動可能に構成さ
れていたが、摺動性が悪くなることが多く、商品として
の高級感を損うものであった。さらにすベシ接触部分と
、移動するガイドの手で作動させる部分とを離して配設
すると1手動で移動するガイドに作用する力の作用線と
摺動部分に作用する摩擦力の作用線が同一直線上でなく
なるために、移動ガイドに回転モーメントを生じせしめ
る。このモーメントによりすべや接触部がかじりを起こ
してガイドが摺動しないという事故を引き起こしやすい
という欠点があった。
Problems to be Solved by the Prior Art and the Invention Conventionally, the document positioning guide of this type of facsimile machine, etc., was configured to be able to slide by making bevel contact with the document table, etc., but the sliding property was poor. This often led to a loss of luxury as a product. Furthermore, if the contact part of the bevel and the manually actuated part of the moving guide are placed apart, the line of action of the force acting on the manually moving guide will be the same as the line of action of the frictional force acting on the sliding part. The lack of alignment creates a rotational moment in the moving guide. This moment has the drawback of causing galling of the slides and contact parts, which can easily cause an accident in which the guide does not slide.

発明の目的 そこで1本発明は以上のような欠点に鑑みて改良した新
規なシート材の案内装置を提供することを目的とする。
OBJECTS OF THE INVENTION An object of the present invention is to provide a novel sheet material guiding device that is improved in view of the above-mentioned drawbacks.

本発明の別の目的は1位置決めガイドの摺動性を良好に
したシート材の案内装置を提供することである。
Another object of the present invention is to provide a sheet material guiding device in which the slidability of one positioning guide is improved.

問題点を解決するための手段 シート材の幅に応じて移動可能な一対のガイド部材によ
りシート材を案内するために、該ガイド部材を一定の方
向移動可能に案内する案内手段と、そのガイド部材と該
案内手段のずくな実施例 第1図はファクシミリ装置の一例を要部のみ示す外観斜
視図である。本発明にかかるシート材の案内装置2eま
ファクシミリ本体1の上部に配設されている。複数の送
信原稿が原稿台3に積載さ肛、Dλ稿読取部4内に配設
される自動給紙装置により最下位のものから1枚ずつ分
離されて矢印aで示す送信原稿給送方向へ送り出される
。原稿読取部を送信原稿が通過する時に光学的装置によ
って 配光学的中心と原稿台3の中心が一致するよう構成され
る。よって実際は原稿台3の中央線を基準として原稿が
位置決めされれば良いことになる。また送信原稿のサイ
ズと本ファクシミリが送信する相手側のファクシミリ受
信装置の記録紙サイズの関係や送受信装置毎の通信機能
に応じて送信モードを決定する必要があるので送信原稿
サイズを検知しなければならない。原稿位置決め部は移
動可能な2つのガイド(原稿位置決めガ1ド)5,6を
有している。ガイド5゜6は送信原稿幅に応じて矢印a
方向(送信原稿給送方向)と直角方向に中心振り分けで
移動させることができる。そしてガイド5,6の位置を
マイクロスイッチやフォトセンサ等で検知することによ
ってセットされた原稿の幅を検出している。
Means for Solving the Problems In order to guide a sheet material by a pair of guide members movable according to the width of the sheet material, a guide means that guides the guide members so as to be movable in a fixed direction, and the guide member. FIG. 1 is an external perspective view showing only the essential parts of an example of a facsimile machine. A sheet material guiding device 2e according to the present invention is disposed on the upper part of the facsimile main body 1. When a plurality of documents to be transmitted are stacked on the document table 3, an automatic paper feeder installed in the Dλ document reading section 4 separates the documents one by one starting from the lowest one and moves them in the direction of feeding the documents to be transmitted as indicated by arrow a. Sent out. An optical device is configured so that the center of optical distribution and the center of the document table 3 coincide with each other when the transmitted document passes through the document reading section. Therefore, in reality, the document only needs to be positioned with reference to the center line of the document table 3. In addition, it is necessary to determine the transmission mode according to the relationship between the size of the transmitted document and the recording paper size of the facsimile receiving device to which this facsimile is being sent, as well as the communication function of each transmitting and receiving device, so the size of the transmitted document must be detected. No. The document positioning section has two movable guides (document positioning guides 1 and 1) 5 and 6. Guide 5゜6 moves according to the width of the document to be sent.
It can be moved in a direction perpendicular to the direction (transmission document feeding direction) with center distribution. The width of the set document is detected by detecting the positions of the guides 5 and 6 using a microswitch, a photo sensor, or the like.

第2図は原稿位置決め部の正視詳細図である。FIG. 2 is a detailed front view of the document positioning section.

原稿位置決め部は送信原稿7の矢印a方向と平行な辺部
7a、7bをそれぞれガイド5.6の垂直部内壁5a、
6aiもって押えるため前述の自動給紙装置で原稿が給
送されるときに送信原稿が斜行することを防止する効果
を持つ。ここでガイド5.6が前述の自動給紙装置と離
れた構成をとると、自1tJJ給紙装を市によって矢印
a方向に移動した原稿7はすぐにガイド5,6からはず
れてしまい斜行防止の効果は薄れてしまう。そこで前述
の自動給紙装置と原稿位置決め部は近接して配設されて
いる。ファクシミリ操作者は送信原稿のサイズにより頻
繁に原稿位置決め部を操作しなければならないのでガイ
ド5,6を移動させるときの動作力や感触はファクシミ
リの操作性を論するときの大きな要素である。第3図は
第2図の裏面詳細図である。
The document positioning unit aligns the sides 7a and 7b of the transmitted document 7 parallel to the direction of the arrow a with the vertical inner wall 5a of the guide 5.6, respectively.
Since the document is pressed with 6ai, it has the effect of preventing the transmitted document from being skewed when the document is fed by the above-mentioned automatic paper feeder. If the guides 5 and 6 are separated from the automatic paper feeder described above, the document 7 that has been moved in the direction of arrow a by the paper feeder will immediately come off the guides 5 and 6 and will be skewed. The effectiveness of prevention will be diminished. Therefore, the above-mentioned automatic paper feeder and document positioning section are arranged close to each other. Since the facsimile operator must operate the document positioning section frequently depending on the size of the document to be sent, the operating force and feel when moving the guides 5 and 6 are important factors when discussing the operability of the facsimile. FIG. 3 is a detailed view of the back side of FIG. 2.

ラック8,9がガイド5,6にそれぞれ固定されている
。ラック8とラック?は図示しない軸上に回転可能に軸
支されたビニオン16にかみ合っておシ、ガイド5また
は6のうちどちらを動かしてもそれに伴って他方も同じ
量だけ反対方向に移動する。ガイド5,6は矢印a方向
と直角方向以外の動きは拘束されなければならない。
Racks 8 and 9 are fixed to guides 5 and 6, respectively. Rack 8 and rack? is engaged with a pinion 16 that is rotatably supported on a shaft (not shown), so that when either guide 5 or 6 is moved, the other one is also moved by the same amount in the opposite direction. The guides 5 and 6 must be restrained from moving in directions other than those perpendicular to the direction of arrow a.

本実施例はころがシ接触を用いて前述の方向への拘束を
実現した。以下にその実施例の構成と動作を図面を用い
て説明する。原稿台3には丸長大18.19がビニオン
16を中心として5点対称の関係にあるようにおいてお
り、丸長穴18゜19の長手方向は矢印a方向に直角で
ある0回転部材10.11および14.15はそれぞれ
ガイド5.6上に紙面に直角方向に立っているボス20
,21.2223に回転支持されている。丸長大180
幅よシ小さい直径を持つ回転部材10.11の外周部は
、丸長大18の対向する長辺部の内壁18a、18bに
それぞれころがり接触している9回転部材10.11が
前述のように丸長大18の内壁にそれぞれころがり接触
したときちょうどガイド5が送信原稿を矢印a方向にガ
イドするように、ボス20.21の位置は矢印a方向に
丸長大18の幅と回転部材10゜11の直径との差だけ
ずらして配置される。
In this embodiment, the restraint in the above-mentioned direction was realized using roller contact. The configuration and operation of this embodiment will be explained below with reference to the drawings. On the document table 3, long round holes 18 and 19 are placed in a 5-point symmetrical relationship with the pinion 16 as the center, and zero rotation members 10 and 11 whose longitudinal direction of the round holes 18 and 19 are perpendicular to the direction of arrow a. and 14.15 are respectively bosses 20 standing on the guides 5.6 in a direction perpendicular to the plane of the paper.
, 21.2223. Marunagadai 180
The outer periphery of the rotating member 10.11, which has a diameter smaller than its width, is round as described above. The positions of the bosses 20 and 21 are set so that the width of the round length 18 and the diameter of the rotating member 10° and the diameter of the rotating member 11 are aligned in the direction of the arrow a so that the guide 5 guides the transmitted document in the direction of the arrow a when the guide 5 rolls into contact with the inner wall of the round length 18 respectively. The location is shifted by the difference between the two.

本ファクシミリ装置に使用される原稿サイズによりガイ
ドの移動ずべき景は決定される。すなわち、A5判(1
48間中)からA6判(297frllIjl)まで使
用できるとするとガイドは片側で74イ移動できるよう
に設定されなければならない。丸長穴18の長手方向の
長さに応じてボス20.21の丸長穴18の長手方向の
間−隔を決定する。次に第4図においてカイト5から立
っているボス20.21の高さは原稿台6の厚みより高
く、さらに回転部材10゜11の厚みは原稿台3の厚み
より薄くして、ボス丸 20.21に回転部材10.11を浜穴1Bに入るよう
に回転支持させても原稿台3からボス20.21が突出
するようなボス20.21の高さにする9ラツク8はボ
ス20.21の前述の突出部に固定してガイド5に固定
する。さらに回転部材10.11が前述のように丸長大
18の対向する長辺部にそれぞれころがシ接触したとき
ラック8がちょうど丸長大1Bの長手方向と平行になる
ようにラック8をガイド5Vc固定する。ラック8の幅
は丸長穴18の幅より大きく原稿台6を回転部材10.
11金介してラック8とガイド5ではさみこむような配
置となシ、ガイド5は矢印2方向(原稿台5の平面と直
角方向)に原稿台3に対して位置決めされることになる
The direction in which the guide should move is determined by the size of the document used in this facsimile machine. In other words, A5 size (1
If it can be used for sizes from 48 in) to A6 size (297 in), the guide must be set so that it can move 74 in on one side. The spacing between the bosses 20.21 in the longitudinal direction of the round holes 18 is determined according to the length of the round holes 18 in the longitudinal direction. Next, in FIG. 4, the height of the bosses 20 and 21 standing from the kite 5 is higher than the thickness of the document table 6, and the thickness of the rotating member 10 and 11 is thinner than the thickness of the document table 3. The height of the boss 20.21 is set so that the boss 20.21 protrudes from the document table 3 even if the rotary member 10.11 is rotatably supported by the rotary member 10.11 in the hole 1B. 21 and is fixed to the guide 5. Further, the rack 8 is fixed to the guide 5Vc so that when the rotating members 10 and 11 contact the opposing long sides of the round large 18 with their rollers as described above, the rack 8 becomes exactly parallel to the longitudinal direction of the round large 1B. do. The width of the rack 8 is larger than the width of the round elongated hole 18, and the document table 6 is rotated by the rotating member 10.
Since the rack 8 and the guide 5 are sandwiched through the 11-metal gold plate, the guide 5 is positioned with respect to the document table 3 in the direction of the arrow 2 (direction perpendicular to the plane of the document table 5).

次に第5図にもどって常に回転部材10.11が前述の
ように丸長大18の対向する長辺部にそれぞれころがシ
接触するようにラック8を回転部材12で位置決めする
ように回転部材12を原稿台6に回転支持させる。回転
部材12は良好に回転するように歯形をきっていないラ
ック8の長辺を支持するように配置する。回転部材12
が前述のように配置恣れるので回転部材11が丸長穴1
8の対向する2つの長辺のうち矢印a方向にある長辺1
8aに接触するように配置すれば、ガイド5は第3図面
に向かって反時計回わジには回転部材11と12で、ま
た時計回わシPc杜回転部材10と11で、それぞれ原
稿台6に対して回転方向の自由度が拘束される。これの
垂直内壁5aがa方向と平行関係を保ちながら移動自由
な構成となる。ガイド6においても回転部材13 、1
4 、15.flイド6から立っているボス22.23
ラツク8′fcガイド5における配置と同様に配置する
。対応する部材をピニオン16を中心として点対称の関
係に配置することになる。
Next, returning to FIG. 5, the rack 8 is always positioned by the rotating member 12 so that the rotating members 10 and 11 are in roller contact with the opposing long sides of the round length 18 as described above. 12 is rotatably supported on the document table 6. The rotating member 12 is arranged so as to support the long side of the rack 8, which has no tooth profile, so as to rotate smoothly. Rotating member 12
As mentioned above, the rotation member 11 can be arranged arbitrarily, so the rotating member 11 can be
Of the two opposing long sides of 8, long side 1 in the direction of arrow a
8a, the guide 5 rotates counterclockwise toward the third drawing with rotating members 11 and 12, and clockwise rotates with rotating members 10 and 11, respectively. 6, the degree of freedom in the rotational direction is restricted. This vertical inner wall 5a is configured to be freely movable while maintaining a parallel relationship with the direction a. Also in the guide 6, the rotating members 13, 1
4, 15. Boss 22.23 standing from flid 6
The rack 8' is arranged in the same way as the arrangement in the fc guide 5. Corresponding members are arranged in a point-symmetrical relationship with the pinion 16 as the center.

そのためガイド6もガイド5と同様な1Jきをすること
になる。
Therefore, the guide 6 also moves 1J in the same way as the guide 5.

次に第6図と第4図をもって1回転部材の配りを上記の
ようにした理由を説明する。ガイド5に接触する回転部
材の配置位置の理由のみを説明する。ガイド6に接触す
る回転部材の配置位置の理由はガイド5の場合と同様で
ある。
Next, the reason why the one-rotation members are distributed as described above will be explained with reference to FIGS. 6 and 4. Only the reason for the arrangement position of the rotating member that contacts the guide 5 will be explained. The reason for the arrangement position of the rotating member that contacts the guide 6 is the same as in the case of the guide 5.

前述の自動給紙装置は分離可能な原稿枚数に制限を持つ
。ゆえに原稿台3上に積載可能な原稿枚数は制限され、
積載される被数の原稿の厚みに上限ができる。そこでガ
イド5の垂直内壁5aの2方向の高さは前述の原稿の厚
みの上限よシ少なくとも高ければよい。次にガイド5が
前述の自動給紙装置の斜行防止効果を持つために。
The automatic paper feeder described above has a limit on the number of original documents that can be separated. Therefore, the number of originals that can be stacked on the original platen 3 is limited.
There is an upper limit to the thickness of the stacked originals. Therefore, the heights of the vertical inner wall 5a of the guide 5 in the two directions need only be at least higher than the upper limit of the thickness of the document described above. Next, the guide 5 has the effect of preventing skewing of the automatic paper feeder described above.

及びガイド5によって操作者が容易に原稿の位置決めが
できるようにするためにはガイド5はa方向に垂直内壁
5aLv晶さに比べてかな9長くなくてはならない。さ
てガイド5を移動させるためファクシミリ操作者の力が
ガイド5の垂直壁部5aに作用した場合、ガイド5に次
の2つの方向のトルクが発生する。
In order for the operator to easily position the document using the guide 5, the guide 5 must be longer in the direction a than the vertical inner wall 5aLv. Now, when the facsimile operator's force acts on the vertical wall portion 5a of the guide 5 to move the guide 5, torques are generated in the guide 5 in the following two directions.

1つは原稿台5の平面上すなわち第3因子面上に操作者
の力と、カイト5を原稿台5に対してa方向及び回転方
向に拘束する部材から受ける摩擦抵抗力により発生する
トルク、もう1つは第41千向上に、操作者の力と、ガ
イド5と原稿台6との摩擦力により発生するトルクであ
る。ここで第4因子面上に発生するトルクは垂直内壁5
aの高さを上記の条件内において低くすることができる
ので操作者の力による作用線と摩擦力の作用線との距離
が短かくできるので小さくすることができる。しかしな
がら第61平面上に発生するトルクはガイド5のa方向
の長さが垂直内壁5aの高さに比べてかなシ長いので操
作者の力が作用線と摩擦力の作用線の距離が長くなるこ
とがあり、その場合にはガイド5に大きなトルクが発生
し、かじシの要因となりうる。そむで本実施例ではガイ
ド5を原れ≦台6に対してa方向及び回転方向に拘束す
る部材を回転部材10,11.12とじ摩操力をなくし
てしまったのである6摩擦力がなくなれば第6図平向に
発生するトルクもなくなる。
One is the torque generated by the operator's force on the plane of the document table 5, that is, the third factor surface, and the frictional resistance force received from the member that restrains the kite 5 in the a direction and the rotational direction with respect to the document table 5; The other is the torque generated by the force of the operator and the frictional force between the guide 5 and the document table 6. Here, the torque generated on the fourth factor plane is the vertical inner wall 5
Since the height of a can be lowered within the above conditions, the distance between the line of action of the operator's force and the line of action of the frictional force can be shortened, so it can be made smaller. However, the torque generated on the 61st plane is because the length of the guide 5 in the a direction is much longer than the height of the vertical inner wall 5a, so the distance between the line of action of the operator's force and the line of action of the frictional force becomes long. In this case, a large torque may be generated in the guide 5, which may cause steering. In this embodiment, the members that restrain the guide 5 in the a direction and the rotational direction with respect to the base 6 are joined to the rotating members 10, 11, and 12 to eliminate the frictional force.6 The frictional force is eliminated. In this case, the torque generated in the horizontal direction as shown in FIG. 6 is also eliminated.

操作者がガイド5の端部近傍56をガイド5が原稿台の
内側に移動する方向(−4−x方向)に力を加えたもの
とする。このときガイド5には反時計方向のモーメント
が作用し、ラック8に配設された回転部材10は丸長穴
18の内壁18aに強く押しつけられる。またラック8
の端部は回転部月12に強く押しつけられる。ここでこ
れらの押しつけられた部分の摩擦抵抗が大きいとガイド
5七反時計方向に回転ネせるモーメントとなるために、
結果としてこの部分でかじりが生じる。しかるに本実施
例においてこの接庁ミ部分には回転部材10および12
を用いであるので、八・、′ζζ低抵抗極めて小さいの
でガイド5は丸長穴18に沿って円滑に移動することと
なる。
Assume that the operator applies force to the vicinity of the end portion 56 of the guide 5 in the direction (-4-x direction) in which the guide 5 moves inside the document table. At this time, a counterclockwise moment acts on the guide 5, and the rotating member 10 disposed on the rack 8 is strongly pressed against the inner wall 18a of the round elongated hole 18. Also rack 8
The end of the rotary part 12 is strongly pressed. If the frictional resistance of these pressed parts is large, a moment will be generated that causes the guide 5 to rotate counterclockwise.
As a result, galling occurs in this area. However, in this embodiment, the rotating members 10 and 12 are provided at this contact portion.
Since the resistance is extremely small, the guide 5 moves smoothly along the round elongated hole 18.

一方、操作者がガイド5iこ逆方向(−1方向)の力を
加えた場合には時計方向のモーメントが生じて回転部栃
11を丸長大18の内壁iabに押しつけることになる
か、この部分でもころが9接触により摩擦抵抗は十分に
小ちいのでガイド5は−X方向に円滑に移動フ゛る。
On the other hand, if the operator applies a force in the opposite direction (-1 direction) to the guide 5i, a clockwise moment is generated and the rotating part 11 is pressed against the inner wall iab of the round length 18, or this part However, since the frictional resistance is sufficiently small due to the contact between the rollers 9, the guide 5 moves smoothly in the -X direction.

これらの動作はビニ1216整弁してランク9に伝達さ
れガイド6をも同時に反対方向に移動せしめる。
These movements are transmitted to the rank 9 through the valve 1216, causing the guide 6 to move in the opposite direction at the same time.

以上の実施例において回転部材10,11.14.15
等は軸支されているが1回転部材の側面又は外周な拘束
する方法でもかまわない。また、回転角 部材10,11.14.15は丸長へ18を有するフレ
ーム側に支持されていても同じ効果をもつ、さらに、ガ
イド5,6ヲ連結する手段はラックとビニオンに限らず
、゛リンク機構やベルトとプーリ等を用いても同様であ
る。
In the above embodiments, the rotating members 10, 11, 14, 15
etc. are pivotally supported, but a method of restraining the side surface or outer periphery of the one-rotation member may also be used. Further, the same effect can be obtained even if the rotation angle members 10, 11, 14, 15 are supported on the frame side having a round length 18. Furthermore, the means for connecting the guides 5, 6 are not limited to racks and binions. The same applies to the use of link mechanisms, belts and pulleys, etc.

発明の詳細 な説明したように本発明の構成によれはシート材の位置
決めガイドの摺動性が向上する。
As described in detail, the structure of the present invention improves the slidability of the sheet material positioning guide.

【図面の簡単な説明】[Brief explanation of drawings]

第1図は本発明の実施例の底面図、第2図はファクシミ
リを示した外観斜視図、第3図は本発明の実施例の平面
図、第4図はその側面図である。 図において、3は原稿台、5,6はガイド。 8.9はラック、  10,11,12,15.i4,
15は回転部材16はピニオンである。
FIG. 1 is a bottom view of an embodiment of the present invention, FIG. 2 is an external perspective view of a facsimile, FIG. 3 is a plan view of the embodiment of the present invention, and FIG. 4 is a side view thereof. In the figure, 3 is a document table, and 5 and 6 are guides. 8.9 is a rack, 10, 11, 12, 15. i4,
15, the rotating member 16 is a pinion.

Claims (1)

【特許請求の範囲】 シート材の幅に応じて移動可能な一対のガイド部材によ
りシート材を案内するシート材の案内装置において、 該ガイド部材を一定の方向移動可能に案内する案内手段
と、 該ガイド部材と該案内手段のすくなくとも一方にころが
り接触する回転部材とを、 有することを特徴とするシート材の案内装置。
[Scope of Claims] A sheet material guiding device that guides a sheet material by a pair of guide members movable according to the width of the sheet material, comprising: a guide means that guides the guide members so as to be movable in a fixed direction; A sheet material guiding device comprising: a guide member and a rotating member that rolls into contact with at least one side of the guiding means.
JP12494984A 1984-06-18 1984-06-18 Guide device for sheet material Pending JPS617147A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP12494984A JPS617147A (en) 1984-06-18 1984-06-18 Guide device for sheet material

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP12494984A JPS617147A (en) 1984-06-18 1984-06-18 Guide device for sheet material

Publications (1)

Publication Number Publication Date
JPS617147A true JPS617147A (en) 1986-01-13

Family

ID=14898191

Family Applications (1)

Application Number Title Priority Date Filing Date
JP12494984A Pending JPS617147A (en) 1984-06-18 1984-06-18 Guide device for sheet material

Country Status (1)

Country Link
JP (1) JPS617147A (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH02124944U (en) * 1989-03-23 1990-10-15
EP2153424A1 (en) * 2007-05-03 2010-02-17 Crane Canada Co. Improved drive for banknote centering mechanism

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH02124944U (en) * 1989-03-23 1990-10-15
EP2153424A1 (en) * 2007-05-03 2010-02-17 Crane Canada Co. Improved drive for banknote centering mechanism
EP2153424A4 (en) * 2007-05-03 2010-06-23 Crane Canada Co Improved drive for banknote centering mechanism

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