JP2006184422A - Drive transmission device and image forming apparatus - Google Patents

Drive transmission device and image forming apparatus Download PDF

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JP2006184422A
JP2006184422A JP2004376223A JP2004376223A JP2006184422A JP 2006184422 A JP2006184422 A JP 2006184422A JP 2004376223 A JP2004376223 A JP 2004376223A JP 2004376223 A JP2004376223 A JP 2004376223A JP 2006184422 A JP2006184422 A JP 2006184422A
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gear
partial
drive transmission
transmission device
image forming
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JP4663313B2 (en
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Hiroyuki Matsumoto
宏幸 松本
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Canon Inc
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Canon Inc
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Abstract

<P>PROBLEM TO BE SOLVED: To provide a space-saving drive transmission controller and an image forming apparatus provided with the same. <P>SOLUTION: There are provided: a lacking teeth gear 50 having a lacking teeth part 50b which does not mesh with an input gear 40, at a part of a gear part 50a meshing with the input gear 40, for transmitting driving force; a partial gear 60, for rotating the lacking teeth gear 50, coaxially disposed with the lacking teeth gear 50, and having a gear part 60a capable of meshing with the input gear 40 when positioned at the lacking teeth part 50b of the lacking teeth gear 50; and a solenoid flapper 80 for locking a stopper claw 60c provided on the partial gear 60 and for regulating the rotation of the partial gear 60, wherein the fustening claw 60c is provided in the tooth width of the partial gear 60. <P>COPYRIGHT: (C)2006,JPO&NCIPI

Description

本発明は、入力ギアからの駆動力を伝達するための駆動伝達装置及びこれを備えた例えば、複写機、プリンタ、ファクシミリ装置等の画像形成装置に関する。   The present invention relates to a drive transmission device for transmitting a driving force from an input gear and an image forming apparatus equipped with the drive transmission device such as a copying machine, a printer, a facsimile machine, and the like.

従来の画像形成装置等に設けられた欠歯ギアを用いた駆動伝達装置の構成は、複数のギアと回転止め係止部が軸方向に並列に形成されていた(例えば、特許文献1参照)。   In the configuration of a drive transmission device using a toothless gear provided in a conventional image forming apparatus or the like, a plurality of gears and a rotation stop locking portion are formed in parallel in the axial direction (see, for example, Patent Document 1) .

この種の装置を図8に示す。図8に示すように、第1欠歯ギア100と、部分ギアである第2欠歯ギア101と、これらのギアと同軸にある係止爪102の3つが軸方向に並列配置される構成をとっている。   This type of apparatus is shown in FIG. As shown in FIG. 8, a configuration in which three of a first toothless gear 100, a second toothless gear 101 that is a partial gear, and a locking claw 102 that is coaxial with these gears are arranged in parallel in the axial direction. I'm taking it.

ここで、図8に示す駆動伝達動作原理を説明する。第1欠歯ギア100と第2欠歯ギア101は同軸上に対となって並列されている。そして、内部に設けられたバネ104によって第2欠歯ギア101が付勢され、該第2欠歯ギア101と一体の係止爪102にソレノイドフラッパ103が係止している。   Here, the principle of the drive transmission operation shown in FIG. 8 will be described. The first segmented gear 100 and the second segmented gear 101 are arranged in parallel as a pair on the same axis. The second toothless gear 101 is urged by a spring 104 provided inside, and the solenoid flapper 103 is locked to a locking claw 102 integrated with the second toothless gear 101.

通常は入力ギア105に対して両欠歯ギア100,101の欠歯部が対向しているために、駆動伝達は行われないが、ソレノイドフラッパ103を動作させて係止爪102の係止を解除すると、第2欠歯ギア101は回転自在な状態になり、バネ104の付勢によって回転してそのギア部が第1欠歯ギア100の欠歯部に位置するようになる。これにより、第2欠歯ギア101が入力ギア105と噛み合い可能となる。   Normally, since the missing teeth of both the missing gears 100 and 101 are opposed to the input gear 105, drive transmission is not performed, but the solenoid flapper 103 is operated to lock the locking claw 102. When released, the second toothless gear 101 becomes rotatable, and is rotated by the bias of the spring 104 so that the gear part is positioned at the toothless part of the first toothless gear 100. As a result, the second toothless gear 101 can mesh with the input gear 105.

一方、前記第2欠歯ギア101のギア部が第1欠歯ギア100の欠歯部に位置したとき、両欠歯ギア100,101は図示しない係合部が係合して一体的に回転する可能となるため、入力ギア105からの駆動力により第1欠歯ギア100及び第2欠歯ギア101が回転して出力軸に駆動伝達される。   On the other hand, when the gear portion of the second toothless gear 101 is positioned at the toothless portion of the first toothless gear 100, the gears 100 and 101 are engaged with an engaging portion (not shown) to rotate integrally. Therefore, the first partial gear 100 and the second partial gear 101 are rotated by the driving force from the input gear 105 and transmitted to the output shaft.

特開2000−310311号公報JP 2000-310311 A

しかしながら上記欠歯ギア対による駆動伝達装置は、第1欠歯ギア100、第2欠歯ギア101をスラスト方向に並列配置し、さらに係止爪102をスラスト方向に並列配置しなければならない。このため、スラスト方向にこれらを並列配置するためのスペースが必要となり、特に第1欠歯ギア100として段ギアを用いる場合には、より特に大きなスペースが必要となることから、省スペースで上記駆動伝達装置を実装する際の障害となっていた。   However, in the drive transmission device using the pair of toothless gears, the first toothless gear 100 and the second toothless gear 101 must be arranged in parallel in the thrust direction, and the locking claws 102 must be arranged in parallel in the thrust direction. For this reason, a space for arranging them in parallel in the thrust direction is required. In particular, when a step gear is used as the first toothless gear 100, a larger space is required. It was an obstacle when mounting a transmission device.

本発明は上記課題に鑑みてなされたものであり、その目的は、省スペース化を実現した駆動伝達制御装置及びこれを備えた画像形成装置を提供するものである。   The present invention has been made in view of the above problems, and an object thereof is to provide a drive transmission control device that realizes space saving and an image forming apparatus including the drive transmission control device.

上記課題を解決するための本発明における代表的な手段は、入力ギアと噛合して駆動力を伝達するギア部の一部に、前記入力ギアと噛合しない欠歯部を有する欠歯ギアと、前記欠歯ギアと同軸上に配置され、該欠歯ギアの欠歯部に位置したときに前記入力ギアと噛合可能なギア部を有し、前記欠歯ギアを回転させるための部分ギアと、前記部分ギアに設けられた係止部に係止して該部分ギアの回転を規制する規制手段と、を有し、前記係止部を前記部分ギアの歯幅内に設けたことを特徴とする。   Representative means in the present invention for solving the above-mentioned problems are a part of a gear part that meshes with an input gear and transmits a driving force, and a partial gear that has a partial tooth part that does not mesh with the input gear; A partial gear that is arranged coaxially with the toothless gear and has a gear portion that can mesh with the input gear when positioned in the toothless portion of the toothless gear; and for rotating the toothless gear; And a restricting means for restricting rotation of the partial gear by engaging with an engaging portion provided in the partial gear, wherein the engaging portion is provided within a tooth width of the partial gear. To do.

本発明は部分ギアの回転を規制するための規制手段が係止する係止部を部分ギアの歯幅内に設けることにより、スラスト方向の厚みを抑えることができる。そのため、駆動伝達機構を組み込む装置の省スペース化に寄与することが可能になる。   In the present invention, the thickness in the thrust direction can be suppressed by providing a locking portion, which is locked by a regulating means for regulating the rotation of the partial gear, within the tooth width of the partial gear. Therefore, it becomes possible to contribute to space saving of the device incorporating the drive transmission mechanism.

次に本発明の一実施形態に係る画像形成装置について図面を参照して具体的に説明する。   Next, an image forming apparatus according to an embodiment of the present invention will be specifically described with reference to the drawings.

{画像形成装置の全体構成}
まず、画像形成装置の全体構成について、図1を参照して画像形成動作とともに説明する。なお、図1は画像形成装置の模式断面説明図である。
{Overall configuration of image forming apparatus}
First, the overall configuration of the image forming apparatus will be described together with the image forming operation with reference to FIG. FIG. 1 is a schematic cross-sectional explanatory diagram of the image forming apparatus.

本実施形態の画像形成装置は画像形成部へ記録媒体を搬送して電子写真方式によって画像形成するものである。そして、画像形成部は4個の画像形成手段が配置され、色の異なるトナー像を順次記録媒体に転写してカラー画像を記録するものである。   The image forming apparatus according to the present embodiment conveys a recording medium to an image forming unit and forms an image by an electrophotographic method. The image forming unit is provided with four image forming units, and sequentially transfers toner images of different colors to a recording medium to record a color image.

4個の画像形成手段20Y,20M,20C,20Kは、下から順にイエロー(Y)、マゼンタ(M)、シアン(C)、ブラック(K)の各色トナー像を形成するものであり、トナーの色が異なる以外は同一の構成である。すなわち、それぞれの画像形成手段20Y,20M,20C,20Kは像担持体である感光体ドラム1の周囲に帯電ローラ2、露光装置3、現像手段4、クリーニング手段5が配置されている。そして、回転する感光体ドラム1の表面が一次帯電器2によって一様に帯電され、露光手段3から画信号に応じたレーザ光照射をすることで静電潜像が形成され、その潜像が現像手段4によってトナー現像されて可視像化される。   The four image forming units 20Y, 20M, 20C, and 20K form yellow (Y), magenta (M), cyan (C), and black (K) toner images in order from the bottom. The configuration is the same except that the colors are different. That is, in each of the image forming units 20Y, 20M, 20C, and 20K, the charging roller 2, the exposure device 3, the developing unit 4, and the cleaning unit 5 are disposed around the photosensitive drum 1 that is an image carrier. Then, the surface of the rotating photosensitive drum 1 is uniformly charged by the primary charger 2, and an electrostatic latent image is formed by irradiating the exposure unit 3 with laser light corresponding to the image signal. The developing means 4 develops the toner and visualizes it.

各感光体ドラム1に対して記録媒体搬送ベルト6当接可能に配置されている。この搬送ベルト6は駆動ローラ7a、従動ローラ7b、テンションローラ7cに掛け渡されたエンドレスベルトであり、駆動ローラ7aが駆動回転することで画像形成動作に応じて矢印a方向へ回転する。また、搬送ベルト6を挟んで各感光体ドラム1と対向した位置には転写ローラ8が配置されている。   The recording medium conveyance belt 6 is disposed so as to be in contact with each photosensitive drum 1. The conveying belt 6 is an endless belt that is stretched around a driving roller 7a, a driven roller 7b, and a tension roller 7c, and rotates in the direction of arrow a according to the image forming operation when the driving roller 7a rotates. A transfer roller 8 is disposed at a position facing each photosensitive drum 1 with the conveyance belt 6 interposed therebetween.

画像形成に際しては、各画像形成手段20Y,20M,20C,20Kによるトナー像の形成と同期するように、装置本体下部に装填されたカセット9から給送ローラ10によって記録媒体であるシートを給送し、そのシートを吸着ローラ11へのバイアス印加によって矢印a方向へ回転する搬送ベルト6に吸着させて搬送する。そして、転写ローラ8へのバイアス印加によって感光体ドラム1上のトナー像をシートに転写し、各色トナー像が重畳されてカラー画像が形成されたシートを定着手段12に搬送してトナー定着した後に装置上部の排出部13へと排出するものである。   When forming an image, a sheet as a recording medium is fed by a feeding roller 10 from a cassette 9 loaded at the lower part of the apparatus so as to synchronize with the formation of a toner image by each of the image forming means 20Y, 20M, 20C, and 20K. Then, the sheet is sucked and transported to the transport belt 6 that rotates in the direction of arrow a by applying a bias to the suction roller 11. Then, the toner image on the photosensitive drum 1 is transferred to the sheet by applying a bias to the transfer roller 8, and the sheet on which the color image is formed by superimposing the color toner images is conveyed to the fixing unit 12 to fix the toner. It is discharged to the discharge unit 13 at the upper part of the apparatus.

なお、本実施形態の画像形成装置は上記フルカラー画像動作のみならず、モノクロ画像を形成し得るようになっている。モノクロ画像を形成する場合には、ブラックの画像形成手段20Kの転写ローラ8のみを搬送ベルト6に当接させ、他のイエロー、マゼンタ、シアンの各画像形成手段20Y,20M,20Cの転写ローラ8を搬送ベルト6から離間させる。そして、搬送ベルト6で搬送したシートに対してブラックの画像形成手段20Kで形成したブラック画像のみをシートに転写することでモノクロ画像を得るものである。   Note that the image forming apparatus according to the present embodiment can form not only the full-color image operation but also a monochrome image. In the case of forming a monochrome image, only the transfer roller 8 of the black image forming means 20K is brought into contact with the conveyor belt 6, and the transfer rollers 8 of the other image forming means 20Y, 20M, and 20C for yellow, magenta, and cyan. Is separated from the conveyor belt 6. A monochrome image is obtained by transferring only the black image formed by the black image forming means 20K onto the sheet conveyed by the conveyance belt 6.

上記フルカラー画像を形成するモードとモノクロ画像を形成するモードは、図2に示す転写ローラ接離機構によってイエロー、マゼンタ、シアンに対応した各転写ローラ8を接離させることで切り替える。すなわち、出力ギア30と同軸上に離間カム31が固定されており、出力ギア30が所定量回転して離間カム31が回転すると、それに追従して離間スライダ32が移動するように構成されている。この離間スライダ32の往復運動により転写ローラ8を保持している転写ローラ軸受33が離間スライダ32の傾斜面より押し下げられ、または復帰して転写ローラ8が搬送ベルトから接離する。そして、本実施形態では駆動部材としての前記出力ギア30の駆動を後述する駆動伝達装置によって行うようにしている。   The mode for forming the full color image and the mode for forming a monochrome image are switched by contacting and separating the transfer rollers 8 corresponding to yellow, magenta, and cyan by the transfer roller contact / separation mechanism shown in FIG. That is, the separation cam 31 is fixed on the same axis as the output gear 30, and when the output gear 30 rotates by a predetermined amount and the separation cam 31 rotates, the separation slider 32 moves following the rotation. . By the reciprocating motion of the separation slider 32, the transfer roller bearing 33 holding the transfer roller 8 is pushed down from the inclined surface of the separation slider 32, or returned to bring the transfer roller 8 into and out of contact with the conveying belt. In this embodiment, the output gear 30 as a drive member is driven by a drive transmission device described later.

{駆動伝達装置}
次に上記駆動伝達装置の構成について説明する。本実施形態の駆動伝達装置は、図3に示すように、欠歯ギア50と部分ギア60とのギア対によって駆動伝達するものであり、且つ前記部分ギア60の回転を制御することで駆動伝達を制御するものである。
{Drive transmission device}
Next, the configuration of the drive transmission device will be described. As shown in FIG. 3, the drive transmission device according to the present embodiment transmits drive by a gear pair of a partial gear 50 and a partial gear 60, and transmits the drive by controlling the rotation of the partial gear 60. Is to control.

欠歯ギア50は入力ギア40と噛合することで駆動力を出力ギア30に伝達するギア部50aの一部に前記入力ギア40と噛合し得ない欠歯部50bが形成されている。また、部分ギア60は前記欠歯ギア50と同径であって、円周上の一部に前記欠歯ギア50のギア部50aと同一ピッチのギア部60aを有するギアであり、欠歯ギア50を回転させるためのものである。この部分ギア60は欠歯ギア50と同軸上に配置されるとともに、欠歯ギア50の回転軸に回動自在に嵌合されている。   The toothless gear 50 meshes with the input gear 40 to form a toothless portion 50b that cannot mesh with the input gear 40 at a part of the gear portion 50a that transmits the driving force to the output gear 30. The partial gear 60 is a gear having the same diameter as the partial gear 50 and having a gear portion 60a having the same pitch as the gear portion 50a of the partial gear 50 on a part of the circumference. It is for rotating 50. The partial gear 60 is disposed coaxially with the toothless gear 50 and is rotatably fitted to the rotation shaft of the toothless gear 50.

前記部分ギア60のスラスト方向は欠歯ギア50に設けられた規制爪50cが係止することで抜け止め規制されている。また、部分ギア60の回転方向については欠歯ギア50との間に付勢手段であるネジリコイルバネ70が取り付けられており、このバネ70によって一方向に付勢されるように構成されている。   The thrust direction of the partial gear 60 is regulated to prevent the partial gear 60 from coming off when the regulation claw 50c provided on the toothless gear 50 is engaged. Further, with respect to the rotational direction of the partial gear 60, a torsion coil spring 70 as an urging means is attached between the partial gear 60 and the partial gear 60, and the spring 70 is configured to be urged in one direction.

さらに前記部分ギア60の円周上であってギア部60a以外の所定位置に係止部となる係止爪60cが形成され、この係止爪60cが規制手段としてのソレノイドフラッパ80に係止することで部分ギア60の回転が規制されるようになっている。   Further, a locking claw 60c serving as a locking portion is formed at a predetermined position other than the gear portion 60a on the circumference of the partial gear 60, and the locking claw 60c is locked to a solenoid flapper 80 as a restricting means. As a result, the rotation of the partial gear 60 is regulated.

フルカラーモードのときは、図3に示すように、前記欠歯ギア50の欠歯部50bが入力ギア40と対向しており、且つ部分ギア60はソレノイドフラッパ80によって回転が規制されているために入力ギア40の駆動力が出力ギア30に伝達されない。   In the full color mode, as shown in FIG. 3, the toothless portion 50b of the toothless gear 50 faces the input gear 40, and the rotation of the partial gear 60 is restricted by the solenoid flapper 80. The driving force of the input gear 40 is not transmitted to the output gear 30.

また、欠歯ギア50と一体的に回転するカム90が設けられており、回動軸92aを中心に回動可能なカムレバー92が付勢バネ91によってカム90に付勢されている。これにより、欠歯ギア50も回転を止められている。このとき、部分ギア60はバネ70のバネ力が蓄えられた状態で静止している。   A cam 90 that rotates integrally with the toothless gear 50 is provided, and a cam lever 92 that is rotatable about a rotation shaft 92 a is biased by the biasing spring 91. Thereby, the rotation of the missing gear 50 is also stopped. At this time, the partial gear 60 is stationary with the spring force of the spring 70 stored.

モノクロモードに切り替える場合には、上記状態からソレノイド81を駆動してソレノイドフラッパ80を動作させ、係止爪60cの係止を解除する。係止爪60cの係止が解除されると、部分ギア60が欠歯ギア50との間に組み込まれたバネ70のバネ力により回転動作を開始する。このとき、欠歯ギア50は回転付勢するカム90により停止したままになっている。   When switching to the monochrome mode, the solenoid 81 is driven from the above state to operate the solenoid flapper 80, and the locking claw 60c is unlocked. When the locking claw 60c is unlocked, the partial gear 60 starts to rotate by the spring force of the spring 70 incorporated between the partial gear 50. At this time, the toothless gear 50 remains stopped by the cam 90 that is urged to rotate.

その後、図4に示すように、部分ギア60が駆動されて決められた位相、具体的には部分ギア60のギア部60aが欠歯ギア50の欠歯部50bと同位相になるところで両ギア50,60にそれぞれ設けてある規制リブ50d,60dが係合し、部分ギア60と欠歯ギア50の駆動が連結される。   Thereafter, as shown in FIG. 4, both gears are driven when the partial gear 60 is driven and determined in phase, specifically, when the gear portion 60 a of the partial gear 60 is in phase with the partial tooth portion 50 b of the partial gear 50. The restriction ribs 50d and 60d provided on the gears 50 and 60 are engaged with each other, and the driving of the partial gear 60 and the toothless gear 50 is connected.

そして、図5に示すように、部分ギア60が入力ギア40と噛合して回転すると、これと駆動連結された欠歯ギア50が回転する。この回転により、欠歯ギア50のギア部50aが入力ギア40と噛合し、その駆動力が下流の出力ギア30に伝達される。   As shown in FIG. 5, when the partial gear 60 meshes with the input gear 40 and rotates, the partial gear 50 that is drivingly connected to the partial gear 60 rotates. By this rotation, the gear portion 50a of the toothless gear 50 meshes with the input gear 40, and the driving force is transmitted to the downstream output gear 30.

次に、欠歯ギア50と部分ギア60とが一体となって1回転すると、図6に示すように、ソレノイドフラッパ80が係止爪60cに掛かり、部分ギア60の回転駆動が止まる。そのとき欠歯ギア50は入力ギア40と噛み合っているため駆動され続け、部分ギア60との間のバネ70が圧縮され、バネ力が蓄えられる。   Next, when the toothless gear 50 and the partial gear 60 are rotated together for one rotation, as shown in FIG. 6, the solenoid flapper 80 is engaged with the locking claw 60c, and the rotational driving of the partial gear 60 is stopped. At this time, the toothless gear 50 is continuously driven because it meshes with the input gear 40, and the spring 70 between the partial gear 60 is compressed and the spring force is stored.

欠歯ギア50の欠歯部50bに到達する直前の最後の一歯は部分ギア60との間にあるバネ70の圧縮力に抗して回らなくてはいけない。しかし、本実施形態では欠歯ギア50にカム90が配置されているため、バネ91に付勢されているカムレバー92により欠歯部直前まで来たカム90が早回しされ、欠歯部50bの中央で止まり、図3の状態に戻り、駆動伝達が切断される。   The last tooth just before reaching the missing tooth portion 50b of the missing gear 50 must rotate against the compressive force of the spring 70 between the partial gear 60. However, in this embodiment, since the cam 90 is arranged in the missing tooth gear 50, the cam 90 that has come to just before the missing tooth portion is quickly rotated by the cam lever 92 biased by the spring 91, and the missing tooth portion 50b It stops at the center, returns to the state of FIG. 3, and the drive transmission is cut off.

上記のように、本実施形態の係止爪60cは部分ギア60と同一部品内にあり、入力ギア40との噛み合い歯幅内となる位置に配置されている。このため、従来必要であった係止爪60cを配置するためのスラスト方向のスペースが不要になったことで、従来と比べてスラスト方向の厚みで30%以上のスペースダウンが可能となり、駆動伝達装置のスラスト方向の厚みを抑えることができた。これは駆動伝達ギアである欠歯ギア50が段ギアとして構成した場合、スラスト方向のスペースを小さくできるので特に効果的となる。   As described above, the locking claw 60c of the present embodiment is in the same component as the partial gear 60, and is disposed at a position within the meshing tooth width with the input gear 40. For this reason, the space in the thrust direction for disposing the locking claw 60c, which was necessary in the past, is no longer necessary, so that the space in the thrust direction can be reduced by 30% or more compared to the conventional method. The thickness of the device in the thrust direction could be suppressed. This is particularly effective when the toothless gear 50, which is a drive transmission gear, is configured as a step gear because the space in the thrust direction can be reduced.

よって、上記駆動伝達装置を組み込む画像形成装置の省スペース化に寄与することが可能になる。   Therefore, it is possible to contribute to space saving of the image forming apparatus incorporating the drive transmission device.

なお、係止爪60cを部分ギア60の歯幅内に配置する場合、これを任意に配置すると入力ギア40との噛み合いにより干渉を起こす可能性がある。そのため、図7(a)に示すように、係止爪60cを部分ギア60の落とした欠歯部の歯形の仮想位置に配置する。これにより、係止爪60cは、欠歯ギア50が回転するときに、該欠歯ギア50のギア部50aの歯形と同位相になるため、入力ギア40との噛み合いでの干渉を避けることができる。   In addition, when arrange | positioning the latching claw 60c in the tooth width of the partial gear 60, if this is arrange | positioned arbitrarily, there exists a possibility of causing interference by meshing with the input gear 40. Therefore, as shown in FIG. 7A, the locking claw 60 c is arranged at a virtual position of the tooth profile of the missing tooth portion where the partial gear 60 is dropped. As a result, the locking claw 60c has the same phase as the tooth profile of the gear portion 50a of the missing tooth gear 50 when the missing tooth gear 50 rotates, so that interference with the meshing with the input gear 40 can be avoided. it can.

また、このとき図7(a)に示すように、係止爪60c回転方向の幅が欠歯ギア50のギア部50aの歯厚以下となるように構成することで、より確実に入力ギア40との干渉を避けることが可能となる。   Further, at this time, as shown in FIG. 7 (a), the input gear 40 is more reliably configured by making the width in the rotation direction of the locking claw 60c equal to or less than the tooth thickness of the gear portion 50a of the toothless gear 50. Can be avoided.

なお、図7(b)に示すように、前記係止爪60cの回転中心からの高さが欠歯ギア50のギア部50aの歯底円半径以下となるように構成してもよい。このようにすると、係止爪60cが入力ギア40と対向したときに、該ギア40と干渉することはなくなる。   As shown in FIG. 7 (b), the height from the rotation center of the locking claw 60c may be equal to or less than the root radius of the gear portion 50a of the toothless gear 50. If it does in this way, when the latching claw 60c opposes the input gear 40, it will not interfere with this gear 40.

また、前述した実施形態では駆動伝達装置を転写ローラ8の接離機構に用いた例を示したが、本発明の駆動伝達装置は他の駆動伝達部分に用いるようにしてもよいことは当然であり、さらには画像形成装置に限定することなく、他の装置における駆動伝達部分に用いることも可能である。   In the above-described embodiment, an example in which the drive transmission device is used for the contact / separation mechanism of the transfer roller 8 has been described. However, the drive transmission device of the present invention may be used for other drive transmission portions. In addition, the present invention is not limited to the image forming apparatus, and can be used for a drive transmission portion in another apparatus.

画像形成装置の全体断面説明図である。1 is an overall cross-sectional explanatory diagram of an image forming apparatus. 転写ローラ離間機構の構成説明図である。It is a configuration explanatory view of a transfer roller separation mechanism. 駆動伝達装置の部分ギアが係止されている状態説明図である。It is state explanatory drawing in which the partial gear of the drive transmission device is locked. 駆動伝達装置の部分ギアが入力ギアと噛合した状態説明図である。It is state explanatory drawing in which the partial gear of the drive transmission device meshed with the input gear. 駆動伝達装置の欠歯ギアが入力ギアと噛合した状態説明図である。It is explanatory drawing of the state in which the missing gear of the drive transmission device meshed with the input gear. 駆動伝達装置の部分ギアが一回転して係止された状態説明図である。It is state explanatory drawing in which the partial gear of the drive transmission device was locked by one rotation. (a)は係止爪の歯厚を小さくした説明図であり、(b)は係止爪の高さを低くした説明図である。(a) is explanatory drawing which made the tooth | gear thickness of the latching claw small, (b) is explanatory drawing which made the height of the latching claw low. 従来技術に係る駆動伝達装置の説明図である。It is explanatory drawing of the drive transmission device which concerns on a prior art.

符号の説明Explanation of symbols

1 …感光体ドラム
2 …帯電ローラ
3 …露光装置
4 …現像手段
5 …クリーニング手段
6 …搬送ベルト
7a …駆動ローラ
7b …従動ローラ
7c …テンションローラ
8 …転写ローラ
9 …カセット
10 …給送ローラ
11 …吸着ローラ
12 …定着手段
13 …排出部
20Y,20M,20C,20K …画像形成手段
30 …出力ギア
31 …離間カム
32 …離間スライダ
33 …転写ローラ軸受
40 …入力ギア
50 …欠歯ギア
50a …ギア部
50b …欠歯部
50c …規制爪
60 …部分ギア
60a …ギア部
60c …係止爪
70 …バネ
80 …ソレノイドフラッパ
81 …ソレノイド
90 …カム
91 …バネ
92 …カムレバー
92a …回動軸
DESCRIPTION OF SYMBOLS 1 ... Photosensitive drum 2 ... Charging roller 3 ... Exposure apparatus 4 ... Developing means 5 ... Cleaning means 6 ... Conveying belt 7a ... Drive roller 7b ... Driven roller 7c ... Tension roller 8 ... Transfer roller 9 ... Cassette
10 ... Feed roller
11… Suction roller
12… Fixing means
13… discharge section
20Y, 20M, 20C, 20K ... Image forming means
30… Output gear
31… Separation cam
32… Space slider
33… Transfer roller bearing
40… Input gear
50 ... Missing gear
50a ... Gear section
50b ... missing tooth
50c… Regulation claw
60… partial gear
60a ... Gear section
60c ... locking claw
70… Spring
80… Solenoid flapper
81… Solenoid
90… Cam
91… Spring
92… Cam lever
92a… rotating shaft

Claims (6)

入力ギアと噛合して駆動力を伝達するギア部の一部に、前記入力ギアと噛合しない欠歯部を有する欠歯ギアと、
前記欠歯ギアと同軸上に配置され、該欠歯ギアの欠歯部に位置したときに前記入力ギアと噛合可能なギア部を有し、前記欠歯ギアを回転させるための部分ギアと、
前記部分ギアに設けられた係止部に係止して該部分ギアの回転を規制する規制手段と、
を有し、
前記係止部を前記部分ギアの歯幅内に設けたことを特徴とする駆動伝達装置。
A part of a gear part that meshes with the input gear and transmits a driving force, and a partial gear that has a partial tooth part that does not mesh with the input gear;
A partial gear that is arranged coaxially with the toothless gear and has a gear part that can mesh with the input gear when positioned at the toothless part of the toothless gear; and for rotating the toothless gear;
A restricting means for restricting rotation of the partial gear by engaging with an engaging portion provided in the partial gear;
Have
The drive transmission device characterized in that the locking portion is provided within a tooth width of the partial gear.
前記係止部は、前記欠歯ギアが回転するときに、該欠歯ギアのギア部の歯形と同位相になるよう配置されていることを特徴とする請求項1記載の駆動伝達装置。 2. The drive transmission device according to claim 1, wherein the locking portion is disposed so as to be in phase with a tooth shape of the gear portion of the missing gear when the missing gear is rotated. 前記係止部は、回転方向の幅が前記欠歯ギアのギア部の歯厚以下であることを特徴とする請求項2記載の駆動伝達装置。 The drive transmission device according to claim 2, wherein a width of the locking portion in a rotation direction is equal to or less than a tooth thickness of the gear portion of the partial gear. 前記係止部は、回転中心からの高さが前記欠歯ギアのギア部の歯底円半径以下に構成されていることを特徴とする請求項1記載の駆動伝達装置。 The drive transmission device according to claim 1, wherein the locking portion is configured such that a height from a rotation center is equal to or less than a root circle radius of the gear portion of the partial gear. 前記欠歯ギアは段ギアであることを特徴とする請求項1乃至請求項4のいずれかに記載の駆動伝達装置。 The drive transmission device according to claim 1, wherein the partial gear is a step gear. 記録媒体を画像形成部へ搬送して画像を形成する画像形成装置において、
駆動部材に駆動力を伝達する駆動伝達装置として請求項1乃至請求項5のいずれかに記載の駆動伝達装置を備えたことを特徴とする画像形成装置。
In an image forming apparatus that forms an image by conveying a recording medium to an image forming unit,
An image forming apparatus comprising the drive transmission device according to any one of claims 1 to 5 as a drive transmission device that transmits a driving force to a drive member.
JP2004376223A 2004-12-27 2004-12-27 Drive transmission device and image forming apparatus Active JP4663313B2 (en)

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2013234719A (en) * 2012-05-09 2013-11-21 Canon Inc Drive control device and image forming apparatus
JP2019179260A (en) * 2019-06-24 2019-10-17 キヤノン株式会社 Drive transmission unit and image forming apparatus including the same

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5150171U (en) * 1974-10-16 1976-04-16
JP2000310311A (en) * 1999-04-23 2000-11-07 Canon Inc Torque intermittently transmitting apparatus and image forming device with the same apparatus
JP2002265076A (en) * 2001-03-09 2002-09-18 Canon Inc Paper feeder and image forming apparatus having the same

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5150171U (en) * 1974-10-16 1976-04-16
JP2000310311A (en) * 1999-04-23 2000-11-07 Canon Inc Torque intermittently transmitting apparatus and image forming device with the same apparatus
JP2002265076A (en) * 2001-03-09 2002-09-18 Canon Inc Paper feeder and image forming apparatus having the same

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2013234719A (en) * 2012-05-09 2013-11-21 Canon Inc Drive control device and image forming apparatus
JP2019179260A (en) * 2019-06-24 2019-10-17 キヤノン株式会社 Drive transmission unit and image forming apparatus including the same

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