JP2016177199A - Blade body and cleaning blade - Google Patents

Blade body and cleaning blade Download PDF

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JP2016177199A
JP2016177199A JP2015058628A JP2015058628A JP2016177199A JP 2016177199 A JP2016177199 A JP 2016177199A JP 2015058628 A JP2015058628 A JP 2015058628A JP 2015058628 A JP2015058628 A JP 2015058628A JP 2016177199 A JP2016177199 A JP 2016177199A
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blade
blade body
edge layer
layer
rigidity
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JP6478037B2 (en
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河端 將
Susumu Kawabata
將 河端
紘明 金田
Hiroaki Kaneda
紘明 金田
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Nok Corp
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Nok Corp
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Abstract

PROBLEM TO BE SOLVED: To provide a blade body and a cleaning blade, excellent in warpage resistance at both end parts in a longitudinal direction and also excellent in cleaning property.SOLUTION: A blade body of a cleaning blade used at a cleaning part for removing toner on a toner adhesion body comprises an edge layer 12 slidably contacting with the toner adhesion body, and a base layer 11 provided on the rear surface of the edge layer. The edge layer 12 comprises a rubber base material having a harder rubber hardness than that of a rubber base material constituting the base layer 11, and at both end parts in a longitudinal direction of a slide contact part with the toner adhesion body, provided is a high rigid part 13 having a thin thickness of the base layer or substantially no thickness.SELECTED DRAWING: Figure 1

Description

本発明は、電子写真式複写機及びプリンタ、又はトナージェット式複写機及びプリンタ等の画像形成装置に用いられるブレード本体及びクリーニングブレードに関する。   The present invention relates to a blade body and a cleaning blade used in an image forming apparatus such as an electrophotographic copying machine and printer, or a toner jet copying machine and printer.

一般に電子写真プロセスでは、電子写真感光体あるいは転写ベルト等を繰り返し使用するため、これらに付着したトナーを除去するためのクリーニングブレードが用いられる。このクリーニングブレードは、弾性体からなるブレード本体(以下、本体という)を支持部材に接着してなるものである。このようなクリーニングブレードにおいては、電子写真感光体あるいは転写ベルト等のクリーニング対象となる被接触体に摺接して用いられるが、摺接部長手方向(以下、単に長手方向という)両端部は、印刷領域より外側に位置するので、トナーがほとんど回り込まないことから、滑り性が維持されず、長手方向端部を起点として、メクレが生じるという問題がある。   In general, in an electrophotographic process, an electrophotographic photosensitive member or a transfer belt is repeatedly used. Therefore, a cleaning blade for removing toner adhering thereto is used. This cleaning blade is formed by adhering a blade main body (hereinafter referred to as a main body) made of an elastic body to a support member. In such a cleaning blade, it is used in sliding contact with an object to be cleaned such as an electrophotographic photosensitive member or a transfer belt, but both ends of the sliding contact portion longitudinal direction (hereinafter simply referred to as the longitudinal direction) are printed. Since the toner hardly wraps around because it is located outside the region, there is a problem in that slipping is not maintained, and a crease occurs from the end in the longitudinal direction.

このような問題を解決するため長手方向端部にイソシアネートを含浸させて反応硬化させた高硬度部を設けたクリーニングブレードが提案されている(特許文献1参照)。しかしながら、このようなクリーニングブレードでは、イソシアネートを含浸させて反応硬化させた部位と未処理部との境界で段差が生じ、トナーが漏れてしまうという懸念がある。   In order to solve such problems, there has been proposed a cleaning blade provided with a high hardness portion impregnated with isocyanate at the end in the longitudinal direction and cured by reaction (see Patent Document 1). However, with such a cleaning blade, there is a concern that a level difference occurs at the boundary between the site impregnated with isocyanate and reaction-cured and the untreated portion, and the toner leaks.

そこで、このような問題の対策として、ドラムブレードと中間転写ブレードとで未処理部の長さを変更し、ドラムブレードで漏れ出たトナーを中間転写ブレードで払拭する方法が提案されている(特許文献2参照)。   Therefore, as a countermeasure against such a problem, there has been proposed a method in which the length of the unprocessed portion is changed between the drum blade and the intermediate transfer blade, and the toner leaked by the drum blade is wiped off by the intermediate transfer blade (patent). Reference 2).

しかしながら、この場合でも、二段目のクリーニングブレードでの未処理部と処理部との境界での段差部にトナーが回り込んでトナー漏れが生じ、堆積したトナーが印字部に転移し、画像不良を引き起こすおそれがある。また、4色の感光体と中間転写ベルトを搭載したシステムの場合、4色の未処理部を異なる位置とする必要があるため、4種類のクリーニングブレードを作製する必要があり、製造管理が煩雑であり、また、取り付けの際に他の色用のクリーニングブレードを誤って取り付けてしまうという問題も懸念される。   However, even in this case, the toner flows into the stepped portion at the boundary between the unprocessed portion and the processing portion in the second stage cleaning blade, causing toner leakage, and the accumulated toner is transferred to the printing portion, resulting in an image defect. May cause. Also, in the case of a system equipped with four color photoconductors and an intermediate transfer belt, the four color unprocessed portions need to be in different positions, so it is necessary to produce four types of cleaning blades and complicated manufacturing management. In addition, there is a concern that a cleaning blade for another color may be erroneously attached at the time of attachment.

特開2009−063993号公報JP 2009-063993 A 特開2012−252157号公報JP 2012-252157 A

本発明は、このような事情に鑑み、長手方向両端部での耐メクレ性に優れ、クリーニング性にも優れたブレード本体及びクリーニングブレードを提供することを目的とする。   In view of such circumstances, an object of the present invention is to provide a blade body and a cleaning blade that have excellent resistance to peeling at both ends in the longitudinal direction and excellent cleaning properties.

上記課題を解決する本発明の第1の態様は、トナー付着体上のトナーを除去するクリーニング部に用いるクリーニングブレードのブレード本体において、前記トナー付着体に摺接するエッジ層と、前記エッジ層の裏面に設けられたベース層との二層からなると共に、前記エッジ層は、前記ベース層を構成するゴム基材のゴム硬度より硬いゴム硬度を有するゴム基材からなり、前記トナー付着体との摺接部長手方向両端部には、前記ベース層の厚さが薄いか又は存在しない高剛性部を具備することを特徴とするブレード本体にある。   According to a first aspect of the present invention for solving the above problem, in a blade body of a cleaning blade used in a cleaning unit for removing toner on a toner adhering body, an edge layer slidingly contacting the toner adhering body, and a back surface of the edge layer The edge layer is made of a rubber base material having a hardness higher than that of the rubber base material constituting the base layer, and is slid with the toner adhering body. The blade main body is characterized in that a high-rigidity portion having a thin or non-existing base layer is provided at both ends in the contact portion longitudinal direction.

かかる態様によれば、ブレード本体の長手方向両側の高剛性部が存在し、トナー付着体に当接させた際に高剛性部の当接力はそれ以外の部分より大きくなるので端部のメクレが防止される。また、トナー付着体との当接部は均一なゴム基材からなるエッジ層からなるので高剛性部とそれ以外の部分の境界に段差が存在せず、優れたクリーニング特性が発揮され、トナー漏れの虞もない。   According to this aspect, there are high-rigidity portions on both sides in the longitudinal direction of the blade body, and the contact force of the high-rigidity portion is larger than that of the other portions when abutting against the toner adhering member. Is prevented. In addition, since the contact part with the toner adhering body is made of an edge layer made of a uniform rubber base, there is no step at the boundary between the high rigidity part and the other part, and excellent cleaning characteristics are exhibited and toner leakage occurs. There is no fear of it.

本発明の第2の態様は、第1の態様のブレード本体において、前記高剛性部は、前記摺接部長手方向外側ほど前記エッジ層の厚さが漸次厚くなる傾斜部を有することを特徴とするブレード本体にある。   According to a second aspect of the present invention, in the blade body according to the first aspect, the high-rigidity portion has an inclined portion in which the thickness of the edge layer gradually increases toward the outside in the longitudinal direction of the sliding contact portion. On the blade body.

かかる態様では、エッジ層の厚さが徐々に変化する傾斜部を有しているので、高剛性部とそれ以外の部分との境界での前記摺接部長手方向に亘っての剛性が徐々に変化するので、境界部で当接圧が急激に変化することがなく、クリーニング特性や耐久性がより優れたものとなる。   In this aspect, since the thickness of the edge layer has an inclined portion that gradually changes, the rigidity in the longitudinal direction of the sliding contact portion at the boundary between the highly rigid portion and the other portion gradually increases. Since it changes, the contact pressure does not change abruptly at the boundary, and the cleaning characteristics and durability are more excellent.

本発明の第3の態様は、第1又は2の態様のブレード本体において、前記高剛性部は、少なくとも前記摺接部長手方向外側に、前記エッジ層のみからなる部分を有することを特徴とするブレード本体にある。   According to a third aspect of the present invention, in the blade main body according to the first or second aspect, the high-rigidity portion has a portion composed only of the edge layer at least on the outer side in the sliding contact portion longitudinal direction. Located on the blade body.

かかる態様では、エッジ層のみからなる部分の剛性がより向上し、メクレがより確実に防止される。   In such an aspect, the rigidity of the portion consisting only of the edge layer is further improved, and the mesh is more reliably prevented.

本発明の第4の態様は、第1〜3の何れかの態様のブレード本体において、前記高剛性部の前記エッジ層は、前記摺接部側と、前記摺接部側とは反対側の基端部側とで厚さが異なり、前記摺接部側で厚くなっていることを特徴とするブレード本体にある。   According to a fourth aspect of the present invention, in the blade body according to any one of the first to third aspects, the edge layer of the high-rigidity portion is on the side opposite to the sliding contact portion side and the sliding contact portion side. The blade body is characterized in that the thickness is different on the base end side and is thick on the sliding contact side.

かかる態様では、高剛性部は少なくとも摺接部側でエッジ層の厚い部分があり、これにより剛性がより向上し、メクレがより確実に防止される。   In such an aspect, the high-rigidity part has a thick part of the edge layer at least on the sliding contact part side, whereby the rigidity is further improved and the peeling is more reliably prevented.

本発明の第5の態様は、第1〜4の態様のブレード本体と、前記ブレード本体を保持する支持部材とを具備することを特徴とするクリーニングブレードにある。   According to a fifth aspect of the present invention, there is provided a cleaning blade comprising the blade body according to the first to fourth aspects and a support member for holding the blade body.

かかる態様によれば、ブレード本体の摺接部長手方向両側に高剛性部が存在し、トナー付着体に当接させた際に高剛性部の当接力はそれ以外の部分より大きくなるので端部のメクレが防止される。また、トナー付着体との当接部は均一なゴム基材からなるエッジ層からなるので高剛性部とそれ以外の部分の境界に段差が存在せず、優れたクリーニング特性が発揮され、トナー漏れの虞もないクリーニングブレードが実現できる。   According to this aspect, the high rigidity portion exists on both sides in the longitudinal direction of the slidable contact portion of the blade body, and the contact force of the high rigidity portion is larger than the other portions when the blade body is in contact with the toner adhering member. Is prevented. In addition, since the contact part with the toner adhering body is made of an edge layer made of a uniform rubber base, there is no step at the boundary between the high rigidity part and the other part, and excellent cleaning characteristics are exhibited and toner leakage occurs. It is possible to realize a cleaning blade that does not have the risk of occurrence.

本発明によれば、ブレード本体の摺接部長手方向両側に高剛性部が存在し、高剛性部とそれ以外の部分とは一体的に形成されたエッジ層からなるので、メクレが防止されると共に境界に段差が存在せず、優れたクリーニング特性が発揮される。   According to the present invention, the high rigidity portion exists on both sides in the longitudinal direction of the sliding contact portion of the blade body, and the high rigidity portion and the other portions are formed of the edge layer integrally formed, so that the peeling is prevented. In addition, there is no step at the boundary, and excellent cleaning characteristics are exhibited.

本発明の実施形態1のクリーニングブレードの平面図、縦断面図及び横断面図。The top view of the cleaning blade of Embodiment 1 of this invention, a longitudinal cross-sectional view, and a cross-sectional view. 本発明の実施形態2のクリーニングブレードのブレード本体の横断面図。The cross-sectional view of the blade body of the cleaning blade according to the second embodiment of the present invention. 本発明の実施形態3のクリーニングブレードのブレード本体の横断面図。The cross-sectional view of the blade body of the cleaning blade according to the third embodiment of the present invention. 本発明の実施形態4のクリーニングブレードのブレード本体の横断面図。The cross-sectional view of the blade body of the cleaning blade of Embodiment 4 of the present invention. 本発明の実施形態5のクリーニングブレードのブレード本体の縦断面図及び横断面図。The longitudinal cross-sectional view and cross-sectional view of the blade main body of the cleaning blade of Embodiment 5 of this invention. 本発明の実施形態6のクリーニングブレードのブレード本体の縦断面図及び横断面図。The longitudinal cross-sectional view and cross-sectional view of the blade main body of the cleaning blade of Embodiment 6 of this invention. 本発明の実施形態7のクリーニングブレードのブレード本体の縦断面図及び横断面図。The longitudinal cross-sectional view and cross-sectional view of the blade main body of the cleaning blade of Embodiment 7 of this invention. 本発明の実施形態1のクリーニングブレードのブレード本体に係る変形例の縦断面図。The longitudinal cross-sectional view of the modification which concerns on the blade main body of the cleaning blade of Embodiment 1 of this invention.

以下に、本発明の画像形成装置のクリーニングブレードについて詳細に説明する。   Hereinafter, the cleaning blade of the image forming apparatus of the present invention will be described in detail.

(実施形態1)
図1に示すように、クリーニングブレード1は、ブレード本体(これ自体をクリーニングブレードともいう)10と支持部材20とを備えており、ブレード本体10と支持部材20とは図示されない接着剤を介して接合されている。ブレード本体10は、ゴム基材の成形体である弾性体で構成され、相対的にゴム硬度の小さいゴム基材からなるベース層11と、ベース層11よりゴム硬度の大きなゴム基材からなるエッジ層12とから構成される。
(Embodiment 1)
As shown in FIG. 1, the cleaning blade 1 includes a blade body (also referred to as a cleaning blade itself) 10 and a support member 20, and the blade body 10 and the support member 20 are connected via an adhesive (not shown). It is joined. The blade body 10 is made of an elastic body that is a molded body of a rubber base, and includes a base layer 11 made of a rubber base having a relatively low rubber hardness, and an edge made of a rubber base having a rubber hardness higher than that of the base layer 11. Layer 12.

本実施形態では、ベース層11の厚さはエッジ層12より厚く、エッジ層12の厚さはベース層11より相対的に薄いが、長手方向両側の端部は、ベース層11が存在せず、エッジ層12のみからなる高剛性部13となっている。そして、エッジ層12の支持部材20とは反対側でベース層11とは反対側の端部が感光体などのトナー付着体との当接部14(図1(b)参照)となる。   In the present embodiment, the base layer 11 is thicker than the edge layer 12, and the edge layer 12 is relatively thinner than the base layer 11. However, the base layer 11 does not exist at both ends in the longitudinal direction. The high-rigidity portion 13 is composed of only the edge layer 12. The end portion of the edge layer 12 opposite to the support member 20 and the opposite side of the base layer 11 is a contact portion 14 (see FIG. 1B) with a toner adhering body such as a photoconductor.

ここで、ブレード本体10は、所定の厚さを有する板状部材であり、一方向の一端部(以下、基端部という)が支持部材20に接合され、他端部(以下、先端部又は摺接部という)は自由端となり、先端部の長い稜線の一方が当接部14となり、当接部14は全てエッジ層12で構成される。そして、本件において、ブレード本体10の先端部の長い稜線の方向を長手方向といい、短い稜線の方向を厚さ方向といい、長手方向及び厚さ方向に直交する方向を短手方向という。なお、図1においては、ブレード本体10の先端部の、支持部材20との接合面側とは反対側の当接部14、すなわち、本実施形態では、ベース層11の面を支持部材20に接合し、支持部材20との接合面側とは反対側に当接部14が位置するようにしたが、クリーニングブレード1のトナー付着体への当接の態様によっては、エッジ層12の面を支持部材20に接合して、支持部材20との接合面側に当接部14が位置するようにしてもよい。   Here, the blade body 10 is a plate-like member having a predetermined thickness, and one end portion in one direction (hereinafter referred to as a base end portion) is joined to the support member 20 and the other end portion (hereinafter referred to as a distal end portion or (Referred to as a sliding contact portion) is a free end, and one of the long ridge lines at the tip portion is a contact portion 14, and the contact portion 14 is entirely composed of the edge layer 12. In this case, the direction of the long ridge line at the tip of the blade body 10 is referred to as the longitudinal direction, the direction of the short ridge line is referred to as the thickness direction, and the direction orthogonal to the longitudinal direction and the thickness direction is referred to as the short direction. In FIG. 1, the abutting portion 14 on the opposite side of the front end portion of the blade body 10 from the joint surface side with the support member 20, that is, in this embodiment, the surface of the base layer 11 is the support member 20. The contact portion 14 is positioned on the opposite side of the joint surface with the support member 20, but depending on the manner of contact of the cleaning blade 1 with the toner adherent, the surface of the edge layer 12 may be The contact portion 14 may be positioned on the side of the joint surface with the support member 20 by being joined to the support member 20.

このようなクリーニングブレード1は、長手方向中央部は、ベース層11とエッジ層12との二層構造からなり、長手方向両端部の高剛性部13は、相対的に高硬度のエッジ層12のみからなる。これにより、長手方向中央部の二層構造の合成ヤング率が、長手方向両端部の高剛性部13より小さくなるので、ブレード本体10の当接部14をトナー付着体に所定の圧力で当接させた場合、長手方向中央部での当接圧より長手方向端部の高剛性部13の当接圧が高くなり、ブレード本体10の端部のメクレが防止される。すなわち、ブレード本体10は、長手方向端部に高剛性部13を具備するので、所定の圧力で当接させた場合、長手方向端部において、より大きな力でトナー付着体に当接させることができ、これによりメクレが抑制される。なお、ヤング率が長手方向に亘って均一なブレード本体を当接させると、長手方向中央部では、当接する力は長手方向に直交する方向に作用するが、長手方向端部では、当接する力が長手方向外側に逃げてしまい、長手方向に直交する方向にかかる力、すなわち当接圧が小さくなってしまい、これがメクレの原因となる。   Such a cleaning blade 1 has a two-layer structure of a base layer 11 and an edge layer 12 at the center in the longitudinal direction, and the high rigidity portion 13 at both ends in the longitudinal direction is only the edge layer 12 having a relatively high hardness. Consists of. As a result, the composite Young's modulus of the two-layer structure in the central portion in the longitudinal direction is smaller than that of the high-rigidity portions 13 at both ends in the longitudinal direction, so that the abutting portion 14 of the blade body 10 abuts on the toner adhering body with a predetermined pressure. In this case, the contact pressure of the high-rigidity portion 13 at the end in the longitudinal direction is higher than the contact pressure at the central portion in the longitudinal direction, and the edge of the blade body 10 is prevented from becoming clogged. That is, since the blade body 10 includes the highly rigid portion 13 at the end portion in the longitudinal direction, when the blade body 10 is brought into contact with a predetermined pressure, the blade body 10 can be brought into contact with the toner adhering body with a greater force at the end portion in the longitudinal direction. Can be suppressed. When the blade body having a uniform Young's modulus in the longitudinal direction is brought into contact, the abutting force acts in the direction perpendicular to the longitudinal direction at the longitudinal center, but the abutting force at the longitudinal end. Escapes to the outside in the longitudinal direction, and the force applied in the direction orthogonal to the longitudinal direction, that is, the contact pressure, becomes small, which causes the melee.

一方、当接部14は、均一材料で形成エッジ層12からなるので、高剛性部13との境界で段差等が生じないので、トナー漏れの虞がない。   On the other hand, since the contact portion 14 is made of the uniform edge layer 12 made of a uniform material, no step or the like occurs at the boundary with the high-rigidity portion 13, so there is no risk of toner leakage.

ここで、ベース層11は、エッジ層12を構成するゴム基材より低硬度のゴム基材からなり、かかるゴム基材のゴム硬度は、JIS Aで60〜80°が好ましい。ベース層11のゴム硬度が80°より大きくすると、永久ひずみが大きくなり、クリーニングブレードとした際の耐久性が悪化する。エッジ層12は、ベース層11を構成するゴム基材より高硬度のゴム機材からなり、かかるゴム基材のゴム硬度は、JIS Aで70〜90°が好ましい。エッジ層12のゴム硬度が70°未満では、耐摩耗性が悪化し、90°より大きいと、硬くなり過ぎて当接体を傷付ける虞がある。   Here, the base layer 11 is made of a rubber base material having a lower hardness than that of the rubber base material constituting the edge layer 12, and the rubber hardness of the rubber base material is preferably 60 to 80 ° according to JIS A. If the rubber hardness of the base layer 11 is greater than 80 °, the permanent strain increases and the durability when used as a cleaning blade is deteriorated. The edge layer 12 is made of a rubber material having a hardness higher than that of the rubber base material constituting the base layer 11, and the rubber hardness of the rubber base material is preferably 70 to 90 ° according to JIS A. When the rubber hardness of the edge layer 12 is less than 70 °, the wear resistance is deteriorated. When the rubber hardness is greater than 90 °, the edge layer 12 becomes too hard and may damage the contact body.

このようなベース層11、エッジ層12を構成するゴム基材としては、ポリウレタン、エピクロルヒドリンゴム、ニトリルゴム(NBR)、スチレンゴム(SBR)、クロロプレンゴム、エチレンプロピレンジエンゴム(EPDM)等を挙げることができるが、特にポリウレタンが好ましい。ポリウレタンは、ポリオール、ポリイソシアネート、及び架橋剤を含むポリウレタン組成物を硬化・成形したものであり、ポリオール、ポリイソシアネート、及び架橋剤の種類や配合を調整することにより、破断伸びや引張強度等の機械的強度が高く、高硬度で耐摩耗性に優れたものとすることができ、好ましい。   Examples of the rubber substrate constituting the base layer 11 and the edge layer 12 include polyurethane, epichlorohydrin rubber, nitrile rubber (NBR), styrene rubber (SBR), chloroprene rubber, ethylene propylene diene rubber (EPDM), and the like. However, polyurethane is particularly preferable. Polyurethane is obtained by curing and molding a polyurethane composition containing a polyol, polyisocyanate, and a crosslinking agent. By adjusting the type and blending of the polyol, polyisocyanate, and crosslinking agent, the elongation at break, tensile strength, etc. High mechanical strength, high hardness and excellent wear resistance are preferable.

このようなブレード本体10の製造方法としては、射出成形、注入成形、遠心成形等を挙げることができる。射出成形や注入成形では、ベース層及びエッジ層の何れか一方を成形した後、上型を変更して他方を成形することで製造可能である。また、遠心成形では、高剛性部のエッジ層で構成される部分に型を取り付けた状態でベース層を成形し、型を取り除いた状態でエッジ層を成形することで製造することができる。なお、何れの成形方法においても、二層の接合状態が十分でない材料を選定した場合などにおいては、一層目を半加硫又は半硬化状態で二層目を成形することで、両者の接合強度を向上させることができる。   Examples of the method for manufacturing the blade body 10 include injection molding, injection molding, and centrifugal molding. Injection molding or injection molding can be manufactured by molding either one of the base layer and the edge layer, and then changing the upper mold and molding the other. Centrifugal molding can be produced by molding the base layer with the mold attached to the portion constituted by the edge layer of the highly rigid portion and molding the edge layer with the mold removed. In any of the molding methods, when a material is selected in which the bonding state between the two layers is not sufficient, the bonding strength between the two layers can be obtained by forming the second layer in the semi-vulcanized or semi-cured state of the first layer. Can be improved.

何れの成形においても、成形したシートを所定の形状に切断してブレード本体とし、これを接着剤で支持部材と接合し、クリーングブレードをすることができる。また、射出成形、注入成形では、所定形状のブレード本体を成形し、これを接着剤で支持部材と接合し、クリーングブレードをすることができ、さらに、ブレード本体を支持部材と一体成形して接合することも可能である。   In any of the moldings, the molded sheet can be cut into a predetermined shape to form a blade body, which can be joined to a support member with an adhesive to form a clean blade. In injection molding and injection molding, a blade body of a predetermined shape can be molded and bonded to a support member with an adhesive to form a clean blade. Further, the blade body is integrally molded with the support member and bonded. It is also possible to do.

このようなブレード本体10の少なくともエッジ層12の当接部14の表層部に表面処理液を含浸させ硬化することにより、表面処理層を形成してもよい。表面処理層の形成は、表層部に少なくともイソシアネート化合物と有機溶剤を含有する表面処理液を含浸させ硬化する方法は特に限定されず、例えば、ブレード本体10を表面処理液に浸漬し、次いで加熱する方法、又は表面処理液をスプレー塗布等によりブレード本体10の表面に塗布して含浸させ、次いで加熱する方法が挙げられる。また、加熱する方法は限定されず、例えば加熱処理、強制乾燥及び自然乾燥等が挙げられる。このような表面処理層を形成することにより、エッジ層12の表面の動摩擦係数や表面硬度を変化させて、耐カケ性に優れ、フィルミングの抑制及びクリーニング性を向上させることもできる。なお、エッジ層12の表面の動摩擦係数や表面硬度の調整は、表面処理層の形成によるものに限定されず、有機系コーティング剤や無機系コーティング剤によるコーティング層の形成によっても行うことができる。   The surface treatment layer may be formed by impregnating and curing the surface treatment liquid on at least the surface layer portion of the contact portion 14 of the edge layer 12 of the blade body 10. The surface treatment layer is formed by impregnating the surface layer portion with a surface treatment solution containing at least an isocyanate compound and an organic solvent and curing. For example, the blade body 10 is immersed in the surface treatment solution and then heated. Examples thereof include a method, or a method in which a surface treatment liquid is applied to the surface of the blade body 10 by spray coating or the like, and then heated. Moreover, the method to heat is not limited, For example, heat processing, forced drying, natural drying, etc. are mentioned. By forming such a surface treatment layer, it is possible to change the dynamic friction coefficient and surface hardness of the surface of the edge layer 12, and to improve the anti-chalking property, to suppress the filming and to improve the cleaning property. The adjustment of the dynamic friction coefficient and surface hardness of the surface of the edge layer 12 is not limited to the formation of the surface treatment layer, but can also be performed by the formation of a coating layer using an organic coating agent or an inorganic coating agent.

以上説明した実施形態1のクリーニングブレード1によれば、ブレード本体10の長手方向両側に高剛性部13が存在し、トナー付着体に当接させた際に高剛性部13の当接力がそれ以外の部分より大きくなるので端部のメクレが防止される。また、トナー付着体との当接部14は均一なゴム基材からなるエッジ層12からなるので高剛性部13とそれ以外の部分の境界に段差が存在せず、優れたクリーニング特性が発揮され、トナー漏れの虞もないという効果を奏する。   According to the cleaning blade 1 of the first embodiment described above, the high-rigidity portions 13 exist on both sides in the longitudinal direction of the blade body 10, and the contact force of the high-rigidity portions 13 is the other when contacting the toner adhering body. Since it becomes larger than this part, the edge of the edge is prevented. Further, since the contact portion 14 with the toner adhering body is composed of the edge layer 12 made of a uniform rubber base material, there is no step at the boundary between the high-rigidity portion 13 and other portions, and excellent cleaning characteristics are exhibited. There is an effect that there is no risk of toner leakage.

(実施形態2)
図2には、実施形態2に係るクリーニングブレードのブレード本体10Aの横断面図を示す。図示するように、本実施形態のブレード本体10Aは、高剛性部13Aの長手方向内側に、内側ほどエッジ層12Aの厚さが漸次小さくなり、逆にベース層11Aの厚さが内側ほど大きくなる傾斜部15Aが設けられている。これ以外の構成は、実施形態1と同様であるので、重複する説明は省略する。
(Embodiment 2)
FIG. 2 shows a cross-sectional view of the blade body 10A of the cleaning blade according to the second embodiment. As shown in the drawing, in the blade body 10A of the present embodiment, the thickness of the edge layer 12A gradually decreases toward the inner side in the longitudinal direction of the high-rigidity portion 13A, and conversely, the thickness of the base layer 11A increases toward the inner side. An inclined portion 15A is provided. Since the configuration other than this is the same as that of the first embodiment, a duplicate description is omitted.

このような実施形態2のクリーニングブレードによれば、ブレード本体10Aの長手方向両側に高剛性部13Aが存在し、トナー付着体に当接させた際に高剛性部13Aの当接力がそれ以外の部分より大きくなるので端部のメクレが防止され、また、トナー付着体との当接部14は均一なゴム基材からなるエッジ層12Aからなるので高剛性部13Aとそれ以外の部分の境界に段差が存在せず、優れたクリーニング特性が発揮され、トナー漏れの虞もないという効果を奏する点は上述した実施形態と同様である。そして、本実施形態では、高剛性部13Aとそれ以外の部分との境界で剛性が緩やかに変化するようになるので、境界での当接力の変化も緩やかとなり、より優れたクリーニング特性が発揮され、トナー漏れの虞もないという効果を奏する。   According to the cleaning blade of the second embodiment, the high-rigidity portion 13A exists on both sides in the longitudinal direction of the blade body 10A, and the contact force of the high-rigidity portion 13A is the other when it is brought into contact with the toner adhering body. Since it is larger than the portion, the end portion is prevented from being peeled, and the contact portion 14 with the toner adhering body is composed of the edge layer 12A made of a uniform rubber base material, so that the boundary between the highly rigid portion 13A and the other portion is provided. Similar to the above-described embodiment, there is no step, an excellent cleaning characteristic is exhibited, and there is no risk of toner leakage. In this embodiment, since the rigidity gradually changes at the boundary between the high-rigidity portion 13A and other portions, the change in the contact force at the boundary also becomes gentle, and more excellent cleaning characteristics are exhibited. There is an effect that there is no risk of toner leakage.

(実施形態3)
図3には、実施形態3に係るクリーニングブレードのブレード本体10Bの横断面図を示す。図示するように、本実施形態のブレード本体10Bは、高剛性部13Bの長手方向内側に、内側ほどエッジ層12Bの厚さが漸次小さくなり、逆にベース層11Bの厚さが内側ほど大きくなる傾斜部15Bが設けられている点は、実施形態2と同様であるが、ベース層11Bは、高剛性部13Bの端部まで延設されている。これ以外の構成は、実施形態1,2と同様であるので、重複する説明は省略する。
(Embodiment 3)
FIG. 3 is a cross-sectional view of the blade body 10B of the cleaning blade according to the third embodiment. As illustrated, in the blade body 10B of the present embodiment, the thickness of the edge layer 12B gradually decreases toward the inner side in the longitudinal direction of the high-rigidity portion 13B, and conversely, the thickness of the base layer 11B increases toward the inner side. Although the inclined part 15B is provided in the same manner as in the second embodiment, the base layer 11B extends to the end of the high-rigidity part 13B. Since the configuration other than this is the same as in the first and second embodiments, a duplicate description is omitted.

このようなブレード本体10Bの高剛性部13Bのヤング率はベース層11Bとエッジ層12Bとの合成ヤング率となるが、高剛性部13Bでのベース層11Bは、それ以外の部分より薄く、エッジ層12Bがそれ以外の部分より厚いので、高剛性部13Bの合成ヤング率は、長手方向中央部の合成ヤング率より大きくなり、実施形態1、2と同様な効果を奏する。   The Young's modulus of the high-rigidity portion 13B of the blade body 10B is the combined Young's modulus of the base layer 11B and the edge layer 12B. However, the base layer 11B in the high-rigidity portion 13B is thinner than the other portions, and the edge Since the layer 12B is thicker than the other portions, the synthetic Young's modulus of the high-rigidity portion 13B is larger than the synthetic Young's modulus of the central portion in the longitudinal direction, and the same effects as in the first and second embodiments are achieved.

すなわち、このような実施形態3のクリーニングブレードによれば、ブレード本体10Bの長手方向両側に高剛性部13Bが存在し、トナー付着体に当接させた際に高剛性部13Bの当接力がそれ以外の部分より大きくなるので端部のメクレが防止され、また、トナー付着体との当接部14は均一なゴム基材からなるエッジ層12Bからなるので高剛性部13Bとそれ以外の部分の境界に段差が存在せず、優れたクリーニング特性が発揮され、トナー漏れの虞もないという効果を奏する点は上述した実施形態と同様である。そして、本実施形態では、高剛性部13Bとそれ以外の部分との境界で剛性が緩やかに変化するようになるので、境界での当接力の変化も緩やかとなり、より優れたクリーニング特性が発揮され、トナー漏れの虞もないという効果を奏する点は、実施形態2と同様である。   That is, according to the cleaning blade of the third embodiment, the high rigidity portion 13B exists on both sides in the longitudinal direction of the blade body 10B, and the contact force of the high rigidity portion 13B is reduced when the high rigidity portion 13B is brought into contact with the toner adhering body. Therefore, the contact portion 14 with the toner adhering member is composed of the edge layer 12B made of a uniform rubber base material, so that the high-rigidity portion 13B and the other portions are not contacted with each other. Similar to the above-described embodiment, there is no step at the boundary, excellent cleaning characteristics are exhibited, and there is no risk of toner leakage. In this embodiment, since the rigidity gradually changes at the boundary between the high-rigidity portion 13B and the other parts, the change in the contact force at the boundary also becomes gentle, and more excellent cleaning characteristics are exhibited. Similar to the second embodiment, there is an effect that there is no risk of toner leakage.

(実施形態4)
図4には、実施形態4に係るクリーニングブレードのブレード本体10Cの横断面図を示す。図示するように、本実施形態のブレード本体10Cの高剛性部13Cは、長手方向内側ほどエッジ層12Cの厚さが漸次小さくなり、逆にベース層11Cの厚さが内側ほど大きくなる傾斜部15Cのみから構成される。
(Embodiment 4)
FIG. 4 shows a cross-sectional view of the blade body 10C of the cleaning blade according to the fourth embodiment. As shown in the figure, the highly rigid portion 13C of the blade body 10C of the present embodiment has an inclined portion 15C in which the thickness of the edge layer 12C gradually decreases toward the inner side in the longitudinal direction, and conversely, the thickness of the base layer 11C increases toward the inner side. Consists of only.

このようなブレード本体10Cの高剛性部13Cのヤング率はそれぞれ厚さが長手方向に変化するベース層11Cとエッジ層12Cとの合成ヤング率となるが、高剛性部13Cでのベース層11Cは、それ以外の部分より薄く、エッジ層12Cがそれ以外の部分より厚いので、高剛性部13Cの合成ヤング率は、長手方向中央部の合成ヤング率より大きくなり、実施形態1、2と同様な効果を奏する。   The Young's modulus of the high-rigidity portion 13C of the blade body 10C is a composite Young's modulus of the base layer 11C and the edge layer 12C whose thickness varies in the longitudinal direction, but the base layer 11C in the high-rigidity portion 13C is Since the edge layer 12C is thinner than the other portions, and the edge layer 12C is thicker than the other portions, the composite Young's modulus of the high-rigidity portion 13C is larger than the composite Young's modulus in the central portion in the longitudinal direction, which is the same as in the first and second embodiments. There is an effect.

このような実施形態3のクリーニングブレードによれば、ブレード本体10Cの長手方向両側に高剛性部13Cが存在し、トナー付着体に当接させた際に高剛性部13Cの当接力がそれ以外の部分より大きくなるので端部のメクレが防止され、また、トナー付着体との当接部14は均一なゴム基材からなるエッジ層12Cからなるので高剛性部13Cとそれ以外の部分の境界に段差が存在せず、優れたクリーニング特性が発揮され、トナー漏れの虞もないという効果を奏する点は上述した実施形態と同様である。そして、本実施形態では、高剛性部13Cとそれ以外の部分との境界で剛性が緩やかに変化するようになるので、境界での当接力の変化も緩やかとなり、より優れたクリーニング特性が発揮され、トナー漏れの虞もないという効果を奏する。   According to the cleaning blade of Embodiment 3 as described above, the high rigidity portion 13C exists on both sides in the longitudinal direction of the blade body 10C, and the contact force of the high rigidity portion 13C is the other when the contact is made with the toner adhering body. Since it is larger than the portion, the end portion is prevented from being peeled, and the contact portion 14 with the toner adhering body is composed of the edge layer 12C made of a uniform rubber base material, so that it is at the boundary between the high-rigidity portion 13C and the other portions. Similar to the above-described embodiment, there is no step, an excellent cleaning characteristic is exhibited, and there is no risk of toner leakage. In this embodiment, since the rigidity gradually changes at the boundary between the high-rigidity portion 13C and the other portions, the change in the contact force at the boundary also becomes gentle, and more excellent cleaning characteristics are exhibited. There is an effect that there is no risk of toner leakage.

(実施形態5)
図5には、実施形態5に係るクリーニングブレードのブレード本体10Dの縦断面図及び横断面図を示す。図5(a)及び(b)は、図1のA−A’線断面及びB−B’線断面に対応し、図5(c)、(d)及び(e)は、その(c)、(d)及び(e)線断面であるが、図示するように、本実施形態のブレード本体10Dの高剛性部13Dは、短手方向の先端部側(摺接部側)はエッジ層12Dのみからなるが、基端部側の略半分のエッジ層12Dは、中央部のエッジ層の厚さと同様で薄くなっている。
(Embodiment 5)
FIG. 5 shows a longitudinal sectional view and a transverse sectional view of a blade body 10D of the cleaning blade according to the fifth embodiment. 5 (a) and 5 (b) correspond to the AA ′ line cross section and the BB ′ line cross section of FIG. 1, and FIGS. 5 (c), 5 (d) and 5 (e) are the same as FIG. , (D) and (e) are cross sections, as shown in the drawing, the high rigidity portion 13D of the blade body 10D of the present embodiment has an edge layer 12D on the distal end side (sliding contact portion side) in the short direction. However, the half edge layer 12D on the base end side is thin like the thickness of the edge layer at the center.

このようなブレード本体10Dの高剛性部13Dのヤング率はそれぞれ厚さが短手方向に変化するベース層11Dとエッジ層12Dとの合成ヤング率となるが、高剛性部13Dでのベース層11Dは、摺接部側では存在せず、エッジ層12Dのみからなるので、高剛性部13Dの合成ヤング率は、長手方向中央部の合成ヤング率より大きくなり、実施形態1、2と同様な効果を奏する。また、高剛性部13Dの短手方向で摺接部側ではヤング率が大きいが、基端部側ではヤング率が小さくなり、中央部側とから及び基端部側から剛性が緩やかに変化する。   The Young's modulus of the high-rigidity portion 13D of the blade body 10D is a composite Young's modulus of the base layer 11D and the edge layer 12D whose thickness changes in the short direction, but the base layer 11D in the high-rigidity portion 13D. Does not exist on the sliding contact portion side, and consists only of the edge layer 12D. Therefore, the composite Young's modulus of the high-rigidity portion 13D is larger than the composite Young's modulus of the central portion in the longitudinal direction, and the same effects as in the first and second embodiments. Play. Further, although the Young's modulus is large on the sliding contact side in the short direction of the high-rigidity portion 13D, the Young's modulus is small on the base end side, and the rigidity gradually changes from the central side and from the base end side. .

このような実施形態5のクリーニングブレードによれば、ブレード本体10Dの長手方向両側に高剛性部13Dが存在し、トナー付着体に当接させた際に高剛性部13Dの当接力がそれ以外の部分より大きくなるので端部のメクレが防止され、また、トナー付着体との当接部14は均一なゴム基材からなるエッジ層12Dからなるので高剛性部13Dとそれ以外の部分の境界に段差が存在せず、優れたクリーニング特性が発揮され、トナー漏れの虞もないという効果を奏する点は上述した実施形態と同様である。   According to the cleaning blade of Embodiment 5 as described above, the high rigidity portion 13D exists on both sides in the longitudinal direction of the blade body 10D, and the contact force of the high rigidity portion 13D is the other when the contact is made with the toner adhering body. Since it is larger than the portion, the end portion is prevented from being formed, and the contact portion 14 with the toner adhering body is composed of the edge layer 12D made of a uniform rubber base material, so that the boundary between the highly rigid portion 13D and the other portion is provided. Similar to the above-described embodiment, there is no step, an excellent cleaning characteristic is exhibited, and there is no risk of toner leakage.

(実施形態6)
図6には、実施形態6に係るクリーニングブレードのブレード本体10Eの縦断面図及び横断面図を示す。実施形態5では、高剛性部13Dで、短手方向の摺接部側ではエッジ層12Dのみが形成され、基端部側でエッジ層12Dが薄く、ベース層11Dが厚いものであったが、摺接部側に薄いベース層が残っていても良い。
(Embodiment 6)
FIG. 6 shows a longitudinal sectional view and a transverse sectional view of the blade body 10E of the cleaning blade according to the sixth embodiment. In the fifth embodiment, only the edge layer 12D is formed on the slidable contact portion side in the short-side direction in the high-rigidity portion 13D, the edge layer 12D is thin on the base end side, and the base layer 11D is thick. A thin base layer may remain on the sliding contact portion side.

図6(a)及び(b)は、図1のA−A’線断面及びB−B’線断面に対応し、図6(c)、(d)及び(e)は、その(c)、(d)及び(e)線断面であるが、図示するように、本実施形態のブレード本体10Eの高剛性部13Eは、短手方向の先端部側(摺接部側)はエッジ層12Eが厚く、ベース層11Eが薄くなっているが、基端部側の略半分では、エッジ層12Eの厚さは中央部の厚さと同様で薄く、ベース層11Eが厚くなっている。   6 (a) and 6 (b) correspond to the AA ′ line cross section and the BB ′ line cross section of FIG. 1, and FIGS. 6 (c), 6 (d), and 6 (e) show the section (c). , (D) and (e) are cross sections, as shown in the drawing, the high rigidity portion 13E of the blade body 10E of the present embodiment has an edge layer 12E on the distal end side (sliding contact portion side) in the short direction. Although the thickness of the base layer 11E is thin, the thickness of the edge layer 12E is as thin as the thickness of the central portion, and the base layer 11E is thick in approximately half of the base end side.

このような実施形態6のクリーニングブレードによれば、ブレード本体10Eの長手方向両側に高剛性部13Eが存在し、トナー付着体に当接させた際に高剛性部13Eの当接力がそれ以外の部分より大きくなるので端部のメクレが防止され、また、トナー付着体との当接部14は均一なゴム基材からなるエッジ層12Eからなるので高剛性部13Eとそれ以外の部分の境界に段差が存在せず、優れたクリーニング特性が発揮され、トナー漏れの虞もないという効果を奏する点は上述した実施形態と同様である。また、高剛性部13Eの短手方向で摺接部側ではヤング率が大きいが、基端部側ではヤング率が小さくなり、中央部側とから及び基端部側から剛性が緩やかに変化する。   According to the cleaning blade of the sixth embodiment, the high-rigidity portions 13E exist on both sides in the longitudinal direction of the blade body 10E, and the contact force of the high-rigidity portions 13E is the other when it is brought into contact with the toner adhering body. Since it is larger than the portion, the end portion is prevented from being peeled, and the contact portion 14 with the toner adhering body is composed of the edge layer 12E made of a uniform rubber base material, so that it is at the boundary between the high rigidity portion 13E and the other portions. Similar to the above-described embodiment, there is no step, an excellent cleaning characteristic is exhibited, and there is no risk of toner leakage. In addition, the Young's modulus is large on the sliding contact side in the short direction of the high-rigidity portion 13E, but the Young's modulus is small on the base end side, and the rigidity gradually changes from the central side and from the base end side. .

(実施形態7)
図7には、実施形態7に係るクリーニングブレードのブレード本体10Fの縦断面図及び横断面図を示す。実施形態6では、高剛性部13Eで、短手方向の摺接部側ではエッジ層12Eが厚く、ベース層11Eが薄く、基端部側ではエッジ層12Eが薄く、ベース層11Eが厚いものであったが、エッジ層の厚さが摺接部側ほど漸次厚くなるように変化していてもよい。
(Embodiment 7)
FIG. 7 shows a longitudinal sectional view and a transverse sectional view of the blade body 10F of the cleaning blade according to the seventh embodiment. In the sixth embodiment, the high-rigidity portion 13E is such that the edge layer 12E is thick and the base layer 11E is thin on the slidable contact side in the short side direction, the edge layer 12E is thin and the base layer 11E is thick on the base end side. However, the thickness of the edge layer may change so as to gradually increase toward the sliding contact portion.

図7(a)及び(b)は、図1のA−A’線断面及びB−B’線断面に対応し、図7(c)、(d)及び(e)は、その(c)、(d)及び(e)線断面であるが、図示するように、本実施形態のブレード本体10Fの高剛性部13Fは、短手方向の基端部側の略半分では、エッジ層12Fの厚さは中央部の厚さと同様で薄く、ベース層11Fが厚くなっているが、エッジ層12Fは摺接部側ほど厚さが漸次厚くなり、変化は曲線状となり、摺接部側ほど厚さの増加率は大きくなり、摺接部端部では、エッジ層12Fのみとなるようになっている。   7A and 7B correspond to the AA ′ line cross-section and the BB ′ line cross-section of FIG. 1, and FIGS. 7C, 7D, and 7E show the (c) , (D) and (e) are cross sections, as shown in the drawing, the high rigidity portion 13F of the blade body 10F of the present embodiment is substantially half of the proximal end side in the short direction of the edge layer 12F. The thickness is the same as the thickness of the central portion, and the base layer 11F is thicker. However, the edge layer 12F gradually increases in thickness toward the sliding contact portion side, and the change becomes a curve, and the thickness increases toward the sliding contact portion side. The rate of increase in height increases, and only the edge layer 12F is provided at the end of the sliding contact portion.

このような実施形態7のクリーニングブレードによれば、ブレード本体10Fの長手方向両側に高剛性部13Fが存在し、トナー付着体に当接させた際に高剛性部13Fの当接力がそれ以外の部分より大きくなるので端部のメクレが防止され、また、トナー付着体との当接部14は均一なゴム基材からなるエッジ層12Fからなるので高剛性部13Fとそれ以外の部分の境界に段差が存在せず、優れたクリーニング特性が発揮され、トナー漏れの虞もないという効果を奏する点は上述した実施形態と同様である。また、高剛性部13Fの短手方向で摺接部側ではヤング率が大きいが、基端部側ではヤング率が小さくなり、中央部側とから及び基端部側から剛性が緩やかに変化する。   According to the cleaning blade of the seventh embodiment, the high-rigidity portion 13F exists on both sides in the longitudinal direction of the blade body 10F, and the contact force of the high-rigidity portion 13F is the other when it is brought into contact with the toner adhering body. Since it is larger than the portion, the end portion is prevented from being peeled, and the contact portion 14 with the toner adhering body is composed of the edge layer 12F made of a uniform rubber base material, so that it is at the boundary between the high rigidity portion 13F and the other portions. Similar to the above-described embodiment, there is no step, an excellent cleaning characteristic is exhibited, and there is no risk of toner leakage. Further, although the Young's modulus is large on the sliding contact side in the short direction of the high-rigidity portion 13F, the Young's modulus is small on the base end side, and the rigidity gradually changes from the central side and from the base end side. .

(変形例)
なお、エッジ層の厚さの変化は直線状であってもよく、また、摺接部端部でベース層が残っていても良い。図8(a)、(b)には、厚さが直線的に変化したエッジ層12G、12Hの例を示し、図8(a)では、ブレード本体10Gの高剛性部13Gの摺接部端部では、エッジ層12Gのみとなり、ベース層11Gは存在しないが、図8(b)では、ブレード本体10Hの高剛性部13Hの摺接部端部でも厚いエッジ層12Hと、薄いベース層11Hとが存在するものである。このような構成でも、同様な効果を奏することはいうまでもない。
(Modification)
The change in the thickness of the edge layer may be linear, or the base layer may remain at the end of the sliding contact portion. FIGS. 8A and 8B show examples of the edge layers 12G and 12H whose thickness changes linearly. In FIG. 8A, the sliding contact end of the high-rigidity portion 13G of the blade body 10G is shown. In FIG. 8B, only the edge layer 12G is present and the base layer 11G does not exist. However, in FIG. 8B, the thick edge layer 12H and the thin base layer 11H at the end of the sliding contact portion of the high rigidity portion 13H of the blade body 10H Is something that exists. It goes without saying that the same effect can be obtained with such a configuration.

上述した実施形態5〜7及び変形例において、高剛性部のエッジ層及びベース層の摺接部長手方向の厚さは一定としたが、摺接部長手方向において、例えば、長手方向外側ほどエッジ層の厚さが厚くなるようにしてもよい。すなわち、高剛性部は、摺接部長手方向両端部で且つ短手方向摺接部側端部で剛性が最も大きくなるようにすればよく、高剛性部でのエッジ層とベース層の厚さを三次元的に設計することができる。このような設計により、中央部側とから長手方向両端部にかけて及び基端部側から摺接部端部側にかけて剛性が緩やかに変化するようにすることができる。なお、実施形態1〜7及び変形例において、エッジ層とベース層との硬度差は、要求耐久性能により、適宜選択される。   In Embodiments 5 to 7 and the modifications described above, the edge layer of the high-rigidity part and the thickness of the base layer in the longitudinal direction of the sliding contact part are constant. The thickness of the layer may be increased. That is, the high-rigidity portion should have the greatest rigidity at both ends in the longitudinal direction of the slidable contact portion and at the end portion in the short-side slidable contact portion, and the thickness of the edge layer and the base layer in the highly rigid portion. Can be designed three-dimensionally. With such a design, the rigidity can be changed gently from the center side to both ends in the longitudinal direction and from the base end side to the sliding contact end side. In the first to seventh embodiments and modifications, the hardness difference between the edge layer and the base layer is appropriately selected depending on the required durability performance.

以下、本発明を実施例により説明するが、本発明を限定するものではない。   EXAMPLES Hereinafter, although an Example demonstrates this invention, this invention is not limited.

(実施例)
実施形態1の構成において、ベース層11を、JIS−A硬度で63°のゴム基材、エッジ層12をJIS−A硬度78°のゴム基材を作製し、長手方向中央部のベース層11の厚さを1.5mm、エッジ層12の厚さを0.5mmとした。
(Example)
In the configuration of the first embodiment, the base layer 11 is a rubber base material having a JIS-A hardness of 63 °, the edge layer 12 is a rubber base material having a JIS-A hardness of 78 °, and the base layer 11 at the center in the longitudinal direction is prepared. Was 1.5 mm, and the edge layer 12 was 0.5 mm thick.

このように製造したブレード本体10を支持部材20との接合し、実施例のクリーニングブレードとした。   The blade body 10 manufactured in this way was joined to the support member 20 to obtain the cleaning blade of the example.

かかるクリーニングブレードをアルミ製の筒体に、初期設定角度20°、食い込み量1mmで当接させ、筒体を90rpmで、10分間回転させたところ、長手方向端部でのメクレは発生しなかった。   When such a cleaning blade was brought into contact with an aluminum cylinder at an initial setting angle of 20 ° and a biting amount of 1 mm and the cylinder was rotated at 90 rpm for 10 minutes, no peeling occurred at the end in the longitudinal direction. .

(比較例)
ブレード本体の中央部と剛性、ヤング率が同一である、JIS−A硬度68°のゴム基材のみで、厚さ2mmのブレード本体を作製し、支持部材と接合し、比較例のクリーニングブレードとした。
(Comparative example)
A blade body having a thickness of 2 mm is produced only from a rubber base material having the same rigidity and Young's modulus as the central part of the blade body and having a JIS-A hardness of 68 °, and bonded to a support member. did.

かかるクリーニングブレードを実施例と同じ条件でアルミ製の筒体に当接させ、筒体を回転させたところ、回転初期から、端部からメクレが発生した。   When this cleaning blade was brought into contact with an aluminum cylinder under the same conditions as in the example and the cylinder was rotated, peeling occurred from the end from the beginning of rotation.

本発明に係るクリーニングブレードは、電子写真式複写機及びプリンタ、又はトナージェット式複写機及びプリンタ等の画像形成装置に用いられるクリーニングブレードに用いて好適であるが、その他の各種ブレードにも適用できる。   The cleaning blade according to the present invention is suitable for use in cleaning blades used in image forming apparatuses such as electrophotographic copying machines and printers, or toner jet copying machines and printers, but can also be applied to other various blades. .

1、1A、1B、1C クリーニングブレード
10、10A〜10H ブレード本体
11、11A〜11H ベース層
12、12A〜12H エッジ層
13、13A〜13H 高剛性部
14 当接部
15A、15B、15C 傾斜部
20 支持部材
1, 1A, 1B, 1C Cleaning blade 10, 10A-10H Blade body 11, 11A-11H Base layer 12, 12A-12H Edge layer 13, 13A-13H High-rigidity part 14 Contact part 15A, 15B, 15C Inclined part 20 Support member

Claims (5)

トナー付着体上のトナーを除去するクリーニング部に用いるクリーニングブレードのブレード本体において、
前記トナー付着体に摺接するエッジ層と、前記エッジ層の裏面に設けられたベース層との二層からなると共に、前記エッジ層は、前記ベース層を構成するゴム基材のゴム硬度より硬いゴム硬度を有するゴム基材からなり、前記トナー付着体との摺接部長手方向両端部には、前記ベース層の厚さが薄いか又は存在しない高剛性部を具備することを特徴とするブレード本体。
In the blade body of the cleaning blade used in the cleaning unit that removes the toner on the toner adherent,
The edge layer that is in sliding contact with the toner adhering body and a base layer provided on the back surface of the edge layer, and the edge layer is a rubber that is harder than the rubber hardness of the rubber substrate that constitutes the base layer A blade main body comprising a rubber base material having hardness, and having a high-rigidity portion where the thickness of the base layer is thin or absent at both ends in the longitudinal direction of the sliding contact portion with the toner adhering body .
請求項1に記載のブレード本体において、
前記高剛性部は、前記摺接部長手方向外側ほど前記エッジ層の厚さが漸次厚くなる傾斜部を有することを特徴とするブレード本体。
The blade body according to claim 1,
The blade body according to claim 1, wherein the high-rigidity portion has an inclined portion in which the thickness of the edge layer gradually increases toward the outside in the longitudinal direction of the sliding contact portion.
請求項1又は2に記載のブレード本体において、
前記高剛性部は、少なくとも前記摺接部長手方向外側に、前記エッジ層のみからなる部分を有することを特徴とするブレード本体。
In the blade body according to claim 1 or 2,
The blade body according to claim 1, wherein the high-rigidity portion has a portion made only of the edge layer at least on the outside in the longitudinal direction of the sliding contact portion.
請求項1〜3の何れか一項に記載のブレード本体において、
前記高剛性部の前記エッジ層は、前記摺接部側と、前記摺接部側とは反対側の基端部側とで厚さが異なり、前記摺接部側で厚くなっていることを特徴とするブレード本体。
In the blade body according to any one of claims 1 to 3,
The edge layer of the high-rigidity portion is different in thickness on the sliding contact portion side and the base end portion side opposite to the sliding contact portion side, and is thick on the sliding contact portion side. Characteristic blade body.
請求項1〜4に記載のブレード本体と、前記ブレード本体を保持する支持部材とを具備することを特徴とするクリーニングブレード。   A cleaning blade comprising the blade body according to claim 1 and a support member for holding the blade body.
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Publication number Priority date Publication date Assignee Title
US11397399B2 (en) 2019-06-17 2022-07-26 Hewlett-Packard Development Company, L.P. Cleaning member with ends of blade thereof bent toward image carrier

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US20100080636A1 (en) * 2008-09-30 2010-04-01 Xerox Corporation Coated-core cleaner blades
JP2011164377A (en) * 2010-02-10 2011-08-25 Ricoh Co Ltd Cleaning blade, image forming apparatus and process cartridge
JP2011197311A (en) * 2010-03-18 2011-10-06 Ricoh Co Ltd Cleaning device, and image forming apparatus, process cartridge, intermediate transfer unit, and recording body conveying unit each including the cleaning device
JP2012252157A (en) * 2011-06-02 2012-12-20 Canon Inc Image forming apparatus

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Publication number Priority date Publication date Assignee Title
JPH1173075A (en) * 1997-08-28 1999-03-16 Konica Corp Cleaning device
JP2007034248A (en) * 2005-06-20 2007-02-08 Ricoh Co Ltd Cleaning device, and process unit and image forming apparatus
US20100080636A1 (en) * 2008-09-30 2010-04-01 Xerox Corporation Coated-core cleaner blades
JP2011164377A (en) * 2010-02-10 2011-08-25 Ricoh Co Ltd Cleaning blade, image forming apparatus and process cartridge
JP2011197311A (en) * 2010-03-18 2011-10-06 Ricoh Co Ltd Cleaning device, and image forming apparatus, process cartridge, intermediate transfer unit, and recording body conveying unit each including the cleaning device
JP2012252157A (en) * 2011-06-02 2012-12-20 Canon Inc Image forming apparatus

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US11397399B2 (en) 2019-06-17 2022-07-26 Hewlett-Packard Development Company, L.P. Cleaning member with ends of blade thereof bent toward image carrier

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