JP5291891B2 - Manufacturing method of conductive roller - Google Patents

Manufacturing method of conductive roller Download PDF

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JP5291891B2
JP5291891B2 JP2007115688A JP2007115688A JP5291891B2 JP 5291891 B2 JP5291891 B2 JP 5291891B2 JP 2007115688 A JP2007115688 A JP 2007115688A JP 2007115688 A JP2007115688 A JP 2007115688A JP 5291891 B2 JP5291891 B2 JP 5291891B2
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toluene
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純一 高野
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Bridgestone Corp
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Description

本発明は、シャフトの周面に直接、もしくはシャフトの外側に配置された弾性層の周面に、樹脂と溶剤とよりなる塗工液を塗布して導電性ローラを製造する方法に関する。   The present invention relates to a method of manufacturing a conductive roller by applying a coating liquid composed of a resin and a solvent directly on a peripheral surface of a shaft or on a peripheral surface of an elastic layer disposed outside the shaft.

複写機やプリンタ等の電子写真方式を用いた画像形成装置においては、電荷を感光ドラムに供給する帯電ローラ、トナーを感光ドラムに供給する現像ローラ、トナーによる顕像を紙に転写する転写ローラ等、種々の導電性ローラが用いられており、これらの導電性ローラの多くは、シャフトの周面に直接、もしくは、シャフトの外側に配置された弾性層の周面に、樹脂と溶剤とよりなる塗工液を塗布して樹脂層を形成することにより製造されている。そして上記塗工液を調合するにあたっては、多くの場合、溶剤としてトルエンが用いられている(例えば、特許文献1参照。)。
特開平07−118578号公報
In an image forming apparatus using an electrophotographic system such as a copying machine or a printer, a charging roller for supplying electric charge to a photosensitive drum, a developing roller for supplying toner to the photosensitive drum, a transfer roller for transferring a visible image by toner onto paper, etc. Various conductive rollers are used, and many of these conductive rollers are made of resin and solvent directly on the peripheral surface of the shaft or on the peripheral surface of the elastic layer disposed outside the shaft. It is manufactured by applying a coating liquid to form a resin layer. In preparing the coating solution, toluene is often used as a solvent (see, for example, Patent Document 1).
JP 07-118578 A

しかしながら、昨今の環境問題から、有害性のあるトルエンを使用しないことが望まれており、それに代替することのできる溶剤が必要とされているものの、トルエンは、塗膜を乾燥させる際の乾燥速度を最適にすることが容易であるため、塗装ムラや塗膜のダレ等を起こしにくく、コスト的にも乾燥速度の点においても、これを代わることのできる溶剤は未だみつかっていない。   However, due to recent environmental problems, it is desired not to use harmful toluene, and although a solvent that can replace it is required, toluene is the drying speed when drying the coating film. Therefore, it is difficult to cause uneven coating and sagging of the coating film, and no solvent that can replace this has been found yet in terms of cost and drying speed.

本発明は、このような問題に鑑みてなされたものであり、トルエンに代わることができ、しかも、塗装ムラや塗膜のダレ等の現象を発生させることのない溶剤を用いて樹脂層を形成する導電性ローラの製造方法を提供することを目的とする。   The present invention has been made in view of such problems, and can be used in place of toluene, and the resin layer is formed using a solvent that does not cause phenomena such as coating unevenness and sagging of the coating film. An object of the present invention is to provide a method for manufacturing a conductive roller.

<1>は、シャフトの周面に直接、もしくはシャフトの外側に配置された弾性層の周面に、樹脂と溶剤とよりなる塗工液をディップ方式にて塗布して導電性ローラを製造する方法において、
前記溶剤として、20℃における蒸気圧がトルエンより高い溶剤と、20℃における蒸気圧がトルエンより低い溶剤とを、混合比7:3〜3:7(但し、5:5を除く)で混合させてなる混合溶剤を用いることを特徴とする導電性ローラの製造方法である。
<1> is a method of manufacturing a conductive roller by applying a coating liquid composed of a resin and a solvent by a dipping method directly on the peripheral surface of the shaft or on the peripheral surface of the elastic layer disposed outside the shaft. In the method
As the solvent, a solvent having a vapor pressure at 20 ° C. higher than that of toluene and a solvent having a vapor pressure at 20 ° C. lower than that of toluene are mixed at a mixing ratio of 7: 3 to 3: 7 (excluding 5: 5). A method for producing a conductive roller, comprising using the mixed solvent.

<2>は、<1>において、20℃における蒸気圧がトルエンより高い前記溶剤として、メチルエチルケトンを用い、20℃における蒸気圧がトルエンより低い前記溶剤として、メチルイソブチルケトンを用いる導電性ローラの製造方法である。 <2> is the production of a conductive roller according to <1>, wherein methyl ethyl ketone is used as the solvent having a vapor pressure at 20 ° C. higher than that of toluene, and methyl isobutyl ketone is used as the solvent having a vapor pressure at 20 ° C. lower than that of toluene. Is the method.

<3>は、<1>もしくは<2>において、前記塗工液を、室温20〜30℃、かつ、湿度50〜70%の条件下、10〜960秒間空気を当てて乾燥させる導電性ローラの製造方法である。 <3> is a conductive roller according to <1> or <2>, wherein the coating liquid is dried by applying air for 10 to 960 seconds under conditions of room temperature of 20 to 30 ° C. and humidity of 50 to 70%. It is a manufacturing method.

<1>によれば、溶剤として、20℃における蒸気圧がトルエンより高い溶剤と、20℃における蒸気圧がトルエンより低い溶剤とを混合させてなる混合溶剤を用いるので、塗工液の乾燥速度をトルエンと同等のものにすることができ、その結果、塗装ムラ防止と、塗膜のダレの抑制とを両立させることができ、トルエンを使わなくとも、良好に樹脂層を形成することのできる導電性ローラの製造方法を提供することができる。また、20℃における蒸気圧がトルエンより高い溶剤と、20℃における蒸気圧がトルエンより低い溶剤との混合比を7:3〜3:7(但し、5:5を除く)の範囲としたので、塗工液の乾燥速度を一層好ましいものに最適化することができ、塗装ムラをさらに効果的に防止するとともに、塗膜のダレも有効に抑制することができる。 <1> According to <1>, since a mixed solvent obtained by mixing a solvent having a vapor pressure at 20 ° C. higher than that of toluene and a solvent having a vapor pressure at 20 ° C. lower than that of toluene is used, the drying speed of the coating liquid Can be made equivalent to toluene, and as a result, it is possible to achieve both prevention of coating unevenness and suppression of sagging of the coating film, and a resin layer can be satisfactorily formed without using toluene. A method for manufacturing a conductive roller can be provided. Moreover, the mixing ratio of the solvent whose vapor pressure at 20 ° C is higher than that of toluene and the solvent whose vapor pressure at 20 ° C is lower than that of toluene is set in the range of 7: 3 to 3: 7 (excluding 5: 5). In addition, the drying speed of the coating liquid can be optimized to a more preferable one, and coating unevenness can be more effectively prevented and the sagging of the coating film can be effectively suppressed.

<2>によれば、20℃における蒸気圧がトルエンより高い前記溶剤として、MEKを用い、20℃における蒸気圧がトルエンより低い前記溶剤として、MIBKを用いるので、コスト的にもトルエンと同等の溶剤を得ることができる。   According to <2>, MEK is used as the solvent having a vapor pressure at 20 ° C. higher than that of toluene, and MIBK is used as the solvent having a vapor pressure at 20 ° C. lower than that of toluene. A solvent can be obtained.

本発明の実施形態について、図に基づいて説明する。図1は、本発明に係る導電性ローラを示す断面図であり、導電性ローラ10はシャフト1の周囲に樹脂層3を配置して構成されるが、シャフト1と樹脂層3との間に弾性層2を含む複数の層を配置することもでき、図示の場合においける導電性ローラ10は、シャフト1の外側に1層の弾性層2と1層の樹脂層3とが配置されている。   Embodiments of the present invention will be described with reference to the drawings. FIG. 1 is a cross-sectional view showing a conductive roller according to the present invention. The conductive roller 10 is configured by disposing a resin layer 3 around the shaft 1, and between the shaft 1 and the resin layer 3. A plurality of layers including the elastic layer 2 can be arranged. In the illustrated case, the conductive roller 10 has one elastic layer 2 and one resin layer 3 arranged outside the shaft 1. Yes.

そして、樹脂層3を形成するには、図2に概念図で示すように、形成途中の導電性ローラを回転させながら、塗工液を、その弾性層2の外周面にスプレーして樹脂層を形成するスプレー法や、アプリケーションロールを弾性層に接触させて、タンクからくみ上げられた塗工液を弾性層の外周面に塗布するローラコータ法や、図3に概念図で示すように、タンク11に収容された塗工液12に、形成途中の導電性ローラを浸漬させて、塗工液を弾性層2の外側に塗布するディップ法によって塗膜を形成し、そのあと、この塗膜を乾燥させるのが一般的であり、本発明は、ディップ法によって塗膜を形成するに際し、塗工液の溶剤として、トルエンに代えて、20℃における蒸気圧がトルエンより高い溶剤と、20℃における蒸気圧がトルエンより低い溶剤との混合物を用いることを特徴としており、このことによって、有害であるトルエンを使うことなく、塗布ムラと塗膜のダレを発生させない点においてトルエンと同等の性能を具えさせることができる。 And in order to form the resin layer 3, as shown in the conceptual diagram in FIG. 2, while rotating the conductive roller in the middle of formation, the coating liquid is sprayed on the outer peripheral surface of the elastic layer 2 to form the resin layer. A spray method for forming the coating layer, a roller coater method in which an application roll is brought into contact with the elastic layer and a coating liquid drawn from the tank is applied to the outer peripheral surface of the elastic layer, or as shown in a conceptual diagram in FIG. A conductive roller in the middle of formation is immersed in the coating liquid 12 contained in the coating liquid 12 to form a coating film by a dip method in which the coating liquid is applied to the outside of the elastic layer 2, and then the coating film is dried. In the present invention, when forming a coating film by the dipping method , instead of toluene, a solvent having a vapor pressure higher than that of toluene and a vapor at 20 ° C. Pressure is lower than toluene It is characterized by the use of a mixture with a solvent, and this makes it possible to provide performance equivalent to that of toluene in that no harmful toluene is used and coating unevenness and sagging of the coating film are not generated.

すなわち、塗工液の乾燥速度は、溶剤の常温における蒸気圧に大きく依存するが、この蒸気圧が高く乾燥速度の速すぎる溶剤を用いた場合には、塗膜がレベリングを完了する前に固化してしまい塗布ムラを生じやすく、一方、蒸気圧が低く乾燥速度が遅すぎる溶剤を用いた場合には、レベリングは十分行われるけれども固化する前に液が垂れてしまい、この場合も望ましい塗膜を形成することができなくなってしまう。したがって、混合溶剤として重要なことは常温における混合溶剤の蒸気圧がトルエンに極めて近いことであり、このような溶剤の組み合わせして、表1におけるA群(20℃における蒸気圧がトルエンより高い溶剤)より選択した溶剤の1種類以上と、表1におけるB群より選択した溶剤の1種類以上とを混合させた混合溶剤を用いる必要があり、特に、A群の中でもMEKを、B群のなかではMIBKを用いた場合には、コストの点において好ましい。   In other words, the drying speed of the coating solution largely depends on the vapor pressure of the solvent at room temperature. However, if a solvent having a high vapor pressure and an excessively high drying speed is used, the coating is solidified before the leveling is completed. However, if a solvent with a low vapor pressure and a drying rate that is too slow is used, leveling will be sufficient, but the liquid will drip before solidification. Can no longer be formed. Therefore, what is important as a mixed solvent is that the vapor pressure of the mixed solvent at room temperature is very close to that of toluene. By combining such solvents, the group A in Table 1 (solvent having a higher vapor pressure at 20 ° C. than toluene). ) It is necessary to use a mixed solvent obtained by mixing one or more types of solvents selected from the above and one or more types of solvents selected from Group B in Table 1. Then, when MIBK is used, it is preferable in terms of cost.

Figure 0005291891
Figure 0005291891

また、上記混合溶剤を調合するに際して、それらの混合比を7:3〜3:7の範囲にとどめるのが好ましく、20℃における蒸気圧の高い溶剤の割合がこの範囲より大きくなると速く乾燥しすぎて塗布ムラの点でやや劣る結果を生じやすく、一方、20℃における蒸気圧の低い溶剤の割合がこの範囲より大きくなると乾燥速度が遅くなりすぎて塗膜のダレをやや生じやすくなる。   Further, when preparing the above mixed solvent, it is preferable to keep the mixing ratio in the range of 7: 3 to 3: 7, and when the ratio of the solvent having a high vapor pressure at 20 ° C. is larger than this range, it is dried too quickly. However, when the proportion of the solvent having a low vapor pressure at 20 ° C. is larger than this range, the drying rate becomes too slow, and the coating film tends to be slightly sag.

なお、導電性ローラの特性上、塗工液用の樹脂として、アクリル系樹脂、もしくは、ウレタン系樹脂が広く用いられており、上記混合溶剤は、これらの樹脂を用いた塗工液に対して最適な乾燥速度を付与することができ、本発明に係る混合溶剤は、これらの樹脂と組み合わせて用いるのが好ましい。   In addition, due to the characteristics of the conductive roller, acrylic resins or urethane resins are widely used as the resin for the coating liquid, and the above mixed solvent is used for coating liquids using these resins. An optimal drying rate can be imparted, and the mixed solvent according to the present invention is preferably used in combination with these resins.

塗工液として、樹脂と溶剤の他に、種々の充填剤を添加することもできるが、この場合の充填剤としては、ポリエチレン、ポリウレタン等のポリマーや、シリカ等の無機系充填剤を用いるのが好ましい。また、溶剤濃度としては、30〜90wt%の範囲とするのが好ましい。   As the coating liquid, various fillers can be added in addition to the resin and the solvent. In this case, as the filler, polymers such as polyethylene and polyurethane, and inorganic fillers such as silica are used. Is preferred. The solvent concentration is preferably in the range of 30 to 90 wt%.

塗膜を乾燥させる際の条件として、空気を当てて乾燥させる風乾によるのが好ましく、その際、局排設備下で室温20〜30℃、かつ、湿度50〜70%に保持するようにし、風乾時間としては10〜960秒とするのが好ましい。   As the conditions for drying the coating film, it is preferable to use air drying by applying air to the coating. At that time, keep it at room temperature 20-30 ° C and humidity 50-70% under local exhaust equipment, and air dry The time is preferably 10 to 960 seconds.

樹脂と導電性カーボンと、混合溶剤とよりなり塗工液を、シャフトの周囲に形成されたポリウレタン製弾性層の周囲にディップ方式にて塗布したあと、オーブンにて加熱して乾燥させることにより帯電ローラを作成し、この帯電ローラをこれに対応するレーザプリンタカートリッジに組み込んで、実際の黒ベタ画像およびハーフトーン画像を印刷した。
塗工液の樹脂材料としてアクリル樹脂を用い、また、混合溶剤としては、MEKとMIBKとを混合したものを用い、各サンプルごとに混合比を変化させた。塗工液における樹脂成分100質量部に対して、溶剤は50〜70質量部、導電性カーボンは3〜10質量部を配合した。
A coating solution consisting of a resin, conductive carbon, and mixed solvent is applied by dipping on the polyurethane elastic layer formed around the shaft, and then heated by an oven to dry it. A roller was prepared, and the charging roller was incorporated into a corresponding laser printer cartridge to print an actual black solid image and a halftone image.
An acrylic resin was used as a resin material for the coating liquid, and a mixture of MEK and MIBK was used as a mixed solvent, and the mixing ratio was changed for each sample. 50 to 70 parts by mass of the solvent and 3 to 10 parts by mass of the conductive carbon were blended with 100 parts by mass of the resin component in the coating liquid.

評価については、塗布状態について塗布ムラおよび塗膜のダレの状態を目視で判定する塗膜評価を行うとともに、黒ベタ画像およびハーフトーン画像における画像品質を目視で判定する画像評価を行った。各サンプルにおける、MEKとMIBKとの混合比および各種評価結果を表2に示す。表2の判定結果において、「○」は合格品を、「×」は不合格品を、そして、「△」は合格品だが「○」より明らかに劣る品質のものであるとして、3段階での評価を行った。   As for the evaluation, the coating state evaluation for visually determining the coating unevenness and the sagging state of the coating film with respect to the coating state was performed, and the image evaluation for visually determining the image quality in the solid black image and the halftone image was performed. Table 2 shows the mixing ratio of MEK and MIBK and various evaluation results in each sample. In the judgment results of Table 2, “○” is a pass product, “×” is a reject product, and “△” is a pass product but is clearly inferior to “○” in three stages. Was evaluated.

Figure 0005291891
Figure 0005291891

表2から明らかなように、20℃における蒸気圧がトルエンより高い溶剤もしくは低い溶剤単独では、合格品を得ることができず、20℃における蒸気圧がトルエンより高い溶剤と低い溶剤とを混合したものを使う場合、それらの混合比が7:3〜3:7の間であれば、全く問題のない樹脂層を形成することができる。 As is clear from Table 2, a solvent having a higher or lower vapor pressure at 20 ° C. than a toluene alone cannot obtain an acceptable product, and a solvent having a higher vapor pressure at 20 ° C. than a toluene is mixed with a lower solvent. When using those, if the mixing ratio thereof is between 7: 3 and 3: 7, a resin layer having no problem can be formed.

本発明に係る導電性ローラを示す断面図である。It is sectional drawing which shows the electroconductive roller which concerns on this invention. 弾性層の外側に塗布するスプレー法を示す概念図である。It is a conceptual diagram which shows the spray method apply | coated to the outer side of an elastic layer. 塗工液を弾性層を浸漬して塗布するディップ法を示す概念図である。It is a conceptual diagram which shows the dip method which apply | coats a coating liquid by immersing an elastic layer.

符号の説明Explanation of symbols

1 シャフト
2 弾性層
3 樹脂層
5 スプレーノズル
10 導電性ローラ
11 塗工液タンク
12 塗工液
DESCRIPTION OF SYMBOLS 1 Shaft 2 Elastic layer 3 Resin layer 5 Spray nozzle 10 Conductive roller 11 Coating liquid tank 12 Coating liquid

Claims (3)

シャフトの周面に直接、もしくはシャフトの外側に配置された弾性層の周面に、樹脂と溶剤とよりなる塗工液をディップ方式にて塗布して導電性ローラを製造する方法において、
前記溶剤として、20℃における蒸気圧がトルエンより高い溶剤と、20℃における蒸気圧がトルエンより低い溶剤とを、混合比7:3〜3:7(但し、5:5を除く)で混合させてなる混合溶剤を用いることを特徴とする導電性ローラの製造方法。
In a method of manufacturing a conductive roller by applying a coating liquid consisting of a resin and a solvent by a dip method directly on the peripheral surface of the shaft or on the peripheral surface of the elastic layer disposed outside the shaft,
As the solvent, a solvent having a vapor pressure at 20 ° C. higher than that of toluene and a solvent having a vapor pressure at 20 ° C. lower than that of toluene are mixed at a mixing ratio of 7: 3 to 3: 7 (excluding 5: 5). A method for producing a conductive roller, comprising using a mixed solvent.
20℃における蒸気圧がトルエンより高い前記溶剤として、メチルエチルケトンを用い、20℃における蒸気圧がトルエンより低い前記溶剤として、メチルイソブチルケトンを用いる請求項1に記載の導電性ローラの製造方法。   The method for producing a conductive roller according to claim 1, wherein methyl ethyl ketone is used as the solvent having a vapor pressure at 20 ° C higher than that of toluene, and methyl isobutyl ketone is used as the solvent having a vapor pressure at 20 ° C lower than that of toluene. 前記塗工液を、室温20〜30℃、かつ、湿度50〜70%の条件下、10〜960秒間空気を当てて乾燥させる請求項1もしくは2に記載の導電性ローラの製造方法。   The method for producing a conductive roller according to claim 1 or 2, wherein the coating liquid is dried by applying air for 10 to 960 seconds under conditions of room temperature of 20 to 30 ° C and humidity of 50 to 70%.
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JP3271218B2 (en) * 1993-11-09 2002-04-02 東海ゴム工業株式会社 Conductive roll
JP4061777B2 (en) * 1999-06-04 2008-03-19 株式会社カネカ Manufacturing method of rubber roller having coating layer
JP2001305850A (en) * 2000-04-25 2001-11-02 Ricoh Co Ltd Toner carrier and method of image developing using the same
JP4294240B2 (en) * 2001-09-21 2009-07-08 株式会社リコー Spray coating method, method for producing parts for electrophotographic apparatus, and electrophotographic apparatus using the same
JP2004301872A (en) * 2003-03-28 2004-10-28 Bando Chem Ind Ltd Developing roller for electrophotographic apparatus
JP4530660B2 (en) * 2003-12-26 2010-08-25 株式会社ブリヂストン Coating composition for conductive roller and conductive roller
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JP2007057612A (en) * 2005-08-22 2007-03-08 Fujifilm Corp Nonglare antireflective film and manufacturing method therefor, polarizer using the same nonglare antireflective film, liquid crystal display device using the same polarizer, and liquid crystal display device

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