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    • 2. 发明申请
    • IMAGE FORMING APPARATUS
    • 图像形成装置
    • US20080232859A1
    • 2008-09-25
    • US12050219
    • 2008-03-18
    • Shoichi SakataTakahisa NakaueToyotsune InoueAkihiro WatanabeMasashi FujishimaYukihiro Mori
    • Shoichi SakataTakahisa NakaueToyotsune InoueAkihiro WatanabeMasashi FujishimaYukihiro Mori
    • G03G15/09
    • G03G15/0928G03G15/0907
    • An image forming apparatus has a photoconductive member on which a latent image is to be formed, a developing roller for developing the latent image on the photoconductive member by a first bias. A magnetic roller forms a magnetic brush thereon with a two-component developer and forms a thin toner layer on the developing roller by a second bias. The developing roller is aluminum with a surface treated for high resistance. The thickness (T) of the toner layer and the duty ratio (D1) of the first alternating-current bias satisfy relationships of the following equations for calculating the duty ratio (D1) using an application period of a voltage in a direction to transfer the toner from the developing roller towards the photoconductive member as a positive period: 7 μm≦T≦13 μm, and 35%≦D1≦70%.
    • 图像形成装置具有要在其上形成潜像的感光体,用于通过第一偏压在感光体上显影潜像的显影辊。 磁性辊在其上用双组分显影剂形成磁刷,并通过第二偏压在显影辊上形成薄的调色剂层。 显影辊是具有高电阻表面处理的铝。 调色剂层的厚度(T)和第一交流偏置的占空比(D 1)满足以下等式的关系,用于使用电压在施加方向上的施加周期来计算占空比(D 1) 将调色剂从显影辊朝着感光体转移到正周期:<?in-line-formula description =“In-line Formulas”end =“lead”?> 7 mum <= T <= 13 mum, ?in-line-formula description =“In-line Formulas”end =“tail”?> <?in-line-formula description =“In-line Formulas”end =“lead”?> 35%<= D 1 < = 70%。<?in-line-formula description =“In-line Formulas”end =“tail”?>
    • 5. 发明申请
    • DEVELOPING UNIT AND IMAGE FORMING APPARATUS
    • 发展单位和图像形成装置
    • US20080226320A1
    • 2008-09-18
    • US12042684
    • 2008-03-05
    • Shoichi SakataTakahisa NakaueToyotsune InoueAkihiro WatanabeMasashi FujishimaYukihiro Mori
    • Shoichi SakataTakahisa NakaueToyotsune InoueAkihiro WatanabeMasashi FujishimaYukihiro Mori
    • G03G15/06
    • G03G15/065
    • A developing unit has a voltage-applicator (80) to apply a developing bias voltage to a developing roller (72). The voltage-applicator (80) applies the developing bias voltage for a first duration to apply an AC voltage having a rectangular waveform, and a second duration to stop applying the AC voltage. The AC voltage has a duty ratio of 50% or more in a direction for causing toner to develop an electrostatic latent image. The number of cycles of the AC voltage in the first duration is two or more, and the AC voltage has a voltage in a direction for pulling the toner back to the developing roller, just before transition to the second duration. The developing unit suppresses occurrence of image unevenness due to a fluctuation in developing gap. Thus, an image forming apparatus equipped with the developing unit forms a high-quality image while suppressing image unevenness.
    • 显影单元具有向显影辊(72)施加显影偏压的电压施加器(80)。 电压施加器(80)施加显影偏压第一持续时间以施加具有矩形波形的交流电压和第二持续时间以停止施加AC电压。 AC电压在使调色剂显影静电潜像的方向上具有50%以上的占空比。 在第一持续时间内的交流电压的周期数为两个或更多个,并且在转换到第二持续时间之前,AC电压具有用于将调色剂拖回显影辊的方向上的电压。 显影单元抑制由于显影间隙的波动引起的图像不均匀的发生。 因此,配备有显影单元的图像形成装置在抑制图像不均匀的同时形成高质量图像。
    • 6. 发明授权
    • Developing unit and image forming apparatus
    • 显影单元和成像设备
    • US08014690B2
    • 2011-09-06
    • US12042684
    • 2008-03-05
    • Shoichi SakataTakahisa NakaueToyotsune InoueAkihiro WatanabeMasashi FujishimaYukihiro Mori
    • Shoichi SakataTakahisa NakaueToyotsune InoueAkihiro WatanabeMasashi FujishimaYukihiro Mori
    • G03G15/06
    • G03G15/065
    • A developing unit has a voltage-applicator (80) to apply a developing bias voltage to a developing roller (72). The voltage-applicator (80) applies the developing bias voltage for a first duration to apply an AC voltage having a rectangular waveform, and a second duration to stop applying the AC voltage. The AC voltage has a duty ratio of 50% or more in a direction for causing toner to develop an electrostatic latent image. The number of cycles of the AC voltage in the first duration is two or more, and the AC voltage has a voltage in a direction for pulling the toner back to the developing roller, just before transition to the second duration. The developing unit suppresses occurrence of image unevenness due to a fluctuation in developing gap. Thus, an image forming apparatus equipped with the developing unit forms a high-quality image while suppressing image unevenness.
    • 显影单元具有向显影辊(72)施加显影偏压的电压施加器(80)。 电压施加器(80)施加显影偏压第一持续时间以施加具有矩形波形的交流电压和第二持续时间以停止施加AC电压。 AC电压在使调色剂显影静电潜像的方向上具有50%以上的占空比。 在第一持续时间内的交流电压的周期数为两个或更多个,并且在转换到第二持续时间之前,AC电压具有用于将调色剂拖回显影辊的方向上的电压。 显影单元抑制由于显影间隙的波动引起的图像不均匀的发生。 因此,配备有显影单元的图像形成装置在抑制图像不均匀的同时形成高质量图像。
    • 10. 发明申请
    • IMAGE FORMING APPARATUS
    • 图像形成装置
    • US20090003891A1
    • 2009-01-01
    • US12142194
    • 2008-06-19
    • Masashi FujishimaShoichi SakataKiyotaka KobayashiYukihiro Mori
    • Masashi FujishimaShoichi SakataKiyotaka KobayashiYukihiro Mori
    • G03G15/08
    • G03G15/065G03G15/0812G03G2215/0634
    • An image forming apparatus uses a two-component developer containing a toner and a carrier. The apparatus has a latent image bearer for bearing an electrostatic latent image. A toner bearer bears the toner to be conveyed to a development region to develop the electrostatic latent image. A developer bearer bears the two-component developer and supplies the toner to the toner bearer. A regulator sets the thickness of a toner layer carried on the toner bearer to 6 μm to 15 μm and sets a difference between a half width of a first toner charge number distribution as a number distribution of the charge amount of the toner carried on the toner bearer and that of a second toner charge number distribution as a number distribution of the charge amount of the toner in the two-component developer carried on the developer bearer to 0.8 (10−10 C/m) or smaller.
    • 图像形成装置使用含有调色剂和载体的双组分显影剂。 该装置具有用于承载静电潜像的潜像载体。 调色剂承载件将要传送到显影区域的调色剂以显影静电潜像。 显影承载者承载双组分显影剂并将调色剂供应给调色剂承载体。 A调节器将承载在调色剂载体上的调色剂层的厚度设置为6μm至15μm,并且将第一调色剂电荷数分布的半值宽度之间的差作为调色剂上承载的调色剂的电荷量的数量分布 承载体和第二调色剂电荷数分布的载体数量分布,作为承载在显影剂载体上的双组分显影剂中的调色剂的电荷量的数量分布为0.8(10-10℃/ m)以下。