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    • 5. 发明申请
    • Sheet transfer apparatus and image forming apparatus
    • 片材转印装置和成像装置
    • US20090185846A1
    • 2009-07-23
    • US12320203
    • 2009-01-21
    • Naoyuki Okamoto
    • Naoyuki Okamoto
    • G03G15/00B65H5/00
    • G03G15/6529B65H5/26B65H5/38B65H2301/4454B65H2402/5441B65H2801/06
    • A disclosed apparatus includes a first unit upstream of a first path to transfer a sheet; a second unit upstream of a second path to transfer another sheet from opposite side of the first path; a third unit on a combined path of the first and second paths to transfer the sheets downstream; and a first member provided where the first and second paths meet to guide the sheets to the combined path. The third unit is a nip unit including elements forming a nip. One of the elements on the second path side is a belt unit. The first member has a downstream edge extending in a sheet width direction. The downstream edge has a first part facing the nip part and a second part not facing the nip part. The second part is located downstream of the first part in the sheet transfer direction.
    • 所公开的装置包括:第一单元,用于传送片材的第一路径上游; 在第二路径上游的第二单元,以从第一路径的相对侧转移另一片; 在第一和第二路径的组合路径上的第三单元,用于将纸张向下传送; 以及设置在第一和第二路径相交以将片材引导到组合路径的第一构件。 第三单元是包括形成压区的元件的压区单元。 第二路径侧的元件之一是带单元。 第一构件具有沿片材宽度方向延伸的下游边缘。 下游边缘具有面向夹持部分的第一部分和不面向夹持部分的第二部分。 第二部分位于纸张传送方向上的第一部分的下游。
    • 8. 发明授权
    • Method of cutting a ceramic base plate
    • 切割陶瓷基板的方法
    • US06176762B1
    • 2001-01-23
    • US09122715
    • 1998-07-27
    • Kazutoyo ShimizuNaoyuki OkamotoMakoto Fukuda
    • Kazutoyo ShimizuNaoyuki OkamotoMakoto Fukuda
    • B24B100
    • B24B1/00B24B27/065B28D5/022
    • A method for cutting a ceramic base plate with which the process efficiency is improved, a stable cutting resistance can be maintained during the cutting process, and excellent process precision can be achieved, a wherein supporting plate which is used for the cutting of the ceramic base plate has a structure of a sealed surface layer which has been impregnated with glass components into both surfaces of the sintered porous alumina body. The supporting plate is fixed on a stage of a cutting machine along a forward direction of the rotary cutting blade through a vacuum-absorption and the ceramic base plate as a work-piece is wax-bonded to the supporting plate. While rotating the rotary cutting blade, first of all, the supporting plate is cut so that the blade is dressed/sharpened with the sintered porous alumina body. In the next step, the ceramic base plate is cut and the cutting whetstone blade cuts the supporting plate to a certain depth, so that the rotary cutting blade will contact to the ceramic base plate, then sintered porous alumina body of the supporting plate. As a result, the dressing/sharpening the blade can always be performed, and at the same time the ceramic base plate can be cut while keeping the cutting resistance at low level.
    • 一种用于切割加工效率提高的陶瓷基板的方法,在切割过程中可以保持稳定的切削阻力,并且可以实现优异的加工精度,其中用于切割陶瓷基底的支撑板 板具有已经在烧结多孔氧化铝体的两个表面上浸渍有玻璃成分的密封表面层的结构。 支撑板通过真空吸收而沿着旋转切割刀片的向前方向固定在切割机的台上,并且作为工件的陶瓷基板蜡粘合到支撑板上。 在旋转切割刀片的同时,首先切割支撑板,使得刀片用烧结的多孔氧化铝体进行修整/磨光。 在下一步中,切割陶瓷基板,切割磨石刀片将支撑板切割到一定深度,使旋转切割刀片与陶瓷基板接触,然后与支撑板的多孔氧化铝体烧结。 结果,可以总是执行刮刀/磨刀,同时可以在保持切削阻力的同时切割陶瓷基板。