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    • 3. 发明授权
    • Method of manufacturing a mold for press forming employing an evaporative pattern
    • 使用蒸发图案制造压制成形用模具的方法
    • US08967229B2
    • 2015-03-03
    • US13878247
    • 2011-01-28
    • Susumu OkabeMasanori SatoMasashi TakahashiTsuyoshi Nanba
    • Susumu OkabeMasanori SatoMasashi TakahashiTsuyoshi Nanba
    • B22C9/02B22C15/00B22C9/04B22C7/02B22C9/18B22D25/02
    • B22C9/046B22C7/026B22C9/18B22D25/02Y10T29/49826
    • An evaporative pattern casting method is taught which does not reduce accuracy of an evaporative pattern.The evaporative pattern casting method comprises a part manufacturing process (S2), an assembly process (S4), a sand mold manufacturing process (S6), a molten metal pouring process (S8) and a sand removal process (S12). In the part manufacturing process, the evaporative pattern is manufactured as a plurality of separate parts. In the assembly process, the parts are assembled on a work plane. In the sand mold manufacturing process, the evaporative pattern is covered with sand to form a sand mold without moving the assembled evaporative pattern from the work plane. In the molten metal pouring process, molten metal is poured into the sand mold. In the sand removal process, the sand is removed after the molten metal has solidified. According to this casting method, the sand mold is formed without moving the assembled evaporative pattern from the work plane, and consequently the accuracy of the dimensions at the time of assembly can be maintained.
    • 教导了不降低蒸发图案的精度的蒸发图案铸造方法。 蒸发图案铸造方法包括零件制造工艺(S2),组装工艺(S4),砂模制造工艺(S6),熔融金属浇注工艺(S8)和除砂工艺(S12)。 在部件制造过程中,蒸发图案被制造为多个分开的部件。 在组装过程中,零件被组装在工作平面上。 在砂模制造过程中,蒸发图案用砂覆盖以形成砂模,而不将组装的蒸发图案从工作平面移动。 在熔融金属浇注过程中,将熔融金属倒入砂模中。 在除砂过程中,在熔融金属固化后除去砂。 根据该铸造方法,形成砂模,而不将组装的蒸发图案从工作平面移动,因此可以保持组装时的尺寸精度。
    • 4. 发明申请
    • EVAPORATIVE PATTERN FOR MANUFACTURING A MOLD FOR PRESS FORMING
    • 用于制造用于压制成型的模具的蒸发图案
    • US20130292080A1
    • 2013-11-07
    • US13878247
    • 2011-01-28
    • Susumu OkabeMasanori SatoMasashi TakahashiTsuyoshi Nanba
    • Susumu OkabeMasanori SatoMasashi TakahashiTsuyoshi Nanba
    • B22C9/04
    • B22C9/046B22C7/026B22C9/18B22D25/02Y10T29/49826
    • An evaporative pattern casting method is taught which does not reduce accuracy of an evaporative pattern.The evaporative pattern casting method comprises a part manufacturing process (S2), an assembly process (S4), a sand mold manufacturing process (S6), a molten metal pouring process (S8) and a sand removal process (S12). In the part manufacturing process, the evaporative pattern is manufactured as a plurality of separate parts. In the assembly process, the parts are assembled on a work plane. In the sand mold manufacturing process, the evaporative pattern is covered with sand to form a sand mold without moving the assembled evaporative pattern from the work plane. In the molten metal pouring process, molten metal is poured into the sand mold. In the sand removal process, the sand is removed after the molten metal has solidified. According to this casting method, the sand mold is formed without moving the assembled evaporative pattern from the work plane, and consequently the accuracy of the dimensions at the time of assembly can be maintained.
    • 教导了不降低蒸发图案的精度的蒸发图案铸造方法。 蒸发图案铸造方法包括零件制造工艺(S2),组装工艺(S4),砂模制造工艺(S6),熔融金属浇注工艺(S8)和除砂工艺(S12)。 在部件制造过程中,蒸发图案被制造为多个分开的部件。 在组装过程中,零件被组装在工作平面上。 在砂模制造过程中,蒸发图案用砂覆盖以形成砂模,而不将组装的蒸发图案从工作平面移动。 在熔融金属浇注过程中,将熔融金属倒入砂模中。 在除砂过程中,在熔融金属固化后除去砂。 根据该铸造方法,形成砂模,而不将组装的蒸发图案从工作平面移动,因此可以保持组装时的尺寸精度。
    • 10. 发明授权
    • Image forming apparatus
    • 图像形成装置
    • US08237757B2
    • 2012-08-07
    • US12824852
    • 2010-06-28
    • Shinji AokiMasashi TakahashiMasashi HirokiTakeshi Watanabe
    • Shinji AokiMasashi TakahashiMasashi HirokiTakeshi Watanabe
    • B41J2/395G01D15/06G03G15/01
    • G03G21/0064G03G15/0115G03G15/0173G03G15/0189G03G15/0194G03G15/0415G03G2215/0119G03G2215/0164G03G2215/0602
    • There is provided a photoreceptor cleanerless image forming apparatus capable of decreasing color mixture or an exposure error due to reverse transfer toner an untransferred toner. An image forming apparatus 100 according to the present invention comprises four image forming units 100a, 100b, 100c, and 100d configured to be photoreceptor cleanerless in a 4-drum tandem manner. Each image forming unit includes a photoreceptor 103a, 103b, 103c, or 103d, a charger 105a, 105b, 105c, or 105d, an exposure apparatus 106a, 106b, 106c, or 106d, and a developing apparatus 109a, 109b, 109c, or 109d. When exposure intensities Iy, Ic, Im, and Ik are assumed for exposure sources of the exposure apparatuses in the image forming units which form yellow, magenta, cyan, and black images, respectively, the exposure intensities are configured to satisfy conditions of Ik≧Ic≧Im≧Iy and Ik>Iy. This decreases an exposure error (image hysteresis) in an image formed on paper.
    • 提供了一种能够降低颜色混合的感光体无清洁器图像形成装置或由于反转印墨粉未转印的调色剂引起的曝光误差。 根据本发明的图像形成装置100包括四个成像单元100a,100b,100c和100d,其被配置为以4鼓串联的方式成为无感光体清洁器。 每个图像形成单元包括感光体103a,103b,103c或103d,充电器105a,105b,105c或105d,曝光装置106a,106b,106c或106d以及显影装置109a,109b,109c或 109d。 对于分别形成黄色,品红色,青色和黑色图像的图像形成单元中的曝光装置的曝光源,假设曝光强度Iy,Ic,Im和Ik,曝光强度被配置成满足条件Ik≥ Ic≧Im≧Iy和Ik> Iy。 这降低了在纸上形成的图像中的曝光误差(图像迟滞)。