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    • 1. 发明授权
    • Plated steel sheet
    • 镀钢板
    • US6087019A
    • 2000-07-11
    • US194389
    • 1998-11-30
    • Makoto IsobeChiaki KatoKazuhiro SetoMasaaki Kohno
    • Makoto IsobeChiaki KatoKazuhiro SetoMasaaki Kohno
    • C21D8/02C23C2/02C23C28/00B32B9/00
    • C23C2/02C21D8/0278C23C28/3225C23C28/345
    • This invention is a plated steel sheet formed by laminating an iron oxide layer and a plated layer on a steel matrix in this order, in which excellent plating adhesion property can uniformly be given to a full surface of the steel sheet by disposing a connection portion made from a metallic iron or an iron alloy connecting the steel matrix to the plated layer in the iron oxide layer. Particularly, it can provide means for easily forming a plated layer having an excellent adhesion property through hot dipping can be given to steel sheets being difficult to conduct the hot dipping such as high-strength steel sheet, stainless steel sheet and the like.
    • PCT No.PCT / JP97 / 01850 Sec。 371日期:1998年11月30日 102(e)1998年11月30日日期PCT提交1997年5月30日PCT公布。 公开号WO97 / 45569 日期1997年12月4日本发明是通过在钢基体上依次层叠铁氧化物层和镀层而形成的电镀钢板,其中可以通过以下方式均匀地赋予钢板的整个表面优异的电镀附着性 将由钢基体连接到金属铁或铁合金的连接部分设置在氧化铁层中的镀层上。 特别地,可以提供通过热浸渍容易地形成具有优异粘合性的镀层的方法,这样可以提供难以进行热浸镀的钢板,例如高强度钢板,不锈钢板等。
    • 2. 发明授权
    • Process for producing plated steel sheet
    • 电镀钢板的制造方法
    • US6068887A
    • 2000-05-30
    • US978641
    • 1997-11-26
    • Makoto IsobeChiaki KatoKazuhiro Seto
    • Makoto IsobeChiaki KatoKazuhiro Seto
    • C23C2/02B05D3/00B05D1/18B23D71/04
    • C23C2/02
    • A process for producing plated steel sheet comprises the steps of heating a steel slab containing not more than 0.5 wt % C to the temperature range not lower than the transformation point Ac.sub.3, and jetting high-pressure water to the surface of a steel sheet at a discharge pressure of 300 kgf/cm.sup.2 or more at least once during hot rough rolling and hot finish rolling, thereby removing a layer of iron oxide on the surface of the steel sheet. The steel sheet is thereafter coiled while keeping a finishing delivery temperature of the steel sheet in the range of 500-800.degree. C., reducing the layer of iron oxide on the surface of the steel sheet at 50-98 % in an annealing furnace with the temperature of the steel sheet held in the range of 750-900.degree. C., and plating the steel sheet. With the process of the invention, plated steel plates having superior workability and plating adhesion can be produced at low cost, even when cold rolling and pickling are omitted from the production steps.
    • 制造电镀钢板的方法包括以下步骤:将不大于0.5wt%C的钢坯加热至不低于相变点Ac3的温度范围,并将高压水喷射到钢板表面上 排出压力为300kgf / cm 2以上,在热粗轧和热精轧中至少一次,从而在钢板表面除去氧化铁层。 然后,钢板在将钢板的精轧输送温度保持在500-800℃的范围内进行盘绕,在退火炉中将钢板表面的氧化铁层以50-98%的比例还原, 钢板的温度保持在750-900℃的范围内,并且对钢板进行电镀。 通过本发明的方法,即使在制造步骤中省略冷轧和酸洗时,也可以低成本地制造具有优异的加工性和电镀附着力的电镀钢板。
    • 5. 发明授权
    • Component-based application constructing method
    • 基于组件的应用程序构建方法
    • US07703072B2
    • 2010-04-20
    • US11070499
    • 2005-03-03
    • Tomohiro NakamuraHiroaki FujiiToshihiro EguchiChiaki KatoKazuya HisakiMasaru Takeuchi
    • Tomohiro NakamuraHiroaki FujiiToshihiro EguchiChiaki KatoKazuya HisakiMasaru Takeuchi
    • G06F9/44G06F17/00G06N5/02
    • G06F11/008G06F11/0727G06F11/0793
    • Reliability is evaluated in constructing a component based-on application and an application for realizing reliability required can be constructed efficiently. A run-time history such as an occurrence frequency of errors, a recovery time required at error occurrence, and a processing capacity at preventive maintenance is added per software component to a run-time history list having been recoded per execution environment such as an application ID, combined component IDs, and executed hardware ID. From these pieces of information, an interval of performing preventive maintenance recommended per software component during system construction is calculated. By comparing reliability per software component and reliability required for the system, advisability is determined and conformance is evaluated. An execution schedule for preventive maintenance and a processing capability are calculated about the entire component-based application created by combining the software components. By calculating the reliability and the processing capability in the entire system to be compared to those required for the entire system, advisability is determined and conformance is evaluated.
    • 在构建基于组件的应用程序中评估可靠性,并且可以有效地构建用于实现所需可靠性的应用。 每个软件组件将每个执行环境例如应用程序重新编码的运行时历史列表添加诸如错误发生频率,错误发生时所需的恢复时间和预防性维护处理能力的运行时历史 ID,组合组件ID和执行的硬件ID。 从这些信息中,计算在系统构造期间对每个软件组件推荐的间隔执行预防性维护。 通过比较每个软件组件的可靠性和系统所需的可靠性,确定可靠性并评估一致性。 计算关于通过组合软件组件创建的整个基于组件的应用程序的预防性维护执行计划和处理能力。 通过计算整个系统的可靠性和处理能力与整个系统所需的可靠性和处理能力进行比较,确定可靠性并评估一致性。
    • 8. 发明授权
    • Mixed irradiation evaluation support system
    • 混合照射评估支持系统
    • US07186991B2
    • 2007-03-06
    • US10061341
    • 2002-02-04
    • Chiaki KatoJun′ichi Taguchi
    • Chiaki KatoJun′ichi Taguchi
    • A61N5/10
    • A61N5/103A61N2005/1087
    • A mixed irradiation evaluation support system for supporting judgment and determination of allocation of contribution in mixed irradiation using proton beams and X-rays. According to a composition ratio designated by a composition ratio scroll bar 107, a dose distribution by a proton beam and a dose distribution by an X-ray are composed, and the result of the composition is displayed three-dimensionally in a three-dimensional display part 104. Further, when a cross section is designated in the three-dimensional display part 104, an isodose map 115 in the designated cross section is displayed in a cross section window 114.
    • 一种用于支持使用质子束和X射线的混合照射中贡献分配的判断和确定的混合照射评估支持系统。 根据由组成比例滚动条107指定的组成比,组成通过质子束的剂量分布和通过X射线的剂量分布,并且组合的结果在三维显示中被三维地显示 第104部分。 此外,当在三维显示部分104中指定横截面时,在横截面窗口114中显示指定截面中的等剂量图115。