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    • 2. 发明专利
    • Cold-rolled steel plate manufacturing method
    • 冷轧钢板制造方法
    • JP2007111706A
    • 2007-05-10
    • JP2005303057
    • 2005-10-18
    • Nippon Steel Corp新日本製鐵株式会社
    • SHIRAGAMI MUTSUOWAJIMA KIYOSHIIKEDA MOTOKI
    • B21B37/28B21B37/00B21B37/58B21B38/02
    • PROBLEM TO BE SOLVED: To provide a method for consistently passing a rolled plate in a longitudinal continuous annealing equipment without causing any heat buckle or walk even when the shape control function of a rolling mill is not sufficient, or even when an abrupt shape change is present, and the shape correction is not in time. SOLUTION: In a shape control method of a steel plate in a cold rolling mill for feeding a plate in a longitudinal continuous annealing equipment, the shape distribution of a rolled material 2 in the plate width direction is detected by a shape detector 10, the weighting function is multiplied by the output value of the detected shape distribution, and the weighted bending moment is calculated from the value. By controlling the difference between the right and left gaps of a rolling roll so that the calculated weighted bending moment becomes constant, the shape of the steel plate is controlled, and the walk in passing the steel plate in the longitudinal continuous annealing equipment is reduced thereby. COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:为了提供一种在纵向连续退火设备中一致地使轧制板通过的方法,即使在轧机的形状控制功能不足的情况下,甚至当突然的 存在形状变化,形状校正不及时。 解决方案:在用于在纵向连续退火设备中供给板的冷轧机中的钢板的形状控制方法中,轧制材料2在板宽度方向上的形状分布由形状检测器10检测 ,加权函数乘以检测到的形状分布的输出值,根据该值计算加权弯矩。 通过控制轧辊的左右间隙之间的差异使得计算的加权弯矩变得恒定,控制钢板的形状,并且通过钢板在纵向连续退火设备中的行走减少, 。 版权所有(C)2007,JPO&INPIT
    • 3. 发明专利
    • System for supporting design of steel plate trim margin, method for supporting design of steel plate trim margin, computer program, and computer-readable storage medium
    • 支撑钢板设计的系统,支撑钢板设计,计算机程序和计算机可读存储介质的方法
    • JP2008276620A
    • 2008-11-13
    • JP2007121136
    • 2007-05-01
    • Nippon Steel Corp新日本製鐵株式会社
    • SUGIYAMA KENJIHARADA TAKUYAIKEDA MOTOKIKOBAYASHI KOUEI
    • G06F17/50G05B19/418
    • Y02P90/14Y02P90/20Y02P90/26Y02P90/265
    • PROBLEM TO BE SOLVED: To provide a technique for supporting rapid design of an optimum trim margin for one or more evaluation index values of a steel plate produced through treatments in a plurality of production processes in a steel plate manufacturing factory. SOLUTION: A trim margin model formation and holding means 103 forms a trim margin model showing a relation between a trim margin design value and occurrence of trim failure based on a trimming process capability from performance plate width data collected from each production process. A simulation means 103 and an optimum trim margin determination means 105 derive each evaluation index value from the model, a production schedule of product and the trim margin design value, and assign a request to the production as an evaluation function to determine a trim margin which can optimize the value of the evaluation function from the production schedule of product and the trim margin model. According to this, the optimum trim margin for one or more evaluation index values of the steel plate produced through treatments in a plurality of production processes in the steel manufacturing factory can be rapidly determined. COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供一种用于支持通过钢板制造工厂中的多个生产工艺中的处理产生的钢板的一个或多个评估指标值来快速设计最佳修整余量的技术。 解决方案:修剪边缘模型形成和保持装置103基于从每个生产过程收集的性能板宽度数据修剪处理能力,形成修剪边缘模型,显示修剪边缘设计值和修剪失效发生之间的关系。 模拟装置103和最佳修剪边缘确定装置105从模型中导出每个评估指标值,产品的生产计划和修剪边距设计值,并且将生产的请求分配为评估函数,以确定修剪边缘, 可以从产品的生产计划和修剪边际模型中优化评估函数的价值。 据此,可以迅速确定通过在钢铁制造厂的多个制造工序中的处理而制造的钢板的一个以上的评价指标值的最佳修整余量。 版权所有(C)2009,JPO&INPIT
    • 4. 发明专利
    • Molding process of granulated waste plastic as chemical raw material
    • 造粒废塑料作为原料的成型工艺
    • JP2006103336A
    • 2006-04-20
    • JP2005297070
    • 2005-10-12
    • Nippon Steel Corp新日本製鐵株式会社
    • IBARAKI TETSUJIIKEDA MOTOKIFUJISAWA YOSHIHISAMIKATA NOBUYUKIMATSUKUMA EIJI
    • B29B17/00B29B9/06B29B11/02B29K23/00
    • Y02W30/62Y02W30/625
    • PROBLEM TO BE SOLVED: To provide a technique to improve shape quality of a granulated object which is made by compression molding for use in a chemical reaction process in gas producer, oil-chemical plant, coke oven, iron making blast furnace and so on.
      SOLUTION: The invention is characterized by molding a waste plastic having polyethylene content in sum total of 10 to 60 mass%, which is collected from households after use and has moisture content of below 10 mass%. The compression molding is conducted by means of a molding machine, a type which extrudes the waste plastic from a hollow die 17 of an end plate 16 and is equipped with a screw 15 inside a waste plastic retaining barreled shell unit 13; wherein the sum total of driving electricity by a device for mechanical work in the waste plastic retaining unit and power output by a heating device ranges 55 to 165 kW per 1 t/h processing of the waste plastic.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供一种技术,以提高通过压缩成型制造的造粒物的形状质量,用于气体生产者,油化工厂,焦炉,炼铁高炉的化学反应过程中 所以。 解决方案:本发明的特征在于,将使用后从家庭收集的聚乙烯含量总计为10〜60质量%的废塑料成型,并具有低于10质量%的含水量。 压缩成型通过成型机进行,该成型机从端板16的中空模具17挤出废塑料,并在废塑料保持筒壳单元13内装有螺钉15; 其中废塑料保持单元中用于机械加工的装置的驱动电力和由加热装置输出的功率的总和为废塑料每1吨/小时的加工范围为55至165kW。 版权所有(C)2006,JPO&NCIPI
    • 5. 发明专利
    • Molding process of discarded plastic
    • 抛光塑料的成型工艺
    • JP2006056267A
    • 2006-03-02
    • JP2005302407
    • 2005-10-18
    • Nippon Steel Corp新日本製鐵株式会社
    • IBARAKI TETSUJIIKEDA MOTOKIMATSUKUMA EIJI
    • B29B17/00B29C43/02B29K105/26
    • Y02W30/62
    • PROBLEM TO BE SOLVED: To improve compression molding condition of plastics and upgrade shape quality of plastic granules, regarding a process of producing granulated plastics as chemical ingredients by molding discarded plastics including reclaimed household plastic wastes.
      SOLUTION: The process of molding the discarded plastic is characterized in the following steps. A crushed discarded plastic with 4% or more moisture is made into a plastic molding through a compression molding machine, a type that extrudes from a through hole mold. After that, the plastic molding is subjected to classification and the portion on the sieve is utilized as a product. The portion beneath the sieve in the classification of the molding, which is a plastic powder of lower moisture than that of adhering to the crushed plastic, is returned to the compression molding machine. The returned portion is admixed with the crushed discarded plastic, that is a raw material, and compression molded again.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:为了改善塑料的压缩成型条件和提高塑料颗粒的形状质量,关于通过模制废塑料(包括回收的家用塑料废料)生产造粒塑料作为化学成分的方法。 解决方案:废塑料的成型工艺的特征在于以下步骤。 具有4%或更多水分的破碎废弃塑料通过压模机制成塑料模制品,压模机是从通孔模具挤出的。 之后,对塑料模制品进行分级,并将筛子上的部分用作产品。 模制品分级中的下方的部分,其是比粘附在破碎的塑料上的水分低的塑料粉末,被归还到压缩成型机。 返回的部分与被破碎的废塑料混合,即原料,再次压塑。 版权所有(C)2006,JPO&NCIPI
    • 6. 发明专利
    • Supporting apparatus for operation in metallic strip continuous treatment equipment, operation support method, computer program and computer-readable recording medium
    • 支持金属条带连续处理设备操作的设备,操作支持方法,计算机程序和计算机可读记录介质
    • JP2008184644A
    • 2008-08-14
    • JP2007018446
    • 2007-01-29
    • Nippon Steel Corp新日本製鐵株式会社
    • WAJIMA KIYOSHISHIRAGAMI MUTSUOIKEDA MOTOKI
    • C21D9/56C21D11/00G05B19/418G06N5/04
    • Y02P90/14
    • PROBLEM TO BE SOLVED: To achieve as high productivity as possible without unnecessarily impairing treatment capacity by estimating meandering quantity of a metallic strip and a risk rate causing the trouble of production and presenting them to an operator beforehand, based on a flatness index measured at the point of time of treating the metallic strip in continuous treatment equipment. SOLUTION: A metallic strip flatness index such as extension ratedifference is measured and the flatness index is weighted with a function of width direction coordinates and further calculation for evaluating the difference between the right side and the left side of the flatness index is performed to thereby calculate the right side and the left side difference of the flatness index (a step 203), a model estimating the meandering quantity is generated from the statistics of the weighted flatness index difference between the right side and the left side (a step 206), the risk rate causing the strip to generate trouble in the production is estimated (a step 207), and the estimated risk rate is presented to the operator (a step 210). COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:为了实现尽可能高的生产率,通过估计金属带的弯曲量和导致生产故障的风险率而不必要地损害处理能力,并且预先将其呈现给操作者,基于平坦度指数 在连续处理设备中处理金属带的时间点测量。 < P>解决方案:测量诸如延伸标准差的金属条平整度指数,并且利用宽度方向坐标的函数对平坦度指数进行加权,并且进行用于评估平坦度指数的右侧和左侧之间的差异的进一步计算 从而计算平坦度指标的右侧和左侧差(步骤203),根据右侧和左侧之间的加权平坦度指数差的统计量生成估计曲折量的模型(步骤206 估计导致生产中产生故障的风险率(步骤207),将估计的风险率提供给操作员(步骤210)。 版权所有(C)2008,JPO&INPIT
    • 8. 发明专利
    • Apparatus and method for assisting operation in continuous-treating facility for metallic strip, computer program and recording medium readable with computer
    • 用于金属条,计算机程序和记录介质的连续处理设备操作的设备和方法可与计算机一起读取
    • JP2007046131A
    • 2007-02-22
    • JP2005233692
    • 2005-08-11
    • Nippon Steel Corp新日本製鐵株式会社
    • WAJIMA KIYOSHISHIRAGAMI MUTSUOIKEDA MOTOKI
    • C21D9/56B21B39/14C21D11/00
    • PROBLEM TO BE SOLVED: To enable obtaining as higher productivity as possible without damaging a treating ability as more than necessary, by assuming the danger ratio related to a meandering amount and a production obstacle in a strip, based on a shaping index measured at the timing before treating with a continuous-treating facility to the metallic strip and beforehand presenting this information to the operator.
      SOLUTION: A weighting degree is decided with a function of width directional coordinate by measuring the metallic strip shaping index of elongation difference etc., and further, the difference between the right edge side and the left edge side in the weighting degree shaping index, is calculated by performing the calculation evaluating difference between the right side and the left side. The snaking amount of the metallic strip from the difference between the right side and the left side in the weighting degree shaping index and the danger ratio generating the production obstacle to this metallic strip, are assumed, based on the data of the past actual results to present this information to the operator.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题为了能够获得尽可能高的生产率而不损害处理能力,因为通过假设与条带中的蜿蜒量和生产障碍相关的危险比,基于测量的成形指数 在连续处理设备处理到金属带之前的时机,并事先向操作者呈现该信息。

      解决方案:通过测量伸长差等的金属条形成指数,通过测量宽度方向坐标的函数来确定加权度,此外,加权度成形中的右边缘侧和左边缘侧之间的差异 指数通过执行右侧和左侧之间的计算评估差来计算。 根据过去的实际结果的数据,假设金属带从加权度整形指数中的右侧和左侧之间的差异以及产生该金属带的生产障碍的危险比的蛇形量 将此信息提供给运营商。 版权所有(C)2007,JPO&INPIT