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    • 2. 发明专利
    • Hot refractory spraying device and spraying construction method of monolithic refractory in hot
    • 热熔胶喷涂设备和喷涂单体耐火材料的喷涂施工方法
    • JP2009047317A
    • 2009-03-05
    • JP2007210979
    • 2007-08-13
    • Kurosaki Harima CorpSakae NakaiNippon Steel Corp榮 中井新日本製鐵株式会社黒崎播磨株式会社
    • HANAGIRI SEIJIUCHIDA TAKAYUKISEKI KAZUNORIFURUTA YOICHINAKAI SAKAE
    • F27D1/16C04B35/66
    • PROBLEM TO BE SOLVED: To provide a hot refractory spraying device capable of sufficiently securing a conveying distance to a spraying part after kneading, and sufficiently kneading monolithic refractory. SOLUTION: This hot refractory spraying device 1 for spraying monolithic refractory in hot, comprises an airflow-type dry material conveying means 11 for conveying a dry material constituting the monolithic refractory by airflow, a water adding means for adding the water to the dry material conveyed by the airflow-type dry material conveying means 11, a material kneading means 12 to which the dry material is introduced from an introduction port connected with the airflow-type dry material conveying means 11 to knead the water added by the water adding means and the dry material in a sealed space, and to discharge the kneaded material from a discharge port, and a material spraying means 13 for spraying the material kneaded by the material kneading means 12 by a pressure of the airflow supplied from the airflow-type dry material conveying means 11. COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供一种能够在捏合后充分确保到喷射部分的输送距离并充分捏合整体耐火材料的耐热耐火喷涂装置。 解决方案:用于喷涂整体耐火材料的热耐火喷涂装置1包括用于通过气流输送构成整体耐火材料的干燥材料的气流型干燥材料输送装置11,用于将水添加到水的添加装置 由气流型干燥材料输送装置11输送的干燥材料,从与气流型干燥材料输送装置11连接的导入口引入干燥材料的材料捏合装置12,将由加水添加的水 装置和干燥材料,并且从排出口排出捏合材料;以及材料喷射装置13,用于通过由气流型供应的气流的压力喷射由材料捏合装置12捏合的材料 干料输送装置11.版权所有(C)2009,JPO&INPIT
    • 4. 发明专利
    • Continuous construction device for refractory
    • 连续耐火建筑设备
    • JP2008241236A
    • 2008-10-09
    • JP2007333026
    • 2007-12-25
    • Kurosaki Harima CorpSakae NakaiNippon Steel Corp榮 中井新日本製鐵株式会社黒崎播磨株式会社
    • HANAGIRI SEIJIUCHIDA TAKAYUKISHINPO AKIHIROSEKI KAZUNORIFURUTA YOICHINAKAI SAKAE
    • F27D1/16
    • PROBLEM TO BE SOLVED: To provide a continuous construction device for a monolithic refractory suitably usable for inner lining construction and repair construction of the refractory. SOLUTION: The continuous construction device comprises a continuous kneading device and a material projection device C. The material projection device C comprises an impeller 6 mounted with a plurality of blade plates 14; an endless flat belt 15 wound around the outer periphery of the impeller 6 so that a projection port 7 for projecting the refractory to the outside is formed at a part; a plurality of pulleys 16 for guiding the endless flat belt 15; a mounting plate 17 on which the plurality of pulleys 16 are pivoted; and a projection plate 18 arranged near the projection port 7 to project the refractory to the outside while colliding with the projection plate. The angle of the projection plate 18 to the refractory is changed to carry out inner lining construction of various refractory containers with an optional thickness, and a rebound loss when allowing the refractory to collide with a constructed body can also be reduced. COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供适用于耐火材料的内衬构造和修复结构的整体式耐火材料的连续施工装置。

      解决方案:连续施工装置包括连续捏合装置和材料投影装置C.材料投影装置C包括安装有多个叶片板14的叶轮6; 围绕叶轮6的外周缠绕的环形扁平带15,使得在一部分上形成用于将耐火材料突出到外部的突起口7; 用于引导环形扁平带15的多个滑轮16; 多个滑轮16枢转的安装板17; 以及布置在突起口7附近的突出板18,以便在与突起板碰撞的同时将耐火材料突出到外部。 改变突起板18与耐火材料的角度,可以实现可选择的厚度的各种耐火材料容器的内衬结构,并且还可以减少允许耐火材料与构造体碰撞时的回弹损耗。 版权所有(C)2009,JPO&INPIT

    • 5. 发明专利
    • Construction device and construction method using the same
    • 使用它的构造装置和构造方法
    • JP2011214763A
    • 2011-10-27
    • JP2010082001
    • 2010-03-31
    • Kurosaki Harima CorpNippon Steel Corp新日本製鐵株式会社黒崎播磨株式会社
    • SEKI KAZUNORITOKITO KAZUOTSUKUDA JUNICHIFURUTA YOICHIHANAGIRI SEIJIUCHIDA TAKAYUKIITO SATOSHI
    • F27D1/16
    • PROBLEM TO BE SOLVED: To provide a construction device capable of adjusting an emission angle of a kneaded material in a vertical face while minimizing increase of the total weight of a matter lifted up by wire rods, in the construction device applying a constitution of suspending an emitter for emitting the kneaded material by the wire rods.SOLUTION: This construction device includes a base 4 connected with the wire rods 3 at least at three points on a surface, and suspended by the wire rods, the emitter C disposed on the base 4, and capable of swirling an emission port 40 for emitting the kneaded material around a swirling shaft intersecting the base 4, an operation mechanism 6 disposed above the base 4 for changing the attitude of the base 4 by using the wire rods 3, and having a function for adjusting a tilting angle of the base 4 to a horizontal face, and a function for revolving the base 4 around a virtual vertical line intersecting the base in the tilting direction of the base 4 without making the base 4 rotate around a normal line of the surface, and a swirling mechanism for swirling the emission port 40 of the emitter C around the swirling shaft in synchronization with revolving in the tilting direction of the base 4 by the operation mechanism 6.
    • 要解决的问题:提供一种施工装置,其能够在最小化由线材提升的物质的总重量的增加的同时,调整垂直面中的捏合材料的排出角度,在施加装置中,施加悬挂 发射器,用于通过线材发射捏合材料。解决方案:该构造装置包括:基座4,其与线材3连接,至少在表面上的三个点处,并且被线材悬挂,发射器C设置在基座4上 并且能够旋转用于在与基座4相交的旋转轴周围发射捏合材料的排放口40;设置在基座4上方的用于通过使用线材3改变基座4的姿态的操作机构6,并且具有 用于将基座4的倾斜角度调整为水平面的功能,以及用于使基部4围绕基部4的倾斜方向与基部相交的虚拟垂直线旋转的功能 而不使基座4围绕表面的法线旋转;以及旋转机构,用于通过操作机构6与基座4的倾斜方向同步地旋转围绕旋转轴的发射器C的发射端口40。
    • 8. 发明专利
    • Method for producing pearlitic rail excellent in wear resistance and ductility
    • 用于生产耐磨损和耐腐蚀性的珍珠岩的方法
    • JP2013014847A
    • 2013-01-24
    • JP2012221219
    • 2012-10-03
    • Nippon Steel & Sumitomo Metal Corp新日鐵住金株式会社
    • UEDA MASAHARUSEKI KAZUNORISATO TAKUYAYAMAMOTO TAKESHI
    • C21D8/00C22C38/00C22C38/04C22C38/58
    • PROBLEM TO BE SOLVED: To improve wear resistance and ductility of a rail by controlling the component of a steel, ratio of reaction force in a finish rolling process and a heat treatment condition after the finish rolling process to make a structure of a head part of the rail fine and control the hardness within a predetermined range.SOLUTION: The method is used to produce a pearlitic rail excellent in wear resistance and ductility by performing at least rough hot rolling and finish hot rolling to a rolling billet for the rail which comprises, by mass%, C: 0.65-1.20%, Si: 0.05-2.00%, Mn: 0.05-2.00%, and the balance being Fe and unavoidable impurities. The finish hot rolling is conducted at a temperature range where a rail head surface is in a temperature range of not higher than 900°C to not lower than Ar3 transformation point or Arcm transformation point to obtain a structure in which an amount of non-recrystallization austenite structure produced immediately after the rolling counts for not less than 40% and not more than 70% by an area ratio. Then, the rail head part surface after finish hot rolling is subjected to accelerated cooling to at least 550°C at a cooling rate of 2 to 30°C/sec within 150 sec after the completion of the finish rolling.
    • 要解决的问题:通过控制钢的组分,精轧过程中的反作用力与精轧后的热处理条件的比例来提高轨道的耐磨性和延展性,从而形成 导轨的头部精细,并将硬度控制在预定范围内。 解决方案:该方法用于通过对用于轨道的轧制坯进行至少粗加热和精轧热轧制造出耐磨性和延展性优异的珠光体钢轨,质量%为C:0.65-1.20 %,Si:0.05〜2.00%,Mn:0.05〜2.00%,余量为Fe和不可避免的杂质。 精轧热在轨头表面处于不高于900℃至不低于Ar3相变点或Arcm相变点的温度范围内进行,以获得不结晶量的结构 轧制后立即生产的奥氏体结构以面积比计算不小于40%且不大于70%。 然后,在精轧结束后的150秒内,以2〜30℃/秒的冷却速度将精热轧后的钢轨头部表面进行加速冷却至至少550℃。 版权所有(C)2013,JPO&INPIT
    • 9. 发明专利
    • Rolling speed setting method in universal rolling and influence coefficient learning method
    • 滚动速度设置方法在通用滚动和影响系数学习方法
    • JP2014108439A
    • 2014-06-12
    • JP2012264195
    • 2012-12-03
    • Nippon Steel & Sumitomo Metal新日鐵住金株式会社
    • SEKI KAZUNORIMIWA MASANORIMORI HIROSHI
    • B21B37/46B21B37/00B21B37/78
    • PROBLEM TO BE SOLVED: To provide a rolling speed setting method that can accurately set the number of revolutions immediately after the roll change, and can manufacture shaped steel products with high dimensional accuracy, in a tandem mill train comprising at least one universal rolling mill.SOLUTION: A rolling speed setting method includes the steps of: previously finding the advanced fof a roll diameter in reference conditions of a universal rolling mill; estimating an advanced rate of change, based on a rate of change of a roll diameter from the roll diameter in the reference conditions; correcting the advanced f, based on the advanced rate of change estimated; and setting the number of revolutions of roll of the universal rolling mill and a rolling mill being in a tandem state with the universal rolling mill so that the inter-stand tension between the universal rolling mill and the rolling mill being in the tandem state with the universal rolling mill becomes a predetermined target value, based on the advanced rate corrected.
    • 要解决的问题:提供一种可以在包括至少一个通用轧机的串列式轧机机组中精确地设定辊变换之后的转速的轧制速度设定方法,并且可以制造尺寸精度高的成形钢产品。 解决方案:轧制速度设定方法包括以下步骤:先前在通用轧机的参考条件下找到轧辊直径的前进f; 基于在参考条件下的辊直径的变化率来估计高级变化率; 根据预测的变化率,对先进的f进行校正; 并通过万能轧机将万能轧机和轧机的轧制转数设定为串联状态,使得万能轧机与轧机之间的夹层间张力处于串联状态 通用轧机成为预先设定的目标值。