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    • 4. 发明申请
    • METHOD OF MANUFACTURING EASILY OPENABLE CAN LIDS OF RESIN LAMINATED METAL PLATE, EASILY OPENABLE CAN LID, AND RESIN LAMINATED METAL PLATE FOR EASILY OPENABLE CAN LIDS
    • 制造易于使用的树脂层压金属板的易于使用的方法,易于使用的罐头和树脂层压金属板,用于易于操作的罐头
    • WO1994014552A1
    • 1994-07-07
    • PCT/JP1993001878
    • 1993-12-24
    • NIPPON STEEL CORPORATIONNISHIDA, HiroshiOYAGI, YashichiNAKAMURA, Kiyonori
    • NIPPON STEEL CORPORATION
    • B21D51/44
    • B21D51/44B21D51/383Y10T428/24612Y10T428/269Y10T428/31681
    • A method of manufacturing an easily openable can lid of a resin laminated metal plate, consisting of the steps of subjecting a resin laminated metal plate for easily openable can lids, which is composed of a metal plate or a surface-treated metal plate one or both surfaces of which are laminated with a crystalline saturated polyester resin film of a thickness of 10-100 mu m, elongation of not less than 150 % and crystal melting heat at a crystallinity of not more than 10 % of not less than 10 joule/g to composite extrusion molding using upper and lower metal molds having a radius of round shoulders of 0.1-1.0 mm so as to form a cut guide groove of a thickness of its remaining uncut bottom portion of not more than 1/2 of the thickness of the raw metal plate, and thereafter heat treating the crystalline saturated polyester resin layer around the cut guide groove at a temperature not lower than the cold crystallization starting temperature and lower than the melting point thereof; and easily openable can lid obtained by this method; and a resin laminated metal plate used to obtain the can lid.
    • 一种树脂层压金属板的易开盖罐的制造方法,其特征在于,将由金属板或表面处理金属板构成的树脂层叠金属板进行易于打开的罐盖, 其表面与10-100μm厚度的结晶饱和聚酯树脂膜层叠,不超过150%的伸长率和不超过10焦耳/克的结晶度不超过10%的结晶熔化热 使用具有0.1-1.0mm的圆肩半径的上下金属模具进行复合挤出成型,以形成其剩余未切割底部的厚度的切割导向槽不大于其厚度的1/2 然后在不低于冷结晶起始温度且低于其熔点的温度下对结晶饱和聚酯树脂层在切割导向槽周围进行热处理; 并通过该方法获得容易打开的罐盖; 以及用于获得罐盖的树脂层压金属板。
    • 6. 发明申请
    • ELECTROSTATIC RECORDING HEAD UNIT
    • 静电记录头单元
    • WO1998024633A1
    • 1998-06-11
    • PCT/JP1997004400
    • 1997-12-02
    • NIPPON STEEL CORPORATIONSATO, HitoshiHORIKAWA, TakashiUENO, Noboru
    • NIPPON STEEL CORPORATION
    • B41J02/41
    • G06K15/14
    • An electrostatic recording head unit and a method for detecting a fault caused in the electrostatic recording head provided with a device for detecting a head fault of the unit due to a short circuit between main electrodes, which is so structured that a main electrode current to be supplied to at least one group of main electrodes out of a plurality of the electrodes may be detected by a current detector, a value corresponding to a peak value of the main electrode current may be held, and the held value and the value corresponding to the main electrode current detected by the current detector may be compared to determine if the main electrode current is a short-circuit one or not. The electrostatic recording head is constituted with a plurality of main electrodes for discharging, a head assembly including a plurality of auxiliary electrodes located face to face with the main electrodes, connecting sections to be connected to the main electrodes respectively, connection boards connected via signal lines which are connected to the connecting sections, a main electrode driving board provided with a main electrode driving circuit for driving the main electrodes, an auxiliary electrode driving board provided with an auxiliary electrode driving circuit for driving the auxiliary electrodes, and a means for connecting the main electrode driving board and the auxiliary electrode driving board to the connection boards.
    • 一种静电记录头单元和用于检测在静电记录头中引起的故障的方法,该静电记录头设置有用于检测由于主电极之间的短路而导致的单元的头部故障的装置,其被构造成使得主电极电流为 提供给多个电极中的至少一组主电极的电流可以由电流检测器检测,可以保持与主电极电流的峰值相对应的值,并且保持值和对应于 可以比较由电流检测器检测的主电极电流,以确定主电极电流是否是短路的。 静电记录头由多个用于放电的主电极构成,头组件包括分别与主电极面对面设置的多个辅助电极,分别连接到主电极的连接部分,经由信号线连接的连接板 连接到连接部分的主电极驱动板,设置有用于驱动主电极的主电极驱动电路的主电极驱动板,设置有用于驱动辅助电极的辅助电极驱动电路的辅助电极驱动板,以及用于连接 主电极驱动板和辅助电极驱动板连接到连接板。
    • 7. 发明申请
    • BURNING/MELTING METHOD OF WASTE MELTING FURNACE
    • 燃烧熔融炉的熔融/熔融方法
    • WO1997049954A1
    • 1997-12-31
    • PCT/JP1997002149
    • 1997-06-23
    • NIPPON STEEL CORPORATIONISHIDA, YoshihiroTAWARA, YouichiKATO, YasuhikoONO, YoshihiroKURIBAYASHI, KazuhiroFUKINAKA, NorioHARAJIRI, HachiroMURAHASHI, Kazuki
    • NIPPON STEEL CORPORATION
    • F23G05/24
    • F23G5/085F23G5/24F23L2900/07007Y02E20/344
    • Sinking of a charge in a cross-sectional direction of a melting furnace is made uniform, poor heat-exchange between the charge and a gas due to improper sinking of the charge and local concentration of a gas flow is reduced to minimum, a melting condition of wastes is stabilized irrespective of the composition of the wastes, and a charge of a treating speed of the wastes is restricted, too. A plurality of lower stage tuyeres are disposed vertically in a burning/melting zone, carbonaceous mass-like inflammable matters are mainly burnt by supplying a combustion support gas, a plurality of upper stage tuyeres are disposed vertically in a plurality of stages at the positions above the tuyeres, and a part of the wastes is burnt by supplying the combustion support gas. In this instance, the combustion support gas equivalent to oxygen content of 130 to 600 Nm /t of wastes is supplied, and the combustion support gas is supplied from the upper stage tuyeres so that the proportion of the oxygen content from the upper tuyeres is 0.2 to 0.8 of the sum of those of the lower and upper stages. Further, the supply quantity is controlled so that the oxygen content supplied from the lower stage tuyeres is at least 0.8 times the theoretical oxygen content of the carbonaceous mass-like inflammable matters, and the exhaust gas temperature on the packing layer of the wastes is set to 150 to 700 DEG C.
    • 使熔融炉的横截面方向的电荷沉降均匀,由于电荷的不适当的下降和气流的局部浓缩,电荷与气体之间的热交换差降低到最小,熔融条件 废物的成分不管废物的组成是否稳定,并且废物的处理速度受到限制。 多个下级风口垂直设置在燃烧/熔化区域,主要通过供给燃烧载体气体来燃烧碳质物质的易燃物质,多个上级风口在上述位置处以多级垂直设置 风口和一部分废物通过供给燃烧载体气而燃烧。 在这种情况下,供给相当于氧含量为130〜600Nm 3 / t废弃物的燃烧载体气体,并且从上级风口供给燃烧载体气体,使得来自上层的氧含量的比例 风口是下段和上段总和的0.2〜0.8。 此外,控制供给量使得从下级风口供给的氧含量为碳质物质状易燃物的理论氧含量的0.8倍以上,废弃物的包装层上的废气温度设定为 至150〜700℃