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    • 62. 发明授权
    • Continuous casting apparatus of twin-drum type
    • 双滚筒式连铸机
    • US4723590A
    • 1988-02-09
    • US893173
    • 1986-08-05
    • Takashi YamauchiTadashi NishinoTomoaki KimuraTatsushi Aizawa, deceased
    • Takashi YamauchiTadashi NishinoTomoaki KimuraTatsushi Aizawa, deceased
    • B22D11/10B22D11/06
    • B22D11/066
    • A twin-roll type continuous casting apparatus comprises a pair of rotatable drums and a pair of side dams disposed on both axial ends of the drums so that a pool of molten steel is defined by the drums and the side dams. As the drums are rotated in counter directions, the molten steel is cooled so that the molten steel is partially solidified to form solidification shells which are then pressure-bonded to each other as they pass through the narrowest gap defined between the drums, so that a steel sheet is formed by continuous casting. The side dam is composed of a side refractory part which functions to maintain the pool of molten steel and a metallic member which supports the side refractory part and which serves as a cooling plate for cooling the steel. The side refractory part is projected inwardly of the pool from the metallic member and arranged so that the lower end thereof is positioned in the vicinity of a point where the pressure-bonding of the solidification shells is commenced, the point being located above the narrowest gap defined between the drums.
    • 双辊式连续铸造设备包括一对可旋转的滚筒和一对设置在滚筒的两个轴向端部上的侧坝,以便由滚筒和侧坝限定钢水池。 当滚筒反向旋转时,钢水被冷却,使得钢水部分地固化,形成固化壳体,然后当它们通过滚筒之间限定的最窄间隙时彼此压合,从而使 钢板通过连续铸造形成。 侧坝由作为维持钢水池的侧面耐火部件和支承侧面耐火部件的金属部件构成,作为冷却钢板的冷却板。 侧面耐火部分从金属构件向内突出,并且布置成使得其下端位于凝固壳的压接开始点附近,该点位于最窄间隙之上 定义在鼓之间。
    • 66. 发明授权
    • Method of widthwise rolling of rolled material and apparatus therefor
    • 轧制材料的宽幅轧制方法及其设备
    • US4387586A
    • 1983-06-14
    • US200606
    • 1980-10-24
    • Hiroshi AwazuharaSukebumi TsumuraTomoaki Kimura
    • Hiroshi AwazuharaSukebumi TsumuraTomoaki Kimura
    • B21B1/22B21B1/02B21B1/26B21B1/38B21B15/00B21J5/00B21B47/00
    • B21J1/04B21B1/02B21J5/00B21B15/0042B21B2263/20
    • A method and apparatus for rolling a rolled material widthwise thereof wherein the rolled material in the form of a flat metal which may be a slab of metal having a large width as contrasted with the thickness has its lengthwise end portion shaped by compression working while the rolled material remains stationary in such a manner that the lengthwise end portion is formed with a progressively reducing width portion in which the width is progressively reduced in going toward the end of the rolled material, and a uniform width portion contiguous with the progressively reducing width portion and having a width equal to the minimum width of the progressively reducing width portion between its end contiguous with the progressively reducing width portion and the end of the rolled material. Thereafter, the rolled material is subjected to widthwise rolling, whereby the fishtail produced at the end of the rolled material can be greatly diminished.
    • 一种轧制材料在其宽度方向上的轧制方法和装置,其中可以是与厚度相反的具有宽度大的金属板的扁平金属形式的轧制材料的纵向端部通过压缩加工而成形,而轧制 材料以这样的方式保持静止,使得纵向端部形成有逐渐减小的宽度部分,其中宽度逐渐减小,朝向轧制材料的端部,以及与逐渐减小的宽度部分相邻的均匀宽度部分,以及 其宽度等于其逐渐减小的宽度部分与其逐渐缩小的宽度部分和轧制材料的端部相邻的端部之间的最小宽度部分的最小宽度。 此后,对轧制材料进行横向轧制,由此可以大大减少在轧制材料末端产生的鱼尾。
    • 70. 发明授权
    • Buffer substrate and use thereof
    • 缓冲底物及其用途
    • US09200390B2
    • 2015-12-01
    • US12675536
    • 2008-08-27
    • Tomoaki KimuraToru OchiaiSumito KiyookaSatoshi KoizumiKazuhiro Muraki
    • Tomoaki KimuraToru OchiaiSumito KiyookaSatoshi KoizumiKazuhiro Muraki
    • D04H3/00D04H1/00D04H1/54D04H1/74D04H13/00
    • D04H1/005D04H1/02D04H1/5405D04H1/541D04H1/544D04H1/545D04H1/55D04H1/558D04H1/74D04H13/007Y10T156/10Y10T442/60
    • In a nonwoven fiber assembly which comprises a fiber comprising a thermal adhesive fiber under moisture and in which the fiber are entangled with each other, the fibers are bonded at contacting points of the fibers by melting the thermal adhesive fiber under moisture to distribute the bonded points approximately uniformly, thereby obtaining a buffer substrate. The buffer substrate may further comprises a conjugated fiber comprising a plurality of resins which are different in thermal shrinkage and form a phase separation structure, and the conjugated fibers may have an approximately uniform crimps having an average curvature radius of 20 to 200 μm and are entangled with the fibers constituting the nonwoven fiber assembly. The buffer substrate can be obtained by a method comprising the steps of: forming a web from the fiber comprising the thermal adhesive fiber under moisture; and subjecting the obtained fiber web to a heat and moisture treatment with a high-temperature water vapor to melt the thermal adhesive fiber under moisture for bonding the fibers. The buffer substrate has a high air-permeability, an excellent cushion property and softness.
    • 在包含纤维的非织造纤维集合体中,所述纤维包含水分下的热粘合纤维,并且纤维彼此缠结,纤维在纤维的接触点处被粘合在纤维的接触点处,使热粘合纤维在水分下熔融以分布粘结点 大致均匀地得到缓冲基板。 缓冲基板还可以包括包含多个热收缩率不同并形成相分离结构的树脂的共轭纤维,并且共轭纤维可以具有平均曲率半径为20-200μm的大致均匀的卷曲并且被缠结 纤维构成非织造纤维集合体。 可以通过以下方法获得缓冲基材:从包含热粘合纤维的纤维的纤维形成纤维网; 并用高温水蒸气对获得的纤维网进行热湿处理,使热粘合纤维在水分下熔融以粘合纤维。 缓冲基材具有高的透气性,优异的缓冲性和柔软性。