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    • 4. 发明专利
    • Spinning method
    • 纺纱方法
    • JP2007098420A
    • 2007-04-19
    • JP2005289979
    • 2005-10-03
    • Nisshin Steel Co Ltd日新製鋼株式会社
    • ANDO AKIHIROSAKAMOTO KAZUYUKIKANO SHINOBUHARA KENJI
    • B21D41/04B21D22/14
    • PROBLEM TO BE SOLVED: To provide a spinning method which can prevent the generation of the fractures originated from the spinning end of a base material portion or the welding end of a welded portion, and also can prevent the generation of wrinkles during spinning, when a necked portion is formed on the pipe end of a pipe material by spinning.
      SOLUTION: When the necked portion is formed on the pipe end of the pipe material by spinning, a spinning roller is reciprocated in the axial direction within the range between the points just before both pipe ends without being reciprocated beyond the pipe ends of the spinning pipe. Then, a diameter reducing amount at the pipe end is smaller than that of the spinning portion other than the pipe end, and a so-called bellmouth shape projection is formed at the spinning end. As a result, the generation of the fractures originated from the spinning end of the base material portion or the welding end of the welded portion and the generation of wrinkles during spinning can be prevented.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种能够防止源自基材部的纺丝端或焊接部的焊接端的裂缝的产生的纺丝方法,并且还能够防止纺丝时产生褶皱 当通过纺丝在管材的管端上形成颈部时。 解决方案:当通过纺丝在管材的管端形成颈缩部分时,纺丝辊在刚好在两个管端之间的点之间的范围内沿轴向往复运动,而不会往复运动超过管端 纺纱管。 然后,在管端的直径减小量小于除管端以外的纺丝部的直径减小量,并且在纺丝端形成所谓的喇叭形突起。 结果,可以防止源自基材部分的纺丝端或焊接部分的焊接端的裂缝的产生,并且可以防止纺丝期间产生皱纹。 版权所有(C)2007,JPO&INPIT
    • 5. 发明专利
    • Method for spinning tube end
    • 旋转管末端方法
    • JP2007283315A
    • 2007-11-01
    • JP2006110488
    • 2006-04-13
    • Nisshin Steel Co Ltd日新製鋼株式会社
    • SAKAMOTO KAZUYUKIANDO AKIHIROKANO SHINOBUHARA KENJI
    • B21D41/04
    • PROBLEM TO BE SOLVED: To provide a method for spinning a tube end by which thickness reduction apt to occur in a tapered part is suppressed as much as possible when forming a reduced diameter part by allowing a working roller on a tube end. SOLUTION: After making work hardening in the part to be worked by imparting uniform diameter reduction to the entire circumference by inserting the part to be worked of a tube to be worked into a die and imparting prestrain to the part to be worked, the tapered part the diameter of which is gradually reduced toward the end part of the tube to be worked is formed by moving a working roller back and forth in the axial direction while moving the roller in the radial direction of the tube to be worked by using the working roller which is arranged on the outer periphery of the tube to be worked and is relatively revolved around the tube. COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供一种通过允许工作辊在管端上形成直径缩小部分时尽可能地抑制在锥形部分中容易发生厚度减小的管端的方法。 解决方案:通过将要加工的管的待加工部件插入模具中并将预应变施加到待加工的部件上,通过使整个圆周的直径减小均匀地对待加工的部件进行加工硬化之后, 其直径朝向待加工管的端部逐渐减小的锥形部分是通过使工作辊在轴向方向前后移动而形成的,同时通过使用在待加工管的径向方向上移动辊 所述加工辊布置在待加工的管的外周上并围绕管相对旋转。 版权所有(C)2008,JPO&INPIT
    • 6. 发明专利
    • PRODUCTION OF VAPOR DEPOSITION ZINC PLATED STEEL STRIP
    • JPH10317125A
    • 1998-12-02
    • JP13220797
    • 1997-05-22
    • NISSHIN STEEL CO LTD
    • SAKAMOTO KAZUYUKIARIYOSHI YASUMIFUKUI YASUSHISAITO MINORU
    • C23C14/14C23C14/24C23C28/02
    • PROBLEM TO BE SOLVED: To obtain a vapor deposition Zn plated steel strip or a vapor deposi tion Zn-Mg plated steel strip, having a pore-free dense Zn layer and excellent in corrosion resistance. SOLUTION: At the time of producing a vapor deposition Zn plated steel strip by introducing a continuously traveling steel strip into a vacuum chamber, vapor deposition Zn plating is carried out under the condition that a relation of T>=-(2/5)R+215 is valid between the temp. T( deg.C) of the steel strip to be vapor deposition plated and Zn vapor deposition rate R (g/m .sec), by which the dense vapor deposition Zn plating layer free from pores in the inner part is formed. At the time of producing a vapor deposition Zn-Mg plated steel strip by performing vapor deposition plating treatments with Zn, Mg, and Zn in the order named, a relation of T>=-(2/5)R+215 is valid at the time of applying a first vapor deposition Zn plating. It is preferable that respective Zn vapor deposition treatments are carried out in the vacuum chamber held so that it has an atmosphere composed of nonoxidizing gases of 0.005-1.0 Torr pressure. By this method, the dense vapor deposition Zn layer can be formed, and corrosion resistance inherent in vapor deposition plating can be produced.