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    • 42. 发明授权
    • Stainless steel product containing B and method for production thereof
    • 含有B的不锈钢制品及其生产方法
    • US07170073B2
    • 2007-01-30
    • US11076943
    • 2005-03-11
    • Kazuhiro IshidaKazuhiro OgawaTakeo YazawaHideaki YamamotoHideo Morisaki
    • Kazuhiro IshidaKazuhiro OgawaTakeo YazawaHideaki YamamotoHideo Morisaki
    • C22C38/32B21B3/02B23K9/04
    • B21B3/02B21B1/024B21B1/026B21B2001/022B21B2001/028B23K15/00B23K35/308B23K35/3086B23K2103/05C22C38/001C22C38/02C22C38/04C22C38/06C22C38/44C22C38/54H01M8/021Y02P70/56
    • A stainless steel slab containing B, wherein a protecting material is joined onto at least two faces across the bloom from each other in a stainless steel bloom containing B of 0.3–2.5 mass %, being integrated into one-piece by forming a weld metal comprising a stainless steel with chemical composition that satisfies the relationship expressed by following formulas (1)–(4), and a method to produce a steel product by rolling said slab. Further, it is preferable to interpose an insert material between above stainless steel bloom and above protecting material in bonding process. 15≦Cr eq≦30,  (1) 4≦Cr eq−Ni eq≦17,  (2) Cr eq=Cr+1.5 Si+Mo−5 B,  (3) Ni eq=Ni+30 (C+N)+0.5 Mn  (4) Herein, each symbol of a chemical element designates the content (mass %) of relevant chemical element contained in steel. Accordingly, it makes it possible to subject a stainless steel slab containing B to hot working without generating edge cracking, so as to be used as a source material of a neutron shielding container and a separator of a fuel cell.
    • 一种含有B的不锈钢板,其中保护材料通过含有0.3-2.5质量%的B的不锈钢开坯彼此连接在至少两个面上,通过形成焊接金属而形成一体,所述焊接金属包括 具有满足下述式(1)〜(4)所示关系的化学成分的不锈钢,以及轧制所述板坯来制造钢材的方法。 此外,优选在接合工序中将插入材料插入上述不锈钢开花和上述保护材料之间。 <?in-line-formula description =“In-line Formulas”end =“lead”?> 15 <= CReq <= 30,(1)<?in-line-formula description =“In-line Formulas”end = “tail”?> <?in-line-formula description =“In-line Formulas”end =“lead”?> 4 <= CReq-Ni eq <= 17,(2)<?in-line-formula description = “直线公式”end =“tail”?> <?in-line-formula description =“In-line Formulas”end =“lead”?> Cr eq = Cr + 1.5 Si + Mo-5 B,(3 )<?in-line-formula description =“In-line Formulas”end =“tail”?> <?in-line-formula description =“In-line Formulas”end =“lead”?Ni eq = Ni + 30(C + N)+0.5 Mn(4)<?在线公式描述=“在线公式”end =“tail”?>这里,化学元素的每个符号表示 钢中含有的相关化学元素。 因此,可以使含有B的不锈钢板坯进行热加工而不会产生边缘裂纹,从而用作中子屏蔽容器的源材料和燃料电池的隔板。
    • 46. 发明授权
    • Method of decreasing width of thin slab and apparatus therefor
    • 减薄薄板宽度的方法及其设备
    • US4651550A
    • 1987-03-24
    • US673786
    • 1984-11-21
    • Mitsuo NiheiTomoaki Kimura
    • Mitsuo NiheiTomoaki Kimura
    • B21B1/02B21B1/46B21B15/00B21J5/00B21D3/12
    • B21J1/04B21B1/024B21B1/463B21B15/0035Y10S72/71
    • For decreasing the width of a thin slab: a turning roll contacts the thin slab being conveyed at a certain contact angle to curve the thin slab; a tension applying device disposed in front and at the back of the turning roll, applys a tension to the thin slab forwardly and rearwardly in the direction of conveyance of the slab. Thus, the slab can be decreased in its width to a satisfactory section with no buckling loop forming portions for forming loops of the hot thin slab at the inlet and the outlet sides of the apparatus for decreasing the width of the thin slab absorb the intermittent proceeding of the hot thin slab in the direction of flow of the material. Thus, the continuous receipt and the delivery of the slab are made possible while the intermittent width decrease is performed, and the combination of the continuous casting equipment with the hot finish rolling equipment is materialized.
    • 为了减小薄板的宽度:转动辊接触以一定接触角输送的薄板坯,以弯曲薄板坯; 设置在转动辊的前面和后面的张力施加装置向板坯的输送方向向前和向后施加张力。 因此,可以将板坯的宽度减小到令人满意的部分,在没有弯曲环形成部分的情况下,在用于减小薄板坯的宽度的装置的入口侧和出口侧处形成热薄板坯的回路以吸收间歇进程 的热薄板坯在材料的流动方向上。 因此,在进行间歇宽度降低的同时使板坯的连续接收和输送成为可能,并且实现了连续铸造设备与热精轧机的组合。
    • 47. 发明授权
    • Press type method of and apparatus for reducing slab width
    • 压板式减薄板的宽度方法及装置
    • US4578983A
    • 1986-04-01
    • US556944
    • 1983-12-01
    • Tomoaki Kimura
    • Tomoaki Kimura
    • B21B1/02B21B15/00B21J1/04B21J5/00B21J7/14
    • B21J1/04B21B1/024B21B15/0035B21J5/00
    • A press type method of reducing the slab width wherein a slab as a rolling stock is reduced in width before rolling comprises: employing as press tools a pair of opposed members at least one of which has an inclined press surface adapted to vibrate in the slab width direction; and moving the slab substantially continuously while continuing the vibration of the press tool. Also disclosed is an apparatus suitably employed for the above method. By the method and apparatus, the clearance between the press tools is reduced to make it possible to shorten the operating time as a whole. In addition, the pressed surfaces of the slab are made excellent in continuity thereby to permit improvements also in formability and production yield.
    • 一种减少板坯宽度的压制方法,其中作为轧制坯料的板坯在轧制之前的宽度减小包括:使用一对相对的构件,其中至少一个具有适于在板坯宽度上振动的倾斜的压制表面 方向; 并且基本上连续移动板坯,同时继续冲压工具的振动。 还公开了适用于上述方法的装置。 通过该方法和装置,减少了压制工具之间的间隙,使得整体上可以缩短操作时间。 此外,板坯的压制表面的连续性良好,因此也可以在成形性和生产率方面得到改善。
    • 50. 发明申请
    • Stainless steel product containing B and method for production thereof
    • 含有B的不锈钢制品及其生产方法
    • US20050183796A1
    • 2005-08-25
    • US11076943
    • 2005-03-11
    • Kazuhiko IshidaKazuhiro OgawaTakeo YazawaHideaki YamamotoHideo Morisaki
    • Kazuhiko IshidaKazuhiro OgawaTakeo YazawaHideaki YamamotoHideo Morisaki
    • B23K15/00B21B1/02B21B3/02B23K35/30B23K103/04C22C38/00C22C38/04C22C38/44C22C38/54H01M8/02
    • B21B3/02B21B1/024B21B1/026B21B2001/022B21B2001/028B23K15/00B23K35/308B23K35/3086B23K2103/05C22C38/001C22C38/02C22C38/04C22C38/06C22C38/44C22C38/54H01M8/021Y02P70/56
    • A stainless steel slab containing B, wherein a protecting material is joined onto at least two faces across the bloom from each other in a stainless steel bloom containing B of 0.3-2.5 mass %, being integrated into one-piece by forming a weld metal comprising a stainless steel with chemical composition that satisfies the relationship expressed by following formulas (1)-(4), and a method to produce a steel product by rolling said slab. Further, it is preferable to interpose an insert material between above stainless steel bloom and above protecting material in bonding process. 15≦Cr eq≦30   (1), 4≦Cr eq−Ni eq≦17   (2), Cr eq=Cr+1.5 Si+Mo−5 B   (3), Ni eq=Ni+30 (C+N)+0.5 Mn   (4) Herein, each symbol of a chemical element designates the content (mass %) of relevant chemical element contained in steel. Accordingly, it makes it possible to subject a stainless steel slab containing B to hot working without generating edge cracking, so as to be used as a source material of a neutron shielding container and a separator of a fuel cell.
    • 一种含有B的不锈钢板,其中保护材料通过含有0.3-2.5质量%的B的不锈钢开坯彼此连接在至少两个面上,通过形成焊接金属而形成一体,所述焊接金属包括 具有满足下述式(1)〜(4)所示关系的化学成分的不锈钢,以及轧制所述板坯来制造钢材的方法。 此外,优选在接合工序中将插入材料插入上述不锈钢开花和上述保护材料之间。 <?in-line-formula description =“In-line formula”end =“lead”?> 15 <= Cr eq <= 30(1),<?in-line-formula description =“In-line Formulas”end =“tail”?> <?in-line-formula description =“In-line Formulas”end =“lead”?> 4 <= CReq-Ni eq <= 17(2),<?in-line-formula description =“直线公式”end =“tail”?> <?in-line-formula description =“In-line Formulas”end =“lead”?> Cr eq = Cr + 1.5 Si + Mo-5 B ),<?in-line-formula description =“In-line Formulas”end =“tail”?> <?in-line-formula description =“In-line Formulas”end =“lead”?> Ni eq = Ni +30(C + N)+0.5 Mn(4)<?在线公式描述=“在线公式”end =“tail”?>这里,化学元素的每个符号表示含量(质量%) 钢中含有的相关化学元素。 因此,可以使含有B的不锈钢板坯进行热加工而不会产生边缘裂纹,从而用作中子屏蔽容器的源材料和燃料电池的隔板。