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    • 4. 发明授权
    • Corrosion resisting steel pipe and method of manufacturing same
    • 耐腐蚀钢管及其制造方法
    • US4883292A
    • 1989-11-28
    • US310003
    • 1989-02-10
    • Takanori Kuroki
    • Takanori Kuroki
    • F16L58/18
    • F16L58/182F16L58/181
    • This invention relates to a corrosion resisting steel pipe having a kind of double construction in which an outer carbon steel pipe member is lined with respect to its whole length with a corrosion resisting material consisting of Ti, and a method of manufacturing the same, and more particularly to a doubly-constructed corrosion resisting steel pipe of a unit length consisting of an outer pipe member composed of an end tube and a general tube joined to the end tube, a short tube of a Ti metal attached to an end portion of the end tube metallurgically by the diffusion welding, and an inner pipe member of a Ti metal attached to the whole of the inner surface of the outer pipe member including the inner surface of the short tube of a Ti metal joined to the end tube, the inner pipe member of a Ti metal being seal-welded with an Ti metal at the end portion of the end tube, a pipe of a predetermined length obtained by connecting the steel pipes of a unit length being sealed at its joint portion with a Ti metal so that the Ti metal overlaps the outer pipe members, the steel pipe according to the invention thus having reliably high sealability and corrosion resistance; and a method of manufacturing such a corrosion resisting steel pipe.
    • 本发明涉及一种具有双重结构的耐腐蚀钢管,其中外碳钢管构件相对于其整个长度与由Ti组成的耐腐蚀材料一起排列,并且其制造方法更多 特别涉及一种单元长度的双重构造的耐腐蚀钢管,该管道由外管件构成,外管件由端管和连接到端管的总管组成,附接到端部端部的短管Ti金属 通过扩散焊接冶炼的管,以及附着在外管构件的内表面的整体上的Ti金属的内管构件,其包括接合到端管的Ti金属的短管的内表面,内管 在端管的端部用Ti金属密封焊接的Ti金属构件,通过连接在其接合端口处被密封的单位长度的钢管而获得的预定长度的管 与Ti金属离子,使得Ti金属与外管构件重叠,因此根据本发明的钢管具有可靠的高密封性和耐腐蚀性; 以及制造这种耐腐蚀钢管的方法。
    • 7. 发明授权
    • Heat exchanger structure and method of manufacturing same
    • 换热器结构及其制造方法
    • US4677724A
    • 1987-07-07
    • US741535
    • 1985-06-05
    • Takanori Kuroki
    • Takanori Kuroki
    • B23K20/00B22D11/04B22D11/055B22F3/14B22F7/08B23K20/02B23P15/26C21B7/16F28F1/40F28F13/00
    • B23K20/021B22D11/055B23P15/26F28F1/40F28F13/00B23K2201/14F28F2275/02Y10T29/49393
    • This invention relates to a heat exchanger structure in which a passage for the cooling or heating fluid is formed. The inner surface of the passage is roughened, and provided with a plurality of lengthwise-extending, inwardly-projecting, linear or spiral, continuous or intermittent fins. The cooling or heating fluid is passed through the passage to promote an increase in the heat exchange rate. In order to manufacture such a heat exchanger structure, a pipe provided on its inner surface with a plurality of lengthwise-extending, inwardly-projecting, continuous or intermittent fins is inserted between a plurality of complementary members to combine these parts in the shape of a mold. The exposed portions of the joint surfaces of these complementary members and such portions of the complementary members and pipe are then hermetically vacuum-sealed. The resultant complementary members and pipe are diffusion-welded unitarily by the hot isotropic pressure welding. A nickel plate or a nickel alloy plate or a stainless steel plate, which is laminated on the portion of the assembled parts which requires to have the wear resisting properties is also diffusion-welded at the same time.
    • 本发明涉及一种热交换器结构,其中形成用于冷却或加热流体的通道。 通道的内表面被粗糙化并且设置有多个纵向延伸的向内突出的线性或螺旋形连续或间断的翅片。 冷却或加热流体通过通道以促进热交换率的增加。 为了制造这种热交换器结构,在其内表面上设置有多个纵向延伸的向内突出的连续或间断的翅片的管道插入在多个互补构件之间,以将这些部件组合成 模子。 然后将这些互补构件的接合表面的暴露部分和互补构件和管的这些部分密封地真空密封。 所得互补构件和管道通过热各向同性压力焊接进行一体扩散焊接。 叠层在组装部件上需要具有耐磨性能的镍板或镍合金板或不锈钢板也同时进行扩散焊接。