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    • 3. 发明专利
    • Tube base structure of heat exchanger and its manufacturing method
    • 热交换器的管状结构及其制造方法
    • JP2005201570A
    • 2005-07-28
    • JP2004009665
    • 2004-01-16
    • Denso Corp株式会社デンソー
    • UOZUMI NOBUYUKI
    • F28D1/053F28F9/18
    • F28F9/182B21D41/02B21D53/085F28D1/05366
    • PROBLEM TO BE SOLVED: To provide a tube base structure of a heat exchanger and its manufacturing method having superior durability near a base part while reducing circulation resistance of the fluid inside of a tube.
      SOLUTION: In this tube base structure of the heat exchanger wherein a longitudinal end part 111a of the tube 111 having a flat square-shaped cross section, is fitted in a tube hole 121a formed on a header tank 120, and joined at a contact part 131 where the tube 111 and the header tank 120 are kept into contact with each other, the contact part 131 of the tube 111 and a minor side 111b of the flat square-shaped cross section near the contact part are formed into the circular arc shape projecting to an outer side. The circular arc shape is preferably formed in expanding an opening of the tube 111.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:提供一种热交换器的管底结构及其制造方法,其在基部附近具有优异的耐久性,同时降低管内流体的循环阻力。 解决方案:在热交换器的管底结构中,其中具有平的方形截面的管111的纵向端部111a装配在形成在集水箱120上的管孔121a中,并且连接在 管111和集管箱120彼此保持接触的接触部131,管111的接触部131和接触部附近的平坦的正方形截面的副侧111b形成为 向外侧突出的圆弧形状。 圆弧形状优选地形成为扩张管111的开口。版权所有(C)2005,JPO&NCIPI
    • 7. 发明专利
    • Manufacture of fin tube type heat exchanger
    • 翅片式热交换器的制造
    • JPS6127131A
    • 1986-02-06
    • JP14792784
    • 1984-07-17
    • Matsushita Refrig Co
    • KATO KAORUTANNO SATOSHI
    • B21D53/08F28F1/32F28F9/26
    • F28F1/32B21D53/085
    • PURPOSE:To decrease the man-hour, etc. by inserting an elliptical type refrigerant pipe bent to a U-shape, into an elliptical type fitting hole of a plate-shaped fin, and subsequently, expanding the refrigerant pipe, and also forming the opening part to a round shape. CONSTITUTION:A U-shaped refrigerant pipe 13 is inserted into a fitting hole 11 of many plate-shaped fins 12 provided in parallel at prescribed intervals. Subsequently, the refrigerant pipe 13 is expanded and made to adhere tightly and fixed to the plate-shaped fin 12. Also, an opening part 15 of the refrigerant pipe 13 is formed to a round shape, and the pipe arrangement is executed by a bend. According to this method, the man-hour can be decreased by using only one connecting part of the bend, and the bend is a round pipe, therefore, crushing and wrinkles can be prevented. Accordingly, an increase of a pressure loss can be prevented.
    • 目的:通过将弯曲成U字形的椭圆形制冷剂管插入板状翅片的椭圆形安装孔中,随后扩大制冷剂管,从而减少工时等,并且还形成 开口部分呈圆形。 构成:U形制冷剂管13插入到以规定间隔平行设置的许多板状翅片12的装配孔11中。 随后,制冷剂管13膨胀并紧密地粘附并固定在板状翅片12上。此外,制冷剂管13的开口部分15形成为圆形,管道装置由弯曲部 。 根据该方法,通过仅使用弯曲部的一个连接部,能够减少工时,弯曲为圆管,因此能够防止破碎和起皱。 因此,可以防止压力损失的增加。
    • 8. 发明专利
    • Apparatus for taking out core in continuous assembling device for heat exchanger core
    • 在换热器核心连续装配装置中采用核心装置
    • JPS6125733A
    • 1986-02-04
    • JP14137284
    • 1984-07-10
    • Nippon Denso Co Ltd
    • IWASE TAKATOSHINAKAGAWA AKIRA
    • B23P21/00B21D53/08
    • B21D53/085Y10T29/49378Y10T29/5188Y10T29/53113Y10T29/53365Y10T29/53539
    • PURPOSE:To automatically effect continuous assembling and taking-out of a core by lifting a core assembly upwardly of a cylic chain via vertically movable rails and holding said assembly with a sampling device between said vertically movable rails to sample it to the outside. CONSTITUTION:A core assembly 13 continuously assembled at a high speed is sent out from front ends of vertically fixed rails 12, 7 via cyclic chain 8, and received by vertically movable rails 25, 26. Thereafterm the assembly is lifted upwardly of the cyclic chain 8 by elevating both the movable rails 25, 26 by means of an elevator 27, and held by a movable compression pawl 38 of a core sampling device by making use of the movement of said pawl in an M1 direction, whereby the assembly is sampled from between the vertically movable rails 25, 26. Thereafter, the vertically movable rails 25, 26 return to a position aligned with the vertically fixed rails 12, 7. Thus, a core assembly can be taken out without interrruption of continuous assembling operation for a heat exchanger core.
    • 目的:通过垂直移动的导轨将一个铁芯组件向上提升到一个环形链条,并通过一个采样装置将所述组件固定在所述可垂直移动的导轨之间以将其采样到外部,来自动实现连续组装和取出芯体。 构成:以高速连续组装的芯组件13经由循环链条8从垂直固定轨道12,7的前端发出,并被垂直移动的轨道25,26接收。此后,组件向上提升到循环链条 通过借助于升降机27升高两个活动导轨25,26,并且通过利用所述棘爪在M1方向上的移动来将芯取样装置的可移动压缩爪38保持起来,从而将组件从 之后,可垂直移动的轨道25,26返回到与竖直固定的轨道12,7对准的位置。因此,可以取出芯组件而不会中断连续组装操作以进行热量 交换机核心。
    • 10. 发明专利
    • Manufacture of heat exchanger equipped with plate-shaped fin
    • 热交换器的制造与板式熔接配套
    • JPS5910428A
    • 1984-01-19
    • JP11833782
    • 1982-07-09
    • Hitachi Ltd
    • MATSUMOTO TOSHIOYAMAKAWA IKUO
    • B21D53/08F28F1/32
    • B21D53/085
    • PURPOSE:To improve operating efficiency remarkably, by bending the open end of a pipe made longer, and welding the open end to that of a pipe made shorter, in a titled manufacture which connects the open ends of plural pipes made to penetrate fins. CONSTITUTION:Small pieces of fins 4 are arranged at wide distances L1, and after spacing a bending distance L2, the following fins 4 are arranged at narrow distances L3, thus the fins 4 are arranged in series to form a prescribed arrangement by repeating said work hereafter. Next, heat exchanging pipes 5, 6 are made to penetrate the fins 4, and the pipe 5, 6 are tightly fixed to the fins 4 by inserting an expanding device into the pipes 5, 6 and expanding them. Thereafter, the pipes 5, 6 are cut to have different lengths respectively, and are bent at the fin-less part to form meandering shapes as shown by the figure. Next, the side of an open end 5a of each longer pipe 5 is bent into an arc-shape to be opposite to an open end 6a of the other shorter pipe 6, and both open ends 5a, 6a are welded together to communicate them each other. Thus, both the number of parts and the number of welding points are reduced.
    • 目的:通过弯曲更长时间的管道的开口端,并且将开口端焊接成较短的管道,在连接形成为穿透翅片的多个管道的开口端的标题制造中显着提高操作效率。 构成:小片散热片4被布置成宽距离L1,并且在间隔弯曲距离L2之后,以下的散热片4布置成较窄的距离L3,因此散热片4通过重复所述工作而串联形成规定的布置 此后。 接下来,使热交换管5,6穿过翅片4,并且通过将扩张装置插入管5,6并将它们扩展而将管5,6牢固地固定到翅片4。 此后,将管5,6切割成具有不同的长度,并且在无翅片部分处弯曲以形成如图所示的曲折形状。 接下来,每个较长管5的开口端5a的侧面弯曲成与另一个较短管6的开口端6a相对的圆弧形状,并且两个开口端部5a,6a被焊接在一起以使它们各自连通 其他。 因此,部件的数量和焊接点的数量都减少了。