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    • 1. 发明申请
    • Welded heat exchanger with grommet construction
    • 具有索环结构的焊接换热器
    • US20010023536A1
    • 2001-09-27
    • US09845582
    • 2001-04-30
    • TransPro, Inc.
    • Marco LambertJoseph S. JuGer
    • F28F007/00F28F009/02B23P015/26B21D039/06B21D053/02B21D053/04B21D053/06B21D053/08
    • F28F9/14B23P15/26F28D1/05366F28F9/02Y10T29/49373Y10T29/49393
    • A heat exchanger comprising a core assembly having a plurality of tubes connected by an array of fins, with ends of the tubes extending from the fin array on at least one side of the core assembly and resilient, polymeric grommets disposed around the tube ends. The heat exchanger includes a tank portion for receiving fluid entering or leaving the core assembly and a header portion having openings to receive the tube ends and grommets to create a sealed, fluid-tight tube-to-header joint. There is provided a reinforcing member across the opening of the tube ends extending from the tube end opening to the portion of the tube end around which the grommet is disposed without substantially extending into the fin array portion of the core assembly. The header portion comprises a substantially planar base having openings therein with side and end walls extending out of the plane of the base and connected by one or more fluid-tight welds to the tank portion. The side and end walls extend a distance sufficient to dissipate heat generated in making the welds and keep the heat generated from adversely affecting sealing ability of the grommets when the welds are made between the tank and header portion with the tube ends and grommets received in the header portion openings.
    • 一种热交换器,包括具有通过翅片阵列连接的多个管的芯组件,所述管的端部从所述芯组件的至少一侧上的所述翅片阵列延伸并且围绕所述管端设置的弹性聚合索环。 热交换器包括用于接收进入或离开芯组件的流体的容器部分和具有用于接收管端部和索环的开口的集管部分,以形成密封的,流体密封的管至头部接头。 在管端部的开口处设置有加强构件,该端部从管端开口延伸到管末端的部分,围绕孔端部的部分大致延伸到芯组件的翅片阵列部分中。 集管部分包括具有开口的基本上平坦的基部,其中侧壁和端壁延伸出基部的平面并且通过一个或多个流体密封的焊缝连接到罐部分。 侧壁和端壁延伸足够的距离,以消散在制造焊缝时产生的热量,并且当焊接在容器和集管部分之间形成时,保持产生的热量对密封圈的密封能力产生不利影响,而管端部和索环接收在 头部开口。
    • 3. 发明申请
    • Heat exchanger
    • 热交换器
    • US20010010262A1
    • 2001-08-02
    • US09799456
    • 2001-03-06
    • Shuji Komoda
    • F28F013/18F28F019/02F28F019/00F28F003/00B23P015/26B21D039/06B21D053/02B21D053/04B21D053/06B21D053/08
    • F28F21/084F28D9/0043F28D2021/0089F28F19/004F28F19/06
    • Oil passages 113 through which oil passes are formed with plates 111, 112 composed of aluminum or an aluminum alloy in an oil cooler, according to the present invention, that is a heat exchanger with an extended life. Moreover, fins 123a composed of a material having a corrosion potential more negative than those of the plates 111, 112 are arranged in cooling water passages 123 through which cooling water, for exchanging heat with oil, passes. A sacrificial corrosive layer 301 having a corrosion potential more negative those of the plates 111, 112 and the fins 123a is formed on each of the surfaces on the sides of the cooling water passages 123 of the plates 111, 112. As a result, the sacrificial corrosive layer 301 is preferentially corroded, and not only the plates 111, 112 but also the fins 123a can be protected. Consequently, the pressure-proof strength of the oil cooler can be maintained, and the product life can be improved.
    • 油通过的油道113在油冷却器中由铝或铝合金构成的板111,112形成,这是本发明的长寿命的热交换器。 此外,由具有比板111,112的腐蚀电位更负的材料构成的散热片123a布置在冷却水通道123中,与冷却水交换的冷却水通过该通道123通过。 在板111,112的冷却水通道123的侧面上的每个表面上形成具有与板111,112和翅片123a的腐蚀电位更为相反的腐蚀电位的牺牲腐蚀层301。结果, 牺牲腐蚀层301被优先腐蚀,不仅可以保护板111,112,还可以保护翅片123a。 因此,可以保持油冷却器的耐压强度,并且可以提高产品寿命。
    • 5. 发明申请
    • Method of making an air preheater rotor
    • 制造空气预热器转子的方法
    • US20020088603A1
    • 2002-07-11
    • US10093716
    • 2002-03-07
    • Robin B. RhodesJon R. CowburnKurt M. Fierle
    • F23L015/02F28D017/00F28D019/00B23P015/26B21D039/06B21D053/02B21D053/06B21D053/08
    • F28D19/044Y10T29/49345Y10T29/49373Y10T29/49778
    • A method for constructing a rotor of an air preheater having a plurality of diaphragm plates dividing the rotor into a number of wedge-shaped compartments. Each compartment includes compartment components such as a rotor shell plate, a hot end rotor angle, a cold end rotor angle, and one or more stay plates and means for locating at least a portion of each of the components within the compartment. The diaphragm plates are manufactured by marking at least one index location associated with each compartment component on each diaphragm plate blank utilizing a template identifying the index locations and forming an opening at each index location. Each compartment is assembled by positioning a first diaphragm plate adjacent to a second diaphragm plate and locating each compartment component between the adjacent diaphragm plates by engaging the locating means of the component in an associated opening in one of the diaphragm plates. The locating means may comprise at least one tab extending from each of the sides of the compartment components. The tabs are inserted into the associated opening in one of the diaphragm plates to locate the component.
    • 一种用于构造空气预热器的转子的方法,所述空气预热器具有将所述转子分成多个楔形隔室的多个隔膜板。 每个隔室包括隔室部件,例如转子壳板,热端转子角,冷端转子角和一个或多个止动板以及用于定位隔室内的每个部件的至少一部分的装置。 通过使用识别索引位置的模板和在每个索引位置处形成开口来标记在每个隔膜板坯件上与每个隔室部件相关联的至少一个索引位置来制造隔膜板。 通过将第一隔膜板定位成邻近第二隔膜板并将每个隔室部件定位在相邻隔膜板之间,通过将部件的定位装置接合在其中一个隔膜板中的相关开口中来组装每个隔室。 定位装置可以包括从隔室部件的每个侧面延伸的至少一个突出部。 将突片插入到其中一个隔膜板中的相关联的开口中以定位该部件。
    • 9. 发明申请
    • Heat exchanger and manufacturing method thereof
    • 换热器及其制造方法
    • US20030121647A1
    • 2003-07-03
    • US10320598
    • 2002-12-17
    • Jin-Sug Roo
    • F28D001/00F28F001/42B23P015/26B21D039/06B21D053/02B21D053/04B21D053/06B21D053/08
    • B23K1/0012B23K2101/14F28D1/0477F28F1/32Y10T29/49373
    • A heat exchanger and manufacturing method thereof, include a plurality of radiating pins which are aligned at a predetermined interval and a plurality of refrigerant tubes which are positioned to be penetrated among the radiating pins and through which refrigerant passes. In addition, the refrigerant tubes are mutually connected by the connection pipes, inflow/discharge pipes are respectively connected with the refrigerant tubes of one side, and connection portions of the refrigerant tubes and connection pipes and connection portions of the inflow/discharge pipes and the refrigerant tubes are simultaneously joined by a melting processing. Accordingly, the heat exchanger can reduce a manufacturing process and cost, by simultaneously joining a connection portion of the refrigerant tubes and connection pipes and connection portion of the inflow pipe and discharge pipe, by a melting processing.
    • 一种热交换器及其制造方法,包括以规定间隔排列的多个辐射销和多个制冷剂管,所述多个制冷剂管被定位成穿过散热销,制冷剂通过该制冷剂管。 此外,制冷剂管通过连接管相互连接,流入/排出管分别与一侧的制冷剂管连接,制冷剂管和连接管的连接部分和流入/排出管的连接部分和 制冷剂管通过熔融加工同时连接。 因此,热交换器可以通过熔融处理同时连接制冷剂管的连接部分和连接管以及流入管和排出管的连接部分来减少制造过程和成本。