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    • 2. 发明专利
    • Spiral fin/tube type heat exchanger
    • 螺旋式/管式热交换器
    • JP2003004390A
    • 2003-01-08
    • JP2002102292
    • 2002-04-04
    • Modine Mfg Coモーディーン・マニュファクチャリング・カンパニー
    • BOSCH DANIEL JHAASCH JAMES T
    • F01M5/00F01M11/03F28D7/04F28D9/04F28F1/02F28F1/12F28F3/06
    • F28D9/04F01M5/00F28D7/04F28F1/022F28F1/126
    • PROBLEM TO BE SOLVED: To provide a heat exchanger in which heat transfer characteristics and pressure drop characteristics are improved, the number of components is decreased, and the degree of freedom is enhanced in the shape and dimensions.
      SOLUTION: A heat exchanger (12A, 12B, 12C, 12D) has an outer circumference (112, 156, 58', 366) isolated from the central axis and comprises an inlet (42, 378) and an outlet (44, 380) for first fluid flow, a pair of parallel tube segments (52, 53) wound around the central axis to form a plurality of alternating concentric coils (58), an inlet (46) and an outlet (48) of second fluid flow for the heat exchanger, and a structure (50) for encapsulating the tube segments in order to hold the second fluid in the heat exchanger when the second fluid flows from the inlet to the outlet.
      COPYRIGHT: (C)2003,JPO
    • 要解决的问题:为了提供传热特性和压降特性提高的热交换器,部件数量减少,并且其形状和尺寸的自由度增加。 解决方案:热交换器(12A,12B,12C,12D)具有与中心轴线隔离的外圆周(112,156,58',366),包括入口(42,47)和出口(44,48) 对于第一流体流动,围绕中心轴线缠绕的一对平行管段(52,53),以形成多个交替的同心线圈(58),第二流体流的入口(46)和出口(48),用于 热交换器和用于封装管段的结构(50),以便当第二流体从入口流到出口时,将第二流体保持在热交换器中。
    • 8. 发明专利
    • HEADER AND TANK CONSTRUCTION FOR A HEAT EXCHANGER
    • CA2131869A1
    • 1995-04-29
    • CA2131869
    • 1994-09-12
    • MODINE MFG CO
    • VOSS MARK GSAPERSTEIN ZALMAN PKOTTAL PETER CHUGHES GREGORY GANDERSON ROBERT LHAASCH JAMES T
    • F01P3/18F28D1/053F28F9/02F28F9/04F25B39/04
    • Restrictions on the major dimension of flattened tubes used in heat exchangers employing oval shaped, two piece headers/tank assemblies can be minimized in a construction including a plurality of flattened tubes (14) each having a minor dimension and a major dimension transverse thereto and extending in spaced parallel relation. Fins (16) are in heat exchange relation with the tubes (14) and a pair of spaced, parallel, elongated headers/tank assemblies (10, 12) are provided between which the tubes (14) extend. At least one of the headers/tank assemblies (10, 12) is a multiple piece header/tank assembly including a header piece (20) and a separate tank piece (22). The header piece (20) is elongated and provided with a plurality of slots (28) sized to receive ends of the tubes (14) with the tube major dimensions being generally transverse to the direction of elongation of the header piece (20). The header piece further includes a peripheral flange (24). The tank piece (22) is elongated, concave and has a peripheral flange (44) nested within the peripheral flange (22) of the header piece (20). The two are bonded together to form a unitary tubular structure and the peripheral flange (42) of the tank piece has alternating crests (52) and valleys (50) with the valleys (50) having a width greater than the tube minor dimension and being aligned with the tube ends. As a consequence, a flow to the tubes (14) is not obstructed by the peripheral flange (42) on the tank piece because of the valleys (50) therein.
    • 9. 发明专利
    • BR9703366A
    • 1998-10-27
    • BR9703366
    • 1997-05-21
    • MODINE MFG CO
    • HAASCH JAMES T
    • F01M5/00F01M11/03F01P5/00F28F9/02F28F9/04F28F3/06
    • An oil cooler (16) including an oil cooler housing (22) and a coolant hose connection (24) for transferring a coolant flow between a coolant hose (28) and the oil cooler housing (22), wherein the hose connection (24) changes the direction of the coolant flow through a predetermined angle after the coolant flow has entered the hose connection (24). The hose connection (24) includes a first opening (60) in the oil cooler housing (22) and a unitary piece of tubing (30) having first and second ends (32) and (34), a coolant opening (38) formed intermediate the ends (32) and (34) to transfer a coolant flow therethrough. The second end (34) is adapted for connection with the coolant hose (28) to transfer a coolant flow therewith. A flange (42) is formed around one of the coolant opening (38) and the first opening (60) and received in the other of the coolant opening (38) and the first opening (60).