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Heat exchanger with annular inlet/outlet fitting

  • US 9,829,256 B2
  • Filed: 02/06/2014
  • Issued: 11/28/2017
  • Est. Priority Date: 02/08/2013
  • Status: Active Grant
First Claim
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1. A heat exchanger comprising:

  • at least a first enclosed fluid flow passage and a second enclosed fluid flow passage, wherein each of the fluid flow passages is defined between a first wall and a second wall;

    first and second communication openings provided in the first wall of each of the first and second flow passages, wherein the first communication opening of the first flow passage aligns with the first communication opening of the second flow passage and the second communication opening of the first flow passage aligns with the second communication opening of the second flow passage;

    an inlet/outlet opening provided in the second wall of the first flow passage, wherein the inlet/outlet opening is aligned with the first communication opening in the first wall of the first flow passage;

    an inlet/outlet fitting received in the inlet/outlet opening, wherein the inlet/outlet fitting has an inner tubular passage surrounded by an outer annular passage, wherein the inner tubular passage is defined by an inner cylindrical tube having a first end and a second end, wherein the inlet/outlet fitting further comprises an outer annular ring having a first end and a second end, wherein the outer annular ring surrounds the inner cylindrical tube and is connected thereto, and wherein the outer annular passage is defined between the inner cylindrical tube and the outer annular ring;

    wherein the second end of the outer annular ring has a planar sealing surface surrounding the outer annular passage, and wherein the planar sealing surface of the outer annular ring is sealingly connected to an area of the second wall of the first flow passage surrounding the inlet/outlet opening, such that the first flow passage is in fluid flow communication with the outer annular passage of the inlet/outlet fitting;

    wherein the second end of the inner cylindrical tube extends through the first flow passage and is in sealed fluid flow communication with the second flow passage, such that the second flow passage is in fluid flow communication with the inner tubular passage of the inlet/outlet fitting;

    wherein the first and second flow passages are defined by respective first and second plate pairs, each of the plate pairs comprising a pair of plates sealed together at their edges, and wherein the first plate includes the first wall and the second plate includes the second wall, and wherein the inlet/outlet opening is substantially concentrically aligned with the first communication openings in each of the first and second flow passages;

    wherein the planar sealing surface of the outer annular ring has an annular shape, with an outer peripheral edge and an inner peripheral edge, wherein a diameter of the planar sealing surface at the outer peripheral edge is greater than a diameter of the inlet/outlet opening, and wherein a diameter of the planar sealing surface at the inner peripheral edge is less than the diameter of the inlet/outlet opening;

    wherein the second end of the outer annular ring comprises a shoulder located at the inner peripheral edge of the planar sealing surface and outwardly from the outer annular passage, wherein the shoulder has a diameter which is smaller than the diameter of the inlet/outlet opening, and is received inside the inlet/outlet opening; and

    wherein the diameter of the shoulder differs from the diameter of the inlet/outlet opening by an amount which is at least as great as a stack-up tolerance variation of the heat exchanger.

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