EP1519646A2

Use of graphite foam materials in pumped liquid, two phase cooling, cold plates

Abstract

An improved cooling system provides cooling away from the surface of electrical and electronic components, by providing an available heat transfer surface area many times greater than that of a convoluted fin structure. The component to be cooled is in thermal contact with a cold plate evaporator device, and a graphite material is associated with the cold plate device. Refrigerant is circulated through the graphite material and the cold plate evaporator device, and the liquid refrigerant is at least partially evaporated by the heat generated by the component. Due to the open nature of the graphite material, the permeability of liquids and vapors is high, allowing for low pressure loss while still maintaining sufficient two phase flow to carry heat away from the electronics.

EP1519646A2, drawing sheet 1
Sheet 1 of 2

Term

Term ended

Projected expiry passed 24 September 2024, 2 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

20 claims: 2 independent, 18 dependent

  1. 1
    An improved cold plate structure comprising:at least one component generating heat and required to be cooled;at least one cold plate evaporator device in thermal contact with the at least one component;a thermally conductive graphite material associated with the at least one cold plate evaporator device for providing increased surface area for heat transfer within the cold plate structure;and a vaporizable liquid refrigerant capable of being circulated to the at least one cold plate evaporator device and coming into contact with the graphite material.
  2. 12
    A method for cooling one or more electrical or electronic components generating heat and required to be cooled, the method comprising the steps of:locating at least one cold plate evaporator device in thermal contact with the one or more electrical or electronic components;locating a thermally conductive graphitc material proximate to the at least one cold plate evaporator device for providing increased surface area for hcat transfer within the cold plate structure;and providing a vaporizable liquid refrigerant capable of being circulated to the at least one cold plate evaporator device, whereby the refrigerant is at least partially evaporated by the heat generated by the one or more electrical or electronic components.