IP Library Granted Patent US 7,124,507
Granted Patent B1
US 7,124,507 · App. 10/665,266 · Granted Oct 24, 2006

Method of manufacturing a heat pipe wick with structural enhancement

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Quick Facts
Patent No.
US 7,124,507
App. No.
10/665,266
Granted
Oct 24, 2006
Kind
B1
Abstract

Heat pipe wick structure wherein a stout sheet of perforated material overlays a high performance wick material such as stainless steel felt affixed to a substrate. The inventive structure provides a good flow path for working fluid while maintaining durability and structural stability independent of the structure (or lack of structure) associated with the wick material. In one described embodiment, a wick of randomly laid ˜8 micron thickness stainless steel fibers is sintered to a metal substrate and a perforated metal overlay.

Claims (20)

1. A method of heat pipe wick manufacture comprising the steps of

positioning metal felt adjacent to a metal substrate,

positioning a porous metal exoskeleton member adjacent to the metal felt

whereby the metal felt is between the metal substrate and the porous metal exoskeleton member,

applying brazing material in a step selected from the group consisting of

applying brazing material between the metal felt and metal substrate,

applying brazing material between the metal felt and the porous metal exoskeleton member, and

applying brazing material between the metal felt and metal substrate as well as between the metal felt and the porous exoskeleton member

grit blasting elements selected from the group consisting of

the metal substrate,

the porous metal exoskeleton member, and

both the metal substrate and the metal exoskeleton member, and applying heat sufficient to cause the metal felt to adhere to both the porous metal exoskeleton member and the metal substrate wherein a temperature of 1100 C is attained by the metal felt, the metal substrate, and the porous metal exoskeleton member during the step of applying heat.

2. A method of heat pipe wick manufacture comprising the steps of

positioning metal felt adjacent to a metal substrate,

positioning a porous metal exoskeleton member adjacent to the metal felt

whereby the metal felt is between the metal substrate and the porous metal exoskeleton member,

grit blasting elements selected from the group consisting of

the metal substrate,

the porous metal exoskeleton member, and

both the metal substrate and the metal exoskeleton member, and applying heat sufficient to cause the metal felt to adhere to both the porous metal exoskeleton member and the metal substrate wherein a temperature of 1100 C is attained by the metal felt, the metal substrate, and the porous metal exoskeleton member during the step of applying heat.

Assignments (1)
CHANGE OF NAME Recorded Aug 29, 2017
From: SANDIA CORPORATION
To: NATIONAL TECHNOLOGY & ENGINEERING SOLUTIONS OF SANDIA, LLC
Reel/Frame 043713/0394 →