F28F2225/04

Evaporator, cooling device, and electronic apparatus
09778709 · 2017-10-03 · ·

There is provided an evaporator including: a container including a top plate, and a bottom plate configured to be heated by an electronic component; a reinforcing member having a tubular shape extending from the bottom plate to the top plate, and configured such that a coolant is introduced inside the reinforcing member; a side opening formed in a side portion of the reinforcing member, and configured to allow the coolant to flow out to the bottom plate; and a discharge port provided in the top plate outside the reinforcing member, and configured to discharge vapor from the container, the vapor being generated by the coolant contacting the bottom plate.

VAPOR CHAMBER STRUCTURE
20170248374 · 2017-08-31 ·

A vapor chamber structure includes a first board body, a second board body and a working fluid. The first board body has a hooked section. The second board body has a hook section. The hook section and the hooked section contact and hook and connect with each other. The vapor chamber structure has no additional support structure, but is still free from the problem of thermal expansion. Also, the vapor chamber structure can be both thinned and lightweight.

HEAT PIPE WITH SUPPORT POST
20220035427 · 2022-02-03 ·

A heat pipe including a vapor line having a flow path through which a working fluid vapor flows, wherein the vapor line includes walls opposite to each other across the flow path, and a support post disposed in the flow path and spaced apart from the walls, wherein the walls are made of a plurality of metal layers stacked one over another, and the support post is made of a single seamless member having the same thickness as the walls.

FLAT HEAT PIPE WITH RESERVOIR FUNCTION
20170227296 · 2017-08-10 · ·

A flat heat pipe with a two-phase liquid-vapor working fluid, includes a first plate receiving thermal energy from a heat source, a second plate transferring thermal energy to a cold source, an edge to form a hermetically sealed enclosed internal space, a capillary structure interposed between the first and second plates, vaporization channels adjacent to the first plate, condensation channels adjacent to the second plate, a transfer passage placing the evaporation channels in communication with the condensation channels for the transport of vapor, and a collection channel forming a reservoir, in fluid communication with each condensation channel. The collection channel is adjacent to the second plate, such that the collection channel can pump and store the excess liquid phase.

VAPOR CHAMBER AND METHOD FOR MANUFACTURING THEREOF
20220312640 · 2022-09-29 ·

A vapor chamber includes a main body. The main body includes a base plate and a top plate. The base plate includes a plate body, a peripheral frame and a plurality of supporting pillars. The plate body has a surface. The peripheral frame is disposed on the surface of the plate body. The surface and the peripheral frame together define a first space. The first space is configured to accommodate a working fluid. The supporting pillars are located in the first space and are distributed on the surface of the plate body. The supporting pillars, the plate body and the peripheral frame are of an integrally-formed structure. The top plate abuts against the peripheral frame and the supporting pillars to seal up the first space.

Flat heat pipe structure
11454454 · 2022-09-27 · ·

A vapor chamber having a working fluid therein, includes a first and second casing, together forming an evaporator section having a plurality of first support structures therein, a condenser section having a plurality of second support structures therein, and a vapor flow chamber extending from the evaporator section to the condenser section is provided. The evaporator section further includes a plurality of extended heat transfer structures therein, contacting a first inner surface of the evaporator section of the first casing and being perpendicular thereto. The vapor flow chamber includes as least one evaporator vapor flow area. The first inner surface, second inner surface of the first and second casings, plurality of extended heat transfer structures, and at least one of a plurality of first support structures include evenly distributed and substantially the same thickness sintered powdered wick structures thereon. The plurality of first and second support structures supports the first and second casings of the vapor chamber.

Heat Exchanger Tube Spacing Device (Varinats)

A heat exchanger devices for operations in heavy liquid metal coolant mediums that ensures reliable fixation and spacing of heat exchanger tubes. A first option includes one supporting spacer grid 1 consisting of a cylindrical shell 2 and two or more tiers of plates 3 and 4 spaced apart at the preset gap, while the width of each plate lies within the plane which is parallel to the shell axis; ends of all plates are fixed to the shell such that plates of any tier are parallel to each other and located at the preset gap; plates of different tiers are criss-crossed at an angle of 60 degrees along the shell axles and fastened together at the crossing points. A second option includes three dividers which run through the cylinder axis; their ends are connected to the shell and are spaced at an angle of 60 degrees.

Heat exchanger with header contact regions for tubes support

The application relates to a heat exchanger having a block with ribs and rectangular tubes. The block is arranged between a first collecting box and a second collecting box. Each collecting box is closed off by a base which has eyelets for receiving the tubes, and a trough-shaped circulating section for receiving the collecting box extends along the edge of the base. The base has an elevated contact region on at least one end face for the tube which lies directly opposite the end face in order to allow a stable structure of the heat exchanger, collecting boxes, and block.

PHASE CHANGE MATERIAL-CARBON NANOTUBE-METAL SUBSTRATE COMPOSITES FOR THERMAL STORAGE AND CONTROL OF HEAT GENERATING DEVICES
20170257974 · 2017-09-07 ·

Phase change material-carbon nanotube-metal substrate composites and methods of making and using thereof are described herein. Such composites allow for thermal storage and passive or combined active/passive thermal control of heat generating sources, such as in electronic devices.

PLATE HEAT EXCHANGER, AND A METHOD OF MANUFACTURING A PLATE HEAT EXCHANGER
20220236016 · 2022-07-28 · ·

A plate heat exchanger and a method of manufacturing a plate heat exchanger are disclosed. The plate heat exchanger comprises plurality of plates, each comprising a central area with a corrugation of ridges and valleys extending between an upper level and a lower level. Each of four porthole areas comprises an annular flat area located at the upper or lower level. The plates comprise heat exchanger plates and an end plate. Each heat exchanger plate comprises four portholes through the respective porthole area. Each porthole area of the end plate is closed by a plate portion. A number of protrusions project from the annular flat area of the end plate to one of the lower level and the upper level. The protrusions, that project to the upper level, abut the annular flat area of the adjoining heat exchanger plate.