PORTABLE THERMOELECTRIC UNIT TO ADJUST BODY'S MICROCLIMATE
20220018579 · 2022-01-20
Assignee
Inventors
Cpc classification
F25D2400/26
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F25B2321/023
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F25B2321/0251
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
A portable thermoelectric unit has a face towards the user's body. The unit includes at least one flexible layer containing a non-woven fabric or a fabric and/or a polymeric membrane facing the body; a casing having a thermally active area and fixed to a distal face of the layer opposite the face so that the area is in thermal exchange with the layer towards the body; a thermoelectric heat pump device housed in the casing and configured to generate or absorb heat through the area and the layer; a fan housed in the casing and next to the device; a channel in the casing next to the device to receive an air flow generated by the fan in heat exchange with the device and to guide the air flow towards a distal opening from the fan; and a heat exchanger connected to the device on the opposite side of the area to receive the air flow towards the channel.
Claims
1: A portable thermoelectric unit having a face towards the body of a user, the unit comprising: at least one flexible layer comprising a non-woven fabric or a fabric and/or a polymeric membrane facing the body; a casing having a thermally active area and fixed to a distal face of the layer opposite the face towards the body so that the thermally active area is in thermal exchange with the layer towards the body; a thermoelectric heat pump device housed in the casing and configured to generate or absorb heat through the thermally active area and the layer; a fan housed in the casing and next to the thermoelectric device; a channel in the casing next to the thermoelectric device to receive a flow of air generated by the fan in heat exchange with the thermoelectric device and to guide the air flow towards a distal opening from the fan; a heat exchanger connected to the thermoelectric device on the opposite side of the thermally active area so as to receive the air flow generated by the fan towards the channel, wherein, between the thermally active area and the heat exchanger, only the heat exchanger is exposed to the air flow.
2: The unit according to claim 1, wherein the thermoelectric device adheres to the thermally active area.
3: The unit according to claim 1, wherein the thermally active area comprises a window facing a face of the thermoelectric device opposed to the heat exchanger.
4: The unit according to claim 1, wherein the casing is substantially flattened and oblong so as to keep the fan, the heat exchanger and an intake of the channel arranged side by side and substantially aligned.
5: The unit according to claim 1, wherein the casing is soft and elastically hand deformable and comprises a polymeric material based on silicone or thermoplastic polyurethane.
6: The unit according to claim 5, wherein the polymeric material comprises an isocyanate and a polyol.
7: The unit according to claim 5, wherein the channel comprises one or more spacing projections arranged in one or more cross sections of the channel to avoid or limit collapses of the channel in case of applied loads on the housing.
8: The unit according to claim 1, wherein the casing defines an intake opening to supply the fan, and the intake opening and the distal opening are arranged on a face of the housing opposite to the thermally active area.
9: A heat-resistant garment, comprising the unit according to claim 1, wherein the at least one flexible layer faces the body of the user and the casing is placed in a filling of the garment.
10: The garment according to claim 9, which is a suit for an automobile driver.
Description
BRIEF DESCRIPTION OF THE FIGURES
[0022] The present invention will be described below by means of some preferred embodiments, given as a non-limiting example, with reference to the attached drawings. These drawings illustrate different aspects and examples of the present invention and, where appropriate, structures, components, materials and/or similar elements in different figures are indicated by similar reference numbers.
[0023] In particular:
[0024]
[0025]
[0026]
[0027]
[0028]
DETAILED DESCRIPTION OF THE INVENTION
[0029] In
[0030] Furthermore, unit 1 comprises a heat sink 7 inside casing 3 and arranged between fan 5 and channel 6 to receive the air flow and increase the efficiency of the thermoelectric device 4. Heat sink 7 operates when the thermoelectric device cools the body; more generally, an air-solid heat exchanger, for example with fins, is associated with the thermoelectric device.
[0031] In particular, thermoelectric device 4 is a solid state heat pump, e.g. a Peltier cell, and is powered by direct current and, in a first polarity, a face 8 of thermoelectric device 4 facing the user absorbs heat and produces a cooling sensation; and in an opposite polarity, face 8 provides heat and produces a feeling of warming for the user. Consequently, a face of thermoelectric device 4 opposed to face 8 and arranged in heat exchange with heat sink 7 raises its temperature with respect to face 8 when the power supply is according to the first polarity; and such a face with heat exchanger 7 has a lower temperature than that of face 8 when the polarity is reversed.
[0032] Fan 5 is preferably a radial fan and generates an air flow having a predefined rectilinear direction that reaches channel 6 through heat sink 7 so as to increase the efficiency of thermoelectric device 4. Channel 6 extends in a substantially parallel direction to that of the air flow and opens into a discharge opening 9 distal from fan 5, preferably arranged at one end of casing 3.
[0033] Casing 3 is connected to flexible layer 2 according to different methods applied in the clothing manufacturing industry, for example, both disconnectable through e.g. velcro, snap buttons, laces or the like, and permanently, for example through adhesives, welds between polymeric materials or the like. In the diagram of
[0034] According to a preferred embodiment of the present invention, in particular when external flexible layer 10 is breathable or is a fabric, the cooling or heating action via face 8 requires an air flow through fan 5 such as to pass through flexible layer external 10 without particular difficulties or impact on the efficiency of thermoelectric device 4.
[0035] Flexible layer 2 towards the body can also have a weft and warp spaced apart so as to allow the transmission of heat through face 8 or require a modification in the area superimposed on face 8 to increase the efficiency of heat transmission. For example, the modification involves the application of openings and may include the opening of a window having for example the size of face 8 and, optionally, the application to the window of a fabric with a sufficiently spaced weft and warp or the like.
[0036] Face 8 can be completely exposed to flexible layer 2 through e.g. a window open in casing 3 or casing 3 comprises an area in contact with face 8 having openings arranged in a matrix or in another way and shaped in such a way as to allow the heat exchange between face 8 and the user's body.
[0037] According to a preferred embodiment of the present invention, both distal opening 9 and an intake opening 11 of fan 5 are either peripheral or opposite to face 8 and to flexible layer 2 so as to face towards a more free area and not occupied by the user's body and, therefore, more efficiently generate the air flow.
[0038] According to the embodiment of
[0039] Preferably casing 3, for example comprising two half-shells, is manufactured of an elastically hand deformable polymeric material, for example based on silicone or thermoplastic polyurethane. The latter also has a flame-resistant behavior and is suitable for applications within heat-resistant clothing such as a suit for a race car driver. When casing 3 is thus manufactured, it is important to always keep channel 6 clear even when, for example, the user presses against the casing with his whole body against a rigid wall. To counteract this load, one or more spacing projections 12 are arranged in channel 6, elongated in a transverse direction, preferably approximately perpendicular, to face 8.
[0040]
[0041]
[0042] Finally, it is clear that modifications or variations can be made to the portable thermoelectric unit according to the present invention without thereby departing from the scope of protection as defined by the attached claims.
[0043] For example, the unit is also applicable within sleeping bags, backs of backpacks, hammocks etc. with or without filling and with the flexible layer facing the body.
[0044] It is also possible that the user is an individual or an animal, for example a companion animal.
[0045] Based on these numerous applications, it is possible that the flexible layer 2 is not of fabric or non-woven fabric, but a continuous membrane, for example made by molding or laminating, of a polymeric material.
[0046] According to the embodiment illustrated in
[0047] Further applications in heat-resistant clothing include the use on board of firefighter suits and for personnel working in furnaces for metalworking or for foundry work.