The present invention relates to a heating device, preferably for vehicle seats, and a vehicle seat comprising such a heating device.
Textile heating elements having heating elements made of carbon fibers have been known for a long time and can be used to heat vehicle seats. Typically, such heaters have strip-shaped electrodes which are attached to a substrate material. A plurality of heating elements are arranged as heating resistors between said electrodes and are electrically contacted by the electrodes.
Such heating elements are expensive due to the electrodes and their geometric design is limited.
Electrical contact between the heating elements and electrodes has so far been ensured by typically using a plurality of electrode elements per electrode, fixing said electrode elements as an electrode tape as a strip on the substrate material. Due to the high costs associated with the hitherto necessary use of a plurality of electrodes to ensure reliable electrical contact, heating devices are desirable when they can be produced with less economic effort and still ensure reliable electrical contact. The requirement for a plurality of electrodes also limits flexibility in vehicle seat design.
An object of the invention can therefore be seen in providing a heating device and a vehicle seat comprising such a heating device, which are characterized by lower manufacturing costs and are still reliable with regard to the electrical contact of carbon fiber heating resistors. In addition, the heating device should, if possible, be designed to be flexible or be able to be easily relocated in vehicle seats.
One aspect of the invention relates to a heating device (1), comprising
It is advantageous when the electrode element (4a, 4b) and the heating element (6a, 6b, 6c) intersect at least twice in order to achieve contact between the two elements at multiple points in the contact zone (5a, 5b) and to increase the contact surface overall that is common to both elements.
What is desirable for the flexibility of the heating element is
Also desirable for the flexibility of the heating device is
What is desirable for a homogeneous heating effect is
What can have a cost-saving effect,
It is advantageous for the homogeneity of the heating effect when a plurality of contact zones is provided between at least one electrode element or an electrode on the one hand and a plurality of heating elements along the electrode element on the other hand.
Efficient production results when at least one heating element has only two contact zones, preferably in the region of its respective ends, this preferably applying to at least 50% of all heating elements provided on a substrate.
Reliable strain relief results when at least one electrode element (4a, 4b) runs in a meandering shape in the at least one contact region (5a, 5b) along a longitudinal direction of the respective heating element (6a, 6b, 6c).
Cost-effective production results when exactly two electrode elements (4a, 4b) are attached to the substrate (2) in a heating device and which comprise a plurality of heating elements, particularly carbon fiber heating resistors (6a, 6b, 6c), wherein it is provided that the exactly two electrode elements (4a, 4b) attached to the substrate are electrically conductively connected to the plurality of heating elements (6a, 6b, 6c) over a respective contact region (5a, 5b).
Reliable strain relief results when the at least one electrode element (4a, 4b) in a heating device runs at least approximately in a straight line or at least approximately sinusoidally shape in a section adjoining the at least one contact region (5a, 5b).
Reliable strain relief also results when, in a heating device, at least one electrode element (4a, 4b) is attached to the substrate (2) over at least one contact region (5a, 5b).
Inexpensive production results when, in a heating device, at least one electrode element (4a, 4b) is sewn onto the substrate (2) over at least one contact region (5a, 5b).
A good current-carrying capacity is obtained when at least one electrode element (4a, 4b) in a heating device consists of copper or an alloy.
A particularly fail-safe construction results when at least one electrode element (4a, 4b) in a heating device is formed by a plurality of filaments, each of which consists of a copper alloy, wherein
A particularly energy-efficient construction results from a heating device comprising a power source and/or a transformer which are connected to the at least two electrodes (4a, 4b) attached to the substrate and which provide a nominal voltage of 48 volts.
A further aspect of the invention relates to a vehicle seat (10), comprising a seat cushion (12), a backrest (14) and a heating device (1) according to the invention, wherein it is provided that that the substrate (2), at least two electrode elements (4a, 4b) or electrodes attached to the substrate (2) and at least one heating resistor (6a, 6b, 6c) having carbon fiber components are embedded in the seat cushion (12) and/or in the backrest (14).
It is also conceivable for the heating device to be used in further components of a vehicle or a passenger vehicle. In practice, it can be the case, for example, that the heating device is designed as part of a steering wheel. The heating device can also be designed as part of further components of a vehicle or passenger vehicle in order to optionally control the temperature of an interior of the respective vehicle or passenger vehicle.
At least one heating element is part of the heating device. In preferred embodiments, however, the heating device can comprise a plurality of carbon fiber heating resistors which run between the at least two electrodes fastened to the substrate or which are arranged between the at least two electrodes attached to the substrate. The at least one heating element can run with a plurality of reversals or curves between the at least two electrodes, whereby the heating output of the heating device can be improved compared to a straight course of the at least one heating element.
The at least two electrodes attached to the substrate are electrically conductively connected to a respective heating element over a respective contact region. Particularly, it can be the case here that a respective heating element rests on the at least two electrodes attached to the substrate. Embodiments in which a respective heating element is in surface contact with the at least two electrodes attached to the substrate have thus also proven successful. If the heating device is designed as a part of a vehicle seat described below, it is possible that a respective heating element is located above the at least two electrodes attached to the substrate with regard to a side of the vehicle seat facing the user. The at least two electrodes attached to the substrate can thus be arranged between the substrate and the at least one heating element.
At least one electrode has a defined course in at least one contact region, from which defined course the at least one electrode increases in area along a longitudinal direction of the respective heating element. This makes it possible to ensure in a simple manner that an electrical connection between the electrodes and a respective heating element is formed with a high degree of safety and reliability even with a reduced number of electrodes compared to the prior art. Embodiments have proven successful in which the at least one electrode runs in a meandering shape or meandering manner in the at least one contact region along a longitudinal direction of the respective heating element. In addition, it can be the case, for example, for the at least one electrode to be oriented in a spiral shape in the at least one contact region or for the at least one electrode to run in a spiral shape in the at least one contact region. However, the invention is not limited to said embodiments, so that further courses may be considered, by means of which the at least one electrode can increase in area in the longitudinal direction of the respective carbon fiber heating resistor.
Exactly two electrodes can be attached to the substrate. The heating device can also comprise a plurality of heating resistors made of or with carbon fibers. One possibility is that the exactly two electrodes attached to the substrate are electrically conductively connected to the plurality of carbon fiber heating resistors via a respective contact region. Such heating devices have a very simple structure and are very inexpensive to produce, wherein safe and reliable electrical contact between the electrodes or the exactly two electrodes and the plurality of carbon fiber heating resistors is still guaranteed.
The at least one electrode can be attached to the substrate via at least one contact region. Here, the at least one electrode can be sewn onto the substrate over at least one contact region. It is conceivable for the at least one electrode to be fastened to the substrate or sewn onto the substrate over all of the contact regions. All electrodes designed as part of the heating device can also be fastened to the substrate or sewn onto the substrate over the contact region.
The vehicle seat can, for example, be made up of a plurality of layers, wherein at least one layer consists of foamed material. The substrate, the at least two electrodes attached to the substrate and the at least one heating element can be inserted or introduced into a recess which provides a layer of foamed material or which is formed by a layer of foamed material.
In the following, the invention and its advantages are to be explained in more detail with reference to the accompanying figures.
The illustrated embodiments merely represent examples of how the invention can be configured and do not represent a final limitation.
The embodiments, examples and variants of the preceding paragraphs, the claims or the following description and the figures can be used independently of one another or in any combination. Features that are described in connection with an embodiment are applicable to all embodiments, provided that the features are not incompatible.
The useful thermal energy of the heating device 1 is provided by a plurality of carbon fiber heating resistors 6a, 6b and 6c. The carbon fiber heating resistors 6a, 6b and 6c are each routed at an angle to the electrode elements 4a and 4b, wherein each heating element 6a, 6b, 6b meets the two electrode elements 4a and 4b in a respective contact region 5a and 5b. The carbon fiber heating resistors 6a, 6b and 6c are therefore electrically conductively connected to the two electrode elements 4a and 4b over a respective contact region 5a and 5b, respectively.
If voltage is applied to the two electrode elements 4a and 4b, the carbon fiber heating resistors 6a, 6b and 6c each emit useful thermal energy, whereby a vehicle seat 10 (see
In heating devices known from the prior art, which provide useful thermal energy via carbon fiber heating resistors, a plurality of electrode elements are routed in order to be able to ensure reliable contact or a safe electrical connection between the carbon fiber heating resistors and the electrode element. The plurality of electrode elements required to date to ensure the electrical connection is associated with a high cost of materials. Such heating devices also have high costs due to the plurality of electrode elements required. In heating devices known from the prior art, each electrode element of the plurality of electrode elements must be connected to a substrate, so that undesirably high work effort is associated with the manufacture or production of a heating device known from the prior art.
These disadvantages mentioned do not exist or only exist to a reduced extent in the heating device 1 from the embodiment according to
The electrode elements 4a and 4b run in a sinusoidally shape in
In practice, vehicle seats can form different heating zones which are predetermined for temperature control by means of a heating device. The electrode elements 4a and 4b can extend along a respective heating zone or be routed along a respective heating zone so that the respective heating zone can be correspondingly temperature controlled by means of a heating device 1. The shape or the course of the electrode elements 4a and 4b can therefore differ from a sinusoidal course according to
In order to increase the stability of the heating device 1, the electrode elements 4a and 4b in the embodiment according to
The vehicle seat 10 comprises a seat cushion 12 comprising a seat surface 13, a backrest 14 and a neck support 16. In the region of the seat surface 13, a heating device 1 is embedded in the seat cushion 12, so that the seat surface 13 can be heated via the heating device 1 embedded in the seat cushion 12. The heating device 1 is only indicated schematically in
The electrode elements 4a and 4b can only be seen in some sections in the embodiment according to
Number | Date | Country | Kind |
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10 2019 004 101.1 | Jun 2019 | DE | national |
This application is a US National Stage Entry of PCT/DE2020/000126 filed on Jun. 8, 2020, which claims the benefit of DE 10 2019 004 101.1 filed on Jun. 12, 2019, all of which are hereby incorporated by reference herein for all purposes.
Filing Document | Filing Date | Country | Kind |
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PCT/DE2020/000126 | 6/8/2020 | WO | 00 |