This application claims priority to Taiwan Application Serial Number 96128285, filed Aug. 01, 2007, which is herein incorporated by reference.
The present invention relates to a heating apparatus, particularly to a three-dimensional electric heating apparatus.
In the consideration of healthy living and personal taste, modern-day people are becoming more and more concerned about the need for the warmth keeping of beverages, wherein the most eager needs are of the office workers who work in an office for long periods of time. Furthermore, in current various commonly used methods for thermal insulation of beverages; insulation by electric heating best meets the needs of office workers.
An electric thermos is currently a common apparatus for insulation by electric heating. By being electrically powered, the electric thermos can heat up the beverage contained inside to maintain the temperature of the beverage in the electric thermos. However, when wanting to heat up a beverage, the beverage must be poured into the electric thermos to be heated, thereby causing a considerable inconvenience in use.
Another common apparatus used for thermal insulation by electric heating is a container-shaped electric heating apparatus, which directly heats a container holding a beverage to be heated. This method of heating does not require the beverage to be poured into an electric thermos, but the electric heating apparatus has limits with shape and volume, thereby the shape and volume of the container to be heated is also often limited.
Therefore, a heating apparatus that can elastically expand is currently needed.
In one aspect of the present invention, a three-dimensional electric heating apparatus with elastically expandable capabilities is provided.
According to an embodiment of the present invention, a three-dimensional electric heating apparatus comprises an electric heating knitted fabric, a protective layer, and a thermal insulating device. The electric heating knitted fabric is pouch-like to accommodate and heat a container, and allow the electric heating knitted fabric to elastically fit around the container. The protective layer is located on a side of the electric heating knitted fabric facing the container. The thermal insulating device is located on the other side of the electric heating knitted fabric and used for insulating the heat generated by the electric heating knitted fabric.
According to another embodiment of the present invention, a three-dimensional electric heating apparatus comprises an electric heating fabric, a protective layer, and a thermal insulating device. The electric heating fabric is pouch-like and comprises electro-heating fibers and high twist fibers. The electric heating fabric can elastically fit around and heat a container accommodated therein. The protective layer is located on a side of the electric heating fabric facing the container. The thermal insulating device is on the other side of the electric heating fabric and used for insulating the heat generated by the electric heating fabric.
The aforementioned pouch-like electric heating fabric of the three-dimensional electric heating apparatus can elastically fit around a container to be heated during the heating operation. In comparison with a conventional planar heating apparatus, the three-dimensional electric heating apparatus according to the embodiments of the present invention can provide three-dimensional heating by fitting around a container. As such, the heated area of the container is further increased, thereby improving heating efficiency. Furthermore, the elastically expandable capabilities of the aforementioned electric heating fabric also allows the three-dimensional electric heating apparatus to be able to heat containers of various volumes and shapes, thereby further increasing the application of the three-dimensional electric heating apparatus according to the embodiments of the present invention.
The invention itself, as well as a preferred mode of use, further objects, and advantages thereof, will best be understood by reference to the following detailed description of an illustrative embodiment when read in conjunction with the accompanying drawings, wherein:
The electric heating fabric 110 is a pouch-like electric heating fabric with elastically expandable capabilities, and can be used on containers of various shapes and volumes to give different levels of stretching, thereby containing and elastically fitting around containers of various shapes and volumes. In order to impart the elastically expandable capabilities of the electric heating fabric 110, the electric heating fabric 110 may be woven by knitting electro-heating fibers 112 with general textile fibers in one example. According to this example, the extension rate in width of the electric heating fabric 110 is about 10-60%, and the extension rate in length of the electric heating fabric 110 is about 5-30%.
In another example, the electric heating fabric 110 may also be woven by weaving electro-heating fibers 112 with high twist fibers, wherein using the high twist fibers can also impart the elastically expandable capability of the electric heating fabric 110. The twist of the high twist fibers is about 800-4000 Twist/m. High twist fibers may be a combination of S-twisted yarns and Z-twisted yarns.
Referring to
The aforementioned electro-heating fibers 112 may be, for example, metal fibers, metal alloy fibers, or carbon fibers. The diameters of the metal fibers and the metal alloy fibers are about 1-1000 micrometers, while the denier of the carbon fibers is about 1000-12000 denier.
Referring again to
Referring again to
The aforementioned protective layer 120 may also have elastically expandable capabilities to elastically fit around a container in conjunction with the electric heating fabric 110. In order for the protective layer 120 to have elastically expandable capabilities, the protective layer 120 may be woven by knitting, or the protective layer 120 may be made by weaving elastic high twist fibers.
The aforementioned thermal insulating layer 130 can be used to insulate heat generated by the electric heating fabric 110. The thermal insulating layer 130 may be knitted fabric or woven fabric woven with elastic high twist fibers. As such, when the electric heating fabric 110 is stretched out, the thermal insulating layer 130 may also correspondingly expand in accordance with the electric heating fabric 110. The thermal insulating layer 130 may also be woven with thermal insulating fabric without an expandable capability. In this case, the thermal insulating fabric needs to be larger than the electric heating fabric 110, and the edge of the thermal insulating fabric is sewn onto the electric heating fabric 110. Before any container is inserted into the electric heating fabric 110, a considerably large space exists between the thermal insulating fabric and the electric heating fabric 110. When a container to be heated is inserted therein, the electric heating fabric 110 is stretched out and occupies the aforementioned space.
According to the embodiments described herein, when the pouch-like electric heating fabric of the three-dimensional electric heating apparatus carries out heating, the electric heating fabric can elastically fit around a container to be heated. In comparison with a conventional planar heating apparatus, the three-dimensional electric heating apparatus according to the embodiments of the present invention can provide three-dimensional heating by fitting around a container. As such, the heated area of a container can further be increased, thereby improving heating efficiency. Furthermore, the elastically expandable capabilities of the aforementioned electric heating fabric can also allow the aforementioned three-dimensional electric heating apparatus to heat containers of various volumes and shapes, thereby further increasing the use of the aforementioned three-dimensional electric heating apparatus.
As is understood by a person skilled in the art, the foregoing preferred embodiments of the present invention are illustrated of the present invention rather than limiting of the present invention. It is intended to cover various modifications and similar arrangements included within the spirit and scope of the appended claims. Therefore, the scope of this invention should be accorded the broadest interpretation so as to encompass all such modifications and similar structure.
Number | Date | Country | Kind |
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96128285 | Aug 2007 | TW | national |