This application claims priority to Taiwan Application Serial Number 103203965 filed Mar. 7, 2014, which is herein incorporated by reference.
1. Technical Field
The present disclosure relates to a paper container. More particularly, the present disclosure relates to a paper container providing a heat insulation effect.
2. Description of Related Art
In response to the hectic pace of modern life, eating out has become normal. Accordingly, a variety of disposable containers are widely used. The disposable containers currently available can be generally divided into two categories according to the material. One category is plastic disposable containers, and the other category is paper disposable containers. With the environmental awareness raised, the paper disposable containers, such as paper cups, paper bowls and paper meal boxes, gradually replace the plastic disposable containers and become the mainstream.
In the aforementioned paper disposable containers, the paper cups and paper bowls for containing fluids are usually formed as a tapered structure, i.e. the paper cups and paper bowls are tapered from top to bottom. An opening is formed on the top of the tapered structure for allowing fluids to flow into or flow out the tapered structure. However, the heat insulation effect of the paper disposable container is limited. When a user holds the paper disposable container containing a high temperature fluid, the user tends to be scalded due to the high temperature. Alternately, the high temperature fluid may be spilled due to the user cannot stably hold the paper disposable container, and the risk of being scalded of the user is enhanced.
How to improve the structure of the paper disposable container so as to enhance the heat insulation effect and enhance the safety for protecting the users has become an important goal to be achieved by the related industries.
According to one aspect of the present disclosure, a paper container includes a body and a contact layer. The body includes a bottom wall and a side wall. The side wall includes a covering portion and a supporting portion. An end of the covering portion surrounds the bottom wall so as to form an interior space. The supporting portion is integrally connected with the end of the covering portion and extends outwardly. The contact layer surrounds the covering portion. The contact layer includes a rugged inner surface and a flat outer surface. The rugged inner surface includes a plurality of protruding portions formed thereon, and the protruding portions are adhered to the covering portion so as to form a plurality of air channels between the covering portion and the contact layer.
The disclosure can be more fully understood by reading the following detailed description of the embodiment, with reference made to the accompanying drawings as follows:
The body 100 includes a bottom wall 110 and a side wall 120. The side wall 120 includes a covering portion 121 and a supporting portion 122. An end of the covering portion 121 surrounds the bottom wall 110 so as to form an interior space 130. The interior space 130 is for containing drinks, soups, foods or other objects. The supporting portion 122 is integrally connected with the end of the covering portion 121 and extends outwardly. When the paper container is uprightly placed on other objects, such as on a table, the paper container contacts with the table via an end of the supporting portion 122 which is not connected with the covering portion 121. In other words, a flatness of the end of the supporting portion 122 which contacts with the table influences a stability of placement.
The contact layer 200 can completely or partially cover the covering portion 121 of the side wall 120. In principle, an area of the contact layer 200 covering the covering portion 121 should be adequate for providing a user to hold the paper container via the contact layer 200. A pattern (not shown) can be printed on the flat outer surface 220 so as to increase an aesthetic sense.
According to the above description, the paper container according to the present disclosure has advantages as follows. First, when a high temperature fluid is contained in the paper container, the high temperature fluid directly contacts with the covering portion 121. Accordingly, the heat of the high temperature fluid is directly conducted to the outside by the covering portion 121. By surrounding the covering portion 121 with the contact layer 200, the heat insulation effect can be enhanced due to a thickness of the contact layer 200. Furthermore, a thermal conductivity of air is much smaller than a thermal conductivity of paper. Therefore, the heat insulation effect can be further enhanced by forming the air channels 140 between the covering portion 121 and the contact layer 200. Second, two ends of each of the air channels 140 are open in the embodiment. Therefore, the heat of the high temperature fluid can be dissipated by the convection of the air in the air channels 140, so that the heat conducted to the contact layer 200 can be reduced. As a result, the heat insulation effect can be further enhanced. Third, the contact layer 200 is adhered to the covering portion 121 via adhesives, so that the contact layer 200 loosing from the covering portion 121 can be avoided when the user holds the contact layer 200. Therefore, a stable protective effect can be provided. Fourth, due to the heat of the high temperature fluid is directly conducted to the outside by the covering portion 121, the user will not be scalded by touching the supporting portion 122. Therefore, when the contact layer 200 only covers the covering portion 121 and does not cover the supporting portion 122, a sufficient safety is provided, and the area of the contact layer 200 can be reduced so as to save costs at the same time. Fifth, the contact layer 200 does not cover the supporting portion 122, and the stability of placement of the paper container does not be influenced by a flatness of an edge of the contact layer 200. When the contact layer 200 covers the covering portion 121 and the supporting portion 122, the stability of placement reduced by the contact layer 200 should be prevented. Therefore, a flatness of the edge of the contact layer 200 is in need of being enhanced, i.e., a cutting precision for cutting the contact layer 200 is in need of being enhanced, Furthermore, when the contact layer 200 is adhered to the supporting portion 122, an edge of the contact layer 200 is in need of being completely aligned with the end the supporting portion 122 which contacts with the table. In other words, a difficulty of alignment is increased significantly. Therefore, when the contact layer 200 only covers the covering portion 121 and does not cover the supporting portion 122, the manufacturing difficulty can be reduced, and the manufacturing yield can be enhanced.
In
It will be apparent to those skilled in the art that various modifications and variations can be made to the structure of the present disclosure without departing from the scope or spirit of the disclosure. In view of the foregoing, it is intended that the present disclosure cover modifications and variations of this disclosure provided they fall within the scope of the following claims.
Number | Date | Country | Kind |
---|---|---|---|
103203965 | Mar 2014 | TW | national |