This application claims priority of Taiwanese application no. 100201525, Jan. 24, 2011.
1. Field of the Invention
The present invention relates to an insulation sleeve for a beverage cup, and more particularly to an insulation sleeve adapted to be disposed around the surrounding wall of the beverage cup.
2. Description of the Related Art
Disposable paper or plastic cups routinely used to contain hot beverages (water, tea, coffee, soup and the like) impose thermal insulating problems. The thin wall of the disposable container lacks thermal insulating effect, such that the heat from the hot beverages poses a major problem while grasping the rip. The hot beverage also softens the cup body, making it hard to hold. Therefore, there are various insulation sleeves that are sized to fit around the side wall of a beverage cup for preventing heat from transferring outward and for assisting the user in firmly holding the cup.
As shown in
The insulation sleeve 1, when used, is sleeved onto the cup body 2 to be grasped by the user. By virtue of the thermal insulating pockets 13 which provide insulation effects, the user's hand may be protected from getting burned. However, because the wavy sheet layer 12 made of the corrugated paper is easily deformable, printed letters or patterns on the outer sleeve layer 11 will be distorted when the wavy sheet layer 12 deforms.
Therefore, the object of the present invention is to provide an insulation sleeve that has improved thermal insulating effects, is simple to process and improves a print quality on the insulation sleeve.
According to one aspect of the present invention, an insulation sleeve for a beverage cup comprises an outer sleeve layer formed as a looped sheet and adapted to be disposed around the beverage cup. The outer sleeve layer has two opposite open ends. The insulation sleeve further comprises a foam layer coated on an inner surface of the outer sleeve layer.
According to another aspect of the present invention, a beverage cup comprises a cup body that has a bottom wail, and a surrounding wall extending upward from the bottom wall, and an insulation sleeve adapted to be disposed around the cup body. The insulation sleeve includes an outer sleeve layer formed as a looped sheet, and a foam layer. The outer sleeve layer has two opposite open ends and is tapered from one of the open ends to the other one of the open ends. The foam layer is coated on an inner surface of the outer sleeve layer.
Other features and advantages of the present invention will become apparent in the following detailed description of the three preferred embodiments of this invention, with reference to the accompanying drawings.
Before the present invention is described in greater detail with reference to the accompanying preferred embodiments, it should be noted herein that like elements are denoted by the same reference numerals throughout the disclosure.
Referring to
The outer sleeve layer 31 is in the form of a looped sheet and may be formed by looping and gluing a sheet material that has a certain level of stiffness. The outer sleeve layer 31 is adapted to be disposed around the surrounding wall 42 of the cup body 4, and has two opposite open ends 310, an inner surface 311 to abut against the outer side of the surrounding wall 42 of the cup body 4, and an outer surface 312 that is opposite to the surrounding wall 42, and a joint seam 315 that extends from one of the open ends 310 to the other open end 310. The outer sleeve layer 31 is tapered from one of the open ends 310 to the other open end 310. The sheet material for the outer sleeve layer 31 can be selected from paper, plastic, a film-laminated paper, and other suitable composite materials.
The foam layer 32 is formed by coating the inner surface 311 of the outer sleeve layer 31 with a foaming paste, and is used to contact the surrounding wall 42 of the cup body 4. The foam layer 32 in this embodiment has a ring-shaped insulation member 321 that is formed angularly and continuously as a complete ring on the inner surface 311. During manufacturing, the foaming paste is evenly spread on the outer sleeve layer 31 by roller printing, thereby forming the foam layer 32. The foaming paste may be obtained by mixing 37.5˜56.25 parts by weight of a polyurethane dispersion, 22.5˜33.75 parts by weight of a foaming agent, and 10˜40 parts by weight of water. In addition, the mixing ratio of polyurethane dispersion and foaming agent may be 5:3.
The printed pattern layer 33 is printed on the outer surface 312 of the outer sleeve layer 31, and includes several patterns 331. The patterns 331 can be pictures, logos, trademarks, or the like with different shapes and sizes. Of course, the number of the patterns 331 may be just one, or the patterns 331 may be omitted. On the other hand, the insulation sleeve 3 may further have a water-resistant layer (not shown) coated on the printed pattern layer 33 to prevent the insulation sleeve 3 from getting wet and becoming soft.
During manufacturing, the printed pattern layer 33 is printed or coated on the outer surface 312 of the outer sleeve layer 31 before the sheet material of the outer sleeve layer 31 is looped. The mixed foaming paste is evenly coated on the inner surface 311 of the outer sleeve layer 31, and the coated outer sleeve layer 31 is subsequently placed into an oven to allow the foaming paste to foam and to form the foam layer 32. The thickness and density of the foam layer 32 may be varied according to the design requirements. After foaming the foam layer 32, two adjoining ends of the outer sleeve layer 31 are glued to each other to form the joint seam 315 and the frustro-conical shape of the outer sleeve layer 31. Because the foam layer 32 and the printed pattern layer 33 are formed on the outer sleeve layer 31 by printing or coating, the insulation sleeve 3 can be manufactured with relative ease.
During usage, the insulation sleeve 3 is sleeved around the surrounding wail 42 of the cup body 4 with the foam layer 32 being in contact with the surrounding wall 42 of the cup body 4. When a hot beverage is poured into the receiving space 43 of the cup body 4, the foam layer 32 will insulate the heat transmitted through the cup body 4 and prevent the same from burning the hand of a user. In addition, the outer surface 312 of the outer sleeve layer 31 can provide a smooth layer beneficial for printing the printed pattern layer 33 thereon. This prevents distortion of the patterns 331, and an improved print quality can be achieved.
As shown in
As shown in
Referring to
While the present invention has been described in connection with what are considered the most practical and preferred embodiments, it is understood that this invention is not limited to the disclosed embodiments but is intended to cover various arrangements included within the spirit and scope of the broadest interpretation and equivalent arrangements.
| Number | Date | Country | Kind |
|---|---|---|---|
| 100201525 | Jan 2011 | TW | national |