The present invention relates to a cushion cover for earflaps, and more particularly, to a cushion cover designed for use with earflaps having a soundproof cushion for reducing external noise.
A general earflap-type earphone used for listening to music and to block high-decibel noise at a workplace, or to reduce or cut off external noise is basically composed of a cushion cover that is provided with an adjustable connection frame having two ends thereof fastened to cover the wearer's ears. The cushion cover typically constitutes, as shown in
The aforementioned cushion cover 1 basically comprises the soundproof cushion 10, the soft-resin surface layer 11, and the rubber casing 14. This design has inherent disadvantages in that the three major constituent components mentioned above require independent manufacture using two separate binding processes, adversely increasing manufacturing costs. First, the soft-resin surface layer 11 has to be adhered to the soundproof cushion 10 by means of adhesives or other known methods; next, the soundproof cushion 10 is to be enclosed by the soft-resin surface layer 11, subsequently, the soundproof cushion 10 enclosed with the soft-resin surface layer 11 has to be adhered to the rubber casing 14 by a conventional adhering medium such as double-sided adhesive or adhesive. Such a manufacturing process requiring two separate adhering processes is laborious and time-consuming, and binding methods like conventional adhesives, double-sided adhesives, or high cycle waves all adversely increase costs and thus fail to satisfy the desire for low-cost manufacturing.
Further, the soft-resin surface layer 11 is made of a high molecular material in a big sheet and then is cut into small pieces for practical application, yet the cutting process inevitably generates waste materials and increases the cost as well.
Moreover, in order to lower the cost, the binding between the soft-resin surface layer 11 and the soundproof cushion 10, and between the soundproof cushion 10 and the rubber casing 14 are only partially done and, thus, such elements are not completely adhered to one another. This method is prone to defects as the soft-resin surface layer 11 could easily come off from the soundproof cushion 10 or the soundproof cushion may easily detach from the rubber casing 14 that lead to problems of a short lifespan of the finished products. Also, there have been other disadvantages arising from the use of conventional covers for earphones. Such conventional covers have been inferior due to inherent characteristics and deformation of the materials from which the covers have been made.
It is therefore an objective of the present invention to provide a novel cushion cover for use with earflaps that simplifies the manufacturing process and reduces costs.
Another objective of the present invention is to provide a novel cushion cover for use with earflaps that can enhance durability and prolong the lifespan of the products.
Still another objective of the present invention is to provide a novel cushion cover for use with earflaps that does not require use of any adhering medium or conventional methods so that the manufacturing cost can be effectively reduced.
To achieve the above and other objectives, the present invention proposes a novel cushion cover for use with earflaps, comprising: a soundproof cushion having a first surface and a second surface; a covering layer having an outer surface and an inner surface, the inner surface of the covering layer being completely adhered to the first surface of the soundproof cushion by means of the inherent adherence of the soundproof cushion; and a rubber casing having an outer casing surface and an inner casing surface, the inner casing surface of the rubber casing being completely adhered to the second surface of the soundproof cushion by means of the inherent adherence of the soundproof cushion.
The material used for making the soundproof cushion, the covering layer, and the rubber casing of the present invention can be any suitable materials known in the art without specific limitation, so long as the foam material used for making the soundproof cushion can provide sufficient cohesion to fully bind the covering layer together with the rubber casing after a foaming process.
In summary, the binding of the soundproof cushion with the covering layer and the soundproof cushion with the rubber cushion is fully intact without requiring any use of an adhering medium or methods, thereby effectively simplifying the manufacturing process and lowering the cost while enhancing durability of the fabricated products due to the strong binding between the soundproof cushion, the covering layer, and the rubber casing respectively.
The foregoing and other objects, aspects, and advantages will be better understood from the following detailed description of the invention with reference to the drawings, in which:
The present invention is described in the following so that one skilled in the pertinent art can easily understand other advantages and effects of the present invention. The present invention may also be implemented and applied according to other embodiments, and the details may be modified based on different views and applications without departing from the spirit of the invention.
For the sake of simplicity and conciseness, the other components required for applying the cushion cover for earflaps, such as an amplifier, a power wire or a receiver are purposely omitted from the description as those elements are well known in the art.
Referring to
The covering layer 20, the soundproof cushion 21, and the rubber casing 22 are made of high molecular materials, which are well-known in the art and thus will not be further described herein for brevity. However, it is to be noted that in this embodiment the foam material used for making the soundproof cushion 21 must have sufficient cohesion necessary for fixedly binding the covering layer 20 and the rubber casing 22. By the inherent adhering characteristics of the soundproof cushion 21, the covering layer 20 and the rubber casing 22 can be bound effectively without using adhesives, two-way adhesives, or a high cycle wave method for binding the covering layer 20 and the rubber casing 22, thereby saving costs and simplifying the manufacturing process while increasing production efficiency.
As shown in
Thereafter, as shown in
Lastly, as shown in
It is to be noted that the manufacturing method of the present invention is not limited to the disclosure of the foregoing embodiment. For instance, the soundproof cushion 21 may be formed first and then the covering layer 20 can be formed on the first surface 210 of the soundproof cushion 21 to simplify the process and reduce the cost. Further, as the soundproof cushion of the present invention is made of foam materials, the flexibility of the soundproof cushion can be suitably adjusted, and also the color, the size, or even the shape thereof can be chosen as desired and made to order to meet practical requirements. Also, the foam material used for making the soundproof cushion can be one that is environmentally-friendly that does not generate toxic and harmful substances during burning processes.
Having thus described a preferred embodiment in sufficient detail to enable those skilled in the art to make and use the invention, it will nevertheless be appreciated that numerous variations and modifications of the illustrated embodiment may be made without departing from the spirit of the invention, and it is intended that the invention not be limited by the above description or accompanying drawings, but that it be defined solely in accordance with the appended claims.
Number | Date | Country | Kind |
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095206990 | Nov 2005 | TW | national |