Cover and manufacturing method therefor
12297014 ยท 2025-05-13
Assignee
Inventors
Cpc classification
International classification
Abstract
A cover (200) and a manufacturing method therefor. The cover (200) comprises a dispensing port (212), a detachable plug (250) that is located at the peripheral edge (230) of the cover (200) and integrally formed with the cover (200), and a recess (222). When a sealing structure is formed between the cover (200) and a cup (100), the dispensing port (212) is used for providing an outlet for contents present in the cup (100). The detachable plug (250) comprises a protrusion (255), and the protrusion (255) is used to form another sealing structure between the protrusion (255) and the dispensing port (212). The recess (222) is configured to be detachably coupled with the protrusion (255) so as to keep the detachable plug (250) in the vicinity of the cover (200) when the detachable plug (250) is not in use.
Claims
1. A cover for use with a cup, comprising: a cover body; a dispensing port defined in the cover body and configured to provide an outlet for contents present in a cup when a first sealing structure is formed between the cover body and the cup; a detachable plug integrally formed with, and affixed to, a peripheral edge of the cover body, which detachable plug is configured to be separated from the cover body at a tear line defined between the detachable plug and the peripheral edge of the cover body, the detachable plug including a protrusion that is configured to interact with the dispensing port to form a second sealing structure between the protrusion and the dispensing port; and a recess defined in the cover body that is configured to be detachably coupled with the protrusion of the detachable plug, so as to selectively retain the detachable plug on the cover body.
2. The cover of claim 1, wherein the tear line comprises: tear connection points that connect each of opposing ends of a first edge of the detachable plug to the adjacent peripheral edge of the cover body; and a concave surface disposed between two successive tear connection points, which concave surface is recessed towards the detachable plug away from the cover body, wherein a distance from a middle of the concave surface to the peripheral edge of the cover body is greater than a distance from either end of the concave surface to the peripheral edge of the cover body.
3. The cover of claim 2, wherein the peripheral edge of the cover body is provided with an outer convex part, a side of the outer convex part away from the peripheral edge of the cover body is provided with an arc-shaped convex surface, and wherein a distance from the middle of the concave surface to a middle of the arc-shaped convex surface is greater than a distance from either end of the concave surface to a respective end of the arc-shaped convex surface.
4. The cover of claim 3, wherein the concave surface is any one of a V-shaped concave surface and a U-shaped concave surface.
5. The cover of claim 1, wherein the tear line includes three tear connection points arranged at intervals and connected between the end of the detachable plug close to the cover body and the peripheral edge of the cover body, wherein a strip-shaped tear hole is defined between each two adjacent tearing connection points, the peripheral edge of the cover body and the end of the detachable plug close to the cover body, and wherein a diameter of the each strip-shaped tear hole is gradually reduced from top to bottom.
6. The cover of claim 1, wherein the protrusion protrudes toward one surface of the detachable plug, and a concave groove corresponding to the protrusion is arranged on the other surface of the detachable plug away from the protrusion.
7. The cover of claim 1, wherein the cover body is made of plant fiber.
8. A cover, comprising: a cover body; a dispensing port defined in the cover body and configured to provide an opening through the cover body; a recess defined in an upper surface of the cover body; and a detachable plug integrally formed with, and affixed to, a peripheral edge of the cover body, which detachable plug is configured to be fully separable from the cover body at a tear line defined between the detachable plug and the peripheral edge of the cover body, the detachable plug including a protrusion that is configured to be inserted into and have a friction fit with each of the dispensing port and the recess.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The drawings included in and forming part of this specification show various embodiments of the present invention and are used to illustrate embodiments of the present invention together with above-mentioned summary of the invention and the detailed description of the embodiments below. Like reference numerals represent similar parts throughout the several views of the drawing
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DETAILED DESCRIPTION OF PREFERRED EMBODIMENT
(18) For simplicity and illustrative purposes, the principles of the present invention are described by referencing various exemplary embodiments thereof and these embodiments can be described with reference to
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(21) The detachable plug 250 may be separated from the cover 200 at the attachment point edge line 260. In one embodiment, the attachment point edge line 26 is specifically a tear line (for example, the tear line 1206 in
(22) The protrusion 255 protrudes toward one surface of the detachable plug, and a concave groove corresponding to the protrusion is arranged on the other surface of the detachable plug away from the protrusion.
(23) The comparison between the cover 700 and the cover 200 of
(24) Furthermore, the detachable plug 750 of the cover 700 includes a protrusion 755 located on the distal end 752 opposite to the attachment point edge line 260.
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(30) S3: when the slurry forming mold 2330 is lifted (or taken out) from the slurry tank 2310, additional vacuum suction is applied to reduce the water content of the slurry fiber 2320, thereby forming a raw wet cup cover body 2322. S4: then, the slurry forming die 2330 can be pressed using the extrusion die 2340 (for example, using vacuum suction) to make the raw wet cup cover body 2322 have an initial shape, so as to form the formed wet cup cover body 2324. In one embodiment, the slurry forming die 2330 is pressed by the extrusion die 2340 to further reduce the water content of the formed wet cup cover body 2324. After pressing the slurry forming die 2330 using the extrusion die 2340, the formed wet cup cover 2324 is transferred to the hot pressing die composed of the upper heating die 2362 and the lower heating die 2364 by the transfer die 2350.
(31) The hot pressing die is used to compress and dry the formed wet cup cover 2324 to form a semi-finished cup cover body 2326. When compressed and dried by the hot pressing die, the surface of the semi-finished cup cover body 2326 has enhanced smoothness (relative to the smoothness of the surface of the wet cup cover 2324 formed before compression and drying). Improved dimensional accuracy can also be achieved by compression and drying by the hot pressing die. In one embodiment, vacuum suction is applied during the drying process by the hot pressing die to remove any steam caused by the moisture retained by the formed wet cup cover body 2324 and reduce the possibility of delamination. S5: then, the semi-finished cup cover body 2326 is transferred to the cutting die composed of the upper cutting die 2372 and the lower cutting die 2374 to form the finished cup cover body. In one embodiment, the cutting die forms the finished cup cover body by trimming excess materials at the edge of the semi-finished cup cover body 2326.
(32) Particular embodiments and their detailed construction and operation are described herein. The embodiments described herein are set forth by way of illustration only and not limitation. It should be recognized in light of the teachings herein that there is a range of equivalents to the example embodiments described herein. Most notably, other embodiments are possible, variations can be made to the embodiments described herein, and there may be equivalents to the components, parts, or steps that make up the described embodiments. For the sake of clarity and conciseness, certain aspects of components or steps of certain embodiments are presented without undue detail where such detail would be apparent to those skilled in the art in light of the teachings herein and/or where such detail would obfuscate an understanding of more pertinent aspects of the embodiments.
(33) One should also note that conditional language, such as, among others, can, could, might, or may, unless specifically stated otherwise, or otherwise understood within the context as used, is generally intended to convey that certain embodiment include, while other embodiments do not include, certain features, elements and/or steps. Thus, such conditional language is not generally intended to imply that features, elements and/or steps are in any way required for one or more particular embodiments or that one or more particular embodiments necessarily include logic for deciding, with or without user input or prompting, whether these features, elements and/or steps are included or are to be performed in any particular embodiment. The terms including, comprising, have, etc. are synonymous and used in an open manner, and do not exclude other elements, features, actions, operations, etc. In addition, the term or is used in an inclusive sense (rather than an exclusive sense), so when used to connect a series of elements, for example, the term or represents one element, some elements or all of the elements.
(34) The terms and descriptions used herein are set forth by way of illustration only and are not meant as limitations. Those skilled in the art will recognize that those changes, enhancements and modifications and many other changes, enhancements and modifications can be made to the concepts described herein without departing from the basic principles of the present invention. Therefore, the scope of the present invention is defined only by the claims and their equivalents.