Heat-resistant receptacle cap
10377542 ยท 2019-08-13
Assignee
Inventors
Cpc classification
B65D41/3428
PERFORMING OPERATIONS; TRANSPORTING
B65D45/322
PERFORMING OPERATIONS; TRANSPORTING
B65D51/28
PERFORMING OPERATIONS; TRANSPORTING
B65D51/18
PERFORMING OPERATIONS; TRANSPORTING
B65D2539/006
PERFORMING OPERATIONS; TRANSPORTING
International classification
B65D25/08
PERFORMING OPERATIONS; TRANSPORTING
B65D51/18
PERFORMING OPERATIONS; TRANSPORTING
B65D41/34
PERFORMING OPERATIONS; TRANSPORTING
B65D45/32
PERFORMING OPERATIONS; TRANSPORTING
B65D39/00
PERFORMING OPERATIONS; TRANSPORTING
B65D81/32
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The present invention is a heat-resistant receptacle cap comprising: an inner cap 100 having an insertion pipe 120 configured to be fitted onto an inlet of a receptacle with a locking hook, a discharge gate 140 connected to the insertion pipe 120 with a small-diameter pipe 145 and formed so that contents in the receptacle is discharged at the small-diameter pipe 145, and a container 200 which is installed at the bottom of the small-diameter pipe 145 and has an open upper part to hold additives therein; a heat-resistant sealing plate 220 configured to heat-seal the insertion pipe 120 and upper wall of the container 200; a sealing plate holder 300 which is provided with a fitting ring 310 that fits the sealing plate 220 to a corresponding part for coupling the heat-resistant sealing plate 220, and which is fitted at an upper end of an inner side wall of an outer cap 400; and the outer cap 400 having a sealing plate holder fixing step 420 which is formed on a side wall 401 and configured to separate the sealing plate holder 300 as the receptacle is opened.
Claims
1. A heat-resistant receptacle cap, comprising: an inner cap, having a first diameter configured to be fitted onto an inlet of a receptacle with a locking hook, a discharge gate connected to the first diameter by a second diameter at a lower base of the inner cap and formed so that contents in the receptacle are discharged at the second diameter, and a container installed at a bottom of the second diameter and has an open upper part to hold additives therein, wherein the second diameter is smaller than the first diameter; a heat-resistant membrane seal, configured to heat-seal the first diameter and an upper wall of the container; a membrane seal holder, having a fitting ring that fits the heat-resistant membrane seal to a corresponding part for coupling the membrane seal; and an outer cap, having a membrane seal holder fixing step that is formed on a side wall and configured to separate the membrane seal holder as the receptacle is opened, wherein the membrane seal holder is fitted at an upper end of an inner side wall of the outer cap, wherein the locking hook is configured to have a horizontal part bent toward an outside of the first diameter and a vertical part that bends downward from an outside of the horizontal part and forms a hook at a lower end of an inner side thereof, wherein the hook formed by the vertical part is configured to be coupled to an outer groove at an outside of an upper end of the inlet of the receptacle, and wherein an outer hook protrudes from the upper end of the inlet due to the outer groove.
2. The heat-resistant receptacle cap of claim 1, wherein the membrane seal holder is coupled to the membrane seal holder fixing step of the outer cap and is integrally formed with the outer cap.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE EMBODIMENTS
(12) Hereinafter, preferred embodiments of the present invention will be described in more detail with reference to the accompanying drawings.
(13) According to an embodiment of the present invention, as shown in
(14) It is preferable to have the fitting ring 310 formed to have a height that may fix a length of a handle 222 of the sealing plate 220 and a locking hook portion simultaneously.
(15) The locking hook 110 is configured to have a horizontal part 111 bent towards the outside of the insertion pipe 120, and a vertical part 112 which bends downwards from the outside of the horizontal part 111 and forms a hook 113 at a lower end of an inner side thereof; and at an upper end outside the inlet 2 of the receptacle 1, an outer groove 4 configured to be coupled to the hook 113 and an outer hook 3 protruding from the upper end of the inlet due to the outer groove 4 is formed. A protruding step 320 is protruded from the outside or lower end of the fitting ring 310, thereby being fitted and fixed by the sealing plate holder fixing step 420, and is a protruding step configured to provide support so that the sealing plate holder 300 is separated together with the separation of the outer cap 400.
(16) The present invention uses the components shown in
(17) In addition, the heat-resistant sealing plate 220 heat-seals the upper end inlet of the container 200 of the inner cap 100 and the horizontal part 111 of the locking hook 110 with induction heating.
(18) Of course, the sealing plate holder 300, sealing plate 220, and inner cap 100 filled with additives may be induction heat-sealed at a provisionally coupled state to separately assemble a provisionally coupled state as shown in
(19) When a user purchases and separates the outer cap 400, the state of the outer cap 400 and sealing plate holder 300 being separated simultaneously from the heat-resistant sealing plate 220 is as formed as shown in
(20) The upper surface of the sealing plate 220 is an aluminum sheet, and a double-layered synthetic resin sheet product is used as the lower surface. When induction heated, the aluminum sheet does not perform any heat sealing so the sealing plate holder 300 is fitted into the outer cap 400 and enabled to be separated from the heat-resistant sealing plate at the same time, and the heat-sealed sealing plate 220 is heat-sealed integrally to the inner cap 100 to perform sealing.
(21) Therefore, the inner cap 100 which holds the additive may maintain its sealing property by the heat-resistant sealing plate 220 and there are no worries of any moisture and smells being permeated, so if beverages that are used as warm drinks such as tea, coffee, or milk hold additional additives separately, it functions to enable use on just-boiled tea or warm drinks that can provide a fresh scent of an additive.
(22) According to another exemplary embodiment of the present invention, as shown in
(23) The difference is that, the locking hook 110 formed at the insertion pipe 120 of the inner cap 100 is configured to have a horizontal part 111 bent towards the outside of the insertion pipe 120, and a hook 113 protruding from an outer circumference part of the insertion pipe 120; and an inner groove 4 configured to be coupled to the hook 113, an inner hook 3 protruding from an upper end of the inlet due to the inner groove 4, and an upper end groove 6 configured to have a surface of the horizontal part 111 be fitted horizontally to an upper end wall 5 at the inner circumference side of the upper end wall 5 of the inlet 2 of the receptacle 1, is comprised to be configured at the upper end inside the inlet 2 of the receptacle 1.
(24) The sealing plate holder 300 which is coupled to the sealing plate holder fixing step 420 of the outer cap 400 may be integrally formed with the outer cap 400 as shown in
(25) Other than the coupled structure configured to have a locking hook 110 of the inner cap 100 formed with a hook 113 and a horizontal part 111, and a corresponding inner wall of the inlet 2 of the receptacle 1 formed with an inner groove 4 and an inner hook 3, shown in
(26) However, since the sealing plate 220 heat-seals the horizontal part 111 and upper end wall 5 simultaneously, the inner cap 100 and inlet 2 completely seals the contents of the receptacle, thereby maximizing the sealing properties to enable long-term storage for over 6 months.
(27) Another embodiment of the present invention as shown in
(28) The fitting ring 310 is formed to have a height that may temporarily fix a length of a handle 222 of the sealing plate 220 and an upper end of an outside part of the container 200.
(29) The small-diameter pipe 145 which supports the insertion pipe 120 and container 200 to form the discharge gate 140 is configured to have a diameter that becomes smaller from a lower end of the insertion pipe 120 towards a lower end of a side wall of the container 200.
(30) Other than the sealing plate 220 being fitted to a fitting ring 210 having a smaller diameter than that of the sealing plate holder 300, and a sealing dam 340 sealing the insertion pipe 120 of the container outside the fitting ring 310 is formed to seal only the inlet of the container 200, the function of operation of the structure of
(31) Although the present invention been described with reference to the preferred embodiments, it is intended to aid in the understanding of the technical content of the present invention, and the technical scope of the invention is not intended to be limited thereto.
(32) That is, it would be obvious to those skilled in the art that various changes and modifications can be made to the invention without departing from the technical gist of the present invention, and such changes and modifications are within the technical scope of the present invention in view of the interpretation of the claims.
REFERENCE NUMBERS
(33) 1: receptacle 2: inlet 3. outer hook 3: inner hook 4: outer groove 4: inner groove 100: inner cap 110, 110: locking hook 111: horizontal part 112: vertical part 113, 113 hook 120: insertion pipe 140: discharge gate 145: small-diameter pipe 200: container 210: bridge 220: sealing plate 222: handle 300: sealing plate holder 310: fitting hole 320: protruding step 330, 331: presser protrusion 340: sealing dam 400: outer cap 410: skirt 412: parting wall 420: sealing plate holder fixing step