Side press-type safety cap
09926115 ยท 2018-03-27
Assignee
Inventors
Cpc classification
B65D2215/02
PERFORMING OPERATIONS; TRANSPORTING
B65D50/041
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
The invention disclosed herein relates to a side press safety cap, wherein when an outer cap is rotated to opening direction with sides of the outer cap pressurized, a first rotation protrusion of an outer cap is interlocked with open guide protrusions of an inner cap, rotating the inner cap, and thereby an inner cap is opened. On the other hand, when the outer cap is rotated to closing direction, a second rotation protrusion is interlocked with close guide protrusions, rotating the inner cap and thereby the inner cap is closed. As a result, the side press safety cap is possible to be opened and closed stably.
Claims
1. A side press safety cap, comprising: an inner cap forming a screw thread at an inner circumferential surface so as to be threadably coupled to an upper portion of a container body where contents are stored, and an outer cap encircling and rotatably coupled to the inner cap, wherein one or more open guide protrusions and close guide protrusions are equipped at an outer circumferential surface of the inner cap, so as to be rotated together with the outer cap when rotating the outer cap in an opening direction or in a closing direction, wherein an inner circumferential surface of the outer cap includes a first rotation protrusion which interlocks with the open guide protrusion and rotates the inner cap when the outer cap is rotated in the opening direction responsive to sides of the outer cap being pressurized, and a second rotation protrusion which interlocks with the close guide protrusions and rotates the inner cap when the outer cap is rotated in the closing direction, and wherein the inner circumferential surface of the outer cap further includes a plurality of elastic pieces that are evenly spaced from one another and extend from the inner circumferential surface so as to form a gradually curved surface, wherein the plurality of elastic pieces is configured to contact the outer circumferential surface of the inner cap and to prevent the outer cap from being shaken when the outer cap rotates.
2. The side press safety cap of claim 1, wherein the second rotation protrusion forms a gradual curve that extends from the inner circumferential surface of the outer cap and extends over the close guide protrusions when the outer cap is rotated in the opening direction, and wherein the second rotation protrusion interlocks with the close guide protrusions when the outer cap is rotated in the closing direction.
3. The side press safety cap of claim 2, wherein a plurality of second rotation protrusions are evenly spaced along the inner circumferential surface of the outer cap.
4. The side press safety cap of claim 1, wherein pressure display parts are provided on an outer circumferential surface of the outer cap so as to display portions of the outer cap on which a user is to apply pressure.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
(5) Hereinafter, exemplary embodiments of the present invention will be described in details with reference to the accompanying drawings. The same reference numerals provided in the drawings indicate the same members.
(6)
(7) Referring to
(8) The inner cap 100 is combined with a screw coupling on a screw thread 110 installed on an upper portion of a container body 10 where contents are held, and opens/closes an opened upper portion of the container body 10, wherein a screw thread 11 are formed on the inner circumferential surface so as to be screw-coupled with the screw thread 11.
(9) According to the present invention, on the outer circumferential of the inner cap 100 are formed open guide protrusions 120 and close guide protrusions 130 respectively so that the inner cap 100 can be rotated together according to rotation of an outer cap 200 into opening direction or closing direction of the outer cap 200 that will be explained later.
(10) The open guide protrusions 120 encircles a lower portion of the outer circumferential surface of the inner cap 100, formed in a multitude positioned with a fixed distance apart, wherein when the outer cap 200 is rotated into opening direction in the state of a pressure display part 250 of the outer cap 200 being pressurized, it is possible that the open guide protrusions 120 can be rotated together with the inner cap 100 as interlocking with a first rotation protrusion 210 of the outer cap 200.
(11) The open guide protrusions 120 is positioned with a fixed distance apart from the first rotation protrusion 210 of the outer cap 200 and thereby can be interlocked with the first rotation protrusion 210 only when pressurizing the pressure display part 250 of the outer cap 200; therefore, when the outer cap 200 is rotated into opening direction in a state of the pressure display part 250 of the outer cap 200 not being pressurized, the inner cap 100 will not be rotated and the outer cap 200 will run idle.
(12) The close guide protrusions 130, encircling an outer circumferential surface of the inner cap 100 at an upper portion of the open guide protrusions 120, is positioned in a multitude with a fixed distance apart, wherein in the present invention, one of side surfaces of the close guide protrusions 130 includes a gently inclined plane 131 and the other includes a vertical plane 132 with an angle of nearly 90 degrees.
(13) The close guide protrusions 130, when rotating the outer cap 200 into opening direction in a state of the pressure display part 250 of the outer cap 200 not being pressurized, makes it possible for a second rotation protrusion 220 of the outer cap 200 to go over the inclined plane 131, and on the other hand, when rotating the outer cap 200 into closing direction, the vertical plane 132 is interlocked with the second rotation protrusion 220 of the outer cap 200 and the inner cap 100 can be rotated together according to rotation of the outer cap 200.
(14) Meanwhile, at an upper portion of the inner cap 100 is combined protusively a combining part 140 that is combined to a combining hole 230 of the outer cap 200 for preventing the inner cap 100 and the outer cap 200 from being separated, wherein on the combining part 140 is combined a protrusion 141 which is secured on a securing protrusion 231 of the outer cap 200 so as to be separated with the outer cap 200 when the outer cap 200 is separated from the container body 10.
(15) The outer cap 200 encircles the inner cap 100 and is combined to be able to be rotated, thereby rotating the inner cap 100 as being interlocked with the open rotation protrusion 120 or the close rotation protrusion 130 according to the rotation either to opening direction or to closing direction and, wherein, in the present invention, on an inner circumferential surface of the outer cap 200 are installed the open guide protrusions 120, the close guide protrusions 130, and a first rotation protrusion 210 and a second rotation protrusion 220 that are interlocked respectively.
(16) The first rotation protrusion 210, when the outer cap 200 is rotated to opening direction, is interlocked with the open rotation protrusion 120 of the inner cap 100, thereby making the inner cap 100 rotate, and is positioned in a multitude with a fixed distance apart along an inner circumferential surface of the outer cap 200.
(17) The first rotation protrusion 210 is positioned with a narrow range detached from the open rotation protrusion 120 of the inner cap 100 in a state of a pressure display part 240 of the outer cap 200 being pressured, and is configured to be interlocked with open guide protrusions 120 of the inner cap 100 only when pressurizing the pressure display part 250 of the outer cap 200; therefore, when rotating the outer cap 200 to opening direction in a state of the pressure display part 250 of the outer cap 200 not being pressurized, the outer cap 200 is made to run idle while the inner cap 100 does not rotate, whereas the inner cap 100 can be rotated with the outer cap 200 when rotating the outer cap 200 in opening direction in a state of the pressure display part 250 of the outer cap 200 being pressurized.
(18) The second rotation protrusion 220 is interlocked with close guide protrusion close guide protrusions 130 of the inner cap 100 and makes the rotation of the inner cap 100 possible when rotating the outer cap 200 to closing direction, and positioned in a multitude with a fixed distance apart along an inner circumferential surface of the outer cap 200.
(19) In the present invention, the second rotation protrusion 220 extends from a point of an inner circumferential surface of the outer cap 200 forming a gently inclined plane. In a state of a pressure display part 250 of the outer cap 200 not being pressurized, the second rotation protrusion 220 is configured to go over the close guide protrusions 130 when the outer cap 200 is rotated to opening direction, whereas the second rotation protrusion 220 is configured to be interlocked with the close guide protrusions 130 rotating the inner cap 100 together when the outer cap 200 is rotated to closing direction. When rotating the outer cap 200 to closing direction, an end part 222 of the outer cap 200 meets a vertical plane 132 of the close guide protrusions 130 and delivers a rotating force of the outer cap 200 to the inner cap 100.
(20) The second rotation protrusion 220 rotates the inner cap 100 together by making the outer cap 200 rotate to closing direction, thereby making it possible to screw-combine the inner cap 100 firmly to the container body 10 in the same way as a cap with a screw combination.
(21) Meanwhile, on an upper end of the outer cap 200, a combining hole 230 is formed so that a combining part 140 of the inner cap 100 can be penetrated and combined, and a securing protrusion 231, wherein a protrusion 141 is secured encircling a combining hole 230, is formed so that the inner cap 100 can be detached along with the outer cap 200 when the outer cap 200 is detached from the container body 10.
(22) Meanwhile, on an inner circumferential surface of the outer cap 200 are formed protusively a multitude of elastic pieces 240 with a fixed distance apart, extending from a point of an inner circumferential surface of the outer cap 200 as forming a gently curved surface so as to be contacted to an outer circumferential surface of the inner cap 100, wherein the elastic pieces 240 are contacted to an outer circumferential surface of the inner cap 100 and prevent the outer cap 200 from being shaken, which is caused by a space formed between the inner cap 100 and the outer cap 200 when the outer cap 200 rotates.
(23) Meanwhile, on an outer circumferential surface of the outer cap 200 is installed a pressure display part 250 that is positioned corresponding to display a side pressure part of the outer cap 200, wherein the pressure display part 250 is configured to provide a function of preventing a user's hand from slipping when the outer cap 200 rotates in a state of a user's pressurizing the pressure display part 250.
(24) Hereinafter, referring to
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(26) Firstly, referring
(27) As the above, when the inner cap 100 rotates into opening direction, a screw combination of the inner cap 100 is released from the container body 10, and thereby a safety cap gets to be opened.
(28) Next, referring to
(29) As the above, when the inner cap 100 rotates to closing direction, the inner cap 100 screw-combines to the container body 10, thereby being able to close the safety cap in the same way as a general screw-combining type of safety caps closes a container body.
(30) On the other hand, in the present invention, when the safety cap opens, if the outer cap 200 is rotated to opening direction at a state of a pressure display part 250 of the outer cap 200 not being pressurized, then open guide protrusions 120 and a first rotation protrusion 210 are positioned, detached from each other as in
(31) The present invention, when opening or closing the safety cap, is able to open and close the safety cap, utilizing different opening and closing structures respectively; therefore, it is possible to prevent an open and close structure from being broken or deformed in the process of opening and closing, and thereby, also possible to open and close the safety cap safely.
(32) As described above, optimal embodiments have been disclosed in the drawings and the specification. Although specific terms have been used herein, these are only intended to describe the present invention and are not intended to limit the meanings of the terms or to restrict the scope of the present invention as disclosed in the accompanying claims. Therefore, those skilled in the art will appreciate that various modifications and other equivalent embodiments are possible from the above embodiments. Therefore, the scope of the present invention should be defined by the technical spirit of the accompanying claims.