US20260176033A1 · App 19/424,969
OLIVE OIL CONTAINER
Publication
Application
Classifications
IPC Classifications
CPC Classifications
Applicants
Torres Morente, S.A.U.
Inventors
Luis TORRES-MORENTE CONCHA
Abstract
An olive oil container including a bottle having a neck and a dispensing cap arranged on the neck of the bottle for dispensing the olive oil. The dispensing cap includes a movable cap and a cap base snap-fitted to the neck. The movable cap has an inner housing that is in fluid communication with a discharge hole through which the olive oil is dispensed. The cap base has a dispensing channel that is in fluid communication with an interior of the bottle and the inner housing of the movable cap. The cap base includes a shutter for closing the discharge hole of the movable cap. The movable cap has an inner threaded surface that cooperates with an outer threaded surface of the cap base to axially move the movable cap between a closing position and a dispensing position. In the closing position the shutter closes the discharge hole.
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Figures
Description
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001]This application relates to and claims the benefit and priority to Spanish Utility Model No. U202432361, filed Dec. 20, 2024, which is incorporated herein by reference in its entirety.
TECHNICAL FIELD
[0002]The present invention relates to olive oil containers.
BACKGROUND
[0003]Olive oil is one of the healthiest foods available, with clear benefits backed by various scientific studies, meaning that moderate and regular consumption of this food offers significant advantages for the body.
[0004]Olive oil is usually sold in containers of different sizes, typically 1 liter, 2 liters, 3 liters, or 5 liters. The containers generally consist of a bottle containing the olive oil and a cap that closes the neck of the bottle, but in some cases, the containers have a dispenser attached to the neck of the bottle that allows the oil to be dispensed. However, these dispensers may not dispense the oil properly, usually pouring more oil than is actually desired. For this reason, it is common for consumers to use additional containers of smaller capacity that they fill with olive oil from the larger bottle.
[0005]For example, ES1199337U describes an oil container comprising a bottle for containing olive oil with a bottle neck where a dispensing cap is provided for dispensing the oil contained in the bottle.
SUMMARY
[0006]The invention relates to an olive oil container comprising a bottle for containing olive oil which has a neck and a dispensing cap arranged on the neck of the bottle for dispensing the olive oil contained in the bottle. The dispensing cap comprises a movable cap and a cap base permanently snap-fitted to the neck of the bottle, wherein the movable cap has an inner housing that is connected to a discharge hole for dispensing the olive oil, and the cap base has a dispensing channel that communicates with the bottle and a shutter for closing the discharge hole of the movable cap, and wherein the movable cap has an inner threaded surface that cooperates with an outer threaded surface of the cap base to axially move the movable cap between a closing position and an olive oil dispensing position, such that in the dispensing position the discharge hole of the movable cap communicates with the dispensing channel of the cap base to dispense the olive oil, and in the closing position, the discharge hole of the movable cap is closed by the shutter of the cap base.
[0007]This provides an olive oil container with a two-part dispensing cap. The cap base of the dispensing cap allows a permanent coupling between the dispensing cap and the bottle, preventing the dispensing cap from accidentally detaching from the bottle, while the movable cap that moves relative to the cap base allows for proper dispensing of the olive oil contained in the bottle. In addition, the container is single-use, avoiding the need to use refillable containers with a specific dispenser.
[0008]These and other advantages and features will become apparent from the figures and the detailed description.
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
[0020]
[0021]In the sense of the invention, the term “axial” refers to a direction parallel to the longitudinal axis X of the container, and the term “diametric” refers to a direction perpendicular to the longitudinal axis X of the container. The term “upward” refers to a direction parallel to the longitudinal axis X extending toward the dispensing cap 200 of the container, and the term “downward” refers to a direction opposite to the previous one and parallel to the longitudinal axis X extending toward the bottom of the container.
[0022]The dispensing cap 200 comprises a movable cap 210 (see
[0023]As can be seen in the example in
[0024]The movable cap 210 has an inner threaded surface 213 that cooperates with an outer threaded surface 223 of the cap base 220 to axially move the movable cap 210 between a closing position and an olive oil dispensing position, such that, in the dispensing position, the discharge hole 212 of the movable cap 210 is connected to the dispensing channel 221 of the cap base 220 to dispense the olive oil, and in the closing position, the discharge hole 212 of the movable cap 210 is closed by the shutter 222 of the cap base 220, preventing the dispensing of olive oil. In this way, the threaded surfaces 213 and 223 cooperate with each other to axially displace the movable cap 210 in response to the rotation of the movable cap 210 on the cap base 220.
[0025]The cap base 220 comprises a lower portion 224 that is permanently coupled by elastic snap-fit engagement with the neck 110 of the bottle 100 and an upper portion 225 that projects vertically upward from the lower portion 224, and where the movable cap 210 is screwed onto the upper portion 225 of the cap base 220. Both the upper portion 225 and the lower portion 224 have a hollow cylindrical shape, with the upper portion 225 having a smaller diameter than the lower portion 224.
[0026]The upper portion 225 of the cap base 220 has inside it the dispensing channel 221 which communicates with the bottle 100, and the upper portion 225 has an outer face which is partially covered by the outer threaded surface 223 which cooperates with the inner threaded surface 213 of the movable cap 210.
[0027]The shutter 222 is supported on legs 230 that project vertically upward from the upper end of the cap base 220, leaving the shutter 222 separated from the cap base 220 by a distance to allow the passage of olive oil between the dispensing channel 221 and the discharge hole 212 through the legs 230. Preferably, the shutter 222 is supported on three legs 230 that project vertically upward from the upper annular end of the upper portion 225 of the cap base 220.
[0028]As seen in the examples in
[0029]As seen in
[0030]Preferably, the neck 110 of the bottle 100 has another outer annular flange 112 that projects radially outward from the container and provides a support for the lower free end of the wall 226 of the lower portion 224 of the cap base 220. In this way, the outer annular flange 112 provides a stop that limits the placement of the cap base 220 on the neck 110 of the bottle 100. More preferably, the outer annular flange 112 has a stepped, L-shaped configuration to support the lower corner of the wall 226 of the cap base 220.
[0031]Preferably, the dome 228 has an annular projection 229 that projects vertically into the interior of the bottle 100, contacting the annular projection 229 with the inner face of the neck 110 of the bottle 100 to establish an airtight seal between the dispensing cap 200 and the bottle 100. In this way, the annular protrusion 229 directs the olive oil towards the dispensing channel 221 of the cap base 220, preventing oil from leaking outside the neck 110 of the bottle 100.
[0032]Even more preferably, as can be seen in
[0033]In this way, a secure four-zone coupling is obtained between the cap base 220 and the neck 110 of the bottle 100. A first coupling zone is established between the annular flange 227 of the dispensing cap 200 and the annular flange 111 of the neck 110 of the bottle 100. A second coupling zone is established between the annular projection 229 of the dome 228 of the dispensing cap 200 and the inner face of the neck 110 of the bottle 100. A third coupling zone is established between the dome 228 of the dispensing cap 200 and the upper free end 113 of the neck 110 of the bottle 100. A fourth coupling zone is established between the lower free end of the wall 226 of the cap base 220 and the outer annular flange 112 of the neck 110 of the bottle 100.
[0034]Preferably, the movable cap 210 has a security seal 214 that connects the movable cap 210 to the cap base 220, the security seal 214 breaking when the movable cap 210 is first moved from the closing position to the dispensing position.
[0035]Even more preferably, the security seal 214 comprises a plastic strip that joints the lower end of the movable cap 210 to the dome 228 of the lower portion 224 of the cap base 220, the plastic strip having windows 215 that define break points 216 to facilitate the breaking of the security seal 214.
[0036]Even more preferably, the plastic strip has windows 215 of a first width and windows 215′ of a second width, the first width being greater than the second width (the width being determined in the axial direction). Even more preferably, the windows 215 and 215′ are arranged alternately along the plastic strip, with a window 215 with the first width being arranged between two windows 215′ with the second width. In this way, the plastic strip is sufficiently rigid to ensure the connection of the movable cap 210 to the cap base 220 but without requiring excessive force to break the connection between the two.
[0037]As shown in detail in
[0038]The cap base 220 has two diametrically opposed ramps 232, each of the ramps 232 ending in a vertical face 233 (see
[0039]In this way, during the unscrewing of the movable cap 210, i.e. during the axial displacement of the movable cap 210 towards the dispensing position, the tabs 219 slide over the ramps 232, raising the movable cap vertically and thus assisting the axial displacement of the movable cap 210, while during the screwing of the movable cap 210, the tabs 219 abut against the vertical front 233 of the ramps 232, preventing the movable cap 210 from being over-screwed.
[0040]As shown in
[0041]Preferably, the movable cap 210, the cap base 220, and the bottle 100 are respectively manufactured in a single piece by plastic injection molding. Alternatively, the movable cap 210 and the cap base 220 may each be manufactured in a single piece by plastic injection molding, and the bottle 100 may be manufactured from a single piece of metal by deep drawing.
Claims
1. A container comprising:
a bottle configured to contain a liquid, the bottle having a neck;
a dispensing cap arranged on the neck of the bottle for dispensing the liquid contained in the bottle, the dispensing cap comprising:
a movable cap having an inner housing that is in fluid communication with a discharge hole for dispensing the liquid, the movable cap having an inner threaded surface; and
a cap base permanently snap-fitted to the neck of the bottle and having a dispensing channel, the dispensing channel being in fluid communication with an interior of the bottle and the inner housing of the movable cap, the cap base having a shutter that is configured to close the discharge hole of the moveable cap, the cap base having an outer threaded surface that cooperates with the inner threaded surface of the movable cap to axially move the movable cap between a closing position and a liquid dispensing position, such that in the liquid dispensing position the discharge hole of the movable cap is open and in fluid communication with the dispensing channel to dispense the liquid, and in the closing position the discharge hole of the movable cap is closed by the shutter.
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