Twist based dispenser
09815597 · 2017-11-14
Inventors
Cpc classification
B65D83/0066
PERFORMING OPERATIONS; TRANSPORTING
International classification
B65D83/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A dispenser for dispensing a fluent product by twisting a flexible bag which contains the fluent product. The bag ends are connected to a container composed of a lower hollow cylinder which fits into an upper hollow cylinder. The two parts have a mutual axis which enable twisting the bag by rotating one part with respect to the other. The lower part has elastic fins on its outer cylindrical surface and the upper part has ramp shaped grooves all along its inner cylindrical surface. The fins which fit the grooves implement a rotational ratchet mechanism with capability for vertical displacement which also allows for linear bag contraction during twisting. The ratchet mechanism enables accurate control of outflow and also keeps the bag in the last twisted pose it arrives to. The bag is connected to two container parts by two butterfly nuts which enable easy manual bag replacement.
Claims
1. A dispenser for dispensing a fluent product; the dispenser comprising: a container comprising; an upper part, having a side wall with a cylindrical inner surface; a ceiling connected to the side wall at an upper end of the upper part; and a ceiling opening through the ceiling; and a lower part, having a side wall with a cylindrical outer surface; a floor connected to the side wall at a lower end of the lower part; and a floor opening through the floor; the cylindrical outer surface is configured to fit into the cylindrical inner surface; the cylindrical inner surface and the cylindrical outer surface having a mutual longitudinal axis; and a bag configured to fit into the container and filled with the fluent product to be dispensed, the bag comprising; a bag upper end having a bag opening; a bag lower end; a skin between the bag upper end and the bag lower end made of a flexible and resilient material; an upper member coupled to the bag upper end having a nozzle with a threaded nozzle screw extending upwards from the upper member; wherein the bag opening is connected to the nozzle; wherein the threaded nozzle screw is configured to fit into the ceiling opening; and a lower member coupled to the bag lower end having a threaded screw extending downwards away from the lower member; wherein the threaded screw is configured to fit into the floor opening; the upper member coupled to the ceiling, and the lower member coupled to the floor; the container further comprising a rotational ratchet mechanism having a plurality of elastic fins protruding diagonally outwards from the cylindrical outer surface, and a plurality of ramp shaped grooves extending along an entirety of the cylindrical inner surface in a direction parallel to the mutual longitudinal axis while the plurality of elastic fins extending along a longitudinal portion of the cylindrical outer surface; the plurality of ramp shaped grooves are configured to receive the plurality of elastic fins when the upper part and the lower part of the container are fit together; wherein the rotational ratchet mechanism only allows a unidirectional rotation of the upper part relative to the lower part of the container, wherein the rotational ratchet mechanism also allows for a vertical displacement of the upper part relative to the lower part of the container; wherein, rotation of the upper part of the container relative to the lower part of the container, which in turn twists and collapses the bag internal to the container, causes the floor of the lower part to move closer to the ceiling of the upper part, while dispensing the fluent material via the nozzle.
2. The dispenser of claim 1, wherein the ceiling further comprising an upper polygonal recess and the upper member further comprising an upper polygonal section which is configured to fit into the upper polygonal recess; wherein, the upper polygonal section is configured to prevent rotation of the upper member relative to the upper part when the upper polygonal section is installed in the upper polygonal recess; wherein, the floor further comprising a lower polygonal recess and the lower member further comprising a lower polygonal section which is configured to fit into the lower polygonal recess; wherein, the lower polygonal section is configured to prevent rotation of the lower member relative to the lower part when the lower polygonal section is installed in the lower polygonal recess.
3. The dispenser of claim 2; wherein, the upper member is fastened to the upper part, when the upper polygonal section is installed into the upper polygonal recess and an upper butterfly nut is fastened on the threaded nozzle screw; the lower member is fastened to the lower part, when the lower polygonal section is installed into the lower polygonal recess and a lower butterfly nut is fastened on the threaded screw.
4. A dispenser for dispensing a fluent product; the dispenser comprising: a container comprising; an upper part, having a side wall with a cylindrical inner surface; a ceiling connected to the side wall at an upper end of the upper part; and a ceiling opening through the ceiling; and a lower part, having a side wall with a cylindrical outer surface; a floor connected to the side wall at a lower end of the lower part; and a floor opening through the floor; the cylindrical outer surface is configured to fit into the cylindrical inner surface; the cylindrical inner surface and the cylindrical outer surface having a mutual longitudinal axis; and a bag configured to fit into the container and filled with the fluent product to be dispensed, the bag comprising; a bag upper end having a bag opening; a bag lower end; a skin between the bag upper end and the bag lower end made of a flexible and resilient material; an upper member coupled to the bag upper end having a nozzle extending upwards from the upper member; wherein the bag opening is connected to the nozzle; wherein the nozzle is configured to fit into the ceiling opening; and a lower member coupled to the bag lower end; the upper member coupled to the ceiling, and the lower member coupled to the floor; the container further comprising a rotational ratchet mechanism having a plurality of elastic fins protruding diagonally outwards from the cylindrical outer surface, and a plurality of ramp shaped grooves extending along an entirety of the cylindrical inner surface in a direction parallel to the mutual longitudinal axis while the plurality of elastic fins extending along a longitudinal portion of the cylindrical outer surface; the plurality of ramp shaped grooves are configured to receive the plurality of elastic fins when the upper part and the lower part of the container are fit together; wherein the rotational ratchet mechanism only allows a unidirectional rotation of the upper part relative to the lower part of the container, wherein the rotational ratchet mechanism also allows for a vertical displacement of the upper part relative to the lower part of the container; wherein, rotation of the upper part of the container relative to the lower part of the container, which in turn twists and collapses the bag internal to the container, causes the floor of the lower part to move closer to the ceiling of the upper part, while dispensing the fluent material via the nozzle.
5. The dispenser of claim 4; wherein, the nozzle having a threaded nozzle screw extending upwards from the upper member; wherein the threaded nozzle screw is configured to fit into the ceiling opening; the lower member having a threaded screw extending downwards from the lower member; wherein the threaded screw is configured to fit into the floor opening.
6. The dispenser of claim 5, wherein, the ceiling further comprising an upper polygonal recess and the upper member further comprising an upper polygonal section which is configured to fit into the upper polygonal recess; wherein, the upper polygonal section is configured to prevent rotation of the upper member relative to the upper part when the upper polygonal section is installed in the upper polygonal recess; wherein, the floor further comprising a lower polygonal recess and the lower member further comprising a lower polygonal section which is configured to fit into the lower polygonal recess; wherein, the lower polygonal section is configured to prevent rotation of the lower member relative to the lower part when the lower polygonal section is installed in the lower polygonal recess.
7. The dispenser of claim 6; wherein, the upper member is fastened to the upper part, when the upper polygonal section is installed into the upper polygonal recess and an upper butterfly nut is fastened on the threaded nozzle screw; the lower member is fastened to the lower part, when the lower polygonal section is installed into the lower polygonal recess and a lower butterfly nut is fastened on the threaded screw.
8. The dispenser of claim 4, wherein, the ceiling further comprising an upper polygonal recess, and the upper member further comprising an upper polygonal section which is configured to fit into the upper polygonal recess; wherein, the upper polygonal section is configured to prevent rotation of the upper member relative to the upper part when the upper polygonal section is installed in the upper polygonal recess; the floor further comprising a lower polygonal recess, and the lower member further comprising a lower polygonal section which is configured to fit into the lower polygonal recess; wherein, the lower polygonal section is configured to prevent rotation of the lower member relative to the lower part when the lower polygonal section is installed in the lower polygonal recess.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE DRAWINGS
(9) As briefly described in previous section, the dispenser is composed of 3 major parts. As illustrated in
(10) As illustrated in
(11) As described in
(12)
(13) When the lower part 25A is installed inside hollow cylinder of the upper part 24A, the elastic fins 25B are able to rotate around the hollow cylinder's ramp shaped grooves 24B. The diagonal structure of the elastic fins and the matching diagonal structure of the ramp shaped grooves 24B manufactured on the inner cylindrical surface in the hollow cylinder of the upper part 24A allow rotation only in one direction. Thus, the lower part of the container 25A is able to rotate only in forward direction with respect to the upper part and is blocked in the reverse direction. Thus, the structures of the lower and upper parts create a rotational ratchet operation. The user can rotate the lower part with respect to the upper part only in forward direction. Since the ramp shaped grooves 24B are parallel to the mutual longitudinal axis of the cylindrical inner surface of the upper part 24A and the outer cylindrical surface of the lower part 25A, the lower part of the container 25A can move up or down along the mutual axis and still act also as a rotational ratchet at different axial displacements. This creates a rotational ratchet mechanism with capability for linear displacements.
(14) As illustrated in
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(16) Since the ramp shaped grooves 24B in the inner cylindrical surface of the upper part 24A have identical cross section shapes from the bottom to the top of 24A as illustrated in
(17) As depicted in