Dispenser device without air intake for applicator nozzles for various types of flexible packaging
11400472 · 2022-08-02
Inventors
Cpc classification
B05B11/0075
PERFORMING OPERATIONS; TRANSPORTING
B05B11/026
PERFORMING OPERATIONS; TRANSPORTING
B05B11/0072
PERFORMING OPERATIONS; TRANSPORTING
A45D34/04
HUMAN NECESSITIES
B65D47/2075
PERFORMING OPERATIONS; TRANSPORTING
B05B11/007
PERFORMING OPERATIONS; TRANSPORTING
B05B9/0838
PERFORMING OPERATIONS; TRANSPORTING
International classification
B05B11/04
PERFORMING OPERATIONS; TRANSPORTING
B05B11/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
DISPENSER DEVICE WITHOUT AIR INTAKE FOR NOZZLES FOR VARIOUS TYPES OF FLEXIBLE PACKAGING, with an outlet chamber (1) that is hermetically controlled by a plug (2), an elastomeric valve (3) and an elastic pad (18); the vertical outlet chamber (1) is defined by a cylindrical capsule (4) and any nozzle (5) together with an internal elastomeric mass (6); the lower capsule (4) has a sealing seat (7) housing the plug (2), which works jointly with an elastic pad (18), so that between it and the lower capsule (4) a passage is formed for the product to be dispensed; the lower capsule (4) and the nozzle (5) are combined with variable parts (8a) and (8b) coupling with the nozzle (9) of any flexible container (10); the plug (2) is housed in the sealing seat (7) with enough clearance to be moved up and down when internal pressure occurs or ceases inside the flexible container (10) and allows the product to pass through the sealing seat (7) or to close it tightly; the elastomeric valve (3) has an elastic opening point (11) designed to open and close when the pressure inside the flexible container is interrupted or present (10).
Claims
1. A dispenser device without air intake for nozzles for various types of flexible packaging, comprising: a vertical outlet chamber hermetically controlled by two extremity blocks, a lower extremity block in the form of a plug and an upper extremity block in the form of an elastomeric valve; the vertical outlet chamber being defined by hollow parts of a lower cylindrical capsule and a nozzle together with an internal elastomeric mass; the lower capsule has a sealing seat to drive the plug, so that between the plug and the lower capsule a passage can be formed which can be opened or closed for the output or water tightness of a product; the plug is kept lightly pressed against the sealing seat through an elastic pad; the lower capsule and the nozzle are combined with variable parts coupling to a nozzle of a flexible container; the flexible container can be pressed and must be made of a flexible plastic material with memory to return to its original shape and in order to cause suction inside; the plug is housed in the sealing seat with enough clearance to be moved up and down when internal pressure occurs or ceases inside the flexible container and allows the product to pass through the sealing seat or close it tightly; the elastic pad has enough elasticity to be compressed concomitantly with the displacement of the plug when there is internal pressure in the container; the elastomeric valve has an elastic opening point designed to open and close when there is pressure and when the pressure inside the flexible container is interrupted; and the plug, the elastomeric valve and the elastic pad return to a watertight position when the flexible container is no longer pressed and its flexible memory tries to return to its original state.
2. The dispenser device without air intake for nozzles for various types of flexible packaging, according to claim 1, wherein the plug, made of a substantially malleable material, presents the shape of a cup with a tapered upper part in the form of a cup, with the smaller diameter closed and facing downwards and from which it extends vertically to a cylindrical guide that ends at the lower part in a blind flange, which is also tapered.
3. The dispenser device without air intake for nozzles for various types of flexible packaging, according to claim 1, wherein the lower cylindrical capsule in the region of the sealing seat, presents a bottom part hollowed out by a hole, whose internal diameter has equidistant radial vertical projections, whose upper ends form claws in the form of teeth that are radially turned inward and positioned at the upper end of said hole which, in turn, expands with several circular bands, in which an intermediate is tapered and forms the sealing seat.
4. The dispenser device without air intake for nozzles for various types of flexible packaging, according to claim 2, wherein the blind flange of the plug is forced from top to bottom inside the lower capsule to pass through radially turned inward teeth.
5. The dispenser device without air intake for nozzles for various types of flexible packaging, according to claim 2, wherein the blind flange has a smaller diameter than a hole of the lower capsule and forms a passage for the product between both.
6. The dispenser device without air intake for nozzles for various types of flexible packaging, according to claim 2, wherein the plug, housed in the sealing seat, is guided by its cylindrical guide, which slides between radially turned inward teeth of the lower capsule, wherein the travel path of said plug is defined by the blind flange and the undersides of said radially turned inward teeth.
7. The dispenser device without air intake for nozzles for various types of flexible packaging, according to claim 1, wherein the elastic pad, after assembly, is compressed between the nozzle and the plug, keeping the plug pressed in the watertight position against the sealing seat.
8. The dispenser device without air intake for nozzles for various types of flexible packaging, according to claim 1, wherein that the plug is formed of parts capable of being compressed and stretched elastically.
9. The dispenser device without air intake for nozzles for various types of flexible packaging, according to claim 1, wherein the elastic pad comprises two integrated parts, being an upper horizontal ring and a lower vertical rod, both interconnected by arched and flexible links; the elastic pad is mounted inside the lower capsule with light compression, where the upper ring is supported against the lower side of the nozzle, while on the opposite side the vertical rod has its bottom extremity supported on the inside of the plug, axially aligned with a cylindrical guide of the plug.
10. The dispenser device without air intake for nozzles for various types of flexible packaging, according to claim 8, wherein the parts of the plug are formed from the group consisting of a spring, elastomeric parts, and/or flexible plastic parts.
Description
DESCRIPTION OF THE DRAWINGS
(1) For a better understanding of the present invention, a detailed description is given below, making reference to the attached drawings, all of which are exemplary:
(2)
(3)
(4)
(5)
(6)
DETAILED DESCRIPTION OF THE INVENTION
(7) According to these illustrations and in their details, more particularly the
(8) As shown in
(9) All material above from application PCTBR2018050189, filed on Jun. 12, 2018, has been included into this request for better understanding.
(10) As already mentioned, the packaging from PCTBR2018050189 includes an automatic sealing system that works through the negative pressure generated by the container (10). The bottle performs suction on the plug (2) to the closed position and, consequently, the plug (2) is displaced downwards or to be seated on the sealing seat (7) of the cylindrical capsule (4), thus generating the watertightness of the mechanism.
(11) An important detail described in PCTBR2018050189 is that the automatic sealing system occurs only after the FIRST USE of the packaging, that is, the desired negative pressure occurs after the first pressing of the bottle or first use, consequently, after the packaging is made available for sale, the internal pressure of the packaging is atmospheric, that is, the same as when it was bottled, therefore, at that moment there is no negative pressure inside the packaging capable of promoting suction (negative pressure) and moving the valve or plug (2) according to a desired pressure up to the closed (sealed) position.
(12) Therefore, it would be desirable for there to be an automatic seal also after the packaging is filled and before its first use.
(13) In view of the above, the packaging described in application PCTBR2018050189 was modified to perform an automatic seal immediately after the packaging is filled.
(14) To meet this new characteristic, illustrated in
(15) The elastic pad (18) is of a spring-type that, after the assembly, remains “compressed”, consequently, it has sufficient expansion force to keep the valve or plug (2) pressed against its sealing seat (7), ensuring the desired watertightness right after the filling of the packing.
(16) Said elastic pad (18) also presents elasticity that enables it to be compressed by the plug itself (2) at the first use and subsequent uses, because, when pressing the container (10), the internal pressure displaces the plug (2) enough for it to move away from its sealing seat (7) and, concomitantly, the product flows to the dispensing nozzle. Once the internal pressure has ceased, the packaging memory, as already mentioned, promotes the suction and displacement of the valve until it returns to its original watertight position. In this last phase, the sealing occurs automatically due to the presence of suction, however, the elastic pad also expands, which generates a faster and more precise sealing.
(17) An elastic pad (18) means any component with parts capable of being compressed and stretched elastically, such as a spring of any material and shape, elastomeric parts, flexible plastic parts and/or others.
(18) In a preferred construction, illustrated in said
(19)
(20) The drawings are merely illustrative, since, as it is known, the packaging itself can present a considerable range of variations and its construction details do not alter the functional concept of the device in question.
(21) The illustrated packaging lacks an overcap, since such a detail does not interfere with the construction of the present device.
(22) For example, the nozzle (5) can have variable external details according to the product and its application.
(23) On the other hand, the lower capsule (4), although illustrated as an independent part, can be integrated into different parts that close the flexible container (10).
(24) After what has been exposed and illustrated, the present device embodies the aforementioned advantages of PCTBR2018050189 and the application in question: the automatic sealing system ensures tightness after filling and after the first use, thus solving an inconvenience of the previous device; the outlet chamber (1) combined with the plug (2), the elastomeric valve (3) and the elastic pad (18), contributes to the present device being manufactured with a reduced size and, therefore, it can be used in a considerable variety of flexible packaging types, especially those with reduced capacities that cannot receive complex devices such as a pump or similar, prevent the intake of air (air-less). the outlet chamber (1) combined with the plug (2) and the elastomeric valve (3) also adds the necessary means to replace complex devices, notably pumps used in other packages with larger capacities; the outlet chamber (1) combined with the plug (2), the elastomeric valve (3) and the elastic pad (18), prevents the intake of air and, consequently, preserves the original characteristics of the product and prevents contamination of the portion of product remaining inside the outlet chamber (1); the outlet chamber (1) combined with the plug (2) and the elastomeric valve (3), and the elastic pad (18), also features a perfect operation with a variety of products of different aggregation states, semi-solids and liquids, with enhanced fluidity, whether they are cosmetics, drugs, food or chemicals; the outlet chamber (1), the plug (2), the elastomeric valve (3) and the elastic pad (18), combined with the remaining part of the product, provide an efficient means for perfect watertight effect and for the precise control of the quantity of product ejected, even avoiding external residual parts, runoff and dripping; due to the reduced number of components, that is, the opening and closing are defined by only four components, the outlet chamber (1), the plug (2), the elastomeric valve (3) and the elastic pad (18), as well as due to the fact that said assembly is independent, this allows the device to replace the traditional complex devices without air intake, even with mere dimensional variations it is possible to adapt the assembly so that it can work with products of different viscosities, providing the means necessary for considerable reduction of the final cost of packaging, maintaining the same efficiency when compared to more complex devices designed to prevent air from entering, especially those with springs, plungers and others.
(25) It will be understood that certain characteristics and combinations of the device in question with any nozzle (5) and with any flexible container (10) can vary considerably, maintaining the same functional concept for the assembly; consequently, it is noted that the construction that is hereby described in detail by way of example is clearly subject to constructive variations of such parts; however, this is all within the invention scope revealed initially and defined by an exit chamber, vertical and hermetically controlled by two extremity valve blocks, both driven by the internal pressure of the packaging itself, both at the opening as well as at the watertight closing, and as many modifications can be made in the configuration that is hereby detailed according to the descriptive requirements of the law; it must be understood that the details presented should be interpreted as illustrative and not limiting.