Apparatus for the delivery of fluid products
09656226 ยท 2017-05-23
Assignee
Inventors
Cpc classification
B01F33/841
PERFORMING OPERATIONS; TRANSPORTING
B05B15/52
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
Apparatus for the delivery of fluid products comprising a base, a base support associated thereof, a plurality of dispensing units to dispense the fluid products contained in containing receptacles. The dispensing units are disposed on a platform rotatable with respect to the base support so as to assume at least a first position in which the fluid products can be delivered from the receptacles toward a container. The apparatus also comprises sliding means which allow the rotation of the platform. Rapid connection means are provided so as to achieve the connection of the base support with the base and/or with the sliding means in order to achieve a selective stable coupling and to prevent a reciprocal vertical movement.
Claims
1. An apparatus for the delivery of fluid products comprising a base, a rotatable platform provided with a plurality of dispensing units, a base support disposed between said base and said rotatable platform, said plurality of dispensing units being configured to dispense said fluid products contained in receptacles, said rotatable platform being selectively rotatable with respect to said base support around a vertical axis of rotation in order to dispose at least one of said dispensing units in at least a first position in which said fluid products are suitable to be delivered from said receptacles to a container, support elements being provided in order to allow the rotation of said platform, each of said support elements comprising a support element base, wherein first same-shape coupling connection means are provided to connect said base support to said base and second same-shape coupling connection means are provided to connect said base support to said support elements, so as to achieve selective stable coupling and prevent reciprocal vertical movement along said axis of rotation, wherein the first same-shape coupling connection means includes locking elements provided on a surface of the base support and mating eyelets made on an upper part of said apparatus base, wherein the second same-shape coupling connection means comprises second connection elements to achieve the connection between said base support and said support elements, wherein said base of said apparatus has an upper part provided with a first seating, and with a locking button having two locking teeth matingly inserted into said first seating, wherein a spring is inserted inside the first seating to maintain the locking button thrust upward, wherein the base support has a through hole, an upper part of said locking button being inserted in said through hole for selectively blocking rotation of the base support, and wherein said second connection elements comprise at least a third seating made in said base support and at least a second locking element provided on said support elements and suitable to couple with said third seating.
2. The apparatus as in claim 1, wherein movement means are interposed between said base support and said rotatable platform and are suitable to actuate stirring means suitable to mix the fluid products contained in said receptacles, and wherein said support elements are conformed to keep said movement means centered with respect to said vertical axis of rotation.
3. The apparatus as in claim 2, wherein said movement means comprises an annular cam element, said annular cam element comprising a rack configured to cooperate with a toothed wheel keyed onto a drive shaft of an electric motor for rotating the annular cam element, said annular cam element resting on said support elements.
4. The apparatus as in claim 2, wherein the rotatable platform comprises a plurality of seatings suitable to accommodate the respective dispensing units, wherein said movement means comprise second cam elements in equal number to the number of said seatings of the rotatable platform.
5. The apparatus as in claim 1, wherein said each of said locking elements comprises a head and a connection portion, between said head and said base support, having at least a reduced width with respect to a width of said head, and wherein each of said eyelets comprises a first portion having a determinate width, and a second portion having a greater width than the determinate width of said first portion and a shape mating with a shape of said head.
6. The apparatus as in claim 1, wherein an interference element is associated with said base and is suitable to selectively prevent the rotation of said base support, with respect to said base, around said vertical axis of rotation.
7. The apparatus as in claim 6, wherein said interference element comprises an end suitable to cooperate with a mating second seating made in said base support.
8. The apparatus as in claim 7, wherein an elastic element is associated with said interference element and is suitable to keep said interference element normally coupled with said second seating.
9. The apparatus as in claim 1, wherein each of the support element bases is conformed to support bearings, wherein a T-shaped attachment element comprises a base portion and a connection portion, which is interposed between said base portion of said T-shaped attachment element and said support element base, and has a section size which is smaller than a section size of said base portion of said T-shaped attachment element, and wherein a T-shaped seating comprises a first part having a shape and size mating with a shape and a size of said base portion of said T-shaped attachment element and a second part having a reduced width with respect to a width of said first part of said T-shaped seating.
10. The apparatus as in claim 9, wherein a contrast tooth on said support element base is suitable to cooperate with said first part of said T-shaped seating and to prevent, during use, the sliding of said support element base with respect to said T-shaped seating.
11. The apparatus as in claim 10, wherein said bearings are mounted rotatably on support pins of said base of said support element, wherein said support pins comprise attachment means of the snap-in type, suitable to constrain said bearings axially to said support pins.
12. The apparatus as in claim 11, wherein movement means are interposed between said base support and said rotatable platform and are suitable to actuate stirring means suitable to mix the fluid products contained in said receptacles, and wherein said support elements are conformed to keep said movement means centered with respect to said vertical axis of rotation, wherein said movement means comprises an annular cam element, said annular cam element comprising a rack configured to cooperate with a toothed wheel keyed onto a drive shaft of an electric motor for rotating the annular cam element, said annular cam element resting on said support elements, wherein said support pins comprises a first support pin and a second support pin, wherein said bearings comprises a first bearing mounted on the first support pin, said first bearing contacting a lower surface of the annular cam element, and a second bearing mounted on the second support pin, said second bearing contacting a lateral and more external surface of the rack of the annular cam element.
13. The apparatus as in claim 9, wherein said bearings are mounted rotatably on support pins of said base of said support element, wherein said support pins comprise attachment means of the snap-in type, suitable to constrain said bearings axially to said support pins.
14. The apparatus as in claim 13, wherein movement means are interposed between said base support and said rotatable platform and are suitable to actuate stirring means suitable to mix the fluid products contained in said receptacles, and wherein said support elements are conformed to keep said movement means centered with respect to said vertical axis of rotation, wherein said movement means comprises an annular cam element, said annular cam element comprising a rack configured to cooperate with a toothed wheel keyed onto a drive shaft of an electric motor for rotating the annular cam element, said annular cam element resting on said support elements, wherein said support pins comprises a first support pin and a second support pin, wherein said bearings comprise a first bearing mounted on the first support pin, said first bearing contacting a lower surface of the annular cam element, and a second bearing mounted on the second support pin, said second bearing contacting a lateral and more external surface of the rack of the annular cam element.
15. The apparatus as in claim 1, wherein the base support is disc-shaped.
16. The apparatus as in claim 1, wherein said first same-shape coupling connection means and said second same-shape coupling connection means are selected from the group of snap-in, bayonet, joint, and interference connections.
17. An apparatus for the delivery of fluid products comprising a base, a rotatable platform provided with a plurality of dispensing units, a base support disposed between said base and said rotatable platform, said plurality of dispensing units being configured to dispense said fluid products contained in receptacles, said rotatable platform being selectively rotatable with respect to said base support around a vertical axis of rotation in order to dispose at least one of said dispensing units in at least a first position in which said fluid products are suitable to be delivered from said receptacles to a container, support elements being provided in order to allow the rotation of said rotatable platform, each of said support elements comprising a support element base, wherein first same-shape coupling connection means are provided to connect said base support to said base and second same-shape coupling connection means are provided to connect said base support to said support elements, so as to achieve selective stable coupling and prevent reciprocal vertical movement along said axis of rotation, wherein the first same-shape coupling connection means includes locking elements provided on a surface of the base support and mating eyelets made on an upper part of said apparatus base, wherein the second same-shape coupling connection means comprises a T-shaped attachment element and a contrast tooth provided on a lower part of the support element base, said T-shaped attachment element and said contrast tooth being configured to mechanically cooperate with a respective T-shaped seating provided on the base support, wherein said base of said apparatus has an upper part provided with a first seating, and with a locking button having two locking teeth matingly inserted into said first seating, wherein a spring is inserted inside the first seating to maintain the locking button thrust upward, wherein the base support has a through hole, an upper part of said locking button being inserted in said through hole for selectively blocking rotation of the base support.
18. The apparatus as in claim 17, wherein the base support is disc-shaped.
19. The apparatus as in claim 18, wherein movement means are interposed between said base support and said rotatable platform and are suitable to actuate stirring means suitable to mix the fluid products contained in said receptacles, and wherein said support elements are conformed to keep said movement means centered with respect to said vertical axis of rotation, wherein said movement means comprises an annular cam element, said annular cam element comprising a rack configured to cooperate with a toothed wheel keyed onto a drive shaft of an electric motor for rotating the annular cam element, said annular cam element resting on said support elements.
Description
BRIEF DESCRIPTION OF THE SEVERAL VIEWS OF THE DRAWINGS
(1) These and other characteristics of the present invention will become apparent from the following description of a preferential form of embodiment, given as a non-restrictive example with reference to the attached drawings wherein:
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(33) To facilitate comprehension, the same reference numbers have been used, where possible, to identify identical common elements in the drawings.
DETAILED DESCRIPTION OF THE INVENTION
(34) With reference to
(35) A bracket 18 is associated with the base 11 and is able to support a container 17, in which a base substance is contained, for example.
(36) A processing unit 16 is suitable to command the rotation of the rotatable platform 12 and to dispose the dispensing units 13 in correspondence to the container 17 below and to command the delivery of the fluid products into the container.
(37) Between the rotatable platform 12 and the base 11 a base support 20 (
(38) In particular the rotatable platform 12 can rotate with respect to the base support 20, in the two directions of rotation, clockwise and anticlockwise, indicated by the letter R (
(39) The base support 20 (
(40) The base support 20 (
(41) The locking elements 21 (
(42) The first eyelets 22 (
(43) The base support 20 (
(44) In order to lock the rotation of the base support 20, and prevent it from decoupling from the base 11, the latter is provided with a locking button 30 (
(45) A spring 33 is inserted inside the first seating 31 in abutment against its bottom, and is suitable to constantly maintain the locking button 30 thrust upward. In this way the latter can complete a limited vertical travel inside the first seating 31.
(46) The upper part of the button 30 is inserted in a through hole 34 made in the base support 20, in this way blocking the rotation of the latter.
(47) If it is necessary to decouple the base support 20 from the base 11, it is sufficient to act on a grip portion 36 (
(48) A housing seating 38 is made in the base support 20 to house a drive unit 39 of the dispensing unit 13 which during the rotation is disposed in proximity to the bracket 18.
(49) In particular, the base support 20 is mounted on the base 11 so that the housing seating 38 is located in cooperation with the bracket 18 on which the container 17 is located.
(50) The drive unit 39 (
(51) The dispensing unit 13 (
(52) A cover element or casing 52 is attached, and is placed to cover the delivery circuit 47 in known modes.
(53) The cam element 48 (
(54) The first part 55 is associated with the second part 56 with axes disposed staggered with respect to each other so that, when the second part 56 is made to rotate around its own axis, an eccentricity of the first part 55 is achieved which is converted into alternate motion for an actuation element 46 (
(55) The cam element 48 (
(56) The actuator element 63 (
(57) Both the inlet pipe 50 (
(58) Specifically each valve 190 (
(59) The cartridge 191 is provided with a closing stopper 195 to close the pipes and with four ribs 196 which extend orthogonally and inclined toward the center, with respect to the stopper 195.
(60) The ribs 196 terminate at the upper part with protuberances 197.
(61) During use, the annular element 192 is inserted through the ribs 196 abutting against the stopper 195, and the spring 193, which is also inserted through the ribs 196, abuts against the annular element 192 and is held at the upper part against the protuberances 197 which prevent it from coming out.
(62) The dispenser nozzle 49 (
(63) The spacer element 69 is connected to the external body 67 by means of a snap-in connection, while the closing cover 71 is connected to the external body 67 by means of a joint connection.
(64) Specifically, the membrane 68 is inserted on the bottom of the external body 67 of the nozzle 49 and the spacer element 69 provides to keep it clamped and in position.
(65) The external body 67 has four grooves made on the circumferential surface of the through hole 75, in an axial direction, made in opposite pairs and equally spaced with respect to each other. In particular (
(66) The spacer element 69 is provided with two locking teeth 72 which, in the assembly step of the nozzle 49 are inserted through the first pair of grooves 73, inside the two circumferential eyelets 76, impeding any axial decoupling and keeping the membrane 68 in the desired position.
(67) The hermetic seal 70 (
(68) The external body 67 of the dispensing nozzle 49 has two pegs 81 on its external surface, opposite each other and which are able to be inserted in suitable two L-shaped seatings 82 (
(69) In another form of embodiment, it may be provided that the dispenser nozzle is conformed as indicated by the reference number 49a, that is, compared to the dispenser nozzle 49 having centering ribs, advantageously inclined, instead of a substantially truncated cone surface. In this case too, the nozzle 49a is provided with pegs 81 to couple by means of bayonet connection with the respective L-shaped seatings 82 of the casing 52.
(70) The base support 20 (
(71) Specifically, the second housing seating 90 (
(72) During use, the oblong portion 93, the abutment portion 94 and the central portion 95 of the electric motor 91 are inserted in the second housing seating 90 and with subsequent rotation, the latter is clamped to the base support 20.
(73) The annular cam element 92 is located concentric to the base support 20 and is made to rotate together with the rotatable platform 12, even in an independent manner with respect thereto, by means of the electric motor 91.
(74) In particular, on its lower surface, the annular cam element 92 (
(75) The annular cam element 92 (
(76) Each support element 101 (
(77) Each of the two support pins 103, 104 is suitable to support respective bearings 105, and in proximity to its free end, is provided with respective attachment elements 108 of the snap-in type which provide to keep the respective bearings 105 in position.
(78) The pair of bearings 105 provided on each support element 101 promotes the rotation of the annular cam element 92 (
(79) Each support element 101 (
(80) Specifically, the T-shaped attachment element 110 comprises a substantially rectangular base portion 115, and a connection portion 116 connecting the base portion 115 to the lower surface of the base 102 of the support element 101.
(81) The connection portion 116 has a width which is less than the length of the base portion 115.
(82) Each seating 113, made on the base support 20, is substantially T shaped, and comprises a first portion 117, substantially rectangular and mating with the base portion 115 of the attachment element and a second portion 118 with a reduced width and substantially equal to the thickness of the connection portion 116 of the T-shaped attachment element 110.
(83) The support element 101 is then solidly associated with the base support 20, inserting the base portion 115 of the T-shaped attachment element 110 inside the first portion 117 of the seating 113, and subsequently, making the support element 101 slide toward the second portion 118 inside the first portion 117, the insertion of the connection portion 116 inside the latter is determined.
(84) During the sliding, the contrast tooth 111 is inserted inside the first portion 117 of the seating 113 determining an impediment to the sliding, given that both the connection portion 116 and the contrast tooth 111 are confined inside two opposite surfaces of the seating 113.
(85) The annular cam element 92 (
(86) In particular, the concave and convex portions respectively of the first shaped part 121 are disposed staggered by one step with respect to the concave and convex portions of the second shaped part 122.
(87) The internal and external edges of the two shaped parts 121 and 122 (
(88) The second cam elements 125 are inserted in compartments 126 (
(89) The compartments 126 (
(90) The bottom wall 128 is provided with a through hole 130 which is surrounded by a stiffening edge.
(91) A support pin 135 suitable to support one of the second cam elements is inserted into the through hole (
(92) The support pin 135 comprises a shoulder 136 which during use abuts against the stiffening edge 131 of the through hole, and each of the two opposite ends is provided respectively with a first locking tooth 141 and a second locking tooth 142 both of the snap-in type.
(93) Both the first tooth 141 and the second tooth 142 cooperate with a notch 143 made on the body of the support pin to confer malleability when the locking occurs.
(94) Specifically the first locking tooth 141 allows to clamp a bearing 145 which, during use, abuts against the shoulder 136 and is held, precisely, by the first locking tooth 141.
(95) The second locking tooth 142 allows to hold the support pin 135 inside the through hole 130 between the two surfaces, lower and upper, of the stiffening edge 131.
(96) During use the external crown of the bearing 145 is inserted inside a cavity 147 of the second cam element 125, and a ridge 149 made in the cavity 147 allowing the stable coupling of the bearing 145 with the second cam element 125.
(97) The second cam element 125 (
(98) The second cam element 125 also comprises first fins 151 and second fins 152, lower than the first 151, and conformed to cooperate respectively with the first shaped part 121 and the second shaped part 122 so that (
(99) The rotatable platform 12, located above the base support 20, is able to slide on bearings 157 (
(100) The bearings 157 are mounted on respective pins 159 which in their turn are housed inside supports 160 made in a single body with the base support 20.
(101) The rotatable platform 12 is made to rotate by means of a motor unit 86 (
(102) In particular, the rotatable platform 12 (
(103) The rotatable platform 12 comprises a plurality of seatings 89 (
(104) The dispensing units 13 are disposed, with the respective dispensing nozzles 49, circumferentially in proximity to the external edge 163.
(105) The receptacles 15 containing the different fluid products are attached by means of connectors 171 and attachment means of a known type onto the upper surface of the rotatable platform 12, and the dispensing units 13 withdraw the fluid products from the receptacles 15 to achieve a desired composition.
(106) Each receptacle 15, in a known manner, is equipped inside with stirring means to stir the fluid product contained therein. The stirring means 19 comprise a shaft which exits from the lower end of the receptacle and which, during use, cooperates with the second cam elements 125.
(107) Specifically, the drawing ribs 153, provided in the cavity 147 of the second cam element 125, couple with a mating end of the rotation shaft of the stirring means 19.
(108) Connection tubes 169 (
(109) The base support 20 is also provided with protuberances 170 (
(110) The drip-catcher channels 172a, 172b, 172c and 172d are conformed to collect any possible residues of fluids which could drip from the dispenser nozzle 49.
(111) The drip-catcher channel 172c cooperates with the cleaning means 175 of the dispensing nozzles 49 which comprise an electric motor 186 which makes a cleaning brush 188 rotate around one of its pins 187.
(112) The drip-catcher channel 172c is provided with a containing element or basin 185 to contain liquid and with a first support 199 and a second support 200 of the pin 187, both made in a single body with the drip-catcher channel 172c. The first and second support 199 and 200 are disposed coaxially with respect to each other, both between the basin 185 and respectively the first on its internal edge and the second on its external edge.
(113) Specifically, the brush 188 is inserted in the compartment defined by the basin 185 and the pin 87 is inserted subsequently through the first support 199, the hole in the brush 188 and is inserted in the second support 200.
(114) The brush 188 is constrained, in an axial direction to the pin 187, by means of a gripping element 201, in this case an O-ring, while it is constrained to the pin circumferentially by means of interference. In particular, the brush 188 is made completely of rubber and is inserted by interference inside the pin 187 and, given its elasticity, adheres to the surface of the pin 187 remaining constrained to it also by a reciprocal sliding of the pin 187 and brush 188.
(115) The electric motor 186 is provided with a drawing element 202 conformed like a butterfly to cooperate with a mating cavity 203 made in the pin 187, and suitably shaped to the drawing element 202.
(116) The brush 188 is provided with rubber fins which, during use, contact the dispenser nozzle 49 to eliminate possible residues of fluid present on its surface, preventing them from drying up.
(117) The fins of the brush 188 are also suitable to contact the hermetic seal 70 of the dispenser nozzle 49, to deform it so that the residues of the fluid product are discharged from the bottom of the latter. In this way the drying out of the fluid product obstructing the aperture, is prevented.
(118) Given the deformability of the fins of the brush 188, the latter can be disposed in a position of interference with the nozzle dispenser 49, so as to increase the effect of cleaning and vibration which is exerted on the hermetic seal 70.
(119) The base support 20 (
(120) Each of the two buttons 178 comprises a protruding element 205 made in a single body with the base support 20, an electronic card 206 provided with a switch 207 and a closing cover 180 of the protruding element 205.
(121) Specifically, the protruding element 205 (
(122) The cover 180 also comprises a front part 208, which when subjected to thrust by the user, bends and contacts the switch 207 which is attached to it.
(123) In this way when a user finds a condition where it is necessary to stop the delivery operations of the apparatus, by actuating the front part 208 of the cover 180, he activates the switch 207 which, being connected in its turn to the processing unit 16, commands the operations to stop
(124) The functioning of the delivery apparatus 10 is described hereafter (
(125) The user supplies the processing unit 16 with a series of information relating to the fluid product which he wants to obtain, such as for example quantity, composition, shade of color or suchlike, and puts on the bracket 18 a container 17 to contain the fluid product he wants to obtain. In other forms of embodiment this operation can be governed by automated equipment.
(126) Depending on the information received from the user, the processing unit 16 commands the rotatable platform 12 to rotate, using the motor unit 86.
(127) In this way, one of the dispensing units 13 of the fluid product selected and contained in one of the receptacles 15 is taken into correspondence with the container 17 in order to deliver the fluid product.
(128) When the dispensing unit 13 is disposed in cooperation with the container 17, the two command fins 64 of the cam element 48 are in a substantially horizontal position and in cooperation with the actuation element 44 of the drive unit 39.
(129) The drive unit 39 makes the cam element 48 rotate, in this way driving the bellows pump 45 which provides to suck in the fluid product through the inlet pipe 50 and send it to the dispensing nozzle 49 through the outlet pipe 51. The valves 190 prevent the fluid product from flowing back during the suction and compression steps of the bellows pump 45, respectively through the outlet pipe 51 and the inlet pipe 50.
(130) The quantity of fluid product delivered will depend on the number of revolutions which are imparted to the cam element 48.
(131) When the established quantity of fluid product is reached, the drive unit 39 returns the command fins 64 into a substantially horizontal position, so that these do not prevent the rotation of the rotatable platform 12 by interfering with the actuation element 44 of the drive unit 39.
(132) After the delivery of the fluid product, the rotatable platform 12 is driven in order to bring the nozzle which has just delivered the fluid product into cooperation with the cleaning means 175. When the nozzle 49 is put in correspondence with the brush 188, the electric motor 186 is driven in order to proceed with the cleaning of the nozzle 49.
(133) Subsequently, and in the same way, it is possible to command the positioning of different dispensing units 13 in proximity to the container 17 in order to proceed with the delivery of the fluid product until the desired composition is obtained.
(134) During these delivery operations the annular cam element 92 is also made to rotate using the electric motor 91, which makes the second cam element 125 rotate by driving the stirring means 19 present inside the receptacles 15 containing the fluid products.
(135) Detection sensors which detect the position of the rotatable platform 12 and of the dispensing units 13 can be associated to the rotatable platform 12, to the base support 20 or to the annular cam element 92, in order to immediately know their angular positioning, and allow the processing unit 16 a correct formulation of the commands to be given.
(136) Similarly the drive unit 39, associated with the dispensing units 13, can also be provided with suitable sensors to stabilize the quantity of fluid product delivered, depending on the number of revolutions which is imparted to the cam element 48.
(137) It is clear that modifications and/or additions of parts may be made to the apparatus as described heretofore, without departing from the field and scope of the present invention.
(138) It is also clear that, although the present invention has been described with reference to some specific examples, a person of skill in the art shall certainly be able to achieve many other equivalent forms of apparatus, having the characteristics as set forth in the claims and hence all coming within the field of protection defined thereby.