Transfer apparatus and corresponding transfer method
10227150 ยท 2019-03-12
Assignee
Inventors
Cpc classification
B65B21/08
PERFORMING OPERATIONS; TRANSPORTING
B65B5/108
PERFORMING OPERATIONS; TRANSPORTING
B65B21/04
PERFORMING OPERATIONS; TRANSPORTING
International classification
B65B21/04
PERFORMING OPERATIONS; TRANSPORTING
B65B5/10
PERFORMING OPERATIONS; TRANSPORTING
B65G33/04
PERFORMING OPERATIONS; TRANSPORTING
B65G47/08
PERFORMING OPERATIONS; TRANSPORTING
Abstract
Apparatus to transfer bottles in a container, said apparatus comprising at least a transfer device to transfer the bottles in a first direction and a pick-up and delivery member configured to transfer the bottles from the transfer device to the container. The transfer device and the pick-up and delivery member are disposed consecutive with respect to each other and are of the metering screw type. The pick-up and delivery member is associated to movement means provided to translate the pick-up and delivery member and bring it from a first pick-up condition to a second delivery condition, and vice versa, in a second direction, transverse to the first direction.
Claims
1. Apparatus to transfer bottles in a container comprising: a transfer device to transfer said bottles in a first direction, the transfer device being a metering screw, mounted in a fixed position, and provided with a first drive member to make the transfer device rotate around a first axis of rotation; and a pick-up and delivery member to transfer the bottles from said transfer device to said container, said pick-up and delivery member being a metering screw and being provided with a second drive member provided to make the pick-up and delivery member rotate around a second axis of rotation; and a movement means provided to translate said pick-up and delivery member in a second direction, transverse to said first direction, to bring said pick-up and delivery member from a first pick-up condition, in which said pick-up and delivery member is disposed consecutive to said transfer device to receive the bottles from the transfer device and the second axis of rotation is coaxial with the first axis of rotation, to a second delivery condition, in which said pick-up and delivery member is translated in the second direction with respect to the first condition toward the respective container to deliver the bottles in the container and the second axis of rotation is parallel to the first axis of rotation.
2. Transfer apparatus as in claim 1, further including at least a containing barrier, able to be selectively activated/de-activated in order to cooperate with said pick-up and delivery member and to define together with the delivery member a channel to guide a feed of the bottles in the first direction.
3. Transfer apparatus as in claim 2, wherein the metering screw of said pick-up and delivery member is a worm screw, and in that said at least one containing barrier is disposed parallel and facing said worm screw.
4. Transfer apparatus as in claim 3, wherein said worm screw has circumferential grooves mating with the lateral walls of the container.
5. Transfer apparatus as in claim 3, wherein said worm screw has a lateral length such that it enters completely inside the container.
6. Transfer apparatus as claim 2, wherein actuation means are associated to said at least one containing barrier to selectively activate/de-activate it.
7. Transfer apparatus as in claim 2, wherein said at least one containing barrier in its de-activated condition is concealed with respect to a support plane of the bottles fed by said transfer device.
8. Transfer apparatus as in claim 2, and wherein the at least one containing barrier includes a first containing barrier and a second containing barrier configured to cooperate with opposite sides of said pick-up and delivery member.
9. Transfer apparatus as in claim 1, wherein said movement means comprise guides transverse to the first direction on which a support slider for said pick-up and delivery member is mounted sliding in a controlled manner.
10. Transfer apparatus as in claim 1, wherein said pick-up and delivery member is terminally associated to at least one connection rod of said movement means, said at least one connection rod being horizontally pivoting between positions defined to move said pick-up and delivery member, and said pick-up and delivery member being drivable by a drive member associated to said connection rod in an opposite position in relation to said pick-up and delivery member.
11. Transfer apparatus as in claim 10, wherein said positions defined by said pick-up and delivery member are determined by a position regulator.
12. Transfer apparatus as in claim 10, wherein said drive member is disposed in a higher position with respect to said pick-up and delivery member.
13. Transfer apparatus as in claim 12, wherein said drive member is located on a mobile slider positionable in a controlled manner.
14. Transfer apparatus as in claim 10, wherein said drive member is located below said pick-up and delivery member.
15. Transfer apparatus as in claim 1, and further including a mobile barrier positionable inside said container and selectively translatable in said second direction in order to keep aligned, on each occasion, the bottles fed by said pick-up and delivery member, in said container.
16. Transfer apparatus as in claim 15, wherein a holding device is associated to said mobile barrier and is provided to determine, on each occasion, the position of said mobile barrier in said container.
17. Container containing bottles filled by a transfer apparatus according to claim 1, and having bottles transferred linearly in a first direction in a first step, and in a second step in which the bottles are introduced into the container, wherein said first step transfers the bottles by means of a transfer device and of a pick-up and delivery member disposed consecutive with respect to each other and both of the screw type, and in that in said second step said pick-up and delivery member translates in a second direction transverse to the first direction in order to thrust the bottles into said container, said bottles being organized in said container in alternate rows of n bottles and n1.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) These and other characteristics of the present invention will become apparent from the following description of some forms of embodiment, given as a non-restrictive example with reference to the attached drawings wherein:
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(10) To facilitate comprehension, the same reference numbers have been used, where possible, to identify identical common elements in the drawings. It is understood that elements and characteristics of one form of embodiment can conveniently be incorporated into other forms of embodiment without further clarifications.
DETAILED DESCRIPTION OF SOME FORMS OF EMBODIMENT
(11) With reference to
(12) The transfer apparatus 10 is provided to fill containers 12a and 12b having at least three consecutive lateral walls 26 and a loading plane 27 defining with the lateral walls 26 a containing compartment 28, open at both top and front.
(13) The transfer apparatus 10 comprises a transfer device 13 of the metering screw type, indicated hereafter as first metering screw, configured to move the bottles 11 on a support plane 25 (
(14) The first metering screw 13 is mounted in a fixed position, and in a generally known manner comprises a first worm screw 15 and a first drive member 16 provided to make the first worm screw 15 rotate around its first axis of rotation X.
(15) The first metering screw 13 also comprises a divider 17 disposed parallel to the first axis of rotation X and defining with the first worm screw 15 a guide channel to feed the bottles 11.
(16) In the case of
(17) More specifically, the second metering screw 14 is suitable to assume a first pick-up position in which it receives the bottles 11 from the first metering screw 13 with the side cooperating with the container 12a.
(18) The second metering screw 14, in the case shown in
(19) The second metering screw 14 comprises a second worm screw 18 associated with a second drive member 19 provided to make the latter rotate around a second axis of rotation Y, parallel or substantially coaxial to the first axis of rotation X. Some forms of embodiment may provide that the second drive member 19 is selectively associable to the second worm screw 18 only in the condition where it is suitable to make the bottles 11 advance in the first direction D.
(20) Both the first worm screw 15 and the second worm screw 18 have a threading profile shaped so as to have concavities of a shape mating with the external surface of the bottles 11, and to allow the latter to be transferred.
(21) Movement means 20 are associated with the second metering screw 14 to translate the latter in the second direction T and to make the second metering screw 14 assume its first or second condition. The movement means 20 in this case comprise guides 22 disposed transverse to the second axis of rotation Y and on which a slider 21 is mounted sliding, to support the second worm screw 18. Actuation means 39 are provided to act on the slider 21 and to determine its sliding along the guides 22.
(22) According to one form of embodiment, it can be provided that the containers 12a and 12b are filled by feeding rows of bottles 11 alternatively first into the container 12a and then into the other container 12b until they are completely full. It is not excluded that, in other forms of embodiment, the bottles 11 can be loaded in other ways.
(23) The second metering screw 14 cooperates during use with at least one barrier, in the case shown in
(24) In particular, the second metering screw 14 cooperates respectively with a first barrier 23 and a second barrier 37 able to be selectively activated depending on whether container 12a or container 12b is to be loaded.
(25) The first barrier 23 is disposed substantially aligned with the divider 17, while the second barrier 37 is disposed parallel to the divider 17.
(26) Respective actuation means 24 are associated with the first barrier 23 and the second barrier 37 to take the latter to an active condition, containing the bottles 11 against the second worm screw 18, and a de-activated condition, retracted with respect to the support plane 25, to allow the bottles 11 to be transferred into the containers 12a, 12b by the second metering screw 14.
(27) The actuation means 24 can comprise an electric motor, a pneumatic actuator, an electric actuator, an oil-dynamic actuator, a rack, a worm screw, articulated kinematisms or any other mean suitable for the purpose.
(28) More specifically, the second metering screw 14 is activated until it receives n bottles 11 from the first metering screw 13. In this condition both the first metering screw 13 and the second metering screw 14 stop, that is, they no longer move the bottles 11 parallel to the first axis of rotation X and the second axis of rotation Y respectively. The first barrier 23 is taken to its inactive condition, freeing the bottles 11 at the front.
(29) When the bottles 11 are free at the front, the slider 21 is moved along the guides 22 to translate the second worm screw 18 until the row of bottles 11 is positioned on the loading plane 27 of the container 12a or 12b.
(30) Subsequently, the second metering screw 14 acquires from the first metering screw 13 n1 bottles 11, then again n, n1, n etc., so that the bottles 11 of each row are positioned in the container 12a or 12b in the interstices comprised between the bottles 11 of the previous row.
(31) Inside the containing compartment 28 of the containers 12a or 12b a mobile barrier 29 can be positioned, also selectively translatable in a direction parallel to the second direction T to keep the bottles 11 aligned also during the translation of the latter on the loading plane 27 due to the effect of the thrust of the second worm screw 18.
(32) The mobile barrier 29 is mounted sliding on guides 30 disposed laterally to the lateral walls 26 of the container 12a or 12b, and is held in position against the first row of bottles 11 by a holding device 31.
(33) The holding device 31, in the solution shown in
(34) The holding device 31 may comprise a possible blocking member 35 to determine the positioning of the mobile barrier 29 in the container 12a or 12b, and to prevent the mobile barrier 29 from thrusting the bottles 11 out of the container 12a or 12b.
(35) When the mobile barrier 29 reaches the bottom of the container 12a or 12b, the loading cycle of the container 12a or 12b terminates, and the mobile barrier 29 is extracted to be positioned in a new, empty container 12a or 12b, in the start-of-loading position.
(36) The transfer apparatus 10 also comprises a command and control unit provided to suitably control and drive the first metering screw 13 and the second metering screw 14, and also the movement means 20, the actuation means 24 and the holding device 31.
(37) The support plane 25, in the case shown in
(38) In some forms of embodiment (
(39) In other forms of embodiment it is also provided that the second worm screw 18 has a lateral bulk such that it enters completely inside the container 12a or 12b.
(40) As indicated, according to a variant the second worm screw 18 itself takes the bottles 11 into position in the container 12a or 12b.
(41) In this case the second worm screw 18 will cooperate with rotation means or with the second drive member 19, which remain connected to the second worm screw 18, for example positioned above during the loading movement.
(42) According to a variant the rotation means or second drive member 19 will enter into temporary connection with the second worm screw 18 when the latter is in the position for receiving the bottles 11.
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(44) The positioning of the connection rod 41 is determined by a position adjuster 40 which can be the electric, pneumatic or oil-dynamic type.
(45) In the forms of embodiment shown in
(46) The position adjuster 40 can be associated with an encoder or analogous mean to detect the position.
(47) Depending on requirements, some forms of embodiment may provide a connection rod 41 for each of the ends of the second worm screw 18.
(48) The second drive member 19 has its axis of rotation coaxial with the rotation pin 45, and transmits motion to the second worm screw 18 by motion transmission means 42, such as a chain, a belt, a rotary rod mechanical return with terminal conical gears, etc.
(49) The second drive member 19 and the position adjuster 40 can be located on a mobile slider 43 (
(50) The movement of the mobile slider 43 can be obtained by an actuation mean 46 associated with the mobile slider 43. Other forms of embodiment may provide that the actuation mean 46 is associated with the longitudinal guides 44 and comprises, for example, transmission means such as a belt, screw or rack, or which move the mobile slider 43 in a controlled manner.
(51) In the form of embodiment shown in
(52) In the form of embodiment in
(53) In the forms of embodiment shown in
(54) It is clear that modifications and/or additions of parts may be made to the transfer apparatus and corresponding method as described heretofore, without departing from the field and scope of the present invention.
(55) 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 transfer apparatus and corresponding method, having the characteristics as set forth in the claims and hence all coming within the field of protection defined thereby.