Conveying system
10399784 ยท 2019-09-03
Assignee
Inventors
Cpc classification
B65G23/08
PERFORMING OPERATIONS; TRANSPORTING
B65G21/00
PERFORMING OPERATIONS; TRANSPORTING
B65G43/08
PERFORMING OPERATIONS; TRANSPORTING
B65G13/07
PERFORMING OPERATIONS; TRANSPORTING
B65G21/02
PERFORMING OPERATIONS; TRANSPORTING
B65G23/00
PERFORMING OPERATIONS; TRANSPORTING
International classification
B65G21/00
PERFORMING OPERATIONS; TRANSPORTING
B65G13/07
PERFORMING OPERATIONS; TRANSPORTING
B65G21/02
PERFORMING OPERATIONS; TRANSPORTING
B65G23/00
PERFORMING OPERATIONS; TRANSPORTING
B65G23/08
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A conveying system (100) is described, comprising: two axially spaced supporting frames (2, 3) extending substantially in parallel along the feed direction (F) of the conveying system (100); at least one plurality of driving elements (12) supported by said supporting frames (2, 3); at least one motor (9) for driving at least one portion of said plurality of driving elements (12); at least one transmission assembly for transferring the motion from said motor (9) to said at least one portion of the plurality of driving elements (12); a control system for controlling the driving of said plurality of driving elements (12); a power supply system for electrically supplying said control system and said at least one motor (9); said power supply system comprises at least one power supply board (7) designed to convert the mains voltage into at least one DC voltage;
characterized in that it comprises: at least one housing compartment (1) transversely extending between the two supporting frames (2, 3); said at least one housing compartment (1) being provided with at least one housing seat for accommodating said at least one power supply board (7) of said power supply system.
Claims
1. A conveying system (100) comprising: two axially spaced supporting frames (2, 3) extending substantially in parallel along a feed direction (F) of the conveying system (100); at least one plurality of driving elements (12) supported by said supporting frames (2, 3); at least one motor (9) for driving at least one portion of said plurality of driving elements (12); at least one transmission assembly for transferring motion from said motor (9) to said at least one portion of the plurality of driving elements (12); a control system for controlling the driving of said plurality of driving elements (12); a power supply system for electrically supplying said control system and said at least one motor (9); said power supply system comprising at least one power supply board adapted to convert a mains voltage into at least one DC voltage; and at least one housing compartment (1) transversely extending between the two supporting frames (2, 3), from first said supporting frame (2) to the second said supporting frame (3), said at least one housing compartment (1) including at least one housing seat for accommodating said at least one power supply board (7) of said power supply system.
2. The conveying system (100) according to claim 1, wherein said at least one motor (9) is disposed external to said at least one housing compartment (1).
3. The conveying system (100) according to claim 1, wherein said control system (12) is disposed external to said at least one housing compartment (1).
4. The conveying system (100) according to claim 1, wherein said at least one housing compartment comprises a cavity for housing, at least partially, said at least one power supply board (7) configured for converting the mains voltage in at least one DC voltage.
5. The conveying system (100) according to claim 1, further comprising fastening means (13, 16) for constraining said at least one housing compartment (1) between the two supporting frames (2, 3).
6. The conveying system (100) according to claim 5, wherein said fastening means comprise self-threading screws (16).
7. The conveying system (100) according to claim 1, wherein said at least one housing compartment (1) has a substantially tubular shape with quadrangular section comprising a removable wall (8).
8. The conveying system (100) according to claim 7, wherein said housing seat is adapted to accommodate said power supply board (7) perpendicularly to said removable wall (8).
9. The conveying system (100) according to claim 1, wherein said housing compartment (1) includes means (4, 5a, 5b) for dissipating heat.
10. The conveying system (100) according to claim 1, wherein said housing compartment (1) is formed of aluminum.
11. The conveying system (100) according to claim 1, wherein said housing compartment (1) is formed of steel.
12. The conveying system (100) according to claim 1, wherein said housing compartment (1) is made by extrusion.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Further characteristics and advantages of the invention will become more apparent from the detailed description of some preferred, but not exclusive, embodiments of a new conveying system according to the present invention.
(2) This description will be explained hereinafter by referring to the attached drawings provided for illustration purposes only and without limitation, in which:
(3)
(4)
(5)
(6)
(7)
DETAILED DESCRIPTION OF EMBODIMENTS OF THE INVENTION
(8) Referring to
(9) Referring to
(10) The supporting frames 2, 3 preferably have a tubular shape, for example obtained by coupling two half-shells having a C or L section. Advantageously, the supporting frames 2, 3 are made of extruded materials, such as extruded aluminum or, alternatively, reinforced extruded plastic materials.
(11) The conveying system 100 further comprises at least one plurality of driving elements 12 supported by the two supporting frames 2, 3 and at least one motor 9 for driving at least one portion of said plurality of driving elements. Preferably, the motor 9 is a DC motor 9. Preferably, for each supporting frame 2, 3 there are a plurality of driving elements 12 extending side by side, substantially along the whole extent of the conveying system 100.
(12) In the embodiment shown in
(13) In particular, the conveying system 100 includes at least one transmission assembly to transfer the motion from the motor 9 to at least one plurality of driving elements 12. In detail, each supporting shaft 12a is rotatably constrained to the supporting frame 2 or 3 by means of at least one bearing. The supporting shafts are driven by drive belts or chains (not shown in figures), preferably housed inside the frames 2, 3, which constitute the transmission assembly to transfer the motion from the motor 9 to the wheels 12, that is to say to transfer the motion of the drive shaft to at least one supporting shaft 12a.
(14) In particular, in the embodiment of
(15) Further embodiments can provide for driving elements 12 different from the wheels shown in
(16) The conveying system 100 is provided with a control system to control the driving of the driving elements 12. Preferably, the control system comprises at least one control unit 11 housed, for example, inside the supporting frames 2, 3, and at least one sensor (not shown) for detecting bodies that is arranged along the feed path of the conveyor 100. In particular, the control unit 11 operates one or more motors 9 depending on the signal received from the sensors for detecting bodies, in order to ensure that the goods or products smoothly circulate along the feed direction.
(17) For example, the control system can drive one or more motors 9 for driving the driving elements 12 associated with a path portion in which an object to be fed is detected. In other words, if no product to be fed is detected in a path portion, the driving elements 12 are not driven until an object, for example approaching and coming from a path portion upstream of the feed direction F, is detected.
(18) The control system can be, for example, of the master-slave type, i.e. provided with master control units and slave control units. The control system is located in one of the two supporting frames 2,3.
(19) Preferably, the slave control units are connected to each other and, in turn, each of them is connected to a master control unit through an AS-interface data exchange cable allowing to exchange information and coordinate the slave control units. Therefore, said at least one AS-interface data exchange cable mainly runs inside one of the two supporting frames 2,3.
(20) Therefore, the conveying system 100 can be split into macro working areas each defined by a master control unit and multiple slave control units, each of the latter being associated with a motor 9 and with at least one sensor for detecting bodies.
(21) The master control unit processes the command to be submitted to the slave control units depending on the signal coming from the sensor for detecting bodies of each secondary zone. Preferably, each secondary zone is individually controlled, so that the fed goods or products can not ever touch one another. The driving elements 12 of a zone are not driven until the subsequent zone (i.e. downstream along the feed direction F) is empty.
(22) The conveying system 100 is further provided with a power supply system to electrically supply the control system and the motor 9. In particular, the power supply system comprises at least one power supply board 7 designed to convert the mains voltage.
(23) In particular, the power supply system comprises at least one power supply board 7 designed to convert the mains (alternating) voltage into at least one DC voltage.
(24) The conveying system 100 comprises at least one housing compartment 1 transversely extending between the two supporting frames 2, 3. In particular, the housing compartment 1 extends from a supporting frame 2 to the remaining supporting frame 3. The housing compartment 1 is provided with at least one housing seat in order to accommodate one or more power supply boards 7 of the power supply system.
(25) This solution allows the power supply boards to be standardly housed without requiring each time an assessment in order to position and arrange the substations along the feed path.
(26) In the embodiment shown in
(27) Each housing compartment 1 is preferably provided with a housing seat in order to accommodate a power supply board 7. Anyway, additional embodiments may provide, for example, for a conveying system comprising a single housing compartment 1 equipped with a plurality of housing seats in order to accommodate therein a respective plurality of power supply boards.
(28) In other words, all the power supply boards of the power supply system are accommodated within one or more housing compartments 1. In general, the conveying system 100 comprises a power supply system provided with at least one power supply board, and at least one housing compartment 1 provided with at least one housing seat in order to accommodate said at least one power supply board 7.
(29) The special arrangement of the housing compartments allows to reduce the size of the conveying system. In particular, by transversely arranging one or more housing compartments 1 between the two supporting frames of the conveying system, the travel of goods along the feed direction is not blocked. In this way, conveying systems can be implemented in which portions of the feed path can extend over several floors (one above the other) and/or adjacent one beside the other, without previously requiring an assessment of the arrangement and housing of the power supply boards depending on the feed path.
(30) The housing compartment 1 thus contains only the power supply board 7 and does not contains either the motor 9, or the motor shaft, or the control system to control the driving of the plurality of driving means 12.
(31) The motor 9 and the control system to control the driving of the plurality of driving means 12 are in fact arranged externally of the housing compartment 1.
(32)
(33) The housing compartment 1 preferably has a substantially tubular shape with quadrangular section. This shape allows the power supply cables 14, 15 to be easily passed through the inside of the housing compartment and connected to power supply board 7. In particular, the power supply cables 14 of the mains voltage are housed inside the supporting frame 2 and, by means of one or more transverse passages (not shown in figure) made on the supporting frame 2, the power supply cables 14 are passed between the supporting frame 2 and the housing compartment 1. Similarly, the power supply cables 15 of the DC voltage are preferably housed inside the supporting frame 3, i.e. the supporting frame in which the electric motors 9 and the control units 11 are located. Therefore, by means of transverse passages formed on the supporting frame 3, the power supply cables 15 are passed between the housing compartment 1 and the supporting frame 3.
(34) The housing compartment 1 is transversely constrained between the two supporting frames 2, 3 by fastening means 16. The fastening means 16 preferably comprise screws adapted to be received in apposite seats formed in the housing compartment 1. For example, the housing compartment can be quickly constrained by means of self-threading screws preferably screwed from the inside of the supporting frames 2, 3. The housing compartment helps to give strength to the structure of the conveying system further providing a convenient housing for the power supply boards of the power supply system.
(35) Referring to
(36) The removable wall 8 allows an operator to easily house the power supply board and the power supply cables 14, 15 inside the housing compartment 1 even after the housing compartment 1 has been fastened between the two supporting frames 2, 3.
(37) In
(38) The housing compartment 1 further comprises heat dissipating means. Preferably, the heat dissipating means comprise a plurality of ventilation holes 5a formed on the removable wall 8. Preferably, the heat dissipating means further comprise a plurality of slots 5b formed on at least one side wall 1a, 1b of the housing compartment 1.
(39) In the embodiment of
(40) In
(41) On the inner surface of the side walls 1a, 1b of the housing compartment 1, there are ribs 21, 22 defining a housing seat in which the power supply board 7 can be constrained. The housing compartment 1 comprises additional ribs 19, 20 made on the side walls 1a, 1b of the housing compartment 1 and arranged at the removable wall 8. By means of the ribs 19, 20 the removable wall 8 can be constrained between the side walls 1a, 1b of the housing compartment 1.
(42) Referring to
(43) Preferably, the housing compartment is provided with a plurality of cooling fins 4 arranged on at least one side wall 1a, 1b of the housing compartment 1. In the embodiment of
(44) Preferably, the cooling fins are arranged above the slots 5b. In this way, the cooling fins 4 not only dissipate heat from the inside of the housing compartment 1 but also can prevent the water droplets from passing through the slots 5b. Preferably, the cooling fins 4 are slightly inclined downwards so as to guide downwards any water droplets being on the outer walls of the housing 1.
(45) In
(46) In particular, the power supply board 7 is preferably housed at a side wall 1a of the housing compartment 1, preferably parallel thereto. Inside the upper wall 11 of the housing compartment 1 there are two ribs 18 arranged parallel to the extension direction of the housing compartment 1. One side of the power supply board can be advantageously inserted between the two ribs 18, the opposite side of the power supply board 7 is supported by a further rib 19 made on the side wall 1a of the housing compartment 1. Such rib 19 extends perpendicularly to the side wall 1a and is arranged at the removable wall 8. Preferably, the rib 19 can have a T-shape, with a portion 19a jutting towards the upper wall 11. The power supply board 7 can comprise rotatable hooking means 10 comprising a hook 10a movable between an open position and a closed position. In
(47) Similarly, also the removable wall 8 can be provided with rotatable hooking means 10. In the embodiment of
(48) As already previously described, the housing compartment 1 is advantageously manufactured by extrusion so as to have, in a single process, all the elements of the profile comprising the two side walls, the upper wall, the seats 13 for housing the screws 16, one or more cooling fins 4 and the inner ribs 18, 19, 20 to accommodate the power supply board 7 and the removable wall 8.
(49) The present invention has been described referring to some embodiments. To the embodiments herein represented in detail various modifications can be made, anyway remaining in the protection scope of the invention, defined by the following claims.