Production Line Comprising One or More Assembling Stations and At Least One Module for Carrying Containers
20180215541 ยท 2018-08-02
Inventors
Cpc classification
B65G17/18
PERFORMING OPERATIONS; TRANSPORTING
B65G1/12
PERFORMING OPERATIONS; TRANSPORTING
Y10S901/01
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
A47B49/002
HUMAN NECESSITIES
B65G17/34
PERFORMING OPERATIONS; TRANSPORTING
B65G17/123
PERFORMING OPERATIONS; TRANSPORTING
B65G1/127
PERFORMING OPERATIONS; TRANSPORTING
International classification
B65G1/12
PERFORMING OPERATIONS; TRANSPORTING
A47B49/00
HUMAN NECESSITIES
B65G17/34
PERFORMING OPERATIONS; TRANSPORTING
B65G17/12
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A production line comprises one or more assembling stations and at least one module for carrying containers for supplying to the assembling stations parts which are necessary during the execution of a working cycle. In one example, the module includes a paternoster conveying system including a plurality of drawings for containing the parts. The module includes two endless lateral chains and two lateral guide rails engaged with each drawer. The paternoster system and guide rails selectively position the drawers to downwardly angularly rotate toward the workstation when facing the workstation to increase ergonomic access to the parts for the assembling station operator.
Claims
1. A production line comprising: one or more assembling stations and at least one module operable to carry containers for supplying to the one or more assembling stations parts which are necessary during the execution of a working cycle in said one or more assembling stations, wherein said at least one module for carrying containers comprises a plurality of containers operable to carry the parts, wherein said containers further comprise drawers connected to a paternoster conveyor system, operable to selectively position each drawer in a picking position wherein the parts contained therein can be picked-up by an operator, wherein said paternoster conveyor system further comprises a chain drive system operable to move said drawers, said paternoster system further comprising two closed loop lateral chains respectively connected to opposite lateral side walls of said drawers, said closed loop lateral chains being engaged on respective chain wheels rotatably mounted on a load-bearing structure of said module, said chain wheels are connected to a drive motor in communication with an electronic control unit, wherein said closed loop lateral chains further comprise a front vertical branch, a rear vertical branch, an upper horizontal branch, and a lower horizontal branch defining a closed loop path, said drawers being positioned a fixed pitch apart along the closed loop path, wherein each of said drawers further comprises a first engagement element rigidly mounted to each drawer lateral side wall, said first engagement element is rigidly engaged with a second engagement element connected to a respective closed loop lateral chain, wherein each of said drawers is carried and moved by said paternoster conveyor system when said drive motor is activated, said drawers move along said closed loop path further comprising an ascent phase along the rear vertical branch and a descent phase along the front vertical branch, wherein said module further comprises two lateral guide rails operable to engage and guide movement of the drawers, each guide rail positioned adjacent a respective closed loop lateral change and defining a closed loop, wherein said drawers are positioned in a horizontal orientation along said closed loop path with the exception of a portion of said descent phase in which said drawers are oriented to tilt forwards and downwards relative to the horizontal orientation, wherein each of the drawers further comprising on each of said lateral walls of the drawers is also rotatable mounted a roller connected to each lateral side wall, each roller engaged with a respective lateral guide rail, wherein said electronic control unit further comprises a predetermined program including at least a safety stop signal and a signal which indicates the position of each drawer along said closed loop path, the predetermined program operable to control the drive motor.
2. The production line according to claim 1, wherein each drawer further comprises a carrying drawer structure defining an open bottom, wherein said first engagement element and said roller are mounted on lateral walls of said carrying drawer structure.
3. The production line according to claim 1, wherein said production line further comprises one or more automatic guided vehicles (AGVs) operable to engage and transport said at least one module to a position proximate to a predetermined one of said one or more assembling stations.
4. The production line according to claim 1, wherein said production line further comprises also one or more carriages operable to engage and transport said at least one module to a position proximate to a predetermined one of said one or more assembling stations.
5. The production line according to claim 4, wherein said one or more carriages are movable by one of manual movement or a motorized movement system engaged with the one or more carriages.
6. The production line according to claim 1, wherein said module load-bearing structure further comprises a bottom wall, a top wall and two lateral walls, the top, bottom and lateral walls defining an access opening to enable the operator access to the parts positioned in said drawers.
7. The production line according to claim 1, wherein said drive motor is operable to transmit motion to a chain wheel engaged with a first of two of said closed loop lateral chains, and a transmission shaft mounted close to the bottom wall of said load-bearing structure is operable to transmit motion to a chain wheel engaged with a second of said closed loop lateral chains.
8. The production line according to claim 1, wherein each drawer further comprises a microchip in communication with said electronic control unit, the microchip operable to read/write information relative to traceability of the parts contained in the drawers.
9. A production line comprising: an assembly station; a module operable to selectively supply parts to an operator in the assembly station, the module further comprising: a first side wall; a second side wall connected to the first side wall; a paternoster conveyor including a first closed loop lateral chain connected to the first side wall and a second closed loop lateral chain connected to the second side wall, the first and second closed loop lateral chains defining a closed-loop path; a first lateral guide rail connected to the first side wall and a second lateral guide rail connected to the second guide wall, each of the first and the second lateral guide rails defining a step of descent positioned toward a front branch of the closed-loop path and a step of ascent positioned toward a rear branch of the closed-loop path; and a plurality of drawers operable to support parts to be assembled, the each of the plurality of drawers connected to the first closed loop lateral chain and the second closed loop lateral chain in a fixed pitch relative to one another, the drawers further engaged with the first lateral guide rail and the second lateral guide rail, the plurality of drawers selectively positioned relative to the assembly station to selectively supply the parts to the operator in the assembly station for removal from the drawer.
10. The production line of claim 9 wherein each of the plurality of drawers further comprises: a first engagement element connected to each of opposing lateral sidewalls facing respective first and second closed loop lateral chains; a wheel connected to each of the opposing lateral sidewalls, wherein each of the first engagement elements engage with a second engagement element connected to a respective one of the first and second closed loop lateral chain and each wheel engages a respective one of the first or the second lateral guide rails.
11. The production line of claim 10 wherein the wheels positioned on the opposing lateral side walls of each drawer are positioned at different vertical heights from each other.
12. The production line of claim 11 wherein the first and the second lateral guide rails respective step of descent defines a S-configuration, wherein on movement of the respective drawer wheels through the respective guide rail step of descent, a portion of the drawer facing the assembly station moves angularly downward with respect to the assembly station to provide increased access of the parts to the operator.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Further characteristics and advantages of the invention will emerge from the ensuing description with reference to the annexed drawings, which are provided purely by way of non-limiting example, in which:
[0016]
[0017]
[0018]
[0019]
[0020]
[0021]
[0022]
[0023]
DETAILED DESCRIPTION
[0024] In
[0025] The module for carrying containers A comprises a load-bearing structure with a bottom wall, a top wall and two side walls A1, A2. As illustrated in
[0026] According to a fundamental characteristic of the invention, the containers carried by the module A are provided as drawers C and in order to render the movement of the drawers C carried by the module A automated, the plurality of drawers C is associated to a paternoster transport system which includes a chain drive system. As it is also described in the following of the present description, the paternoster transport system is operable for selectively placing each drawer C in a picking position wherein the parts contained therein can be picked-up by an operator O.
[0027] According to another important feature of the invention, the chain drive system comprises two closed loop lateral chains 51, 52 each mounted adjacent to one of the lateral walls A1, A2 of the module for carrying containers A, in such a way that the sides of the drawers C are connected to the two lateral chains 51, 52.
[0028] The drawers C are arranged according to a fixed pitch along the closed loop path defined by the two lateral chains 51, 52.
[0029] As best seen in
[0030] With reference in particular to the perspective view of
[0031] The motor M1 transmits the motion to a first chain wheel 53 of a first lateral chain 51, and a transmission shaft 61 mounted in the proximity of the bottom wall of the load-bearing structure of the module A transmits the motion from the chain wheel 53 of the first lateral chain 51 to a chain wheel 57 of the second lateral chain 52.
[0032] More in particular, as illustrated in
[0033] Thanks to the structure described above, during an operating step of the working cycle, the drawers C move in an automated way thanks to the movement of the chains 51, 52 imparted by the drive motor M1.
[0034] According to an important characteristic of the invention, the production line comprises an electronic control unit (not shown) for controlling the aforesaid drive motor M1 according to a predetermined program, on the basis of control signals including at least a safety stop signal and a signal which indicates the position of each drawer C along the closed loop path.
[0035] As mentioned previously, a plurality of drawers C are mounted with a fixed pitch along the closed loop path defined by the two lateral chains 51, 52.
[0036] As best seen in
[0037] As illustrated in particular in the side views of the module A of
[0038] With reference to
[0039] Each of the aforesaid rollers 69 provided on the side walls 67A, 67B of each drawer C is engaged in a respective lateral guide rail 65, 66. As illustrated in the cross-sectional view of
[0040] As mentioned previously, the two lateral guide rails 65,66 each provided on the respective lateral wall A1, A2 of the module A are configured in a way different one from the other. With reference to the side view of
[0041] Furthermore, once again with reference to
[0042] As already mentioned previously, thanks to this configuration of the two lateral guide rails 65, 66, the drawers C incline during the descent phase as illustrated in
[0043] Preferably, in order to enable traceability of the contents of the drawers C, each drawer C is pre-arranged to have within it a microchip (not illustrated in the drawings) connected to the aforesaid electronic control unit, for reading and/or writing information regarding movement of objects contained in the drawers C.
[0044] In the following of the present description, operation of the production line according to the present invention will now be described. Thanks to the structure described above, via activation of the aforesaid drive motor M1, a movement of the paternoster conveyor system is obtained, including the chain-transmission system that moves the drawers C arranged with a fixed pitch in the module A along the closed loop path defined by the two lateral chains 51, 52. The motor M1 drives the first chain wheel 53, which in turn moves the first lateral chain 51. The transmission shaft 61 mounted in the proximity of the bottom wall of the module A transmits the motion to a second chain wheel 57, which in turn moves the second lateral chain 52. The drawers hence move with a continuous movement that envisages a rise or ascent phase along the rear vertical branches 51B, 52B of the two chains 51, 52 and the descent phase along the front vertical branches 51A, 52A facing the operator O. Thanks to the configuration of the two lateral guide rails 65, 66 in which the rollers 69 are engaged, in the descent phase, the drawers C incline in the direction of the operator O assigned to one assembling station 2 of the production line (
[0045] The working cycle programmed by the aforesaid electronic control E1 unit may envisage that the drawers set themselves in predetermined positions along the closed loop path, or as may envisage that the operator O activates manually movement of the drawers C along the closed loop path.
[0046] According to an important characteristic of the present invention which is illustrated in the
[0047] Illustrated by way of example in
[0048] Thanks to the characteristics indicated above, the production line according to the present invention enables to obtain high efficiency as regards how the operators are supplied with the parts and components that are necessary to them during execution of a working cycle and it improves the logistic of distribution of the aforesaid parts and components to the various assembling station in an industrial plant. Of course, without prejudice to the principle of the invention, the details of construction and the embodiments may vary widely with respect to what has been described herein purely by way of example, without thereby departing from the scope of the present invention.