WO2021237639A1 - Système de chaîne de production de circulation et son procédé de fonctionnement - Google Patents

Système de chaîne de production de circulation et son procédé de fonctionnement Download PDF

Info

Publication number
WO2021237639A1
WO2021237639A1 PCT/CN2020/093081 CN2020093081W WO2021237639A1 WO 2021237639 A1 WO2021237639 A1 WO 2021237639A1 CN 2020093081 W CN2020093081 W CN 2020093081W WO 2021237639 A1 WO2021237639 A1 WO 2021237639A1
Authority
WO
WIPO (PCT)
Prior art keywords
oven
conveyor
conveying mechanism
glue
conveying
Prior art date
Application number
PCT/CN2020/093081
Other languages
English (en)
Chinese (zh)
Inventor
侯景忠
Original Assignee
侯景忠
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 侯景忠 filed Critical 侯景忠
Priority to PCT/CN2020/093081 priority Critical patent/WO2021237639A1/fr
Publication of WO2021237639A1 publication Critical patent/WO2021237639A1/fr

Links

Images

Classifications

    • AHUMAN NECESSITIES
    • A43FOOTWEAR
    • A43DMACHINES, TOOLS, EQUIPMENT OR METHODS FOR MANUFACTURING OR REPAIRING FOOTWEAR
    • A43D111/00Shoe machines with conveyors for jacked shoes or for shoes or shoe parts
    • AHUMAN NECESSITIES
    • A43FOOTWEAR
    • A43DMACHINES, TOOLS, EQUIPMENT OR METHODS FOR MANUFACTURING OR REPAIRING FOOTWEAR
    • A43D8/00Machines for cutting, ornamenting, marking or otherwise working up shoe part blanks

Definitions

  • the present invention relates to the technical field of a shoe-making equipment, in particular to a circulating production line system for coating liquid medicine and gluing and its operation mode.
  • the traditional shoe sole fitting production line adopts an assembly line design, and an oven is installed between each process for drying.
  • the number of processes and capacity set during production line planning determine the state of the equipment. After the production line is constructed, no more processes can be added.
  • the production line includes four processes and three sets of ovens, then process A coats the material with the medicine and enters the oven for drying; process B coats the glue and then enters the oven for drying; process C coats the glue and then enters the oven for drying; process D is performed Material bonding completes all processes in this section of the production line.
  • Process A wipes the liquid
  • process B wipes the glue with C
  • process D is bonded.
  • the current process is delayed, the later personnel can only wait.
  • the same glue needs to be divided into multiple coatings.
  • the parameters of the glue drying are the same. When the material is coated with glue once, it enters the oven to dry, and it can only be applied after drying. The second glue then enters the oven, so there will be multiple ovens with the same parameter settings, and the design of the assembly line will undoubtedly not be able to repeat the drying process of different coatings of glue in the same oven.
  • the purpose of the present invention is to provide a circulating production line system and its operation mode, which is used to solve the traditional assembly line form of production equipment, due to the delay of the previous process, the latter process personnel can only wait for the shortcomings, and the production line in the form of production equipment The equipment cannot repeat the drying process of different coating glue in the same oven.
  • a circulating production line system is used to convey a shoe tray module and materials.
  • a potion oven outlet, a potion oven conveyor belt installed inside the potion oven and corresponding to the inlet of the potion oven and the outlet of the potion oven; a glue oven, one end of which is a glue oven entrance, and the other end is a glue oven outlet, one glue
  • the oven conveyor belt is installed inside the glue oven and corresponds to the glue oven inlet and the glue oven outlet.
  • the glue oven and the potion oven are juxtaposed so that the glue oven inlet is adjacent to the potion oven inlet, and the glue oven outlet is adjacent to the The outlet of the medicinal water oven; an oven inlet conveying mechanism is located on the side of the glue oven and the medicinal water oven that are juxtaposed and corresponds to the glue oven entrance and the medicinal water oven inlet; an oven outlet conveying mechanism is located in juxtaposition The glue oven is on the other side of the chemical water oven and corresponds to the glue oven outlet and the chemical water oven outlet; a station conveying mechanism connects the oven inlet conveying mechanism and the oven outlet conveying mechanism; wherein the shoe tray module passes through the The oven inlet conveying mechanism, the oven outlet conveying mechanism and the station conveying mechanism can be driven by the syrup oven and the glue oven cyclically.
  • the oven entrance conveying mechanism includes a conveying roller set and at least one lifting conveyor.
  • the conveying roller set is arranged by a plurality of rotatable rollers.
  • the lifting conveyor is a combination of a conveyor and an elevator.
  • the machine is arranged at one end of the elevator, so that the conveyor and the elevator produce a lifting displacement.
  • the conveyor includes two belt conveying devices and a carrier frame. One belt conveying device is installed on one side of the carrier frame, the other belt conveying device is installed on the other side of the carrier frame, and the two belt conveying devices are opposite to each other. , And the conveying direction of the belt conveyor is perpendicular to the conveying direction of the conveying roller set.
  • the oven outlet conveying mechanism includes a conveying roller set and at least one lifting conveyor.
  • the conveying roller set is arranged by a plurality of rotatable rollers.
  • the lifting conveyor is a combination of a conveyor and an elevator.
  • the machine is arranged at one end of the elevator, so that the conveyor and the elevator produce a lifting displacement.
  • the conveyor includes two belt conveying devices and a carrier frame. One belt conveying device is installed on one side of the carrier frame, the other belt conveying device is installed on the other side of the carrier frame, and the two belt conveying devices are opposite to each other. , And the conveying direction of the belt conveyor is perpendicular to the conveying direction of the conveying roller set.
  • the station conveying mechanism includes a first lateral conveyor, a second lateral conveyor, and a work area conveyor.
  • the first lateral conveyor is adjacent to and juxtaposed with the second lateral conveyor, and the work
  • the zone conveyors are adjacent to and juxtaposed with the second lateral conveyor, and the work zone conveyor and the first lateral conveyor are located on two different sides of the second lateral conveyor.
  • the first lateral conveyor includes two opposite lateral conveyors, and a plurality of lifting conveyors are installed between the two lateral conveyors;
  • the second lateral conveyor includes two opposite lateral conveyors, and a plurality of lifting conveyors are installed in Two between the transverse conveyors;
  • the working area conveyor includes a working roller set and a plurality of lifting conveyors.
  • the lifting conveyor of the first transverse conveyor is a conveyor installed at one end of an elevator, the conveyor generates a lifting displacement by the elevator, the conveyor includes two belt conveying devices and a carrier frame, and the belt conveys The device is installed on one side of the frame, the other belt conveyor is installed on the other side of the frame, the two belt conveyors are opposite, and one end of the elevator is connected to the frame; the second transverse conveyor
  • the elevator conveyor is a conveyor installed at one end of an elevator.
  • the conveyor generates a lifting displacement by the elevator.
  • the conveyor includes two belt conveyors and a carrier frame.
  • the belt conveyor is installed on a side of the carrier frame.
  • the second lateral conveyor has a base, two lower lateral conveyors, a first transfer lifter and a second transfer lifter.
  • the base includes an upper conveying layer and a lower conveying layer.
  • the second lateral conveyer is installed On two opposite sides of the upper conveying layer, two lower transverse conveyors are installed on opposite sides of the lower conveying layer, the first transfer elevator is located at one end of the second transverse conveyor, and the second transfer elevator Located at the other end of the second lateral conveyor, the lifting positions of the first transfer elevator and the second transfer elevator correspond to the upper conveying layer and the lower conveying layer.
  • the present invention discloses the operation mode of the circulating production line system, which includes:
  • a digital device is used to set production rules according to parameters such as feeding, X processes and Y oven drying, wherein the digital device is used to arrange the priority sequence of executing N processes and M oven times;
  • a corresponding number of task stations shall be arranged at a station conveying mechanism
  • the shoe tray module is moved to the next task station or the oven is dried and then transferred to the next task station according to the set task station rules, and the execution is finalized.
  • An operation mode of a circular production line system which includes:
  • Setting the number of tasks performed by the station according to the content of the task is to set the number of coatings of potion and glue for a material
  • Applying potion according to the task content is that after an operator obtains the material in a station area, the preset potion is applied to the material and then placed on a shoe tray module;
  • the material is moved into the medicine oven.
  • An oven entrance conveying mechanism moves the shoe tray module and the material to the entrance of a medicine oven, and the oven entrance conveying mechanism transfers the shoe tray module and the material to the medicine.
  • the shoe tray module and material are moved out of the medicine oven and moved to a predetermined station.
  • An oven outlet conveying mechanism accepts and conveys the shoe tray module and the material moved out of the medicine oven to a station conveying mechanism.
  • the station conveying mechanism conveys the shoe tray module and the material to the predetermined operator;
  • the first time gluing is performed according to the task content. After the operator at the predetermined station receives the coated liquid and the dried material, the predetermined glue is applied to the surface of the material and returned to the shoe tray module superior;
  • the shoe tray module and the material are moved to the corresponding oven entrance conveying mechanism by the horizontal and longitudinal conveying provided by the station conveying mechanism, and then the oven entrance conveying mechanism is used Transfer the shoe tray module and the material to the glue oven;
  • the shoe tray module and material are moved out of the glue oven and moved to a predetermined station.
  • the oven outlet conveying mechanism accepts and conveys the shoe tray module and the material moved out of the glue oven to the station conveying mechanism, and then The station conveying mechanism conveys the shoe tray module and the material to the predetermined operator;
  • the materials are glued and dried one by one, and the materials are moved into the glue oven in a circular form. This is the operator's completion of the first glue or previous glue and the first glue drying or previous glue drying.
  • the dry material can be glued for the second time or the next time, and the shoe tray module and the material can be conveyed through the horizontal and vertical conveying function provided by the station conveying mechanism, as well as the conveying mechanism of the oven entrance conveying mechanism, Move into the glue oven; after the shoe tray module and the material are moved out of the glue oven, the oven outlet conveying mechanism and the station conveying mechanism can then convey the shoe tray module and the material to the predetermined operator, repeat this Steps until the predetermined number of gluing and drying is met.
  • the operation mode of the cyclic production line system further includes that according to the content of the task, each shoe tray module is located at the lower conveying layer of the station conveying mechanism during initial operation. After the start of operation, the production line system will The module is transferred to an upper conveying layer of the station conveying mechanism. After the task content is completed, the shoe tray module is transferred from the upper conveying layer of the station conveying mechanism to the lower conveying layer of the station conveying mechanism for storage.
  • the circulating production line system and its operation mode disclosed by the present invention can reduce the waste of working hours and improve production efficiency. Moreover, the same oven can be used to repeatedly execute the drying process of different coating glues, so as to reduce equipment cost and Effective use of the efficiency of production equipment.
  • Fig. 1 is an external view of an embodiment of the present invention.
  • Fig. 2 is a schematic diagram of an inlet conveying mechanism of an oven according to an embodiment of the present invention.
  • Fig. 3 is an external view of an outlet conveying mechanism of an oven according to an embodiment of the present invention.
  • Fig. 4 is a schematic diagram of an outlet conveying mechanism of an oven according to an embodiment of the present invention.
  • Fig. 5 is an external view of a glue oven, an oven inlet conveying mechanism, and an oven outlet conveying mechanism corresponding to the station conveying mechanism according to the embodiment of the present invention.
  • Fig. 6 is an external view of the first lateral conveyor, the second lateral conveyor, and the working area conveyor according to the embodiment of the present invention.
  • Fig. 7 is a schematic structural diagram of a first lateral conveyor according to an embodiment of the present invention.
  • Fig. 8 is a schematic structural diagram of a second lateral conveyor according to an embodiment of the present invention.
  • Fig. 9 is a schematic diagram of the structure of a working area conveyor according to an embodiment of the present invention.
  • Fig. 10 is a schematic structural diagram of a second lateral conveyor with two conveying layers according to an embodiment of the present invention.
  • Fig. 11 is an external view of a second lateral conveyor with two transfer elevators according to an embodiment of the present invention.
  • FIG. 12 is a block diagram of the operation mode of the embodiment of the present invention.
  • the circulating production line system disclosed by the present invention includes a chemical water oven (10), a glue oven (20), an oven inlet conveying mechanism (30), an oven outlet conveying mechanism (40), and a process Bit conveying mechanism (50).
  • the aforementioned mechanisms can be controlled by a digital device (not shown) to drive at least one shoe tray module (60) to move automatically and cyclically.
  • the digital device may be a computer and/or a programmable logic controller (PLC).
  • PLC programmable logic controller
  • the station conveying mechanism (50) is located in a station area, and a predetermined number of operators are located in the station area and correspond to the station conveying mechanism (50).
  • One end of the medicinal water oven (10) is a medicinal water oven inlet (12), and the other end is a medicinal water oven outlet (14).
  • a medicinal water oven conveyor belt (16) is installed inside the medicinal water oven (10) and corresponds to the medicinal water oven inlet (12) and the medicinal water oven outlet (14).
  • glue oven 20 One end of the glue oven (20) is a glue oven inlet (22), and the other end is a glue oven outlet (24).
  • a glue oven conveyor belt (26) is installed inside the glue oven (20) and corresponds to the glue oven inlet (22) With the glue oven outlet (24).
  • the glue oven (20) and the potion oven (10) are adjacently and juxtaposed so that the glue oven inlet (22) is adjacent to the potion oven inlet (12), and the glue oven outlet (24) is adjacent to the potion oven outlet (14).
  • the oven inlet conveying mechanism (30) is located on one side of the glue oven (20) and the potion oven (10) juxtaposed and corresponds to the glue oven inlet (22) and the potion oven inlet (12); an oven outlet conveying mechanism (40) Located on the other side of the glue oven (20) and the medicine oven (10) which are juxtaposed, and correspond to the glue oven outlet (24) and the medicine oven outlet (14); a station conveying mechanism (50) is connected The oven inlet conveying mechanism (30) and the oven outlet conveying mechanism (40).
  • the oven entrance conveying mechanism (30) includes a conveying roller set (32) and at least one lifting conveyor (34).
  • the transmission roller set (32) is formed by arranging a plurality of rotatable rollers, and the transmission roller set (32) can be matched with an appropriate number of gears, chains and motors (not shown) to form a rotatable shape.
  • the elevator conveyor (34) is a combination of a conveyor (342) and an elevator (344), wherein the conveyor (342) is arranged at one end of the elevator (344), so that the conveyor (342) can use the elevator (344) And produce up and down displacement.
  • the conveyor (342) disclosed in this embodiment includes two belt conveyors (342a) and (342b) and a carrier frame (342c).
  • One belt conveyor (342a) is installed on one side of the carrier frame (342c), and the other belt conveyor (342b) is installed on the other side of the carrier frame (342c).
  • the two belt conveyors (342a) and (342b) are opposite.
  • the belt conveying device (342a), (342b) can be a known double-speed chain conveyor or similar conveying device.
  • the conveying direction of the belt conveyors (342a) and (342b) can be perpendicular to the conveying direction of the conveying roller set (32).
  • the oven outlet conveying mechanism (40) includes a conveying roller set (42) and at least one lifting conveyor (44).
  • the transmission roller set (42) is formed by arranging a plurality of rotatable rollers, and the transmission roller set (42) can be matched with an appropriate number of gears, chains and motors (not shown) to form a rotatable shape.
  • the elevator conveyor (44) of the oven outlet conveying mechanism (40) is a combination of a conveyor (442) and an elevator (444), wherein the conveyor (442) is disposed on the elevator (444) In this way, the conveyor (442) can generate lifting displacement by the elevator (444).
  • the conveyor (442) includes two belt conveyors (442a), (442b) and a carrier frame (442c). One belt conveyor (442a) is installed on one side of the carrier frame (442c), and the other belt conveyor (442b) is installed on the other side of the carrier frame (442c).
  • the two belt conveyors (442a) and (442b) are opposite.
  • the belt conveying device (442a), (442b) can be a known double-speed chain conveyor or other similar devices.
  • the conveying direction of the belt conveyors (442a) and (442b) can be perpendicular to the conveying direction of the conveying roller set (42).
  • the station conveying mechanism (50) is located at one side of the glue oven (20) and is connected to the oven inlet conveying mechanism (30) and the oven outlet conveying mechanism (40).
  • the station conveying mechanism (50) includes a first lateral conveyor (52), a second lateral conveyor (54), a working area conveyor (56), and a removal conveyor (57).
  • the first transverse conveyor (52) is adjacent to and juxtaposed with the second transverse conveyor (54).
  • the work area conveyor (56) is adjacent to and juxtaposed with the second transverse conveyor (54), and the work area conveyor (56) and the first transverse conveyor (52) are located in the second transverse conveyor ( 54) on two different sides.
  • the removal output machine (57) can be a conveyor belt device and is located at one side of the work zone conveyor (56).
  • the removal output machine (57) and the second transverse conveyor (54) are located on two different sides of the work area conveyor (56).
  • the first transverse conveyor (52) includes two opposite transverse conveyors (520), and a plurality of elevator conveyors (522) are installed between the two transverse conveyors (520).
  • the second transverse conveyor (54) includes two opposite transverse conveyors (540), and a plurality of elevator conveyors (542) are installed between the two transverse conveyors (540).
  • the working area conveyor (56) includes a working roller group (562) and a plurality of lifting conveyors (564).
  • the elevator conveyor (522) of the first transverse conveyor (52) is a conveyor (523) installed at one end of an elevator (524), so that the conveyor (523) can use the Elevator (524) to produce lifting displacement.
  • the conveyor (523) includes two belt conveyors (523a), (523b) and a carrier frame (523c).
  • One belt conveyor (523a) is installed on one side of the carrier frame (523c), and the other belt conveyor (523b) is installed on the other side of the carrier frame (523c).
  • the two belt conveyors (523a) and (523b) are opposite, and one end of the elevator (524) is connected with the carrier frame (523c).
  • the transverse conveyor (520) and the belt conveyor devices (523a) and (523b) disclosed in FIG. 6 and FIG. 7 can all adopt known double-speed chain conveyors or other similar devices.
  • the conveying direction of the belt conveyors (523a) and (523b) can be perpendicular to the conveying direction of the transverse conveyor (520).
  • the lifting conveyor (542) of the second transverse conveyor (54) is a conveyor (543) installed at one end of an elevator (544), so that the conveyor (543) can The lift (544) generates lift displacement.
  • the conveyor (543) includes two belt conveyors (543a), (543b) and a carrier frame (543c).
  • One belt conveyor (543a) is installed on one side of the carrier frame (543c), and the other belt conveyor (543b) is installed on the other side of the carrier frame (543c).
  • the two belt conveyors (543a) and (543b) are opposite, and one end of the elevator (544) is connected with the carrier frame (543c).
  • transverse conveyor (540) and the belt conveying devices (543a), (543b) can all adopt known double-speed chain conveyors or other similar devices.
  • the conveying direction of the belt conveyors (543a) and (543b) can be perpendicular to the conveying direction of the transverse conveyor (540).
  • Each of the conveyors (543) of the second transverse conveyor (54) is opposed to each of the conveyors (523) of the first transverse conveyor (52), and the belt conveyor (543a) , (543b) corresponds to the belt conveyor (523a), (523b).
  • the working roller set (562) of the work area conveyor (56) includes a plurality of rotatable rollers, and the elevator conveyor (564) is a conveyor (566) installed on an elevator (568) In this way, the conveyor (566) can generate lifting displacement by the elevator (568).
  • the conveyor (566) includes two belt conveyors (566a), (566b) and a carrier frame (566c). One belt conveyor (566a) is installed on one side of the carrier frame (566c), and the other belt conveyor (566b) is installed on the other side of the carrier frame (566c). Second, the belt conveyors (566a) and (566b) are opposite, and one end of the elevator (568) is connected with the carrier frame (566c).
  • the belt conveyors (566a) and (566b) can use known double-speed chain conveyors or other similar devices.
  • each conveyor (566) of the work area conveyor (56) is opposite to the second conveyor (566) one by one.
  • Each of the conveyors (543) provided in the lateral conveyor (54), and the belt conveyors (566a) and (566b) correspond to the belt conveyors (543a) and (543b).
  • the second transverse conveyor (54) has a base (58).
  • the base (58) includes an upper conveying layer (580) and a lower conveying layer (582).
  • the two transverse conveyors (540) are installed on two opposite sides of the upper conveying layer (580).
  • two lower transverse conveyors (584) are installed on the opposite sides of the lower conveying layer (582).
  • a first transfer elevator (586) is installed at one end of the second transverse conveyor (54), and a second transfer elevator (588) is installed at the other end of the second transverse conveyor (54).
  • the lifting positions of the first transfer elevator (586) and the second transfer elevator (588) correspond to the upper conveying layer (580) and the lower conveying layer (582).
  • the first transfer lifter (586) and the second transfer lifter (588) can be matched with a pneumatic cylinder or a lifting chain to achieve lifting displacement.
  • the operation mode of this embodiment includes:
  • the operator can set the control device first, such as sensors, air pressure components, power components, moving speed and heating temperature of the oven, etc. Wait.
  • the pre-determined liquid is applied to the material and placed on the shoe tray module.
  • the shoe tray module and the material are moved to the entrance of the medicine oven by the oven entrance conveying mechanism, and then the lifting conveyor of the oven entrance conveying mechanism rises so that the shoe tray module corresponds to the medicine oven conveyor belt, and then by the The belt conveyor of the lifting conveyor and the rotation mode of the conveyor belt of the medicine drying oven move the shoe tray module and the material into the medicine drying oven.
  • the shoe tray module and materials are removed from the medicine oven and moved to the predetermined station. It is the lifting conveyor of the oven outlet conveying mechanism that rises to correspond to the medicine oven conveyor belt, and then the shoe tray module located on the medicine oven conveyor belt can be moved to the lifting conveyor of the oven outlet conveying mechanism; The lifting mechanism is lowered, so that the conveying roller set of the oven outlet conveying mechanism can move the shoe tray module to the station conveying mechanism, and an lifting conveyor of the first transverse conveyor receives the shoe tray module. Then the shoe tray module and the material can be transported to the predetermined position by the lateral and longitudinal transfer provided by the first lateral conveyor, the second lateral conveyor, and the work area conveyor. Worker at work station.
  • Glue for the first time according to the task content. After the operator of the predetermined station receives the coated liquid and the dried material, he coats the predetermined glue on the surface of the material and puts it back on the shoe tray module.
  • the shoe tray module is moved to the corresponding oven entrance conveying mechanism, and then conveyed by the oven entrance
  • the mechanism moves the shoe tray module and the material to the entrance of the glue oven, and then the elevator conveyor of the oven entrance conveying mechanism rises so that the shoe tray module corresponds to the glue oven conveyor belt, and then the belt of the elevator conveyor
  • the conveying device and the rotation mode of the conveyor belt of the medicine oven move the shoe tray module and the material into the glue oven.
  • the shoe tray module and materials are removed from the glue oven and moved to a predetermined station. It is the lifting conveyor of the oven outlet conveying mechanism that rises to correspond to the glue oven conveyor belt, and then the shoe tray module located on the glue oven conveyor belt can be moved to the lifting conveyor of the oven outlet conveying mechanism; The lifting mechanism is lowered, so that the conveying roller set of the oven outlet conveying mechanism can move the shoe tray module to the station conveying mechanism, and an lifting conveyor of the first transverse conveyor receives the shoe tray module. Then the shoe tray module and the material can be transported to the predetermined position by the lateral and longitudinal transfer provided by the first lateral conveyor, the second lateral conveyor, and the work area conveyor. Worker at work station.
  • the materials are glued and dried one by one according to the content of the task, and the materials are moved into the glue oven one by one in a circular form.
  • the shoe tray module is conveyed by the first lateral conveyor, the second lateral conveyor and the working area conveyor provided by the horizontal and vertical transmission, as well as the oven entrance conveying mechanism and the glue oven.
  • Belt conveyor can be moved into the glue oven; after the shoe tray module is moved out of the glue oven, the oven outlet conveying mechanism, the first lateral conveyor, the second lateral conveyor and the working area conveyor provide lateral and
  • the longitudinal transfer function can transfer the shoe tray module and the material to the worker at the predetermined station. Repeat this step until the predetermined N times of gluing and drying are met.
  • the materials are transferred to the subsequent process.
  • the production line system completes the predetermined N times of gluing, the user can move the material to the removal conveyor, and use the removal conveyor to transport the material to the subsequent process for bonding.
  • the shoe tray module is moved from the upper conveying layer to the lower conveying layer of the second lateral conveyor.
  • the first transfer lifter receives the shoe tray module and lowers the height to correspond to the lower conveying layer, and then the lower transverse conveyor of the lower conveying layer receives the empty shoe tray module. If the empty shoe tray module needs to be used again, the second transfer lifter receives the empty shoe tray module from the lower conveying layer and raises the height to the upper conveying layer.
  • the embodiment of the present invention reveals that the system includes a feeding station responsible for placing materials on the shoe tray; a task station is used to execute the production process, and the processes (work content) that can be performed by each task station ) Is set by a computer system (digital); an oven module contains at least two ovens, and further, the number of ovens is determined by the number of production processes.
  • the production line needs to perform coating liquid and coating glue.
  • the drying process so the number of ovens is two, if there is a third drying process, the number of ovens can be three;
  • the first conveyor layer is used to transfer the shoe tray module, so that the shoe tray module is in the feeding station and task Move between stations, oven and lower conveying layer.
  • the lower conveying layer is used to transfer the shoe tray module to the lower conveying layer for storage after the shoe tray module has completed the final process to empty the material.
  • a removal conveyor (PVC conveyor belt) is used to transfer the finished materials to the next production equipment.
  • the shoe tray module is stored in the range of the lower conveyor and the upper conveyor feeding station.
  • the staff will set the production rules in the computer system according to the feeding, process and oven parameters. For example, if you want to set the operation process of one time of medicine coating, drying, one time of glue coating, drying, and bonding, this process has three processes, of which two processes need to enter the oven to dry, so set X processes and Y oven drying and other parameters, the process is as follows: feeding ⁇ medicine coating (process 1) ⁇ medicine drying (oven 1) ⁇ glue coating (process 2) ⁇ glue drying (oven 2) ⁇ Fitting (Process 3) ⁇ Complete.
  • process 1 Take the operation process of one-time syrup coating (process 1), drying, one-time glue coating (process 2), drying, and bonding (process 3) as an example.
  • Four tasks can be arranged at the conveying mechanism of the station Stations, namely task station A, task station B, task station C, task station D; each task station is set to execute the predetermined process rules and according to the set sequence, in the digital device (computer System)
  • the software system is arranged to contain executable processes and priorities. For example, task station A executes process 1 and process 2, task station B executes process 2 and process 1, task station C executes process 3, process 2 and process 1, and task station D executes process 3 and process 2.
  • the computer system can start the feeding operation after the computer system is set.
  • the shoe tray module is initially operated, the shoe tray module is still stored in the lower conveying layer. Therefore, the production line system can continuously transport the shoe tray module at the feeding station to the one that can perform process 1.
  • the shoe tray module of process 1 needs to proceed to the next step, whether it is to go directly to the next task station or enter the oven to dry and then transfer to the next task station.
  • the software system will detect the load status of each shoe tray module, station, and oven based on the sensor in real time, and then use the algorithm to calculate the shoe tray module in real time according to the rules set by the task station.
  • the task station executes the next process.
  • Each shoe tray module mentioned above has a different identification number.
  • the production line system can be equipped with an appropriate reader to read the identification number of the shoe tray module, thereby helping the digital device to control each shoe tray module in Movement in the production line.
  • blocking members such as movable displaceable blocks, can be provided in each mechanism of the production line system, so that when the shoe tray module moves to a predetermined position, it can be blocked and stop displacing or change the displacement there. direction.
  • the shoe tray module is finally transferred to the lower conveying layer for storage, waiting to be moved to the upper conveying layer feeding station again, the identification number of the shoe tray module Clear the task status recorded in the software and restart the production process.
  • this embodiment can reduce the distance and time of material movement, thereby reducing working hours
  • the effect of wasting and the improvement of production efficiency, in addition, the use of the same oven to repeat the drying process of different coatings of glue can achieve the effect of reducing equipment costs and effectively using production equipment.

Landscapes

  • Intermediate Stations On Conveyors (AREA)

Abstract

La présente invention concerne un système de chaîne de production en circulation et un procédé de fonctionnement, comprenant : un four chimique (10) et un four à colle (20) disposés en parallèle ; un mécanisme de transport d'entrée de four (30) et un mécanisme de transport de sortie de four (40) respectivement prévus à deux extrémités du four chimique (10) et du four à colle (20) parallèles ; et un mécanisme de transport de station (50) relié au mécanisme de transport d'entrée de four (30) et au mécanisme de transport de sortie de four (40). Un matériau est placé dans un module de plaque de chaussure (60), et peut être entraîné par le mécanisme de transport d'entrée de four (30), le mécanisme de transport de sortie de four (40), et le mécanisme de transport de station (50) pour se déplacer de manière circulaire dans le four chimique (10) et le four à colle (20). Selon le système de chaîne de production en circulation, le gaspillage d'heures de travail est réduit et l'efficacité de production est améliorée, et le processus de séchage de différentes colles de revêtement est répété à l'aide du même four, afin d'obtenir les effets de réduction des coûts d'équipement et d'utilisation efficace de l'équipement de production.
PCT/CN2020/093081 2020-05-29 2020-05-29 Système de chaîne de production de circulation et son procédé de fonctionnement WO2021237639A1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
PCT/CN2020/093081 WO2021237639A1 (fr) 2020-05-29 2020-05-29 Système de chaîne de production de circulation et son procédé de fonctionnement

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
PCT/CN2020/093081 WO2021237639A1 (fr) 2020-05-29 2020-05-29 Système de chaîne de production de circulation et son procédé de fonctionnement

Publications (1)

Publication Number Publication Date
WO2021237639A1 true WO2021237639A1 (fr) 2021-12-02

Family

ID=78722925

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2020/093081 WO2021237639A1 (fr) 2020-05-29 2020-05-29 Système de chaîne de production de circulation et son procédé de fonctionnement

Country Status (1)

Country Link
WO (1) WO2021237639A1 (fr)

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN203735573U (zh) * 2014-02-27 2014-07-30 廖瑞平 具有活化装置的鞋业热熔胶贴合回转式生产线
JP2016101348A (ja) * 2014-11-28 2016-06-02 有限会社中山靴店 靴製造システム
CN206380801U (zh) * 2016-12-28 2017-08-08 东莞市捷圣机械有限公司 一种鞋业全自动烘干生产线
CN206744719U (zh) * 2017-03-23 2017-12-15 东莞市川利制鞋机械有限公司 同进同出伺服旋转式nir红外线双层贴底生产线
CN206964155U (zh) * 2017-07-21 2018-02-06 东莞市捷圣智能科技有限公司 一种鞋面与鞋底可自动配对的上鞋底模组生产线
CN207803619U (zh) * 2017-11-22 2018-09-04 东莞市意利自动化科技有限公司 一种制鞋生产线

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN203735573U (zh) * 2014-02-27 2014-07-30 廖瑞平 具有活化装置的鞋业热熔胶贴合回转式生产线
JP2016101348A (ja) * 2014-11-28 2016-06-02 有限会社中山靴店 靴製造システム
CN206380801U (zh) * 2016-12-28 2017-08-08 东莞市捷圣机械有限公司 一种鞋业全自动烘干生产线
CN206744719U (zh) * 2017-03-23 2017-12-15 东莞市川利制鞋机械有限公司 同进同出伺服旋转式nir红外线双层贴底生产线
CN206964155U (zh) * 2017-07-21 2018-02-06 东莞市捷圣智能科技有限公司 一种鞋面与鞋底可自动配对的上鞋底模组生产线
CN207803619U (zh) * 2017-11-22 2018-09-04 东莞市意利自动化科技有限公司 一种制鞋生产线

Similar Documents

Publication Publication Date Title
CN106218948B (zh) 蒸压加气混凝土砌块全自动打包系统
CN106241397B (zh) 蒸压加气混凝土砌块无托盘码垛工艺
JP3148184B2 (ja) 製品生産システム
CN108859069A (zh) 一种吨桶吹塑自检自动生产线
WO2021237638A1 (fr) Système de chaîne de production en circulation
JPH04213512A (ja) コンベヤシステムおよびその使用方法
TWM601022U (zh) 循環式產線系統
WO2021237639A1 (fr) Système de chaîne de production de circulation et son procédé de fonctionnement
TWI761807B (zh) 循環式產線系統及其運作方式
EP3758074A1 (fr) Équipement de séparation automatique de plaquettes pour cellules solaires
CN107601059B (zh) 一种岩棉自动堆包设备
CN111743269B (zh) 循环式产线系统及其运作方式
CN213770234U (zh) 循环式产线系统
CN112591401A (zh) 一种用于工件生产线的新型提升机
US1846258A (en) Conveyer apparatus
CN209601652U (zh) 一种多层交叉烧结砖砖垛用的卸砖装置
CN205708378U (zh) 便于实现自动化存取的墙地砖仓储系统
JPH0266020A (ja) 塗膜乾燥のため塗装化粧板を乾燥装置へ搬入する方法およびその方法に使用される化粧板搬入装置
JP4445228B2 (ja) 塗装乾燥ライン装置
US6751885B2 (en) Vertical kiln
CH687733A5 (it) Dispositivo per sottoporre un flusso di prodotti ad un trattamento che si protrae nel tempo e relativo procedimento.
CN211807347U (zh) 一种全自动滴胶系统
TWM626224U (zh) 智能網版印刷系統
CN108297261B (zh) 一种防水型grc底盆生产线及其生产方法
TWI781741B (zh) 智能網版印刷系統及其印刷方法

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 20938271

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE

122 Ep: pct application non-entry in european phase

Ref document number: 20938271

Country of ref document: EP

Kind code of ref document: A1