CN218655272U - Integrative automatic identification bottoming assembly line is roast way - Google Patents

Integrative automatic identification bottoming assembly line is roast way Download PDF

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Publication number
CN218655272U
CN218655272U CN202223293110.0U CN202223293110U CN218655272U CN 218655272 U CN218655272 U CN 218655272U CN 202223293110 U CN202223293110 U CN 202223293110U CN 218655272 U CN218655272 U CN 218655272U
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Prior art keywords
station
bottoming
assembly line
cooling
automatic identification
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CN202223293110.0U
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Chinese (zh)
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张明洋
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Dongguan Chencai Automation Equipment Technology Co ltd
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Dongguan Chencai Automation Equipment Technology Co ltd
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Abstract

The utility model discloses an integrated automatic identification bottoming assembly line baking channel, which relates to the technical field of rubber sheet bottoming, and comprises an assembly line bracket, wherein a conveying chain is arranged at the upper end of the assembly line bracket; an integrative automatic identification bottoming assembly line is roast and is said, through stoving station one, cooling station one, the point is glued the station, point gum machine constructs, the vibration station, stoving station two, the setting of cooling station two and pushing equipment, in the process of bottoming the template, the stoving of stoving station one is carried out earlier, cooling station one is glued (bottoming) through cooling station one, point is glued the station and is glued the mechanism point, vibration station vibration, stoving station two is dried, cooling station two cools off and pushing equipment gets the material, the template after accomplishing the bottoming is carried the other end of assembly line support through the conveyer belt at last, and then do benefit to subsequent processing, full automation discerns bottoming, time saving and labor saving, improve the bottoming efficiency of template.

Description

Integrative automatic identification bottoming assembly line is roast way
Technical Field
The utility model relates to a technical field is bottomed to the sheet rubber, specifically as an organic whole automatic identification bottoming assembly line is roast way.
Background
The sheet rubber need carry out the bottoming operation in process of production, need use the template of different grade type at the sheet rubber bottoming in-process of different grade type, and the inside of template is the shape of sheet rubber, and current template is at the bottoming in-process, mostly manual operation point gum machine carry out some glue (bottoming), is drying and cooling through, because artifical energy is limited, and degree of automation is lower, and the production efficiency that leads to the sheet rubber is lower, for this reason, the utility model provides an integrative automatic identification bottoming assembly line is baked and is said.
SUMMERY OF THE UTILITY MODEL
Not enough to prior art, the utility model provides an integrative automatic identification bottoming assembly line is roast way has solved the problem among the above-mentioned background art.
In order to achieve the above purpose, the utility model discloses a following technical scheme realizes: integrative automatic identification assembly line roast way of bottoming, including assembly line support, assembly line support's upper end is provided with the conveying chain, assembly line support's inside is provided with motor one, the inboard of conveying chain is provided with the pin, control panel is installed to assembly line support's upper end, drying station one, cooling station one, point glue station, point glue mechanism, vibration station, drying station two and cooling station two are installed to assembly line support's upper end, assembly line support's middle part is provided with the driving roller, the support frame is installed to assembly line support's upper end, pushing equipment is installed to the bottom of support frame, assembly line support's inside is provided with the conveyer belt, assembly line support's inside is provided with motor two and block terminal.
As a further technical scheme of the utility model, control button and touch-control display screen are installed to control panel's upper end, and control panel's inside is provided with control chip, be provided with drive chain between conveying chain and the motor one, form through drive chain between conveying chain and the motor one and rotate the connection, the quantity of pin is a plurality of groups and is array distribution.
As the utility model discloses a further technical scheme, stoving station I includes assembly line support upper end installation's shell one, a plurality of groups stick one that generates heat are installed to the inboard of shell one, assembly line support's upper end is provided with backup pad one near the bottom of shell one.
As the utility model discloses a further technical scheme, cooling station I includes cooler bin I, cooler bin I installs the inboard at assembly line support, the upper end of cooler bin I is provided with cooling frame I, the storage water tank is installed to assembly line support's bottom, the inside of storage water tank is provided with the ball-cock assembly, connect through water pump and water pipe between storage water tank and the cooling frame I.
As the utility model discloses a further technical scheme, the station is glued including installing the locating plate in assembly line support upper end to the point, a plurality of groups through-hole have been seted up to the upper end surface of locating plate, the mid-mounting of locating plate has the detection sensor, assembly line support's inside is close to the bottom of locating plate and installs the collection box, the point gum machine constructs and removes the module including X axle removal module, Y axle removal module and Z axle, one side that the module was removed to the Z axle is installed a plurality of groups point and is glued the head.
As a further technical scheme of the utility model, the vibration station includes the vibration board, vibration board and cylinder hammer, the cylinder hammer includes electric cylinder and rubber hammer, the top of rubber hammer is laminated with the bottom of vibration board, stoving station two includes shell two, backup pad two and a plurality of group stick two that generate heat.
As a further technical scheme of the utility model, cooling station two includes cooling tank two and cooling frame two, pushing equipment includes electronic slide rail, the bottom of electronic slide rail is provided with the push pedal, the junction of conveyer belt and motor two is provided with drive assembly, be electric connection between block terminal and the control panel.
The utility model provides an integrative automatic identification bottoming assembly line is roast way. Compared with the prior art, the method has the following beneficial effects: through the setting of drying station one, cooling station one, the point is glued the station, the point is glued the mechanism, the vibration station, drying station two, cooling station two and pushing equipment, in the process of bottoming at the template, the stoving of drying station one is carried out earlier, cooling station one cooling, point is glued station and point is glued the mechanism and is glued (bottoming), vibration station vibration, drying station two is dried, cooling station two cools off and pushing equipment gets the material, the template after will bottoming the completion carries the other end of assembly line support through the conveyer belt at last, and then do benefit to subsequent processing, full automation discerns bottoming, time saving and labor saving, improve the bottoming efficiency of template.
Drawings
FIG. 1 is a schematic structural diagram of an integrated automatic identification bottoming line baking channel;
FIG. 2 is another view of the baking path of the integrated automatic identification bottoming line;
FIG. 3 is a schematic view of a partial side cross-sectional structure of an integrated automatic identification bottoming line baking path;
FIG. 4 is an enlarged view of A in FIG. 3 of the integrated auto-id bottoming line flue;
FIG. 5 is an enlarged view of B in FIG. 3 of the integrated auto-id bottoming line flue.
In the figure: 1. a production line support; 2. a conveyor chain; 3. a first motor; 4. a stop lever; 5. a control panel; 6. a first drying station; 61. a first shell; 62. a first support plate; 63. a first heating rod; 7. a first cooling station; 71. a first cooling box; 72. a first cooling frame; 73. a water storage tank; 74. a float valve; 8. dispensing stations; 81. positioning a plate; 82. a detection sensor; 83. a collection box; 9. a glue dispensing mechanism; 91. an X-axis moving module; 92. a Y-axis moving module; 93. a Z-axis moving module; 94. dispensing a glue head; 10. a vibration station; 101. a vibrating plate; 102. a cylinder hammer; 11. a second drying station; 111. a second shell; 112. a second support plate; 113. a second heating rod; 12. a second cooling station; 121. a second cooling box; 122. a second cooling frame; 13. a driving roller; 14. a support frame; 15. a material pushing mechanism; 151. an electric slide rail; 152. pushing the plate; 16. a conveyor belt; 17. a second motor; 18. a distribution box.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1-5, the utility model provides an integrative automatic identification bottoming assembly line roast way technical scheme: integrative automatic identification assembly line roast way of bottoming, including assembly line support 1, the upper end of assembly line support 1 is provided with conveying chain 2, the inside of assembly line support 1 is provided with motor 3, conveying chain 2's inboard is provided with pin 4, control panel 5 is installed to the upper end of assembly line support 1, stoving station 6 is installed to the upper end of assembly line support 1, cooling station 7, some glue station 8, point gum machine constructs 9, vibration station 10, stoving station two 11 and cooling station two 12, the middle part of assembly line support 1 is provided with driving roller 13, support frame 14 is installed to the upper end of assembly line support 1, pushing equipment 15 is installed to the bottom of support frame 14, the inside of assembly line support 1 is provided with conveyer belt 16, the inside of assembly line support 1 is provided with motor two 17 and block terminal 18.
Referring to fig. 1 and 4, a control button and a touch display screen are installed at the upper end of a control panel 5, a control chip is arranged inside the control panel 5, a transmission chain is arranged between a transmission chain 2 and a motor 3, the transmission chain 2 and the motor 3 are in rotating connection through the transmission chain, and a plurality of groups of stop levers 4 are distributed in an array manner, so that the templates can be driven to move in a production line.
Referring to fig. 5, the first drying station 6 comprises a first shell 61 mounted at the upper end of the assembly line support 1, a plurality of groups of first heating rods 63 are mounted on the inner side of the first shell 61, a first support plate 62 is arranged at the upper end of the assembly line support 1 close to the bottom of the first shell 61, the first cooling station 7 comprises a first cooling box 71, the first cooling box 71 is mounted on the inner side of the assembly line support 1, a first cooling rack 72 is arranged at the upper end of the first cooling box 71, a water storage tank 73 is mounted at the bottom of the assembly line support 1, a ball float valve 74 is arranged inside the water storage tank 73, and the water storage tank 73 and the first cooling rack 72 are connected through a water pump and a water pipe, so that drying and cooling of glue inside the template are facilitated.
Referring to fig. 5, the dispensing station 8 includes a positioning plate 81 installed at the upper end of the assembly line support 1, a plurality of sets of through holes are formed in the outer surface of the upper end of the positioning plate 81, a detection sensor 82 is installed in the middle of the positioning plate 81, a collection box 83 is installed inside the assembly line support 1 and near the bottom of the positioning plate 81, the dispensing mechanism 9 includes an X-axis moving module 91, a Y-axis moving module 92 and a Z-axis moving module 93, a plurality of sets of dispensing heads 94 are installed on one side of the Z-axis moving module 93, the vibration station 10 includes a vibration plate 101, the vibration plate 101 and a cylinder hammer 102, the cylinder hammer 102 includes an electric cylinder and a rubber hammer, the top of the rubber hammer is attached to the bottom of the vibration plate 101, the drying station two 11 includes a second housing 111, a second support plate 112 and a plurality of sets of heating rods 113, thereby facilitating dispensing and bottoming of the template.
Referring to fig. 2 and 4, the second cooling station 12 includes a second cooling box 121 and a second cooling rack 122, the pushing mechanism 15 includes an electric sliding rail 151, a pushing plate 152 is disposed at the bottom of the electric sliding rail 151, a transmission assembly is disposed at the joint of the conveyor belt 16 and the second motor 17, and the distribution box 18 is electrically connected to the control panel 5, so as to facilitate re-cooling and material taking of the template.
The utility model discloses a theory of operation: in the process of bottoming the template, firstly, controlling a water pump to inject water flow into the first cooling box 71 and the second cooling box 121 from the water storage tank 73 through the distribution box 18, and starting the first heating rod 63, the cylinder hammer 102, the detection sensor 82, the second heating rod 113 and the electric slide rail 151;
secondly, placing the templates at the upper end of the assembly line support 1, driving the conveying chain 2 to convey through the motor I3, abutting the templates to convey through the stop lever 4, controlling the control panel 5 to carry out multifunctional setting on different templates, pressing the corresponding control button, and drying the local glue which is printed in the middle of the template in advance through the heating rod I63 when the template passes through the drying station I6;
then, when the template passes through the first support plate 62, the template moves along the first cooling frame 72, is cooled by cooling water in the first cooling box 71 and then moves to the upper end of the positioning plate 81, when the detection sensor 82 detects the template, the template is fed back to the distribution box 18, the first motor 3 is controlled to stop rotating, so that the template stays at the bottom of the dispensing mechanism 9, and the dispensing head 94 is driven by the X-axis moving module 91, the Y-axis moving module 92 and the Z-axis moving module 93 to perform dispensing and bottoming along the middle part of the template;
after the template dispensing is finished, the distribution box 18 controls the motor I3 to start to drive the template to move continuously, when the template passes through the upper end of the vibrating plate 101, bubbles in the glue are broken through in a beating process of the cylinder hammer 102, then the glue moves to the upper end of the second support plate 112, is dried through the second heating rod 113, and when the glue passes through the inside of the second shell 111, moves to the upper end of the second cooling frame 122 and is cooled through cooling water in the second cooling box 121;
finally, the template moves to the upper end of driving roller 13, and the push pedal 152 is controlled through electronic slide rail 151 to contradict the template to the upper end of conveyer belt 16, and then carries out follow-up processing, and full automation discerns the bottoming, and labour saving and time saving improves the bottoming efficiency of template.

Claims (7)

1. Roast way of integrative automatic identification bottoming assembly line, including assembly line support (1), its characterized in that, the upper end of assembly line support (1) is provided with conveying chain (2), the inside of assembly line support (1) is provided with motor (3), the inboard of conveying chain (2) is provided with pin (4), control panel (5) are installed to the upper end of assembly line support (1), stoving station (6), cooling station (7), point glue station (8), point gum machine structure (9), vibration station (10), stoving station two (11) and cooling station two (12) are installed to the upper end of assembly line support (1), support frame (14) is installed to the upper end of assembly line support (1), pushing equipment (15) are installed to the bottom of support frame (14), the inside of assembly line support (1) is provided with conveyer belt (16), the inside of assembly line support (1) is provided with motor two (17) and block terminal (18).
2. The baking channel of the integrated automatic identification bottoming line according to claim 1, wherein a control button and a touch display screen are installed at the upper end of the control panel (5), a control chip is arranged inside the control panel (5), a transmission chain is arranged between the transmission chain (2) and the first motor (3), the transmission chain (2) and the first motor (3) are in rotating connection through the transmission chain, and the number of the stop levers (4) is a plurality of groups and is distributed in an array.
3. The integrated automatic identification bottoming line baking channel as claimed in claim 1, wherein the first drying station (6) comprises a first shell (61) mounted at the upper end of the line support (1), a plurality of groups of first heating rods (63) are mounted on the inner side of the first shell (61), and a first support plate (62) is arranged at the bottom, close to the first shell (61), of the upper end of the line support (1).
4. The integrated automatic identification bottoming line baking channel according to claim 1, wherein the first cooling station (7) comprises a first cooling tank (71), the first cooling tank (71) is mounted on the inner side of the line bracket (1), a first cooling rack (72) is arranged at the upper end of the first cooling tank (71), a water storage tank (73) is mounted at the bottom of the line bracket (1), a ball float valve (74) is arranged inside the water storage tank (73), and the water storage tank (73) is connected with the first cooling rack (72) through a water pump and a water pipe.
5. The baking channel of the integrated automatic identification bottoming production line of claim 1, wherein the dispensing station (8) comprises a positioning plate (81) installed at the upper end of a production line support (1), a plurality of groups of through holes are formed in the outer surface of the upper end of the positioning plate (81), a detection sensor (82) is installed in the middle of the positioning plate (81), a collection box (83) is installed in the production line support (1) close to the bottom of the positioning plate (81), the dispensing mechanism (9) comprises an X-axis moving module (91), a Y-axis moving module (92) and a Z-axis moving module (93), and a plurality of groups of dispensing heads (94) are installed on one side of the Z-axis moving module (93).
6. The baking channel of the integrated automatic identification bottoming line according to claim 1, wherein the vibration station (10) comprises a vibration plate (101), the vibration plate (101) and a cylinder hammer (102), the cylinder hammer (102) comprises an electric cylinder and a rubber hammer, the top of the rubber hammer is attached to the bottom of the vibration plate (101), and the second drying station (11) comprises a second shell (111), a second support plate (112) and a plurality of second groups of heating rods (113).
7. The baking channel of the integrated automatic identification bottoming line according to claim 1, wherein the second cooling station (12) comprises a second cooling box (121) and a second cooling frame (122), the pushing mechanism (15) comprises an electric sliding rail (151), a pushing plate (152) is arranged at the bottom of the electric sliding rail (151), a transmission component is arranged at the joint of the conveyor belt (16) and the second motor (17), and the distribution box (18) is electrically connected with the control panel (5).
CN202223293110.0U 2022-12-09 2022-12-09 Integrative automatic identification bottoming assembly line is roast way Active CN218655272U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202223293110.0U CN218655272U (en) 2022-12-09 2022-12-09 Integrative automatic identification bottoming assembly line is roast way

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202223293110.0U CN218655272U (en) 2022-12-09 2022-12-09 Integrative automatic identification bottoming assembly line is roast way

Publications (1)

Publication Number Publication Date
CN218655272U true CN218655272U (en) 2023-03-21

Family

ID=85549400

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202223293110.0U Active CN218655272U (en) 2022-12-09 2022-12-09 Integrative automatic identification bottoming assembly line is roast way

Country Status (1)

Country Link
CN (1) CN218655272U (en)

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