Fluorinated bottle detection transport device

By designing a junction device and multi-line control, the problems of blockage and slippage of fluorinated bottles during transportation were solved, achieving efficient and safe inspection and transportation of fluorinated bottles.

CN117485875BActive Publication Date: 2026-01-16GREIF PLASTIC PACKAGING (KUNSHAN) CO LTD
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Patent Information

Application Number
CN202311704001.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-12-12
Publication Date
2026-01-16
Estimated Expiration
2043-12-12

AI Technical Summary

Technical Problem

In existing fluorinated bottle inspection and transportation devices, the order of movement of fluorinated bottles cannot be controlled when they meet, leading to blockages or slippage and affecting transportation efficiency.

Method used

A fluorinated bottle inspection and transportation device was designed. By setting up a junction device and multiple transportation lines, including first and second production transportation lines, the device uses cylinders and motors to control the conveying and collection of fluorinated bottles, ensuring orderly delivery to the storage platform.

Benefits of technology

This system enables the orderly collection and inspection of fluorinated bottles, improves the efficiency of the transportation process, avoids blockages and slippage, and ensures the safe transport of fluorinated bottles.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The application relates to the technical field of fluorinated bottle manufacturing equipment, in particular to a fluorinated bottle detection and transportation device. The device comprises a machine body, first and second fluorinated bottle production outlets are respectively arranged on the machine body, a first production transportation line is arranged on the machine body, the first end of the first production transportation line is connected with the first fluorinated bottle production outlet, the last end of the first production transportation line is connected with a storage table, a second production transportation line is arranged on the machine body, the first end of the second production transportation line is connected with the second fluorinated bottle production outlet, and a junction device for collecting fluorinated bottles on the first production transportation line is arranged at the last end of the second production transportation line. The device has the effect of improving the efficiency of the fluorinated bottle detection and transportation device in the transportation process.
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Description

TECHNICAL FIELD

[0001] The application relates to the technical field of fluorinated bottle manufacturing equipment, in particular to a fluorinated bottle detection and transportation device. BACKGROUND

[0002] Fluorinated bottles are often used in daily life, and as common products, fluorinated bottles are usually blow molded, and the manufacturing method is simple and most of them are mass-produced.

[0003] After the fluorinated bottles are produced, they are usually detected by a flow line and then transported to the next process. In the existing transportation detection technology, the production equipment has two fluorinated bottle production outlets, and the transportation equipment is arranged around the production equipment. The fluorinated bottles transported out of the two fluorinated bottle production outlets are collected on the same transportation line, and when the fluorinated bottles are collected, the fluorinated bottles on the two transportation belts are only connected by the transportation belts of the two transportation lines to make the fluorinated bottles on the different transportation belts run to the same transportation line. However, when the fluorinated bottles are connected, the movement sequence of the fluorinated bottles on the two transportation belts cannot be controlled, which may cause the fluorinated bottles to be blocked or to slide at the connection position, thereby greatly affecting the transportation efficiency of the fluorinated bottles. SUMMARY

[0004] In order to improve the efficiency of the fluorinated bottle detection and transportation device during transportation, the application provides a fluorinated bottle detection and transportation device.

[0005] The application provides a fluorinated bottle detection and transportation device, which adopts the following technical scheme:

[0006] The fluorinated bottle detection and transportation device comprises a machine body, a first fluorinated bottle production outlet and a second fluorinated bottle production outlet are respectively arranged on the machine body, a first production transportation line is arranged on the machine body, a fluorinated bottle receiving end of the first production transportation line is connected with the first fluorinated bottle production outlet, a fluorinated bottle sending end of the first production transportation line is connected with a placement table, a second production transportation line is arranged on the machine body, a fluorinated bottle receiving end of the second production transportation line is connected with the second fluorinated bottle production outlet, a connection device for collecting fluorinated bottles on the first production transportation line is arranged on the second production transportation line, and a detection mechanism is arranged between the connection device and the placement table.

[0007] By adopting the technical scheme, the fluorinated bottles produced by the machine body are sent out from the first fluorinated bottle production outlet and the second fluorinated bottle production outlet, the fluorinated bottles sent out from the first fluorinated bottle production outlet reach the first production transport line, and are orderly sent to the placement table by the first production transport line; the second production transport line transports the fluorinated bottles sent out from the second fluorinated bottle production outlet, and orderly transports the fluorinated bottles on the second production transport line to the first production transport line by the intersection device, at this time, the fluorinated bottles produced by the first fluorinated bottle production outlet and the second fluorinated bottle production outlet are collected, and finally transported to the placement table, and are collected by the placement table, which is beneficial to improving the efficiency of the fluorinated bottle detection and transport device in the transport process.

[0008] In a specific implementable scheme, the first production transport line comprises a first transport device for receiving the fluorinated bottles transported by the first fluorinated bottle production outlet, the first transport device is arranged on the machine body, a second transport device for receiving the fluorinated bottles on the first transport device is arranged on the machine body, a third transport device is arranged at the fluorinated bottle sending-out end of the second transport device, the third transport device is installed on the floor, the third transport device is connected with the second production transport line, and the fluorinated bottle sending-out end of the third transport device is connected with the placement table.

[0009] By adopting the technical scheme, the first transport device receives the fluorinated bottles transported by the first fluorinated bottle production outlet and quickly transports the fluorinated bottles to the second transport device, the fluorinated bottles on the second production transport line are collected on the third transport device through the second transport device for further transmission, and the transmission process of the fluorinated bottles is orderly performed, which is beneficial to improving the transport efficiency of the fluorinated bottle detection and transport device.

[0010] In a specific implementable scheme, the first transport device comprises a first transport frame, the first transport frame is installed on the machine body, a first motor is installed on the first transport frame, a transmission rod is installed on the first transport frame, a gear is installed on the transmission rod, the output shaft of the first motor is fixedly connected with the transmission rod, a chain is engagedly connected with the gear, a transport plate is installed on the chain, a second cylinder is arranged on the first transport device close to the second transport device, the second cylinder is installed on the machine body, and a second push plate is fixedly connected with the output shaft of the second cylinder.

[0011] By adopting the technical scheme, when the fluorinated bottle is transmitted to the transport plate, the first motor is actuated to rotate the chain and drive the transport plate to move stably to the second transport device. When the fluorinated bottle reaches the specified position, the second push plate is quickly controlled by the second cylinder to push the fluorinated bottle to the second transport device, the transmission mode is simple, and the efficiency of the fluorinated bottle detection and transport device in the transport process is improved.

[0012] In one specific embodiment, a pushing device is arranged close to the first conveying device, the pushing device is mounted on the machine body, the pushing device comprises a first carrier, the first carrier is mounted on the machine body and arranged close to the first fluoridized bottle production outlet, a first cylinder is mounted on the first carrier, and an output shaft of the first cylinder is fixedly connected with a first pushing plate.

[0013] By using the above technical scheme, when the fluoridized bottle is pushed out of the first fluoridized bottle production outlet, the first cylinder of the pushing device pushes the first pushing plate to push the fluoridized bottle onto the first conveying device, the pushing mode is simple, and the fluoridized bottle can quickly and stably reach the designated position.

[0014] In one specific embodiment, the second conveying device comprises a second conveying frame, the second conveying frame is mounted on the machine body, a first conveying belt is rotatably mounted on the second conveying frame, a second motor for controlling movement of the first conveying belt is mounted on the second conveying frame, a guide pipe is arranged at an end of the second conveying frame away from the first conveying device, the guide pipe is mounted on the machine body, a third cylinder is arranged on the second conveying device close to the guide pipe, an output shaft of the third cylinder is fixedly connected with a third pushing plate, a third baffle is arranged at an end of the second conveying device away from the first conveying device, a fourth cylinder is arranged on the guide pipe close to the third conveying device, and an output shaft of the fourth cylinder is connected with a first movable plate.

[0015] By using the above technical scheme, when the fluoridized bottle is conveyed onto the second conveying device, the second motor uniformly drives the first conveying belt to rotate, so that the fluoridized bottle on the first conveying belt is stably conveyed to the guide pipe position, which is beneficial to improve the efficiency of the fluoridized bottle detection conveying device during transportation. When the fluoridized bottle reaches the third baffle, the third baffle blocks the fluoridized bottle from moving in the direction of rotation of the first conveying belt, the third cylinder drives the first pushing plate to push the fluoridized bottle into the guide pipe, the fluoridized bottle vertically falls on the first movable plate in the guide pipe and stays, when the fluoridized bottle needs to be put into the third conveying device, the fourth cylinder controls the first movable plate to rotate away from the guide pipe, at this time, the fluoridized bottle falls downward, when the next fluoridized bottle needs to be received, the fourth cylinder controls the first movable plate to rotate upward to prepare for receiving, so as to ensure that the fluoridized bottle presents a vertical state during transportation, and the production and transportation process of the fluoridized bottle can be normally operated.

[0016] In one specific embodiment, the third conveying device comprises a third conveying frame installed on the floor, a second conveying belt rotatably installed on the third conveying frame, and a third motor installed on the third conveying frame and configured to control movement of the second conveying belt; a fifth baffle is arranged on the third conveying frame close to the second conveying device, and a fourth motor is arranged close to the fifth baffle, wherein the fourth motor is installed on the machine body, and an output shaft of the fourth motor is fixedly connected with a third movable plate.

[0017] By adopting the above technical scheme, when the third conveying device receives the fluoridated bottle on the second conveying device, the fourth motor controls the third movable plate to rotate to the second conveying belt to block the conveying process, at this time, the fourth cylinder controls the first movable plate to rotate downward, the fluoridated bottle continues to fall to the third conveying device, the fourth motor controls the third movable plate to rotate away from the second conveying belt, and the third motor starts to drive the second conveying belt to rotate at a constant speed, so that the fluoridated bottle is smoothly conveyed on the second conveying belt, which is beneficial to improve the efficiency of the fluoridated bottle detection and conveying device in the conveying process.

[0018] In one specific embodiment, the intersection device comprises a connecting plate installed on the second production conveying line, a sixth cylinder installed on the connecting plate, an output shaft of the sixth cylinder fixedly connected with a sliding rod, a first push rod connected with the sliding rod, a rotating rod rotatably installed on the connecting plate, the first push rod connected with the rotating rod at the other end, a second push rod connected with the rotating rod, a first roller installed on the second push rod, a first supporting rod installed on the connecting plate, a guide rod rotatably installed on the first supporting rod, a second supporting rod installed on the connecting plate, a rotating table rotatably installed on the second supporting rod, a third push rod installed on the rotating table, a second roller arranged on the third push rod, the second roller connected with the guide rod, a fourth push rod installed on the rotating table, and a receiving table connected with the fourth push rod at an end away from the rotating table, wherein a seventh cylinder is arranged close to the receiving table and installed on the connecting plate, and an output shaft of the seventh cylinder is fixedly connected with a fourth movable plate.

[0019] By adopting the above technical scheme, when the fluoridated bottle is conveyed to the intersection device, the sixth cylinder quickly controls the receiving table to rotate to receive the fluoridated bottle, after the receiving table receives the fluoridated bottle, the sixth cylinder quickly returns to the original position, at the same time, the fourth movable plate pushes the fluoridated bottle to the connecting plate and waits, and when the receiving table receives the fluoridated bottle next time, the fourth movable plate pushes the fluoridated bottle into the first production conveying line, so that the fluoridated bottles on the two lines are gathered on the same line, the gathering process is rapid, and the efficiency of the fluoridated bottle detection and conveying device in the conveying process is improved.

[0020] In one specific implementation, the guide rod is provided with a fourth movable plate for controlling the flow of fluorinated bottles on the first production transport line.

[0021] By using the above technical solution, the fourth movable plate rotates synchronously with the guide rod, and the fourth movable plate is turned to the first production transport line before the fourth push plate pushes the fluorinated bottles, thereby blocking the first production transport line. After the fourth push plate completes the pushing action, the fourth movable plate is turned away from the first transport line, so that the fluorinated bottles on the first transport line continue to be transported. By blocking and flowing the fluorinated bottles on the first production transport line with the fourth movable plate, the fluorinated bottles can be collected in an orderly manner, which helps to improve the efficiency of the fluorinated bottle detection and transportation device during transportation.

[0022] In one specific implementation, a detection mechanism is arranged between the intersection device and the storage table, and the detection mechanism includes a frame mounted on the floor, an eighth cylinder arranged on the frame, an output shaft of the eighth cylinder fixedly connected to a test cover, and a pressure gauge arranged on the test cover.

[0023] By using the above technical solution, when the fluorinated bottles are transported to the detection mechanism position, the third transport device stops, the eighth cylinder controls the test cover to move downward to seal the bottle mouth of the fluorinated bottles and test the fluorinated bottles. By observing the reading of the pressure gauge, it can be determined whether the fluorinated bottles are qualified. The fluorinated bottles can be quickly detected, which helps to improve the efficiency of the fluorinated bottles during production.

[0024] In summary, the present application has at least one of the following beneficial technical effects:

[0025] 1. The fluorinated bottles produced by the machine body are sent out from the first fluorinated bottle production outlet and the second fluorinated bottle production outlet. The fluorinated bottles sent out by the first fluorinated bottle production outlet reach the first production transport line and are sequentially sent to the storage table by the first production transport line. The second production transport line transports the fluorinated bottles sent out by the second fluorinated bottle production outlet, and the intersection device sequentially transports the fluorinated bottles on the second production transport line to the first production transport line. At this time, the fluorinated bottles produced by the first fluorinated bottle production outlet and the second fluorinated bottle production outlet are collected, and the fluorinated bottles are continuously sent to the detection mechanism by the first production transport line for detection of the quality of the fluorinated bottles by the detection mechanism. After detection, the fluorinated bottles are transported to the storage table for collection, which helps to improve the efficiency of the fluorinated bottle detection and transportation device during transportation.

[0026] 2. By the setting of the first conveying device, when the fluoridated bottle is conveyed to the conveying plate, the first motor is actuated to rotate the chain and drive the conveying plate to move stably to the second conveying device, and the first baffle prevents the fluoridated bottle from falling, which is beneficial to the fluoridated bottle to be conveyed to the second conveying device in a safe and upright state. When the fluoridated bottle reaches the designated position, the second cylinder quickly controls the second push plate to push the fluoridated bottle to the second conveying device, and the transmission mode is simple, which is beneficial to the efficiency of the fluoridated bottle detection conveying device in the conveying process.

[0027] 3. By the setting of the intersection device, when the fluoridated bottle is conveyed to the intersection device, the sixth cylinder quickly controls the receiving table to rotate to receive the fluoridated bottle, and controls the fourth movable plate to rotate to the first production conveying line to block the first production conveying line. After the receiving table receives the fluoridated bottle, the sixth cylinder quickly returns to make the fluoridated bottle move in front of the fourth push plate, and the fourth movable plate rotates away from the first conveying line to make the fluoridated bottle on the first conveying line continue to be conveyed. At the same time, the fourth push plate pushes the fluoridated bottle to the connecting plate and waits, and when the fourth movable plate blocks the first production conveying line next time, the fourth push plate pushes the fluoridated bottle into the first production conveying line, so that the fluoridated bottles on the two lines are collected in an orderly manner, which ensures the orderly operation of the fluoridated bottle detection conveying device in the conveying process. BRIEF DESCRIPTION OF DRAWINGS

[0028] Figure 1 is a schematic diagram of the overall structure of the fluoridated bottle detection conveying device of the embodiment of the present application.

[0029] Figure 2 is a schematic diagram of the first conveying device and the pushing device of the embodiment of the present application.

[0030] Figure 3 is a schematic diagram of the intersection device of the embodiment of the present application. Figure 1 is an enlarged view of A in FIG. 6.

[0031] Figure 4 is a schematic diagram of the guiding and progressive device and the third conveying device of the embodiment of the present application.

[0032] Figure 5 is a schematic diagram of the third conveying device of the embodiment of the present application.

[0033] Figure 6 is a top view of the intersection device of the embodiment of the present application.

[0034] Figure 7 is a schematic diagram of the intersection device of the embodiment of the present application without the first baffle and the second baffle.

[0035] Figure 8 is a schematic diagram of the detection mechanism of the embodiment of the present application.

[0036] Label: 1, machine body; 11, first fluorinated bottle production outlet; 12, second fluorinated bottle production outlet; 13, first production transport line; 14, second production transport line; 141, second carrier table; 142, first stop lever; 143, second stop lever; 2, first transport device; 21, first support frame; 22, first transport frame; 221, gear; 222, transmission rod; 223, chain; 224, first motor; 23, first fixed block; 24, first baffle; 25, transport plate; 26, second cylinder; 27, second push plate; 3, second transport device; 31, fixed plate; 32, second support frame; 33, second transport frame; 34, second fixed block; 35, second baffle; 36, first conveyor belt; 37, second motor; 41, guide pipe; 42, sleeve buckle; 431, support plate; 432, third cylinder; 433, third push plate; 44, third baffle; 451, fourth cylinder; 452, first movable plate; 5, third transport device; 51, third support frame; 52, third transport frame; 53, fourth baffle; 54, third motor; 55, second conveyor belt; 571, third fixed block; 572, fifth baffle; 581, fourth motor; 582, third movable plate; 59, turntable; 6, intersection device; 61, connecting plate; 62, sixth cylinder, 621, sliding rod; 631, first push rod; 632, rotating rod; 633, second push rod; 634, first roller; 641, first support rod; 642, guide rod; 65, fourth movable plate; 661, second support rod; 662, rotating table; 663, third push rod; 664, fourth push rod; 665, receiving table; 666, mounting groove; 67, seventh cylinder; 69, fourth push plate; 7, detection mechanism; 71, frame; 72, eighth cylinder; 73, air pressure gauge; 74, test cover; 8, storage table; 9, pushing device; 91, first carrier table; 92, first cylinder; 93, first push plate. DETAILED DESCRIPTION

[0037] The following will be described in detail in combination with the accompanying drawings. Figures 1-8 The application is further described in detail.

[0038] Embodiment:

[0039] The embodiment of the application discloses a fluorinated bottle detection and transport device, which refers to Figure 1 and Figure 2, including the body 1, the body 1 is provided with the first fluorinated bottle production outlet 11 and the second fluorinated bottle production outlet 12, the first fluorinated bottle production outlet 11 and the second fluorinated bottle production outlet 12 are provided on the opposite vertical side wall of the body 1. The first conveying belt for transporting the fluorinated bottle to the first fluorinated bottle production outlet 11 is arranged in the body 1, the first production conveying line 13 is installed outside the body 1, the receiving end of the first production conveying line 13 is located at the position of the first fluorinated bottle production outlet 11 and receives the fluorinated bottle conveyed out of the first conveying belt; the second conveying belt for transporting the fluorinated bottle to the second fluorinated bottle production outlet 12 is arranged in the body 1, the second production conveying line 14 is installed outside the body 1, the receiving end of the second production conveying line 14 is located at the position of the second fluorinated bottle production outlet 12 and receives the fluorinated bottle conveyed out of the second conveying belt, the intersection device 6 for collecting the fluorinated bottle on the first production conveying line 13 is arranged on the second production conveying line 14. The fluorinated bottle delivery end of the first production conveying line 13 is provided with a storage table 8, the detection mechanism 7 is arranged on the first production conveying line 13, and the detection mechanism 7 is arranged between the storage table 8 and the intersection device 6.

[0040] When the fluorinated bottle is produced in the body 1, the fluorinated bottle is conveyed to the first fluorinated bottle production outlet 11 by the first conveying belt in the body 1, the first production conveying line 13 receives the fluorinated bottle conveyed out of the first fluorinated bottle production outlet 11 and transmits to the storage table 8; the second conveying belt in the body 1 conveys the fluorinated bottle to the second fluorinated bottle production outlet 12, the second production conveying line 14 receives the fluorinated bottle conveyed out of the second fluorinated bottle production outlet 12, and the fluorinated bottle on the second production conveying line 14 is collected on the first production conveying line 13 through the intersection device 6, after the collection is completed, the fluorinated bottle is conveyed to the storage table 8 after being detected by the detection mechanism 7 without error, and the fluorinated bottle on the two lines is quickly intersected through the intersection device 6 to complete the production and collection of the fluorinated bottle, which is beneficial to improve the efficiency of the fluorinated bottle in the production and manufacturing process.

[0041] The first production conveying line 13 comprises the first conveying device 2, which is provided with a first support frame 21 fixedly installed on the machine body 1, a first conveying frame 22 fixedly installed on the first support frame 21, one end of the first conveying frame 22 being close to the first fluorinated bottle production outlet 11, the first conveying frame 22 being obliquely arranged, a first motor 224 fixedly installed on the first conveying frame 22 away from the first fluorinated bottle production outlet 11, transmission rods 222 rotatably installed at both ends of the first conveying frame 22, the output shaft of the first motor 224 being fixedly connected with the transmission rod 222 away from the first fluorinated bottle production outlet 11, gear wheels 221 fixedly installed on the transmission rods 222 at both ends of the first conveying frame 22, the two gear wheels 221 being meshingly connected with a chain 223, and ten conveying plates 25 being equidistantly fixedly installed on the chain 223. The first conveying frame 22 is fixedly installed with a first fixed block 23, and the first fixed block 23 is fixedly installed with a first baffle 24.

[0042] The machine body 1 is provided with a pushing device 9 close to the first fluorinated bottle production outlet 11, the pushing device 9 comprising a first carrier table 91 installed on the machine body 1, a first air cylinder 92 fixedly installed on the first carrier table 91, and a first push plate 93 fixedly connected with the output shaft of the first air cylinder 92. The fluorinated bottle delivery end of the first conveying frame 22 is provided with a second air cylinder 26 fixedly installed on the machine body 1, and the output shaft of the second air cylinder 26 is fixedly connected with a second push plate 27.

[0043] The first conveying belt conveys the fluorinated bottle out of the first fluorinated bottle production outlet 11 to make the fluorinated bottle reach the first carrier table 91, the first air cylinder 92 pushes the first push plate 93 to push the fluorinated bottle on the first carrier table 91 to the conveying plate 25 of the first conveying device 2, the first motor 224 is actuated to drive the gear wheel 221 to rotate, the gear wheel 221 drives the chain 223 to rotate to convey the conveying plate 25 with the fluorinated bottle upward from the first fluorinated bottle production outlet 11, the output shaft of the second air cylinder 26 is in an extended state at this time, and when the conveying plate 25 moves to a specified position, the second air cylinder 26 is actuated to retract the output shaft, and the second push plate 27 pushes the fluorinated bottle to the side close to the second air cylinder 26 to the next conveying device.

[0044] Referring to Figure 1 and Figure 3The first production transport line 13 also comprises a second transport device 3 for receiving the fluorinated bottles on the first transport device 2, the second transport device 3 is provided with a fixed plate 31 fixedly installed on the vertical side wall of the machine body 1, a second support frame 32 is fixedly installed on the fixed plate 31, a second transport frame 33 is fixedly installed on the second support frame 32, and a first conveying belt 36 is rotatably installed on the second transport frame 33. A second motor 37 for driving the first conveying belt 36 to rotate is fixedly installed on the side wall away from the machine body 1 of the second transport frame 33, and a second fixed block 34 is fixedly installed on the side wall away from the machine body 1 of the second transport frame 33, and a second baffle 35 is fixedly installed on the second fixed block 34.

[0045] The first conveying belt 36 is provided with a guide pipe 41 away from one end of the first transport device 2, the guide pipe 41 is vertically arranged, a buckle 42 is fixedly installed on the machine body 1, and the guide pipe 41 is sleeved on the buckle 42. A support plate 431 is fixedly installed on the side wall away from the machine body 1 of the second transport frame 33, the support plate 431 is arranged close to the upper end of the guide pipe 41, a third cylinder 432 is fixedly installed on the support plate 431, and a third push plate 433 is fixedly connected to the output shaft of the third cylinder 432. A third baffle 44 is fixedly installed on the second transport frame 33, the third baffle 44 is located at one end of the first conveying belt 36 away from the first transport device 2, and the third baffle 44 is vertically arranged on the upper surface of the first conveying belt 36. In this embodiment, an infrared detector is installed on the third baffle 44, the third cylinder 432 is connected to the infrared detector through a circuit, and the infrared detector is a prior art which will not be described in this patent application.

[0046] Referring to Figure 1 and Figure 4 , a fourth cylinder 451 is fixedly installed at the lower end of the guide pipe 41, and the output shaft of the fourth cylinder 451 is connected to a first movable plate 452.

[0047] When the fluorinated bottle reaches the first conveying belt 36, the second motor 37 operates to make the first conveying belt 36 rotate on the second transport frame 33, and the fluorinated bottle is transported from the end close to the first transport device 2 to the end close to the guide pipe 41. The infrared detector on the third baffle 44 detects the fluorinated bottle and transmits a signal to the third cylinder 432, so that the third cylinder 432 operates to control the third push plate 433 to push the fluorinated bottle into the guide pipe 41. The fluorinated bottle falls along the guide pipe 41 and falls on the first movable plate 452 and waits. If the fluorinated bottle continues to be transported, the fourth cylinder 451 operates to make the first movable plate 452 rotate away from the guide pipe 41, so that the lower end of the guide pipe 41 is opened, and the fluorinated bottle falls from the first movable plate 452.

[0048] Referring to Figure 4 and Figure 5The first production transport line 13 further comprises a third transport device 5, the third transport device 5 is provided with a third support frame 51 fixedly installed on the floor, a third transport frame 52 is fixedly installed on the third support frame 51, a second conveying belt 55 is rotatably installed on the third transport frame 52, a third motor 54 for controlling rotation of the second conveying belt is fixedly installed on the machine body 1, and the third transport frame 52 is fixedly installed with a fourth baffle 53. The third transport frame 52 is fixedly installed with a third fixed block 571, and a fifth baffle 572 is fixedly installed on the third fixed block 571. In the embodiment, the fifth baffle 572 is an arc-shaped baffle. A fourth motor 581 is arranged below the guide pipe 41, the fourth motor 581 is fixedly installed on the side wall of the machine body 1, and the output shaft of the fourth motor 581 is fixedly connected with a third movable plate 582. In the embodiment, the fourth motor 581 is a rotary motor, and the third movable plate 582 rotates around the output shaft of the fourth motor 581 as the center. When the third movable plate 582 rotates to the second conveying belt 55, the fifth baffle 572 blocks and receives the fluorination bottle on the guide pipe 41.

[0049] When the fluorination bottle falls on the first movable plate 452, the fourth motor 581 operates to rotate the third movable plate 582 to the second conveying belt 55 to prepare to receive the fluorination bottle transferred by the second transport device 3. The fourth cylinder 451 operates to rotate the first movable plate 452 downward, and the first movable plate 452 is opened. The fluorination bottle falls on the second conveying belt 55. At this time, the fourth motor 581 operates to rotate the third movable plate 582 away from the second conveying belt 55, and the third motor 54 rotates to drive the second conveying belt 55 to rotate, thereby transporting the fluorination bottle and passing through the detection mechanism 7, and finally transporting the fluorination bottle to the storage table 8.

[0050] Referring to Figure 1 and Figure 6 The second production transport line 14 comprises a second carrier table 141 fixedly installed on the machine body 1 and arranged close to the second fluorination bottle production outlet 12. A first baffle 142 is fixedly installed on the machine body 1, and a second baffle 143 is installed on the second carrier table 141. The first baffle 142 and the second baffle 143 are arranged in parallel, and a guide single-lane channel is formed between the first baffle 142 and the second baffle 143.

[0051] Referring to Figure 6 and Figure 7The intersection device 6 comprises a connecting plate 61 fixedly connected with the second object table 141, a sixth cylinder 62 fixedly installed on the connecting plate 61, a sliding rod 621 fixedly connected with an output shaft of the sixth cylinder 62, a rotating rod 632 rotatably installed on the connecting plate 61, the rotating rod 632 being vertically arranged, a first push rod 631 fixedly connected with one end of the rotating rod 632 away from the connecting plate 61, in this embodiment, a sliding groove is formed in a side wall of the first push rod 631 close to the sixth cylinder 62, and one end of the sliding rod 621 away from the sixth cylinder 62 is slidably connected with the first push rod 631 through the sliding groove. A second push rod 633 is fixedly installed on the rotating rod 632 close to the connecting plate 61, and a first roller 634 is rotatably installed on one end of the second push rod 633 away from the rotating rod 632. A first supporting rod 641 is fixedly installed on the connecting plate 61, a guide rod 642 is rotatably installed on the first supporting rod 641, and a fourth movable plate 65 for controlling the flow of the third conveying device 5 is fixedly installed on the guide rod 642, in this embodiment, the guide rod 642 is an arc-shaped rod. A second supporting rod 661 is fixedly installed on the connecting plate 61, a rotating table 662 is rotatably installed on the second supporting rod 661, a third push rod 663 is fixedly installed on a side wall of the rotating table 662 close to the guide rod 642, a second roller 667 is rotatably installed on the third push rod 663, and the second roller 667 is rotatably connected with an inner arc surface of the guide rod 642. An installation groove 666 is formed in the connecting plate 61 and communicates with the rotating table 662, a fourth push rod 664 is fixedly installed on a side wall of the rotating table 662 communicating with the installation groove 666, and a receiving table 665 is fixedly installed on one end of the fourth push rod 664 away from the rotating table 662, the upper surface of the receiving table 665 being on the same horizontal plane as the upper surface of the connecting plate 61. A seventh cylinder 67 is arranged on the connecting plate 61, and a fourth push plate 69 for pushing a fluorinated bottle on the receiving table 665 is fixedly connected with an output shaft of the seventh cylinder 67.

[0052] When the first fluorinated bottle production outlet 11 and the second fluorinated bottle production outlet 12 are implemented to converge the fluorinated bottles produced and transported, the fluorinated bottles are conveyed to the second fluorinated bottle production outlet 12 by the second conveying belt, and the fluorinated bottles are constrained to be conveyed in a single row and continue to move to the converging device 6 by the guide channel formed by the first blocking rod 142 and the second blocking rod 143, at this time, the sixth cylinder 62 acts to drive the first push rod 631 to rotate the rotating rod 632 and the second push rod 633 simultaneously, the first roller 634 on the second push rod 633 abuts against the third push rod 663 to drive the third push rod 663 and the rotating table 662 to rotate clockwise around the second supporting rod 661, the fourth push rod 664 connected with the rotating table 662 also rotates clockwise simultaneously, and the receiving table 665 on the fourth push rod 664 rotates clockwise to the end away from the machine body 1 of the first blocking rod 142 and the second blocking rod 143 and is ready to receive the fluorinated bottles. While the second push rod 661 rotates, the second roller 667 on the second push rod 661 rolls along the inner arc surface of the guide rod 642 to drive the guide rod 642 to rotate counterclockwise around the first supporting rod 641, so that the fourth movable plate 65 is turned to the second conveying belt 55, and the seventh cylinder 67 drives the fourth push plate 69 to push the fluorinated bottles onto the second conveying belt 55.

[0053] When the receiving table 665 receives the fluorinated bottles, the sixth cylinder 62 acts to rotate the first push rod 631 back, and the second push rod 633 rotates reversely at the same time, the guide rod 642 is pulled by the second push rod 633 to rotate counterclockwise, the fourth movable plate 65 is turned away from the second conveying belt 55, and the guide rod 642 pulls the first roller 634 to rotate along the guide rod 642 and controls the third push rod 663 to rotate counterclockwise around the rotating table 662, the fourth push rod 664 drives the receiving table 665 to rotate to the front of the fourth push plate 69, the seventh cylinder 67 controls the fourth push plate 69 to move forward to push the fluorinated bottles away from the receiving table 665 and stay on the second carrier table 141, waiting for the second conveying belt 55 to transport the fluorinated bottles produced by the first fluorinated bottle production outlet 11, and then the sixth cylinder 62 continues to repeat the above actions to turn the fourth movable plate 65 to the second conveying belt 55 to block the fluorinated bottles on the second conveying belt 55, the receiving table 665 is turned to the end away from the machine body 1 of the second blocking rod 143 to receive the fluorinated bottles, the seventh cylinder 67 continues to act to push the fluorinated bottles on the second carrier table 141 onto the second conveying belt 55, and then the fourth push plate 69 is quickly retracted to prepare to push the next fluorinated bottle.

[0054] Referring to Figure 8 , the detection mechanism 7 includes a frame 71 fixedly installed on the floor, an eighth cylinder 72 fixedly installed on the frame 71, a test cover 74 fixedly connected to the output shaft of the eighth cylinder 72 penetrating through the frame 71, and a gas pressure gauge 73 installed on the test cover 74. In the embodiment, an infrared detection device is installed on the frame 71 close to the second conveying belt 55, which is a prior art and will not be described in the patent application.

[0055] When the second conveyor belt 55 transports the fluoridated bottle, the infrared detection device detects the fluoridated bottle and sends a signal to the third motor 54, the third motor 54 stops working, the second conveyor belt 55 stops rotating to make the fluoridated bottle stay below the test cover 74, at this time the output shaft of the eighth cylinder 72 pushes the test cover 74 to move downward and press the bottle mouth of the fluoridated bottle for testing, whether the fluoridated bottle is qualified is judged by observing the change of the pressure gauge 73, after the detection is completed, the third motor 54 continues to drive the second conveyor belt 55 to rotate, and the detection of the next fluoridated bottle is completed.

[0056] The implementation principle of the embodiment of the application is as follows: after the fluoridated bottle is produced by the machine body 1, the fluoridated bottle is sent out by the first fluoridated bottle production outlet 11 and the second fluoridated bottle production outlet 12, the fluoridated bottle is transported to the first loading platform 91 by the first fluoridated bottle production outlet 11, the fluoridated bottle is pushed to the transport plate 25 of the first conveying device 2 by the first push plate 93 on the pushing device 9, the transport plate 25 installed on the chain 223 is rotated by the first motor 224 to drive the gear 221 to rotate, and the fluoridated bottle is transported to the second conveying device 3. After the fluoridated bottle is transported to the specified position, the second cylinder 26 drives the second push plate 27 to push the fluoridated bottle to the first conveyor belt 36, and the fluoridated bottle is transported to the guide pipe 41 by the first conveyor belt 36. When the fluoridated bottle approaches the third baffle 44, the infrared detector on the third baffle 44 detects the fluoridated bottle, the output shaft of the third cylinder 432 extends to drive the third push plate 433 to move forward, and the third push plate 433 pushes the fluoridated bottle into the guide pipe 41 and drops on the first movable plate 452. At this time, the fourth motor 581 controls the third movable plate 582 to rotate to the upper side of the second conveyor belt 55 to prevent the fluoridated bottle from falling flat on the second conveyor belt 55 when falling. The first movable plate 452 is controlled to rotate downward by the fourth cylinder 451, so that the fluoridated bottle falls on the second conveyor belt 55, and then the third movable plate 582 is controlled to rotate away from the second conveyor belt 55 by the fourth motor 581, and the third motor 54 drives the second conveyor belt 55 to rotate to transport the fluoridated bottle.

[0057] The second fluorinated bottle production outlet 12 transports the fluorinated bottle to the second loading platform 141, when the fluorinated bottle reaches the receiving table 665, the sixth cylinder 62 acts, pulls the first push rod 631 to rotate, the second push rod 633 rotates reversely at the same time, the second push rod 633 pulls the guide rod 642 to rotate counterclockwise, the fourth movable plate 65 rotates away from the second conveying belt 55, and the guide rod 642 pulls the first roller 634 to rotate along the guide rod 642 and controls the third push rod 663 to rotate counterclockwise with the rotating table 662 as the center, the fourth push rod 664 drives the receiving table 665 to rotate to the front of the fourth push plate 69, the seventh cylinder 67 controls the fourth push plate 69 to move forward to push the fluorinated bottle away from the receiving table 665 and stay on the second loading platform 141, waiting for the second conveying belt 55 to transport the fluorinated bottle produced by the first fluorinated bottle production outlet 11, then the seventh cylinder 67 continues to act to push the fluorinated bottle on the second loading platform 141 to the second conveying belt 55, and then the fourth push plate 69 quickly retracts to complete the convergence of the transportation line of the first fluorinated bottle production outlet 11 and the second fluorinated bottle production outlet 12 and prepare to push the next fluorinated bottle.

[0058] When the fluorinated bottle is converged, the second conveying belt 55 continues to transport the fluorinated bottle to below the detection mechanism 7, when the infrared detector on the detection mechanism 7 detects the fluorinated bottle, the second conveying belt 55 stops running, and the plastic stays below the test cover 74, the eighth cylinder 72 controls the test cover 74 to move downward to detect the fluorinated bottle, and judges whether the fluorinated bottle is qualified through the indication of the air pressure gauge 73 on the test cover 74, after detection, the second conveying belt 55 continues to rotate to transport the fluorinated bottle to the placing table 8 and detect the next fluorinated bottle, which is beneficial to improve the efficiency of the fluorinated bottle detection and transportation device in the transportation process.

[0059] The above are preferred embodiments of the present application, which do not limit the protection scope of the present application, therefore: any equivalent changes made on the structure, shape, principle of the present application shall be covered within the protection scope of the present application.

Claims

1. Fluorinated bottle detection transport apparatus, characterized in that: The utility model provides a fluoridized bottle production line, including body (1), first fluoridized bottle production export (11) and second fluoridated bottle production export (12) are set up respectively on the body (1), first production transport line (13) is arranged on the body (1), fluoridized bottle receiving end of first production transport line (13) is connected with first fluoridized bottle production export (11), fluoridized bottle sending end of first production transport line (13) is connected with the stand (8), second production transport line (14) is arranged on the body (1), fluoridized bottle receiving end of second production transport line (14) is connected with second fluoridated bottle production export (12), and the intersection device (6) that fluoridized bottle is gathered to first production transport line (13) is arranged on second production transport line (14);The intersection device (6) includes connecting plate (61), connecting plate (61) is installed on second production transport line (14), sixth cylinder (62) is installed on connecting plate (61), the output shaft of sixth cylinder (62) is fixedly connected with slide rod (621), first push rod (631) is connected on slide rod (621), rotatingly installed with rotating rod (632) on connecting plate (61), first push rod (631) other end is connected with rotating rod (632), second push rod (633) is connected on rotating rod (632), first gyro wheel (634) is installed on second push rod (633), first support rod (641) is installed on connecting plate (61), and rotatingly installed with guide rod (642) on first support rod (641), second support rod (661) is installed on connecting plate (61), and rotatingly installed with rotary table (662) on second support rod (661), third push rod (663) is installed on rotary table (662), and second gyro wheel (667) is arranged on third push rod (663), and second gyro wheel (667) is connected with guide rod (642), fourth push rod (664) is installed on rotary table (662), and the receiving table (665) is connected with the one end of fourth push rod (664) away from rotary table (662), and the seventh cylinder (67) is set up close to receiving table (665), and the seventh cylinder (67) is installed on connecting plate (61), and the output shaft of seventh cylinder (67) is fixedly connected with fourth push plate (69), and fourth movable plate (65) is installed on guide rod (642) and controls the fluoridized bottle flow of first production transport line (13).

2. The fluorinated bottle detection transport apparatus of claim 1, wherein: The first production transport line (13) comprises a first transport device (2) receiving the fluoridated bottles delivered by the first fluoridated bottle production outlet (11), the first transport device (2) is arranged on the machine body (1), the machine body (1) is provided with a second transport device (3) receiving the fluoridated bottles on the first transport device (2), the fluoridated bottle delivery end of the second transport device (3) is provided with a third transport device (5), the third transport device (5) is installed on the floor, the third transport device (5) is connected with the second production transport line (14), and the fluoridated bottle delivery end of the third transport device (5) is connected with the placement table (8).

3. The fluorinated bottle detection transport apparatus of claim 2, wherein: The first transport device (2) comprises a first transport frame (22) installed on the machine body (1), a first motor (224) installed on the first transport frame (22), a transmission rod (222) installed on the first transport frame (22), a gear (221) installed on the transmission rod (222), a chain (223) meshingly connected to the gear (221), a transport plate (25) installed on the chain (223), and a second cylinder (26) arranged close to the second transport device (3) and installed on the machine body (1), wherein the output shaft of the second cylinder (26) is fixedly connected with a second push plate (27).

4. The fluorinated bottle detection transport apparatus of claim 3, wherein: A pushing device (9) is arranged close to the first transport device (2) and installed on the machine body (1), the pushing device (9) comprises a first loading table (91) installed on the machine body (1) and arranged close to the first fluoridated bottle production outlet (11), and a first cylinder (92) installed on the first loading table (91) and fixedly connected with a first push plate (93) through an output shaft.

5. The fluorinated bottle detection conveyor of claim 2, wherein: The second transport device (3) comprises a second transport frame (33) installed on the machine body (1), a first conveying belt (36) rotatably installed on the second transport frame (33), a second motor (37) installed on the second transport frame (33) and used for controlling the movement of the first conveying belt (36), a guide pipe (41) arranged at one end of the second transport frame (33) away from the first transport device (2), the guide pipe (41) being installed on the machine body (1), a third cylinder (432) arranged on the second transport device (3) close to the guide pipe (41), the output shaft of the third cylinder (432) being fixedly connected with a third push plate (433), a third baffle (44) arranged at one end of the second transport device (3) away from the first transport device (2), a fourth cylinder (451) arranged on the guide pipe (41) close to the third transport device (5), and a first movable plate (452) connected with the output shaft of the fourth cylinder (451).

6. The fluorinated bottle detection transport apparatus of claim 2, wherein: The third conveying device (5) comprises a third conveying frame (52) installed on the floor, a second conveying belt (55) rotatably installed on the third conveying frame (52), and a third motor (54) installed on the third conveying frame (52) and used for controlling the movement of the second conveying belt (55); a fifth baffle (572) is arranged on the third conveying frame (52) and close to the second conveying device (3), a fourth motor (581) is arranged close to the fifth baffle (572), the fourth motor (581) is installed on the machine body (1), and a third movable plate (582) is fixedly connected to an output shaft of the fourth motor (581).

7. The fluorinated bottle detection transport apparatus of claim 1, wherein: The second production conveying line (14) comprises a second carrier table (141) installed on the machine body (1) and close to the second fluorinated bottle production outlet (12), a first blocking rod (142) is installed on the machine body (1) at the position of the second fluorinated bottle production outlet (12), a second blocking rod (143) is installed on the second carrier table (141), and a fluorinated bottle conveying channel is formed between the first blocking rod (142) and the second blocking rod (143), and the intersection device (6) is installed on the second carrier table (141).

8. The fluorinated bottle detection transport apparatus of claim 1, wherein: A detection mechanism (7) is arranged between the intersection device (6) and the carrier table (8), the detection mechanism (7) comprises a frame (71) installed on the floor, an eighth cylinder (72) is arranged on the frame (71), a test cover (74) is fixedly connected to an output shaft of the eighth cylinder (72), and a pressure gauge (73) is arranged on the test cover (74).

Citation Information

Patent Citations

  • Continuous processing of products with autonomous trolley conveyance

    US20220024701A1