CN210656080U - Bottle filling machine with full-automatic station - Google Patents

Bottle filling machine with full-automatic station Download PDF

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Publication number
CN210656080U
CN210656080U CN201921170241.5U CN201921170241U CN210656080U CN 210656080 U CN210656080 U CN 210656080U CN 201921170241 U CN201921170241 U CN 201921170241U CN 210656080 U CN210656080 U CN 210656080U
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liquid
filling
bottle
rack
filling head
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CN201921170241.5U
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Chinese (zh)
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曾远中
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Heze Weifute Packaging Machinery Co ltd
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Individual
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  • Filling Of Jars Or Cans And Processes For Cleaning And Sealing Jars (AREA)

Abstract

A bottle filling machine with a full-automatic station comprises a conveying assembly and a filling assembly. After starting the liquid pump, the liquid pump makes liquid get into the inside of liquid workbin, later get into the filling head through the hose, pour into the inside of canning bottle through the filling head with liquid, after the canning is accomplished, the filling head stops exporting, make conveyer drive next batch of canning bottle and remove filling head below, when changing the canning bottle, the liquid pump pours into liquid into the liquid workbin all the time into liquid all the time, but the filling head is closed, make liquid workbin internal liquid level rise, when the liquid level rises to the middle part, through being linked together with receipts liquid case, make unnecessary liquid get into and receive the liquid incasement portion, later flow into the inside of liquid storage bucket through the back flow, avoid repeatedly opening and stopping the liquid pump, make and keep abundant liquid throughout in the liquid workbin, be convenient for quick carry out the canning to liquid.

Description

Bottle filling machine with full-automatic station
Technical Field
The utility model relates to a bottle filling machine technical field specifically is a bottle filling machine of full-automatic station.
Background
In the production process of the beverage, the bottling machine is required to be used for realizing the procedures of automatic canning, packaging and the like of the beverage, the control system of the bottling machine is complete, the operation is convenient, the automation degree is high, and the production efficiency of the beverage is effectively improved. Although the types and the number of the existing bottle filling machines are very large, the existing bottle filling machines still have certain problems and bring certain inconvenience to the use of the bottle filling machines.
Present bottle filling machine is when using, and the canning head is mostly direct and liquid pump lug connection, during the canning, needs the liquid pump to open repeatedly and stop, has reduced the life of liquid pump, and when the liquid pump was closed back and was opened again simultaneously, liquid need flow through again just can follow the canning head after the pipeline and flow, the efficiency of the canning of reduction to, current bottle filling machine is when the transportation canning bottle, inconvenient messenger's canning bottle aligns with the canning head is quick, inconvenient use.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a bottle filling machine of full-automatic station, with the present bottle filling machine who solves above-mentioned background art and propose when using, the canning head is mostly direct and liquid pump lug connection, during the canning, it opens repeatedly to need the liquid pump to open, the life of liquid pump has been reduced, when the liquid pump is closed back and is opened again simultaneously, liquid need flow through again behind the pipeline just can follow the canning head and flow, the efficiency of the canning that reduces, and, current bottle filling machine is when the transport tank bottle, inconvenient messenger's canning bottle aligns with the canning head is quick, the problem of inconvenient use.
In order to achieve the above object, the utility model provides a following technical scheme: a bottle filling machine with a full-automatic station comprises a conveying assembly and a filling assembly.
The filling assembly comprises a frame C1 and a liquid material barrel C6; a slide rail C3 is installed on one side, close to the conveying assembly, of the rack C1, a slide block C4 is installed on the slide rail C3, and the slide block C4 is driven by respective driving motors to freely slide left and right along the slide rail C3; a filling head C5 is arranged on the slide block C4; the liquid barrel C6 is arranged at the rightmost side, the bottom of the liquid barrel C6 is connected with a shunt pipe C11 through a liquid pump C9 and a liquid inlet pipe C10, the shunt pipe C11 is connected with a liquid box C8, and the outlet of the liquid box C8 is connected with a filling head C5 through a hose C12; the middle position of the liquid box C8 is provided with a liquid collecting box C13, and the liquid collecting box C13 is connected with the top of the liquid barrel C6 through a return pipe C14.
The conveying assembly comprises a conveying device C2, a guide plate C15 is fixed at the top of one side, close to a rack C1, of the conveying device C2, a clamping plate groove C16 is formed in one side, close to a rack C1, of the guide plate C15, a filling head C5 of the conveying device C2 is placed below the filling head C17, clamping plates C18 are rotatably connected to two sides, close to a filling bottle C17, of the conveying device C2, and a hydraulic pump C19 is rotatably connected to one side, far away from the guide plate C15, of the clamping plate C18; the vertical distance from the side of the guide plate C15 close to the rack C1 to the rack C1 is smaller than the vertical distance from the side of the guide plate C15 far away from the rack C1 to the rack C1; the width of the clamping plate groove C16 is matched with the width of the clamping plate C18, and the distance between the clamping plates C18 is equal to the sum of the maximum outer diameters of the can bottles C17.
Compared with the prior art, the beneficial effects of the utility model are that:
the beneficial effects are that: be provided with and receive liquid case and back flow, after starting the liquid pump, the liquid pump makes the inside of liquid entering liquid workbin, later get into the filling head through the hose, pour into the inside of canning bottle with liquid through the filling head, after the canning is accomplished, the filling head stops the output, make conveyer drive next batch of canning bottle and remove filling head below, when changing the canning bottle, the liquid pump pours into liquid workbin all the time into liquid, but the filling head is closed, make liquid incasement liquid level rise, when the liquid level rises to the middle part, through being linked together with receiving the liquid case, make unnecessary liquid get into and receive the liquid incasement portion, later flow into the inside of liquid storage bucket through the back flow, avoid opening repeatedly and stopping the liquid pump, make and remain abundant liquid in the liquid workbin all the time, be convenient for quick carry out the canning to liquid.
Beneficial effects 2: be provided with baffle and cardboard, conveyer drives the filling bottle and removes to the frame, through the baffle of slope, is close to the frame when making the filling bottle remove, makes the filling bottle remove the below of filling head, after the filling bottle removed the below of filling head, the hydraulic pump extension made the cardboard rotate to the baffle direction, the inside in cardboard groove is just gone into to the card to the cardboard, makes hugging closely each other between the filling bottle simultaneously, is convenient for make the filling bottle align fast with the filling head.
Beneficial effect 3: be provided with slide rail and slider, individual slider respectively with individual first fixed connection of filling, through the sliding structure that slide rail and slider constitute, can make the slider drive the filling head and remove, be convenient for adjust the position of filling head.
Drawings
FIG. 1 is a schematic perspective view of the present invention;
FIG. 2 is a schematic perspective view of the present invention;
FIG. 3 is a schematic side view of the present invention;
fig. 4 is a schematic view of the rear view structure of the present invention.
Fig. 5 is a schematic view of the frame structure of the present invention.
Fig. 6 is a schematic structural view of the conveying assembly of the present invention.
Fig. 7 is a schematic structural view of the conveying assembly of the present invention.
Fig. 8 is a schematic structural view of the filling assembly of the present invention.
Fig. 9 is a schematic structural view of the filling assembly of the present invention.
Fig. 10 is a schematic view of the structure of the filling head of the present invention.
In the figure: c1, a frame; c2, a conveying device; c3, a slide rail; c4, a sliding block; c5, filling head; c6, liquid material barrel; c7, a PLC control box; c8, liquid material box; c9, liquid pump; c10, a liquid inlet pipe; c11, shunt tube; c12, flexible pipe; c13, a liquid collection box; c14, a return pipe; c15, a guide plate; c16, a clamping plate groove; c17, bottling; c18, cardboard; c19, hydraulic pump.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying 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. 1-3, a fully automated station bottling machine includes a transfer assembly and a filling assembly.
The filling assembly comprises a frame C1 and a liquid material barrel C6; a sliding rail C3 is mounted on one side, close to the conveying assembly, of the rack C1, four sliding blocks C4 are mounted on the sliding rail C3, and the sliding blocks C4 are driven by respective driving motors to freely slide left and right along the sliding rail C3; a filling head C5 is arranged on the slide block C4; through the sliding structure that slide rail C3 and slider C4 constitute, can make slider C4 drive filling head C5 and remove, be convenient for adjust filling head C5's position.
Liquid barrel C6 is arranged at the rightmost side, the bottom of liquid barrel C6 is connected to a shunt tube C11 via a liquid pump C9 and a liquid inlet tube C10, shunt tubes C11 are connected to liquid tanks C8, the number of liquid tanks C8 is four, and four liquid tanks C8 are respectively connected to four filling heads C5 through four hoses C12. The middle position of the liquid box C8 is provided with a liquid collecting box C13, and the liquid collecting box C13 is connected with the top of the liquid barrel C6 through a return pipe C14.
The liquid pump C9 is started, and the liquid pump C9 pumps the liquid out of the liquid barrel C6, so that the liquid enters the inside of the liquid tank C8 through the liquid inlet pipe C10 and the shunt pipe C11, then enters the filling head C5 through the hose C12, and fills the liquid into the inside of the filling bottle C17 through the filling head C5. When canning is finished, the output of the filling head C5 is stopped, the conveyer C2 drives the next batch of the filling bottles C17 to move to the lower part of the filling head C5, when the filling bottles C17 are replaced, the liquid pump C9 injects liquid into the liquid material box C8 all the time, but the filling head C5 is closed, the liquid level in the liquid material box C8 rises, when the liquid level rises to the middle part, the liquid pump C13 is communicated with the liquid receiving box C13, redundant liquid enters the liquid receiving box C13, and then the redundant liquid flows into the liquid material barrel C6 through the return pipe C14, so that the situation that the liquid pump C9 is started and stopped repeatedly is avoided, the liquid in the liquid material box C8 is kept full liquid all the time, and the liquid can be quickly canned.
The conveying assembly comprises a conveying device C2, a guide plate C15 is fixed at the top of one side, close to a rack C1, of the conveying device C2, a clamping plate groove C16 is formed in one side, close to a rack C1, of the guide plate C15, a filling head C5 of the conveying device C2 is placed below the filling head C17, clamping plates C18 are rotatably connected to two sides, close to a filling bottle C17, of the conveying device C2, and a hydraulic pump C19 is rotatably connected to one side, far away from the guide plate C15, of the clamping plate C18; the vertical distance from the side of the guide plate C15 close to the rack C1 to the rack C1 is smaller than the vertical distance from the side of the guide plate C15 far away from the rack C1 to the rack C1; the width of the clamping plate groove C16 is matched with the width of the clamping plate C18, and the distance between the clamping plates C18 is equal to the sum of the maximum outer diameters of the can bottles C17.
When the conveying device C2 drives the filling bottle C17 to move towards the rack C1, the inclined guide plate C15 makes the filling bottle C17 move towards the rack C1 at the same time, so that the filling bottle C17 moves below the filling head C5, a clamp plate groove C16 is formed in one side of the guide plate C15 close to the rack C1, the width of the clamp plate groove C16 is matched with the width of the clamp plate C18, the distance between the clamp plates C18 is equal to the sum of the maximum outer diameters of the filling bottles C17, after the filling bottle C17 moves below the filling head C5, the hydraulic pump C19 extends, the clamp plate C18 rotates towards the guide plate C15, the clamp plate C18 is just clamped into the clamp plate groove C16, the filling bottles C17 are tightly packed, and the filling heads C17 and C5 are quickly aligned.
The bottle filling machine of full-automatic station is still including installing the PLC control box C7 in frame C1 one side, is provided with the PLC controller in the PLC control box C7, and the PLC controller electricity respectively connects in driving motor control unit, liquid pump control unit, conveying motor control unit and hydraulic pump control unit.
The operation method of the full-automatic station bottle filling machine comprises the following steps: starting the liquid pump C9, the liquid pump C9 pumps the liquid out of the liquid tank C9, so that the liquid enters the inside of the liquid tank C9 through the liquid inlet pipe C9 and the liquid dividing pipe C9, meanwhile, the conveying device C9 drives the filling bottle C9 to move towards the rack C9, the filling bottle C9 approaches towards the rack C9 while moving through the inclined guide plate C9, so that the filling bottle C9 moves below the filling head C9, after the filling bottle C9 moves below the filling head C9, the hydraulic pump C9 extends, so that the clamping plate C9 rotates towards the direction of the guide plate C9, the clamping plate C9 is just clamped inside the clamping plate C9, and simultaneously, the filling heads C9 are tightly attached to each other, so that the filling bottle C9 and the filling head C9 are quickly aligned, then the filling head C9 is opened, so that the liquid enters the filling head C9 through the hose C9, and after the filling head C9 is moved to the conveying of a batch of the filling head 9, the filling head 9 is stopped, and the filling head C9 is conveyed below the filling head 9. When the filling bottle C17 is replaced, the liquid pump C9 injects liquid into the liquid material box C8 all the time, but the filling head C5 is closed, so that the liquid level in the liquid material box C8 rises, when the liquid level rises to the middle part, the liquid pump C9 is communicated with the liquid receiving box C13, redundant liquid enters the liquid receiving box C13, and then the redundant liquid flows into the liquid material barrel C6 through the return pipe C14, so that the situation that the liquid pump C9 is repeatedly started and stopped is avoided, sufficient liquid is always kept in the liquid material box C8, and the liquid can be quickly filled.
Although the present invention has been described in detail with reference to the foregoing embodiments, it will be apparent to those skilled in the art that modifications may be made to the embodiments or portions thereof without departing from the spirit and scope of the invention.

Claims (2)

1. A bottle filling machine with a full-automatic station comprises a conveying assembly and a filling assembly; the method is characterized in that:
the filling assembly comprises a frame (C1) and a liquid material barrel (C6); a slide rail (C3) is installed on one side, close to the conveying assembly, of the rack (C1), a slide block (C4) is installed on the slide rail (C3), and the slide block (C4) can slide left and right freely along the slide rail (C3) under the drive of respective drive motors; a filling head (C5) is arranged on the slide block (C4); the liquid barrel (C6) is arranged at the rightmost side, the bottom of the liquid barrel (C6) is connected with a shunt pipe (C11) through a liquid pump (C9) and a liquid inlet pipe (C10), the shunt pipe (C11) is connected with a liquid box (C8), and the outlet of the liquid box (C8) is connected with a filling head (C5) through a hose (C12); the middle position of the liquid box (C8) is provided with a liquid receiving box (C13), and the liquid receiving box (C13) is connected to the top of the liquid barrel (C6) through a return pipe (C14);
the conveying assembly comprises a conveying device (C2), a guide plate (C15) is fixed to the top of one side, close to a rack (C1), of the conveying device (C2), a clamping plate groove (C16) is formed in one side, close to a rack (C1), of the guide plate (C15), a filling bottle (C17) is placed below the conveying device (C2) close to a filling head (C5), clamping plates (C18) are rotatably connected to two sides, close to a filling bottle (C17), of the conveying device (C2), and a hydraulic pump (C19) is rotatably connected to one side, far away from the guide plate (C15), of each clamping plate (C18); the vertical distance from one side of the guide plate (C15) close to the rack (C1) to the rack (C1) is smaller than the vertical distance from one side of the guide plate (C15) far away from the rack (C1) to the rack (C1); the width of the clamping plate groove (C16) is matched with the width of the clamping plate (C18), and the distance between the clamping plates (C18) is equal to the sum of the maximum outer diameters of the can bottles (C17).
2. The fully automated station bottling machine according to claim 1, wherein: the hydraulic control system is characterized by further comprising a PLC control box (C7) installed on one side of the rack (C1), wherein a PLC controller is arranged in the PLC control box (C7) and is respectively and electrically connected to the driving motor control unit, the liquid pump control unit, the conveying motor control unit and the hydraulic pump control unit.
CN201921170241.5U 2019-07-24 2019-07-24 Bottle filling machine with full-automatic station Active CN210656080U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921170241.5U CN210656080U (en) 2019-07-24 2019-07-24 Bottle filling machine with full-automatic station

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921170241.5U CN210656080U (en) 2019-07-24 2019-07-24 Bottle filling machine with full-automatic station

Publications (1)

Publication Number Publication Date
CN210656080U true CN210656080U (en) 2020-06-02

Family

ID=70842760

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921170241.5U Active CN210656080U (en) 2019-07-24 2019-07-24 Bottle filling machine with full-automatic station

Country Status (1)

Country Link
CN (1) CN210656080U (en)

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GR01 Patent grant
GR01 Patent grant
TR01 Transfer of patent right
TR01 Transfer of patent right

Effective date of registration: 20230822

Address after: No. 88, Development Zone, Rangu Town, Dingtao County, Dingtao District, Heze City, Shandong Province, 274100

Patentee after: Heze Weifute Packaging Machinery Co.,Ltd.

Address before: No. 253, Houlun Village, Hubian Town, Dongling Town, Hui'an County, Quanzhou City, Fujian Province, 362000

Patentee before: Wang Tianmu