CN215886331U - Quantitative filling device - Google Patents

Quantitative filling device Download PDF

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Publication number
CN215886331U
CN215886331U CN202122232136.3U CN202122232136U CN215886331U CN 215886331 U CN215886331 U CN 215886331U CN 202122232136 U CN202122232136 U CN 202122232136U CN 215886331 U CN215886331 U CN 215886331U
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liquid
liquid storage
quantitative
adjusting
filling
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CN202122232136.3U
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Chinese (zh)
Inventor
伍添伟
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Foshan Gaominghua Alcohol Co ltd
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Foshan Gaominghua Alcohol Co ltd
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Priority to CN202122232136.3U priority Critical patent/CN215886331U/en
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Abstract

The utility model relates to the technical field of filling equipment, in particular to a quantitative filling device, which comprises a base, a liquid inlet device, a reversing valve, a liquid storage device, a liquid outlet device and a quantitative adjusting device, wherein the liquid inlet device, the reversing valve, the liquid storage device, the liquid outlet device and the quantitative adjusting device are sequentially erected on an installation surface of the base; two ends of the liquid storage device are transversely erected on the mounting surface of the base through a first partition plate and a second partition plate, one end of the liquid storage device penetrates through the first partition plate to be provided with a liquid communication port, and the liquid communication port is provided with a reversing valve; the liquid outlet device is erected on any side of the liquid storage device, the other end of the liquid storage device is provided with a quantitative adjusting device, the quantitative adjusting device is erected on the mounting surface of the base through a third partition plate, and the quantitative adjusting device is used for adjusting the liquid storage capacity in the liquid storage device and quantitatively outputting liquid in the liquid storage device. The utility model can accurately and quantitatively carry out filling operation, and has simple structure and convenient operation.

Description

Quantitative filling device
Technical Field
The utility model relates to the technical field of filling equipment, in particular to a quantitative filling device.
Background
Along with the continuous expansion of market demand, the increase of high-efficient automated production demand of enterprises and the improvement of people's requirement for commodity quality, the competition of wine packaging machinery is fierce day by day, and the liquid filling machine becomes more and more a hot filling equipment of hand. Most of the existing filling machines are complex in structure, and although the filling machines for producing different bottle packing bottles can be met, the existing filling machines are long in debugging time, low in debugging precision and seriously affect the production efficiency and other problems.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a quantitative filling device which can perform filling operation accurately and quantitatively, and is simple in structure and convenient to operate.
In order to achieve the purpose, the utility model adopts the following technical scheme:
a quantitative filling device comprises a base, a liquid inlet device, a reversing valve, a liquid storage device, a liquid outlet device and a quantitative adjusting device, wherein the liquid inlet device, the reversing valve, the liquid storage device, the liquid outlet device and the quantitative adjusting device are sequentially erected on an installation surface of the base;
two ends of the liquid storage device are transversely erected on the mounting surface of the base through a first partition plate and a second partition plate, the liquid storage device is used for storing liquid, one end of the liquid storage device penetrates through the first partition plate and is provided with a liquid communication port, and the liquid communication port is provided with the reversing valve;
an inlet channel of the reversing valve is communicated with an output port of the liquid inlet device, a first outlet channel of the reversing valve is communicated with the liquid communication port, and a second outlet channel of the reversing valve is communicated with a liquid inlet of the liquid outlet device;
the liquid outlet device is erected on any side of the liquid storage device and is used for filling liquid into a specified container;
the other end of the liquid storage device is provided with the quantitative adjusting device, the quantitative adjusting device is installed on the installation surface of the base through a third partition frame, and the quantitative adjusting device is used for adjusting the liquid storage capacity in the liquid storage device and quantitatively outputting liquid in the liquid storage device.
Preferably, the liquid outlet device further comprises a controller, the controller is respectively electrically connected with the reversing valve and the liquid outlet device, and the controller is used for controlling the passage switch of the reversing valve and controlling the switch of the liquid outlet device.
Preferably, the liquid storage device comprises a horizontal liquid storage tank and a movable plate, a plurality of mounting through holes are formed in the second partition plate, the movable plate is vertically and transversely movably mounted in the horizontal liquid storage tank, the movable plate divides an inner cavity of the horizontal liquid storage tank into a sealed liquid storage area and a power connection area, the sealed liquid storage area is arranged close to the reversing valve, and the power connection area is arranged close to the quantitative adjusting device;
the quantitative adjusting device comprises a quantitative adjusting component, a driving cylinder body, a piston, a plurality of connecting rods and a connecting rod mounting part, the driving cylinder body is arranged between the two horizontal liquid storage tanks, the piston is arranged in the driving cylinder body in a sealing and sliding mode, and the driving cylinder body is used for driving the piston to reciprocate in the driving cylinder body; one end of each of the connecting rods is mounted on the connecting rod mounting part, one end of each of a part of the connecting rods penetrates through the mounting through hole to enter the power connection area and is connected to the plate surface of the movable plate, one end of each of the other part of the connecting rods penetrates through the mounting through hole to enter the driving cylinder body and is connected to the plate surface of the piston, and the driving cylinder body is used for driving the connecting rod mounting part to move transversely through the piston and the connecting rod of the piston, so that the movable plate is pushed to move transversely in the horizontal liquid storage tank through the connecting rod of the movable plate; the quantitative adjusting component is used for adjusting and fixing the distance of the transverse movement of the connecting rod mounting part.
Preferably, the quantitative adjusting component comprises an adjusting knob, an adjusting screw rod, a guide rod and a quantitative block, the guide rod is fixedly arranged on the second clapboard and the third clapboard, the adjusting screw rod can be arranged between the second clapboard and the third clapboard in a rotating way, the guide rod and the adjusting screw rod are mutually parallel and are erected and installed on the installation surface of the base, the quantitative block and the connecting rod installation part are arranged by penetrating through the adjusting screw rod and the guide rod, the connecting rod installation part is arranged between the quantitative block and the third clapboard, and the autorotation of the adjusting screw rod is used for driving the quantitative block to move transversely along the guide rod, the transverse moving distance of the connecting rod mounting part is the transverse distance between the third clapboard and the quantitative block, the adjusting knob is installed on the third partition plate and is in transmission connection with the adjusting screw rod.
Preferably, the quantitative adjusting assembly further comprises a scale rod, and scale marks are arranged on the outer wall of the scale rod.
Preferably, the liquid inlet device is of a Y-shaped structure, and a sealing ring is arranged at the joint of the inlet channel, the first outlet channel and the second outlet channel.
Preferably, the liquid-out device includes filling tube and filling head, the head end of filling tube with first exit channel intercommunication, the end of filling tube is equipped with the filling head, the overhead filling valve that installs of filling, the filling head is equipped with the filling mouth of vertical downward extension, the internal diameter of filling mouth reduces gradually downwards.
Preferably, still include high adjusting device, high adjusting device includes regulation post, connecting rod, first fixing base and second fixing base, the regulation post vertically install in the installation face of base, the regulation post be equipped with can follow the regulation post reciprocates first fixing base, the second fixing base passes through connecting rod detachably connect in first fixing base, just horizontal distance between second fixing base and the first fixing base passes through the rotation of connecting rod realizes the regulation of horizontal distance, go out liquid device detachably fixed mounting in the second fixing base.
Preferably, a pressure sensor and a pressure regulator are arranged in the horizontal liquid storage tank, the pressure sensor is connected with a pressure gauge, and the pressure regulator is electrically connected with a pressure regulating valve.
Compared with the prior art, the technical scheme has the following beneficial effects:
(1) through the arrangement of the reversing valve, the liquid storage device, the liquid outlet device and the quantitative adjusting device, the quick switching of liquid inlet and liquid outlet processes is realized, the quantitative adjustment of liquid inlet and liquid outlet of the liquid storage device is realized, the accurate quantitative filling is realized, the debugging time is shortened, and the production efficiency is improved;
(2) the first partition plate, the second partition plate and the third partition plate are arranged for better fixedly mounting each device and providing support for each device; the liquid storage device is transversely erected, so that the liquid inlet speed and the liquid outlet speed of the liquid storage device are the same under the condition of no external force, and the flow controllability is high; the liquid outlet device is erected on any side of the liquid storage device, so that the structure is more compact, the cans placed in different directions are met, and the use efficiency of the device is improved.
Drawings
FIG. 1 is a schematic view of the quantitative filling apparatus of the present invention;
fig. 2 is a schematic top view of the quantitative filling device of the present invention;
in the drawings: the device comprises a base 1, a liquid inlet device 2, a reversing valve 3, a liquid storage device 4, a liquid outlet device 5, a quantitative adjusting device 6, a height adjusting device 7, a first partition plate 11, a second partition plate 12, a third partition plate 13, an inlet channel 31, a first outlet channel 32, a second outlet channel 33, a sealing ring 34, a horizontal liquid storage tank 41, a movable plate 42, an installation through hole 43, a filling pipe 51, a filling head 52, a filling valve 53, a filling nozzle 54, a quantitative adjusting component 61, a driving cylinder 62, a piston 63, a connecting rod 64, a connecting rod installation part 65, an adjusting column 71, a connecting rod 72, a first fixed seat 73, a second fixed seat 74, a pressure gauge 411, a pressure adjusting valve 412, an adjusting knob 611, an adjusting screw rod 612, a guide rod 613, a quantitative block 614 and a scale rod 615.
Detailed Description
The technical scheme of the utility model is further explained by the specific implementation mode in combination with the attached drawings.
In the description of the present invention, it is to be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "axial", "radial", "circumferential", and the like, indicate orientations and positional relationships based on those shown in the drawings, and are used merely for convenience of description and for simplicity of description, and do not indicate or imply that the device or element being referred to must have a particular orientation, be constructed and operated in a particular orientation, and thus, should not be considered as limiting the present invention.
Furthermore, the terms "first", "second" and "first" are used for descriptive purposes only and are not to be construed as indicating or implying relative importance or implicitly indicating the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of the present invention, "a plurality" means two or more unless otherwise specified.
In the description of the present invention, it should be noted that, unless otherwise explicitly specified or limited, the terms "mounted," "connected," and "connected" are to be construed broadly, e.g., as meaning either a fixed connection, a removable connection, or an integral connection; they may be connected directly or indirectly through intervening media, or they may be interconnected between two elements. The specific meanings of the above terms in the present invention can be understood in specific cases to those skilled in the art.
As shown in fig. 1-2, a quantitative filling device comprises a base 1, a liquid inlet device 2, a reversing valve 3, a liquid storage device 4, a liquid outlet device 5 and a quantitative adjusting device 6, wherein the liquid inlet device 2, the reversing valve 3, the liquid storage device 4, the liquid outlet device 5 and the quantitative adjusting device 6 are sequentially erected on an installation surface of the base 1;
two ends of the liquid storage device 4 are transversely erected on the mounting surface of the base through a first partition plate 11 and a second partition plate 12, the liquid storage device 4 is used for storing liquid, one end of the liquid storage device 4 penetrates through the first partition plate 11 and is provided with a liquid communication port, and the reversing valve 3 is installed on the liquid communication port;
an inlet channel 31 of the reversing valve 3 is communicated with an output port of the liquid inlet device 2, a first outlet channel 32 of the reversing valve 3 is communicated with the liquid communication port, and a second outlet channel 33 of the reversing valve 3 is communicated with a liquid inlet of the liquid outlet device 5;
the liquid outlet device 5 is erected on any side of the liquid storage device 4, and the liquid outlet device 5 is used for filling liquid into a specified container;
the other end of the liquid storage device 4 is provided with the quantitative adjusting device 6, the quantitative adjusting device 6 is erected on the mounting surface of the base 1 through a third partition plate 13, and the quantitative adjusting device 6 is used for adjusting the liquid storage capacity in the liquid storage device 4 and quantitatively outputting the liquid in the liquid storage device 4.
When in use, the liquid storage capacity of the liquid storage device 4 can be firstly adjusted through the quantitative adjusting device 6, the liquid storage capacity is set according to the required filling total amount, the liquid inlet device 2 is opened after the setting, of course, the liquid inlet device 2 can be directly opened without setting the liquid storage capacity, meanwhile, the inlet channel 31 of the reversing valve 3 is communicated with the first outlet channel 32 to realize the communication between the liquid inlet device 2 and the liquid storage device 4, then the liquid is delivered into the liquid storage device 4 through the liquid inlet device 2, when the liquid storage capacity is enough, the communication between the inlet channel 31 of the reversing valve 3 and the first outlet channel 32 is closed, the communication between the first outlet channel 32 and the second outlet channel 33 is changed into open communication, thereby realize the intercommunication between stock solution device 4 and the play liquid device 5 to make stock solution device 4 can go out the liquid by ration through ration adjusting device 6, and then realize quantitative filling. Through the setting of switching-over valve 3 and stock solution device 4, play liquid device 5 to and quantitative adjusting device 6, realize the quick conversion of feed liquor and play liquid process, realize stock solution device 4's feed liquor and play liquid ration adjustable, realize accurate quantitative filling, shorten the debugging time, improve production efficiency.
In a further description, the first partition 11, the second partition 12 and the third partition 13 are arranged to better fix and mount the devices, and provide support for the devices; the liquid storage device 4 is transversely erected, so that the liquid inlet speed and the liquid outlet speed of the liquid storage device 4 are the same under the condition of no external force, and the flow controllability is high; the liquid outlet device 5 is erected on any side of the liquid storage device 4, so that the structure is more compact, the canning in different directions is met, and the service efficiency of the device is improved.
Further, the liquid outlet device further comprises a controller, the controller is respectively electrically connected with the reversing valve 3 and the liquid outlet device 5, and the controller is used for controlling a passage switch of the reversing valve 3 and controlling a switch of a liquid outlet of the liquid outlet device 5. When the quantitative liquid storage device is used, when the controller controls the inlet channel 31 of the reversing valve 3 to be communicated with the first outlet channel in an opening mode, the liquid outlet of the liquid outlet device 5 is controlled to be closed, the liquid storage operation is achieved, when the liquid storage capacity is enough, the controller closes the communication between the inlet channel 31 of the reversing valve 3 and the first outlet channel, when the communication is changed into the communication between the first outlet channel and the second outlet channel in an opening mode, the liquid outlet of the liquid outlet device 5 is controlled to be opened, the liquid can be quantitatively discharged from the liquid storage device 4 through the quantitative adjusting device 6, quantitative filling is achieved, the steps are repeated, and the mass production of canned products is achieved. The controller controls the reversing valve 3 and the liquid outlet device 5 to cooperatively operate, so that the canning operation is automatic, and the production efficiency is high. Meanwhile, when the electric connection of the controller is closed, the quantitative adjusting device 6 can be driven manually to enable the liquid storage device 4 to discharge liquid quantitatively, and then quantitative filling is achieved.
More specifically, the liquid storage device 4 includes a horizontal liquid storage tank 41 and a movable plate 42, the second partition 12 is provided with a plurality of mounting through holes 43, the movable plate 42 is vertically and transversely movably mounted in the horizontal liquid storage tank 41, the movable plate 42 divides an inner cavity of the horizontal liquid storage tank 41 into a sealed liquid storage area and a power connection area, the sealed liquid storage area is arranged close to the reversing valve 3, and the power connection area is arranged close to the quantitative adjustment device 6;
the quantitative adjusting device 6 comprises a quantitative adjusting component 61, a driving cylinder 62, a piston 63, a plurality of connecting rods 64 and a connecting rod mounting part 65, wherein the driving cylinder 62 is arranged between the two horizontal liquid storage tanks 41, the piston 63 is arranged in the driving cylinder 62 in a sealing and sliding manner, and the driving cylinder 62 is used for driving the piston 63 to reciprocate in the driving cylinder 62; one end of each of the plurality of connecting rods 64 is mounted on the connecting rod mounting portion 65, wherein one end of a part of the connecting rods 64 penetrates through the mounting through hole 43 to enter the power connection region and is connected to the plate surface of the movable plate 42, and one end of the other part of the connecting rods 64 penetrates through the mounting through hole 43 to enter the driving cylinder 62 and is connected to the plate surface of the piston 63, the driving cylinder 62 is used for driving the connecting rod mounting portion 65 to move transversely through the piston 63 and the connecting rod 64 of the piston 63, and then the connecting rod 64 of the movable plate 42 is used for pushing the movable plate 42 to move transversely in the horizontal type liquid storage tank 41; the quantitative adjustment assembly 61 is used to adjust and fix the distance of the lateral movement of the link mounting part 65.
The quantitative adjusting component can carry out quick quantitative adjustment according to different quantitative standards, and can complete automatic quantitative filling according to the quantitative standards after the quantitative adjustment. Further, the connecting rod mounting part 65 is adopted to fixedly connect the connecting rod 64 and the piston 63 in the driving cylinder 62 at the same time, so that the driving cylinder 62 drives the piston to reciprocate and can drive the connecting rod 64 participating in linkage on the connecting rod mounting part 65 to move towards the same direction, and the reciprocating movement is carried out within the distance of limiting the transverse movement of the connecting rod mounting part 65 by the quantitative adjusting component 61, and the device has the advantages of compact structure, simple control and reliable action.
More specifically, the quantitative adjustment assembly 61 includes an adjustment knob 611, an adjustment screw 612, a guide rod 613 and a quantitative block 614, the guide rod 613 is fixedly installed on the second partition plate 12 and the third partition plate 13, the adjustment screw 612 is rotatably installed between the second partition plate 12 and the third partition plate 13, the guide rod 613 and the adjustment screw 612 are installed on the installation surface of the base 1 in parallel, the quantitative block 614 and the link installation part 64 are disposed through the adjustment screw 612 and the guide rod 613, the link installation part 64 is disposed between the quantitative block 614 and the third partition plate 13, and the rotation of the adjustment screw 612 drives the quantitative block 614 to move transversely along the guide rod 613, the distance of the transverse movement of the link installation part 64 is the transverse distance between the third partition plate 13 and the quantitative block 614, the adjusting knob 611 is mounted on the third partition plate 13, and the adjusting knob 611 is in transmission connection with the adjusting screw rod 612.
The guide rod 613 and the adjusting screw rod 612 are fixedly arranged between the second partition plate 12 and the third partition plate 13, and penetrate through the quantitative block 614 and the connecting rod mounting part 64, so as to limit the up-and-down movement of the quantitative block 614 and the connecting rod mounting part 64 and ensure the stability of the transverse movement of the movable plate 42 pushed by the connecting rod 63 in the horizontal liquid storage tank 41; in addition, the adjusting screw rod 612 is arranged between the guide rods 613, so that the adjusting screw rod 612 can be protected, and the rotation of the adjusting screw rod 612 is realized by rotating the adjusting knob 611, so that the quantitative block 614 is driven to move transversely on the adjusting screw rod 612, and the time and the error of manual operation can be reduced; and for adjusting the distance of the metering block 614 from the third partition 13, i.e., the distance of the lateral movement of the link mounting portion 64, thereby fixing the moving position of the movable plate 42 within the horizontal reservoir 61, thereby fixing the filling amount.
When the embodiment is implemented, the fixing piece on the metering block 614 is unscrewed, the limit of the metering block 614 on the adjusting screw rod 612 is removed, then the adjusting screw rod 612 is driven to rotate by rotating the adjusting knob 611, at this time, the metering block 614 is driven by the adjusting screw rod 612 to move leftwards or rightwards along the guide rod 613, after the metering is in place, the fixing piece is screwed down, so that the metering block 614 and the adjusting screw rod 612 cannot move relatively, the metering adjustment is realized, and the problems that the conventional filling device is difficult to adjust, time and labor are wasted in debugging and the like are solved.
In a further description, the quantitative adjustment assembly 61 further includes a scale bar 615, and the outer wall of the scale bar 615 is provided with scale lines. Can accurate control establish the distance between gauge block and the third baffle to accurate control filling volume, convenient operation is swift.
In a further description, the liquid inlet device 2 is of a Y-shaped structure, and a sealing ring 34 is disposed at a joint of the inlet channel 31, the first outlet channel 32 and the second outlet channel 33. The Y-shaped structure is provided with an input port and two output ports, correspondingly, the two output ports are respectively provided with a reversing valve 3 with the same structure, a liquid storage device 4 and a liquid outlet device 5 which are connected, and the reversing valves can be erected on two sides of the liquid storage device 4 to realize filling in two different directions, so that the working efficiency is improved, and the Y-shaped structure can uniformly distribute liquid, so that the liquid flow on the two sides is equal and accurate; the sealing ring 34 is provided to protect the sealing property at the joint of the passages and prevent the liquid leakage.
In a further illustration, the tapping device 5 comprises a filling tube 51 and a filling head 52, the head end of the filling tube 51 is communicated with the first outlet channel 32, the end of the filling tube 51 is provided with the filling head 52, a filling valve 53 is installed on the filling head 52, the filling head 52 is provided with a filling nozzle 54 extending vertically downwards, and the inner diameter of the filling nozzle 54 is gradually reduced downwards.
The filling valve 53 is used for controlling the conduction and the blockage of the filling head 52, and can also conveniently adjust the flow in the filling pipe 51, thereby facilitating the safe filling; the filling mouth 54 of the filling head 52 is vertically extended downwards, and the inner diameter is gradually reduced downwards, so that the liquid can be gathered, the liquid can conveniently enter the bottle mouth of an empty bottle, the liquid is prevented from overflowing, preferably, the filling valve 53 can also be electrically connected with a controller, and the electric control operation of quantitative filling is realized.
Further, the liquid outlet device further comprises a height adjusting device 7, the height adjusting device 7 comprises an adjusting column 71, a connecting rod 72, a first fixing seat 73 and a second fixing seat 74, the adjusting column 71 is vertically installed on the installation surface of the base 1, the adjusting column 71 is provided with the first fixing seat 73 capable of moving up and down along the adjusting column 71, the second fixing seat 74 is detachably connected to the first fixing seat 73 through the connecting rod 72, the horizontal distance between the second fixing seat 74 and the first fixing seat 73 is adjusted through the rotation of the connecting rod 72, and the liquid outlet device 5 is detachably and fixedly installed on the second fixing seat 74.
The first fixed seat 73 can be adjusted in height on the adjusting column 71, so that the height of the filling head 52 of the liquid outlet device 5 can be adjusted, and then the horizontal distance between the first fixed seat 73 and the second fixed seat 74 is adjusted through the connecting rod 72, so that the horizontal adjustment of the filling head 52 of the liquid outlet device 5 is realized; through the design, the liquid outlet device 5 can fill empty bottles with different heights and sizes. Further, the first fixing seat 73 and the second fixing seat 74 are both provided with through holes for penetrating screws to fix.
In a further description, a pressure sensor and a pressure regulator are arranged in the horizontal liquid storage tank 41, the pressure sensor is connected with a pressure gauge 411, and the pressure regulator is electrically connected with a pressure regulating valve 412. The pressure sensor and the pressure gauge 411 are used for monitoring the pressure in the horizontal liquid storage tank 41, and the pressure regulator and the pressure regulating valve 412 are used for regulating the pressure in the horizontal liquid storage tank 41, so that the filling device can be ensured to carry out accurate quantitative filling smoothly, preferably, the pressure regulating valve 412 can be further electrically connected with the controller, and the electric control operation of pressure regulation is realized.
The technical principle of the present invention is described above in connection with specific embodiments. The description is made for the purpose of illustrating the principles of the utility model and should not be construed in any way as limiting the scope of the utility model. Other embodiments of the utility model will occur to those skilled in the art without the exercise of inventive faculty based on the explanations herein, and such equivalent modifications or substitutions are intended to be included within the scope of the present invention as defined in the appended claims.

Claims (9)

1. The utility model provides a quantitative filling device which characterized in that: the liquid inlet device, the reversing valve, the liquid storage device, the liquid outlet device and the quantitative adjusting device are sequentially erected on an installation surface of the base;
two ends of the liquid storage device are transversely erected on the mounting surface of the base through a first partition plate and a second partition plate, the liquid storage device is used for storing liquid, one end of the liquid storage device penetrates through the first partition plate and is provided with a liquid communication port, and the liquid communication port is provided with the reversing valve;
an inlet channel of the reversing valve is communicated with an output port of the liquid inlet device, a first outlet channel of the reversing valve is communicated with the liquid communication port, and a second outlet channel of the reversing valve is communicated with a liquid inlet of the liquid outlet device;
the liquid outlet device is erected on any side of the liquid storage device and is used for filling liquid into a specified container;
the other end of the liquid storage device is provided with the quantitative adjusting device, the quantitative adjusting device is installed on the installation surface of the base through a third partition frame, and the quantitative adjusting device is used for adjusting the liquid storage capacity in the liquid storage device and quantitatively outputting liquid in the liquid storage device.
2. A dosing device according to claim 1, characterised in that: the controller is respectively electrically connected with the reversing valve and the liquid outlet device and is used for controlling the on-off of a passage of the reversing valve and controlling the on-off of a liquid outlet of the liquid outlet device.
3. A dosing device according to claim 1, characterised in that: the liquid storage device comprises a horizontal liquid storage tank and a movable plate, a plurality of mounting through holes are formed in the second partition plate, the movable plate is vertically and transversely movably mounted in the horizontal liquid storage tank, the movable plate divides an inner cavity of the horizontal liquid storage tank into a sealed liquid storage area and a power connection area, the sealed liquid storage area is arranged close to the reversing valve, and the power connection area is arranged close to the quantitative adjusting device;
the quantitative adjusting device comprises a quantitative adjusting component, a driving cylinder body, a piston, a plurality of connecting rods and a connecting rod mounting part, the driving cylinder body is arranged between the two horizontal liquid storage tanks, the piston is arranged in the driving cylinder body in a sealing and sliding mode, and the driving cylinder body is used for driving the piston to reciprocate in the driving cylinder body; one end of each of the connecting rods is mounted on the connecting rod mounting part, one end of each of a part of the connecting rods penetrates through the mounting through hole to enter the power connection area and is connected to the plate surface of the movable plate, one end of each of the other part of the connecting rods penetrates through the mounting through hole to enter the driving cylinder body and is connected to the plate surface of the piston, and the driving cylinder body is used for driving the connecting rod mounting part to move transversely through the piston and the connecting rod of the piston, so that the movable plate is pushed to move transversely in the horizontal liquid storage tank through the connecting rod of the movable plate; the quantitative adjusting component is used for adjusting and fixing the distance of the transverse movement of the connecting rod mounting part.
4. A dosing device according to claim 3, characterised in that: the quantitative adjusting component comprises an adjusting knob, an adjusting screw rod, a guide rod and a quantitative block, the guide rod is fixedly arranged on the second clapboard and the third clapboard, the adjusting screw rod is arranged between the second clapboard and the third clapboard in a self-rotating way, the guide rod and the adjusting screw rod are mutually parallel and are erected on the mounting surface of the base, the quantitative block and the connecting rod installation part are arranged by penetrating through the adjusting screw rod and the guide rod, the connecting rod installation part is arranged between the quantitative block and the third clapboard, and the autorotation of the adjusting screw rod is used for driving the quantitative block to move transversely along the guide rod, the transverse moving distance of the connecting rod mounting part is the transverse distance between the third clapboard and the quantitative block, the adjusting knob is installed on the third partition plate and is in transmission connection with the adjusting screw rod.
5. The quantitative filling device according to claim 4, wherein the quantitative adjusting assembly further comprises a graduated rod, and the outer wall of the graduated rod is provided with graduation lines.
6. A dosing device according to claim 1, wherein the inlet means is of a Y-shaped configuration, and a sealing ring is provided at the junction of the inlet passage, the first outlet passage and the second outlet passage.
7. A dosing device according to claim 1, characterised in that the tapping device comprises a filling tube and a filling head, the head end of the filling tube communicating with the first outlet channel, the end of the filling tube being provided with the filling head, the filling head being provided with a filling valve, the filling head being provided with a vertically downwardly extending filling nozzle, the inner diameter of the filling nozzle decreasing downwards.
8. The quantitative filling device according to claim 1, further comprising a height adjusting device, wherein the height adjusting device comprises an adjusting column, a connecting rod, a first fixing seat and a second fixing seat, the adjusting column is vertically installed on the installation surface of the base, the adjusting column is provided with the first fixing seat capable of moving up and down along the adjusting column, the second fixing seat is detachably connected to the first fixing seat through the connecting rod, the horizontal distance between the second fixing seat and the first fixing seat is adjusted through rotation of the connecting rod, and the liquid outlet device is detachably and fixedly installed on the second fixing seat.
9. The quantitative filling device according to claim 3, wherein a pressure sensor and a pressure regulator are arranged in the horizontal liquid storage tank, the pressure sensor is connected with a pressure gauge, and the pressure regulator is electrically connected with a pressure regulating valve.
CN202122232136.3U 2021-09-15 2021-09-15 Quantitative filling device Active CN215886331U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122232136.3U CN215886331U (en) 2021-09-15 2021-09-15 Quantitative filling device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122232136.3U CN215886331U (en) 2021-09-15 2021-09-15 Quantitative filling device

Publications (1)

Publication Number Publication Date
CN215886331U true CN215886331U (en) 2022-02-22

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202122232136.3U Active CN215886331U (en) 2021-09-15 2021-09-15 Quantitative filling device

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Country Link
CN (1) CN215886331U (en)

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