CN220032278U - Quantitative pouring device of soup base filling machine - Google Patents

Quantitative pouring device of soup base filling machine Download PDF

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Publication number
CN220032278U
CN220032278U CN202223071853.3U CN202223071853U CN220032278U CN 220032278 U CN220032278 U CN 220032278U CN 202223071853 U CN202223071853 U CN 202223071853U CN 220032278 U CN220032278 U CN 220032278U
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China
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port
soup
piston type
pouring
type conveying
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CN202223071853.3U
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Chinese (zh)
Inventor
邓立青
林勇
林春强
林春宝
黄楠
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Fujian Kunxing Green Food Co ltd
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Fujian Kunxing Green Food Co ltd
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Abstract

The utility model relates to food processing equipment, and provides a quantitative pouring device of a soup base filling machine, which comprises the following components: a discharge port is formed at the bottom end of the soup stock storage tank; the three-way valve is provided with a first port, a second port and a third port; the first port is connected with the discharge port through a first conduit, and the second port is exposed to air; the piston type conveying pump is characterized in that a piston rod of the piston type conveying pump is fixedly connected with the lifting plate, and a feeding port of the piston type conveying pump is connected with the third port through a second conduit; the pouring nozzle is connected with a discharge port of the piston type conveying pump through a third conduit; the three-way valve, the piston type delivery pump and the filling nozzle are all provided with a plurality of valves. The utility model has the advantages that: the lifting plate enables the plurality of piston type conveying pumps to work simultaneously, so that a plurality of pouring nozzles can flow out soup simultaneously, and soup pouring efficiency is improved; the three-way valve controls whether the soup flows to the piston type conveying pump at the corresponding position, so that the quantity of the soup flowing out of the pouring nozzle is regulated, and the requirement of on-site soup pouring is better met.

Description

Quantitative pouring device of soup base filling machine
Technical Field
The utility model relates to food processing equipment, in particular to a quantitative pouring device of a soup base filling machine.
Background
The soup is prepared by adding adjuvants such as meat, bone, vegetables, and medicinal materials into a pot, adding water, heating, and filtering. According to different tastes, seasonings including salt, monosodium glutamate, sugar, soy sauce, oil consumption, vinegar, tomato sauce, chilli sauce and the like are added into the soup. According to different proportions of the added seasoning and the soup, soup bases with different tastes are obtained.
Compared with manually pouring soup materials into the material box, the pouring nozzle of the filling machine is more efficient in filling the soup materials into the material box, and the material box is sold to the market after being packaged. For a cartridge having a plurality of channels, there is typically a pour spout for each channel, each pour spout flowing soup into the cartridge. However, the requirements of on-site production can change, and each trough of some material boxes is filled with soup; the seasoning bags are filled in one trough, the seasoning bags are filled in other troughs, the user buying the packaging box adds the seasoning to the soup according to own taste, and only one pouring nozzle is needed to flow out of the soup in the pouring process, so that each pouring nozzle is not needed to flow out of the soup.
Therefore, how to adjust the quantity of soup flowing out of the pouring nozzle is a technical problem to be solved in the field.
Disclosure of Invention
The utility model aims to solve the technical problem of providing a quantitative pouring device of a soup base filling machine, which can adjust the quantity of soup bases flowing out of a pouring nozzle.
The utility model is realized in the following way: a quantitative filling device of a soup base filling machine, comprising:
the support frame is fixedly provided with a first telescopic control assembly;
the lifting plate is connected with the support frame in a vertical sliding manner and is fixedly connected with the telescopic end of the first telescopic control assembly;
the soup stock storage tank is fixedly connected with the supporting frame, and a discharge opening is formed in the bottom end of the soup stock storage tank;
the three-way valve is provided with a first port, a second port and a third port, when the first port is communicated with the third port, the second port is disconnected with the first port and the third port, and when the second port is communicated with the third port, the first port is disconnected with the second port and the third port; the first port is connected with the discharge port through a first conduit, and the second port is exposed to air;
the piston type conveying pump is fixedly arranged on the supporting frame, a piston rod of the piston type conveying pump is fixedly connected with the lifting plate, and a feeding port of the piston type conveying pump is connected with the third port through a second guide pipe;
the horizontal plate is fixedly connected with the support frame;
the pouring nozzle is fixedly connected with the horizontal plate and is also connected with a discharge port of the piston type conveying pump through a third conduit;
the three-way valve, the piston type delivery pump and the filling nozzle are all multiple.
Further, the method further comprises the following steps:
the second telescopic control assembly is fixedly arranged on the horizontal plate, and a telescopic rod of the second telescopic control assembly is fixedly connected with the pouring nozzle;
the number of the second telescopic control assemblies is consistent with the number of the pouring nozzles.
Further, the first telescopic control assembly is a first telescopic cylinder, the second telescopic control assembly is a second telescopic cylinder, and the three-way valve is of a pneumatic three-way valve type.
Further, the three-way valve, the piston type delivery pump and the filling nozzles are six, the six three-way valve and the piston type delivery pump are arranged at intervals along the length direction of the lifting plate, and the six filling nozzles are distributed on the horizontal plate in a two-row three-row shape.
Further, the soup stock storage tank is provided with a liquid level meter.
Further, the method further comprises the following steps:
the guide rod is fixedly connected with the support frame;
the lifting plate is provided with a sliding hole, and the guide rod penetrates through the sliding hole.
The utility model has the advantages that: the lifting plate enables the plurality of piston type conveying pumps to work simultaneously, so that a plurality of pouring nozzles can flow out soup simultaneously, and soup pouring efficiency is improved; the three-way valve controls whether the soup flows to the piston type conveying pump at the corresponding position, so that the quantity of the soup flowing out of the pouring nozzle is regulated, and the requirement of on-site soup pouring is better met.
Drawings
The utility model will be further described with reference to examples of embodiments with reference to the accompanying drawings.
Fig. 1 is a schematic plan view of a quantitative pouring device of a soup base filling machine of the present utility model.
Fig. 2 is a schematic view of a plurality of piston type transfer pumps of the present utility model spaced along a lifter plate.
Fig. 3 is a schematic view of the material tank of the material box in the shape of two rows and three columns.
Reference numerals: a support frame 1; a guide rod 11; a first telescopic control assembly 2; a lifting plate 3; a soup stock storage tank 4; a liquid level gauge 41; a cover plate 42; a three-way valve 5; a first through port 51; a second port 52; a third port 53; a piston type transfer pump 6; a piston rod 61; a feed port 62; a discharge port 63; a horizontal plate 7; a pouring nozzle 8; a second telescopic control assembly 9; a cartridge 10; a trough 101.
Detailed Description
The quantitative pouring device of the soup base filling machine provided by the embodiment of the utility model aims to adjust the quantity of the soup bases flowing out of the pouring nozzles, and according to the requirements of on-site production, the specified quantity of the pouring nozzles are selected to flow out of the soup bases simultaneously on the premise of not increasing or decreasing the installation quantity of the pouring nozzles, and the soup bases are filled in the specified quantity of the material tanks, so that the technical effects of flexible soup base pouring and various material tank filling are realized.
The general idea of the technical scheme in the embodiment of the utility model is as follows:
compared with the prior art that every pouring nozzle all flows out the stock and gets into the magazine, this reality has the novel three-way valve that sets up, three-way valve and piston delivery pump one-to-one, whether the stock in the control stock holding vessel flows to piston delivery pump, lifting motion of lifter plate makes a plurality of piston delivery pumps work simultaneously, piston delivery pump carries the stock to the pouring nozzle, pouring nozzle and piston delivery pump one-to-one, if the stock has to flow to piston delivery pump, the pouring nozzle just can have the stock to flow out, if the stock does not flow to piston delivery pump, the pouring nozzle only can spout the air, according to the quantity of the required filling stock of the groove material of magazine, can adjust the quantity of pouring nozzle outflow stock.
In order to better understand the above technical solutions, the following detailed description will refer to the accompanying drawings and specific embodiments.
Referring to fig. 1 to 3, a preferred embodiment of the present utility model.
A quantitative filling device of a soup base filling machine, comprising:
the support frame 1 is fixedly provided with a first telescopic control assembly 2;
the lifting plate 3 is connected with the support frame 1 in a vertical sliding manner and is fixedly connected with the telescopic end of the first telescopic control assembly 2; the first telescopic control assembly 2 is used for driving the lifting plate 3, the lifting plate 3 carries piston rods 61 of a plurality of piston type conveying pumps 6 to simultaneously lift and move, and the plurality of piston type conveying pumps 6 simultaneously work.
The soup stock storage tank 4 is fixedly connected with the support frame 1, and a discharge port is formed in the bottom end of the soup stock storage tank 4; the soup material adding port is formed at the top end of the soup material storage tank 4, and the soup material adding port is covered by the cover plate 42.
A three-way valve 5 having a first port 51, a second port 52 and a third port 53, wherein when the first port 51 is communicated with the third port 53, the second port 52 is disconnected from the first port 51 and the third port 53, and when the second port 52 is communicated with the third port 53, the first port 51 is disconnected from the second port 52 and the third port 53; the first port 51 is connected with the discharge port through a first conduit, and the second port 52 is exposed to air;
the piston type conveying pump 6 is fixedly arranged on the supporting frame 1, a piston rod 61 of the piston type conveying pump 6 is fixedly connected with the lifting plate 3, and a feed port 62 of the piston type conveying pump 6 is connected with the third port 53 through a second conduit; by operating the three-way valve 5, the feed opening 62 of the piston pump 6 can be connected to the discharge opening of the soup stock storage 4, or the feed opening 62 of the piston pump 6 can be connected to the air.
The horizontal plate 7 is fixedly connected with the support frame 1; the horizontal plate 7 extends to the side of the support frame 1.
The pouring nozzle 8 is fixedly connected with the horizontal plate 7 and is also connected with a discharge port 63 of the piston type conveying pump 6 through a third conduit; the piston type delivery pump 6 can deliver soup bases to the pouring nozzle 8, and the pouring nozzle 8 flows out the soup bases; or the piston transfer pump 6 can transfer air to the pouring nozzle 8, at which time the pouring nozzle 8 ejects air without outflow of soup. The cartridge 10 is located below the pouring spout 8. The first conduit, the second conduit and the third conduit are all flexible rubber tubes.
The three-way valve 5, the piston type delivery pump 6 and the filling nozzle 8 are all multiple. In this embodiment, the three-way valve 5, the piston type delivery pump 6 and the filling nozzle 8 are six. The number of the material grooves 101 of the material box 10 is six, and the positions of the material grooves 101 are in one-to-one correspondence with the positions of the pouring nozzles 8.
The three-way valves 5 are in one-to-one correspondence with the piston type delivery pumps, so as to control whether the soup in the soup storage tank 4 flows to the piston type delivery pumps, for example, two of the three-way valves 5 can be selectively operated to enable the feed inlets 62 of the two corresponding piston type delivery pumps 6 to be communicated with the discharge outlet of the soup storage tank 4, and the other four three-way valves 5 enable the feed inlets 62 of the four corresponding piston type delivery pumps 6 to be communicated with air, so that the quantity of soup discharged by the pouring nozzles 8 is two, and the quantity of soup which is not discharged by the pouring nozzles 8 is four. Two corresponding material boxes 10 are provided with soup bases, the other four material boxes 101 are not provided with soup bases, after the following working procedure, workers place seasoning bags in the four empty material boxes 101, and finally the material boxes 10 are packaged by plastic. According to practical requirements, the six material tanks 101 of the material box 10 are all filled with soup, at this time, the feed inlets 62 of the six piston type conveying pumps 6 are all communicated with the discharge ports of the soup storage tank 4, and the six pouring nozzles 8 are all used for pouring out soup. The piston type conveying pump 6 works simultaneously, so that soup pouring efficiency is improved.
Further comprises: the second telescopic control assembly 9 is fixedly arranged on the horizontal plate 7, and a telescopic rod of the second telescopic control assembly 9 is fixedly connected with the pouring nozzle 8; the second telescopic control assembly 9 changes the height position of the pouring nozzle 8.
The number of the second telescopic control assemblies 9 is consistent with the number of the pouring nozzles 8. For example, when only two pouring nozzles 8 are flowing out of the soup, the two pouring nozzles 8 are moved to the low position, and the remaining four pouring nozzles 8 are kept in the high position. The staff is facilitated to confirm the position and number of pouring spouts 8 that are currently able to pour soup.
The first telescopic control assembly 2 is a first telescopic cylinder, the second telescopic control assembly 9 is a second telescopic cylinder, and the three-way valve 5 is of a pneumatic three-way valve type.
The three-way valves 5, the piston type delivery pumps 6 and the filling nozzles 8 are six, the six three-way valves 5 and the piston type delivery pumps 6 are arranged at intervals along the length direction of the lifting plate 3, and the six filling nozzles 8 are distributed on the horizontal plate 7 in a two-row three-column shape. The channels 101 of the respective cartridges 10 are also distributed in a two-row three-column configuration.
The soup stock storage 4 is fitted with a level gauge 41. The soup stock storage tank has the beneficial effects that a worker can conveniently confirm the remaining amount of the soup stock in the soup stock storage tank 4.
Further comprises: the guide rod 11 is fixedly connected with the support frame 1; the lifting plate 3 is provided with a sliding hole, and the guide rod 11 passes through the sliding hole. The lifting stability of the lifting plate 3 is improved.
The working mode of the quantitative pouring device of the soup base filling machine is as follows:
according to the on-site soup base pouring requirement, the quantity of the soup base flowing out of the pouring nozzle 8 is regulated, the three-way valve 5 at the corresponding position is operated, and when the feed inlet 62 of the piston type conveying pump 6 is communicated with the discharge outlet of the soup base storage tank 4 through the three-way valve 5, the soup base enters the piston type conveying pump 6 and is conveyed to the pouring nozzle 8; when the inlet 62 of the piston pump 6 communicates with air via the three-way valve 5, air enters the piston pump 6 and is delivered to the filling nozzle 8. When the lifting plate 3 drives all the piston type conveying pumps 6 to work, all the pouring nozzles 8 flow out soup materials, and all the pouring nozzles 8 only spray air; the three-way valves 5 at different positions are regulated, the existing pouring nozzles 8 flow out soup materials, the existing pouring nozzles 8 do not flow out soup materials, the soup materials are poured flexibly, and the material box 10 is filled in various ways, so that the requirements of on-site soup material pouring are met better.
While specific embodiments of the utility model have been described above, it will be appreciated by those skilled in the art that the specific embodiments described are illustrative only and not intended to limit the scope of the utility model, and that equivalent modifications and variations of the utility model in light of the spirit of the utility model will be covered by the claims of the present utility model.

Claims (6)

1. A quantitative filling device of a soup base filling machine, comprising:
the support frame is fixedly provided with a first telescopic control assembly;
the lifting plate is connected with the support frame in a vertical sliding manner and is fixedly connected with the telescopic end of the first telescopic control assembly;
the soup stock storage tank is fixedly connected with the supporting frame, and a discharge opening is formed in the bottom end of the soup stock storage tank;
the three-way valve is provided with a first port, a second port and a third port, when the first port is communicated with the third port, the second port is disconnected with the first port and the third port, and when the second port is communicated with the third port, the first port is disconnected with the second port and the third port; the first port is connected with the discharge port through a first conduit, and the second port is exposed to air;
the piston type conveying pump is fixedly arranged on the supporting frame, a piston rod of the piston type conveying pump is fixedly connected with the lifting plate, and a feeding port of the piston type conveying pump is connected with the third port through a second guide pipe;
the horizontal plate is fixedly connected with the support frame;
the pouring nozzle is fixedly connected with the horizontal plate and is also connected with a discharge port of the piston type conveying pump through a third conduit;
the three-way valve, the piston type delivery pump and the filling nozzle are all multiple.
2. A dosing device for a soup filler as defined in claim 1, further comprising:
the second telescopic control assembly is fixedly arranged on the horizontal plate, and a telescopic rod of the second telescopic control assembly is fixedly connected with the pouring nozzle;
the number of the second telescopic control assemblies is consistent with the number of the pouring nozzles.
3. The quantitative filling device of a soup filling machine according to claim 2, wherein the first telescopic control assembly is a first telescopic cylinder, the second telescopic control assembly is a second telescopic cylinder, and the three-way valve is a pneumatic three-way valve.
4. The quantitative pouring device of a soup filling machine according to claim 2, wherein the three-way valve, the piston type conveying pump and the pouring nozzles are six, the six three-way valve and the piston type conveying pump are arranged at intervals along the length direction of the lifting plate, and the six pouring nozzles are distributed on the horizontal plate in a shape of two rows and three columns.
5. A dosing device for a soup base filling machine according to claim 1, characterized in that the soup base storage tank is fitted with a level gauge.
6. A dosing device for a soup filler as defined in claim 1, further comprising:
the guide rod is fixedly connected with the support frame;
the lifting plate is provided with a sliding hole, and the guide rod penetrates through the sliding hole.
CN202223071853.3U 2022-11-18 2022-11-18 Quantitative pouring device of soup base filling machine Active CN220032278U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202223071853.3U CN220032278U (en) 2022-11-18 2022-11-18 Quantitative pouring device of soup base filling machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202223071853.3U CN220032278U (en) 2022-11-18 2022-11-18 Quantitative pouring device of soup base filling machine

Publications (1)

Publication Number Publication Date
CN220032278U true CN220032278U (en) 2023-11-17

Family

ID=88720171

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202223071853.3U Active CN220032278U (en) 2022-11-18 2022-11-18 Quantitative pouring device of soup base filling machine

Country Status (1)

Country Link
CN (1) CN220032278U (en)

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