CN216235976U - Drinking water processing is with ration bottled equipment - Google Patents

Drinking water processing is with ration bottled equipment Download PDF

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Publication number
CN216235976U
CN216235976U CN202121982382.4U CN202121982382U CN216235976U CN 216235976 U CN216235976 U CN 216235976U CN 202121982382 U CN202121982382 U CN 202121982382U CN 216235976 U CN216235976 U CN 216235976U
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China
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support frame
rod
lower pressure
water
drinking water
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CN202121982382.4U
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沈鹏
胡剑群
童平
童军
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Jiangxi Liumolecular Health Drinking Water Co ltd
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Jiangxi Liumolecular Health Drinking Water Co ltd
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Abstract

The utility model relates to a bottling device, in particular to a quantitative bottling device for drinking water processing. The technical problem is as follows: the quantitative bottling equipment for drinking water processing is simple to operate, fast, efficient, time-saving and labor-saving. The technical implementation scheme of the utility model is as follows: a quantitative bottling device for drinking water processing comprises a first support frame, a cylinder, a wedge-shaped block, a second support frame, a guide rod, a spring, a first lower pressure rod, a third support frame, a second lower pressure rod and the like; the cylinder is installed to one side of first support frame, is connected with the wedge on the telescopic link of cylinder, and the second support frame is connected in one side of first support frame, and the guide arm is connected on the top of second support frame, and the second is push down the depression bar and is connected on the guide arm slidingtype. According to the utility model, the air cylinder, the wedge block, the sliding sleeve and the discharging plug are arranged, so that the water in the water bucket can be controlled to flow out through the movement of the wedge block.

Description

Drinking water processing is with ration bottled equipment
Technical Field
The utility model relates to a bottling device, in particular to a quantitative bottling device for drinking water processing.
Background
People need to take a large amount of water in daily life so as to keep the body functions in normal operation, and the health care tea also has the effects of promoting metabolism and preventing constipation. Various drinking water sold in stores is basically filled in water bottles with different packages, so that the drinking water is convenient to carry and transport. Currently, the current practice is. People generally utilize the funnel to feed the drinking water tank into the water bottle, but this kind of mode is not suitable for filling a large amount of water bottles, otherwise will consume a large amount of time and energy, and the filling inefficiency.
Therefore, there is a need to develop a quantitative bottling device for drinking water processing, which can fill a large amount of water bottles and is simple, fast, efficient, time-saving and labor-saving in operation.
SUMMERY OF THE UTILITY MODEL
In order to overcome the defects of time and labor waste and low efficiency of the prior filling mode of using a water bottle, the technical problem is as follows: the quantitative bottling equipment for drinking water processing is simple to operate, fast, efficient, time-saving and labor-saving.
The technical implementation scheme of the utility model is as follows: a quantitative bottling device for drinking water processing, which comprises a first support frame, a cylinder, a wedge-shaped block, a second support frame, a guide rod and a spring, first depression bar, the third support frame, the second depression bar, the cask, sliding sleeve and ejection of compact stopper, the cylinder is installed to one side of first support frame, be connected with the wedge on the telescopic link of cylinder, the one side at first support frame is connected to the second support frame, the top at the second support frame is connected to the guide arm, the second depression bar is connected on the guide arm slidingly, spring coupling is between second depression bar and guide arm down, the one end of second depression bar is connected to first depression bar, first depression bar and wedge sliding fit, the both sides at the second support frame are connected to the third support frame, the cask is connected between both sides third support frame, the sliding sleeve is connected in the cask bottom slidingly, the sliding sleeve is connected with second depression bar, ejection of compact stopper is connected in the sliding sleeve bottom.
As a further preferred scheme, still include first bracing piece, the apparatus further comprises a rotating shaft, the transfer gear, one-way gear, the second bracing piece, the rack, conveyer belt and fixed block, the both sides of first bracing piece all are connected with two first bracing pieces, the pivot rotary type is connected between the first bracing piece of homonymy, the transfer gear is connected in the pivot, the conveyer belt connects between the transfer gear of both sides around, the fixed block is connected on the conveyer belt evenly at the interval, one-way gear connects in the pivot of one side, one-way gear is located the front side of transfer gear, be connected with the second bracing piece on the telescopic link of cylinder, the tail end at the second bracing piece is connected to the rack, rack and one-way gear intermeshing.
As a further preferred scheme, the right side of the fixing block is provided with an arc-shaped through hole, so that the water bottle can be clamped conveniently.
As a further preferred scheme, the bottom of the water bucket is connected with a connecting rod, the middle part of the discharging plug is provided with a circular through hole, and the connecting rod is matched with the circular through hole to control the water in the water bucket to leak downwards.
As a further preferable scheme, the bottom of the first support frame is provided with anti-skid grains, so that the friction force between the first support frame and the ground is increased, and the utility model can be firmer.
As a further preferred scheme, the top cover of the water bucket is hinged to the top of the water bucket, so that water can be conveniently injected into the water bucket.
The utility model has the following advantages: according to the utility model, the air cylinder, the wedge block, the sliding sleeve and the discharging plug are arranged, so that the water in the water bucket can be controlled to flow out through the movement of the wedge block; the water bottles can be regulated on the conveying belt and move along with the conveying belt by arranging the fixing blocks; through being equipped with rack, one-way gear, can realize the unidirectional movement of conveyer belt, and then carry out the filling to a plurality of water-jug, reached easy operation, swift high efficiency and labour saving and time saving's effect.
Drawings
Fig. 1 is a schematic perspective view of a first embodiment of the present invention.
Fig. 2 is a partial exploded view of the present invention.
Fig. 3 is a schematic perspective view of a second embodiment of the present invention.
In the reference symbols: 1-a first support frame, 2-an air cylinder, 3-a wedge block, 4-a second support frame, 5-a guide rod, 6-a spring, 7-a first lower pressure rod, 8-a third support frame, 9-a second lower pressure rod, 10-a water bucket, 101-a sliding sleeve, 11-a discharging plug, 12-a first support rod, 13-a rotating shaft, 14-a conveying wheel, 15-a one-way gear, 16-a second support rod, 17-a rack, 18-a conveying belt and 19-a fixed block.
Detailed Description
The utility model is further described with reference to the following figures and detailed description.
Example 1
A quantitative bottling device for drinking water processing is disclosed, as shown in figure 1-3, comprising a first support frame 1, a cylinder 2, a wedge 3, a second support frame 4, a guide rod 5, a spring 6, a first lower pressure rod 7, a third support frame 8, a second lower pressure rod 9, a water bucket 10, a sliding sleeve 101 and a discharge plug 11, wherein the bottom of the first support frame 1 is provided with anti-skid veins to increase the friction force between the first support frame 1 and the ground, so that the utility model is firmer, the cylinder 2 is arranged in the middle of the front side of the first support frame 1, the wedge 3 is connected with the right side of a telescopic rod of the cylinder 2, the second support frame 4 is connected with the right part of the front side of the first support frame 1, the guide rod 5 is connected with the middle of the top end of the second support frame 4, the second lower pressure rod 9 is slidably connected with the guide rod 5, the spring 6 is connected between the second lower pressure rod 9 and the guide rod 5, the front end of the second lower pressure rod 9 is connected with the first lower pressure rod 7, first depression bar 7 and 3 sliding fit of wedge, the left and right sides of the top rear side of second support frame 4 all is connected with third support frame 8, be connected with cask 10 between the rear side of both sides third support frame 8, the articulated connection of top cap at cask 10 is at cask 10 tops, be convenient for pour into water into in cask 10, cask 10 bottom is connected with sliding sleeve 101 slidingly, sliding sleeve 101 is connected with second depression bar 9, sliding sleeve 101 bottom is connected with ejection of compact stopper 11, cask 10 bottom is connected with the connecting rod, ejection of compact stopper 11 middle part is opened there is circular through-hole, the connecting rod mutually supports with circular through-hole, the lower hourglass of controllable cask 10 internal water.
When water needs to be quantitatively bottled, the top cover of the water bucket 10 is opened at first, a proper amount of water is injected into the water bucket 10, the discharging plug 11 and the connecting rod are mutually matched to enable water flow to enable the water flow not to flow out, and an empty water bottle is placed in the middle of the bottom of the water bucket 10. Firstly, the spring 6 is in an original state, then the cylinder 2 is started, the telescopic rod of the cylinder 2 extends rightwards to drive the wedge-shaped block 3 to move rightwards, when the wedge-shaped block 3 contacts the first lower pressure rod 7, the wedge-shaped block 3 continues moving rightwards to press the first lower pressure rod 7 downwards, the first lower pressure rod 7 drives the second lower pressure rod 9 to move downwards, the spring 6 is compressed, the second lower pressure rod 9 drives the sliding sleeve 101 to move downwards, the sliding sleeve 101 drives the discharge plug 11 to move downwards, so that the discharge plug 11 can not block the water bucket 10, water in the water bucket 10 can enter the sliding sleeve 101 and then flow out along the circular through hole in the middle of the discharge plug 11, so that the water can vertically fall into the water bottle, when the water bottle is about to be filled, the telescopic rod of the cylinder 2 shortens leftwards to drive the telescopic rod 3 to move leftwards to be separated from the first lower pressure rod 7, the first lower pressure rod 7 loses extrusion and moves upwards, spring 6 resets, and depression bar 9 upwards moves under the second, drives sliding sleeve 101 and ejection of compact stopper 11 rebound, so under connecting rod and ejection of compact stopper 11 mutually supporting in cask 10, ejection of compact stopper 11 will be plugged up once more, and the water in cask 10 can't be downflow, so can realize the quantitative bottling of water, and people need not carry out manual filling to the water-jug, can reduce the manpower effectively. And when the next water bottle needs to be filled, repeating the operation.
Example 2
On the basis of the embodiment 1, as shown in fig. 1 and fig. 2, the water bottle clamping device further comprises first support rods 12, rotating shafts 13, transmission wheels 14, one-way gears 15, second support rods 16, racks 17, transmission belts 18 and fixing blocks 19, wherein the rear parts of the left and right sides of the first support frame 1 are respectively connected with the two first support rods 12, the rotating shafts 13 are respectively and rotatably connected between the first support rods 12 on the left side and between the first support rods 12 on the right side, the transmission wheels 14 are connected to the rotating shafts 13, the transmission belts 18 are wound between the transmission wheels 14 on the two sides, the transmission belts 18 are uniformly and alternately connected with the fixing blocks 19, the right sides of the fixing blocks 19 are provided with arc-shaped through holes for clamping water bottles, the rotating shafts 13 on the left side are connected with the one-way gears 15, the one-way gears 15 are positioned on the front sides of the transmission wheels 14, the rear sides of the telescopic rods of the air cylinders 2 are connected with the second support rods 16, and the tail ends of the second support rods 16 are connected with the racks 17, the rack 17 is engaged with the one-way gear 15.
Firstly, the water bottle can be clamped in the arc-shaped through hole at the right side of the fixed block 19, when the telescopic rod of the air cylinder 2 moves rightwards, the second support rod 16 is driven to move rightwards, so that the rack 17 is driven to move rightwards, the one-way gear 15 starts to rotate anticlockwise under the mutual meshing action of the rack 17 and the one-way gear 15, the one-way gear 15 drives the transfer wheel at the left side to start to rotate, the conveying wheel 14 at the other side also starts to rotate under the action of the conveying belt 18, so that the fixed block 19 on the conveying belt 18 moves along with the conveying belt 18, so that the water bottle can move automatically, when the water bottle moves to be right below the water bucket 10, the wedge block 3 just presses the first lower pressing rod 7 downwards, so that the second lower pressing rod 9 drives the sliding sleeve 101 to move downwards, so that the water in the water bucket 10 drops into the water bottle along the circular through hole at the middle part of the discharging plug 11, when the water filling is finished, the telescopic link of cylinder 2 shortens left, and ejection of compact stopper 11 plugs up cask 10, and rack 17 removes left, because one-way gear 15 can only unidirectional rotation, the telescopic link of cylinder 2 is retracted the time conveyer belt 18 that stops left, so along with the extension repeatedly and the shortening of 2 telescopic links of cylinder, can be to the automatic filling that carries on of a plurality of water-jug, so the user need not manually change the water-jug, has reached laborsaving effect.
The embodiments of the present invention have been described in detail with reference to the drawings, but the present invention is not limited to the above embodiments, and various changes can be made within the knowledge of those skilled in the art without departing from the gist of the present invention.

Claims (6)

1. The utility model provides a drinking water processing is with quantitative bottled equipment, characterized by: comprises a first support frame (1), an air cylinder (2), a wedge block (3), a second support frame (4), a guide rod (5), a spring (6), a first lower pressure rod (7), a third support frame (8), a second lower pressure rod (9), a water bucket (10), a sliding sleeve (101) and a discharge plug (11), wherein the air cylinder (2) is installed at one side of the first support frame (1), the wedge block (3) is connected onto a telescopic rod of the air cylinder (2), the second support frame (4) is connected at one side of the first support frame (1), the guide rod (5) is connected at the top end of the second support frame (4), the second lower pressure rod (9) is connected onto the guide rod (5) in a sliding manner, the spring (6) is connected between the second lower pressure rod (9) and the guide rod (5), the first lower pressure rod (7) is connected at one end of the second lower pressure rod (9), the first lower pressure rod (7) is in sliding fit with the wedge block (3), the third support frames (8) are connected to two sides of the second support frame (4), the water bucket (10) is connected between the third support frames (8) on two sides, the sliding sleeve (101) is connected to the bottom of the water bucket (10) in a sliding mode, the sliding sleeve (101) is connected with the second lower pressing rod (9), and the discharging plug (11) is connected to the bottom of the sliding sleeve (101).
2. A bottled unit of constant volume for drinking water processing as claimed in claim 1, wherein: also comprises a first supporting rod (12), a rotating shaft (13), a transmission wheel (14), a one-way gear (15), a second supporting rod (16), a rack (17), a transmission belt (18) and a fixed block (19), the both sides of first support frame (1) all are connected with two first bracing piece (12), pivot (13) rotary type ground is connected between first bracing piece (12) of homonymy, transfer gear (14) are connected on pivot (13), conveyer belt (18) wraparound connects between both sides transfer gear (14), fixed block (19) are connected on conveyer belt (18) evenly at interval, one-way gear (15) are connected on pivot (13) of one side, one-way gear (15) are located the front side of transfer gear (14), be connected with second bracing piece (16) on the telescopic link of cylinder (2), the tail end at second bracing piece (16) is connected in rack (17), rack (17) and one-way gear (15) intermeshing.
3. A bottled unit of constant volume for drinking water processing as claimed in claim 2, wherein: the right side of the fixing block (19) is provided with an arc-shaped through hole which is convenient for clamping a water bottle.
4. A bottled unit of constant volume for drinking water processing as claimed in claim 3, wherein: the bottom of the water bucket (10) is connected with a connecting rod, the middle part of the discharging plug (11) is provided with a circular through hole, and the connecting rod is matched with the circular through hole to control the water in the water bucket (10) to leak downwards.
5. A quantitative bottling device for drinking water processing according to claim 4, characterized in that: the bottom of the first support frame (1) is provided with anti-skid grains, so that the friction force between the first support frame (1) and the ground is increased.
6. A quantitative bottling device for drinking water processing according to claim 5, characterized in that: the top cover of the bucket (10) is hinged to the top of the bucket (10) so as to be convenient for injecting water into the bucket (10).
CN202121982382.4U 2021-08-23 2021-08-23 Drinking water processing is with ration bottled equipment Active CN216235976U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202121982382.4U CN216235976U (en) 2021-08-23 2021-08-23 Drinking water processing is with ration bottled equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202121982382.4U CN216235976U (en) 2021-08-23 2021-08-23 Drinking water processing is with ration bottled equipment

Publications (1)

Publication Number Publication Date
CN216235976U true CN216235976U (en) 2022-04-08

Family

ID=80981584

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202121982382.4U Active CN216235976U (en) 2021-08-23 2021-08-23 Drinking water processing is with ration bottled equipment

Country Status (1)

Country Link
CN (1) CN216235976U (en)

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