A mechanism for cleaning the remaining wine in the wine delivery pipeline

By designing the wine-conveying pipeline cleaning mechanism and using the combined structure of the set and slider, the quality reduction and inaccurate measurement problems caused by alcohol volatility are solved, and efficient collection and accurate measurement of wine are achieved.

CN116552908BActive Publication Date: 2025-07-29JIANGXI JINJIANG WINE IND
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Patent Information

Application Number
CN202310399036.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-04-14
Publication Date
2025-07-29
Estimated Expiration
2043-04-14

AI Technical Summary

Technical Problem

During the collection process of the wine-feeding pipeline, alcohol evaporation leads to a decrease in quality, which cannot achieve accurate measurement and cause waste.

Method used

A wine-free cleaning mechanism for the wine-feeding pipeline is designed. Through a combined structure of the set and slider, the wine is collected into the packaging bottle using vibration and gravity to avoid alcohol evaporation and achieve accurate measurement.

Benefits of technology

Effectively prevent alcohol from evaporating, ensure that the quality of the wine does not decrease, achieve accurate measurement during the filling process, and reduce waste.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention provides a mechanism for cleaning the remaining wine in a wine delivery pipeline, which includes a filling table. One end of the filling table is equipped with a delivery pipe, and the end of the delivery pipe away from the filling table is installed with a storage table. A contraction assembly for collection is installed at the bottom of the storage table. The contraction assembly includes a pipe head, a connecting pipe, a first sleeve block, a first sliding block, a second sleeve block, a second sliding block, a third sleeve block, a third sliding block, a fourth sleeve block, and a fourth sliding block. The gaps formed between the first sleeve block, the first sliding block, the second sleeve block, the second sliding block, the third sleeve block, the third sliding block, the fourth sleeve block, and the fourth sliding block are all filled by the limiting blocks on the inner wall of the pipe head, thereby preventing the wine from flowing to the outside through the gaps during the filling process and causing waste.
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Description

Technical Field

[0001] The present invention relates to the technical field of wine transportation pipelines, and particularly to a mechanism for cleaning the remaining wine in a wine transportation pipeline. Background Art

[0002] During the production of various wines such as beer, white wine, and red wine, they need to be filled into bottles. After the wine filling is completed, the wine transportation pipeline needs to be cleaned. The treatment of the wine transportation pipeline mainly involves collecting the remaining wine in the pipeline, so as to achieve accurate measurement and avoid waste, which provides a technical inspiration for the wine transportation pipeline.

[0003] The following problems have been found in the research on wine transportation pipelines:

[0004] When the wine transportation pipeline processes the remaining wine inside the pipeline, it is collected by blowing air with a blower. Under the action of the wind, the volatilization speed of alcohol accelerates and the alcohol content decreases. Since various wines such as beer, white wine, and red wine all contain alcohol, during the process of collecting the remaining wine inside the wine transportation pipeline by blowing air with a blower, the original quality cannot be protected, resulting in the wine with reduced quality entering the packaging bottle, thus failing to achieve the purpose of accurate measurement and causing waste at the same time.

[0005] The present invention can mainly solve the problem that the original quality cannot be protected during the collection process of the remaining wine inside the wine transportation pipeline, resulting in the inability to achieve accurate measurement and causing waste at the same time. Summary of the Invention

[0006] To solve the above technical problems, the present invention provides a mechanism for cleaning the remaining wine in a wine transportation pipeline to solve the problems described in the above background art.

[0007] The purpose and effect of a mechanism for cleaning the remaining wine in a wine transportation pipeline of the present invention are achieved by the following specific technical means: A mechanism for cleaning the remaining wine in a wine transportation pipeline includes a filling table. One end of the filling table is installed with a conveying pipe, and the other end of the conveying pipe away from the filling table is installed with a storage table. A contraction component for collection is installed at the bottom of the storage table. The contraction component includes a pipe head, a connecting pipe, a first sleeve block, a first slider, a second sleeve block, a second slider, a third sleeve block, a third slider, a fourth sleeve block, and a fourth slider. The connecting pipe is arranged inside the pipe head. The first sleeve block is installed at the bottom of the connecting pipe. A first slider is arranged on one side of the first sleeve block. The second sleeve block is installed at the bottom of the first sleeve block. A second slider is arranged on one side of the second sleeve block. The third sleeve block is installed at the bottom of the second sleeve block. A third slider is arranged on one side of the third sleeve block. The fourth sleeve block is installed at the bottom of the third sleeve block. A fourth slider is arranged on one side of the fourth sleeve block.

[0008] Furthermore, a moving component for driving is installed on the outer side of the pipe head, and four groups of limiting blocks are installed on the inner wall of the pipe head. Each group of limiting blocks has six blocks and is arranged in an equidistant and circumferential manner. The sizes of the four groups of limiting blocks gradually decrease upward.

[0009] Furthermore, the fourth sleeve block is arc-shaped, hollow inside, and there are six of them centered on the pipe head. A fourth slider is arranged between every two fourth sleeve blocks, and the size of the fourth slider is matched with the inner hollow size of the fourth sleeve block. When the six fourth sleeve blocks contract, they form a circular ring, and the top of the circular ring is concave.

[0010] Furthermore, the third sleeve block has the same shape as the fourth sleeve block, and the size of the third sleeve block is larger than that of the fourth sleeve block. When the six third sleeve blocks contract, they form a circular ring, the top of the circular ring is concave, and the bottom is inversely concave. The depth of the concave opening is the same as the height of the concave opening at the top of the circular ring formed by the six fourth sleeve blocks.

[0011] Furthermore, the second sleeve block has the same shape as the third sleeve block, and the second sleeve block is larger than the third sleeve block by the same size as the third sleeve block is larger than the fourth sleeve block. When the six second sleeve blocks contract, they form a circular ring, the top of the circular ring is concave, and the bottom is inversely concave. The depth of the concave opening is the same as the height of the concave opening at the top of the circular ring formed by the six third sleeve blocks.

[0012] Furthermore, the first sleeve block has the same shape as the second sleeve block, and the first sleeve block is larger than the second sleeve block by the same size as the second sleeve block is larger than the third sleeve block. When the six first sleeve blocks contract, they form a circular ring, and the bottom of the circular ring is inversely concave. The depth of the concave opening is the same as the height of the concave opening at the top of the circular ring formed by the six second sleeve blocks.

[0013] Furthermore, the gaps formed between the fourth slider, the third slider, the second slider, and the first slider are respectively matched with the limiting blocks on the inner wall of the pipe head.

[0014] Furthermore, the moving component includes a turntable, a collar, a connecting block, a fixed block, a pushing block, and a driving gear. A driving gear is installed on the back of the turntable. A connecting block is arranged on the outer side of the driving gear. A collar is arranged on the outer side of the connecting block. A pushing block is arranged on the inner side of the collar. A fixed block is installed on the inner side of the connecting block.

[0015] Furthermore, the collar is embedded in the inner wall of the pipe head. Six through holes are opened on the side of the collar adjacent to the pipe head. The six through holes are all provided with pushing blocks. The end of the pushing block away from the collar is connected to the outer side of the third sleeve block, and the top of the collar is open.

[0016] Further, a rack groove matching with the driving gear is formed on one side of the connecting block adjacent to the pushing block. The rack groove inside the connecting block is vertically meshed with the driving gear. Six fixing blocks are arranged on one side of the rack groove, and the fixing blocks are triangularly arranged.

[0017] Beneficial effects:

[0018] 1. The gaps formed between the first sleeve block, the first slider, the second sleeve block, the second slider, the third sleeve block, the third slider, the fourth sleeve block and the fourth slider are all filled by the limiting blocks on the inner wall of the pipe head, thereby preventing the wine from flowing to the outside through the gaps during the filling process and causing waste;

[0019] 2. Rotating the turntable one week drives the driving gear to rotate. While the driving gear rotates, it is vertically meshed with the rack groove inside the connecting block, so that the connecting block drives the fixing block to perform circular motion while following the rotation of the driving gear. The fixing blocks are triangularly arranged, and the inclined surface on one side of the fixing blocks pushes the pushing block to move towards the inner side of the pipe head, so that the pushing block pushes the third sleeve block away from the limiting block on the inner wall of the pipe head and moves inward to contract;

[0020] 3. During the inward movement of the third sleeve block, the second sleeve block and the fourth sleeve block are simultaneously driven to contract and move inward through the notches opened at the top and bottom. The second sleeve block drives the first sleeve block to contract and move inward through the notch opened at the top. Thus, the six first sleeve blocks, second sleeve blocks, third sleeve blocks and fourth sleeve blocks form a continuous spiral shape, with the diameter gradually decreasing from top to bottom. Moreover, the vibration generated during the movement of the six first sleeve blocks, second sleeve blocks, third sleeve blocks and fourth sleeve blocks will shake off the wine remaining on the inner wall of the pipeline, so that the wine flows into the packaging bottle under the action of gravity, thereby ensuring the accurate measurement during filling. Description of the drawings

[0021] Figure 1 is a schematic diagram of the overall structure of the present invention;

[0022] Figure 2 is a top view of the inside of the pipe head of the present invention;

[0023] Figure 3 is a schematic diagram of the structure after movement inside the pipe head of the present invention;

[0024] Figure 4 is a schematic diagram of the inner wall structure of the pipe head of the present invention;

[0025] Figure 5 is a schematic diagram of the initial state structure inside the pipe head of the present invention;

[0026] Figure 6 is a top view of the third sleeve block of the present invention;

[0027] Figure 7 is a bottom view of the third sleeve block of the present invention;

[0028] Figure 8 This is a schematic structural diagram of the mobile component of the present invention;

[0029] Figure 9 For the present invention Figure 8 The enlarged structural diagram at position A in it.

[0030] Figures 1-9 In it, the corresponding relationship between the part names and the drawing numbers is as follows:

[0031] 1. Filling table; 101. Delivery pipe; 102. Storage table; 2. Pipe head; 201. Connecting pipe; 202. First sleeve block; 203. First slider; 204. Second sleeve block; 205. Second slider; 206. Third sleeve block; 207. Third slider; 208. Fourth sleeve block; 209. Fourth slider; 3. Turntable; 301. Collar; 302. Connecting block; 303. Fixed block; 304. Pushing block; 305. Driving gear. Embodiment

[0032] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without making creative efforts belong to the scope of protection of the present invention.

[0033] As shown in the attached Figure 1 To the attached Figure 9 shown: Embodiment

[0034] This embodiment provides a mechanism for cleaning the remaining wine in the wine delivery pipeline, including a filling table 1. One end of the filling table 1 is installed with a delivery pipe 101. The end of the delivery pipe 101 away from the filling table 1 is installed with a storage table 102. The bottom of the storage table 102 is installed with a contraction component for collection. The contraction component includes a pipe head 2, a connecting pipe 201, a first sleeve block 202, a first slider 203, a second sleeve block 204, a second slider 205, a third sleeve block 206, a third slider 207, a fourth sleeve block 208 and a fourth slider 209;

[0035] Inside the pipe head 2, there is a connecting pipe 201 installed. At the bottom of the connecting pipe 201, a first sleeve block 202 is installed. On one side of the first sleeve block 202, a first sliding block 203 is provided. At the bottom of the first sleeve block 202, a second sleeve block 204 is installed. On one side of the second sleeve block 204, a second sliding block 205 is provided. At the bottom of the second sleeve block 204, a third sleeve block 206 is installed. On one side of the third sleeve block 206, a third sliding block 207 is provided. At the bottom of the third sleeve block 206, a fourth sleeve block 208 is installed. On one side of the fourth sleeve block 208, a fourth sliding block 209 is provided;

[0036] Among them, on the outer side of the pipe head 2, a moving component for driving is installed. On the inner wall of the pipe head 2, four groups of limiting blocks are installed. Each group of limiting blocks has six, and they are arranged in an equidistant circular pattern. The sizes of the four groups of limiting blocks gradually decrease upward;

[0037] The fourth sleeve block 208 is arc-shaped, its interior is hollow, and there are six of them centered on the pipe head 2. Between every two fourth sleeve blocks 208, there is a fourth sliding block 209, and the size of the fourth sliding block 209 matches the hollow size inside the fourth sleeve block 208. When the six fourth sleeve blocks 208 contract, they form a circular ring, and the top of the ring is concave;

[0038] The third sleeve block 206 has the same shape as the fourth sleeve block 208, and the size of the third sleeve block 206 is larger than that of the fourth sleeve block 208. When the six third sleeve blocks 206 contract, they form a circular ring, the top of the ring is concave, and the bottom is inversely concave. The depth of the concave opening is the same as the height of the concave opening at the top of the circular ring formed by the six fourth sleeve blocks 208;

[0039] The second sleeve block 204 has the same shape as the third sleeve block 206, and the size of the second sleeve block 204 is larger than that of the third sleeve block 206. This size is the same as the size by which the third sleeve block 206 is larger than the fourth sleeve block 208. When the six second sleeve blocks 204 contract, they form a circular ring, the top of the ring is concave, and the bottom is inversely concave. The depth of the concave opening is the same as the height of the concave opening at the top of the circular ring formed by the six third sleeve blocks 206;

[0040] The first sleeve block 202 has the same shape as the second sleeve block 204, and the size of the first sleeve block 202 is larger than that of the second sleeve block 204. This size is the same as the size by which the second sleeve block 204 is larger than the third sleeve block 206. When the six first sleeve blocks 202 contract, they form a circular ring, and the bottom of the ring is inversely concave. The depth of the concave opening is the same as the height of the concave opening at the top of the circular ring formed by the six second sleeve blocks 204;

[0041] The fourth slider 209, and the gaps formed between the fourth slider 209, the third slider 207, the second slider 205, and the first slider 203 are respectively configured to match the limiting blocks on the inner wall of the pipe head 2;

[0042] The wine enters the connecting pipe 201 through the conveying pipe 101, and then passes through the first sleeve block 202, the second sleeve block 204, the third sleeve block 206, and the fourth sleeve block 208 in sequence through the connecting pipe 201. The gap formed between the first slider 203 provided on one side of the first sleeve block 202 and the connecting pipe 201 is filled by the limiting block on the inner wall of the pipe head 2. A gap is formed between the first slider 203 provided on one side of the first sleeve block 202 and the second sleeve block 204 and the second slider 205, and this gap is filled by the limiting block on the inner wall of the pipe head 2. A gap is formed between the second slider 205 provided on one side of the second sleeve block 204 and the third sleeve block 206 and the third slider 207, and this gap is filled by the limiting block on the inner wall of the pipe head 2. A gap is formed between the third slider 207 provided on one side of the third sleeve block 206 and the fourth sleeve block 208 and the fourth slider 209, and this gap is filled by the limiting block on the inner wall of the pipe head 2. Thus, it prevents the wine from flowing to the outside through the gap and causing waste. After the filling is completed, by pushing the six third sleeve blocks 206 to move inward and contract, the six third slider 207 move inward into them. While the six third sleeve blocks 206 move inward, they drive the six second sleeve blocks 204 and the six fourth sleeve blocks 208 to move through the notches opened at the top and bottom. The six second sleeve blocks 204 move inward through the bottom notches. After the six second sleeve blocks 204 move inward, they contract the six second sliders 205 into them. While the six second sleeve blocks 204 move inward, they drive the six first sleeve blocks 202 to move inward through the top notches. The six first sleeve blocks 202 move inward and contract the six first sliders 203 into them. During this process, the six third sleeve blocks 206 drive the six fourth sleeve blocks 208 to move inward through the bottom notches. The six fourth sleeve blocks 208 move inward and contract the six fourth sliders 209 into them. At this time, the six first sleeve blocks 202, second sleeve blocks 204, third sleeve blocks 206, and fourth sleeve blocks 208 form a continuous spiral shape, with the diameter gradually decreasing from top to bottom. And the vibration generated during the movement of the six first sleeve blocks 202, second sleeve blocks 204, third sleeve blocks 206, and fourth sleeve blocks 208 will shake off the wine remaining on the inner wall of the pipeline, so that the wine flows into the packaging bottle under the action of gravity; Embodiment

[0043] The difference between this embodiment and Embodiment 1 is that the moving component includes a turntable 3, a collar 301, a connecting block 302, a fixing block 303, a pushing block 304, and a driving gear 305. A driving gear 305 is installed on the back surface of the turntable 3. A connecting block 302 is arranged on the outer side surface of the driving gear 305. A collar 301 is arranged on the outer side surface of the connecting block 302. A pushing block 304 is arranged on the inner side of the collar 301. A fixing block 303 is installed on the inner side of the connecting block 302.

[0044] Among them, for the collar 301, the collar 301 is embedded in the inner wall of the pipe head 2. Six through holes are opened on one side of the collar 301 adjacent to the pipe head 2. The six through holes are all provided with pushing blocks 304. One end of the pushing block 304 away from the collar 301 is connected to the outer side surface of the third sleeve block 206, and the top of the collar 301 is open.

[0045] For the connecting block 302, a rack groove matching the driving gear 305 is opened on one side of the connecting block 302 adjacent to the pushing block 304. The rack groove on the inner side of the connecting block 302 is vertically engaged with the driving gear 305. Six fixing blocks 303 are arranged on one side of the rack groove. The fixing blocks 303 are triangular.

[0046] Rotate the turntable 3 clockwise for one week to make the driving gear 305 rotate. While the driving gear 305 rotates, through the vertical engagement with the rack groove on the inner side of the connecting block 302, the connecting block 302 drives the fixing block 303 to perform a circular motion while following the rotation of the driving gear 305. The fixing block 303 is triangular and pushes the pushing block 304 to move towards the inner side of the pipe head 2 through the inclined surface on one side, so that the pushing block 304 pushes the third sleeve block 206 to break away from the limiting block on the inner wall of the pipe head 2 and move inward for contraction.

[0047] The embodiments of the present invention are given for purposes of illustration and description, and are not exhaustive or limit the present invention to the disclosed form. Many modifications and variations are obvious to those of ordinary skill in the art. The embodiments are chosen and described in order to better illustrate the principles of the present invention and its practical application, and to enable those of ordinary skill in the art to understand the present invention and thus design various embodiments with various modifications suitable for specific purposes.

Claims

1. A mechanism for cleaning the remaining wine in a wine delivery pipeline, including a filling table, characterized in that, One end of the filling table is equipped with a delivery pipe. The end of the delivery pipe away from the filling table is equipped with a storage table. At the bottom of the storage table, there is a contraction component for collection. The contraction component includes a pipe head, a connecting pipe, a first sleeve block, a first slider, a second sleeve block, a second slider, a third sleeve block, a third slider, a fourth sleeve block, and a fourth slider; Inside the pipe head, there is a connecting pipe. At the bottom of the connecting pipe, there is a first sleeve block. On one side of the first sleeve block, there is a first slider. At the bottom of the first sleeve block, there is a second sleeve block. On one side of the second sleeve block, there is a second slider. At the bottom of the second sleeve block, there is a third sleeve block. On one side of the third sleeve block, there is a third slider. At the bottom of the third sleeve block, there is a fourth sleeve block. On one side of the fourth sleeve block, there is a fourth slider; The fourth sleeve block is arc-shaped, hollow inside, and there are six of them centered on the pipe head. Between every two fourth sleeve blocks, there is a fourth slider, and the size of the fourth slider matches the hollow size inside the fourth sleeve block. When the six fourth sleeve blocks contract, they form a circular ring, and the top of the circular ring is concave; The shape of the third sleeve block is the same as that of the fourth sleeve block, and the size of the third sleeve block is larger than that of the fourth sleeve block. When the six third sleeve blocks contract, they form a circular ring, the top of the circular ring is concave, and the bottom is inversely concave. The depth of the bottom concave opening formed by the six third sleeve blocks is the same as the height of the top concave opening formed by the six fourth sleeve blocks; The shape of the second sleeve block is the same as that of the third sleeve block, and the second sleeve block is larger than the third sleeve block by the same size as the third sleeve block is larger than the fourth sleeve block. When the six second sleeve blocks contract, they form a circular ring, the top of the circular ring is concave, and the bottom is inversely concave. The depth of the bottom concave opening formed by the six second sleeve blocks is the same as the height of the top concave opening formed by the six third sleeve blocks; The shape of the first sleeve block is the same as that of the second sleeve block, and the first sleeve block is larger than the second sleeve block by the same size as the second sleeve block is larger than the third sleeve block. When the six first sleeve blocks contract, they form a circular ring, and the bottom of the circular ring is inversely concave. The depth of the bottom concave opening formed by the six first sleeve blocks is the same as the height of the top concave opening formed by the six second sleeve blocks; The gaps formed between the fourth slider, the third slider, the second slider, and the first slider respectively match the limiting blocks on the inner wall of the pipe head.

2. The wine delivery pipeline residual wine cleaning mechanism according to claim 1, characterized in that, On the outer side of the pipe head, there is a moving component for driving. On the inner wall of the pipe head, there are four groups of limiting blocks. Each group has six limiting blocks, which are arranged equidistantly in a circular manner, and the sizes of the four groups of limiting blocks gradually decrease upward in sequence.

3. A residual wine cleaning mechanism for a wine delivery pipeline according to claim 2, characterized in that, The moving component includes a turntable, a collar, a connecting block, a fixed block, a push block, and a driving gear. On the back of the turntable, there is a driving gear. On the outer side of the driving gear, there is a connecting block. On the outer side of the connecting block, there is a collar. On the inner side of the collar, there is a push block. On the inner side of the connecting block, there is a fixed block.

4. A residual wine cleaning mechanism for a wine delivery pipeline according to claim 3, characterized in that, The collar is embedded in the inner wall of the pipe head. Six through holes are opened on the side of the collar adjacent to the pipe head. In each of the six through holes, there is a push block. The end of the push block away from the collar is connected to the outer side of the third sleeve block, and the top of the collar is open.

5. A residual wine cleaning mechanism for a wine delivery pipeline according to claim 4, characterized in that, One side of the connecting block adjacent to the pushing block is provided with a rack groove matching the driving gear. The rack groove inside the connecting block is vertically meshed with the driving gear. Six fixing blocks are arranged on one side of the rack groove, and the fixing blocks are triangularly arranged.

Citation Information

Patent Citations

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