Liquid production line

CN223316395UActive Publication Date: 2025-09-09QINHUANGDAO RIO TINTO TECH CO LTD
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Patent Information

Application Number
CN202422619036.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-29
Publication Date
2025-09-09
Estimated Expiration
2034-10-29

AI Technical Summary

Technical Problem

Traditional liquid production lines take up a lot of space, have high production costs and low production capacity, and are difficult to move and optimize.

Method used

It adopts a chassis design, combines the reactor, filler, capping machine, liquid storage tank and conveyor belt, is equipped with moving components and adjustment structure, and realizes flexible movement and fixation of the production line by switching between moving wheels and supporting feet.

Benefits of technology

It reduces floor space, lowers production costs, improves production line productivity and practicality, and supports flexible equipment layout and installation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of liquid production lines, in particular to a liquid production line. The problems that in the prior art, a liquid production line is large in occupied space, high in manufacturing cost and low in productivity are solved, and the practicability of equipment is improved. The device structurally comprises a bottom frame, a reaction kettle is fixed to one side of the bottom frame, a filling machine and a cap screwing machine are fixed to the other side of the bottom frame, a conveying belt is arranged between the filling machine and the cap screwing machine, a first liquid storage tank and a second liquid storage tank are connected between the reaction kettle and the filling machine, and a plurality of supporting legs are arranged at the bottom of the bottom frame. A first moving assembly and a second moving assembly are further arranged at the bottom of the underframe. According to the embodiment, the reaction kettle, the filling machine, the cap screwing machine, the first liquid storage tank, the second liquid storage tank and the conveying belt are integrated on the bottom frame, the problems that in the prior art, a liquid production line is large in occupied space, high in manufacturing cost and low in productivity are solved, and the bottom frame is convenient to move, install and fix through the first adjusting structure and the second adjusting structure; and the practicability is high.
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Description

Technical Field

[0001] The utility model relates to the technical field of liquid production lines, and specifically to a liquid production line. Background Art

[0002] A liquid production line is a combination of equipment and processes used to manufacture and package liquid products. It typically involves multiple steps, from raw material feeding, mixing, reaction, filtration, storage, to filling and packaging. Liquid production lines are widely used in industries such as food, beverages, cosmetics, pharmaceuticals, and chemicals.

[0003] Traditional liquid production lines have the following disadvantages: 1. They occupy a large space, and due to the centralized arrangement of tanks, the factory foundation needs to have a high bearing capacity. Even for small-scale production lines, the floor space occupied is difficult to further compress. Moreover, once the production line design is determined, the construction involves the coordination of civil engineering, structure and machinery, and after completion, it is basically impossible to move, resulting in limited overall optimization space; 2. It is necessary to arrange a steel structure platform and factory infrastructure, and the quality requirements for each construction content are relatively strict, which is relatively unfriendly for manufacturers with relatively small output; 3. In order to save investment, it is necessary to lay out multiple reactors and liquid storage tanks while laying out dense pipelines, valve bodies and switching feedback. As a result, the existence of liquid production line integrated vehicles makes each reaction stage relatively independent, affecting production capacity. Utility Model Content

[0004] The utility model provides a liquid production line, which solves the problems of large space occupation, high production cost and low production capacity of liquid production lines in the prior art, and improves the practicability of the equipment.

[0005] The technical solution of the utility model is as follows:

[0006] A liquid production line, comprising a base frame,

[0007] A reactor is fixed on one side of the base frame, a filling machine and a capping machine are fixed on the other side of the base frame, a conveyor belt is provided between the filling machine and the capping machine, a first liquid storage tank and a second liquid storage tank are connected between the reactor and the filling machine, a plurality of supporting feet are provided at the bottom of the base frame, a first moving assembly and a second moving assembly are also provided at the bottom of the base frame, a first adjusting structure for allowing the first moving assembly to contact the ground instead of the supporting feet or the supporting feet to contact the ground instead of the first moving assembly is provided between the first moving assembly and the base frame, a second adjusting structure for allowing the second moving assembly to contact the ground instead of the supporting feet or the supporting feet to contact the ground instead of the second moving assembly is provided between the second moving assembly and the base frame.

[0008] Furthermore, the first moving assembly includes a first moving wheel and a second moving wheel, the first adjusting structure includes a first sliding member, a first sliding rail, a second sliding rail and a third sliding rail are fixed to the bottom of the base frame, the first sliding member is slidingly connected to the first sliding rail, the second sliding member is slidingly connected in the second sliding rail, the third sliding member is slidingly connected in the third sliding rail, the second sliding member and the first sliding member are rotatably connected by a first connecting rod, and the third sliding member and the first sliding member are rotatably connected by a second connecting rod.

[0009] Furthermore, a telescopic member is provided at the bottom of the base frame, a fixed end of the telescopic member is fixedly connected to the base frame, and a telescopic end of the telescopic member is fixedly connected to the first sliding member.

[0010] Furthermore, the sliding direction of the second sliding member is parallel to the sliding direction of the third sliding member, the sliding direction of the first sliding member is perpendicular to the sliding direction of the second sliding member and the sliding direction of the third sliding member, and the first moving component and the second moving component have the same structure.

[0011] Furthermore, a plurality of support rods are fixed to the bottom of the chassis, and each of the support legs corresponds to each of the support rods one by one. The support legs are slidably connected to the support rods, and the support legs are umbrella-shaped structures.

[0012] Furthermore, a first limiting bolt and a second limiting bolt are respectively provided on both sides of the supporting foot, and the first limiting bolt and the second limiting bolt are both threadedly connected to the supporting rod.

[0013] Furthermore, a material placing plate is fixed on the base frame, a ladder is fixed between the material placing plate and the base frame, a guardrail is fixed on the periphery of the material placing plate, and a material transport gap is provided on the guardrail.

[0014] The working principle and beneficial effects of the utility model are as follows:

[0015] The working process of this embodiment is as follows: when the transport production line needs to be moved, the telescopic member is extended, and the second sliding member and the third sliding member are driven to move by the first sliding member, so that the first moving wheel and the second moving wheel move down and replace the supporting feet to abut against the ground. At this time, the transport production line can be moved by moving the chassis; when the production line moves to a suitable position, the telescopic rod is retracted, and the first sliding member drives the second sliding member and the third sliding member to move, so that the first moving wheel and the second moving wheel move up, and the supporting feet replace the first moving wheel and the second moving wheel to abut against the ground, and the production line cannot move.

[0016] In this embodiment, a reactor, a filling machine, a capping machine, a first liquid storage tank, a second liquid storage tank, and a conveyor belt are mounted on a base frame. A plurality of support legs, a first movable assembly, and a second movable assembly are disposed at the bottom of the base frame. The support legs, the first movable assembly, and the second movable assembly are controlled to contact the ground via first and second adjustment structures. This embodiment integrates the reactor, the filling machine, the capping machine, the first liquid storage tank, the second liquid storage tank, and the conveyor belt on the base frame, thereby resolving the issues of large space requirements, high production costs, and low production capacity associated with prior art liquid production lines. Furthermore, the first and second adjustment structures facilitate movement and installation of the base frame, resulting in a highly practical system. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] The present invention will be further described in detail below with reference to the accompanying drawings and specific implementation methods.

[0018] Figure 1 The overall structure of this embodiment is shown in FIG. Figure 1 ;

[0019] Figure 2 The overall structure of this embodiment is shown in FIG. Figure 2 ;

[0020] Figure 3 Schematic diagram of the structure of the bottom of the chassis in this embodiment;

[0021] Figure 4 Schematic diagram of the structure of the first adjustment structure in this embodiment;

[0022] Figure 5 Schematic diagram of the connection structure of the support legs in this embodiment.

[0023] In the picture:

[0024] 1. Base frame; 11. Material loading plate; 111. Guardrail; 112. Material transport gap; 113. Ladder; 12. First sliding rail; 121. First sliding member; 122. First connecting rod; 123. Second connecting rod; 13. Second sliding rail; 131. Second sliding member; 14. Third sliding rail; 141. Third sliding member; 2. Reactor; 31. First liquid storage tank; 32. Second liquid storage tank; 4. Filling machine; 5. Capping machine; 6. Conveyor belt; 7. Support foot; 71. Support rod; 72. First limit bolt; 73. Second limit bolt; 81. First moving wheel; 82. Second moving wheel; 9. Telescopic member. DETAILED DESCRIPTION

[0025] The following will be combined with the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0026] like Figures 1 to 5 As shown, this embodiment proposes a liquid production line, the structure of which includes a base frame 1. The reactor 2 in this embodiment is fixedly mounted on one side of the base frame 1 and is used to perform chemical reactions, physical mixing, or heat treatment on raw materials. A filling machine 4 and a capping machine 5 are fixed to the other side of the base frame 1. The filling machine 4 is used to accurately introduce liquid into the container. The capping machine 5 is used to tighten the bottle cap to prevent liquid leakage. A conveyor belt 6 is arranged between the filling machine 4 and the capping machine 5 to reduce manual handling and achieve automated production. A first liquid storage tank 31 and a second liquid storage tank 32 are connected and arranged between the reactor 2 and the filling machine 4. A plurality of support legs 7 are arranged at the bottom of the base frame 1, and a first movable assembly and a second movable assembly are arranged at the bottom of the base frame 1. A first adjustment structure is arranged between the first movable assembly and the base frame 1, and is used to make the first movable assembly contact the ground instead of the support legs 7, or the support legs 7 make contact with the ground instead of the first movable assembly. A second adjustment structure is arranged between the second movable assembly and the base frame 1, and is used to make the second movable assembly contact the ground instead of the support legs 7, or the support legs 7 make contact with the ground instead of the second movable assembly. The use of two liquid storage tanks in this embodiment has the following advantages: 1. The two liquid storage tanks can be used alternately. While one tank is filling or conveying, the other tank can be maintained or cleaned, which can ensure the continuous operation of the production line and avoid downtime; 2. Different liquids may need to be stored in different storage tanks. One tank is used to store raw materials and the other is used to store intermediate products or finished products, thereby reducing the risk of cross contamination.

[0027] In this embodiment, the first moving assembly includes a first moving wheel 81 and a second moving wheel 82, a first adjustment structure includes a first sliding member 121, a first sliding rail 12, a second sliding rail 13, and a third sliding rail 14 fixedly arranged at the bottom of the base frame 1, the first sliding member 121 is slidingly connected to the first sliding rail 12, the second sliding member 131 is slidingly arranged in the second sliding rail 13, and the third sliding member 141 is slidingly arranged in the third sliding rail 14. The first connecting rod 122 is rotatably arranged between the second sliding member 131 and the first sliding member 121, and the second connecting rod 123 is rotatably arranged between the third sliding member 141 and the first sliding member 121. This design makes it possible to simultaneously control the downward or upward movement of the first moving wheel 81 and the second moving wheel 82 by controlling the movement of the first sliding member 121, thereby achieving the switching between the transportable state and the fixed installation state of the base frame 1. In this embodiment, the provision of the first sliding rail 12, the second sliding rail 13, and the third sliding rail 14 ensures that the first sliding member 121, the second sliding member 131, and the third sliding member 141 will not slide or deviate during sliding, making the movement more stable and reliable. The first moving wheel 81 and the second moving wheel 82 used in this embodiment are preferably universal wheels, which can ensure that the base frame 1 can move in any direction.

[0028] In this embodiment, the bottom of the chassis 1 is further provided with a telescopic member 9, the fixed end of the telescopic member 9 being fixedly connected to the chassis 1, and the telescopic end of the telescopic member 9 being fixedly connected to the first sliding member 121. The telescopic member 9 in this embodiment is preferably a hydraulic cylinder or a pneumatic cylinder. Both hydraulic cylinders and pneumatic cylinders are conventional and will not be described in detail in this embodiment.

[0029] In this embodiment, the sliding direction of the second sliding member 131 is parallel to the sliding direction of the third sliding member 141, and the sliding direction of the first sliding member 121 is perpendicular to both the sliding directions of the second sliding member 131 and the sliding direction of the third sliding member 141. The first and second moving assemblies have the same structure. Because the first and second moving wheels 81 and 82 have a relatively short travel distance relative to the ground, this design ensures that the first moving wheel 81 can quickly contact or move away from the ground, enabling rapid switching between the mobile and fixed installation states of the chassis 1.

[0030] In this embodiment, a plurality of support rods 71 ​​are fixedly mounted on the bottom of the chassis 1. Each support foot 7 corresponds to a support rod 71, and the support foot 7 is slidably connected to the support rod 71. The support foot 7 has an umbrella-shaped structure. The umbrella-shaped support foot 7 not only reduces the cost of manufacturing the support foot 7, but also provides space for the first limiting bolt 71 to be installed, so that the first limiting bolt 71 does not contact the ground.

[0031] In this embodiment, first and second limiting bolts 71, 72 are disposed on either side of the support leg 7. Both first and second limiting bolts 72, 73 are threadedly connected to the support rod 71. In this embodiment, the first limiting bolts 72 are used to prevent the first or second moving wheels 81, 82 from separating from the support rod 71. The second limiting bolts 73 are used to adjust the levelness of the chassis 1 when the support leg 7, instead of the first or second moving wheels 81, 82, is in contact with the ground.

[0032] In this embodiment, the material loading plate 11 is fixed to the base frame 1 to facilitate the introduction of raw materials from the upper side of the reactor 2. A ladder 113 is fixed between the material loading plate 11 and the base frame 1 to facilitate operator access to the material loading plate 11. A guardrail 111 is fixed to the periphery of the material loading plate 11 to prevent operators from falling from the material loading plate 11 during operation. A material transport notch 112 is provided on the guardrail 111 to facilitate the transportation of raw materials.

[0033] The working process of this embodiment is as follows: when it is necessary to move the transport production line, the telescopic member 9 is extended, and the second sliding member 131 and the third sliding member 141 are driven to move by the first sliding member 121, so that the first moving wheel 81 and the second moving wheel 82 move down and replace the support foot 7 to abut against the ground. At this time, the transport production line can be moved by moving the chassis 1; when the production line moves to a suitable position, the telescopic rod is retracted, and the first sliding member 121 drives the second sliding member 131 and the third sliding member 141 to move, so that the first moving wheel 81 and the second moving wheel 82 move up, and the support foot 7 replaces the first moving wheel 81 and the second moving wheel 82 to abut against the ground, and the production line cannot be moved.

[0034] The above are only preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.

Claims

1. A liquid production line, comprising a chassis (1), characterized in that: A reactor (2) is fixed on one side of the base frame (1), a filling machine (4) and a capping machine (5) are fixed on the other side of the base frame (1), a conveyor belt (6) is provided between the filling machine (4) and the capping machine (5), a first liquid storage tank (31) and a second liquid storage tank (32) are connected between the reactor (2) and the filling machine (4), a plurality of supporting legs (7) are provided at the bottom of the base frame (1), a first moving assembly and a second moving assembly are also provided at the bottom of the base frame (1), a first adjusting structure for enabling the first moving assembly to contact the ground instead of the supporting legs (7) or the supporting legs (7) to contact the ground instead of the first moving assembly is provided between the first moving assembly and the base frame (1), and a second adjusting structure for enabling the second moving assembly to contact the ground instead of the supporting legs (7) or the supporting legs (7) to contact the ground instead of the second moving assembly is provided between the second moving assembly and the base frame (1).

2. A liquid production line according to claim 1, characterized in that: The first moving assembly includes a first moving wheel (81) and a second moving wheel (82), the first adjusting structure includes a first sliding member (121), a first sliding rail (12), a second sliding rail (13) and a third sliding rail (14) are fixed to the bottom of the base frame (1), the first sliding member (121) is slidingly connected to the first sliding rail (12), the second sliding rail (13) is slidingly connected to the inside of the second sliding rail (13), the third sliding rail (141) is slidingly connected to the inside of the third sliding rail (14), a first connecting rod (122) is rotatably connected between the second sliding member (131) and the first sliding member (121), and a second connecting rod (123) is rotatably connected between the third sliding member (141) and the first sliding member (121).

3. A liquid production line according to claim 2, characterized in that: A telescopic member (9) is also provided at the bottom of the base frame (1), the fixed end of the telescopic member (9) is fixedly connected to the base frame (1), and the telescopic end of the telescopic member (9) is fixedly connected to the first sliding member (121).

4. A liquid production line according to claim 3, characterized in that: The sliding direction of the second sliding member (131) is parallel to the sliding direction of the third sliding member (141), the sliding direction of the first sliding member (121) is perpendicular to the sliding direction of the second sliding member (131) and the sliding direction of the third sliding member (141), and the first moving component and the second moving component have the same structure.

5. A liquid production line according to claim 1, characterized in that: A plurality of support rods (71) are fixed to the bottom of the base frame (1), each support foot (7) corresponds to each support rod (71) one by one, the support foot (7) is slidably connected to the support rod (71), and the support foot (7) is an umbrella-shaped structure.

6. A liquid production line according to claim 2, characterized in that: A first limiting bolt (72) and a second limiting bolt (73) are respectively provided on both sides of the support foot (7), and the first limiting bolt (72) and the second limiting bolt (73) are both threadedly connected to the support rod (71).

7. A liquid production line according to claim 1, characterized in that: A material placement plate (11) is also fixed on the base frame (1), a ladder (113) is also fixed between the material placement plate (11) and the base frame (1), a guardrail (111) is also fixed on the outer periphery of the material placement plate (11), and a material transport notch (112) is provided on the guardrail (111).