Ice bottle conveying device and ice bottle production system

By designing an ice bottle conveying device that combines weighing, pushing, baffles, and feeding components, the problem of inaccurate manual inspection of ice bottle filling was solved, realizing an automated and efficient freezing process for ice bottle production.

CN223737678UActive Publication Date: 2025-12-30GUANGDONG SNOWLAND REFRIGERATION EQUIP CO LTD
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Patent Information

Application Number
CN202520404263.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-07
Publication Date
2025-12-30
Estimated Expiration
2035-03-07

AI Technical Summary

Technical Problem

In the current ice bottle production process, manually checking whether the ice bottle has been filled with enough water is time-consuming, labor-intensive, and unreliable, and cannot effectively control the accuracy of the check.

Method used

Design an ice bottle conveying device, comprising a first conveying device and a second conveying device. The first conveying device is equipped with a weighing component and a pushing component for weighing and pushing away unqualified ice bottles. The second conveying device is equipped with a baffle component and a feeding component for blocking and pushing ice bottles into the freezing zone.

Benefits of technology

It improves the efficiency and accuracy of ice bottle quality inspection, and realizes the automation of ice bottle production and efficient filling and freezing process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an ice bottle conveying device and an ice bottle production system, and relates to the technical field of ice bottle production, the ice bottle conveying device comprises a first conveying device and a second conveying device, a blocking plate of a baffle assembly is moved to the second conveying device, and the blocking plate is moved to the second conveying device. The feeding assembly is used for pushing the ice bottles blocked by the baffle assembly away from the second conveying device. According to the ice bottle conveying device, the first conveying device is used for being connected with the buffer area, and the first conveying device weighs the ice bottles in the process of conveying the ice bottles; when the quality of the ice bottles does not meet the requirement, the pushing assembly pushes the ice bottles which do not meet the quality away from the first conveying device, and it is ensured that the ice bottles meeting the requirement are moved to the second conveying device; after the baffle assembly of the second conveying device blocks the ice bottles, the fixed number of ice bottles stay on the feeding assembly, and the feeding assembly is used for pushing the fixed number of ice bottles away from the second conveying device, so that the ice products enter the freezing area.
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Description

TECHNICAL FIELD

[0001] The utility model relates to ice bottle production's technical field especially, and ice bottle conveying device and ice bottle production system are provided. BACKGROUND

[0002] Now ice bottle production process, ice bottle needs to fill in water, and then carries out freezing in the freezing area, and this realizes the production of ice bottle, and in the production process, the situation that cannot fill in the ice bottle with enough water appears, and the artificial observation is needed, and it is time -consuming and labor -intensive, and the accuracy of the detection cannot be controlled. UTILITY MODEL CONTENTS

[0003] The utility model discloses ice bottle conveying device and ice bottle production system to solve the technical problem that artificial detection ice bottle whether fills in enough water, time -consuming and labor -intensive, and detection is unreliable.

[0004] The utility model provides a kind of ice bottle conveying device, including first conveying device and second conveying device, one end of the first conveying device is connected with one end of the second conveying device;

[0005] The first conveying device is provided with weighing assembly, and pusher assembly is provided on the side of the first conveying device, and the weighing assembly is used to weigh the mass of ice bottle on the first conveying device;

[0006] The pusher assembly is used to push off ice bottle from first conveying device with unqualified requirement;

[0007] The second conveying device is used to transport ice bottle upwards, at least one baffle assembly and at least one feeding assembly are provided on the side of the second conveying device, and the baffle assembly and the feeding assembly are one-to-one correspondence arrangement;

[0008] The blocking plate of the baffle assembly moves to the second conveying device, and the feeding assembly is used to push off ice bottle blocked by baffle assembly from the second conveying device.

[0009] In optional implementation, the feeding assembly includes pneumatic push rod and feeding plate, and the feeding plate is provided with one or more pneumatic push rods;The pneumatic push rod makes feeding plate push off ice bottle on the second conveying device.

[0010] In optional implementation, at least one in-place detection sensor is further included, and each baffle assembly cooperates with one in-place detection sensor.

[0011] The first conveying device of the ice bottle conveying device is used for being connected with the buffer area, and the weight of the ice bottle is weighed in the process of conveying the ice bottle; when the quality of the ice bottle does not meet the requirement, the pushing assembly pushes the ice bottle not meeting the quality away from the first conveying device, so that the ice bottle meeting the requirement is moved to the second conveying device; the baffle assembly of the second conveying device blocks the back of the ice bottle and stops the fixed number of ice bottles on the feeding assembly, and the feeding assembly is used for pushing the fixed number of ice bottles away from the second conveying device, so that the ice product enters the freezing area.

[0012] Compared with manually detecting the quality of the ice bottle, the efficiency and accuracy of detection are improved.

[0013] The utility model provides a kind of ice bottle production system, including bottle blowing machine, first conveyor belt, jar bottle machine, second conveyor belt, buffer area, freezing area, automatic packing machine and the ice bottle conveying device of any one of preceding embodiment;

[0014] The first conveyor belt is used to connect the bottle blowing machine and the jar bottle machine, and the second conveyor belt is used to connect the jar bottle machine and the buffer area;One end of the first conveying device is connected with the buffer area;The freezing area is arranged on one side of the second conveying device, and the second conveying device is used to convey the ice bottle to the freezing area;

[0015] The automatic packing machine is used to pack the ice bottle frozen in the freezing area.

[0016] In optional embodiment, the freezing area includes a plurality of ice bottle machines, and the plurality of ice bottle machines are sequentially arranged.

[0017] Each ice bottle machine is correspondingly arranged with one feeding assembly, and the feeding assembly is used to push the ice bottle on the second conveying device into the ice bottle machine.

[0018] In optional embodiment, a counting assembly is further included, and the counting assembly is used to record the number of times of stretching and retracting of the feeding assembly.

[0019] In optional embodiment, a quantity detection sensor is arranged on the feeding plate of the feeding assembly, and the quantity detection sensor is used to detect the ice bottle moving on the second conveying device.

[0020] In optional embodiment, the freezing area includes two ice bottle machines, and each ice bottle machine corresponds to one feeding assembly.

[0021] The bottle blowing machine of the ice bottle production system can produce empty ice bottles, the empty ice bottles enter the filling machine, water is filled into the ice bottles, the ice bottles filled with water enter the buffer area;After detection, the ice bottles enter the freezing area for freezing, and the frozen ice bottles enter the automatic packing machine for packaging, so that the automatic production of the ice bottles is completed. Attached Figure Description

[0022] To more clearly illustrate the specific embodiments of this utility model or the technical solutions in the prior art, the drawings used in the description of the specific embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of this utility model. For those skilled in the art, other drawings can be obtained from these drawings without creative effort.

[0023] Figure 1 A schematic diagram showing the positional relationship between the ice bottle conveying device and the freezing zone provided in this embodiment of the utility model;

[0024] Figure 2 A schematic diagram of the ice bottle production system provided in this embodiment of the utility model;

[0025] Figure 3 for Figure 2 The diagram shows the structure of the freezer in the freezing area of ​​the ice bottle production system.

[0026] Icons: 100-Bottle blowing machine; 200-First conveyor belt; 300-Bottle filling machine; 400-Second conveyor belt; 500-Buffer zone; 600-First conveyor device; 700-Second conveyor device; 800-Freezing zone; 900-Automatic packaging machine; 110-Pneumatic push rod; 120-Feeding plate; 130-Baffle assembly; 140-Push assembly. Detailed Implementation

[0027] The terms “first,” “second,” “third,” etc., are used only for distinguishing descriptions and do not indicate a sequence number, nor should they be interpreted as indicating or implying relative importance.

[0028] Furthermore, terms such as "horizontal," "vertical," and "sag" do not imply that components must be absolutely horizontal or suspended, but rather that they can be slightly tilted. For example, "horizontal" simply means that its direction is more horizontal relative to "vertical," and does not mean that the structure must be completely horizontal, but can be slightly tilted.

[0029] In the description of this application, it should be noted that the terms "inner", "outer", "left", "right", "upper", "lower", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, or the orientation or positional relationship commonly used when the product of this application is in use. They are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this application.

[0030] In the description of the present application, unless explicitly defined and limited, the terms "set", "install", "connect", "connect" should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or integrally connected; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium, or it can be connected inside two elements.

[0031] The technical solutions of the present application will be described clearly and completely in the following with reference to the drawings.

[0032] Embodiments

[0033] Referring to Figure 1 and Figure 2 The utility model provides a kind of ice bottle conveying device, including first conveying device 600 and second conveying device 700, one end of the first conveying device 600 is connected with one end of the second conveying device 700;

[0034] The first conveying device 600 is provided with weighing assembly, and pusher assembly 140 is arranged on one side of the first conveying device 600, and the weighing assembly is used to weigh the mass of ice bottle on the first conveying device 600;

[0035] The pusher assembly 140 is used to push the ice bottle that does not meet the requirement from the first conveying device 600;

[0036] The second conveying device 700 is used to transport ice bottle upward, at least one baffle assembly 130 and at least one feeding assembly are arranged on one side of the second conveying device 700, and the baffle assembly 130 and the feeding assembly are arranged one by one;

[0037] The blocking plate of the baffle assembly 130 moves to the second conveying device 700, and the feeding assembly is used to push the ice bottle blocked by the baffle assembly 130 away from the second conveying device 700.

[0038] In some embodiments, the first conveying device 600 is provided with weighing assembly, and the length of the first conveying device 600 is shorter, which can weigh the ice bottle. The ice bottle in buffer zone 500 enters the first conveying device 600, and the first conveying device 600 weighs the ice bottle, when the weight of the ice bottle meets the requirement, the first conveying device 600 moves the ice bottle to the second conveying device 700;When the weight of the ice bottle does not meet the requirement, the pusher pushes the ice bottle away from the first conveying device 600.

[0039] In an optional embodiment, the feeding assembly comprises pneumatic push rods 110 and a feeding plate 120, and the feeding plate 120 is provided with one or more pneumatic push rods 110; the pneumatic push rods 110 make the feeding plate 120 push the ice bottles on the second conveying device 700 away.

[0040] In some embodiments, the feeding plate 120 of the feeding assembly is provided with one or more pneumatic push rods 110; the number of the pneumatic push rods 110 is determined according to the length of the feeding plate 120; the pneumatic push rods 110 make the feeding plate 120 move at the upper end of the second conveying device 700, push the ice bottles on the second conveying device 700 away from the second conveying device 700, i.e. move the ice bottles on the second conveying device 700 into the freezing area 800.

[0041] In an optional embodiment, at least one in-place detection sensor is further included, and each baffle assembly 130 is matched with one in-place detection sensor.

[0042] The baffle assembly 130 comprises a moving baffle and a moving push rod connected with the moving baffle, and the moving push rod makes the moving baffle move onto or out of the second conveying device 700; when the in-place detection sensor detects the ice bottles, the in-place detection sensor transmits a signal to a control device, the control device makes the moving baffle move onto the second conveying device 700, and the moving baffle makes the ice bottles unable to continue moving along the second conveying device 700; when the ice bottles blocked by the moving baffle accumulate to a certain amount, the feeding assembly pushes the ice bottles away from the second conveying device 700.

[0043] The first conveying device 600 of the ice bottle conveying device is used to be connected with the buffer area 500, and the first conveying device 600 weighs the ice bottles in the process of conveying the ice bottles; when the quality of the ice bottles does not meet the requirements, the pushing assembly 140 pushes the ice bottles not meeting the quality away from the first conveying device 600, so as to ensure that the ice bottles meeting the requirements are moved onto the second conveying device 700; the baffle assembly 130 of the second conveying device 700 blocks the ice bottles and keeps a fixed number of ice bottles on the feeding assembly, and the feeding assembly is used to push the fixed number of ice bottles away from the second conveying device 700, so that the ice products enter the freezing area 800.

[0044] Compared with manually detecting the quality of the ice bottles, the efficiency and accuracy of detection are improved.

[0045] Referring to Figure 1 , Figure 2 and Figure 3This utility model provides an ice bottle production system, including a blow molding machine 100, a first conveyor belt 200, a bottle filling machine 300, a second conveyor belt 400, a buffer zone 500, a freezing zone 800, an automatic packaging machine 900, and an ice bottle conveying device as described in any of the aforementioned embodiments.

[0046] The first conveyor belt 200 is used to connect the blow molding machine 100 and the bottle-making machine 300, and the second conveyor belt 400 is used to connect the bottle-making machine 300 and the buffer zone 500; one end of the first conveying device 600 is connected to the buffer zone 500; the freezing zone 800 is located on one side of the second conveying device 700, and the second conveying device 700 is used to transport ice bottles to the freezing zone 800;

[0047] The automatic packing machine 900 is used to pack the ice bottles frozen in the freezing zone 800.

[0048] In some embodiments, the blow molding machine 100 and the filling machine of the ice bottle production system are both prior art. The blow molding machine 100 is used to produce empty ice bottles. The empty ice bottles enter the filling machine to be filled with water, and then the ice bottles are placed in the buffer zone 500. The ice bottles conveyed from the buffer zone 500 enter the first conveying device 600. The first conveying device 600 weighs the ice bottles and removes the ice bottles that do not meet the requirements from the first conveying device 600. The ice bottles that meet the weight requirements enter the second conveying device 700.

[0049] In an optional embodiment, the freezing zone 800 includes multiple ice bottle machines, which are arranged sequentially.

[0050] Each of the ice bottle machines is provided with a corresponding feeding assembly, which is used to push the ice bottles on the second conveying device 700 into the ice bottle machine.

[0051] In an optional implementation, a counting component is also included, which is used to record the number of times the feeding component extends or retracts.

[0052] In an optional embodiment, a quantity detection sensor is provided on the feeding plate 120 of the feeding assembly, the quantity detection sensor being used to detect the ice bottles moving on the second conveying device 700.

[0053] In an optional implementation, the freezing zone 800 includes two ice bottle machines, each corresponding to one of the feeding components.

[0054] In some embodiments, the bottle inlet of the ice bottle machine in the freezing zone 800 is correspondingly set with the feeding assembly on the other side of the second conveying device 700; a quantity detection sensor is provided on the feeding plate 120; when the blocking plate moves to the second conveying device 700 to block the ice bottles, the quantity detection sensor detects the ice bottles and records the number of ice bottles that have passed until the number of ice bottles blocked by the blocking plate meets the quantity requirement; the feeding assembly pushes the ice bottles into the ice bottle machine.

[0055] The ice bottle machine can freeze a fixed number of ice bottles. The number of times the feeding component extends and retracts is counted by a counting component. Each time the feeding component extends and retracts, a batch of ice bottles enters the ice bottle machine. In this way, by counting the number of extensions and retractions of the feeding component, it is determined whether the ice bottle machine is full.

[0056] The counting component is existing technology and can also be replaced by a feeding component with counting function.

[0057] Reference Figure 3 The ice bottle machine includes an ice bottle machine body. One end of the ice bottle machine body in a first direction has an inlet and an outlet, with the inlet located at the upper end in a second direction and the outlet at the lower end in the second direction. Multiple first cooling plates and multiple second cooling plates are disposed within the ice bottle machine body. One end of each first cooling plate abuts against the inner wall of the first end of the ice bottle machine body in the first direction, and the other end of each first cooling plate forms a first discharge port between itself and the inner wall of the second end of the ice bottle machine body in the first direction. One end of each second cooling plate abuts against the inner wall of the second end of the ice bottle machine body in the first direction, and the other end of each second cooling plate forms a second discharge port between itself and the inner wall of the first end of the ice bottle machine body in the first direction. The second cooling plates are disposed between adjacent first cooling plates. A first channel extending in the first direction is formed on the first cooling plate, and a second channel extending in the first direction is formed on the second cooling plate. The second channel communicates with the first channel located at the upper end of the second channel through the first discharge port, and with the first channel located at the lower end of the second channel through the second discharge port.

[0058] A lower discharge plate is provided inside the main body of the ice bottle machine. Both ends of the lower discharge plate in a first direction abut against the inner wall of the main body of the ice bottle machine. The lower discharge plate and the adjacent first refrigeration plate form a discharge channel, which is connected to the adjacent first channel. Multiple first channels, multiple second channels, and the discharge channel form a refrigeration channel. One end of the refrigeration channel is connected to the bottle inlet, and the other end is connected to the bottle outlet. The first direction is the length direction of the main body of the ice bottle machine, and the second direction is the width direction of the main body of the ice bottle machine.

[0059] The bottle inlet of the ice bottle machine is located at the top, and the bottle outlet is located at the bottom. After the ice bottle enters through the bottle inlet, it enters the second channel from the top first channel, and then enters the other first channels. The ice bottle gradually descends in the ice bottle machine until it moves into the discharge channel. Other ice bottles enter in sequence through the bottle inlet until the ice bottle machine is full.

[0060] Once the main body of the ice bottle machine has finished cooling the ice bottle, the ice bottle is removed from the outlet, and other ice bottles are removed from the outlet in sequence; this achieves the cooling of the ice bottles. Compared with the existing technology, which involves manually placing the ice bottles into the cold storage for cooling, this improves the cooling efficiency, reduces the degree of manual intervention, and realizes the automation of ice bottle cooling.

[0061] The first cooling plate, the second cooling plate, and the lower discharge plate are all inclined; the upper surface of the first cooling plate gradually decreases along the extension direction of the first discharge port, the upper surface of the second cooling plate gradually decreases along the extension direction of the second discharge port, and the lower discharge plate gradually decreases along the extension direction of the bottle outlet.

[0062] After the ice bottles have finished cooling, one ice bottle is removed from the outlet, and the other ice bottles move downwards by gravity to fill the position of the previous ice bottle. This achieves automatic movement of the ice bottles within the main body of the ice bottle machine.

[0063] The blow molding machine 100 of the ice bottle production system provided by this utility model can produce empty ice bottles. The empty ice bottles enter the filling machine, where water is poured into the ice bottles. The water-filled ice bottles enter the buffer zone 500. After inspection, they enter the freezing zone for freezing. The frozen ice bottles enter the automatic packaging machine for packaging, thus completing the automated production of ice bottles.

[0064] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this utility model, and are not intended to limit it. Although the utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some or all of the technical features therein. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of this utility model.

Claims

1. An ice bottle delivery device, characterized by, The ice bottle conveying device comprises a first conveying device (600) and a second conveying device (700), one end of the first conveying device (600) is connected with one end of the second conveying device (700); A weighing assembly is arranged on the first conveying device (600), and a pushing assembly (140) is arranged on one side of the first conveying device (600), the weighing assembly is used for weighing the mass of the ice bottles on the first conveying device (600); The pushing assembly (140) is used for pushing the ice bottles that do not meet the requirements from the first conveying device (600); The second conveying device (700) is used for conveying the ice bottles upwards, at least one baffle assembly (130) and at least one feeding assembly are arranged on one side of the second conveying device (700), and the baffle assembly (130) and the feeding assembly are arranged in one-to-one correspondence; The baffle of the baffle assembly (130) moves to the second conveying device (700), and the feeding assembly is used for pushing the ice bottles blocked by the baffle assembly (130) away from the second conveying device (700).

2. The ice bottle delivery device of claim 1, wherein, The feeding assembly comprises pneumatic push rods (110) and a feeding plate (120), one or more pneumatic push rods (110) are arranged on the feeding plate (120); the pneumatic push rods (110) make the feeding plate (120) push the ice bottles on the second conveying device (700) away.

3. The ice bottle delivery apparatus of claim 1, wherein, At least one in-place detection sensor is further included, each baffle assembly (130) is matched with one in-place detection sensor.

4. An ice bottle production system characterized by, The ice bottle conveying device comprises a blowing machine (100), a first conveying belt (200), a capping machine (300), a second conveying belt (400), a buffer area (500), a freezing area (800), an automatic packing machine (900) and the ice bottle conveying device of any one of claims 1-3; The first conveying belt (200) is used for connecting the blowing machine (100) and the capping machine (300), the second conveying belt (400) is used for connecting the capping machine (300) and the buffer area (500); one end of the first conveying device (600) is connected with the buffer area (500); the freezing area (800) is arranged on one side of the second conveying device (700), and the second conveying device (700) is used for conveying the ice bottles to the freezing area (800); The automatic packing machine (900) is used for packing the ice bottles frozen in the freezing area (800).

5. The ice bottle production system according to claim 4, wherein The freezing area (800) comprises a plurality of ice bottle machines, and the plurality of ice bottle machines are arranged in sequence. Each ice bottle machine is arranged in correspondence with one feeding assembly, and the feeding assembly is used for pushing the ice bottles on the second conveying device (700) into the ice bottle machine.

6. The ice bottle production system according to claim 5, wherein A counting assembly is further included, and the counting assembly is used for recording the number of times of stretching and retracting of the feeding assembly.

7. The ice bottle production system according to claim 5, wherein A number detection sensor is arranged on the feeding plate (120) of the feeding assembly, and the number detection sensor is used for detecting the ice bottles moving on the second conveying device (700).

8. The ice bottle production system according to claim 5, wherein The freezing area (800) comprises two ice bottle machines, and each ice bottle machine corresponds to one feeding assembly.