Moving tool applied to ice-making equipment production line

By designing mobile tooling on the ice-making equipment production line, using power supply components and sockets to keep the equipment powered, and combining water storage boxes and detachable support plates, the problem of power plugging and unplugging during the ice-making equipment's operation is solved, achieving continuous and efficient production, and improving production efficiency and safety.

CN224175397UActive Publication Date: 2026-04-28NINGBO JIANSHI REFRIGERATION TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
NINGBO JIANSHI REFRIGERATION TECHNOLOGY CO LTD
Filing Date
2025-05-21
Publication Date
2026-04-28

AI Technical Summary

Technical Problem

In traditional ice-making production lines, the ice-making equipment requires frequent manual plugging and unplugging of power as it moves between different processes, resulting in low efficiency, risks of equipment damage and safety accidents, and discontinuous production.

Method used

Design a mobile tooling comprising a main frame, power supply components, and sockets to ensure that the ice-making equipment remains powered during operation and to control the power supply via an operating switch. Combined with a water storage box, it meets the continuous water demand. A detachable support plate and limiting structure are used to improve stability.

Benefits of technology

It enables continuous and efficient production of ice-making equipment, reduces the frequency of manual operation and the risk of safety accidents, improves production efficiency and product quality, and meets the high-efficiency production needs of modern ice-making equipment production lines.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a moving tool applied to an ice-making equipment production line, which comprises a main body frame, the main body frame is used for bearing ice-making equipment, the ice-making equipment moves along the production line through the main body frame, and the main body frame is provided with a power supply assembly and a socket electrically connected with the power supply assembly. The socket is connected with a plug of the ice-making equipment, so that the ice-making equipment is kept in a power-on state in the moving process, the power supply assembly and the socket are arranged on the main body frame, a power source does not need to be manually and frequently plugged in and pulled out in the circulation process of the ice-making equipment among different working procedures, production continuity is achieved, and production efficiency is improved.
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Description

Technical Field

[0001] This application relates to the field of ice-making equipment technology, and more specifically to a mobile tooling used in ice-making equipment production lines. Background Technology

[0002] With rising living standards and changing consumption habits, consumer demand for small ice-making equipment is growing, especially during the hot summer months. Ice-making equipment has become an essential household appliance, offering advantages such as ease of operation, small footprint, and the ability to provide fresh ice on demand, meeting the needs of various scenarios including family gatherings and daily drinking. This rapid growth in demand has driven a transformation in ice-making equipment production models. Traditional ice-making equipment production was mostly small-scale, manual, or semi-automated, resulting in low efficiency and inconsistent product quality. In recent years, with technological advancements, ice-making equipment production lines have gradually moved towards large-scale, automated, and intelligent production, improving production efficiency and product quality consistency. During the manufacturing process of ice-making equipment, products need to move between different processes, including component assembly, welding, testing, and packaging. Traditional handling methods typically rely on manual labor, which is not only inefficient and prone to damage during transport but can also lead to uncoordinated production rhythms, affecting the smoothness of the entire production line. To improve product turnover efficiency, current ice-making production lines primarily rely on moving plates for product transport. These plates only offer basic load-bearing and movement functions and cannot meet the product's need for power on / off during production. Therefore, whenever a product reaches a stage requiring power-on testing or power-off, operators must manually plug and unplug it. This manual intervention is not only inefficient but also prone to causing equipment damage or safety accidents due to improper operation, while simultaneously increasing labor costs and production time. Summary of the Invention

[0003] The technical problem to be solved by this application is to provide a mobile tooling for ice-making equipment production lines. By setting power supply components and sockets on the main frame, the ice-making equipment does not need to be frequently plugged and unplugged manually during the transfer between different processes, thus realizing the continuity of production and improving production efficiency.

[0004] This application provides a mobile tooling for use in an ice-making equipment production line, including a main frame for supporting ice-making equipment. The ice-making equipment moves along the production line via the main frame. The main frame is provided with a power supply component and a socket electrically connected to the power supply component. The socket is connected to the plug of the ice-making equipment to keep the ice-making equipment powered during movement.

[0005] In this technical solution, the main frame possesses sufficient strength and stability to bear the weight of the ice-making equipment and maintain balance during movement. The power supply component provides a stable power supply to the ice-making equipment through both external power and its own power source, ensuring continuous power during movement. The socket connects to the plug of the ice-making equipment, ensuring a continuous power supply during movement. Simultaneously, the connection between the socket and plug should possess sufficient stability to prevent poor contact due to vibration or movement. By installing the power supply component and socket on the main frame, the ice-making equipment eliminates the need for frequent manual plugging and unplugging during the flow between different processes, achieving production continuity, reducing time wastage and potential errors caused by manual operation, and lowering the frequency of manual operation, thus reducing the risk of safety accidents due to improper operation. This significantly improves production efficiency, product quality, and production safety. Furthermore, it possesses good adaptability and flexibility, meeting the high-efficiency production needs of modern ice-making equipment production lines. On the other hand, each ice-making unit is independently equipped with a mobile tooling, ensuring that each unit has its own dedicated support and power supply device during its flow on the production line, eliminating the need to wait for other equipment to complete its processes, reducing waiting time between processes, and improving the overall efficiency of the production line.

[0006] As an improvement, the power supply component is equipped with an operation switch, which is used to control the power supply component's on / off state. In this technical solution, by adding an operation switch to the power supply component, the operator can easily turn the power on or off, thereby achieving power supply control of the ice-making equipment. The operation switch is installed in a convenient operating position on the main frame, ensuring that the operator can easily reach and operate it when using the mobile fixture. The operation switch can be designed as a simple press button or toggle switch. The operator manually controls the power supply component's on / off state as needed. The operation switch allows the operator to quickly control the power supply of the ice-making equipment without frequently plugging and unplugging the power cord, greatly improving operational convenience and efficiency. Furthermore, the operation switch is integrated into the mobile fixture, allowing the operator to easily complete power control at the beginning or end of each process, reducing manpower and improving operational convenience. Each mobile fixture's operation switch only controls the ice-making equipment on that fixture, ensuring that the power control of each device does not interfere with each other, achieving independent operation, and avoiding the risk of misoperation that may result from multiple ice-making devices sharing a single operation switch. This allows the mobile fixture to better adapt to the needs of modern ice-making equipment production lines.

[0007] As an improvement, a water storage box is provided on the main frame, and the water storage box is equipped with a water outlet adapted to the ice-making equipment. The water outlet is used to connect to the ice-making equipment to supply water to the ice-making equipment. In this technical solution, performance testing of the ice-making equipment is also a crucial part of the production line. This primarily involves powering on the ice-making equipment to enable it to make ice. Water is required during this process. This application adds a water storage box to the mobile fixture. The water storage box meets the continuous water demand of the ice-making equipment during movement, eliminating the need for frequent shutdowns for water replenishment and improving production testing efficiency. The water storage box is integrated into the main frame, ensuring stability during movement and not affecting the placement and fixation of the ice-making equipment. The water storage box has a water outlet adapted to the ice-making equipment. The interface type and size of the water outlet can be adjusted according to different models of ice-making equipment to ensure good connectivity and water supply. For example, the flow rate, pressure, or connection method of the water outlet can be adjusted to meet the specific needs of different types of equipment (such as shaved ice machines, block ice machines, etc.). The water outlet is connected to the water inlet of the ice-making equipment via a hose or special connector, ensuring stable water supply during movement. The ice-making equipment does not need to wait for the connection and disconnection of the fixed water supply system during movement, reducing waiting time due to water supply issues and further optimizing the production process.

[0008] As an improvement, a detachable support plate is mounted on the main frame, and the support plate is used to mount the ice-making equipment. In this technical solution, the support plate is mounted on the main frame through a detachable structure. This structure can be a snap-fit, slot, or other quick-release connection method, ensuring that the support plate can be easily installed and removed. The main frame provides support for the support plate, ensuring that it can withstand the weight and external forces of the ice-making equipment during movement, maintaining the stability of the overall structure. The detachable support plate allows for easy removal, reducing the difficulty of manual operation and making assembly and disassembly simpler and less labor-intensive.

[0009] As an improvement, the main frame is provided with a limiting structure adapted to the support plate. The limiting structure is connected to the support plate to limit the support plate to the main frame. In this technical solution, the main frame is provided with a limiting structure adapted to the support plate. The shape and size of the limiting structure are designed according to the structure of the support plate. The two fit together tightly to ensure the stability and fixation of the support plate on the main frame, preventing the support plate from shifting or loosening due to vibration, impact or other external forces during movement. This ensures the stability of the ice-making equipment during movement, reduces the risk of equipment damage due to the loosening of the support plate, and enhances the safety of the production process.

[0010] As an improvement, the limiting structure is provided with an opening for the carrier plate to enter and exit. This opening is located on the side opposite to the running direction of the moving fixture, allowing the carrier plate to pass through the opening and enter the limiting structure along the running direction of the moving fixture. In this technical solution, by adding an opening to the limiting structure on the side opposite to the running direction of the moving fixture, the carrier plate can smoothly pass through the opening and enter the limiting structure along the running direction of the moving fixture. The one-way entry design reduces the adjustment time for operators when installing and disassembling the carrier plate, further optimizing the production process. The size of the opening is adapted to the size of the carrier plate, ensuring that the carrier plate can smoothly enter and exit, and is firmly limited after entering the limiting structure. By designing the opening on the side opposite to the running direction of the moving fixture, it is ensured that the carrier plate can fully contact the limiting structure during the movement of the moving fixture, thereby preventing it from detaching during operation and increasing the reliability of production operation.

[0011] As an improvement, the limiting structure includes a first baffle, a second baffle, and a third baffle connected end-to-end in sequence. These three baffles cooperate to abut against the limiting support plate, with an opening formed between the ends of the first and third baffles. In this technical solution, the limiting structure, composed of the first, second, and third baffles connected end-to-end, forms a semi-enclosed limiting space for abutting and fixing the support plate. The opening between the ends of the first and third baffles serves as a channel for the support plate to enter the limiting structure. The first, second, and third baffles work together to abut the support plate from multiple directions, ensuring its stability and fixation on the main frame. This multi-point abutment design effectively prevents the support plate from shifting or loosening during movement, further improving the operating efficiency of the ice-making equipment.

[0012] As an improvement, the first baffle has a first bent portion, and the third baffle has a second bent portion. Both the first and second bent portions are bent outwards, and the second baffle has a straight plate structure. In this technical solution, the main function of the first and second bent portions is to prevent the sharp edges or right-angled parts of the first and third baffles from directly contacting the ice-making equipment during the shaking process, thereby reducing potential damage to the equipment. The second baffle is located on the same side as the moving fixture's running direction and has a straight plate structure, playing a major supporting and limiting role. The first, second, and third baffles work together to provide stable support from multiple directions, while simultaneously preventing the first and third baffles from damaging the ice-making equipment, further optimizing the production process.

[0013] As an improvement, the power supply component is equipped with a display screen. In this technical solution, the display screen is integrated into the power supply component and is usually located in a position easily observed by the operator. The display screen is used to display relevant information about the power supply component and / or the ice-making equipment, such as the current power status (voltage, current, power, etc.), the operating status of the ice-making equipment, fault prompts, etc., helping the operator to understand the operating status of the ice-making equipment in a timely manner, eliminating the need for frequent equipment checks, improving the convenience and efficiency of operation, and better meeting the needs of high efficiency and intelligence in modern ice-making equipment production.

[0014] As an improvement, the main frame includes a top plate, a vertical frame, and a base. One end of the vertical frame is connected to the top plate, and the other end is connected to the base. The vertical frame is located on the side facing away from the operator. In this technical solution, the top plate is located at the top of the main frame and is used to install the water storage box. The base is located at the bottom of the main frame and is used to support the entire mobile fixture and ice-making equipment, ensuring overall stability. The vertical frame, as the vertical support part of the main frame, is connected to the top plate at one end and to the base at the other end. The top plate, vertical frame, and base form a semi-enclosed space to accommodate the ice-making equipment, ensuring that the installation and operation of the ice-making equipment are unrestricted. The semi-enclosed space design makes the installation and operation of the ice-making equipment more flexible, allowing operators to directly contact the equipment for production, testing, and other operations. The power supply unit is located on the vertical frame on the side facing away from the operator, ensuring that the operator's line of sight and operating space are not obstructed during production, testing, and other operations, thus optimizing the production process and improving production efficiency. Attached Figure Description

[0015] Figure 1 This is a three-dimensional structural diagram of the mobile tooling installation support plate and ice-making equipment in this application.

[0016] Figure 2 This is a three-dimensional structural diagram of the movable tooling in this application.

[0017] Figure 3 This is a three-dimensional structural diagram of the base mounting support plate in this application.

[0018] The diagram shows: 1. Main frame; 11. Limiting structure; 111. Opening; 112. First baffle; 113. Second baffle; 114. Third baffle; 115. First bend; 116. Second bend; 12. Top plate; 13. Stand; 14. Base; 2. Ice-making equipment; 3. Power supply components; 31. Socket; 32. Operating switch; 33. Display screen; 4. Water storage box; 41. Water outlet; 5. Support plate. Detailed Implementation

[0019] To better understand this application, various aspects of this application will be described in more detail with reference to the accompanying drawings. It should be understood that these detailed descriptions are merely illustrative of exemplary embodiments of this application and are not intended to limit the scope of this application in any way. Throughout the specification, the same reference numerals refer to the same elements.

[0020] In the accompanying drawings, the thickness, size, and shape of the objects have been slightly exaggerated for illustrative purposes. The drawings are for illustrative purposes only and are not drawn to scale.

[0021] It should also be understood that the terms "comprising," "including," "having," "containing," and "including," when used in this specification, indicate the presence of the stated features, integrals, steps, operations, elements, and / or components, but do not exclude the presence or addition of one or more other features, integrals, steps, operations, elements, components, and / or combinations thereof. The terms "first," "second," etc., are primarily used to distinguish different devices, elements, or components (the specific types and constructions may be the same or different), and are not intended to indicate or imply the relative importance or quantity of the indicated devices, elements, or components. Unless otherwise stated, "a plurality of" means two or more.

[0022] Furthermore, it should be noted that the terms "installation," "setup," "equipped with," "connection," and "linked" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral structure; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium, or an internal connection between two devices, elements, or components; they can refer to a direct installation on another component or the possible presence of another intermediate component. The terms "vertical," "horizontal," "left," "right," and similar expressions used herein are for illustrative purposes only. Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention pertains. The terminology used herein in the specification of this invention is for the purpose of describing particular embodiments only and is not intended to limit the invention. The term "and / or" as used herein includes any and all combinations of one or more of the associated listed items.

[0023] like Figures 1 to 3As shown, this application discloses a mobile tooling for an ice-making equipment production line, including a main frame 1. The main frame 1 supports an ice-making equipment 2, which moves along the production line via the main frame 1. The main frame 1 is equipped with a power supply component 3 and a socket 31 electrically connected to the power supply component 3. The socket 31 is connected to the plug of the ice-making equipment 2 to keep the ice-making equipment 2 powered during movement. The main frame 1 has sufficient strength and stability to bear the weight of the ice-making equipment 2 and maintain balance during movement. The power supply component 3 can provide a stable power supply to the ice-making equipment 2 through both external power and its own power supply, ensuring continuous power supply during movement. The socket 31 is connected to the plug of the ice-making equipment 2 to ensure continuous power supply during movement. Simultaneously, the connection between the socket 31 and the plug should... With sufficient stability to prevent poor contact due to vibration or movement, the power supply component 3 and socket 31 are installed on the main frame 1. During the flow of ice-making equipment 2 between different processes, there is no need for frequent manual plugging and unplugging of power, which realizes the continuity of production, reduces the time wasted and potential errors caused by manual operation, and reduces the frequency of manual operation, thereby reducing the risk of safety accidents caused by improper operation. It significantly improves production efficiency, product quality and production safety. At the same time, it has good adaptability and flexibility, which can meet the high-efficiency production needs of modern ice-making equipment 2 production lines. On the other hand, each ice-making equipment 2 is independently equipped with a mobile tooling to ensure that each ice-making equipment 2 has its own dedicated support and power supply device during the flow of ice-making equipment 2 on the production line, without waiting for other equipment to complete the process, reducing the waiting time between processes and improving the overall efficiency of the production line.

[0024] More specifically, such as Figure 1 and Figure 2As shown, the power supply component 3 is equipped with an operation switch 32, which is used to control the power supply component 3 to turn on and off. By adding the operation switch 32 to the power supply component 3, the operator can easily turn the power on or off, thereby realizing the power supply control of the ice-making equipment 2. The operation switch 32 is installed in a convenient operating position on the main frame 1, ensuring that the operator can easily reach and operate it when using the moving tool. The operation switch 32 can be designed as a simple push button or a toggle switch. The operator can manually control the power supply component 3 to turn on and off as needed. The setting of the operation switch 32 enables the operator to... The system allows for quick and easy control of the power supply to the ice-making equipment 2, eliminating the need for frequent plugging and unplugging of the power cord and greatly improving operational convenience and efficiency. Furthermore, the integrated operation switch 32 allows operators to easily control the power supply at the beginning or end of each process, reducing manpower and enhancing operational convenience. Each operation switch 32 on the mobile fixture controls only the ice-making equipment 2 on that fixture, ensuring that the power control of each device does not interfere with each other and enabling independent operation. This avoids the risk of misoperation that may result from multiple ice-making equipment 2 sharing a single operation switch 32, allowing the mobile fixture to better adapt to the needs of modern ice-making equipment 2 production lines.

[0025] More specifically, such as Figure 1 and Figure 2 As shown, a water storage box 4 is installed on the main frame 1. The water storage box 4 has a water outlet 41 adapted to the ice-making equipment 2. The water outlet 41 is used to connect to the ice-making equipment 2 to supply water to the ice-making equipment 2. The performance testing of the ice-making equipment 2 is also an important part of the production line. It mainly involves powering on the ice-making equipment 2 to make it ice. Water is required during the ice-making process. This application adds a water storage box 4 to the mobile fixture. The water storage box 4 can meet the continuous water demand of the ice-making equipment 2 during the movement process, eliminating the need for frequent shutdowns to replenish water, thus improving production and testing efficiency. The water storage box 4 is integrated into the main frame 1 to ensure its stability during movement and to not affect the ice-making equipment. The placement and fixing of the ice-making equipment 2: The water storage box 4 is equipped with a water outlet 41 that is compatible with the ice-making equipment 2. The interface type and size of the water outlet 41 can be adjusted according to different models of ice-making equipment 2 to ensure good connectivity and water supply effect. For example, the flow rate, pressure or connection method of the water outlet 41 can be adjusted to meet the specific needs of different types of equipment (such as shaved ice machine, block ice machine, etc.). The water outlet 41 is connected to the water inlet of the ice-making equipment 2 through a hose or special connector to ensure the stability of water supply during movement. The ice-making equipment 2 does not need to wait for the connection and disconnection of the fixed water supply system during movement, reducing the waiting time caused by water supply problems and further optimizing the production process.

[0026] More specifically, such as Figures 1 to 3As shown, a detachable support plate 5 is mounted on the main frame 1. The support plate 5 is used to install the ice-making equipment 2. The support plate 5 is mounted on the main frame 1 through a detachable structure. This structure can be a snap-fit, slot, or other quick-release connection method to ensure that the support plate 5 can be easily installed and removed. The main frame 1 provides support for the support plate 5, ensuring that it can withstand the weight and external force of the ice-making equipment 2 during movement and maintain the stability of the overall structure. The detachable support plate 5 makes it easy to remove, reducing the difficulty of manual operation and making disassembly and assembly simpler and less labor-intensive.

[0027] More specifically, such as Figures 1 to 3 As shown, the main frame 1 is provided with a limiting structure 11 adapted to the bearing plate 5. The limiting structure 11 is connected to the bearing plate 5 so that the bearing plate 5 is limited to the main frame 1. The shape and size of the limiting structure 11 are designed according to the structure of the bearing plate 5. The two are closely matched to ensure the stability and fixation of the bearing plate 5 on the main frame 1, and prevent the bearing plate 5 from shifting or loosening due to vibration, impact or other external forces during the movement. This ensures the stability of the ice making equipment 2 during the movement, reduces the risk of equipment damage caused by the loosening of the bearing plate 5, and enhances the safety of the production process.

[0028] More specifically, such as Figures 1 to 3 As shown, the limiting structure 11 has an opening 111 for the carrier plate 5 to enter and exit. The opening 111 is located on the side opposite to the running direction of the moving fixture, so that the carrier plate 5 can pass through the opening 111 and enter the limiting structure 11 along the running direction of the moving fixture. By adding an opening 111 to the limiting structure 11, which is located on the side opposite to the running direction of the moving fixture, the carrier plate 5 can smoothly pass through the opening 111 and enter the limiting structure 11 along the running direction of the moving fixture. The one-way entry design reduces the adjustment time for operators when installing and disassembling the carrier plate 5, further optimizing the production process. The size of the opening 111 is adapted to the size of the carrier plate 5, ensuring that the carrier plate 5 can smoothly enter and exit, and can be firmly limited after entering the limiting structure 11. By designing the opening 111 on the side opposite to the running direction of the moving fixture, it is ensured that the carrier plate 5 can fully abut against the limiting structure 11 during the movement of the moving fixture along the running direction, thereby preventing it from detaching during operation and increasing the reliability of production operation.

[0029] More specifically, such as Figure 3As shown, the limiting structure 11 includes a first baffle 112, a second baffle 113, and a third baffle 114 connected end-to-end in sequence. The first baffle 112, the second baffle 113, and the third baffle 114 cooperate to abut against the limiting support plate 5. An opening 111 is formed between the end of the first baffle 112 and the end of the third baffle 114. The limiting structure 11, composed of the first baffle 112, the second baffle 113, and the third baffle 114 connected end-to-end in sequence, forms a semi-enclosed limiting space for abutting and... The fixed support plate 5 has an opening 111 formed between the end of the first baffle 112 and the end of the third baffle 114. This opening 111 is the channel for the support plate 5 to enter the limiting structure 11. The first baffle 112, the second baffle 113 and the third baffle 114 work together to abut the support plate 5 from multiple directions, ensuring its stability and fixation on the main frame 1. This multi-point abutment design can effectively prevent the support plate 5 from shifting or loosening during movement, further improving the operating efficiency of the ice-making equipment 2.

[0030] More specifically, such as Figures 1 to 3 As shown, the first baffle 112 has a first bent portion 115, and the third baffle 114 has a second bent portion 116. Both the first bent portion 115 and the second bent portion 116 are bent outwards. The second baffle 113 has a straight plate structure. The main function of the first bent portion 115 and the second bent portion 116 is to prevent the sharp edges or right-angled parts of the first baffle 112 and the third baffle 114 from directly contacting the ice-making equipment 2 during the shaking process, thereby reducing potential damage to the equipment. The second baffle 113 is located on the same side as the moving fixture and has a straight plate structure, playing a major supporting and limiting role. The first baffle 112, the second baffle 113 and the third baffle 114 work together to provide stable support from multiple directions, and at the same time prevent the first baffle 112 and the third baffle 114 from causing damage to the ice-making equipment 2, further optimizing the production process.

[0031] More specifically, such as Figure 1 and Figure 2 As shown, the power supply component 3 is equipped with a display screen 33, which is integrated into the power supply component 3 and is usually located in a position that is easy for the operator to observe. The display screen 33 is used to display relevant information of the power supply component 3 and / or the ice-making equipment 2, such as the current power status (voltage, current, power, etc.), the operating status of the ice-making equipment 2, fault prompts, etc., to help the operator understand the operating status of the ice-making equipment 2 in a timely manner, without the need for frequent equipment checks, thereby improving the convenience and efficiency of operation and better meeting the needs of high efficiency and intelligence in the production of modern ice-making equipment 2.

[0032] More specifically, such as Figures 1 to 3As shown, the main frame 1 includes a top plate 12, a vertical frame 13, and a base 14. One end of the vertical frame 13 is connected to the top plate 12, and the other end is connected to the base 14. The vertical frame 13 is located on the side facing away from the operator. The top plate 12 is located at the top of the main frame 1 and is used to install the water storage box 4. The base 14 is located at the bottom of the main frame 1 and is used to support the entire mobile tooling and ice-making equipment 2, ensuring overall stability. The vertical frame 13 serves as the vertical support part of the main frame 1, with one end connected to the top plate 12 and the other end connected to the base 14. The top plate 12, the upright frame 13, and the base 14 form a semi-enclosed space to accommodate the ice-making equipment 2, ensuring that the installation and operation of the ice-making equipment 2 are unrestricted. The semi-enclosed space design makes the installation and operation of the ice-making equipment 2 more flexible, and operators can directly contact the equipment to carry out production, testing and other operations. The power supply unit is set on the upright frame 13, located on the side away from the operator, ensuring that the operator's line of sight and operating space are not obstructed when carrying out production, testing and other operations, thus optimizing the production process and improving production efficiency.

[0033] This application is not limited to the above-described preferred embodiments. Anyone can derive other products in various forms under the guidance of this application. However, regardless of any changes made to their shape or structure, any technical solution that is the same as or similar to that of this application falls within the protection scope of this application.

Claims

1. A mobile tooling used in an ice-making equipment production line, characterized in that, The device includes a main frame (1) for supporting an ice-making device (2). The ice-making device (2) moves along the production line via the main frame (1). The main frame (1) is equipped with a power supply component (3) and a socket (31) electrically connected to the power supply component (3). The socket (31) is connected to the plug of the ice-making device (2) so that the ice-making device (2) remains powered during movement.

2. The mobile tooling for an ice-making equipment production line according to claim 1, characterized in that, The power supply component (3) is equipped with an operation switch (32), which is used to control the power supply component (3) to turn on and off.

3. The mobile tooling for an ice-making equipment production line according to claim 1, characterized in that, The main frame (1) is provided with a water storage box (4), and the water storage box (4) is provided with a water outlet (41) adapted to the ice making equipment (2). The water outlet (41) is used to connect to the ice making equipment (2) to supply water to the ice making equipment (2).

4. The mobile tooling for an ice-making equipment production line according to claim 1, characterized in that, The main frame (1) is detachably mounted with a support plate (5), which is used to install ice-making equipment (2).

5. A mobile tooling for an ice-making equipment production line according to claim 4, characterized in that, The main frame (1) is provided with a limiting structure (11) adapted to the bearing plate (5), and the limiting structure (11) is connected to the bearing plate (5) so that the bearing plate (5) is limited to the main frame (1).

6. A mobile tooling for an ice-making equipment production line according to claim 5, characterized in that, The limiting structure (11) is provided with an opening (111) for the bearing plate (5) to enter and exit. The opening (111) is located on the side opposite to the running direction of the moving fixture, so that the bearing plate (5) can pass through the opening (111) and enter the limiting structure (11) along the running direction of the moving fixture.

7. A mobile tooling for an ice-making equipment production line according to claim 6, characterized in that, The limiting structure (11) is provided with a first baffle (112), a second baffle (113) and a third baffle (114) connected end to end in sequence. The first baffle (112), the second baffle (113) and the third baffle (114) cooperate to abut against the limiting bearing plate (5). An opening (111) is formed between the end of the first baffle (112) and the end of the third baffle (114).

8. A mobile tooling for an ice-making equipment production line according to claim 7, characterized in that, The first baffle (112) is provided with a first bending portion (115), and the third baffle (114) is provided with a second bending portion (116). Both the first bending portion (115) and the second bending portion (116) are bent outwards. The second baffle (113) is a straight plate structure.

9. A mobile tooling for an ice-making equipment production line according to claim 1, characterized in that, The power supply component (3) is equipped with a display screen (33).

10. A mobile tooling for an ice-making equipment production line according to claim 1, characterized in that, The main frame (1) includes a top plate (12), a support frame (13) and a base (14). One end of the support frame (13) is connected to the top plate (12), and the other end of the support frame (13) is connected to the base (14). The support frame (13) is located on the side facing away from the operator.