A basket frying production line with auxiliary handling function

By integrating the frying basket handling mechanism and the wire laying mechanism, the problem of low handling efficiency in traditional frying basket production lines has been solved, realizing an efficient and automated production process and improving production efficiency and product quality.

CN224278890UActive Publication Date: 2026-05-26GUANGDONG LIDA METAL TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
GUANGDONG LIDA METAL TECH CO LTD
Filing Date
2025-06-24
Publication Date
2026-05-26

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    Figure CN224278890U_ABST
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Abstract

This utility model discloses a frying basket production line with auxiliary handling function, including a frying basket production line body, a frying basket handling mechanism, and a frying basket welding body. The frying basket handling mechanism is located between the frying basket production line body and the frying basket welding body. The frying basket handling mechanism is configured to grab the frying baskets from the frying basket production line body and transport the frying baskets to the frying basket welding body, and / or the frying basket handling mechanism is further configured to grab the frying baskets from the frying basket welding body and transport the frying baskets to the unloading station. This utility model, through integrated design, allows the frying basket handling mechanism and the frying basket welding body to work closely together. After the frying baskets are processed on the frying basket production line body, they can be quickly grabbed by the frying basket handling mechanism and accurately placed on the frying basket welding body, achieving seamless connection, reducing intermediate waiting time and idle time during the handling process, thereby greatly improving overall production efficiency.
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Description

[Technical Field]

[0001] This utility model relates to a frying basket production line with auxiliary handling function. [Background Technology]

[0002] In modern industrial production, frying baskets, as key components of specific products, typically require multiple processes in their production. Traditional frying basket production lines rely primarily on manual operation or simple conveyor systems for transporting baskets between different processes. However, with the continuous expansion of production scale and the increasing demands for production efficiency and quality, this traditional handling method has gradually revealed numerous problems.

[0003] On the one hand, manual handling is not only labor-intensive and prone to worker fatigue, but also inefficient, failing to meet the needs of high-efficiency production. On the other hand, simple conveying devices often only allow unidirectional transport along fixed paths, lacking flexibility and unable to adapt to complex production processes and changing production demands. After the blasting basket completes its initial processing on the main production line, it needs to be transported to the welding main body for subsequent welding processes. Traditional handling methods struggle to complete this process accurately and quickly. Furthermore, after the welding process is completed, the blasting basket needs to be moved to the unloading station, further increasing the complexity of the handling process.

[0004] In addition, the existing technology for conveying devices for frying baskets is usually relatively simple and lacks complete functionality. It cannot achieve efficient material flow between the main body of the production line and the welding body, nor can it meet the unloading requirements of the frying baskets after welding. This greatly limits the automation level and overall performance of the entire frying basket production line, becoming a bottleneck that restricts the improvement of production efficiency.

[0005] Therefore, this utility model was developed to address the aforementioned problems. [Utility Model Content]

[0006] The purpose of this utility model is to overcome the shortcomings of the prior art and provide a frying basket production line with auxiliary handling function. The frying basket handling mechanism can transport the frying basket of the main body of the frying basket production line to the frying basket welding body. At the same time, it can also transport the frying basket of the frying basket welding body to the unloading station. This can effectively shorten the handling time, make the whole production process more compact and continuous, thereby significantly improving the production efficiency of frying baskets and increasing the output per unit time.

[0007] This utility model is achieved through the following technical solution:

[0008] A frying basket production line with auxiliary handling function includes a frying basket production line body 1, a frying basket handling mechanism 2, and a frying basket welding body 3. The frying basket handling mechanism 2 is located between the frying basket production line body 1 and the frying basket welding body 3. The frying basket handling mechanism 2 is configured to grab the frying basket 100 of the frying basket production line body 1 and transport the frying basket 100 to the frying basket welding body 3, and / or the frying basket handling mechanism 2 is further configured to grab the frying basket 100 of the frying basket welding body 3 and transport the frying basket 100 to the unloading station.

[0009] As described above, in a frying basket production line with auxiliary handling function, the frying basket handling mechanism 2 is a handling robotic arm located between the main body 1 of the frying basket production line and the welding body 3 of the frying basket.

[0010] As described above, a frying basket production line with auxiliary handling function includes a frame 11 on the main body 1. The frame 11 is provided with a storage and supply mechanism 12 for storing and conveying iron wire 120. The frame 11 is also provided with a frame 110 for clamping the frying basket 100 and a winding mechanism 13 for winding the iron wire 120 around the frame 110. The frame 11 is also provided with a drive mechanism 14 for driving the winding mechanism 13 to rotate accordingly. The frame 11 is provided with a wire laying mechanism 15 located between the winding mechanism 13 and the storage and supply mechanism 12, which is used to wind the iron wire 120 layer by layer along the frame 110 during the process of the winding mechanism 13 winding the iron wire 120 around the frame 110.

[0011] As described above, in a frying basket production line with auxiliary handling function, the wire laying mechanism 15 includes a wire laying seat 151 mounted on a frame 11 and capable of moving laterally relative to the frame 11. The iron wire 120 passes through the wire laying seat 151 and moves accordingly with the wire laying seat 151. A drive assembly 152 for driving the wire laying seat 151 to move laterally relative to the frame 11 is provided between the frame 11 and the wire laying seat 151.

[0012] As described above, in a frying basket production line with auxiliary handling function, the drive assembly 152 includes a lead screw 1521 mounted on the frame 11 and rotatable relative to the frame 11. The lead screw 1521 is connected to the cable tray 151 and can drive the cable tray 151 to move laterally when the lead screw 1521 rotates.

[0013] As described above, in a frying basket production line with auxiliary handling function, the drive assembly 152 includes a lead screw 1521 mounted on the frame 11 and rotatable relative to the frame 11. The lead screw 1521 is synchronously driven and connected to the winding mechanism 13 and to the wire guide seat 151, and can drive the wire guide seat 151 to move laterally when the lead screw 1521 rotates. A separation mechanism 16 for driving the wire guide seat 151 to separate from the lead screw 1521 is provided between the frame 11 and the wire guide seat 151. A reset structure 17 for driving the wire guide seat 151 to reset after the separation mechanism 16 drives the wire guide seat 151 to separate from the lead screw 1521 is provided between the frame 11 and the wire guide seat 151.

[0014] As described above, in a frying basket production line with auxiliary handling function, the frame 11 is provided with a transverse connecting rod 111, the cable tray 151 is rotatably sleeved on the transverse connecting rod 111 and can move along the transverse connecting rod 111; the separation mechanism 16 includes an opening slot provided on the cable tray 151, the opening slot is provided with a thread that meshes with the lead screw 1521, and the separation mechanism 16 also includes a separation cylinder that can drive the thread of the opening slot to separate from the lead screw 1521.

[0015] As described above, in a frying basket production line with auxiliary handling function, a guide structure 18 is provided between the frame 11 and the cable tray 151. The guide structure 18 includes a guide rail 181 provided on the frame 11, and a roller 182 that can slide along the guide rail 181 is rotatably connected to the cable tray 151.

[0016] As described above, in a frying basket production line with auxiliary handling function, the frame 11 is provided with a limiting structure 19 that ensures the cable tray 151 is in a set position when the cable tray 151 is reset.

[0017] As described above, in a frying basket production line with auxiliary handling function, the limiting structure 19 is an adjusting limiting screw connected to the frame 11. By adjusting the limiting screw, the set position of the cable tray 151 when it is reset can be adjusted, thereby adapting to the frames of different types and specifications of frying baskets.

[0018] Compared with the prior art, the present invention has the following advantages:

[0019] 1. This utility model can transport the frying baskets of the main body of the frying basket production line to the frying basket welding body through the frying basket transport mechanism. At the same time, it can also transport the frying baskets of the frying basket welding body to the unloading station. This can effectively shorten the transport time, make the entire production process more compact and continuous, thereby significantly improving the production efficiency of frying baskets and increasing the output per unit time.

[0020] 2. This utility model integrates the frying basket transport mechanism and the frying basket welding body onto the main body of the frying basket production line, enabling a highly automated and continuous production process for the frying baskets. Compared to the traditional production mode, where the frying baskets need to be manually or with the help of other external equipment to be transported to the welding body after the initial processing on the main body of the production line before subsequent welding operations, the integrated design of this utility model allows the frying basket transport mechanism and the frying basket welding body to work closely together. After the frying baskets are processed on the main body of the frying basket production line, they can be quickly picked up by the frying basket transport mechanism and accurately placed onto the frying basket welding body, achieving seamless connection, reducing intermediate waiting time and idle time during the transport process, thereby greatly improving overall production efficiency.

[0021] 3. During the wire winding process, the wire winding mechanism enables the wire to be wound orderly layer by layer along the frame, avoiding problems such as chaotic or overlapping wire winding and improving winding efficiency. At the same time, the close cooperation between the winding mechanism and the drive mechanism can quickly and accurately wind the wire onto the frame, further shortening the production cycle of the blasting basket. [Attached Image Description]

[0022] The specific embodiments of this utility model will be further described in detail below with reference to the accompanying drawings, wherein:

[0023] Figure 1 This is a three-dimensional view of the present invention.

[0024] Figure 2 This is a partial perspective view of the present invention.

[0025] Figure 3 This is a perspective view of the main body of the frying basket production line in this utility model.

[0026] Figure 4 This is a top view of the main body of the frying basket production line in this utility model.

[0027] Figure 5 This is a partial perspective view of the main body of the frying basket production line of this utility model.

[0028] Figure 6 This is a partial side view of the main body of the frying basket production line in this utility model.

[0029] Figure 7 This is a perspective view of the frying basket in this utility model.

Detailed Implementation Methods

[0030] The embodiments of this utility model will now be described in detail with reference to the accompanying drawings.

[0031] like Figure 1-7As shown, the present invention discloses a frying basket production line with auxiliary handling function, including a frying basket production line body 1, a frying basket handling mechanism 2, and a frying basket welding body 3. The frying basket handling mechanism 2 is located between the frying basket production line body 1 and the frying basket welding body 3. The frying basket handling mechanism 2 is configured to grab the frying basket 100 of the frying basket production line body 1 and transport the frying basket 100 to the frying basket welding body 3, and / or the frying basket handling mechanism 2 is further configured to grab the frying basket 100 of the frying basket welding body 3 and transport the frying basket 100 to the unloading station. This invention integrates the frying basket transport mechanism and the frying basket welding body onto the main body of the frying basket production line, enabling a highly automated and continuous production process. Compared to the traditional production model, where the frying basket needs to be manually or with the help of other external equipment to be transported to the welding body after the initial processing on the main body of the production line before subsequent welding operations, the integrated design of this invention allows the frying basket transport mechanism and the frying basket welding body to work closely together. After the frying basket is processed on the main body of the frying basket production line, it can be quickly picked up by the frying basket transport mechanism and accurately placed onto the frying basket welding body, achieving a seamless connection. This reduces the waiting time and idle time during the transport process, thereby greatly improving the overall production efficiency.

[0032] The frying basket handling mechanism 2 is a handling robotic arm located between the main body 1 of the frying basket production line and the welding body 3 of the frying basket. It can significantly improve the automation level, efficiency and quality of production, reduce labor costs and labor intensity, enhance the flexibility and adaptability of production, optimize the production space layout, and facilitate equipment management and maintenance. This design brings many significant advantages to the frying basket production line and is an important manifestation of modern automated production technology.

[0033] The main body 1 of the frying basket production line includes a frame 11. The frame 11 is equipped with a storage and supply mechanism 12 for storing and conveying iron wire 120. The frame 11 also has a frame 110 for clamping the frying basket 100 and a winding mechanism 13 for winding the iron wire 120 around the frame 110. The frame 11 also has a drive mechanism 14 for driving the winding mechanism 13 to rotate accordingly. A wire-laying mechanism 15 is located on the frame 11, between the winding mechanism 13 and the storage and supply mechanism 12, for winding the iron wire 120 layer by layer along the frame 110 during the winding process. The drive mechanism 14 is a drive motor or similar device. During the winding process, the frame of the blasting basket is first placed in the winding mechanism clamp, and then one end of the wire is fixedly connected to the frame of the blasting basket. Then, the drive mechanism 14 drives the winding mechanism to rotate the frame relative to the machine frame, so that the wire is wound around the frame. At the same time, during the winding process, the wire laying mechanism 15 drives the wire to wind around the frame layer by layer. The wire laying mechanism 15 can also adjust the winding position of the wire on the frame, which solves the problems of low winding efficiency and unreliable product quality that existed with manual winding. It has the characteristics of high winding efficiency, good product quality and high automation.

[0034] To ensure stable rotation of the winding mechanism, the drive mechanism 14 is connected to the winding mechanism via a gear set. The gear set is a conventional structure.

[0035] like Figure 3-6 As shown, the wire laying mechanism 15 includes a wire laying seat 151 mounted on a frame 11 and capable of lateral movement relative to the frame 11. The iron wire 120 passes through the wire laying seat 151 and moves accordingly with it. A drive assembly 152 is provided between the frame 11 and the wire laying seat 151 to drive the wire laying seat 151 to move laterally relative to the frame 11. Through the lateral movement of the wire laying seat and the precise control of the drive assembly, the wire laying mechanism can achieve uniform wire laying and efficient winding, improve production efficiency and product quality, reduce equipment failure risk and maintenance costs, enhance equipment flexibility and adaptability, optimize production space layout, facilitate equipment management and maintenance, reduce labor costs, enhance production flexibility and adaptability, and improve product aesthetics and market competitiveness.

[0036] like Figure 3-6 As shown, the drive assembly 152 includes a lead screw 1521 mounted on the frame 11 and rotatable relative to the frame 11. The lead screw 1521 is connected to the wire guide seat 151, and when the lead screw 1521 rotates, it can drive the wire guide seat 151 to move laterally accordingly, which can make the wire guide seat move stably and at a uniform speed, preventing the wire guide seat from moving too fast or too slow, so that the wire guide seat can evenly wind the iron wire on the frame, resulting in a good winding effect.

[0037] like Figure 3-6 As shown, the drive assembly 152 includes a lead screw 1521 mounted on the frame 11 and rotatable relative to the frame 11. The lead screw 1521 is synchronously connected to the winding mechanism 13 and connected to the cable tray 151, and can drive the cable tray 151 to move laterally when the lead screw 1521 rotates. A separation mechanism 16 for driving the cable tray 151 to separate from the lead screw 1521 is provided between the frame 11 and the cable tray 151. A reset structure 17 for driving the cable tray 151 to reset after the separation mechanism 16 drives the cable tray 151 to separate from the lead screw 1521 is provided between the frame 11 and the cable tray 151. In this embodiment, the reset structure 17 is a reset telescopic cylinder. One end of the reset telescopic cylinder is connected to the frame, and the cylinder rod of the reset telescopic cylinder is abutted against the cable tray. When the winding mechanism has finished winding the wire into the frame of the wire basket, the separation mechanism drives the wire guide seat to separate from the lead screw. Then, the reset mechanism drives the wire guide seat to reset, moving it to the set position at the beginning of the wire winding. The frame to be wound is then clamped onto the winding mechanism, directly connecting the wire to the frame to complete the winding process. This design is rational and efficient. The lead screw 1521 is synchronously connected to the winding mechanism 13 and to the wire guide seat 151, ensuring close coordination between the movement of the wire guide seat and the winding action of the winding mechanism. During the wire winding process, the wire guide seat can precisely move laterally according to the rotation speed and angle of the winding mechanism, ensuring that the wire is wound evenly and neatly layer by layer on the frame. Furthermore, only one drive device is needed to operate the winding mechanism and the wire guide device, reducing manufacturing costs and ensuring synchronous operation of the two devices.

[0038] The frame 11 is provided with a transverse connecting rod 111. The cable tray 151 is rotatably sleeved on the transverse connecting rod 111 and can move along the transverse connecting rod 111. The separation mechanism 16 includes an opening slot on the cable tray 151, and a thread in the opening slot that meshes with the lead screw 1521. The separation mechanism 16 also includes a separation cylinder that can drive the thread of the opening slot to separate from the lead screw 1521. In this embodiment, one end of the separation cylinder is movably connected to the frame, and the cylinder rod of the separation cylinder is relatively fixedly connected to the cable tray. When the cable tray moves laterally, the separation cylinder moves accordingly. When resetting the cable tray, the separation cylinder drives the cable tray to rotate upward about the transverse connecting rod as the rotation axis, thereby separating the thread of the opening slot from the lead screw, and thus separating the cable tray from the lead screw. At this time, the reset structure can drive the cable tray to reset. By rotatably sleeved on the transverse connecting rod, the cable tray can move stably, ensuring the stable operation of the cable laying device.

[0039] In order to ensure stable movement of the cable tray, prevent the cable tray from shifting or misaligning, and improve the winding effect, a guide structure 18 is provided between the frame 11 and the cable tray 151.

[0040] The guide structure 18 includes a guide rail 181 mounted on the frame 11. The cable tray 151 is rotatably connected to a roller 182 that can slide along the guide rail 181. The guide rail provides a precise linear motion track for the cable tray. When the roller slides along the rail, it can effectively limit the movement direction of the cable tray, making it only able to move in a straight line along the rail. This ensures the straightness and stability of the cable tray during lateral movement and improves the accuracy of cable routing.

[0041] The frame 11 is equipped with a limiting structure 19 that ensures the wire guide 151 is in a set position when it is reset. The limiting structure 19 is an adjusting limiting screw connected to the frame 11. By adjusting the limiting screw, the set position of the wire guide 151 when reset can be adjusted to accommodate frames of different types and specifications. During winding, only the adjusting limiting screw needs to be adjusted once according to the frame specifications to ensure the wire guide and wire are in the set position, eliminating the need for repeated adjustments.

Claims

1. A frying basket production line with auxiliary handling function, characterized in that... The assembly includes a blasting basket production line body (1), a blasting basket conveying mechanism (2), and a blasting basket welding body (3). The blasting basket conveying mechanism (2) is located between the blasting basket production line body (1) and the blasting basket welding body (3). The blasting basket conveying mechanism (2) is configured to grab the blasting basket (100) of the blasting basket production line body (1) and transport the blasting basket (100) to the blasting basket welding body (3). And / or the blasting basket conveying mechanism (2) is also configured to grab the blasting basket (100) of the blasting basket welding body (3) and transport the blasting basket (100) to the unloading station.

2. The frying basket production line with auxiliary handling function according to claim 1, characterized in that... The frying basket handling mechanism (2) is a handling robotic arm located between the main body (1) of the frying basket production line and the welding body (3) of the frying basket.

3. A frying basket production line with auxiliary handling function according to claim 1 or 2, characterized in that... The main body (1) of the frying basket production line includes a frame (11), on which a storage and supply mechanism (12) for storing and conveying iron wire (120) is provided. The frame (11) is also provided with a frame (110) for clamping the frying basket (100) and a winding mechanism (13) for winding the iron wire (120) around the frame (110). The frame (11) is also provided with a drive mechanism (14) for driving the winding mechanism (13) to rotate accordingly. The frame (11) and located between the winding mechanism (13) and the storage and supply mechanism (12) are provided with a wire winding mechanism (15) for winding the iron wire (120) layer by layer along the frame (110) during the process of the winding mechanism (13) winding the iron wire (120) around the frame (110).

4. The frying basket production line with auxiliary handling function according to claim 3, characterized in that... The wiring mechanism (15) includes a wiring seat (151) mounted on the frame (11) and capable of moving laterally relative to the frame (11). The iron wire (120) passes through the wiring seat (151) and moves accordingly with the wiring seat (151). A drive assembly (152) is provided between the frame (11) and the wiring seat (151) for driving the wiring seat (151) to move laterally relative to the frame (11).

5. The frying basket production line with auxiliary handling function according to claim 4, characterized in that... The drive assembly (152) includes a lead screw (1521) mounted on the frame (11) and rotatable relative to the frame (11). The lead screw (1521) is connected to the cable tray (151) and can drive the cable tray (151) to move laterally when the lead screw (1521) rotates.

6. The frying basket production line with auxiliary handling function according to claim 4, characterized in that... The drive assembly (152) includes a lead screw (1521) mounted on the frame (11) and rotatable relative to the frame (11). The lead screw (1521) is synchronously connected to the winding mechanism (13) and connected to the ribbon cable holder (151). When the lead screw (1521) rotates, it can drive the ribbon cable holder (151) to move laterally accordingly. A separation mechanism (16) for driving the ribbon cable holder (151) to separate from the lead screw (1521) is provided between the frame (11) and the ribbon cable holder (151). A reset structure (17) for driving the ribbon cable holder (151) to reset after the separation mechanism (16) drives the ribbon cable holder (151) to separate from the lead screw (1521) is provided between the frame (11) and the ribbon cable holder (151).

7. The frying basket production line with auxiliary handling function according to claim 6, characterized in that... The frame (11) is provided with a transverse connecting rod (111), and the cable tray (151) is rotatably sleeved on the transverse connecting rod (111) and can move along the transverse connecting rod (111); the separation mechanism (16) includes an opening slot provided on the cable tray (151), and the opening slot is provided with a thread that meshes with the lead screw (1521). The separation mechanism (16) also includes a separation cylinder that can drive the thread of the opening slot to separate from the lead screw (1521).

8. The frying basket production line with auxiliary handling function according to claim 7, characterized in that... A guide structure (18) is provided between the frame (11) and the cable tray (151). The guide structure (18) includes a guide rail (181) on the frame (11) and a roller (182) that can slide along the guide rail (181) is rotatably connected to the cable tray (151).

9. The frying basket production line with auxiliary handling function according to claim 7, characterized in that... The frame (11) is provided with a limiting structure (19) that ensures that the cable tray (151) is in a set position when the cable tray (151) is reset.

10. A frying basket production line with auxiliary handling function according to claim 9, characterized in that... The limiting structure (19) is an adjusting limiting screw connected to the frame (11). By adjusting the limiting screw, the set position of the cable tray (151) when it is reset can be adjusted, so as to adapt to the frame of different types and specifications of frying baskets.