Stainless steel workbench with automatic feeding function

Through the conveyor belt and motor-driven feeding mechanism, combined with the transfer mechanism and annular groove slide system, the problem of stainless steel workbench not being able to be loaded automatically is solved, and efficient and safe material transportation and position adjustment are achieved.

CN223133316UActive Publication Date: 2025-07-22泰州新亿恒制药机械技术有限公司
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Patent Information

Application Number
CN202422435355.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-09
Publication Date
2025-07-22
Estimated Expiration
2034-10-09

AI Technical Summary

Technical Problem

The existing stainless steel workbenches fail to achieve automated loading, resulting in inefficiency, manual loading increases costs and may cause waist health problems.

Method used

A feeding mechanism including conveyor belt and motor drive is designed, combined with the transfer mechanism and annular groove slider system to realize automatic circulating transportation and flexible adjustment of materials, reducing manual operation.

Benefits of technology

It realizes automatic loading of materials, improves production efficiency, reduces labor costs, and avoids manual operation errors and waist health risks.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223133316U_ABST
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Abstract

The utility model discloses an automatic feeding stainless steel workbench, which relates to stainless steel workbench products and comprises a circular truncated cone, and supporting legs are fixedly mounted at the bottom of the circular truncated cone at equal intervals. By the adoption of the structure, the first motor is used for driving the conveying belt and driving the feeding hopper to rotate, the feeding hopper reciprocates to enable materials to fall into the outer end of the material frame and be guided to the middle through the inclined guide plate, in the process, the materials at the bottom are automatically and circularly conveyed to the top, the equipment has the automatic feeding function, feeding convenience and production efficiency are improved, and production cost is reduced. A second motor is started to drive a gear to rotate, a sliding block is driven to slide along an annular groove, a feeding mechanism is driven to rotate, the position can be flexibly adjusted to adapt to the feeding requirements of all positions of the circular truncated cone, during feeding, a fixing base assists in reinforcing a fixing frame, a universal ball at the bottom of a supporting and fixing base rolls, the supporting and fixing capacity is kept, meanwhile, friction is reduced, and the feeding efficiency is improved. The feeding mechanism can be flexibly adjusted and is stable, and the device is more convenient to use.
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Description

Technical Field

[0001] The utility model belongs to the product of stainless steel workbench, and particularly relates to a stainless steel workbench with automatic feeding. Background Art

[0002] The stainless steel workbench is mainly made of stainless steel material with elaborate craftsmanship. It has a beautiful and generous appearance and good hygiene conditions, and has excellent corrosion resistance, being able to effectively resist both acidic and alkaline substances. At the same time, it also has excellent characteristics of dust prevention and anti-static, and can strongly inhibit the growth and reproduction of bacteria. In the current industrial environment, it has become the most ideal workbench choice in all walks of life, with a very wide range of applications, covering various industries such as inspection work, equipment maintenance, and product assembly. In practical applications, it can make the factory environment cleaner and more orderly, make production arrangements easier, and make logistics transportation smoother and more efficient. It can well meet the needs of continuous improvement and optimization of modern production, and fully conforms to the ergonomic principle in design, ensuring that on-site workers can operate in accordance with standard specifications and enjoy a comfortable experience, so that the ideas and creativity for the working environment can be quickly transformed into reality. In addition, this workbench also has remarkable characteristics such as being light and easy to move, strong and durable, with a clean, smooth and extremely wear-resistant surface;

[0003] The Chinese patent with the publication number of "CN215617956U" discloses an adjustable stainless steel workbench, which includes a work board. The bottom corners of the outer wall of the work board are fixedly provided with telescopic rods. A fixed cylinder is sleeved on the outer wall of each telescopic rod near the bottom edge. A support rod is embedded on the back of the outer wall of every two fixed cylinders. For this adjustable stainless steel workbench, by rotating the rod and the worm to drive the worm wheel to rotate, the folding rod can lift the telescopic rod, and the height of the stainless steel workbench can be adjusted, avoiding inconvenience for workers when operating on the stainless steel workbench and affecting the work efficiency of workers. For this adjustable stainless steel workbench, by moving the cleaning rod in the sliding hole, the cleaning sponge cylinder can move on the work board, and the water stains and dust on the stainless steel workbench can be wiped off, avoiding the formation of dirt on the workbench surface and forming spot-like black dots, which will affect the beauty and service life of the stainless steel workbench;

[0004] During the actual application of the above device, although it can assist in adjusting relevant operations to a certain extent, the existing workbench performs poorly in terms of overall auxiliary functions. Specifically, the existing workbench does not have the function of automatic feeding during use. In the processing process, generally, the processing materials stored on the ground need to be transferred to the workbench by manual handling before subsequent operation and production processing can be carried out. From the perspective of production scale, on the one hand, if it is in the scenario of large-scale production, obviously, the use of manual feeding will lead to extremely low production efficiency, and from the perspective of cost consideration, manual feeding will greatly increase the overall cost. On the other hand, manual feeding requires operators to constantly bend down, and this repetitive bending action is very likely to cause discomfort to the human waist during the overall operation process, such as causing waist fatigue, soreness, or even more serious waist injuries. Considering all the above factors, it can be seen that the existing stainless steel workbench does have certain defects. Based on this, it is particularly necessary to improve it. Summary of the Invention

[0005] Aiming at the problems mentioned in the background technology, the purpose of the present utility model is to provide a stainless steel workbench with automatic feeding to solve the problems raised in the background technology.

[0006] The above technical purpose of the present utility model is achieved through the following technical solutions:

[0007] A stainless steel workbench with automatic feeding includes a round table. The bottom of the round table is fixedly installed with support legs at equal intervals. A transfer mechanism is arranged outside the round table. An installation frame is fixedly installed outside the transfer mechanism. An upper feeding mechanism is fixedly installed outside the installation frame.

[0008] The upper feeding mechanism includes a fixed frame. The fixed frame is fixedly installed outside the installation frame. A conveyor belt is rotatably connected inside the fixed frame. Upper feeding hoppers are fixedly installed at equal intervals on the outer side of the conveyor belt. A first motor is fixedly installed at the upper end of one side of the fixed frame. The output end of the first motor is connected to the rotating shaft at one end inside the conveyor belt. The first motor is used to drive the conveyor belt. Both the fixed frame and the conveyor belt are arranged in an inclined shape from bottom to top towards the position of the round table.

[0009] As a preferred technical solution, the transfer mechanism includes an annular groove and a driving component. The annular groove is opened outside the round table. A slider is slidably connected to the inner side of the annular groove. The top view shape of the slider is arc-shaped. An installation frame is fixedly installed outside the slider. The driving component is fixedly installed at the bottom of the installation frame.

[0010] As a preferred technical solution, the driving assembly includes a chassis and a toothed ring. The chassis is fixedly installed on the outer side of the installation frame and at the lower end of the installation bracket. A second motor is fixedly connected to the bottom of the chassis. The output end of the second motor is fixedly connected to a gear. The toothed ring is fixedly installed on the outer side of the bottom of the frustum. The toothed ring and the gear are meshed and connected.

[0011] As a preferred technical solution, the overall cross-sectional shapes of the slider and the inner wall of the chute are both set to a convex shape. Wear-resistant gaskets are fixedly connected to the outer surface of the slider and the inner wall of the chute.

[0012] As a preferred technical solution, support frames are fixedly connected to both sides of the fixed frame away from the lower end of the frustum. Support seats are fixedly installed at the bottoms of the support frames. Universal balls are rotatably connected to both sides of the bottoms of the support seats.

[0013] As a preferred technical solution, anti-slip foot pads are fixedly installed at the bottoms of the support legs. The outer edges of the support legs and the frustum are both set to be arc-shaped.

[0014] As a preferred technical solution, a material frame is fixedly installed at the top of the installation frame. The top view shape of the material frame is convex. An inclined guide plate is fixedly connected to the outer end of the interior of the material frame.

[0015] In summary, the present utility model mainly has the following beneficial effects:

[0016] First, during the use of this device, the material is placed in the bottom hopper of the conveyor belt. The first motor is started to drive the conveyor belt, driving the hopper to rotate. The reciprocating movement of the hopper causes the material to fall into the outer end of the material frame and is guided to the middle through the inclined guide plate. This process realizes the automatic circulation of the bottom material to the top. The device has an automatic feeding function, improves the feeding convenience and production efficiency, and enhances the practicality and application prospect of the device.

[0017] Second, when this device is in use, the second motor is started. Since the gear at its end is meshed with the rack, the rotation of the motor drives the gear to rotate, driving the slider to slide along the annular groove and driving the feeding mechanism to rotate. The position can be flexibly adjusted to adapt to the feeding requirements at various positions of the frustum. During feeding, the fixing seat assists in strengthening the fixed frame, and the universal balls at the bottom of the support seat roll, reducing friction while maintaining the support ability, making the feeding mechanism flexible to adjust and stable, and making the device more convenient to use. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 is the overall structural schematic diagram of the present utility model;

[0019] Figure 2 is the top view structural schematic diagram of the present utility model;

[0020] Figure 3 is the bottom view structural schematic diagram of the present utility model;

[0021] Figure 4 This is a schematic structural diagram of the feeding mechanism and the transfer mechanism of the present utility model.

[0022] Reference numerals: 1, frustum; 2, support leg; 3, transfer mechanism; 31, annular groove; 32, drive assembly; 321, chassis; 322, toothed ring; 323, second motor; 324, gear; 33, slider; 34, mounting frame; 35, material frame; 36, inclined guide plate; 4, mounting bracket; 5, feeding mechanism; 51, fixed frame; 52, conveyor belt; 53, feeding hopper; 54, first motor; 55, support frame; 56, support seat; 57, universal ball; 6, anti-slip foot pad. Detailed implementation manners

[0023] Embodiment

[0024] Reference Figures 1 to 4 , an automated feeding stainless steel workbench in this embodiment includes a frustum 1, support legs 2 are fixedly installed at equal intervals at the bottom of the frustum 1, a transfer mechanism 3 is arranged outside the frustum 1, a mounting bracket 4 is fixedly installed outside the transfer mechanism 3, and a feeding mechanism 5 is fixedly installed outside the mounting bracket 4;

[0025] The feeding mechanism 5 includes a fixed frame 51, the fixed frame 51 is fixedly installed outside the mounting bracket 4, a conveyor belt 52 is rotatably connected inside the fixed frame 51, feeding hoppers 53 are fixedly installed at equal intervals on the outside of the conveyor belt 52, a first motor 54 is fixedly installed at the upper end of one side of the fixed frame 51, and the output end of the first motor 54 is connected to the rotating shaft at one end inside the conveyor belt 52. The first motor 54 is used to drive the conveyor belt 52. Both the fixed frame 51 and the conveyor belt 52 are arranged obliquely from bottom to top towards the position of the frustum 1. The transfer mechanism 3 cooperates with the mounting bracket 4 and the feeding mechanism 5 to flexibly adjust the feeding position to meet different production requirements. In the feeding mechanism 5, the first motor 54 drives the conveyor belt 52 to operate, and the equally spaced feeding hoppers 53 can transport materials in an orderly manner. Moreover, the fixed frame 51 and the conveyor belt 52 are arranged obliquely, which is beneficial to the upward transportation of materials from bottom to top. This design enables the automatic feeding of materials, eliminating the need for manual handling, improving the feeding efficiency, reducing the labor cost, and at the same time avoiding the errors and safety hazards that may be brought by manual operations.

[0026] Reference Figures 1 - 3, the transfer mechanism 3 includes an annular groove 31 and a driving component 32. The annular groove 31 is opened on the outer side of the frustum 1. A slider 33 is slidably connected to the inner side of the annular groove 31. The top view shape of the slider 33 is arc-shaped. An installation frame 34 is fixedly installed on the outer side of the slider 33. The installation bracket 4 is fixedly installed on the outer side of the installation frame 34. The driving component 32 is fixedly installed at the bottom of the installation frame 34. The driving component 32 includes a bottom frame 321 and a gear ring 322. The bottom frame 321 is fixedly installed on the outer side of the installation frame 34 and is located at the lower end of the installation bracket 4. A second motor 323 is fixedly connected to the bottom of the bottom frame 321. The output end of the second motor 323 is fixedly connected to a gear 324. The gear ring 322 is fixedly installed on the outer bottom side of the frustum 1. The gear ring 322 and the gear 324 are meshed and connected. The overall cross-sectional shapes of the slider 33 and the inner wall of the chute are both set to be convex-shaped. Wear-resistant gaskets are fixedly connected to the outer surface of the slider 33 and the inner wall of the chute. The design of the annular groove 31 and the arc-shaped slider 33, in cooperation with the installation frame 34, provides a basis for the flexible movement of the feeding mechanism 5. In the driving component 32, the second motor 323 drives the gear 324 to mesh with the gear ring 322, which can accurately control the movement of the installation frame 34 and the feeding mechanism 5, enabling the feeding mechanism 5 to rotate on the outer side of the frustum 1 and being able to adapt to feeding at any position on the outer side of the frustum 1, which can improve the overall feeding convenience of the device. The slider 33 and the chute cross-section are set to be convex-shaped, which can ensure the stability and accuracy of the connection. The addition of wear-resistant gaskets effectively reduces the wear between the slider 33 and the chute and extends the service life of the mechanism. The overall design makes the transfer process stable, accurate and durable, meeting the requirements of high-efficiency production.

[0027] Reference Figures 1 - 4 , on both sides of the fixed frame 51 far away from the lower end of the frustum 1, support frames 55 are fixedly connected. Support seats 56 are fixedly installed at the bottoms of the support frames 55. Universal balls 57 are rotatably connected to both sides of the bottoms of the support seats 56. Anti-slip foot pads 6 are fixedly installed at the bottoms of the support legs 2. The outer edges of the support legs 2 and the frustum 1 are all set to be arc-shaped. A material frame 35 is fixedly installed at the top of the installation frame 34. The top view shape of the material frame 35 is convex-shaped. An inclined guide plate 36 is fixedly connected to the outer end of the inside of the material frame 35. The design of the support seats 56 and the universal balls 57 at the bottoms of the support frames 55 is very ingenious. The universal balls 57 can rotate flexibly, while ensuring effective support for the fixed frame 51, facilitating the position adjustment of the equipment and reducing the friction force. The anti-slip foot pads 6 at the bottoms of the support legs 2 enhance the overall stability and safety of the workbench. The outer edges of the support legs 2 and the frustum 1 are set to be arc-shaped, avoiding the risk of collision damage caused by sharp edges. The convex-shaped design of the material frame 35 makes reasonable use of space. The inclined guide plate 36 at the outer end of the inside can guide the material to slide smoothly and centrally, making the material transmission process smoother and more efficient.

[0028] Principle of use and advantages: By setting up the feeding mechanism 5, during operation, an operator can place the materials to be processed in the feeding hopper 53 at the bottom of the conveyor belt 52. Then, start the first motor 54 on the conveyor belt 52. When the motor runs, it will drive the conveyor belt 52 to start rotating. During the rotation of the conveyor belt 52 inside the fixed frame 51, it can assist in driving each feeding hopper 53 on the conveyor belt 52 to rotate along with it on the fixed frame 51. As the conveyor belt 52 continues to convey, each feeding hopper 53 will reciprocate on the fixed frame 51. When the feeding hopper 53 at the upper end flips to face the bottom, the materials inside the feeding hopper 53 will naturally fall into the outer end inside the material frame 35. And there is an inclined guide plate 36 at the outer end inside the material frame 35, which can play an auxiliary guiding role. Under its guidance, the materials inside the material frame 35 can be smoothly guided and discharged into the middle position inside the material frame 35. From the above process, it can be seen that during the production and processing of this device, it has the ability to automatically circulate and continuously transport the bottom materials to the top, which means that this equipment has an automatic feeding function. This function greatly improves the feeding convenience of this device. Through the automated circular feeding method, it can significantly improve the overall efficiency of this equipment during the production and processing process, further enhancing the practicality of this device and making it have broad prospects in future applications;

[0029] By setting up the adjustment mechanism 3, during the use of this device, if the feeding needs to be adjusted, the second motor 323 can be started to run. Since a gear 324 is installed at the end of the second motor 323 and this gear 324 is meshed with the rack, the operation of the second motor 323 can drive the gear 324 to rotate. With the rotation of the gear 324 and its meshing drive with the rack, it can reversely drive the slider 33 inside the annular groove 31 to slide circularly along the annular groove 31. This process can assist in driving the installation frame 34 and the feeding mechanism 5 outside the installation frame 34 to rotate together. The feeding mechanism 5 rotates on the turntable 1, so that the position of the feeding mechanism 5 on the turntable 1 can be flexibly adjusted. When feeding is required at any position on the turntable 1, it can be flexibly adapted and adjusted. Moreover, during the feeding process, as the fixed frame 51 moves, the fixed seat at the bottom of the support frame 55 can play an auxiliary supporting and strengthening role for the fixed frame 51. Universal balls 57 are rotatably connected to both sides of the bottom of the support seat 56. The bottoms of these universal balls 57 are in close contact with the ground. Through the rolling of the universal balls 57, it can not only maintain the supporting ability but also reduce the friction force, thereby enabling the entire feeding mechanism 5 to be flexibly adjusted according to the actual feeding requirements and ensuring strong overall stability, making this device more convenient and fast during use.

Claims

1. An automated loading stainless steel workbench, comprising a round table (1), characterized in that: The bottom of the frustum (1) is fixedly installed with support legs (2) at equal intervals. A displacement adjustment mechanism (3) is arranged outside the frustum (1). An installation frame (4) is fixedly installed outside the displacement adjustment mechanism (3). A feeding mechanism (5) is fixedly installed outside the installation frame (4). The feeding mechanism (5) includes a fixed frame (51). The fixed frame (51) is fixedly installed outside the installation frame (4). A conveyor belt (52) is rotatably connected inside the fixed frame (51). Feeding hoppers (53) are fixedly installed at equal intervals on the outer side of the conveyor belt (52). A first motor (54) is fixedly installed at the upper end of one side of the fixed frame (51). The output end of the first motor (54) is connected to the rotating shaft at one end inside the conveyor belt (52). The first motor (54) is used to drive the conveyor belt (52). Both the fixed frame (51) and the conveyor belt (52) are arranged in an inclined shape from bottom to top towards the position of the frustum (1).

2. The automated loading stainless steel workbench according to claim 1, wherein: The displacement adjustment mechanism (3) includes an annular groove (31) and a driving component (32). The annular groove (31) is opened on the outer side of the frustum (1). A slider (33) is slidably connected inside the annular groove (31). The top view shape of the slider (33) is arc-shaped. An installation frame (34) is fixedly installed on the outer side of the slider (33). The installation frame (4) is fixedly installed outside the installation frame (34). The driving component (32) is fixedly installed at the bottom of the installation frame (34).

3. The stainless steel workbench for automatic feeding according to claim 2, characterized in that: The driving component (32) includes a bottom frame (321) and a toothed ring (322). The bottom frame (321) is fixedly installed outside the installation frame (34) and is located at the lower end of the installation frame (4). A second motor (323) is fixedly connected to the bottom of the bottom frame (321). The output end of the second motor (323) is fixedly connected to a gear (324). The toothed ring (322) is fixedly installed on the outer side of the bottom of the frustum (1). The toothed ring (322) is meshed with the gear (324).

4. The stainless steel workbench for automatic feeding according to claim 3, characterized in that: The overall cross-sectional shapes of the slider (33) and the inner wall of the chute are both set to be convex-shaped. Wear-resistant gaskets are fixedly connected to the outer surface of the slider (33) and the inner wall of the chute.

5. An automated loading stainless steel workbench according to claim 1, characterized in that: Support frames (55) are fixedly connected to the lower ends of both sides of the fixed frame (51) away from the frustum (1). Support seats (56) are fixedly installed at the bottoms of the support frames (55). Universal balls (57) are rotatably connected to both sides of the bottoms of the support seats (56).

6. The automated loading stainless steel workbench according to claim 5, characterized in that: Anti-slip foot pads (6) are fixedly installed at the bottoms of the support legs (2). The outer edges of the support legs (2) and the frustum (1) are all set to be arc-shaped.

7. An automated loading stainless steel workbench according to claim 4, characterized in that: A material frame (35) is fixedly installed at the top of the installation frame (34). The top view shape of the material frame (35) is convex-shaped. An inclined guide plate (36) is fixedly connected to the outer end inside the material frame (35).