Material barrel transfer vehicle for seasoning production

By designing a material barrel transfer truck for seasoning production, the linear hydraulic cylinder and connecting rod mechanism are used to realize the automatic clamping and movement of the material barrel, which solves the problem of time-consuming and labor-intensive transfer of material barrels and improves production efficiency.

CN223059053UActive Publication Date: 2025-07-04NUOGAOMEI BIOTECHNOLOGY (CHENGDU) CO LTD
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Patent Information

Application Number
CN202422478386.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-14
Publication Date
2025-07-04
Estimated Expiration
2034-10-14

AI Technical Summary

Technical Problem

The transfer of material barrels in the production of existing seasonings is time-consuming and laborious and has safety risks. Especially during large-scale production, manual operations are difficult to complete efficiently.

Method used

A material barrel transfer vehicle for seasoning production is designed, using a mobile control unit, a trolley, a transfer unit and a clamping unit, and the automatic clamping and movement of the material barrel is achieved through a linear hydraulic cylinder and a connecting rod mechanism.

Benefits of technology

It realizes automatic transfer of material barrels, improves production efficiency, saves manpower, and reduces safety hazards.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a material barrel transfer vehicle for seasoning production. The material barrel transfer vehicle comprises a moving control unit, a transfer unit and a clamping unit. The moving control unit comprises a trolley, a T-shaped handle is arranged above the trolley, and a control mechanism is arranged on the outer side face of the T-shaped handle. The transfer unit is arranged at the upper end of the moving control unit and comprises a first linear mechanism, and a second linear mechanism is vertically arranged at one end of an output shaft of the first linear mechanism. The clamping unit is arranged below the output end of the second linear mechanism and comprises a pair of vertically-arranged third linear mechanisms and two pairs of C-shaped sliding grooves located in the sides below the two third linear mechanisms correspondingly, lifting plates are arranged at the lower ends of output shafts of the third linear mechanisms correspondingly, and arc-shaped clamping blocks are arranged on the opposite faces of the two lifting plates correspondingly. A connecting rod mechanism is arranged between the lifting plate and the transverse moving plate, an L-shaped clamp is arranged at one end of the transverse moving plate, and a shovel plate is arranged at one end of the transverse portion of the L-shaped clamp. The material barrel can be automatically put on or put down the trolley, the seasoning production efficiency can be improved, and manpower is saved.
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Description

Technical Field

[0001] The utility model relates to the field of auxiliary equipment for condiment production, in particular to a material bucket transfer cart for seasoning production. Background Technique

[0002] When conducting seasoning production, multiple processes involve the transfer of material buckets, which usually include: transferring raw materials from the storage area to the batching area, adding the raw materials into the batching and stirring equipment for mixing and stirring, moving the produced seasonings to the packaging area for preparation of packaging, transferring the material buckets filled with seasonings to the inspection area for sampling for finished product inspection, transferring the material buckets to the cleaning area for cleaning, etc.

[0003] When conducting large-scale production, relatively large and heavy material buckets are usually used. If the buckets are filled with materials, the weight is even greater. Currently, the method of manually lifting and lowering the material buckets onto and off the trolley is time-consuming and laborious, and the material buckets are prone to tipping over, with certain potential safety hazards. Content of the Utility Model

[0004] In view of the above defects, the utility model provides a material bucket transfer cart for seasoning production, which can automatically place or remove the material bucket onto or off the trolley, improve the production efficiency of seasonings, and save labor.

[0005] In order to achieve the purpose of the utility model, the following technology is proposed:

[0006] A material bucket transfer cart for seasoning production includes:

[0007] A mobile control unit, including a trolley, with a T-shaped handle provided above the trolley, and a control mechanism provided on the outer side of the T-shaped handle;

[0008] A transfer unit is provided at the upper end of the mobile control unit, including a first linear mechanism, with a second linear mechanism vertically provided at one end of its output shaft. Both the first linear mechanism and the second linear mechanism are electrically connected to the control mechanism;

[0009] A clamping unit is provided below the output end of the second linear mechanism, including a pair of third linear mechanisms that are vertically arranged and electrically connected to the control mechanism, and two pairs of C-shaped chutes respectively located on one side below the two third linear mechanisms. The lower ends of the output shafts of each third linear mechanism are provided with lifting plates. Arc-shaped clamping blocks are respectively provided on the opposite surfaces of the two lifting plates. An arc groove matching the upper end of the material bucket is opened at the lower end of the arc-shaped clamping block. An I-shaped slider is provided between each pair of C-shaped chutes. The T-shaped parts at both ends of the I-shaped slider are respectively slidably fitted in a C-shaped chute. A transverse movement plate is provided on one side of the I-shaped slider. A link mechanism is provided between the lifting plate and the transverse movement plate. When the lifting plate descends, the distance between the two transverse movement plates is reduced. One end of the transverse movement plate is provided with an L-shaped clamp, and a shovel plate is provided at one end of the horizontal part of the L-shaped clamp.

[0010] Further, an inverted L-shaped frame is provided on the upper end surface of the trolley, the T-shaped handle is arranged on one side surface of the vertical part of the inverted L-shaped frame, and the first linear mechanism is fixed on the upper end surface of the horizontal part of the inverted L-shaped frame.

[0011] Further, an n-shaped frame is provided at the lower end of the output shaft of the second linear mechanism.

[0012] Further, two third linear mechanisms are respectively fixed at two inner corner parts of the n-shaped frame.

[0013] Further, each pair of C-shaped chutes is respectively arranged at the lower ends of the two vertical parts of the n-shaped frame.

[0014] Further, a upper rotating rod penetrating through both side surfaces of the lifting plate is provided, connecting rods are respectively arranged at both ends of the upper rotating rod, a lower rotating rod penetrating through both side surfaces of the transverse moving plate is provided, and each connecting rod is fixed at one end of the lower rotating rod.

[0015] The beneficial effects of this technical solution are as follows:

[0016] After the trolley is pushed to the side of the material bucket by the moving control unit and the arc groove is located above the material bucket, the third linear mechanism can be controlled through the control mechanism, so that the arc-shaped clamping block limits the material bucket from above, and the link mechanism simultaneously drives the L-shaped clamp to limit from both sides at the lower end of the material bucket. After the material bucket is stably clamped at the four upper and lower points, the control mechanism is used to operate the transfer unit to move the material bucket onto the trolley, and then the clamping is released, so that the material bucket can be automatically placed on the trolley. Similarly, the material bucket can also be placed down from the trolley, which can save the labor and time required for seasoning production. Brief Description of the Drawings

[0017] Figure 1 Shows the overall three-dimensional view of the embodiment of the present application.

[0018] Figure 2 Shows the three-dimensional view of the n-shaped frame and the clamping unit of the embodiment of the present application.

[0019] Figure 3 Shows the partial exploded view of the clamping unit of the embodiment of the present application. Detailed Embodiment

[0020] The present application will be described in detail below with reference to the drawings and in conjunction with the embodiments. It should be noted that, without conflict, the embodiments in the present application and the features in the embodiments can be combined with each other.

[0021] As Figures 1 to 3 shown, a material bucket transfer cart for seasoning production includes a moving control unit 1, a transfer unit 2, and a clamping unit 3.

[0022] The mobile control unit 1 includes a trolley 11. On the upper end surface of the trolley 11, there is an inverted L-shaped frame 12. On one side surface of the vertical part of the inverted L-shaped frame 12, there is a T-shaped handle 13. On the outer side surface of the T-shaped handle 13, there is a control mechanism 14. Inside the control mechanism 14, there is a controller. In this embodiment, the control mechanism 14 further includes a touch screen. In other embodiments, the control mechanism 14 may not use a touch screen but use multiple buttons for control.

[0023] The transfer unit 2 is arranged above the mobile control unit 1 and includes a first linear mechanism 21 fixed to the upper end surface of the horizontal part of the inverted L-shaped frame 12. One end of the output shaft of the first linear mechanism 21 is vertically provided with a second linear mechanism 22. The lower end of the output shaft of the second linear mechanism 22 is provided with an n-shaped frame 23. The first linear mechanism 21 and the second linear mechanism 22 are both electrically connected to the control mechanism 14.

[0024] The clamping unit 3 is arranged below the output end of the second linear mechanism 22 and includes a pair of third linear mechanisms 31 fixed to the two inner angular parts of the n-shaped frame 23 and arranged vertically. The two third linear mechanisms 31 are both electrically connected to the control mechanism 14. The clamping unit 3 further includes two pairs of C-shaped chutes 35 respectively fixed to the lower ends of the two vertical parts of the n-shaped frame 23. The lower end of the output shaft of each third linear mechanism 31 is provided with a lifting plate 32. On the opposite surfaces of the two lifting plates 32, there are respectively arc-shaped clamping blocks 33. An arc groove matching the upper end part of the material bucket 4 is opened at the lower end of the arc-shaped clamping block 33. Between each pair of C-shaped chutes 35, there is respectively an I-shaped slider 36. The T-shaped parts at both ends of the I-shaped slider 36 are respectively slidably fitted in a C-shaped chute 35. On one side surface of the I-shaped slider 36, there is a transverse movement plate 37. A connecting rod mechanism is arranged between the lifting plate 32 and the transverse movement plate 37. When the lifting plate 32 descends, the distance between the two transverse movement plates 37 shrinks. Specifically, the lifting plate 32 is provided with an upper rotating rod passing through its two side surfaces. At both ends of the upper rotating rod, there are respectively connecting rods 34. The transverse movement plate 37 is provided with a lower rotating rod passing through its two side surfaces. Each connecting rod 34 is respectively fixed to one end of the lower rotating rod. One end of the transverse movement plate 37 is provided with an L-shaped clamp 38. At one end of the horizontal part of the L-shaped clamp 38, there is a shovel plate 39 for shoveling up the material bucket 4 placed on the ground.

[0025] In this embodiment, the first linear mechanism 21, the second linear mechanism 22, and the third linear mechanism 31 all adopt linear hydraulic cylinders.

[0026] The above are only the preferred embodiments of the present application and are not used to limit the present application. For those skilled in the art, the present application can have various changes and modifications. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included within the protection scope of the present application.

Claims

1. A material barrel transfer vehicle for seasoning production, characterized in that Comprising: A mobile control unit (1), including a trolley (11), with a T-shaped handle (13) provided above the trolley (11), and a control mechanism (14) provided on the outer side of the T-shaped handle (13); A transfer unit (2), provided at the upper end of the mobile control unit (1), including a first linear mechanism (21), with a second linear mechanism (22) vertically provided at one end of its output shaft. Both the first linear mechanism (21) and the second linear mechanism (22) are electrically connected to the control mechanism (14); A clamping unit (3), provided below the output end of the second linear mechanism (22), including a pair of third linear mechanisms (31) vertically arranged and both electrically connected to the control mechanism (14), and two pairs of C-shaped chutes (35) respectively located on one side below the two third linear mechanisms (31). The lower end of the output shaft of each third linear mechanism (31) is provided with a lifting plate (32). Arc-shaped clamping blocks (33) are respectively provided on the opposite surfaces of the two lifting plates (32). An arc groove matching the upper end of the material bucket (4) is provided at the lower end of the arc-shaped clamping block (33). An I-shaped slider (36) is respectively provided between each pair of C-shaped chutes (35). The T-shaped parts at both ends of the I-shaped slider (36) are respectively slidably fitted in a C-shaped chute (35). A transverse movement plate (37) is provided on one side surface of the I-shaped slider (36). A link mechanism is provided between the lifting plate (32) and the transverse movement plate (37). When the lifting plate (32) descends, the distance between the two transverse movement plates (37) shrinks. One end of the transverse movement plate (37) is provided with an L-shaped clamp (38), and a shovel plate (39) is provided at one end of the horizontal part of the L-shaped clamp (38).

2. The material barrel transfer vehicle for seasoning production according to claim 1, characterized in that, An inverted L-shaped frame (12) is provided on the upper end surface of the trolley (11). The T-shaped handle (13) is provided on one side surface of the vertical part of the inverted L-shaped frame (12). The first linear mechanism (21) is fixed on the upper end surface of the horizontal part of the inverted L-shaped frame (12).

3. The material bucket transfer vehicle for seasoning production according to claim 1, wherein, An n-shaped frame (23) is provided at the lower end of the output shaft of the second linear mechanism (22).

4. The material barrel transfer vehicle for seasoning production according to claim 3, characterized in that, The two third linear mechanisms (31) are respectively fixed at the two inner corners of the n-shaped frame (23).

5. The material bucket transfer vehicle for seasoning production according to claim 3, characterized in that, Each pair of C-shaped chutes (35) is respectively provided at the lower ends of the two vertical parts of the n-shaped frame (23).

6. The material barrel transfer vehicle for seasoning production according to claim 1, characterized in that, A upper rotating rod passing through both side surfaces of the lifting plate (32) is provided on the lifting plate (32). Link rods (34) are respectively provided at both ends of the upper rotating rod. A lower rotating rod passing through both side surfaces of the transverse movement plate (37) is provided on the transverse movement plate (37). Each link rod (34) is respectively fixed at one end of the lower rotating rod.