Mustard pipe feeding machine

By designing a mustard tube loader and utilizing a storage bin, a feeding mechanism, and a pushing mechanism to realize the automatic insertion of mustard tubes, the problem of low efficiency of manual loading is solved, and production efficiency and product quality are improved.

CN223466600UActive Publication Date: 2025-10-24ZHONGSHAN MEITU IND LTD
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Patent Information

Application Number
CN202423001444.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-05
Publication Date
2025-10-24
Estimated Expiration
2034-12-05

AI Technical Summary

Technical Problem

The existing mustard tube production process relies on manual loading, resulting in low efficiency, unguaranteed product quality, and safety hazards.

Method used

A mustard tube loading machine is designed, which includes a storage bin, a feeding mechanism, a loading plate, a first pushing mechanism and a second pushing mechanism. The mustard tube body is automatically inserted into the mold in a mechanized manner, and is pushed and ejected side by side. Combined with the design of multiple rows of penetration holes, efficient insertion and ejection are ensured.

Benefits of technology

The automation of mustard tube production has been achieved, production efficiency has been improved, and the consistency and safety of product quality have been ensured.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a mustard pipe feeding machine which is provided with a storage bin, feeding mechanisms, a feeding plate, a first pushing mechanism and a second pushing mechanism, during production, all the mechanisms are matched with one another, mustard pipe bodies fall into the multiple side-by-side feeding mechanisms from the storage bin correspondingly, and the mustard pipe bodies are fed into the feeding mechanisms; the multiple side-by-side feeding mechanisms drive the multiple mustard pipe bodies to move forwards to the output end at the same time, the first pushing mechanisms are located at the output ends of the feeding mechanisms, the mustard pipe bodies located at the output ends are lifted upwards at the same time, and the lifting height is just equal to the position of penetrating holes in the bottommost line or the uppermost line of a feeding plate; then a second material pushing mechanism pushes the mustard pipe bodies side by side into the current penetrating holes of the feeding plate, the actions are repeated until all the penetrating holes in the feeding plate are completely inserted, then the feeding plate moves to the position of the second material pushing mechanism, the second material pushing mechanism is inserted into the multiple penetrating holes to push out the multiple mustard pipe bodies at the same time, and the mustard pipe bodies are pushed out at the same time; the machining efficiency can be improved, and the machining quality is guaranteed.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to mustard tube production technical field, especially relate to a mustard tube feeding machine. BACKGROUND

[0002] Mustard tube includes the tube body and the tube head, needs to insert the tube body into the mould acupoint of injection molding machine one by one in the production process, through injection tube head, completes the forming of tube body and tube head, the existing production process is basically through the hand one by one and places the tube body into the mould acupoint of injection molding machine, and the production efficiency is low, and the personnel is more, and there is hidden danger, also can not guarantee the product quality. UTILITY MODEL CONTENTS

[0003] (I) Utility model purpose

[0004] In order to overcome above insufficient, the utility model discloses a mustard tube feeding machine to solve the technical problem that the existing production is seriously dependent on manual work, leads to low efficiency, product can not guarantee uniformity, can not guarantee product quality.

[0005] (II) Technical scheme

[0006] To achieve the above object, the technical scheme provided by the present application is as follows:

[0007] A mustard tube feeding machine, comprising: a rack, a storage bin for storing and outputting multiple mustard tube bodies side by side is arranged above the rack, multiple feeding mechanisms are arranged side by side and rotatably on the rack, correspond to the storage bin respectively, for receiving the mustard tube bodies output from the storage bin and driving the mustard tube bodies to move forward side by side, a feeding plate is arranged downstream of the feeding mechanisms and can be raised and lowered, multiple rows of side-by-side penetration holes are formed on the feeding plate, the penetration holes are open at both ends, a first pushing mechanism is arranged between the output ends of the multiple feeding mechanisms and the feeding plate and can move forward and backward, which can lift the mustard tube bodies at the output ends of the feeding mechanisms upward and push the multiple mustard tube bodies into the penetration holes of the feeding plate side by side, a second pushing mechanism is arranged on the rack and can move forward and backward, which can push the multiple mustard tube bodies forward simultaneously after the penetration holes of the feeding plate are all filled with the mustard tube bodies;

[0008] The application sets the storage bin, the feeding mechanism, the feeding plate, the first pushing mechanism and the second pushing mechanism, the feeding plate is provided with multiple rows of penetrating holes, each row of penetrating holes comprises multiple penetrating holes arranged side by side, during production, the mechanisms cooperate with each other, the mustard tube bodies fall from the storage bin into multiple feeding mechanisms arranged side by side, the multiple feeding mechanisms drive the multiple mustard tube bodies to move forward to the output end at the same time, the first pushing mechanism is located at the output end of the feeding mechanism and can lift the mustard tube bodies at the output end upward at the same time, the lifting height is just the position of the penetrating holes of the lowermost or uppermost row of the feeding plate, then the second pushing mechanism pushes the side-by-side mustard tube bodies into the current penetrating holes of the feeding plate, when the penetrating holes of one row are inserted, the feeding plate is lowered or raised by one height, the first pushing mechanism repeats the above-mentioned action until all the penetrating holes of the feeding plate are completely inserted, then the feeding plate moves to the position of the second pushing mechanism, the second pushing mechanism is inserted into the multiple penetrating holes and pushes the multiple mustard tube bodies out to the transfer plate (which has the same structure as the feeding plate) at the same time, and the multiple mustard tube bodies are sleeved on the multiple mustard tube heads by the transfer plate, the whole process is mechanized operation, and the processing efficiency can be improved and the processing quality can be ensured.

[0009] In some embodiments, each feeding mechanism is a conveying belt assembly.

[0010] In some embodiments, multiple V-shaped discharge ports corresponding to the feeding mechanisms are arranged side by side at the lower end of the storage bin.

[0011] In some embodiments, the first pushing mechanism comprises a lifting block assembly arranged at the output end of the feeding mechanism and capable of lifting the mustard tube bodies upward and a first pushing cylinder arranged vertically to the lifting block assembly and used for pushing the mustard tube bodies on the lifting block assembly into the penetrating holes.

[0012] In some embodiments, the second pushing mechanism comprises a pushing plate and a second pushing cylinder connected to the pushing plate, wherein the pushing plate is provided with second pushing rods corresponding in number and position to the penetrating holes. BRIEF DESCRIPTION OF DRAWINGS

[0013] Figure 1 is a structural schematic view of a mustard tube feeding machine in a first perspective according to the present application;

[0014] Figure 2 is a structural schematic view of a mustard tube feeding machine in a second perspective according to the present application;

[0015] Figure 3 is a structural schematic view of a mustard tube feeding machine in a third perspective according to the present application;

[0016] Figure 4 is an assembly view of a feeding mechanism and a storage bin of a mustard tube feeding machine according to the present application;

[0017] Figure 5 is the first pushing mechanism structure diagram of mustard tube feeding machine in the utility model;

[0018] Figure 6 is the second pushing mechanism structure diagram of mustard tube feeding machine in the utility model;

[0019] Figure 7 is the structure diagram of the feeding plate of mustard tube feeding machine in the utility model.

[0020] Reference signs:

[0021] 1, storage bin; 101, discharge port; 2, feeding mechanism; 201, conveying belt assembly; 3, first pushing mechanism; 301, lifting block; 302, first pushing rod; 303, first pushing cylinder; 4, second pushing mechanism; 401, pushing plate; 402, second pushing cylinder; 403, second pushing rod; 5, feeding plate; 501, through hole; 502, mounting frame; 503, screw rod; 504, motor; 6, mustard tube body. DETAILED DESCRIPTION

[0022] To make the purpose, technical scheme and advantages of the utility model more clear and obvious, the utility model is further explained in detail below in combination with specific implementation manners and with reference to the drawings. It should be understood that these descriptions are only exemplary and are not intended to limit the scope of the utility model. In addition, in the following description, the description of known structures and technologies is omitted to avoid unnecessary confusion of the concept of the utility model.

[0023] The utility model provides a kind of mustard tube feeding machine, comprising: rack, be set in the storage bin 1 for storing and the side-by-side output multiple mustard tube body 6 of upper rack, multiple feeding mechanism 2 are set on the rack and can rotate, for receiving multiple mustard tube body 6 from the output of storage bin 1 and drive mustard tube body 6 and side-by-side forward movement, feeding plate 5 is set in the downstream of feeding mechanism 2 and can be raised and lowered, multiple rows of side-by-side through holes 501 are opened on it, through hole 501 both ends opening, first pushing mechanism 3 can be forward and backward movably set between the output end of multiple feeding mechanism 2 and feeding plate 5, can be lifted up to the mustard tube body 6 in the output end of feeding mechanism 2 and multiple mustard tube body 6 is pushed into the through hole 501 of feeding plate 5 side-by-side, second pushing mechanism 4 can be forward and backward movably set on the rack, can be inserted into the through hole 501 after all being inserted in the through hole 501 of feeding plate 5 with mustard tube body 6 and multiple mustard tube body 6 is pushed out forward simultaneously;

[0024] Specifically, the through hole 501 of feeding plate 5 is multiple rows, and multiple through holes 501 are arranged side by side in each row, forming a matrix shape.

[0025] Specifically, during production, the mustard tube body 6 falls from the storage bin 1 into the plurality of side-by-side feeding mechanisms 2, and the plurality of side-by-side feeding mechanisms 2 drive the plurality of mustard tube bodies 6 to move forward to the output end at the same time. The first pushing mechanism 3 is located at the output end of the feeding mechanism 2, and the first pushing mechanism 3 lifts the mustard tube body 6 at the output end upward at the same time, and the lifting height is just the lowermost or uppermost row of the insertion hole 501 of the feeding plate 5. Then the second pushing mechanism 4 pushes the side-by-side mustard tube body 6 into the insertion hole 501 of the current feeding plate 5, and when the insertion of the insertion hole 501 of a row is completed, the feeding plate 5 is lowered or raised by one height, and the first pushing mechanism 3 repeats the above-mentioned action until all the insertion holes 501 in the feeding plate 5 are completely inserted. Specifically, the feeding machine is used with the first transfer plate (which has the same structure as the feeding plate 5) and the second transfer plate (which has the same structure as the feeding plate 5). When all the insertion holes 501 in the feeding plate 5 are completely inserted, the feeding plate 5 moves to the position of the second pushing mechanism 4, and the first transfer plate moves to the position corresponding to the feeding plate 5 at the same time. The second pushing mechanism 4 inserts into the plurality of insertion holes 501 to push the plurality of mustard tube bodies 6 into the insertion holes of the first transfer plate at the same time, and the same number of mustard tube heads are fixed in the insertion holes of the second transfer plate in advance. The first transfer plate drives the plurality of mustard tube bodies 6 to move to the position of the second transfer plate and sleeves the mustard tube body 6 into the mustard tube head, and then the second transfer plate sends the assembled mustard tube body 6 into the mold of the injection molding machine, so that the mustard tube body 6 and the mustard tube head are formed together.

[0026] Specifically, each feeding mechanism 2 is a transmission belt assembly 201, and each transmission belt assembly 201 includes a transmission belt and a rotating wheel sleeved at both ends of the transmission belt and driving the transmission belt to rotate.

[0027] Specifically, the storage bin 1 is provided with a plurality of discharge ports 101 at the lower end, and each discharge port 101 is provided corresponding to a transmission belt assembly 201. The discharge port 101 is a V-shaped structure, which can continue to fall into a new mustard tube body 6 in the transmission belt assembly 201 after the previous mustard tube body 6 is moved forward by the transmission belt assembly 201.

[0028] Specifically, the first pushing mechanism 3 comprises a lifting block assembly and a first pushing cylinder 303 vertically arranged on the lifting block assembly, the lifting block assembly comprises a long strip-shaped fixed plate, a plurality of lifting blocks 301 are arranged on the fixed plate in parallel, the upper end surface of the lifting block 301 is V-shaped and can fix the mustard tube body 6, the fixed plate is connected with the cylinder, since the lifting block 301 corresponds to the output end of the conveying belt assembly 201, when the mustard tube body 6 is output from the output end of the conveying belt assembly 201 to the lifting block 301, the cylinder connected with the fixed plate is started to drive the plurality of lifting blocks 301 to rise simultaneously and correspond to the first pushing cylinder 303, the driving end of the first pushing cylinder 303 is provided with a connecting plate and a plurality of first pushing rods 302 arranged on the connecting plate, the first pushing cylinder 303 can drive the plurality of first pushing rods 302 to move forward simultaneously, so that the plurality of mustard tube bodies 6 are simultaneously pushed into the penetrating holes 501 of the feeding plate 5, the first pushing cylinder 303 can be provided with one to simultaneously push the plurality of mustard tube bodies 6, or can be provided with a plurality of first pushing cylinders 303 to respectively push the corresponding mustard tube bodies 6.

[0029] Specifically, the second pushing mechanism 4 comprises a pushing plate 401 and a second pushing cylinder 402 connected with the pushing plate 401, wherein the pushing plate 401 is provided with a plurality of second pushing rods 403 corresponding in number and position to the penetrating holes 501.

[0030] Specifically, the feeding plate 5 is installed on the mounting frame 502 and is slidably connected with the mounting frame 502 through sliding blocks, the feeding plate 5 is provided with a lead screw 503, the lead screw 503 is threadedly connected with the feeding plate 5 and is connected with a motor 504, the motor 504 can drive the lead screw 503 to rotate, so that the feeding plate 5 is driven to move up and down.

[0031] It should be understood that the above specific embodiments of the present application are only used for illustrative or explanatory purposes of the principles of the present application, and do not constitute a limitation on the present application. Therefore, any modification, equivalent replacement, improvement, etc. made without departing from the spirit and scope of the present application shall be included in the protection scope of the present application. In addition, the appended claims of the present application are intended to cover all changes and modifications falling within the scope and boundary of the appended claims, or the equivalent forms of such scope and boundary.

Claims

1. A mustard tube feeder, characterized by, The application relates to a mustard tube body feeding device, which comprises the following parts: a rack, a storage bin (1) arranged above the rack and used for storing and outputting a plurality of mustard tube bodies (6) side by side, a plurality of feeding mechanisms (2) arranged side by side and rotatably on the rack and corresponding to the storage bin (1) respectively, used for receiving the mustard tube bodies (6) output from the storage bin (1) and driving the mustard tube bodies (6) to move forward side by side, an upper feeding plate (5) arranged downstream of the feeding mechanisms (2) and capable of ascending and descending, which is provided with a plurality of rows of side-by-side penetrating holes (501) and the penetrating holes (501) are open at both ends, a first pushing mechanism (3) arranged between the output ends of the feeding mechanisms (2) and the upper feeding plate (5) and capable of moving forward and backward, which can lift the mustard tube bodies (6) at the output ends of the feeding mechanisms (2) upward and push a plurality of the mustard tube bodies (6) into a row of the penetrating holes (501) of the upper feeding plate (5) side by side, and a second pushing mechanism (4) arranged on the rack and capable of moving forward and backward, which can push a plurality of the mustard tube bodies (6) out of the penetrating holes (501) simultaneously after all the penetrating holes (501) of the upper feeding plate (5) are inserted. Each of the feeding mechanisms (2) is a conveying belt assembly (201).

2. The mustard tube filler of claim 1, wherein, A plurality of V-shaped discharge ports (101) corresponding to the feeding mechanisms (2) are arranged side by side at the lower end of the storage bin (1).

3. The mustard tube filler of claim 1, wherein, The first pushing mechanism (3) comprises a lifting block assembly arranged at the output end of the feeding mechanism (2) and capable of ascending and descending, used for lifting the mustard tube bodies (6), and a first pushing cylinder (303) arranged vertically to the lifting block assembly and used for pushing the mustard tube bodies (6) on the lifting block assembly into the penetrating holes (501).

4. The mustard tube filler of claim 1, wherein, The second pushing mechanism (4) comprises a pushing plate (401) and a second pushing cylinder (402) connected to the pushing plate (401), wherein the pushing plate (401) is provided with a plurality of second pushing rods (403) corresponding in number and position to the penetrating holes (501).

5. The mustard tube filler of claim 1 wherein, ​