Turnover discharging device for powder batching equipment

By designing a flip discharge device for powder dispensing equipment, including a bracket, roller, flip ring, lifting mechanism and compression locking mechanism, the problems of lax sealing, air discharge, and material leakage in traditional flip-docking sealing equipment are solved, and the sealing and efficiency of the feed discharge process are improved.

CN222900998UActive Publication Date: 2025-05-27SHIJIAZHUANG RONGXIN SCI & TECH
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Patent Information

Application Number
CN202422402394.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-30
Publication Date
2025-05-27
Estimated Expiration
2034-09-30

AI Technical Summary

Technical Problem

Traditional flip-floping butt sealing equipment is prone to problems such as not tight pressing and opening gaps when docking with the material barrel, resulting in lax sealing, air discharge, and material leakage.

Method used

A flip-out discharge device for powder batching equipment is designed, including a bracket, a roller, a flip-out rotation ring, a matching flip-out drive mechanism, a second flip-out bracket, a lifting mechanism, a conveying mechanism, a docking discharge mechanism and a pressing locking mechanism. The device ensures the tight locking of the butt discharge mechanism by cooperating with the lifting cylinder and the locking cylinder to prevent the sealing from being tight.

Benefits of technology

It effectively solves the problems of not tight pressure during the flip and docking process, and pulling gaps with its own weight, avoids the occurrence of air leakage and material leakage, and ensures the sealing and efficiency of the material.

✦ Generated by Eureka AI based on patent content.

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    Figure CN222900998U_ABST
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Abstract

An overturning discharging device for powder batching equipment belongs to the technical field of automatic batching and comprises a support, rollers arranged at four corners of the support, overturning rotating rings arranged on the rollers and an overturning driving mechanism matched with the overturning rotating rings. The device further comprises a second overturning support arranged between the overturning rotating rings, a first overturning support arranged on the second overturning support through a lifting mechanism, and a conveying mechanism arranged on the second overturning support and used for conveying a material barrel. The butt-joint discharging mechanism is arranged on the first overturning support and used for being matched with the material barrel, and the pressing and locking mechanism is arranged between the first overturning support and the second overturning support. By improving the whole turnover discharging mechanism, the problems that pressing is not tight and gaps are pulled open due to the dead weight easily occurring in the turnover butt-joint discharging process can be solved, and the phenomena of air leakage and material leakage are avoided.
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Description

Technical Field

[0001] The utility model belongs to the technical field of automatic batching, and particularly relates to a turnover discharging device for powder batching equipment. Background Art

[0002] In powder automatic batching equipment, the turnover docking and sealing equipment is one of the essential equipment. For traditional turnover docking and sealing equipment, when docking with a material barrel, a series of problems such as insufficient pressing and self-weight pulling open the gap are likely to occur, resulting in phenomena such as poor sealing, air leakage, and material leakage. In this way, the material will run into the air, causing waste of the material and environmental pollution. Therefore, how to solve the problems of poor sealing, air leakage, and material leakage during turnover docking has become a technical problem to be solved. Summary of the Invention

[0003] The technical problem to be solved by the utility model is to provide a turnover discharging device for powder batching equipment. By improving the overall turnover discharging mechanism, problems such as insufficient pressing and self-weight pulling open the gap that are likely to occur during the turnover docking and discharging process can be solved, and the occurrence of air leakage and material leakage can be avoided.

[0004] The technical scheme adopted by the utility model is as follows: a turnover discharging device for powder batching equipment includes a bracket, rollers arranged at the four corners of the bracket, a turnover rotating ring arranged on the rollers, and a supporting turnover driving mechanism. The device further includes a second turnover bracket arranged between the turnover rotating rings, a first turnover bracket arranged on the second turnover bracket by means of a lifting mechanism, a conveying mechanism arranged on the second turnover bracket for conveying a material barrel, a docking discharging mechanism arranged on the first turnover bracket for cooperating with the material barrel, and a pressing and locking mechanism between the first turnover bracket and the second turnover bracket.

[0005] Furthermore, the docking discharging mechanism includes a conical docking discharging pipe arranged on the first turnover bracket, a valve plate arranged at the outlet of the conical docking discharging pipe, and a supporting valve plate driving mechanism.

[0006] Furthermore, the lifting mechanism includes a guiding mechanism arranged between the first turnover bracket and the second turnover bracket and a supporting lifting cylinder.

[0007] Furthermore, the guiding mechanism includes guiding sleeves arranged at the four corners of the second turnover bracket and guiding rods arranged at the bottom of the first turnover bracket in a supporting manner.

[0008] Further, the pressing and locking mechanism includes a pressing and locking mounting frame disposed on the second flipping bracket, a locking sleeve disposed on the top of the pressing and locking mounting frame, a pin shaft sleeved in the locking sleeve, two clamping blocks sleeved with the locking sleeve and used for clamping the pin shaft, a pulling block hinged to the clamping block by means of a connecting rod and having an "ㄇ" shape, and a locking cylinder connected to the pulling block and disposed at the bottom of the pressing and locking mounting frame.

[0009] Further, the lower part of the inner hole of the locking sleeve is a tapered hole.

[0010] Further, an anti-detaching structure is disposed at the bottom of the pin shaft.

[0011] Further, the upper part of the pin shaft is connected to the first flipping bracket by means of a mounting block.

[0012] Further, a positioning and blocking block for the material bucket is provided in the conveying mechanism.

[0013] The beneficial effects produced by using the present utility model: By improving the overall flipping and discharging mechanism, problems such as difficult pressing and self-weight pulling to open the gap during the flipping and docking discharging process can be solved, and the occurrence of air leakage and material leakage phenomena can be avoided. Description of the Drawings

[0014] Figure 1 is a structural schematic diagram of the present utility model;

[0015] Figure 2 is a structural schematic diagram of the pressing and locking mechanism;

[0016] Figure 3 is a sectional view of the pressing and locking mechanism;

[0017] In the drawings: 1 is a bracket, 2 is a roller, 3 is a flipping ring, 4 is a first flipping bracket, 4-1 is a mounting block, 5 is a second flipping bracket, 6 is a conveying mechanism, 7 is a material bucket, 8-1 is a tapered docking discharging pipe, 8-2 is a valve plate, 8-3 is a valve plate driving mechanism, 9-1 is a pressing and locking mounting frame, 9-2 is a locking sleeve, 9-3 is a pin shaft, 9-4 is a clamping block, 9-5 is a connecting rod, 9-6 is a pulling block, 9-7 is a locking cylinder. 10-1 is a guiding mechanism, 10-2 is a lifting cylinder. Detailed Embodiments

[0018] To make the objectives, technical solutions and advantages of the embodiments of the present utility model clearer, the technical solutions in the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present utility model.

[0019] Refer to the attached Figures 1-3The sealing and pressing device for powder batching equipment comprises a bracket 1, rollers 2 arranged at the four corners of the bracket 1, a flip ring 3 arranged on the roller 2 and a matching flip driving mechanism, the device also comprises a second flip bracket 5 arranged between the flip rings 3, a first flip bracket 4 arranged on the second flip bracket 5 by means of a lifting mechanism, a conveying mechanism 6 arranged on the second flip bracket 5 and used for conveying a material barrel 7, a docking and discharging mechanism arranged on the first flip bracket 4 for cooperating with the material barrel 7, and a pressing and locking mechanism between the first flip bracket 4 and the second flip bracket 5.

[0020] The docking discharge mechanism includes a conical docking discharge pipe 8-1 arranged on the first flip bracket 4, a valve plate 8-2 arranged at the outlet of the conical docking discharge pipe 8-1, and a matching valve plate driving mechanism 8-3.

[0021] The lifting mechanism includes a guide mechanism 10-1 and a matching lifting cylinder 10-2 arranged between the first flip bracket 4 and the second flip bracket 5. The guide mechanism 10-1 includes guide sleeves arranged at the four corners of the second flip bracket 5 and a guide rod matched with the bottom of the first flip bracket 4.

[0022] The clamping and locking mechanism includes a clamping and locking mounting frame 9-1 arranged on the second flip bracket 5, a locking sleeve 9-2 arranged on the top of the clamping and locking mounting frame 9-1, a pin shaft 9-3 sleeved in the locking sleeve 9-2, two clamping blocks 9-4 sleeved with the locking sleeve 9-2 and used to clamp the pin shaft 9-3, a pull block 9-6 in the shape of a "ㄇ" which is hingedly arranged with the clamping block 9-4 by means of a connecting rod 9-5, and a locking cylinder 9-7 connected to the pull block 9-6 and arranged at the bottom of the clamping and locking mounting frame 9-1. The lower part of the inner hole of the locking sleeve 9-2 is a tapered hole. The bottom of the pin shaft 9-3 is provided with an anti-slip structure. The upper part of the pin shaft 9-3 is connected to the first flip bracket 4 by means of a mounting block 4-1. A positioning blocking block for the material barrel 7 is provided in the conveying mechanism 6.

[0023] In specific implementation, after the material barrel 7 is positioned on the conveying mechanism 6 , the material barrel 7 is opened, and the conical docking discharge pipe 8 - 1 is docked with the material barrel 7 by means of the lifting cylinder 10 - 2 .

[0024] The first flip bracket 4 drives the pin 9-5 down to the lowest position, the locking cylinder 9-7 extends, pushes the pull block 9-6 to drive the clamping block 9-4 to hold the pin 9-5 tightly; after holding tightly, the flip drive mechanism is started to drive the flip ring 3 to rotate, flip the material barrel 7 180 degrees, and after it is in place, the valve plate 8-2 opens and starts unloading. After unloading is completed, the flip drive mechanism rotates, drives the flip ring 3 back to the initial position, the locking cylinder 9-7 is retracted and the lifting cylinder 10-2 rises, so that the conical docking discharge pipe 8-1 is separated from the material barrel 7, and a cycle action is completed.

[0025] The device locks the discharging mechanism to the maximum extent, so as to prevent the discharging mechanism from being poorly sealed due to its own structural deformation and deadweight.

[0026] Finally, it should be noted that the above embodiments are only used to illustrate the technical solution of the utility model, rather than to limit it. Although the utility model has been described in detail with reference to the aforementioned embodiments, ordinary technicians in this field should understand that they can still modify the technical solutions recorded in the aforementioned embodiments, or replace some or all of the technical features therein with equivalents. However, these modifications or replacements do not make the essence of the corresponding technical solution deviate from the scope of the technical solution of the embodiments of the utility model.

Claims

1. A turning discharging device for a powder batching device, comprising a bracket (1), rollers (2) arranged at four corners of the bracket (1), a turning swivel (3) arranged on the rollers (2), and a matching turning driving mechanism, characterized in that: The device further comprises a second flip bracket (5) arranged between the flip swivels (3), a first flip bracket (4) arranged on the second flip bracket (5) by means of a lifting mechanism, a conveying mechanism (6) arranged on the second flip bracket (5) and used for conveying the material barrel (7), a docking discharge mechanism arranged on the first flip bracket (4) and used for cooperating with the material barrel (7), and a pressing and locking mechanism between the first flip bracket (4) and the second flip bracket (5).

2. The turning and discharging device for powder batching equipment according to claim 1 is characterized in that: The docking discharge mechanism comprises a conical docking discharge pipe (8-1) arranged on the first flip bracket (4), a valve plate (8-2) arranged at the outlet of the conical docking discharge pipe (8-1), and a matching valve plate driving mechanism (8-3).

3. The turning and discharging device for powder batching equipment according to claim 1 is characterized in that: The lifting mechanism comprises a guide mechanism (10-1) and a matching lifting cylinder (10-2) arranged between a first flip bracket (4) and a second flip bracket (5).

4. The turning and discharging device for powder batching equipment according to claim 3 is characterized in that: The guide mechanism (10-1) comprises guide sleeves arranged at the four corners of the second flip bracket (5) and a guide rod matched with the bottom of the first flip bracket (4).

5. The turning and discharging device for powder batching equipment according to claim 1 is characterized in that: The clamping and locking mechanism comprises a clamping and locking mounting frame (9-1) arranged on the second flip bracket (5), a locking sleeve (9-2) arranged on the top of the clamping and locking mounting frame (9-1), a pin shaft (9-3) sleeved in the locking sleeve (9-2), two clamping blocks (9-4) sleeved with the locking sleeve (9-2) and used to clamp the pin shaft (9-3), a pulling block (9-6) in the shape of a "ㄇ" and hingedly arranged with the clamping block (9-4) by means of a connecting rod (9-5), and a locking cylinder (9-7) connected to the pulling block (9-6) and arranged at the bottom of the clamping and locking mounting frame (9-1).

6. The turning and discharging device for powder batching equipment according to claim 5, characterized in that: The lower part of the inner hole of the locking sleeve (9-2) is a tapered hole.

7. The turning and discharging device for powder batching equipment according to claim 5 is characterized in that: An anti-slip structure is provided at the bottom of the pin shaft (9-3).

8. The turning and discharging device for powder batching equipment according to claim 5, characterized in that: The upper part of the pin shaft (9-3) is connected to the first flip bracket (4) by means of a mounting block (4-1).

9. The turning and discharging device for powder batching equipment according to claim 1, characterized in that: The conveying mechanism (6) is provided with a positioning blocking block for the material barrel (7).