Automatic batching control mechanism

The automatic batching control mechanism solves the problems of risk and low efficiency of manual batching in organic sludge treatment, and achieves safe and efficient batching.

CN223959574UActive Publication Date: 2026-03-03SICHUAN JINSHICHENG BIOTECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-07
Publication Date
2026-03-03

AI Technical Summary

Technical Problem

In the current process of organic sludge treatment, the manual addition of ingredients is risky and inefficient, and it is difficult to add ingredients safely and efficiently.

Method used

An automatic batching control mechanism was designed, including a control sliding connecting plate, a lifting sliding seat, a movable clamping plate, and a hydraulic cylinder, which realizes the automatic movement and addition of ingredients through the clamping claw.

Benefits of technology

It enables automated movement and addition of ingredients, improving processing efficiency, reducing costs, and ensuring operator safety.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an automatic batching control mechanism, which relates to the field of organic sludge processing and comprises a control sliding connecting plate, one side face of the control sliding connecting plate is connected with an installation connecting fixing plate, and the end face of the other side of the control sliding connecting plate is movably connected with a lifting sliding seat in a lifting mode. A first movable clamping plate and a second movable clamping plate which are movably arranged are mounted and connected to the lifting sliding seat, a first ingredient clamping jaw is movably mounted and connected to the bottom end of the first movable clamping plate, and a second ingredient clamping jaw is movably mounted and connected to the bottom end of the second movable clamping plate; and the first ingredient clamping jaw and the second ingredient clamping jaw move and are used for clamping ingredients. The control mechanism is simple in structure and convenient to control and operate; and moreover, through the control mechanism, the machining efficiency can be improved, the cost is saved, manual auxiliary adding is replaced, and the personal safety of operators is guaranteed.
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Description

Technical Field

[0001] This utility model relates to the field of organic sludge processing, specifically to an automatic batching control mechanism. Background Technology

[0002] Organic sludge is a sedimentary substance containing a large amount of organic matter, produced during wastewater treatment. It mainly originates from wastewater with high levels of organic pollutants, such as domestic sewage, food processing wastewater, and dyeing wastewater. These organic substances include proteins, carbohydrates, oils, and microbial cells. For example, in urban wastewater treatment plants, the organic matter in the wastewater is decomposed and metabolized by microorganisms, producing a large amount of organic sludge.

[0003] Characteristics of organic sludge:

[0004] 1. High moisture content: Organic sludge typically contains a high moisture content, generally around 95%-99%. This results in a large volume, posing certain difficulties for subsequent treatment and disposal.

[0005] 2. Prone to putrefaction and foul odor: Due to its high organic content, under suitable temperature and humidity conditions, microorganisms will continue to decompose these organic materials, producing unpleasant odors such as hydrogen sulfide and ammonia. Furthermore, this putrefaction process leads to further deterioration of the sludge's properties.

[0006] 3. Contains a large number of microorganisms: Organic sludge is an excellent habitat for the growth and reproduction of microorganisms, including a wide variety of bacteria, fungi, protozoa, and other microorganisms. Some of these microorganisms are activated sludge microorganisms that play a purifying role in the wastewater treatment process, while others are other microorganisms that enter with the wastewater.

[0007] Methods for treating organic sludge include thickening, anaerobic digestion, aerobic digestion, and dewatering. Because organic sludge contains a large amount of organic matter, it generates a significant amount of toxic and harmful gases and odors during treatment. Therefore, manually adding auxiliary materials poses certain risks. To address this, an improved material addition control mechanism was designed to replace manual addition during sludge treatment. Utility Model Content

[0008] The objective of this utility model is achieved through the following technical solution:

[0009] An automatic dispensing control mechanism includes a control sliding connecting plate. One side of the control sliding connecting plate is connected to a mounting connecting fixing plate, and the other end face of the control sliding connecting plate is movably connected to a lifting sliding seat. A first movable clamping plate and a second movable clamping plate are movably mounted on the lifting sliding seat. A first dispensing clamping claw is movably mounted on the bottom end of the first movable clamping plate, and a second dispensing clamping claw is movably mounted on the bottom end of the second movable clamping plate. The first dispensing clamping claw and the second dispensing clamping claw are movable to clamp the dispensing material placed between the first dispensing clamping claw and the second dispensing clamping claw.

[0010] Preferably, a sliding guide rail is provided between the control sliding connecting plate and the lifting sliding seat, and the lifting sliding seat and the control sliding connecting plate are connected and lifted by the sliding guide rail.

[0011] Preferably, a horizontally arranged slider is connected to the lower part of the end face of the lifting sliding seat away from the control sliding connecting plate;

[0012] The first movable clamping plate is connected to a first sliding block at the end away from the first dispensing clamping claw. The first sliding block has a first sliding groove, which is slidably adapted to the slider.

[0013] The second movable clamping plate is connected to a second sliding block at the end away from the second dispensing clamping claw. The second sliding block has a second sliding groove, which is also adapted to slide with the slider.

[0014] The first and second sliding blocks can be slidably positioned relative to each other along the slider.

[0015] Preferably, a first movable connecting block is provided at the top of the first sliding block;

[0016] The bottom end of the first movable connecting block is rotatably connected to the first sliding block via a pin, and one side of the other end of the first movable connecting block is rotatably connected to the lifting sliding seat via a rotating shaft. The other side of the other end of the first movable connecting block is rotatably connected to the vertically arranged movable block via a pin.

[0017] The movable block and the lifting sliding seat can be raised and lowered and slidably configured.

[0018] Preferably, a second movable connecting block is provided at the top of the second sliding block;

[0019] The bottom end of the second movable connecting block is rotatably connected to the second sliding block via a pin. The other end of the second movable connecting block, away from the first movable connecting block, is rotatably connected to the lifting sliding seat via a rotating shaft. The side of the second movable connecting block closer to the first movable connecting block is rotatably connected to the vertically arranged movable block via a pin.

[0020] The movable block moves up and down along the lifting sliding seat, which drives the first movable connecting block and the second movable connecting block to move.

[0021] Preferably, a hydraulic cylinder is provided at the end of the movable block away from the second movable connecting block;

[0022] The output rod of the hydraulic cylinder is connected to the movable block. By pushing the hydraulic cylinder, the movable block is driven to move up and down along the lifting sliding seat. The cylinder body of the hydraulic cylinder is fixed to the lifting sliding seat by bolts.

[0023] Preferably, a first hydraulic rod is provided on the first movable clamping plate;

[0024] One end of the first hydraulic rod is hinged to the end of the first movable clamping plate away from the first dispensing clamping claw, and the other end of the first hydraulic rod is hinged to the first dispensing clamping claw. The first dispensing clamping claw is rotatably connected to the first movable clamping plate via a pin.

[0025] The first hydraulic rod drives the first batching clamping claw to move.

[0026] Preferably, a second hydraulic rod is provided on the second movable clamping plate;

[0027] One end of the second hydraulic rod is hinged to the end of the second movable clamping plate away from the second dispensing clamping claw, and the other end of the second hydraulic rod is hinged to the second dispensing clamping claw. The second dispensing clamping claw is rotatably connected to the second movable clamping plate by a pin.

[0028] The second hydraulic rod drives the second batching clamping claw to move.

[0029] The beneficial effects of this utility model are as follows: The purpose of this utility model is to provide an automatic batching control mechanism. This control mechanism is used to clamp and move the ingredients to be added, thereby moving the ingredients to a designated position and adding them to the organic sludge treatment container, thus replacing manual assistance in adding the ingredients. This control mechanism is not only simple in structure and convenient to operate, but also improves processing efficiency, saves costs, replaces manual assistance in adding ingredients, and ensures the personal safety of operators. Attached Figure Description

[0030] Figure 1 This is a schematic diagram of the connection structure of an automatic batching control mechanism according to the present invention;

[0031] Figure 2 This is a schematic diagram of the movable block connection structure of an automatic batching control mechanism according to the present invention;

[0032] Figure 3 This is a schematic diagram of the control sliding connection plate connection structure of an automatic batching control mechanism according to this utility model;

[0033] In the diagram, 1-control sliding connecting plate, 2-lifting sliding seat, 3-first movable clamping plate, 4-second movable clamping plate, 11-installation connecting fixing plate, 21-slider, 22-moving block, 31-first dispensing clamping claw, 32-first sliding block, 33-first movable connecting block, 34-first hydraulic rod, 41-second dispensing clamping claw, 42-second sliding block, 43-second movable connecting block, 44-second hydraulic rod. Detailed Implementation

[0034] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments.

[0035] Example 1

[0036] like Figures 1 to 3 As shown, an automatic batching control mechanism is used to clamp and move the ingredients to be added, thereby moving the ingredients to a designated position and adding them to an organic sludge treatment container, thus replacing manual addition. The improved control mechanism includes a control sliding connecting plate 1. One side of the control sliding connecting plate 1 is connected to a mounting connecting fixing plate 11, and the other end face of the control sliding connecting plate 1 is movably connected to a lifting sliding seat 2. A first movable clamping plate 3 and a second movable clamping plate 4 are movably mounted on the lifting sliding seat 2. A first batching clamping claw 31 is movably mounted to the bottom end of the first movable clamping plate 3, and a second batching clamping claw 41 is movably mounted to the bottom end of the second movable clamping plate 4. The first batching clamping claw 31 and the second batching clamping claw 41 move together to clamp the ingredients placed between them.

[0037] In this embodiment, by installing the mounting and fixing plate 11 at the designed position, and in order to facilitate easy movement, the ingredients for organic sludge treatment need to be added. Preferably, the mounting and fixing plate 11 is installed and connected horizontally via an electric guide rail, thereby facilitating the movement of the control mechanism. When it is necessary to move and add ingredients, the lifting sliding seat 2 is controlled to move the first movable clamping plate 3 and the second movable clamping plate 4 to a suitable height. Then, the first ingredient clamping claw 31 on the first movable clamping plate 3 and the second ingredient clamping claw 41 on the second movable clamping plate 4 move, so that the first ingredient clamping claw 31 and the second ingredient clamping claw 41 move relative to each other to clamp the ingredients (containers, packaging tapes, etc. that are used to hold the ingredients) that are currently in the first ingredient clamping claw 31 and the second ingredient clamping claw 41. Then, the mounting connection fixing plate 11 is controlled to move the ingredients clamped and fixed by the first ingredient clamping claw 31 and the second ingredient clamping claw 41 to the designated position and pour them into the treatment container for organic sludge.

[0038] Example 2

[0039] Based on Embodiment 1, a sliding guide rail is provided between the control sliding connecting plate 1 and the lifting sliding seat 2, and the lifting sliding seat 1 and the control sliding connecting plate 2 are connected and lifted by the sliding guide rail. A horizontally arranged slider 21 is connected to the lower part of the end face of the lifting sliding seat 2 away from the control sliding connecting plate 2; a first sliding block 32 is connected to the end of the first movable clamping plate 3 away from the first dispensing clamping claw 31, and the first sliding block 32 has a first sliding groove that is slidably adapted to the slider 2; and a second sliding block 42 is connected to the end of the second movable clamping plate 4 away from the second dispensing clamping claw 41, and the second sliding block 42 has a second sliding groove that is also adapted to the slider 42; the first sliding block 32 and the second sliding block 42 can be slidably arranged along the slider to drive the first dispensing clamping claw 31 and the second dispensing clamping claw 41 to move relative to each other, and to grasp and release the dispensing material placed between the first dispensing clamping claw 31 and the second dispensing clamping claw 41.

[0040] Furthermore, a first movable connecting block 33 is provided at the top of the first sliding block 32; the bottom end of the first movable connecting block 33 is rotatably connected to the first sliding block 32 via a pin, and one side of the other end of the first movable connecting block 33 is rotatably connected to the lifting sliding seat 2 via a rotating shaft; the other side of the other end of the first movable connecting block 33 is rotatably connected to the vertically arranged movable block 22 via a pin; the movable block 22 and the lifting sliding seat 2 are vertically and slidably arranged (specifically, the movable block 22 and the lifting sliding seat 2 are connected and limited in height by a set guide rail); and... The top of the second sliding block 42 is provided with a second movable connecting block 43; the bottom end of the second movable connecting block 43 is rotatably connected to the second sliding block 42 by a pin; the other end of the second movable connecting block 43, away from the first movable connecting block 33, is rotatably connected to the lifting sliding seat 2 by a rotating shaft; the side of the second movable connecting block 43 close to the first movable connecting block 33 is rotatably connected to the vertically arranged movable block 22 by a pin; the movable block 22 moves up and down along the lifting sliding seat 2 to drive the first movable connecting block 33 and the second movable connecting block 43 to move.

[0041] That is, in this embodiment, by controlling the lifting sliding seat 2 to move up and down along the control sliding connecting plate 1, the first ingredient clamping claw 31 and the second ingredient clamping claw 41 are adjusted to a suitable height position, that is, the ingredient to be added is placed at a suitable position between the first ingredient clamping claw 31 and the second ingredient clamping claw 41; then, by further controlling the movable block 22 to move up and down along the lifting sliding seat 2, the ingredient to be added is placed at a suitable height position between the first ingredient clamping claw 31 and the second ingredient clamping claw 41, so as to facilitate the clamping and fixing of the ingredient in the first ingredient clamping claw 31 and the second ingredient clamping claw 41.

[0042] Example 3

[0043] The movable block 22 is provided with a hydraulic cylinder 23 at one end away from the second movable connecting block. The output rod of the hydraulic cylinder 23 is connected to the movable block 22. The movable block 22 is driven to move up and down along the lifting sliding seat 2 by the hydraulic cylinder 23. The cylinder body of the hydraulic cylinder 23 is fixed to the lifting sliding seat 2 by bolts.

[0044] Furthermore, a first hydraulic rod 34 is provided on the first movable clamping plate 3; one end of the first hydraulic rod 34 is hinged to the end of the first movable clamping plate 3 away from the first dispensing clamping claw 31, and the other end of the first hydraulic rod 34 is hinged to the first dispensing clamping claw 31, and the first dispensing clamping claw 31 is rotatably connected to the first movable clamping plate 3 via a pin; the first hydraulic rod 34 drives the first dispensing clamping claw 31 to move. Also, a second hydraulic rod 44 is provided on the second movable clamping plate 4; one end of the second hydraulic rod 44 is hinged to the end of the second movable clamping plate 4 away from the second dispensing clamping claw 41, and the other end of the second hydraulic rod 44 is hinged to the second dispensing clamping claw 41, and the second dispensing clamping claw 41 is rotatably connected to the second movable clamping plate 4 via a pin; the second hydraulic rod 44 drives the second dispensing clamping claw 41 to move.

[0045] In this embodiment, by controlling the hydraulic cylinder 23 to move the movable block 22 up and down along the lifting sliding seat 2, the movable block 22 drives the first movable connecting block 33 and the second movable connecting block 43, which are respectively "hinged" on both sides, to move. The first movable connecting block 33 drives the first sliding block 32 to slide along the slider 21, and the second movable connecting block 43 drives the second sliding block 42 to slide along the slider 21. This achieves relative movement of the first sliding block 32 and the second sliding block 42 along the slider 21 on the lifting sliding seat 2. Ultimately, this mechanism achieves the desired balance by increasing the relative distance between the first movable clamping plate 3 and the second movable clamping plate 4, thus facilitating the clamping of ingredients of different sizes. After adjusting the relative distance between the first movable clamping plate 3 and the second movable clamping plate 4, the first hydraulic rod 34 moves the first ingredient clamping claw 31, and the second hydraulic rod 44 moves the second ingredient clamping claw 41, thereby moving the first ingredient clamping claw 31 and the second ingredient clamping claw 41 relative to each other, thus gripping and releasing the ingredients between them. Finally, by controlling and adjusting this mechanism, the clamped ingredients are moved to the designated position and released into the organic sludge treatment container. This control mechanism is not only simple in structure and easy to operate, but it also improves processing efficiency, saves costs, replaces manual auxiliary addition, and ensures the personal safety of operators.

Claims

1. An automatic control mechanism for ingredients, characterized by, The utility model provides a control sliding connecting plate, one side of the control sliding connecting plate is connected with a mounting connecting fixed plate, the other side end surface of the control sliding connecting plate is connected with a lifting sliding seat which can lift and move, the lifting sliding seat is installed and is connected with the first movable clamping plate and the second movable clamping plate which can move, the bottom end of the first movable clamping plate is movably installed and is connected with the first material clamping jaw, the bottom end of the second movable clamping plate is movably installed and is connected with the second material clamping jaw, the first material clamping jaw and the second material clamping jaw move, and the first material clamping jaw and the second material clamping jaw are used to clamp the material placed between the first material clamping jaw and the second material clamping jaw.

2. The automatic control mechanism of claim 1, wherein, The control sliding connecting plate and the lifting sliding seat are provided with sliding guide rails, and the lifting sliding seat and the control sliding connecting plate are connected and arranged through the sliding guide rails.

3. The automatic control mechanism according to claim 2, wherein The bottom of the end face of the lifting sliding seat away from the control sliding connecting plate is connected with a horizontally arranged sliding block. The end of the first movable clamping plate away from the first material clamping jaw is connected with a first sliding block, the first sliding block is provided with a first sliding groove, and the first sliding groove is slidably matched with the sliding block. The end of the second movable clamping plate away from the second material clamping jaw is connected with a second sliding block, the second sliding block is provided with a second sliding groove, and the second sliding groove is also slidably matched with the sliding block. The first sliding block and the second sliding block can relatively slide along the sliding block.

4. The automatic control mechanism according to claim 3, wherein The top end of the first sliding block is provided with a first movable connecting block. The bottom end of the first movable connecting block is rotatably arranged with the first sliding block through a pin shaft, one side of the other end of the first movable connecting block is rotatably arranged with the lifting sliding seat through a rotating shaft, and the other side of the other end of the first movable connecting block is rotatably connected to a vertically arranged movable block through a pin shaft. The movable block and the lifting sliding seat can lift and slide.

5. An automatic control mechanism for a dispensing device according to claim 4, wherein The top end of the second sliding block is provided with a second movable connecting block. The bottom end of the second movable connecting block is rotatably arranged with the second sliding block through a pin shaft, one side of the other end of the second movable connecting block away from the first movable connecting block is rotatably arranged with the lifting sliding seat through a rotating shaft, and the side of the second movable connecting block close to the first movable connecting block is rotatably connected to a vertically arranged movable block through a pin shaft. The movable block lifts and moves along the lifting sliding seat to drive the first movable connecting block and the second movable connecting block to move.

6. An automatic dosing control mechanism according to claim 5, wherein The end of the movable block away from the second movable connecting block is provided with a push hydraulic cylinder. The output rod of the push hydraulic cylinder is connected to the movable block, the movable block lifts and moves along the lifting sliding seat through the push hydraulic cylinder, and the cylinder body of the push hydraulic cylinder is fixed to the lifting sliding seat through bolts.

7. An automatic control mechanism for dosing according to claim 6, characterized in that A first hydraulic rod is arranged on the first movable clamping plate. One end of the first hydraulic rod is hingedly arranged with the end of the first movable clamping plate away from the first material clamping jaw, the other end of the first hydraulic rod is hingedly arranged with the first material clamping jaw, and the first material clamping jaw is rotatably connected to the first movable clamping plate through a pin shaft. The first material clamping jaw moves through the first hydraulic rod.

8. The automatic control mechanism of claim 7, wherein, A second hydraulic rod is arranged on the second movable clamping plate. One end of the second hydraulic rod is hingedly arranged away from one end of the second movable clamping plate, the other end of the second hydraulic rod is hingedly arranged with the second material clamping claw, and the second material clamping claw is rotatably connected to the second movable clamping plate through a pin shaft; The second material clamping claw is driven to move by the second hydraulic rod.