Activated carbon continuous forming device

By introducing a sliding support frame and an electro-hydraulic rod-driven cutting and moving assembly into the activated carbon production equipment, the problem of shape damage during activated carbon cutting is solved, achieving uniform cutting and continuous conveying of activated carbon, thus improving production efficiency and quality.

CN223589694UActive Publication Date: 2025-11-25XIAN ZHONGHUI IND TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202423125231.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-18
Publication Date
2025-11-25
Estimated Expiration
2034-12-18

AI Technical Summary

Technical Problem

In the prior art, when the clamping and cutting components cut and convey activated carbon, the activated carbon is compressed to different degrees from the outside to the inside, resulting in shape damage and affecting the quality of production and processing.

Method used

The device employs a cutting component and a moving component, including a sliding support frame, a cutting component, and a moving component. The cutting component is moved above the first conveyor table via the sliding support frame. A lifting component and an electro-hydraulic rod drive the transverse support plate and steel wire to perform uniform cutting. Subsequently, the moving component pushes the cut activated carbon to the second conveyor table for conveying.

Benefits of technology

It achieves uniform cutting and continuous conveying of activated carbon, avoiding shape damage, saving production time and human resources.

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Abstract

The utility model relates to the technical field of activated carbon production equipment, in particular to an activated carbon continuous forming device which comprises a first conveying table, a second conveying table, a sliding supporting frame, a cutting assembly and a moving assembly. The cutting assembly comprises a plurality of connecting plates, a plurality of steel wires, a transverse supporting plate and a lifting component, the connecting plates are fixedly connected with the transverse supporting plate and evenly distributed at the front end and the rear end of the transverse supporting plate, the steel wires are installed between the two connecting plates respectively, and the transverse supporting plate is connected with the sliding supporting frame through the lifting component. And the lifting component is installed on the sliding supporting frame, connected with the transverse supporting plate and used for driving the transverse supporting plate to move, and the effects that the whole device has continuity, active carbon is pushed to move and be conveyed, and the active carbon production and processing quality is improved are achieved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to active carbon production equipment technical field especially relates to a kind of active carbon continuous forming device. BACKGROUND

[0002] Active carbon has low price, high strength and other remarkable features, but impurity is high, and it is difficult to make high-performance active carbon, its appearance is generally black cylindrical active carbon, amorphous coal quality granular active carbon, also called broken carbon. Generally, it is made by mixing, kneading, extruding, carbonizing, activating and other processes from powdery raw materials and binders; At present, when producing active carbon, its production equipment is split type, so it needs multiple workers to manually assist to complete production work, which not only wastes human resources, but also lacks continuity and delays production time.

[0003] The prior art CN217230252U discloses a continuous active carbon production equipment, which comprises an extrusion molding machine. The extrusion molding machine and the square slot port column complete the twice forming work of the active carbon. The infrared sensors in the two positioning assemblies can limit the formed active carbon conveyed by the first conveying table, control the first conveying table and the extrusion molding machine to stop working, and control the two synchronous motors to make the sliding support frame complete the position. When the convex square column contacts the contact switch, the first electric hydraulic rod works, and the clamping and cutting assembly adjusts the position. The clamping and cutting assembly can cut and clamp the formed active carbon, so that the segmented active carbon can be conveyed to the second conveying table, and the conveying work is completed by the second conveying table. This not only makes the whole device have continuity and saves production time, but also saves human resources.

[0004] However, in the above-mentioned technology, the clamping and cutting assembly cuts and clamps the formed active carbon. After the whole active carbon is cut into multiple parts, the active carbon at both ends needs to be clamped, so that the active carbon from the outside to the inside is subjected to different degrees of extrusion, which may cause the shape of the active carbon to be damaged and affect the production and processing quality. UTILITY MODEL CONTENTS

[0005] The utility model aims at providing a kind of active carbon continuous forming device, solve the problem that the active carbon after cutting is clamped and moved in prior art, active carbon from the outside to the inside is subjected to different degrees of extrusion, which may cause the shape of the active carbon to be damaged and affect the production and processing quality.

[0006] To achieve the above-mentioned purpose, the utility model provides a kind of active carbon continuous forming device, which comprises a first conveying table, a second conveying table and a sliding support frame. The first conveying table is located at the front end of the second conveying table. The sliding support frame is slidably installed on the second conveying table,

[0007] The cutting assembly and the moving assembly are further included;

[0008] The cutting assembly comprises a plurality of connecting plates, a plurality of steel wires, a transverse support plate and a lifting member, the plurality of connecting plates are fixedly connected with the transverse support plate and are uniformly distributed at the front and rear ends of the transverse support plate, the plurality of steel wires are respectively installed between two connecting plates, the transverse support plate is connected with the sliding support frame through the lifting member and is located below the sliding support frame, and the lifting member is installed on the sliding support frame and is connected with the transverse support plate and drives the transverse support plate to move.

[0009] The lifting member comprises a first electric hydraulic rod and two limiting rods, the first electric hydraulic rod is fixedly installed on the sliding support frame, and the free end of the first electric hydraulic rod is fixedly connected with the transverse support plate; the two limiting rods are fixedly connected with the transverse support plate and are located at the top of the two ends of the transverse support plate and penetrate through the sliding support frame.

[0010] The sliding support frame has two limiting through holes, the two limiting through holes are arranged at the top of the two ends of the sliding support frame and penetrate through the sliding support frame and are matched with the limiting rods.

[0011] The moving assembly comprises a push plate, a second electric hydraulic rod and a mounting frame, the push plate is fixedly connected with the free end of the second electric hydraulic rod, the second electric hydraulic rod is fixedly installed on the mounting frame, and the mounting frame is fixedly connected with the first conveying table and is located at the front side of the first conveying table.

[0012] The moving assembly further comprises a transition plate, and the transition plate is fixedly connected with the second conveying table and is located between the first conveying table and the second conveying table.

[0013] The active carbon continuous molding device of the utility model, through the sliding support frame, the cutting assembly is moved to the above of the first conveying table, through the lifting member, the transverse support plate is driven to move downwards, the transverse support plate moves downwards and drives a plurality of connecting plates and a plurality of steel wires to move downwards, and the steel wire is used for cutting work to active carbon, the moving assembly is driven to move to the direction of the second conveying table through the second electric hydraulic rod, the push plate is used for pushing and moving the cut active carbon from the first conveying table to the second conveying table through the transition plate, and then the second conveying table is used for conveying work to active carbon. BRIEF DESCRIPTION OF DRAWINGS

[0014] In order to more clearly illustrate the technical solutions of the embodiments of the present application or the prior art, the drawings needed to be used in the embodiments or prior art description will be briefly introduced.

[0015] Fig. 1 is the front view of the active carbon continuous forming device of the utility model.

[0016] Fig. 2 is the overall structure schematic view of the active carbon continuous forming device of the utility model.

[0017] Fig. 3 is the top view of the active carbon continuous forming device of the utility model.

[0018] In the figure: 101-first conveying table, 102-second conveying table, 103-sliding support frame, 104-connection plate, 105-steel wire, 106-transverse support plate, 107-first electric hydraulic rod, 108-limiting rod, 109-limiting through hole, 110-pushing plate, 111-second electric hydraulic rod, 112-mounting frame, 113-transition plate. DETAILED DESCRIPTION

[0019] The embodiments of the utility model are described in detail below, the examples of the embodiments are shown in the drawings, the embodiments described below by referring to the drawings are exemplary, and are intended to explain the utility model, and cannot be understood as the limitation of the utility model.

[0020] Please refer to Figs. 1 to 3 , wherein Fig. 1 is the front view of the active carbon continuous forming device of the utility model, Fig. 2 is the overall structure schematic view of the active carbon continuous forming device of the utility model, Fig. 3 is the top view of the active carbon continuous forming device of the utility model.

[0021] The utility model relates to a kind of active carbon continuous forming device: including first conveying table 101, second conveying table 102, sliding support frame 103, cutting assembly and moving assembly, the cutting assembly includes multiple connecting plates 104, multiple steel wires 105, transverse support plate 106 and lifting component, the lifting component includes first electric hydraulic rod 107 and two limit rods 108, the sliding support frame 103 has two limit through holes 109, the moving assembly includes push plate 110, second electric hydraulic rod 111, mounting bracket 112 and transition plate 113.It is solved by the foregoing scheme that the active carbon is cut after being gripped by prior art, and the active carbon is extruded from outside to inside, possibly cause the shape of active carbon is damaged, affect production processing quality problem;It can be understood that the foregoing scheme can cut and convey work to the active carbon of forming, so that the active carbon of segmentation is pushed to second conveying table 102 from first conveying belt, and conveying work is completed by second conveying table 102, so that the whole device has continuity, production time is saved, and manpower resource is also saved.

[0022] In the embodiment, the first conveying table 101 is located at the front end of the second conveying table 102, and the sliding support frame 103 is slidingly installed on the second conveying table 102. The position of the first conveying table 101 corresponds to the position of the active carbon extrusion molding machine and the square slot port column, and the extrusion molded active carbon is placed on the top by cooperation. The conveying direction of the second conveying table 102 is perpendicular to the conveying direction of the first conveying table 101, and is used to convey the cut active carbon away from the first conveying table 101. The top of the support on both sides of the second conveying table 102 is provided with a sliding groove, and the sliding groove is matched with the bottom of the sliding support frame 103. An electric screw rod is arranged in the sliding groove and is threadedly connected with the sliding support frame 103. The electric screw rod is used to drive the sliding support frame 103 to move horizontally on the second conveying table 102, and the sliding support frame 103 provides installation and movement conditions for the cutting assembly.

[0023] The plurality of connecting plates 104 are fixedly connected with the transverse support plate 106 and are uniformly distributed at the front and rear ends of the transverse support plate 106, the plurality of steel wires 105 are respectively installed between two connecting plates 104, the transverse support plate 106 is connected with the sliding support frame 103 through the lifting member and is located below the sliding support frame 103, the lifting member is installed on the sliding support frame 103 and is connected with the transverse support plate 106 and drives the transverse support plate 106 to move. The transverse support plate 106 is horizontally arranged above the first conveying table 101 and is horizontally opposite to the top of the sliding support frame 103, the lifting member on the top of the sliding support frame 103 extends into below the sliding support frame 103 and is connected with the transverse support plate 106, the transverse support plate 106 is driven by the lifting member to move upward or downward, the bottom of the transverse support plate 106 is oppositely provided with a plurality of connecting plates 104 at the front and rear ends of the bottom at equal intervals, and the steel wire 105 is fixedly arranged at the bottom between every two connecting plates 104, and the active carbon is uniformly cut by the plurality of steel wires 105 which are uniformly arranged at equal intervals; therefore, the cutting assembly is moved above the first conveying table 101 by the sliding support frame 103, the transverse support plate 106 is driven by the lifting member to move downward, the transverse support plate 106 moves downward to drive the plurality of connecting plates 104 and the plurality of steel wires 105 to move downward, the active carbon is cut by the steel wire 105, and the cutting of the active carbon by the cutting assembly is realized.

[0024] Secondly, the first electric hydraulic rod 107 is fixedly installed on the sliding support frame 103, and the free end of the first electric hydraulic rod 107 is fixedly connected with the transverse support plate 106; two limiting rods 108 are fixedly connected with the transverse support plate 106 and located at the top of both ends of the transverse support plate 106 and penetrate through the sliding support frame 103. Two limiting through holes 109 are arranged at the top of both ends of the sliding support frame 103 and penetrate through the sliding support frame 103 and cooperate with the limiting rods 108. The first electric hydraulic rod 107 is fixedly installed at the top of the middle position of the sliding support frame 103, and the free end thereof penetrates through the sliding support frame 103 and is fixedly connected with the transverse support plate 106. The transverse support plate 106 is driven to move downward by the first electric hydraulic rod 107, and the transverse support plate 106 drives a plurality of the connecting plates 104 and a plurality of the steel wires 105 to move downward. The steel wires 105 are used to cut the activated carbon, and the two limiting rods 108 at the top of the transverse support plate 106 penetrate through the two limiting through holes 109 of the sliding support frame 103, respectively. The movement of the transverse support plate 106 is limited by the two limiting through holes 109 and the two limiting rods 108, so that the vertical upward and downward movement of the transverse support plate 106 is ensured.

[0025] Meanwhile, the push plate 110 is fixedly connected with the free end of the second electric hydraulic rod 111; the second electric hydraulic rod 111 is fixedly installed on the mounting bracket 112; the mounting bracket 112 is fixedly connected with the first conveying table 101 and located on the front side of the first conveying table 101. The transition plate 113 is fixedly connected with the second conveying table 102 and located between the first conveying table 101 and the second conveying table 102. The push plate is located on the front upper end of the first conveying table 101 and is installed by being fixedly connected with the free end of the second electric hydraulic rod 111. The push plate 110 is driven by the second electric hydraulic rod 111 to move forward and backward above the first conveying table 101. The second electric hydraulic rod 111 is fixedly installed on the mounting bracket 112 and is provided with the mounting condition of the second electric hydraulic rod 111 through the mounting bracket 112. The mounting bracket 112 is also provided with an auxiliary support to make the fixed installation of the second electric hydraulic rod 111 more stable. The transition plate 113 is fixedly arranged between the first conveying table 101 and the second conveying table 102. The height position of the transition plate 113 is the same as that of the transmission belt of the first conveying table 101 and the second conveying table 102, which ensures that the cut activated carbon is smoothly pushed from the first conveying table 101 to the second conveying table 102. Therefore, the moving assembly drives the push plate 110 to move towards the second conveying table 102 through the second electric hydraulic rod 111. The push plate 110 pushes the cut activated carbon from the first conveying table 101 to the second conveying table 102 through the transition plate 113, and then the second conveying table 102 is used to convey the activated carbon.

[0026] When the active carbon continuous forming device is used, the twice forming work of the active carbon is completed through the active carbon extrusion forming machine and the square groove port column, the first conveying table 101 is matched to place the formed active carbon, then the cutting assembly is moved to the upper side of the first conveying table 101 through the sliding support frame 103, the transverse support plate 106 is driven to move downwards through the lifting member, the transverse support plate 106 moves downwards to drive the multiple connecting plates 104 and the multiple steel wires 105 to move downwards, the active carbon is cut through the steel wire 105, then the cutting of the active carbon by the cutting assembly is realized, the push plate 110 is driven to move to the direction of the second conveying table 102 through the second electric hydraulic rod 111 of the moving assembly, the push plate 110 pushes and moves the cut active carbon from the first conveying table 101 to the second conveying table 102 through the transition plate 113, then the conveying work of the active carbon is carried out through the second conveying table 102, so that the whole device has continuity, the production time is saved, the active carbon is pushed and moved, the active carbon is avoided to be extruded by clamping and moving, then the active carbon is avoided to be damaged, and the production and processing quality is improved.

[0027] The above disclosure is only one or more preferred embodiments of the application, and cannot limit the scope of the application. Those skilled in the art can understand that all or part of the above-mentioned embodiments can be implemented, and equivalent changes made according to the claims of the application still belong to the scope covered by the application.

Claims

1. An active carbon continuous forming device, comprising a first conveying table, a second conveying table and a sliding support frame, the first conveying table is located at the front end of the second conveying table, and the sliding support frame is slidingly installed on the second conveying table, characterized in that, it further comprises a cutting assembly and a moving assembly; the cutting assembly comprises a plurality of connecting plates, a plurality of steel wires, a transverse support plate and a lifting member, the plurality of connecting plates are fixedly connected with the transverse support plate and are uniformly distributed at the front and rear ends of the transverse support plate, the plurality of steel wires are respectively installed between two connecting plates, the transverse support plate is connected with the sliding support frame through the lifting member and is located below the sliding support frame, the lifting member is installed on the sliding support frame and is connected with the transverse support plate, and the transverse support plate is driven to move.

2. The active carbon continuous forming device according to claim 1, characterized in that, the lifting member comprises a first electric hydraulic rod and two limiting rods, the first electric hydraulic rod is fixedly installed on the sliding support frame, and the free end of the first electric hydraulic rod is fixedly connected with the transverse support plate; the two limiting rods are fixedly connected with the transverse support plate and are located at the top of both ends of the transverse support plate and penetrate through the sliding support frame.

3. The active carbon continuous forming device according to claim 2, characterized in that, the sliding support frame has two limiting through holes, the two limiting through holes are arranged at the top of both ends of the sliding support frame, penetrate through the sliding support frame and cooperate with the limiting rods.

4. The active carbon continuous forming device according to claim 1, characterized in that, the moving assembly comprises a push plate, a second electric hydraulic rod and a mounting frame, the push plate is fixedly connected with the free end of the second electric hydraulic rod in extension and retraction, the second electric hydraulic rod is fixedly installed on the mounting frame, and the mounting frame is fixedly connected with the first conveying table and is located at the front side of the first conveying table.

5. The active carbon continuous forming device according to claim 4, characterized in that, the moving assembly further comprises a transition plate, the transition plate is fixedly connected with the second conveying table and is located between the first conveying table and the second conveying table.

Citation Information

Patent Citations

  • Continuous activated carbon production equipment

    CN217230252U