Matte secondary reaction chamber

By introducing structures such as slide rails, compression and tension springs, and extension plates into the copper matte reaction chamber, the problem of the lack of pulleys in the existing technology is solved, realizing the automatic return and stable sliding of the reaction chamber, and improving work efficiency and safety.

CN223954629UActive Publication Date: 2026-02-27DONGYING LUFANG METAL MATERIAL +1
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Patent Information

Application Number
CN202520433322.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-13
Publication Date
2026-02-27
Estimated Expiration
2035-03-13

AI Technical Summary

Technical Problem

The existing copper matte reaction chamber lacks pulleys, forcing workers to run around repeatedly, which affects work efficiency and insulation, and increases physical exertion.

Method used

A secondary reaction chamber for copper matte is designed, employing a structure of slide rails, compression and tension springs, and extension plates, combined with limiting corners and splicing holes, to achieve automatic return and stable sliding of the reaction chamber.

Benefits of technology

It improves the sliding efficiency of the reaction chamber, reduces the need for workers to run back and forth, reduces physical exertion, and enhances sliding stability and ease of operation.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223954629U_ABST
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Abstract

The utility model relates to the technical field of matte reaction chambers, in particular to a matte secondary reaction chamber which comprises two sliding rails, a reaction chamber body is arranged on the sliding rails, the sliding rails are symmetrically arranged at the bottom of the reaction chamber body, and compression and extension springs used for limiting the reaction chamber body are arranged on the sliding rails. A plurality of extension plates are arranged at the bottom of the reaction chamber body, and a plurality of limiting angle bodies are arranged on the sliding rail and are linearly arranged. Through the arrangement of the compression extension spring and the extension plate, after a worker pulls the reaction chamber body and finishes a matte smelting process, the worker can return to an initial position under the tensile force, so that the worker is prevented from running back and forth to increase the workload, the work convenience of the worker is facilitated, and meanwhile, under the control of the extension plate, the working efficiency of the worker is improved. The sliding efficiency of the reaction chamber body on the sliding rail is improved, and the phenomenon of sliding derailing is reduced, so that the physical output of workers is reduced.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of ice copper reaction chamber, especially to an ice copper secondary reaction chamber. BACKGROUND

[0002] After ice copper automatically flows out from a siphon, it enters the next link through a closed flow guide pipe, and the ice copper channel of the multi-element furnace is used as a "transit station" connecting the fire fine furnace and the multi-element furnace, and the heat preservation work is extremely important. At the same time, it is used as a buffer device, and the ice copper is further assisted by blowing in this stage, which is also a help to improve the blowing efficiency and impurity removal capacity of the fire fine furnace. Therefore, the energy saving and consumption reduction and the improvement of the downstream blowing and impurity removal capacity.

[0003] The prior art does not have a manual pulling function, so workers still need to repeatedly run to pull the reaction chamber, which reduces the work efficiency of workers affected by high temperature, and cannot reduce the heat preservation effect to improve the consumption reduction problem, and the prior art does not have a pulley effect, thereby increasing the working time of workers and reducing the time of other work, thereby improving the physical consumption of workers.

[0004] Therefore, we design an ice copper secondary reaction chamber. CONTENT OF THE UTILITY MODEL

[0005] The utility model aims at solving the problem of the prior art without a pulley and proposes an ice copper secondary reaction chamber.

[0006] In order to achieve the above purpose, the utility model adopts the following technical scheme:

[0007] An ice copper secondary reaction chamber, comprising two slide rails, a reaction chamber body is arranged on the slide rails, and the slide rails are symmetrically arranged at the bottom of the reaction chamber body;

[0008] A compression and stretching spring for limiting the reaction chamber body is arranged on the slide rail, and a plurality of extension plates are arranged at the bottom of the reaction chamber body.

[0009] Preferably, a plurality of limiting angle bodies are arranged on the slide rail, the limiting angle bodies are linearly arranged, the limiting angle bodies abut against the side wall of the reaction chamber body, and the limiting angle bodies are fixedly connected with the slide rail.

[0010] Preferably, a driving end body is arranged at one end of the two slide rails, the driving end body is fixedly connected with the two slide rails, and one end of the compression and stretching spring is fixedly connected with the driving end body.

[0011] Preferably, two fixed rings are arranged at the bottom of the reaction chamber body, the two fixed rings are fixedly connected with the reaction chamber body, and the fixed rings are fixedly connected with the compression and stretching spring through fixed rivets.

[0012] Preferably, the extension plate is fixedly connected with the fixing ring, both ends of the extension plate are provided with a fitting plate, the slide rail side wall is provided with a sliding groove, and the fitting plate is matched with the sliding groove.

[0013] Preferably, the slide rail front end is provided with a splicing hole in a T shape.

[0014] The ice-copper secondary reaction chamber has the advantages that:

[0015] 1. The compression and extension spring and the extension plate are arranged, so that the staff can return to the initial position under the stretching force after pulling the reaction chamber body and completing the ice-copper smelting process, thereby avoiding the staff to run back and forth to improve the work load, which not only facilitates the work convenience of the staff, but also improves the sliding efficiency of the reaction chamber body on the slide rail under the control of the extension plate, reduces the sliding derailment phenomenon, and reduces the physical consumption of the staff.

[0016] 2. The limiting angle body and the splicing hole are arranged, so that the reaction chamber body reduces the deviation and derailment phenomenon during the pulling process of the staff, thereby increasing the limiting effect of the reaction chamber body on the slide rail, and increasing the sliding effect of the reaction chamber body on the slide rail, the splicing hole can improve the splicing work of the staff on the slide rail, and thereby improve the arrangement of different regions of the reaction chamber body. BRIEF DESCRIPTION OF DRAWINGS

[0017] Figure 1 A structural schematic view of an ice-copper secondary reaction chamber is provided for the utility model;

[0018] Figure 2 A bottom structure view of an ice-copper secondary reaction chamber is provided for the utility model;

[0019] Figure 3 For Figure 2 A structure enlarged view of the A label;

[0020] Figure 4 For Figure 2 A structure enlarged view of the B label.

[0021] In the figure: 1, slide rail; 2, reaction chamber body; 3, driving end body; 4, limiting angle body; 5, fixing ring; 6, compression and extension spring; 7, fixed rivet; 8, extension plate; 9, sliding groove; 10, fitting plate; 11, splicing hole. DETAILED DESCRIPTION

[0022] Referring to Figures 1-4The application discloses a matte secondary reaction chamber, which comprises two slide rails 1, the slide rails 1 are rails made of metal steel in the prior art and are mainly used for transferring box-shaped components and large components and keeping the transfer process orderly and labor-saving, the reaction chamber body 2 is a matte secondary reaction chamber in the prior art, the slide rails 1 are integrally laid on the bottom of the reaction chamber body 2, the reaction chamber body 2 is erected on the slide rails 1, and the sliding effect is ensured.

[0023] A plurality of limiting corner bodies 4 are arranged on the slide rails 1, the limiting corner bodies 4 are auxiliary components, integrally present as right-angled triangles, the side walls of the limiting corner bodies 4 abut against the outer walls of the reaction chamber body 2, thereby achieving the limiting effect, the limiting corner bodies 4 are linearly arranged, six limiting corner bodies 4 are arranged on each slide rail 1, the limiting corner bodies 4 abut against the side walls of the reaction chamber body 2, the limiting corner bodies 4 are fixedly connected with the slide rails 1, the limiting corner bodies 4 are fixedly connected with the surfaces of the slide rails 1 through welding, the stability of the sliding process of the reaction chamber body 2 can be ensured, and the phenomenon that the reaction chamber body 2 falls off the slide rails 1 is reduced.

[0024] Compression and stretching springs 6 for limiting the reaction chamber body 2 are arranged on the slide rails 1, the compression and stretching springs 6 are mainly used for the automatic returning effect of the reaction chamber body 2 after work, one end of each slide rail 1 is provided with a driving end body 3, the driving end body 3 is an external driving device in the prior art, mainly performs hydraulic stretching on the compression and stretching springs 6, thereby improving the returning efficiency of the reaction chamber body 2, the driving end body 3 is fixedly connected with the two slide rails 1, the driving end body 3 fixes the two slide rails 1 through buckles and fixes the buckles on the slide rails 1 through a plurality of rivets, one end of the compression and stretching spring 6 is fixedly connected with the driving end body 3, and the other end of the compression and stretching spring 6 is fixedly connected with the output end of the driving end body 3.

[0025] Two fixed rings 5 are arranged at the bottom of the reaction chamber body 2, the fixed rings 5 are auxiliary components, the bottom of the reaction chamber body 2 has a connecting structure, the reaction chamber body 2 can be effectively limited and controlled, meanwhile, the two fixed rings 5 are connected with each other through welding, the two fixed rings 5 are fixedly connected with the reaction chamber body 2, the two fixed rings 5 are fixedly connected with the bottom of the reaction chamber body 2 through welding, meanwhile, a circular buckle needs to be arranged at the welding seam to increase the protection effect of the welding seam, the fixed ring 5 is fixedly connected with the compression and stretching spring 6 through a fixed rivet 7, the fixed rivet 7 is a connecting part in the prior art, and the other end of the compression and stretching spring 6 is fixed in the fixed ring 5.

[0026] The bottom of the reaction chamber body 2 is provided with a plurality of extension plates 8, which are the main components for the contact between the fixed ring 5 and the slide rail 1, so that the fixed ring 5 can normally link and improve the flow traction effect of the reaction chamber body 2, the extension plate 8 is fixedly connected with the fixed ring 5, the bottom of the extension plate 8 is fixedly connected with the bottom of the fixed ring 5 through welding, and then the pulling effect is improved, the both ends of the extension plate 8 are provided with fitting plates 10, the fitting plate 10 is the extension end on the both sides of the extension plate 8, which is used for improving the contact between the extension plate 8 and the slide rail 1, reducing the pulling problem of the reaction chamber body 2, and the side wall of the slide rail 1 is provided with a sliding groove 9, the sliding groove 9 is arranged along the inner wall of the slide rail 1, the fitting plate 10 is matched with the sliding groove 9, and the thickness of the fitting plate 10 is consistent with the height of the sliding groove 9.

[0027] The front end of the slide rail 1 is provided with a splicing hole 11, the splicing hole 11 is mainly used for the splicing extension of the slide rail 1 in the later period, and the linear splicing is maintained, so that the connection effect between the slide rails 1 can be ensured, and the splicing hole 11 is in a T shape, and the T shape can effectively improve the docking effect.

[0028] The working principle of the utility model is as follows:

[0029] Ensure that the slide rail 1 has been correctly laid and fixed in the predetermined position, check whether the limiting angle bodies 4 are uniformly distributed on the slide rail 1 and firmly connected with the slide rail 1, confirm that the compression extension spring 6 has been installed on the driving end body 3 and connected with the fixed ring 5 at the bottom of the reaction chamber body 2 through the fixed rivet 7, check whether the extension plate 8 and the fitting plate 10 are correctly installed between the fixed ring 5 and the slide rail 1, and ensure that they can work smoothly.

[0030] Put the materials or products to be processed into the reaction chamber body 2, adjust the position of the reaction chamber body 2 as needed, easily move the reaction chamber to the designated position by using the slide rail 1 system, start the external driving end body 3, the device will exert hydraulic stretching force on the compression extension spring 6, so that the reaction chamber body 2 smoothly slides along the slide rail 1, and the required chemical reaction or other process is carried out in the reaction chamber, the position of the reaction chamber is fine-tuned by controlling the driving end body 3 to adapt to different operation requirements.

[0031] After all the necessary operations are completed, stop the work of the driving end body 3, and the compression extension spring 6 will automatically pull the reaction chamber body 2 back to the initial position or the preset position, if continuous production is required, additional slide rails 1 can be added to the existing system through the splicing hole 11 to expand the length of the production line.

[0032] The above is only a preferred specific embodiment of the utility model, but the protection scope of the utility model is not limited to this, any skilled person in the technical field according to the technical scheme and the utility model concept of the utility model within the technical range disclosed by the utility model makes equivalent replacement or change, which should be covered in the protection scope of the utility model.

Claims

1. A copper second reaction chamber, comprising two slide rails (1), a reaction chamber body (2) is arranged on the slide rails (1), the slide rails (1) are symmetrically arranged at the bottom of the reaction chamber body (2). The utility model discloses a reaction chamber body (2) is provided with the compression and stretching spring (6) for limiting reaction chamber body (2) on the slide rail (1), and the bottom of reaction chamber body (2) is provided with a plurality of extension plate (8). The slide rail (1) is provided with a plurality of limiting angle bodies (4), the limiting angle bodies (4) are linearly arranged, the limiting angle bodies (4) abut against the side wall of the reaction chamber body (2), and the limiting angle bodies (4) are fixedly connected with the slide rail (1).

2. A second stage cupola reaction chamber according to claim 1 wherein, One end of the two slide rails (1) is provided with a driving end body (3), the driving end body (3) is fixedly connected with the two slide rails (1), and one end of the compression and stretching spring (6) is fixedly connected with the driving end body (3).

3. A second stage copper reaction chamber according to claim 2, wherein, The bottom of the reaction chamber body (2) is provided with two fixed rings (5), the two fixed rings (5) are fixedly connected with the reaction chamber body (2), and the fixed rings (5) are fixedly connected with the compression and stretching spring (6) through fixed rivets (7).

4. A second stage copper reaction chamber according to claim 3, wherein, The extension plate (8) is fixedly connected with the fixed ring (5), both ends of the extension plate (8) are provided with fitting plates (10), the side wall of the slide rail (1) is provided with a sliding groove (9), and the fitting plates (10) are matched with the sliding groove (9).

5. A second stage copper converter according to claim 4, wherein, The front end of the slide rail (1) is provided with a splicing hole (11), and the splicing hole (11) is in a T-shaped structure.

6. A second stage copper converter according to claim 5 wherein, ​