Vibrating slag conveyor

CN224767646UActive Publication Date: 2026-09-18QINGDAO YUTAI ENVIRONMENTAL PROTECTION EQUIP MFG CO LTD
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Patent Information

Application Number
CN202521983097.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-16
Publication Date
2026-09-18
Estimated Expiration
2035-09-16

AI Technical Summary

Technical Problem

可用于水平、缓倾斜或垂直运输(沿螺旋槽上升)各种松散物料,现有技术中的振动输渣机是用于输送废渣的输送机,废渣温度较高,且灰尘较大,现有的振动输渣机在密封性较差,在输送的过程中大量灰尘外溢,影响工作环境,且直接将高温的废渣排出,造成资源的浪费

Benefits of technology

[0011]Due to the adoption of the above technical solutions, the beneficial technical effects of this utility model are as follows: The conveying pipeline assembly of this utility model is divided into a feeding section, a discharging section, and a conveying section. The multi-section conveying pipeline assembly facilitates cleaning by workers. The insulation layer is installed on the outside of the conveying pipeline assembly, and the cavity formed by the insulation layer and the conveying pipeline assembly has an internal insulation function. A heat exchange tube is set in the cavity and spirally wound around the conveying section. The waste residue has a high temperature, and during the conveying process, the liquid in the heat exchange tube can be heated, thereby realizing the recovery of waste heat from the waste residue, reducing resource waste. Moreover, the waste residue is conveyed in the conveying pipeline assembly with high sealing performance, which helps to reduce dust spillage and ensure the quality of the working environment.

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Abstract

This utility model belongs to the field of conveyor technology, specifically a vibrating slag conveyor, including a mounting base. The key feature is that a conveying pipe assembly is provided above the mounting base. The conveying pipe assembly includes a feeding section at the beginning, a discharging section at the end, and a conveying section between the feeding and discharging sections. A spiral heat exchange tube is wound around the outer wall of the conveying section, and the heat exchange tube is located in the cavity formed by the conveying section and an insulation layer. The insulation layer is a cylindrical structure formed by two semi-cylinders joined together. In this utility model, the conveying pipe assembly is divided into a feeding section, a discharging section, and a conveying section. The multi-section conveying pipe assembly facilitates cleaning by workers. The cavity formed by the insulation layer and the conveying pipe assembly has an internal insulation function. The spirally wound heat exchange tube within the cavity allows for the recovery of waste heat from the slag. Furthermore, the conveying of waste slag within the conveying pipe assembly helps reduce dust spillage and ensures a high-quality working environment.
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Description

Technical Field

[0001] This utility model relates to the field of conveyor technology, specifically a vibrating slag conveyor. Background Technology

[0002] A vibrating conveyor is a continuous conveying machine that uses a vibrator to vibrate a trough, causing the material inside the trough to slide or be thrown in a certain direction. It is a device that continuously conveys materials by means of vibration. It mainly consists of a vibrator, a carrying trough, a main vibration spring, and a frame. It can be used for horizontal, gently inclined, or vertical (ascending along a spiral groove) transport of various loose materials. Existing vibrating slag conveyors are used for conveying waste slag. Waste slag has a high temperature and produces a lot of dust. Existing vibrating slag conveyors have poor sealing, resulting in a large amount of dust overflowing during transport, affecting the working environment, and directly discharging high-temperature waste slag, causing resource waste. Summary of the Invention

[0003] In order to overcome the above-mentioned defects in the prior art, this utility model provides a vibrating slag conveyor.

[0004] A vibrating slag conveyor includes a mounting base, above which is a conveying pipe assembly. The conveying pipe assembly includes a feeding section at the beginning, a discharging section at the end, and a conveying section between the feeding section and the discharging section. A spiral heat exchange tube is wound around the outer wall of the conveying section. The heat exchange tube is located in a cavity formed by the conveying section and an insulation layer. The insulation layer is a cylindrical structure formed by splicing two semi-cylinders.

[0005] Furthermore, the inlet and outlet of the heat exchange tube are connected to the pipeline through the side wall of the insulation layer.

[0006] Furthermore, the top of the insulation layer, the feeding section, and the unloading section are provided with a fixing sleeve, the fixing sleeve is bolted to the fixing seat, the bottom of the fixing sleeve is provided with a vibration spring, the vibration spring is inclined in the conveying direction, the bottom of the vibration spring is connected to the mounting seat, and the mounting seat is installed on the top of the support spring.

[0007] Furthermore, the feeding section, conveying section, and unloading section are connected by bolts, and the insulation layers of the two parts are connected by bolts.

[0008] Furthermore, a feeding hopper is provided on the side wall of the feeding section, and the end of the feeding section is bent upward and connected to a vacuum cleaner through a flexible pipe. The vacuum cleaner is mounted on a bracket.

[0009] Furthermore, the flexible pipe is made of a high-temperature resistant material.

[0010] Furthermore, a vibration motor is provided on the mounting base.

[0011] Due to the adoption of the above technical solutions, the beneficial technical effects of this utility model are as follows: The conveying pipeline assembly of this utility model is divided into a feeding section, a discharging section, and a conveying section. The multi-section conveying pipeline assembly facilitates cleaning by workers. The insulation layer is installed on the outside of the conveying pipeline assembly, and the cavity formed by the insulation layer and the conveying pipeline assembly has an internal insulation function. A heat exchange tube is set in the cavity and spirally wound around the conveying section. The waste residue has a high temperature, and during the conveying process, the liquid in the heat exchange tube can be heated, thereby realizing the recovery of waste heat from the waste residue, reducing resource waste. Moreover, the waste residue is conveyed in the conveying pipeline assembly with high sealing performance, which helps to reduce dust spillage and ensure the quality of the working environment. Attached Figure Description

[0012] Figure 1 This is a schematic diagram of the structure of a vibrating slag conveyor according to the present invention;

[0013] Figure 2 This is a front view of a vibrating slag conveyor according to the present invention;

[0014] Figure 3 This is a cross-sectional structural diagram of the vibrating slag conveyor in this utility model.

[0015] In the diagram: 1. Mounting base; 2. Feeding section; 3. Discharging section; 4. Conveying section; 5. Heat exchange tube; 6. Insulation layer; 7. Fixing sleeve; 8. Fixing base; 9. Vibration spring; 11. Support spring; 12. Feed hopper; 13. Flexible pipe; 14. Vacuum cleaner; 15. Bracket; 16. Vibration motor. Detailed Implementation

[0016] To more clearly illustrate the technical solution of this utility model, the following description is made in conjunction with the accompanying drawings. Obviously, the drawings described below are only one embodiment of this utility model. For those skilled in the art, other embodiments can be obtained based on these drawings and embodiments without creative effort, and all of them fall within the protection scope of this utility model.

[0017] according to Figure 1-3 As shown, a vibrating slag conveyor includes a mounting base 1. A conveying pipe assembly is provided above the mounting base 1. The conveying pipe assembly includes a feeding section 2 at the beginning, a discharging section 3 at the end, and a conveying section 4 between the feeding section 2 and the discharging section 3. A spiral heat exchange tube 5 is wound on the outer wall of the conveying section 4. The heat exchange tube 5 is located in the cavity formed by the conveying section 4 and the insulation layer 6. The insulation layer 6 is a cylindrical structure formed by splicing two semi-cylinders.

[0018] In the above specific technical solution, the conveying pipeline assembly is divided into a feeding section 2, a discharging section 3, and a conveying section 4. The multi-section conveying pipeline assembly facilitates cleaning by workers. The insulation layer 6 is installed on the outside of the conveying pipeline assembly. The cavity formed by the insulation layer 6 and the conveying pipeline assembly has an internal insulation function. A heat exchange tube 5 is spirally wound in the conveying section 4 in the cavity. The waste residue has a high temperature. During the conveying process, the liquid in the heat exchange tube 5 can be heated, thereby realizing the recovery of waste heat from the waste residue, reducing resource waste. Moreover, the waste residue is conveyed in the conveying pipeline assembly with high sealing performance, which helps to reduce dust spillage and ensure the quality of the working environment.

[0019] The inlet and outlet of the heat exchange tube 5 pass through the side wall of the insulation layer 6 and are connected to the pipeline.

[0020] The top of the insulation layer 6, the feeding section 2, and the unloading section 3 are provided with fixing sleeves 7, which are bolted to the fixing base 8. The bottom of the fixing sleeve 7 is provided with a vibration spring 9, which is inclined in the conveying direction. The bottom of the vibration spring 9 is connected to the mounting base 1, which is mounted on top of the support spring 11. The mounting base 1 is provided with a vibration motor 16.

[0021] The vibration motor 16 drives the mounting base 1 to vibrate, causing the waste residue to move forward during the vibration process. It is worth noting that the conveying principle of the vibrating waste residue machine is existing technology and will not be elaborated here.

[0022] The feeding section 2, conveying section 4, and unloading section 3 are connected by bolts, and the insulation layer 6 in both parts is also connected by bolts. The feeding section 2, conveying section 4, and unloading section 3 are easy to disassemble and clean, and the insulation layer 6 in both parts is easily disassembled and assembled by bolts.

[0023] The feeding section 2 is provided with a feeding hopper 12 on its side wall. The end of the feeding section 2 is bent upward and connected to the vacuum cleaner 14 through a flexible pipe 13. The vacuum cleaner 14 is mounted on the bracket 15. The vacuum cleaner 14 can discharge dust during the conveying process, thereby preventing dust from overflowing. The upward bending of the end of the feeding section 2 prevents waste residue from flowing back and affecting the operation of the vacuum cleaner 14 during the conveying process. The feeding section 2 and the vacuum cleaner 14 are connected by a flexible pipe 13, which reduces the impact of vibration on the vacuum cleaner 14 and helps to improve the service life of the vacuum cleaner 14.

[0024] The flexible pipe 13 is made of a high-temperature resistant material.

[0025] The above embodiments are merely exemplary embodiments of the present utility model and are not intended to limit the present utility model. The scope of protection of the present utility model is defined by the claims. Those skilled in the art can make various modifications or equivalent substitutions to the present utility model within its substance and scope of protection, and such modifications or equivalent substitutions should also be considered to fall within the scope of protection of the present utility model.

Claims

1. A vibratory slag conveyor, comprising a mounting base (1), characterized in that, The mounting base (1) is provided with a conveying pipe assembly. The conveying pipe assembly includes a feeding section (2) at the beginning, a discharging section (3) at the end, and a conveying section (4) between the feeding section (2) and the discharging section (3). A spiral heat exchange tube (5) is wound on the outer wall of the conveying section (4). The heat exchange tube (5) is located in the cavity formed by the conveying section (4) and the insulation layer (6). The insulation layer (6) is a cylindrical structure formed by splicing two semi-cylinders.

2. The vibrating slag conveyor according to claim 1, characterized in that, The inlet and outlet of the heat exchange tube (5) are connected to the pipeline through the side wall of the insulation layer (6).

3. A vibrating slag conveyor according to claim 2, characterized in that, The top of the insulation layer (6), the feeding section (2), and the unloading section (3) is provided with a fixing sleeve (7), the fixing sleeve (7) is bolted to the fixing seat (8), the bottom of the fixing sleeve (7) is provided with a vibration spring (9), the vibration spring (9) is inclined in the conveying direction, the bottom of the vibration spring (9) is connected to the mounting seat (1), and the mounting seat (1) is installed on the top of the support spring (11).

4. A vibrating slag conveyor according to claim 3, characterized in that, The feeding section (2), conveying section (4) and unloading section (3) are connected by bolts, and the insulation layer (6) of the two parts is connected by bolts.

5. A vibrating slag conveyor according to claim 4, characterized in that, The side wall of the feeding section (2) is provided with a feeding hopper (12). The end of the feeding section (2) is bent upward and connected to the vacuum cleaner (14) through a flexible pipe (13). The vacuum cleaner (14) is mounted on a bracket (15).

6. A vibrating slag conveyor according to claim 5, characterized in that, The flexible pipe (13) is made of high temperature resistant material.

7. A vibrating slag conveyor according to claim 6, characterized in that, The mounting base (1) is equipped with a vibration motor (16).