Water-cooling slag conveying device
Through the design of corrugated water pipes and elastic material hoses, cold water flow drives vibration cooling of slag material, solving the high energy consumption and large volume problems of water-cooled slag material conveying device, achieving efficient cooling and convenient transportation.
Patent Information
- Application Number
- CN202422567838.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-24
- Publication Date
- 2025-07-08
- Estimated Expiration
- 2034-10-24
AI Technical Summary
When used, the water-cooled slag material conveying device requires a vibrating structure that operates intermittently to ensure cooling efficiency, resulting in high power consumption and large size of the device, which is inconvenient for transportation and layout.
The corrugated water pipe and elastic material hose structure are adopted to drive the vibration and cooling of the slag material through cold water flow. Combined with a foldable design, it reduces the volume and facilitates transportation and layout.
It reduces power consumption, improves cooling efficiency, reduces device volume, and facilitates transportation and layout.
Smart Images

Figure CN223073336U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of mechanical equipment, in particular to a water-cooled slag conveying device. Background Art
[0002] The slag cooler is mainly composed of a cylinder, a slag inlet box, a slag outlet box, a power transmission device, a base frame and an electrical control system. The cylinder and the partition frame are both water-cooled wall structures. They are divided into drum slag coolers, vibrating slag coolers, water-cooled slag coolers and disc slag coolers. The water-cooled slag cooler can quickly cool and transport high-temperature waste slag to ensure stable operation of the production line. After receiving the high-temperature slag, the water-cooled slag conveyor uses its built-in cooling device, such as a circulating water cooling system or an air cooling system, to quickly and evenly cool the slag. During the cooling process, the cooling water or air is in full contact with the high-temperature slag to achieve efficient heat exchange, so that the slag temperature is rapidly reduced. At the same time, the conveying device of the water-cooled slag conveyor can stably convey the cooled slag to the outlet to complete the entire processing process. This conveying method not only ensures the conveying efficiency of the slag, but also ensures the stability of the slag during the conveying process, avoiding problems such as slag scattering or blockage caused by vibration or fluctuations, but it still has the following disadvantages in actual use:
[0003] The water-cooled slag conveying device drives the flow of cold water through a pump to cool down the slag conveyed by the conveying device. It has a simple structure and high cooling efficiency. However, in the actual production process, in order to ensure the heat conduction area between the slag and the cold water, it is often necessary to use a conveying structure or a vibrating structure to continuously drive the movement or vibration of the slag so that the slag and the air in the conveyor are fully in contact, and the heat is transferred to the air in the conveyor. The air in the conveying device is then cooled by cold water, so that the slag can be quickly cooled down. However, the conveying structure or the vibrating structure needs to operate uninterruptedly when in use, which will consume a lot of electricity, resulting in a large cost for the use of the conveying device.
[0004] The water-cooling conveying device is usually large in size and is often in the shape of a long tube, which is not convenient for transportation and storage. In addition, it takes up a large space during production, which is not convenient for the layout of the production space. Utility Model Content
[0005] The utility model aims to provide a water-cooled slag conveying device, which solves the problem that, through a first support frame and a feed hopper, the water-cooled slag conveying device can be used to transport and fully cool the slag through the vibration of the vibrator-driven device during actual use, but the vibrator needs to operate continuously, resulting in high operating expenses, and the device is large in size, inconvenient to transport and store, and occupies a large production space.
[0006] In order to solve the above technical problems, the utility model is realized by the following technical solutions:
[0007] The utility model relates to a water-cooled slag conveying device, which comprises a first support frame and a feeding hopper. One end of the first support frame is provided with a second support frame, and a corrugated water pipe is clamped and fixed between the first support frame and the second support frame. A feeding hopper is arranged at the top of one side of the first support frame, and a discharge pipe is clamped through the bottom of one side of the second support frame. One end of the discharge pipe is clamped through an elastic material conveying hose;
[0008] When not in use, the corrugated water pipe can be folded to reduce the volume of the conveying device and improve the space utilization rate. Moreover, the corrugated water pipe and the elastic material conveying hose can be bent at a certain angle to improve the convenience of use. When the slag enters the elastic material conveying hose through the feeding hopper, cold water enters the corrugated water pipe through the water inlet pipe to cool the elastic material conveying hose, further cooling the slag. At the same time, the flow of water will cause the elastic material conveying hose to vibrate, further vibrating the slag in the elastic material conveying hose, so that the slag moves along the inclined elastic material conveying hose and is fully cooled, without the need to use an additional vibration motor for vibration, reducing the cost and use expenses of the device.
[0009] Furthermore, a water inlet pipe is welded through the bottom of the first support frame, and a drain pipe is welded through the top of the second support frame. The feeding hopper is located on the other side of the first support frame relative to the corrugated water pipe;
[0010] The corrugated water pipe can be folded and stored when needed, reducing the volume of the conveying device and improving the space utilization rate. Moreover, the corrugated water pipe and the elastic material conveying hose can be bent at a certain angle to improve the convenience of use.
[0011] Furthermore, support bases are welded and fixed to the bottoms of the first support frame and the second support frame, and universal wheels are rotatably clamped to the bottoms of each support base;
[0012] The movement of the first support frame and the second support frame can be driven through the universal wheels, facilitating the transportation of the conveying device and improving the convenience of use.
[0013] Furthermore, a feeding pipe is welded and fixed to the bottom of the feeding hopper. The feeding pipe is clamped through the top of one side of the first support frame, and the bottom of the feeding pipe is clamped through one end of the elastic material conveying hose;
[0014] After the slag is poured into the feeding hopper, the slag is conveyed along the inclined feeding pipe, elastic material conveying hose and discharge pipe, and is cooled by the cold water pumped into the corrugated water pipe. The structure is simple and the cost is low.
[0015] Furthermore, the elastic material conveying hose is inserted through one end of the corrugated water pipe, the discharge pipe is clamped through one end of the elastic material conveying hose, and the elastic material conveying hose is located between the feeding pipe and the discharge pipe;
[0016] When the slag material moves along the elastic material - feeding hose, the flow of water will cause the elastic material - feeding hose to vibrate, further vibrating the slag material inside the elastic material - feeding hose, increasing the moving speed of the slag material inside the elastic material - feeding hose. Moreover, a rigid structure perpendicular to the water flow direction can be arranged on the outer peripheral surface of the elastic material - feeding hose. When the water flow passes through the corrugated water pipe, the water flow will collide with the rigid structure, driving the vibration of the elastic material - feeding hose, so that the slag material moves along the inclined elastic material - feeding hose under the action of vibration and gravity. At the same time, the slag material vibrates and comes into full contact with the cold air, fully cooling the slag material, without the need to additionally use a vibration motor for vibration, reducing the cost and usage expenses of the device.
[0017] The utility model has the following beneficial effects:
[0018] By setting the first support frame and the feeding hopper, the utility model solves the problem that in a water - cooled slag conveyor, the flow of cold water is driven by a pump to cool the slag conveyed by the conveyor. The structure is simple and the cooling efficiency is high. However, in the actual production process, in order to ensure the heat - conduction area between the slag and the cold water, a conveying structure or a vibration structure is often needed to continuously drive the movement or vibration of the slag, so that the slag comes into full contact with the air in the conveyor, transferring the heat to the air in the conveyor, and then cooling the air in the conveyor with cold water so that the slag can be quickly cooled. However, the conveying structure or the vibration structure needs to run continuously, consuming a large amount of electric energy, resulting in a large usage expense of the conveyor. After the slag enters the elastic material - feeding hose, the elastic material - feeding hose is cooled by pumping cold water into the corrugated water pipe, further cooling the air inside the elastic material - feeding hose and the slag in contact with the elastic material - feeding hose. Moreover, the flow of water will cause the elastic material - feeding hose to vibrate, further vibrating the slag material inside the elastic material - feeding hose, increasing the moving speed of the slag material inside the elastic material - feeding hose, and making the slag vibrate and come into full contact with the cold air, fully cooling the slag material, without the need to additionally use a vibration motor for vibration, reducing the cost and usage expenses of the device.
[0019] By setting the first support frame and the feeding hopper, the utility model solves the problems that a water - cooled conveying device is usually large in volume, and the whole is often in a long - tube shape, which is not convenient for transportation and storage, and occupies a large space during production, making it inconvenient for the layout of the production space. When using the conveying device, the first support frame and the second support frame are stretched to stretch the corrugated water pipe, and the corrugated water pipe and the elastic material - feeding hose can be bent at a certain angle, facilitating the cooperation with the layout of the production space and improving the convenience of use. When not in use, by folding the corrugated water pipe, the volume of the conveying device is reduced, improving the space utilization rate. Description of the Drawings
[0020] Figure 1 is the structural effect diagram of the present utility model;
[0021] Figure 2 is the structural sectional view of the present utility model;
[0022] Figure 3 is the structural diagram of the first support frame, the second support frame and the corrugated water pipe of the present utility model;
[0023] Figure 4 is the structural diagram of the feed hopper and the elastic feed hose of the present utility model.
[0024] Reference numerals:
[0025] 1. First support frame; 101. Second support frame; 102. Corrugated water pipe; 103. Support base; 104. Water inlet pipe; 105. Drain pipe; 106. Universal wheel; 2. Feed hopper; 201. Discharge pipe; 202. Elastic feed hose; 203. Feed pipe. Specific embodiments
[0026] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model.
[0027] Please refer to Figures 1-4 As shown, the present utility model is a water-cooled slag conveying device, including a first support frame 1 and a feed hopper 2. A second support frame 101 is provided at one end of the first support frame 1. A corrugated water pipe 102 is fixedly clamped between the first support frame 1 and the second support frame 101. A feed hopper 2 is provided at the top on one side of the first support frame 1. A discharge pipe 201 is fixedly clamped through the bottom on one side of the second support frame 101. One end of the discharge pipe 201 is fixedly clamped through an elastic feed hose 202;
[0028] Move the conveying device to a suitable position and stretch and appropriately bend the corrugated water pipe 102 so that the first support frame 1 and the second support frame 101 move to a suitable position. Pour the slag into the feed hopper 2 so that the slag moves along the elastic feed hose 202. At the same time, pump cold water into the corrugated water pipe 102 through the water inlet pipe 104. The cold water cools the elastic feed hose 202 and the slag, and at the same time causes the elastic feed hose 202 to vibrate, further vibrating the slag in the elastic feed hose 202, so that the slag is fully cooled while moving.
[0029] Among them, as Figures 1-3As shown, a water inlet pipe 104 is welded through the bottom of the first support frame 1, and a drain pipe 105 is welded through the top of the second support frame 101. The feeding hopper 2 is located on the other side of the first support frame 1 relative to the corrugated water pipe 102. Support bases 103 are welded and fixed to the bottoms of both the first support frame 1 and the second support frame 101, and universal wheels 106 are rotatably clamped to the bottoms of each support base 103;
[0030] The conveying device is driven by the universal wheels 106 to move to a suitable position, the corrugated water pipe 102 is stretched and appropriately bent so that the first support frame 1 and the second support frame 101 are placed in suitable positions. When conveying and cooling the slag, cold water enters the corrugated water pipe 102 through the water inlet pipe 104 to cool down the elastic material conveying hose 202, and then is discharged through the drain pipe 105.
[0031] Among them, as Figure 1 , 2 , as shown in Figure 4, a feeding pipe 203 is welded and fixed to the bottom of the feeding hopper 2. The feeding pipe 203 is clamped through the top of one side of the first support frame 1, and the bottom of the feeding pipe 203 is clamped through one end of the elastic material conveying hose 202. The elastic material conveying hose 202 is inserted through one end of the corrugated water pipe 102. A discharge pipe 201 is clamped through one end of the elastic material conveying hose 202, and the elastic material conveying hose 202 is located between the feeding pipe 203 and the discharge pipe 201;
[0032] After the slag is poured into the feeding hopper 2, the slag enters the feeding pipe 203 under the action of gravity and is conveyed along the inclined feeding pipe 203, the elastic material conveying hose 202 and the discharge pipe 201. The water flow collides with the elastic material conveying hose 202, causing the elastic material conveying hose 202 to vibrate, further vibrating the slag in the elastic material conveying hose 202, causing the slag to move along the inclined elastic material conveying hose 202 and being fully cooled, and finally discharged through the discharge pipe 201.
[0033] The specific working principle of the utility model is as follows: The conveying device is driven by the universal wheels 106 to move to a suitable position, the corrugated water pipe 102 is stretched and bent appropriately, so that the first support frame 1 and the second support frame 101 are placed in suitable positions. After the slag is poured into the feeding hopper 2, the slag enters the feeding pipe 203 under the action of gravity and is conveyed along the inclined feeding pipe 203, the elastic feeding hose 202 and the discharging pipe 201. Cold water enters the corrugated water pipe 102 through the water inlet pipe 104 (the water inlet flow rate changes continuously, sometimes large and sometimes small, continuously generating a water hammer effect, and the corrugated water pipe 102 swings and vibrates continuously. At this time, the elastic feeding hose 202 will also swing accordingly, and the water flow continuously impacts the elastic feeding hose 202. The corrugated water pipe 102 is longer than the elastic feeding hose 202, and the cooling water in the corrugated water pipe 102 is not always in a full state), cooling the elastic feeding hose 202 and the slag, and the water flow collides with the elastic feeding hose 202, causing the elastic feeding hose 202 to vibrate, further vibrating the slag in the elastic feeding hose 202, making the slag move along the inclined elastic feeding hose 202 and being fully cooled, and finally discharged through the discharging pipe 201. After the device is used up, the corrugated water pipe 102 is folded to reduce the volume of the conveying device.
[0034] The above are only the preferred embodiments of the utility model and do not limit the utility model. Any modification of the technical solutions recorded in the foregoing embodiments, any equivalent replacement of some technical features, and any modification, equivalent replacement, and improvement made thereof all fall within the protection scope of the utility model.
Claims
1. A water-cooled slag material conveying device, comprising a first support frame (1) and a feeding hopper (2), characterized in that: One end of the first support frame (1) is provided with a second support frame (101), and a corrugated water pipe (102) is fixedly clamped between the first support frame (1) and the second support frame (101). A feeding hopper (2) is arranged at the top of one side of the first support frame (1), and a discharge pipe (201) is fixedly clamped through the bottom of one side of the second support frame (101). One end of the discharge pipe (201) is fixedly clamped through an elastic feeding hose (202).
2. The water-cooled slag conveying device according to claim 1, characterized in that: A water inlet pipe (104) is fixedly welded through the bottom of the first support frame (1), and a drain pipe (105) is fixedly welded through the top of the second support frame (101). The feeding hopper (2) is located on the other side of the first support frame (1) relative to the corrugated water pipe (102).
3. The water-cooled slag conveying device according to claim 1, wherein: Support bases (103) are fixedly welded to the bottoms of the first support frame (1) and the second support frame (101), and universal wheels (106) are rotatably clamped to the bottoms of each of the support bases (103).
4. A water-cooled slag conveying device according to claim 1, characterized in that: A feeding pipe (203) is fixedly welded to the bottom of the feeding hopper (2). The feeding pipe (203) is fixedly clamped through the top of one side of the first support frame (1), and the bottom of the feeding pipe (203) is fixedly clamped through one end of the elastic feeding hose (202).
5. The water-cooled slag conveying device according to claim 4, characterized in that: The elastic feeding hose (202) is inserted through one end of the corrugated water pipe (102). The discharge pipe (201) is fixedly clamped through one end of the elastic feeding hose (202). The elastic feeding hose (202) is located between the feeding pipe (203) and the discharge pipe (201).