CN216186196U - Cooling conveying and automatic packaging system for flaky high-temperature materials - Google Patents
Cooling conveying and automatic packaging system for flaky high-temperature materials Download PDFInfo
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- CN216186196U CN216186196U CN202121896500.XU CN202121896500U CN216186196U CN 216186196 U CN216186196 U CN 216186196U CN 202121896500 U CN202121896500 U CN 202121896500U CN 216186196 U CN216186196 U CN 216186196U
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Abstract
The utility model provides a cooling, conveying and automatic packing system for flaky high-temperature materials, which comprises a horizontal conveying device, a vertical lifting device, a dust removal device and a storage bin. The horizontal conveying device is provided with a fan, a dust hood is arranged above the fan, the fan is used for cooling high-temperature materials in an air cooling forced mode, and the dust hood is used for introducing emitted dust into the dust removal device. The vertical lifting device is connected with a feed inlet at the top of the feed bin through a three-way material distributor, the lower part of the feed bin adopts a suspended lower conical hopper, a bin wall vibrator is arranged on an outer wall plate of the suspended lower conical hopper, a feeding device is arranged at a discharge outlet at the lower part of the feed bin, a packaging metering scale is arranged at the tail part of the feeding device, and a ton packaging conveying device is arranged at the lower part of the packaging metering scale. The utility model greatly improves the automatic production capacity, shortens the waiting time for packing materials and reduces the labor cost.
Description
Technical Field
The utility model belongs to the technical field of high-temperature material conveying and packaging equipment, and particularly relates to a cooling conveying and automatic packaging system for flaky high-temperature materials.
Background
The initial temperature of the flaky material produced by the vanadium pentoxide calcining furnace is about 500 ℃, the shape is irregular, the length and the width are about 40-60mm, the thickness is about 1-2mm, and the bulk density is about 1.2t/m3The material is fragile, and can be packaged by ton bags when the material is cooled to below 60 ℃. At present, each domestic vanadium extraction plant adopts a manual transportation and packaging method: the material gets into in the hopper from the discharge gate, and the hopper after filling with the material is handled to the cooling zone by the driving, cools off the material of piling up in the hopper with the fan, and the material after the cooling is packed into ton bag by the manual work. Because manual packing operation is needed and the cooling time is long, the production capacity of the calcining furnace is seriously restricted, and the labor cost is increased. In addition, according to workplace hazard occupational exposure limits part 1: chemical harmful factors (GBZ 2.1.1-2019), vanadium pentoxide dust is toxic dust, has damage effect on respiratory system and skin, and acute poisoning can cause irritation symptoms of nose, throat and lung. The manual transportation and packaging of the vanadium pentoxide sheets are not beneficial to the health of the staff.
SUMMERY OF THE UTILITY MODEL
In view of the above disadvantages, the present invention provides a sheet-shaped high temperature material cooling conveying and automatic packing system, which can cool a high temperature material during a conveying process, thereby greatly improving an automatic production capacity, shortening a material packing waiting time, reducing labor cost, and simultaneously ensuring a health of a worker.
In order to achieve the purpose, the utility model adopts the technical scheme that: a cooling conveying and automatic packing system for flaky high-temperature materials comprises a horizontal conveying device, a vertical lifting device, a dust removal device and a storage bin; the horizontal conveying device is provided with a fan, a dust hood is arranged above the fan, the fan is used for performing air cooling forced cooling on high-temperature materials, the dust hood is used for introducing emitted dust into the dust removal device, and the fan and the horizontal conveying device are integrally arranged and do not occupy the ground independently; the discharge port of the horizontal conveying device is hermetically connected with the feeding port of the vertical lifting device through a pipeline, and the vertical lifting device is connected with the feeding port at the top of the storage bin through a three-way material distributor; the feeding device is arranged at a discharge port at the lower part of the storage bin, the packaging metering scale is arranged at the tail part of the feeding device, and the ton bag conveying device is arranged at the lower part of the packaging metering scale.
Furthermore, the horizontal conveying device adopts a groove type vibration conveyor.
And an air suction pipeline is arranged on the vertical lifting device and used for guiding the emitted dust to the dust removal device.
The feed bin sets up two at least, and feed bin upper portion adopts the drum structure to charge level indicator and bimetal thermometer have been arranged in the feed bin, when the feed bin reaches the rated load volume, charge level indicator output signal control tee bend tripper switches the feed bin.
The lower part of the storage bin adopts a suspended lower conical hopper, and a bin wall vibrator is arranged on an outer wall plate of the suspended lower conical hopper.
Compared with the prior art, the utility model has the beneficial effects that: the horizontal conveying device is provided with the fan for carrying out forced air cooling on the high-temperature materials, the materials are cooled while being conveyed, the production efficiency is improved, and the horizontal conveying device adopts a vibration feeding mode, so that the problem that the equipment is jammed or damaged in operation due to the fact that the materials are crushed and fall into a transmission element of the equipment can be effectively avoided; the dust removal systems are arranged on the horizontal conveying device and the vertical conveying device, so that the pollution is reduced, and the working environment is improved; the three-way material distributor is adopted for circular blanking, and the conical hopper wall plate is provided with the bin wall vibrator, so that the bridging and the blockage of the flaky materials in the bin are avoided, and the production continuity is improved.
Drawings
FIG. 1 is a schematic structural view of the present invention;
FIG. 2 is a right side view of FIG. 1;
FIG. 3 is a front view of the horizontal transfer device of the present invention;
FIG. 4 shows a side view of FIG. 3;
fig. 5 is a schematic structural view of the suspended lower cone hopper of the storage bin.
Detailed Description
The technical scheme of the utility model is clearly and completely described below by combining the drawings and the specific embodiment.
Referring to fig. 1-5, a cooling, conveying and automatic packaging system for sheet-shaped high-temperature materials comprises a horizontal conveying device 1, a vertical lifting device 2, a dust removing device 3 and a storage bin 4. As shown in figure 1, a fan 1.1 is arranged on the horizontal conveying device, a dust hood 3.1 is arranged above the fan, the fan is used for air-cooling and forcibly cooling the high-temperature materials, the dust hood is used for introducing emitted dust into the dust removing device 3, the dust removing system is synchronously started in the conveying process of the high-temperature materials, negative pressure is formed in the dust hood, and the emitted dust is collected. In addition, the fan and the horizontal conveying device are integrally arranged, and the independent occupied area is saved. As shown in fig. 3 and 4, in this embodiment, in order to ensure that the material is rapidly cooled while being stably transported, six fans are arranged along the material moving direction, and two fans are arranged in each row, which is three rows in total. The discharge port of the horizontal conveying device 1 is hermetically connected with the feeding port of the vertical lifting device 2 through a pipeline, and the vertical lifting device is connected with the feeding port at the top of the storage bin 4 through a tee material distributor 5. A feeding device 6 is arranged at a discharge port at the lower part of the storage bin, a packing metering scale 7 is arranged at the tail part of the feeding device, and a ton packing conveying device 8 is arranged at the lower part of the packing metering scale. Specifically, the packing weigher 7 is suspended, a weight sensor is arranged, when the weighing requirement is reached, a signal is fed back to the feeding device 6, the feeding device adopts variable frequency control, and the starting, stopping and feeding speed of the feeding device 6 are controlled.
In this embodiment, horizontal transport device 1 adopts slot type vibrations conveyer, and its width is 1m, and length is 7m to the transport face is made for the monoblock steel sheet, avoids leaking the material.
The vertical lifting device 2 is provided with an air suction pipeline, so that emitted dust is led to the dust removal device, and high-temperature materials can be further cooled. In order to enhance the sealing performance, the vertical lifting device adopts a closed casing.
As shown in fig. 2, the upper part of the bin adopts a cylindrical structure, and the bin needs to be switched to carry out circular blanking in the material packaging process so as to realize continuous production, so at least two bins need to be arranged. In the embodiment, the stock bin is provided with two stock bins, a charge level indicator 9 and a bimetallic thermometer 10 are arranged in each stock bin, and when the stock bins reach rated quantity, the three-way material distributor 5 is controlled by output signals of the charge level indicators to switch the stock bins. As shown in fig. 5, the lower part of the storage bin adopts a suspended lower conical hopper, and a bin wall vibrator 11 is arranged on the outer wall plate of the suspended lower conical hopper to avoid bridging and blocking of the flaky materials in the storage bin 4. According to the utility model, the high-temperature material is cooled forcibly by air cooling in the conveying process, so that the temperature of the vanadium pentoxide can be reduced from 500 ℃ to 60 ℃ before entering the vertical lifting device.
The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention, and various modifications and changes may be made by those skilled in the art. Any modification, equivalent replacement, or improvement made within the spirit and principle of the present invention shall fall within the protection scope of the present invention.
Claims (5)
1. The utility model provides a slice high temperature material cooling is carried and automatic packaging system which characterized in that: comprises a horizontal conveying device, a vertical lifting device, a dust removing device and a storage bin; the horizontal conveying device is provided with a fan, a dust hood is arranged above the fan, the fan is used for performing air cooling forced cooling on high-temperature materials, the dust hood is used for introducing emitted dust into the dust removal device, and the fan and the horizontal conveying device are integrally arranged and do not occupy the ground independently; the discharge port of the horizontal conveying device is hermetically connected with the feeding port of the vertical lifting device through a pipeline, and the vertical lifting device is connected with the feeding port at the top of the storage bin through a three-way material distributor; the feeding device is arranged at a discharge port at the lower part of the storage bin, the packaging metering scale is arranged at the tail part of the feeding device, and the ton bag conveying device is arranged at the lower part of the packaging metering scale.
2. The cooling, conveying and automatic packaging system for the flaky high-temperature material according to claim 1, characterized in that: the horizontal conveying device adopts a groove type vibration conveyor.
3. The cooling, conveying and automatic packaging system for the flaky high-temperature material according to claim 1, characterized in that: and an air suction pipeline is arranged on the vertical lifting device and used for guiding the emitted dust to the dust removal device.
4. The cooling, conveying and automatic packaging system for the flaky high-temperature material according to claim 1, characterized in that: the feed bin sets up two at least, and feed bin upper portion adopts the drum structure to charge level indicator and bimetal thermometer have been arranged in the feed bin, when the feed bin reaches the rated load volume, charge level indicator output signal control tee bend tripper switches the feed bin.
5. The cooling, conveying and automatic packaging system for the flaky high-temperature material according to claim 4, characterized in that: the lower part of the storage bin adopts a suspended lower conical hopper, and a bin wall vibrator is arranged on an outer wall plate of the suspended lower conical hopper.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202121896500.XU CN216186196U (en) | 2021-08-13 | 2021-08-13 | Cooling conveying and automatic packaging system for flaky high-temperature materials |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202121896500.XU CN216186196U (en) | 2021-08-13 | 2021-08-13 | Cooling conveying and automatic packaging system for flaky high-temperature materials |
Publications (1)
Publication Number | Publication Date |
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CN216186196U true CN216186196U (en) | 2022-04-05 |
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CN202121896500.XU Active CN216186196U (en) | 2021-08-13 | 2021-08-13 | Cooling conveying and automatic packaging system for flaky high-temperature materials |
Country Status (1)
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CN (1) | CN216186196U (en) |
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2021
- 2021-08-13 CN CN202121896500.XU patent/CN216186196U/en active Active
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