CN214568485U - High-efficient feed arrangement that stabilizes of schizolysis carbon black - Google Patents
High-efficient feed arrangement that stabilizes of schizolysis carbon black Download PDFInfo
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- CN214568485U CN214568485U CN202022372248.4U CN202022372248U CN214568485U CN 214568485 U CN214568485 U CN 214568485U CN 202022372248 U CN202022372248 U CN 202022372248U CN 214568485 U CN214568485 U CN 214568485U
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Abstract
The utility model provides a high-efficiency stable feeding device for cracking carbon black, which comprises a spiral material homogenizing device, a temporary storage bin and a spiral material pushing device, wherein the upper part of the temporary storage bin is provided with a feeding hole, and the top and the bottom of the temporary storage bin are provided with openings; the spiral material homogenizing device is vertically arranged on the temporary storage bin from the center of the temporary storage bin and comprises a rotating part and a spiral part, wherein the spiral part is positioned in the temporary storage bin, and is fixedly connected with the rotating part at the top opening of the temporary storage bin; and the bottom opening of the temporary storage bin is connected with a spiral pushing device. Feed arrangement is stabilized to schizolysis carbon black high efficiency simple structure and operation are stable, can control the high-efficient and stable even granulator that gets into of carbon black, and then realize that the size, soft or hard degree, the loose degree that the granulator made the granule are all even.
Description
Technical Field
The utility model relates to a pyrolysis carbon black granulation equipment of one of junked tire schizolysis result especially relates to a feed arrangement is stabilized to pyrolysis carbon black high efficiency.
Background
The granular cracking carbon black can be changed into a powdery material which contains a large amount of air and has very light specific gravity after being crushed by a crusher, is not easy to transport and inconvenient to use, and can pollute the environment if the granular cracking carbon black is not well treated. Therefore, to solve these problems of powdered carbon black and to meet the customer requirements for carbon black morphology, more and more manufacturers are developing carbon black pelletizing equipment. A very important link in the carbon black granulation process is that carbon black needs to efficiently and stably and uniformly enter a granulator. The purpose of this is to ensure that the granules produced by the granulator are uniform in size, softness and degree of loosening.
SUMMERY OF THE UTILITY MODEL
The utility model provides a feed arrangement is stabilized to pyrolysis carbon black high efficiency for solve the problem of above-mentioned carbon black granulation, its technical scheme as follows:
a high-efficiency stable feeding device for cracking carbon black comprises a spiral material homogenizing device, a temporary storage bin and a spiral material pushing device, wherein a feeding hole is formed in the upper part of the temporary storage bin, and openings are formed in the top and the bottom of the temporary storage bin; the spiral material homogenizing device is vertically arranged on the temporary storage bin from the center of the temporary storage bin and comprises a rotating part and a spiral part, wherein the spiral part is positioned in the temporary storage bin, and is fixedly connected with the rotating part at the top opening of the temporary storage bin; and the bottom opening of the temporary storage bin is connected with a spiral pushing device.
The temporary storage bin is spindle-shaped, and the width of the middle part is larger than that of the top part and that of the bottom part.
A stepping motor is arranged in the rotating part, and the rotating shaft of the spiral part is driven to rotate by the stepping motor.
The spiral component is arranged in the temporary storage bin, and the shape of the spiral component is matched with that of the temporary storage bin.
The spiral part comprises a rotating shaft and spiral blades on the rotating shaft, the thread pitches of the spiral blades are equal, and the outer diameters of the spiral blades are different.
Spiral blevile of push horizontal installation is in the bottom of temporary storage feed bin, and it includes power unit and pushes away the material part, power unit and material part fixed connection that pushes away.
A stepping motor is installed in the power component, and vertical motion is changed into horizontal motion through a gear to drive a rotating shaft of the material pushing component to rotate.
The material pushing component comprises a rotating shaft and spiral blades on the rotating shaft, the screw pitches of the spiral blades are equal, and the outer diameters of the spiral blades are equal.
Feed arrangement is stabilized to schizolysis carbon black high efficiency simple structure and operation are stable, can control the high-efficient and stable even granulator that gets into of carbon black, and then realize that the size, soft or hard degree, the loose degree that the granulator made the granule are all even.
Drawings
FIG. 1 is a schematic structural diagram of the high-efficiency stable feeding device for the cracked carbon black.
Detailed Description
As shown in fig. 1, the efficient stable feeding device for the cracked carbon black comprises a feeding port 1, a spiral homogenizing device, a temporary storage bin 3 and a spiral pushing device, wherein the feeding port 1 is arranged at the upper part of the temporary storage bin 3, the spiral homogenizing device comprises a rotating part 2 and a spiral part 4, and the spiral part 4 is positioned in the temporary storage bin 3 and fixedly connected with the rotating part 2; and an opening at the bottom of the temporary storage bin 3 is connected with a spiral pushing device.
The temporary storage bin 3 is spindle-shaped, has the widest middle part, gradually decreases from the middle part to the width of the top part, and gradually decreases from the middle part to the width of the bottom part. The temporary storage bin 3 is provided with openings at the top and the bottom.
The spiral material homogenizing device is vertically arranged on the temporary storage bin 3 from the center of the temporary storage bin 3, and the connecting position of the rotating part 2 and the spiral part 4 is positioned at the top opening of the temporary storage bin 3. A stepping motor is arranged in the rotating part 2, and the spiral part 4 is driven to rotate by the stepping motor. The spiral part 4 is arranged in the temporary storage bin 3, and the shape of the spiral part is matched with that of the temporary storage bin 3. The helical part 4 comprises a rotating shaft and helical blades on the rotating shaft, the pitches of the helical blades are equal, and the outer diameters of the helical blades are different.
The upper portion of temporary storage feed bin 3 is provided with feed inlet 1, feed inlet 1 is located between the middle part and the top of temporary storage feed bin 3, be located spiral mixing device's rotatable part 2's next door. Feed inlet 1 is for invering the toper, and the opening is greater than the export, and the export is connected with temporary storage feed bin 3 for provide the carbon black raw materials to temporary storage feed bin 3's the inside.
Spiral blevile of push horizontal installation is in the bottom of temporary storage feed bin 3, and it includes power pack 5 and pushes away material part 6, power pack 5 and the material part 6 fixed connection that pushes away, install step motor in the power pack 5, become horizontal motion with vertical motion through the gear, drive and push away material part 6 and carry out horizontal rotation, and then realize the material and carry. The material pushing component 6 comprises a rotating shaft and spiral blades on the rotating shaft, the screw pitches of the spiral blades are equal, and the outer diameters of the spiral blades are equal.
During the use, the carbon black raw materials enter the temporary storage bin 3 from the feed inlet 1, the vertically-installed spiral material homogenizing device uniformly disperses the carbon black raw materials in the temporary storage bin 3, the raw materials are uniformly conveyed to the bottom of the temporary storage bin 3, then the raw materials are conveyed to the horizontally-installed spiral material pushing device, and the spiral material pushing device conveys the carbon black raw materials uniformly to next process equipment.
Feed arrangement is stabilized to schizolysis carbon black high efficiency simple structure and operation are stable, can control the high-efficient and stable even granulator that gets into of carbon black, and then realize that the size, soft or hard degree, the loose degree that the granulator made the granule are all even.
Claims (6)
1. The utility model provides a feed arrangement is stabilized to pyrolysis carbon black high efficiency which characterized in that: the device comprises a spiral material homogenizing device, a temporary storage bin and a spiral material pushing device, wherein a feeding hole is formed in the upper part of the temporary storage bin, and openings are formed in the top and the bottom of the temporary storage bin; the spiral material homogenizing device is vertically arranged on the temporary storage bin from the center of the temporary storage bin and comprises a rotating part and a spiral part, the spiral part is positioned in the temporary storage bin, the shape of the spiral part is matched with that of the temporary storage bin, and the upper part of the spiral part is fixedly connected with the rotating part at the opening at the top of the temporary storage bin; and the bottom opening of the temporary storage bin is connected with a spiral pushing device.
2. The high efficiency stable feeding device of carbon black pyrolysis according to claim 1, characterized in that: a stepping motor is arranged in the rotating part, and the rotating shaft of the spiral part is driven to rotate by the stepping motor.
3. The high efficiency stable feeding device of carbon black pyrolysis according to claim 1, characterized in that: the spiral part comprises a rotating shaft and spiral blades on the rotating shaft, the thread pitches of the spiral blades are equal, and the outer diameters of the spiral blades are different.
4. The high efficiency stable feeding device of carbon black pyrolysis according to claim 1, characterized in that: spiral blevile of push horizontal installation is in the bottom of temporary storage feed bin, and it includes power unit and pushes away the material part, power unit and material part fixed connection that pushes away.
5. The high efficiency stable feeding device of carbon black pyrolysis according to claim 4, characterized in that: a stepping motor is installed in the power component, and vertical motion is changed into horizontal motion through a gear to drive a rotating shaft of the material pushing component to rotate.
6. The high efficiency stable feeding device of carbon black pyrolysis according to claim 4, characterized in that: the material pushing component comprises a rotating shaft and spiral blades on the rotating shaft, the screw pitches of the spiral blades are equal, and the outer diameters of the spiral blades are equal.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202022372248.4U CN214568485U (en) | 2020-10-22 | 2020-10-22 | High-efficient feed arrangement that stabilizes of schizolysis carbon black |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202022372248.4U CN214568485U (en) | 2020-10-22 | 2020-10-22 | High-efficient feed arrangement that stabilizes of schizolysis carbon black |
Publications (1)
Publication Number | Publication Date |
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CN214568485U true CN214568485U (en) | 2021-11-02 |
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CN202022372248.4U Active CN214568485U (en) | 2020-10-22 | 2020-10-22 | High-efficient feed arrangement that stabilizes of schizolysis carbon black |
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2020
- 2020-10-22 CN CN202022372248.4U patent/CN214568485U/en active Active
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