CN211133795U - Asphalt production line regeneration treatment device - Google Patents

Asphalt production line regeneration treatment device Download PDF

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Publication number
CN211133795U
CN211133795U CN201922056257.XU CN201922056257U CN211133795U CN 211133795 U CN211133795 U CN 211133795U CN 201922056257 U CN201922056257 U CN 201922056257U CN 211133795 U CN211133795 U CN 211133795U
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China
Prior art keywords
rotating
crushing
crushing box
output shaft
piece
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CN201922056257.XU
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Chinese (zh)
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刘晓斌
王国清
李国亮
高利珍
安守信
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Shanxi Xizai High Tech Materials Co ltd
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Shanxi Xizai High Tech Materials Co ltd
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  • Road Paving Machines (AREA)

Abstract

A regeneration treatment device for an asphalt production line comprises a crushing box and a mixing and stirring tank; the rotating cylinder is arranged in the crushing box, and through holes are uniformly formed in the rotating cylinder; the first rotating part is rotatably arranged on the crushing box and extends into the rotating cylinder, and the first output shaft is arranged on the first motor and is in transmission connection with the first rotating part; the crushing rod is arranged on the first rotating part, and the crushing ball is arranged on the crushing rod; the output end of the second motor is provided with a second output shaft; a first gear is arranged on the second output shaft, a second gear is arranged on the peripheral surface of the rotating cylinder, and the first gear is in meshing transmission connection with the second gear; the output port of the feeding device is positioned in the rotating cylinder; the receiving hopper is arranged at the bottom of the crushing box; the impact protrusion is provided on the rotary cylinder. The utility model discloses can carry out breakage and mixing stirring operation to the cubic pitch of retrieving, the crushing efficiency is high, and crushing effect is good to easy operation, convenient to use helps carrying out recycle to retrieving pitch.

Description

Asphalt production line regeneration treatment device
Technical Field
The utility model relates to a pitch production technical field especially relates to a pitch production line regeneration treatment device.
Background
Asphalt is a black brown complex mixture composed of hydrocarbons with different molecular weights and non-metallic derivatives thereof, and is often used for pavement paving engineering, asphalt pavement is affected by various natural factors and can be aged gradually along with the passage of time, the aged asphalt can weaken the binding force with aggregate, so that pavement granules fall off and are gradually enlarged, the use engineering of the road is affected, the cost of the asphalt pavement is high, the recycling of the asphalt can effectively reduce the cost and increase the utilization rate of materials, and the recycling of the aged asphalt of the asphalt pavement comprises the processes of digging, recycling, heating, crushing, mixing and stirring and the like of the asphalt;
the crushing to retrieving pitch is the most important ring in the whole processing procedure, and current pitch production line regeneration treatment device function singleness, the structure is complicated, and is comparatively troublesome to retrieving the crushing of pitch, and crushing efficiency is slow, and crushing effect is also not good, awaits improving.
SUMMERY OF THE UTILITY MODEL
Objects of the invention
For solving the technical problem who exists among the background art, the utility model provides an asphalt production line regeneration treatment device can carry out breakage and mixing stirring operation to the cubic pitch of retrieving, and crushing efficiency is high, and crushing effect is good to easy operation, convenient to use helps carrying out recycle to retrieving pitch.
(II) technical scheme
The utility model provides a regeneration treatment device for an asphalt production line, which comprises a crushing box, a mixing and stirring tank, a U-shaped part, a lifting device, a first motor, a first output shaft, a first rotating part, a crushing ball, a rotating cylinder, an impact bulge, a second motor, a receiving hopper, a conveying pipe, a third motor, a second rotating part, a third output shaft and a third rotating part;
the crushing box is positioned above the U-shaped piece, and the lifting device is arranged on the U-shaped piece and connected with the crushing box; the rotating cylinder is transversely arranged in the crushing box and is rotationally connected with the crushing box, and through holes are uniformly formed in the rotating cylinder; the first motor is arranged on the crushing box, the first rotating piece is rotatably arranged on the crushing box and extends into the rotating cylinder, and the first output shaft is arranged on the first motor and is in transmission connection with the first rotating piece; the crushing rod is arranged on the first rotating piece and positioned in the rotating cylinder, the crushing ball is arranged on the crushing rod, and first crushing teeth are arranged on the crushing ball; the second motor is arranged on the crushing box, and the output end of the second motor is provided with a second output shaft; a first gear is arranged on the second output shaft, a second gear is arranged on the peripheral surface of the rotating cylinder, and the first gear is in meshing transmission connection with the second gear;
the crushing box is also provided with a heating element and a feeding device, and an output port of the feeding device is positioned in the rotating cylinder; the receiving hopper is arranged at the bottom of the crushing box, and an output pipe with a valve is arranged on the receiving hopper; the impact bulge is arc-shaped and is arranged on the rotating cylinder, and the impact bulge is provided with second crushing teeth;
the opening of the U-shaped part is upward, and the mixing and stirring tank is positioned in the U-shaped part and is positioned right below the material receiving hopper; the mixing and stirring tank is double-cone-shaped, the conveying pipe is arranged on the mixing and stirring tank, and a sealing cover is arranged on the conveying pipe; the second rotating piece is rotatably arranged on the U-shaped piece and connected with the mixing and stirring tank, and the third rotating piece is rotatably arranged on the U-shaped piece and connected with the mixing and stirring tank; the third motor is arranged on the U-shaped piece, and the third output shaft is arranged on the third motor and is in transmission connection with the second rotating piece.
Preferably, the device further comprises a first transmission piece; the first output shaft is provided with a rotating wheel, the first rotating piece is correspondingly provided with a rotating wheel, and the first rotating piece is in transmission connection with the two rotating wheels.
Preferably, the first transmission member is a chain, and the rotating wheel is a sprocket.
Preferably, the device further comprises a second transmission piece; the third output shaft is provided with a rotating wheel, the second rotating part is correspondingly provided with a rotating wheel, and the second transmission part is in transmission connection with the two rotating wheels.
Preferably, the second transmission member is a chain, and the rotating wheel is a chain wheel.
Preferably, the device further comprises a first protective cover; the first protective cover is arranged on the crushing box, and the first output shaft, the first rotating piece, the first transmission piece and the rotating wheel are located in the first protective cover.
Preferably, the device further comprises a second protective cover; the second protection casing sets up on broken case, and third output shaft, second rotate the piece, second driving medium and rotate the wheel and be located the second protection casing.
Preferably, the impact protrusions are arranged in a plurality of turns in the transverse direction, and each turn is distributed in an annular array around the first rotating member.
Preferably, the crushing rod is provided with a plurality of circles in the transverse direction, and each circle is distributed around the first rotating member in an annular array.
Preferably, the device further comprises an annular piece; the ring-shaped parts are arranged at two ends of the rotating cylinder, the crushing box is correspondingly provided with annular grooves, and the ring-shaped parts are positioned in the annular grooves and are in sliding connection with the crushing box.
The above technical scheme of the utility model has following profitable technological effect:
the first motor enables the first rotating member to rotate through the first output shaft, the crushing rod and the crushing ball rotate along with the first rotating member, the crushing rod, the crushing ball and the first crushing teeth continuously impact the recycled block asphalt, the crushing efficiency is high, and the crushing effect is good; the second motor enables the rotating cylinder to rotate through the second output shaft, the first gear and the second gear, and the impact protrusion and the second crushing tooth continuously impact the recycled blocky asphalt, so that the crushing efficiency and the crushing effect are further improved; the heating element has the function of improving the temperature in the crushing box, so that the recycled asphalt can be softened, and the asphalt can be crushed;
during pitch entering mixing agitator tank after the breakage, the third motor made the second rotate the piece through the third output shaft and rotated, and mixing agitator tank rotated thereupon and stirs the mixture to pitch after the breakage, can carry out the intensive mixing to pitch after the breakage, and the result of use is splendid.
Drawings
Fig. 1 is a schematic structural diagram of a regeneration treatment device of an asphalt production line provided by the utility model.
Fig. 2 is the utility model provides a structural schematic diagram of crushing case in asphalt production line regeneration treatment device.
Fig. 3 is a schematic structural diagram (left view) of a rotary drum in the regeneration treatment device of the asphalt production line provided by the utility model.
Fig. 4 is a front view of a rotary drum in the regeneration treatment device of the asphalt production line.
Reference numerals: 1. a crushing box; 2. a mixing and stirring tank; 3. a U-shaped member; 4. a lifting device; 5. a first motor; 6. a first output shaft; 7. a first rotating member; 8. a breaking bar; 9. crushing a ball; 10. a first crushing tooth; 11. a rotating cylinder; 12. impacting the protrusion; 13. a second crushing tooth; 14. a second motor; 15. a second output shaft; 16. a first gear; 17. a second gear; 18. a heating member; 19. a feeding device; 20. an annular member; 21. an annular groove; 22. a receiving hopper; 23. an output pipe; 24. a first shield; 25. a second shield; 26. a first transmission member; 27. a delivery pipe; 28. a third motor; 29. a third output shaft; 30. a second rotating member; 31. a second transmission member; 32. a third rotating member; 33. and (7) sealing the cover.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more apparent, the present invention will be described in detail with reference to the accompanying drawings. It should be understood that the description is intended to be illustrative only and is not intended to limit the scope of the present invention. Moreover, in the following description, descriptions of well-known structures and techniques are omitted so as to not unnecessarily obscure the concepts of the present invention.
As shown in fig. 1-4, the utility model provides a regeneration treatment device for asphalt production line, which comprises a crushing box 1, a mixing and stirring tank 2, a U-shaped member 3, a lifting device 4, a first motor 5, a first output shaft 6, a first rotating member 7, a crushing ball 9, a rotating cylinder 11, an impact protrusion 12, a second motor 14, a receiving hopper 22, a material conveying pipe 27, a third motor 28, a second rotating member 30, a third output shaft 29 and a third rotating member 32;
the crushing box 1 is positioned above the U-shaped part 3, and the lifting device 4 is arranged on the U-shaped part 3 and is connected with the crushing box 1; the rotating cylinder 11 is transversely arranged in the crushing box 1 and is rotationally connected with the crushing box, and through holes are uniformly formed in the rotating cylinder 11; the first motor 5 is arranged on the crushing box 1, the first rotating part 7 is rotatably arranged on the crushing box 1 and extends into the rotating cylinder 11, and the first output shaft 6 is arranged on the first motor 5 and is in transmission connection with the first rotating part 7; the crushing rod 8 is arranged on the first rotating piece 7 and is positioned in the rotating cylinder 11, the crushing ball 9 is arranged on the crushing rod 8, and the crushing ball 9 is provided with first crushing teeth 10; the crushing rod 8 is transversely provided with a plurality of circles, and each circle is distributed around the first rotating part 7 in an annular array; the second motor 14 is arranged on the crushing box 1, and the output end of the second motor is provided with a second output shaft 15; a first gear 16 is arranged on the second output shaft 15, a second gear 17 is arranged on the peripheral surface of the rotating cylinder 11, and the first gear 16 is in meshing transmission connection with the second gear 17;
the crushing box 1 is also provided with a heating element 18 and a feeding device 19, and the output port of the feeding device 19 is positioned in the rotating cylinder 11; the receiving hopper 22 is arranged at the bottom of the crushing box 1, and an output pipe 23 with a valve is arranged on the receiving hopper 22; the impact bulge 12 is arc-shaped and is arranged on the rotating cylinder 11, and the impact bulge 12 is provided with a second crushing tooth 13; the impact protrusions 12 are arranged in a plurality of circles in the transverse direction, and each circle is distributed around the first rotating member 7 in an annular array;
the opening of the U-shaped part 3 is upward, and the mixing and stirring tank 2 is positioned in the U-shaped part 3 and is positioned right below the receiving hopper 22; the mixing and stirring tank 2 is in a double-cone shape, the material conveying pipe 27 is arranged on the mixing and stirring tank 2, and a sealing cover 33 is arranged on the material conveying pipe 27; the second rotating piece 30 is rotatably arranged on the U-shaped piece 3 and is connected with the mixing and stirring tank 2, and the third rotating piece 32 is rotatably arranged on the U-shaped piece 3 and is connected with the mixing and stirring tank 2; a third motor 28 is arranged on the U-shaped element 3, and a third output shaft 29 is arranged on the third motor 28 and is in driving connection with a second rotating element 30.
In an alternative embodiment, a first transmission member 26 is further included; the first output shaft 6 is provided with a rotating wheel, the first rotating part 7 is correspondingly provided with a rotating wheel, and the first driving part 26 is in transmission connection with the two rotating wheels; the first transmission member 26 is a chain and the rotating wheel is a sprocket.
In an alternative embodiment, a second transmission member 31 is also included; a rotating wheel is arranged on the third output shaft 29, a rotating wheel is correspondingly arranged on the second rotating part 30, and the second transmission part 31 is in transmission connection with the two rotating wheels; the second transmission member 31 is a chain, and the rotating wheel is a sprocket.
In an alternative embodiment, a first protective cover 24 is also included; the first protective cover 24 is arranged on the crushing box 1, the first output shaft 6, the first rotating piece 7, the first transmission piece 26 and the rotating wheel are positioned in the first protective cover 24, and the use process is safe.
In an alternative embodiment, a second protective cover 25 is also included; the second protection cover 25 is arranged on the crushing box 1, the third output shaft 29, the second rotating part 30, the second transmission part 31 and the rotating wheel are positioned in the second protection cover 25, and the use process is safe.
In an alternative embodiment, a ring 20; the ring parts 20 are arranged at two ends of the rotating cylinder 11, the crushing box 1 is correspondingly provided with an annular groove 21, and the ring parts 20 are positioned in the annular groove 21 and are in sliding connection with the crushing box 1. In operation, the ring member 20 rotates along the annular groove 21, and the rotation process of the rotary cylinder 11 is more stable.
In an alternative embodiment, the direction of rotation of the rotary cylinder 11 is opposite to the direction of rotation of the first rotary member 7, which contributes to an increased crushing efficiency.
In the utility model, when in use, the reclaimed blocky asphalt is added into the rotating cylinder 11 through the feeding device 19; the first motor 5 enables the first rotating member 7 to rotate through the first output shaft 6, the crushing rod 8 and the crushing ball 9 rotate along with the first rotating member, the crushing rod 8, the crushing ball 9 and the first crushing teeth 10 continuously impact the recycled blocky asphalt, the crushing efficiency is high, and the crushing effect is good; the second motor 14 rotates the rotating cylinder 11 through the second output shaft 15, the first gear 16 and the second gear 17, and the impact protrusion 12 and the second crushing tooth 13 continuously impact the recycled block asphalt, so that the crushing efficiency and the crushing effect are further improved; and the heating element 18 acts to raise the temperature inside the crushing box 1, enabling the recycled asphalt to be softened, thus facilitating the crushing of the asphalt;
the crushed asphalt falls into a receiving hopper 22 through a through hole on a rotary cylinder 11, and then the crushing box 1 is descended through a lifting device 4 until an output pipe 23 is inserted into a conveying pipe 27; opening a valve on the output pipe 23, and feeding the crushed asphalt into the mixing and stirring tank 2; the third motor 28 rotates the second rotating member 30 through the third output shaft 29, and the mixing and stirring tank 2 rotates accordingly to stir and mix the crushed asphalt, so that the crushed asphalt can be fully mixed, and the using effect is excellent.
It is to be understood that the above-described embodiments of the present invention are merely illustrative of or explaining the principles of the invention and are not to be construed as limiting the invention. Therefore, any modification, equivalent replacement, improvement and the like made without departing from the spirit and scope of the present invention should be included in the protection scope of the present invention. Further, it is intended that the appended claims cover all such variations and modifications as fall within the scope and boundaries of the appended claims or the equivalents of such scope and boundaries.

Claims (10)

1. The asphalt production line regeneration treatment device is characterized by comprising a crushing box (1), a mixing and stirring tank (2), a U-shaped part (3), a lifting device (4), a first motor (5), a first output shaft (6), a first rotating part (7), a crushing ball (9), a rotating cylinder (11), an impact bulge (12), a second motor (14), a receiving hopper (22), a conveying pipe (27), a third motor (28), a second rotating part (30), a third output shaft (29) and a third rotating part (32);
the crushing box (1) is positioned above the U-shaped part (3), and the lifting device (4) is arranged on the U-shaped part (3) and is connected with the crushing box (1); the rotating cylinder (11) is transversely arranged in the crushing box (1) and is rotationally connected with the crushing box, and through holes are uniformly formed in the rotating cylinder (11); the first motor (5) is arranged on the crushing box (1), the first rotating piece (7) is rotatably arranged on the crushing box (1) and extends into the rotating cylinder (11), and the first output shaft (6) is arranged on the first motor (5) and is in transmission connection with the first rotating piece (7); the crushing rod (8) is arranged on the first rotating piece (7) and is positioned in the rotating cylinder (11), the crushing ball (9) is arranged on the crushing rod (8), and the crushing ball (9) is provided with first crushing teeth (10); the second motor (14) is arranged on the crushing box (1), and the output end of the second motor is provided with a second output shaft (15); a first gear (16) is arranged on the second output shaft (15), a second gear (17) is arranged on the peripheral surface of the rotating cylinder (11), and the first gear (16) is in meshing transmission connection with the second gear (17);
the crushing box (1) is also provided with a heating element (18) and a feeding device (19), and the output port of the feeding device (19) is positioned in the rotating cylinder (11); the receiving hopper (22) is arranged at the bottom of the crushing box (1), and an output pipe (23) with a valve is arranged on the receiving hopper (22); the impact bulge (12) is arc-shaped and is arranged on the rotating cylinder (11), and the impact bulge (12) is provided with a second crushing tooth (13);
the opening of the U-shaped part (3) faces upwards, and the mixing and stirring tank (2) is positioned in the U-shaped part (3) and is positioned right below the material receiving hopper (22); the mixing and stirring tank (2) is in a double-cone shape, the material conveying pipe (27) is arranged on the mixing and stirring tank (2), and a sealing cover (33) is arranged on the material conveying pipe (27); the second rotating piece (30) is rotatably arranged on the U-shaped piece (3) and connected with the mixing and stirring tank (2), and the third rotating piece (32) is rotatably arranged on the U-shaped piece (3) and connected with the mixing and stirring tank (2); the third motor (28) is arranged on the U-shaped part (3), and the third output shaft (29) is arranged on the third motor (28) and is in transmission connection with the second rotating part (30).
2. An asphalt production line recycling device according to claim 1, further comprising a first transmission member (26); the first output shaft (6) is provided with a rotating wheel, the first rotating piece (7) is correspondingly provided with a rotating wheel, and the first transmitting piece (26) is in transmission connection with the two rotating wheels.
3. An asphalt production line recycling device according to claim 2, wherein the first transmission member (26) is a chain and the rotating wheel is a sprocket.
4. An asphalt production line recycling device according to claim 1, further comprising a second transmission member (31);
the third output shaft (29) is provided with a rotating wheel, the second rotating part (30) is correspondingly provided with a rotating wheel, and the second transmission part (31) is in transmission connection with the two rotating wheels.
5. An asphalt production line recycling device according to claim 4, wherein the second transmission member (31) is a chain, and the rotating wheel is a sprocket.
6. An asphalt production line recycling treatment apparatus according to claim 2, further comprising a first protection cover (24); the first protective cover (24) is arranged on the crushing box (1), and the first output shaft (6), the first rotating piece (7), the first transmission piece (26) and the rotating wheel are positioned in the first protective cover (24).
7. An asphalt production line recycling treatment apparatus according to claim 4, further comprising a second protection cover (25);
the second protective cover (25) is arranged on the crushing box (1), and the third output shaft (29), the second rotating piece (30), the second transmission piece (31) and the rotating wheel are positioned in the second protective cover (25).
8. An asphalt line recycling device according to claim 1, wherein the bump bumps (12) are arranged in a plurality of turns in the transverse direction, each turn being distributed in an annular array around the first rotating member (7).
9. An asphalt line recycling device according to claim 1, wherein the breaker bar (8) is provided with a plurality of turns in the transverse direction, and each turn is distributed in an annular array around the first rotating member (7).
10. An asphalt production line recycling device according to claim 1, further comprising an annular member (20);
the ring-shaped parts (20) are arranged at two ends of the rotating cylinder (11), the crushing box (1) is correspondingly provided with an annular groove (21), and the ring-shaped parts (20) are positioned in the annular groove (21) and are in sliding connection with the crushing box (1).
CN201922056257.XU 2019-11-25 2019-11-25 Asphalt production line regeneration treatment device Active CN211133795U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201922056257.XU CN211133795U (en) 2019-11-25 2019-11-25 Asphalt production line regeneration treatment device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201922056257.XU CN211133795U (en) 2019-11-25 2019-11-25 Asphalt production line regeneration treatment device

Publications (1)

Publication Number Publication Date
CN211133795U true CN211133795U (en) 2020-07-31

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ID=71745133

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201922056257.XU Active CN211133795U (en) 2019-11-25 2019-11-25 Asphalt production line regeneration treatment device

Country Status (1)

Country Link
CN (1) CN211133795U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112275373A (en) * 2020-10-16 2021-01-29 江西省金三角建筑陶瓷科技协同创新有限公司 Preparation method of additive for improving fluidity of dry-process granulated powder of architectural ceramics

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112275373A (en) * 2020-10-16 2021-01-29 江西省金三角建筑陶瓷科技协同创新有限公司 Preparation method of additive for improving fluidity of dry-process granulated powder of architectural ceramics
CN112275373B (en) * 2020-10-16 2022-04-29 江西省金三角建筑陶瓷科技协同创新有限公司 Preparation method of additive for improving fluidity of dry-process granulated powder of architectural ceramics

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