CN210133605U - Residue recovery device for oil refining of oil-containing substances - Google Patents

Residue recovery device for oil refining of oil-containing substances Download PDF

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Publication number
CN210133605U
CN210133605U CN201920129020.7U CN201920129020U CN210133605U CN 210133605 U CN210133605 U CN 210133605U CN 201920129020 U CN201920129020 U CN 201920129020U CN 210133605 U CN210133605 U CN 210133605U
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CN
China
Prior art keywords
fixedly connected
pipe
pipeline
conveying
slag
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Expired - Fee Related
Application number
CN201920129020.7U
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Chinese (zh)
Inventor
张乃国
方掹
刘恪兵
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Jiangsu Renmin Environmental Protection Technology Co Ltd
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Jiangsu Renmin Environmental Protection Technology Co Ltd
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Priority to CN201920129020.7U priority Critical patent/CN210133605U/en
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Publication of CN210133605U publication Critical patent/CN210133605U/en
Expired - Fee Related legal-status Critical Current
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Abstract

The utility model discloses a residue recovery device for oil refining of oil-containing substances, which comprises a support frame, wherein a servo motor is fixedly connected in the support frame, one side of the support frame is fixedly connected with a conveying pipeline, the output end of the servo motor passes through the conveying pipeline and is fixedly connected with a transmission shaft, the transmission shaft is rotationally connected with the conveying pipeline, the outer wall of the transmission shaft is welded with a helical blade, one side of one end of the conveying pipeline, which is close to the support frame, is provided with a feeding hole, the utility model prevents air from entering through the sealing connection of a blanking box and a residue box, and the first residue box and the second residue box are respectively used alternately after being filled with the materials through the alternate opening of a first electropneumatic valve and a second electropneumatic valve, can be uninterrupted in 24 hours, simultaneously ensures the sealing performance of the device, separates out finer residue particles through a blanking hole on a powder hopper and then is discharged through, the slag box is used for collecting the impurities, so that the impurities can be conveniently classified and processed.

Description

Residue recovery device for oil refining of oil-containing substances
The technical field is as follows:
the utility model relates to an oil refining technical field, in particular to residue recovery unit is used in oil refining of oiliness material.
Background art:
in the present life, there are many oil-containing substances, such as rubber, plastics, etc., plastics and plastics, etc. are a material commonly used in modern life, bring great convenience to people's life, simultaneously because the non-degradability of plastics has also brought white pollution, in current plastics and rubber residue recovery processing, burn and make a commonly used means, but you also produced a large amount of waste gases simultaneously, the polluted environment, it is a comparatively environmental protection's processing mode to refine oil to plastics and rubber, but the residue after plastics and rubber refine oil need classify and discharge, and can not contact with the air, consequently the utility model provides an oil-containing substance is refined oil and is used residue recovery unit.
The utility model has the following contents:
the utility model aims at providing a residue recovery unit for oil refining of oil-containing substance in order to solve the above-mentioned problem, solved the problem that prior art exists.
In order to solve the above problem, the utility model provides a technical scheme:
a residue recovery device for oil refining of oil-containing substances comprises a support frame, wherein a servo motor is fixedly connected in the support frame, a conveying pipeline is fixedly connected to one side of the support frame, the output end of the servo motor penetrates through the conveying pipeline and is fixedly connected with a transmission shaft, the transmission shaft is rotatably connected with the conveying pipeline, a helical blade is welded on the outer wall of the transmission shaft, a feeding hole is formed in one side, close to the support frame, of one end of the conveying pipeline, a material collecting pipe is fixedly connected to one end, away from the support frame, of the conveying pipeline, a material distributing hopper is arranged in the material collecting pipe and is communicated with the conveying pipeline, a plurality of blanking holes are formed in the outer wall of the material distributing hopper, a blanking box is fixedly connected to one end, away from the conveying pipeline, of the material distributing hopper, and a blanking pipe is fixedly connected to the bottom end of the blanking box, the bottom symmetry fixedly connected with first conveying pipeline and the second conveying pipeline of unloading pipe, the first slag box of one end fixedly connected with of unloading pipe is kept away from to first conveying pipeline, the one end fixedly connected with second slag box of unloading pipe is kept away from to the second conveying pipeline, be equipped with first electropneumatic valve on the first conveying pipeline, be equipped with the second electropneumatic valve on the second conveying pipeline, the bottom fixedly connected with screw conveyer of collection material pipe, No. one pipeline one side fixedly connected with slag pipe is kept away from to screw conveyer's bottom, the one end that screw conveyer was kept away from to the slag pipe is equipped with the slag notch.
Preferably, the screw conveyer comprises a case, a second servo motor, a second helical blade, a second transmission shaft, a second transmission pipeline and a discharge port, wherein the case is arranged on one side of the screw conveyer close to the slag conveying pipe, the case is fixedly connected with the outer wall of the first transmission pipeline, the second servo motor is fixedly connected in the case, the second transmission pipeline is fixedly connected on one side of the case close to the slag conveying pipe, the second transmission shaft is rotatably connected in the second transmission pipeline, the second servo motor penetrates through the case to be fixedly connected with the second transmission shaft, the second helical blade is fixedly connected on the second transmission shaft, the second helical blade is slidably connected with the inner wall of the discharge port, the second transmission pipeline is semi-cylindrical, the material collecting pipe is cylindrical, a groove is formed in the bottom end of the material collecting pipe, and the size of the groove is smaller than or equal to the size of the groove in the top of the second transmission pipeline, the bottom end of the material collecting pipe is provided with a groove and is located right above the second conveying pipeline, the material collecting pipe is fixedly connected with the second conveying pipeline, and a discharge hole is formed in the bottom end of one side, away from the case, of the second conveying pipeline.
Preferably, the first slag box and the second slag box are respectively composed of a storage cabinet, a sealing ring, a sliding chute, a sliding block, a handle, an observation hole, a one-way wheel and a storage frame, the first conveying pipeline and the second conveying pipeline are both fixedly connected with the storage frame, the first conveying pipeline and the second conveying pipeline both penetrate through the storage frame and are communicated with the storage cabinet, the storage cabinet is arranged in the storage frame, the sliding chutes are symmetrically arranged on two sides of the outer wall of the storage cabinet, the sliding blocks are symmetrically arranged on two sides of the inner wall of the storage frame, the sliding chutes are slidably connected with the sliding blocks, the sealing ring is embedded in one side of the outer wall of the storage cabinet, the sliding chutes are sealed with the sliding blocks through the sealing ring, the handle is fixedly connected to one side of the storage cabinet far from the one-way wheel, the sealing ring is positioned at one end of the storage cabinet close to the sliding block, four one-way wheels are, the height of one-way wheel is the same with the depth of fluting in the storage frame, the storage cabinet is close to one side upper portion of handle and inlays and be equipped with the observation hole, the observation hole is made for transparent glass.
Preferably, the blade diameter of the first helical blade is matched with the inner wall diameter of the distributing hopper, and the distances between the first helical blade and the first conveying pipeline and the distance between the first helical blade and the distributing hopper are always the same.
Preferably, the first slag box is communicated with the material distribution hopper through a material discharge box, a material discharge pipe and a first material conveying pipe.
Preferably, the first transmission shaft penetrates through the distribution hopper and is rotatably connected with the inner wall of the blanking box.
Preferably, the second slag box is communicated with the material distribution hopper through a material discharge box, a material discharge pipe and a second material conveying pipe.
Preferably, the spiral conveyor is communicated with the slag conveying pipe through a discharge hole.
The utility model has the advantages that: the utility model discloses compact structure, through workbin and sediment case sealing connection, prevent that the air from getting into, open in turn through first electric valve and second electric valve, make first sediment case and second sediment case use in turn respectively after filling, can 24 hours incessantly, the leakproofness of device has been ensured simultaneously, the lower feed hole through on the powder hopper separates that more tiny sediment grain passes through the slag notch and discharges, big sediment grain passes through the auger delivery to the workbin in, collect through the sediment case, the classification of convenient impurity.
Description of the drawings:
for ease of illustration, the invention is described in detail by the following detailed description and accompanying drawings.
Fig. 1 is a schematic structural view of the present invention;
FIG. 2 is a schematic structural view of the material distributing hopper of the present invention;
fig. 3 is a schematic structural view of the screw conveyor of the present invention;
fig. 4 is an enlarged view of the position a of the present invention.
In the figure: 1-support frame, 2-first servo motor, 3-first conveying pipeline, 4-feeding port, 5-first transmission shaft, 6-first helical blade, 7-collecting pipe, 8-distributing hopper, 9-discharging hole, 10-helical conveyor, 11-discharging box, 12-discharging pipe, 13-first conveying pipe, 14-second conveying pipe, 15-first slag box, 16-second slag box, 17-first electric valve, 18-second electric valve, 19-slag conveying pipe, 20-slag outlet, 21-machine box, 22-second servo motor, 23-second helical blade, 24-second transmission shaft, 25-second conveying pipe, 26-discharging port, 27-storage cabinet, 28-sealing ring, 29-chute, 30-slide block, 31-handle, 32-observation hole, 33-one-way wheel and 34-storage rack.
The specific implementation mode is as follows:
as shown in fig. 1 to 4, the following technical solutions are adopted in the present embodiment: a residue recovery device for oil refining of oil-containing substances comprises a support frame 1, wherein a first servo motor 2 is fixedly connected in the support frame 1, a first conveying pipeline 3 is fixedly connected to one side of the support frame 1, the output end of the first servo motor 2 penetrates through the first conveying pipeline 3 and is fixedly connected with a first transmission shaft 5, the first transmission shaft 5 is rotatably connected with the first conveying pipeline 3, a first helical blade 6 is welded on the outer wall of the first transmission shaft 5, a feeding port 4 is arranged at one side, close to the support frame 1, of one end of the first conveying pipeline 3, far away from the support frame 1, a material collecting pipe 7 is fixedly connected to one end of the first conveying pipeline 3, a material distributing hopper 8 is arranged in the material collecting pipe 7, the material distributing hopper 8 is communicated with the first conveying pipeline 3, a plurality of blanking holes 9 are formed in the outer wall of the material distributing hopper 8, and a blanking box 11 is fixedly connected to one end, far away from the, the bottom fixedly connected with unloading pipe 12 of unloading case 11, the first conveying pipeline 13 of bottom symmetry fixedly connected with and the second conveying pipeline 14 of unloading pipe 12, the first sediment case 15 of one end fixedly connected with that unloading pipe 12 was kept away from to first conveying pipeline 13, the one end fixedly connected with second sediment case 16 of unloading pipe 12 is kept away from to second conveying pipeline 14, be equipped with first electric valve 17 on the first conveying pipeline 13, be equipped with second electric valve 18 on the second conveying pipeline 14, the bottom fixedly connected with screw conveyer 10 of collection pipe 7, No. 3 one side fixedly connected with sediment pipes 19 of pipeline are kept away from to screw conveyer 10's bottom, the one end that screw conveyer 10 was kept away from to sediment pipe 19 is equipped with slag notch 20.
Wherein, the screw conveyer 10 comprises a case 21, a second servo motor 22, a second helical blade 23, a second transmission shaft 24, a second transmission pipeline 25 and a discharge port 26, one side of the screw conveyer 10 close to the slag conveying pipe 19 is provided with the case 21, the case 21 is fixedly connected with the outer wall of the first transmission pipeline 3, the second servo motor 22 is fixedly connected in the case 21, one side of the case 21 close to the slag conveying pipe 19 is fixedly connected with the second transmission pipeline 25, the second transmission pipeline 25 is rotatably connected with the second transmission shaft 24, the second servo motor 22 passes through the case 21 and is fixedly connected with the second transmission shaft 24, the second transmission shaft 24 is fixedly connected with the second helical blade 23, the second helical blade 23 is slidably connected with the inner wall of the discharge port 26, the second transmission pipeline 25 is semi-cylindrical, the material collecting pipe 7 is cylindrical, the bottom end of the material collecting pipe 7 is provided with a slot, the size of the slot is smaller than or equal to that of the top slot of the second conveying pipeline 25, the slot at the bottom end of the material collecting pipe 7 is located right above the second conveying pipeline 25, the material collecting pipe 7 is fixedly connected with the second conveying pipeline 25, and the bottom end of one side, away from the case 21, of the second conveying pipeline 25 is provided with a discharge hole 26.
Wherein, first sediment case 15 and second sediment case 16 constitute by storage cabinet 27, sealing washer 28, spout 29, slider 30, handle 31, observation hole 32, one-way wheel 33 and storage frame 34, first conveying pipeline 13 and second conveying pipeline 14 all with storage frame 34 fixed connection, first conveying pipeline 13 and second conveying pipeline 14 all pass storage frame 34 and storage cabinet 27 intercommunication, be equipped with storage cabinet 27 in the storage frame 34, 27 outer wall bilateral symmetry of storage cabinet is equipped with spout 29, 34 inner wall both sides of storage frame all symmetry are equipped with slider 30, spout 29 and slider 30 sliding connection, the sealing washer 28 has been inlayed to storage cabinet 27's outer wall one side, spout 29 is sealed with slider 30 through sealing washer 28, one side fixedly connected with handle 31 that one-way wheel 33 was kept away from to storage cabinet 27, sealing washer 28 is located the one end that storage cabinet 27 is close to slider 30, four one-way wheels 33 of the equal equidistance fixedly connected with in bottom of storage cabinet 27, the inner wall bottom of storage frame 34 is equipped with twice fluting, the height of one-way wheel 33 is the same with the depth of fluting in the storage frame 34, one side upper portion that storage cabinet 27 is close to handle 31 inlays and is equipped with observation hole 32, observation hole 32 makes for clear glass, conveniently observes the material storage condition in the storage cabinet 27.
The blade diameter of the first helical blade 6 is matched with the inner wall diameter of the material distribution hopper 8, the distances between the first helical blade 6 and the first conveying pipeline 3 and between the first helical blade 6 and the material distribution hopper 8 are the same all the time, and materials are conveniently transported through rotation of the helical blade 6.
The first slag box 15 is communicated with the material distributing hopper 8 through the discharging box 11, the discharging pipe 12 and the first material conveying pipe 13, and materials are conveniently conveyed through gravity.
Wherein, a transmission shaft 5 passes through hopper 8 and is connected with 11 inner walls of blanking boxes are rotated, makes things convenient for a transmission shaft 5 to rotate, and the material is carried.
The second slag box 16 is communicated with the material distribution hopper 8 through the material discharge box 11, the material discharge pipe 12 and the second material conveying pipe 14, so that the material is conveniently detached and screened and separated and collected when passing through the material distribution hopper 8.
The screw conveyor 10 is communicated with the slag conveying pipe 19 through a discharge hole 26, so that materials can be conveyed and collected conveniently.
The utility model discloses a user state does: inputting slag into a conveying pipeline 3 through a feeding port 4, electrifying a servo motor 2, conveying the slag into a material distribution hopper 8 through a screw, allowing finer slag particles to fall into a material collection pipe 7 through a discharging hole 9, enabling the slag to be overturned and conveyed through a helical blade 6 in the material distribution hopper 8, enabling the slag particles to be separated more thoroughly, conveying small slag particles at the bottom through a helical conveyor 10 with the top in an open state through a slag conveying pipe 19, discharging at a slag outlet 20, allowing large slag particles to pass through a material discharge box 11, respectively collecting the large slag particles at a first slag box 15 and a second slag box 16 through a first conveying pipe 13 and a second conveying pipe 14, sealing a material storage cabinet 27 with a material storage rack 34 through a sealing ring 28 to prevent air from entering, firstly opening the first electric valve 17, collecting waste materials in the material storage cabinet 27 in the first slag box 15, observing through an observation hole 32, and fully collecting the first slag box 15, closing the first electric valve 17, and (3) opening the second electric valve 18, conveying and collecting the slag in the first slag box 15 through the storage cabinet 27, finally sealing the first slag box 15, collecting the continuously recovered slag through the second slag box 16, similarly, operating the second slag box 16 after being fully collected, and repeatedly operating the slag boxes for 24 hours to collect continuously and keeping the sealed state to prevent air from entering.
The basic principles and main features of the present invention and the advantages of the present invention have been shown and described above, and it should be understood by those skilled in the art that the present invention is not limited by the above embodiments, which are only illustrative, but also various changes and modifications may be made without departing from the spirit and scope of the present invention, which fall within the scope of the present invention as claimed, which is defined by the appended claims and their equivalents.

Claims (8)

1. The residue recovery device for oil refining of the oily substances is characterized by comprising a support frame (1), wherein a servo motor (2) is fixedly connected in the support frame (1), a conveying pipeline (3) is fixedly connected to one side of the support frame (1), the output end of the servo motor (2) penetrates through the conveying pipeline (3) and is fixedly connected with a transmission shaft (5), the transmission shaft (5) is rotatably connected with the conveying pipeline (3), a spiral blade (6) is welded on the outer wall of the transmission shaft (5), a feeding opening (4) is formed in one side, close to the support frame (1), of one end of the conveying pipeline (3), a material collecting pipe (7) is fixedly connected to one end, far away from the support frame (1), of the conveying pipeline (3), and a material distributing hopper (8) is arranged in the material collecting pipe (7), the material distributing hopper (8) is communicated with a first conveying pipeline (3), a plurality of blanking holes (9) are formed in the outer wall of the material distributing hopper (8), one end, far away from the first conveying pipeline (3), of the material distributing hopper (8) is fixedly connected with a blanking box (11), the bottom end of the blanking box (11) is fixedly connected with a blanking pipe (12), the bottom end of the blanking pipe (12) is symmetrically and fixedly connected with a first conveying pipe (13) and a second conveying pipe (14), one end, far away from the blanking pipe (12), of the first conveying pipe (13) is fixedly connected with a first slag box (15), one end, far away from the blanking pipe (12), of the second conveying pipe (14) is fixedly connected with a second slag box (16), a first electric valve (17) is arranged on the first conveying pipe (13), a second electric valve (18) is arranged on the second conveying pipe (14), and a spiral conveyor (10) is fixedly connected with the bottom end of the material collecting pipe (7), one side of the bottom end of the screw conveyor (10) far away from the first conveying pipeline (3) is fixedly connected with a slag conveying pipe (19), and one end of the slag conveying pipe (19) far away from the screw conveyor (10) is provided with a slag outlet (20).
2. The apparatus for recovering residues from oil refining of claim 1, wherein: the screw conveyor (10) comprises a case (21), a second servo motor (22), a second helical blade (23), a second transmission shaft (24), a second transmission pipeline (25) and a discharge hole (26), one side, close to the slag conveying pipe (19), of the screw conveyor (10) is provided with the case (21), the case (21) is fixedly connected with the outer wall of the first transmission pipeline (3), the case (21) is internally and fixedly connected with the second servo motor (22), one side, close to the slag conveying pipe (19), of the case (21) is fixedly connected with the second transmission pipeline (25), the second transmission shaft (24) is rotatably connected in the second transmission pipeline (25), the second servo motor (22) penetrates through the case (21) and is fixedly connected with the second transmission shaft (24), and the second helical blade (23) is fixedly connected to the second transmission shaft (24), no. two helical blade (23) and the inner wall sliding connection of discharge gate (26), No. two pipeline (25) are semi-cylindrical, collection pipe (7) are cylindrical, the bottom of collection pipe (7) is equipped with the fluting, the slotted size of size less than or equal to No. two pipeline (25) top slotted size, collection pipe (7) bottom fluting is located No. two pipeline (25) directly over, collection pipe (7) and No. two pipeline (25) fixed connection, the bottom of one side that No. two pipeline (25) keep away from quick-witted case (21) is equipped with discharge gate (26).
3. The apparatus for recovering residues from oil refining of claim 1, wherein: the first slag box (15) and the second slag box (16) are composed of a storage cabinet (27), a sealing ring (28), a sliding groove (29), a sliding block (30), a handle (31), an observation hole (32), a one-way wheel (33) and a storage rack (34), the first conveying pipe (13) and the second conveying pipe (14) are fixedly connected with the storage rack (34), the first conveying pipe (13) and the second conveying pipe (14) penetrate through the storage rack (34) to be communicated with the storage cabinet (27), the storage cabinet (27) is arranged in the storage rack (34), the sliding groove (29) is symmetrically arranged on the two sides of the outer wall of the storage cabinet (27), the sliding block (30) is symmetrically arranged on the two sides of the inner wall of the storage rack (34), the sliding groove (29) is slidably connected with the sliding block (30), the sealing ring (28) is embedded on one side of the outer wall of the storage cabinet (27), and the sliding groove (29) is sealed with the sliding block (30) through the sealing ring (28), one side fixedly connected with handle (31) of one-way wheel (33) are kept away from in storage cabinet (27), sealing washer (28) are located storage cabinet (27) and are close to the one end of slider (30), four one-way wheels (33) of the equal equidistance fixedly connected with in bottom of storage cabinet (27), the inner wall bottom of storage frame (34) is equipped with the twice fluting, the height of one-way wheel (33) is the same with the fluting degree of depth in storage frame (34), one side upper portion that storage cabinet (27) are close to handle (31) is inlayed and is equipped with observation hole (32), observation hole (32) are made for clear glass.
4. The apparatus for recovering residues from oil refining of claim 1, wherein: the blade diameter of the first helical blade (6) is matched with the inner wall diameter of the distributing hopper (8), and the distances between the first helical blade (6) and the first conveying pipeline (3) and the distributing hopper (8) are always the same.
5. The apparatus for recovering residues from oil refining of claim 1, wherein: the first slag box (15) is communicated with the material distributing hopper (8) through a material discharging box (11), a material discharging pipe (12) and a first material conveying pipe (13).
6. The apparatus for recovering residues from oil refining of claim 1, wherein: the first transmission shaft (5) penetrates through the material distribution hopper (8) and is rotatably connected with the inner wall of the blanking box (11).
7. The apparatus for recovering residues from oil refining of claim 1, wherein: the second slag box (16) is communicated with the distributing hopper (8) through a discharging box (11), a discharging pipe (12) and a second conveying pipe (14).
8. The apparatus for recovering residues from oil refining of claim 1, wherein: the spiral conveyor (10) is communicated with the slag conveying pipe (19) through a discharge hole (26).
CN201920129020.7U 2019-01-25 2019-01-25 Residue recovery device for oil refining of oil-containing substances Expired - Fee Related CN210133605U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920129020.7U CN210133605U (en) 2019-01-25 2019-01-25 Residue recovery device for oil refining of oil-containing substances

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920129020.7U CN210133605U (en) 2019-01-25 2019-01-25 Residue recovery device for oil refining of oil-containing substances

Publications (1)

Publication Number Publication Date
CN210133605U true CN210133605U (en) 2020-03-10

Family

ID=69702111

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201920129020.7U Expired - Fee Related CN210133605U (en) 2019-01-25 2019-01-25 Residue recovery device for oil refining of oil-containing substances

Country Status (1)

Country Link
CN (1) CN210133605U (en)

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CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20200310

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