CN212620136U - Suction and discharge overhead traveling crane - Google Patents
Suction and discharge overhead traveling crane Download PDFInfo
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- CN212620136U CN212620136U CN202021266837.8U CN202021266837U CN212620136U CN 212620136 U CN212620136 U CN 212620136U CN 202021266837 U CN202021266837 U CN 202021266837U CN 212620136 U CN212620136 U CN 212620136U
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Abstract
The utility model provides an absorbing and discharging overhead traveling crane, which comprises a supporting bridge frame, a cart part, a trolley part and an electric control system, wherein the supporting bridge frame is provided with at least one set of spiral conveying system, the spiral conveying system comprises a first rotating mechanism, a first feeding pipe body, a vertical spiral material taking device, a horizontal spiral material pushing device, a universal joint connecting piece and a first discharging pipe body, and the first rotating mechanism is fixed on the supporting bridge frame; a horizontal screw rod body of the horizontal screw pusher is positioned in a horizontal conveying pipe body, and the horizontal conveying pipe body is fixed on a first rotating mechanism; a vertical spiral rod body of the vertical spiral material taking device is positioned in the vertical material conveying pipe body, the vertical material conveying pipe body is fixed with one end of the horizontal material conveying pipe body, and the vertical spiral rod body is connected with the horizontal spiral rod body through a universal joint connecting piece; the first feeding pipe body is fixedly connected to the vertical conveying pipe, and the first discharging pipe body is fixed to the other end of the horizontal conveying pipe body. The utility model discloses an inhale overhead traveling crane of unloading cancels the feed bin transportation, has reduced the time of material loading blowing, improves production efficiency.
Description
Technical Field
The utility model relates to a graphite production facility field, in particular to inhale overhead traveling crane of unloading.
Background
The suction and discharge overhead traveling crane is special equipment for roasting the graphite electrode, when the graphite electrode is subjected to high-temperature treatment in a graphitization furnace, the graphite electrode is added with a filler for high-temperature roasting, the high-temperature treatment is carried out for cooling, and the filler is required to be taken out after cooling; when the filling material is added and taken out, the material is required to be treated by a material sucking and discharging crown block. When the existing material sucking and discharging crown block sucks and discharges materials, the fillers are firstly sucked into the material bin, and then the material bin is transported to the discharging position for discharging, so that the time of the whole process is long, and the production efficiency is reduced.
SUMMERY OF THE UTILITY MODEL
For solving the problem of absorbing the overhead traveling crane of unloading of a specified duration consuming time among the prior art, the utility model provides an absorb overhead traveling crane of unloading.
The technical scheme of the utility model is realized like this:
an overhead traveling crane for material suction and discharge comprises a supporting bridge, a cart part, a trolley part and an electric control system, wherein at least one set of spiral material conveying system is arranged on the supporting bridge, the spiral material conveying system comprises a first rotating mechanism, a first material loading pipe body, a vertical spiral material taking device, a horizontal spiral material pushing device, a universal joint connecting piece and a first material discharging pipe body, and the fixed end of the top of the first rotating mechanism is fixed on the supporting bridge; a horizontal screw rod body of the horizontal screw pusher is positioned in a horizontal conveying pipe body, and the horizontal conveying pipe body is fixed on a first rotating mechanism; a vertical spiral rod body of the vertical spiral material taking device is positioned in the vertical material conveying pipe body, the vertical material conveying pipe body is fixed and communicated with one end of the horizontal material conveying pipe body, and the vertical spiral rod body is connected with the horizontal spiral rod body through a universal joint connecting piece; the first feeding pipe body is fixedly connected to the bottom end of the vertical material conveying pipe body, and the first discharging pipe body is arranged at the other end of the horizontal material conveying pipe body.
Preferably, two sets of spiral conveying systems are arranged on the supporting bridge frame.
Preferably, the material sucking and discharging crown block further comprises an air pressure material conveying system, wherein the air pressure material conveying system comprises a second rotating mechanism, a second material feeding pipe body, a second material conveying pipe body, a negative pressure fan, a dust removing mechanism and a second material discharging pipe body, the second rotating mechanism is fixed on the supporting bridge frame, and the second material feeding pipe body is arranged on the second rotating mechanism; the second material conveying pipe body is horizontally laid on the support bridge; the negative pressure fan and the dust removal mechanism are fixed on the supporting bridge frame, the negative pressure fan acts on the second material conveying pipe body, the output end of the negative pressure fan is communicated with the input end of the dust removal mechanism, and the output end of the dust removal mechanism is communicated with the second discharging pipe body.
Preferably, the first discharging pipe body is sleeved in the first discharging pipe body, and the first discharging pipe body is provided with a telescopic lifting device.
Preferably, the two sides of the first rotating mechanism are provided with steel wire ropes which are connected with a horizontal material conveying pipe body of the horizontal spiral pusher.
Preferably, a second discharging pipe body is sleeved in the second discharging pipe body, and a telescopic lifting device is arranged on the second discharging pipe body.
The utility model has the advantages that: the utility model discloses an inhale overhead traveling crane of unloading directly utilizes the defeated material system of spiral to put in the stove chamber with the stopping, cancels the feed bin transportation, has reduced the time of material loading blowing, improves production efficiency.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings needed to be used in the description of the embodiments or the prior art will be briefly described below, it is obvious that the drawings in the following description are only some embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to these drawings without inventive exercise.
Fig. 1 is a schematic structural view of the existing design of the overhead travelling crane for material suction and discharge of the present invention;
fig. 2 is a schematic structural view of a spiral conveying system and a pneumatic conveying system of the suction and discharge overhead travelling crane of the present invention;
fig. 3 is a top view of the overhead travelling crane for material suction and discharge of the present invention;
fig. 4 is the schematic structural diagram of the spiral conveying system of the suction and discharge overhead traveling crane of the present invention.
In the figure:
1. supporting the bridge; 2. a cart component; 3. a trolley component; 4. an electronic control system; 5. a first rotating mechanism; 6. a first feeding pipe body; 7. a vertical spiral material taking device; 8. a horizontal screw pusher; 9. a gimbal connection; 10. a first blanking pipe body; 11. a second rotating mechanism; 12. a second feeding pipe body; 13. a second feeding pipe body; 14. a negative pressure fan; 15. a dust removal mechanism; 16. a steel cord.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative efforts belong to the protection scope of the present invention.
Example (b): as shown in fig. 1 to 4, an overhead traveling crane for material suction and discharge includes a supporting bridge 1, a cart part 2, a cart part 3 and an electric control system 4, at least one set of spiral feeding system is disposed on the supporting bridge, the spiral feeding system includes a first rotating mechanism 5, a first feeding pipe 6, a vertical spiral material taking device 7, a horizontal spiral material pushing device 8, a universal joint connecting member 9 and a first discharging pipe 10, the first rotating mechanism 5 is fixed on the supporting bridge 1, a horizontal spiral rod of the horizontal spiral material pushing device 8 is located in the horizontal feeding pipe, and the horizontal feeding pipe is fixed on the first rotating mechanism 5; a vertical spiral rod body of the vertical spiral material taking device 7 is positioned in the vertical material conveying pipe body, the vertical material conveying pipe body is fixed and communicated with one end of the horizontal material conveying pipe body, and the vertical spiral rod body is connected with the horizontal spiral rod body through a universal joint connecting piece; the first feeding pipe body 6 is fixedly connected to the bottom end of the vertical material conveying pipe body, and the first discharging pipe body 10 is fixed to the other end of the horizontal material conveying pipe body. The two sides of the first rotating mechanism are provided with steel wire ropes 16 which are connected with a horizontal conveying pipe body of the horizontal spiral pusher 8.
As shown in fig. 2, the overhead traveling crane for suction and discharge of the present invention further includes an air pressure feeding system, the air pressure feeding system includes a second rotating mechanism 11, a second feeding pipe body 12, a second feeding pipe body 13, a negative pressure fan 14, a dust removing mechanism 15 and a second discharging pipe body, the second rotating mechanism 11 is fixed on the supporting bridge frame 1, and the second feeding pipe body 12 is disposed on the second rotating mechanism 11; the second material conveying pipe body 13 is horizontally laid on the supporting bridge frame 1; the negative pressure fan 14 and the dust removal mechanism 15 are fixed on the supporting bridge frame 1, the negative pressure fan 14 acts on the second material conveying pipe body 13, the output end of the negative pressure fan 14 is communicated with the input end of the dust removal mechanism 15, and the output end of the dust removal mechanism 15 is communicated with the second blanking pipe body.
A first discharging pipe body is sleeved in the first discharging pipe body, and a telescopic lifting device is arranged on the first discharging pipe body; the second discharging pipe body is sleeved in the second discharging pipe body, and a telescopic lifting device is arranged on the second discharging pipe body. The first discharging pipe body or the second discharging pipe body is attached to the upper surface of the filler in the furnace body all the time, dust generated in the blanking process of the filler is reduced, visibility of a working environment is guaranteed, and physical health of workers is guaranteed.
Two sets of spiral material conveying systems are arranged on the supporting bridge frame. The pneumatic conveying system is positioned between the two sets of spiral conveying systems. The pneumatic conveying system and the two sets of spiral conveying systems can be used simultaneously or not.
When the pneumatic conveying system is used, the negative pressure fan is started to suck the filler from the second feeding pipe body, the filler enters the dust removal mechanism through the second conveying pipe body, and after dust is removed through the dust removal mechanism, the filler is conveyed into the furnace body through the discharging pipe body. The second rotating mechanism drives the second feeding pipe body to rotate 360 degrees so as to achieve the effect of uniform feeding.
When the spiral conveying system is used, the cart component, the trolley component and the first rotating mechanism are utilized to place the feeding pipe body to the position to be sucked, the first rotating mechanism can place the first feeding pipe body in the range enough to be rotated, the first feeding pipe body and the vertical spiral pushing rod are placed on the material, the vertical spiral pushing rod is stirred to push the material upwards through the first feeding pipe body and the vertical conveying pipe body and then push the material to the horizontal spiral pushing rod, the material is directly pushed into the first discharging pipe body through the horizontal conveying pipe body, and the material enters the furnace chamber through the first discharging pipe body in the first discharging pipe body, so that the direct conveying of the filler is realized, the time is saved, and the production efficiency is improved. The first rotating mechanism changes the feeding position while fixing the horizontal spiral feeder, and the effect of uniform feeding is achieved. In the spiral conveying system, the filler is in the first conveying pipe body in the whole conveying process, the influence on the environment is avoided, the filler is tightly attached to the upper surface in the furnace chamber during discharging, the visibility of the working environment is improved, and the health of workers is ensured.
The above description is only a preferred embodiment of the present invention, and should not be taken as limiting the invention, and any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention should be included in the protection scope of the present invention.
Claims (6)
1. An absorbing and discharging overhead traveling crane comprises a supporting bridge, a cart part, a trolley part and an electric control system, and is characterized in that at least one set of spiral conveying system is arranged on the supporting bridge, the spiral conveying system comprises a first rotating mechanism, a first feeding pipe body, a vertical spiral material taking device, a horizontal spiral material pushing device, a universal joint connecting piece and a first discharging pipe body, and the fixed end of the top of the first rotating mechanism is fixed on the supporting bridge; a horizontal screw rod body of the horizontal screw pusher is positioned in a horizontal conveying pipe body, and the horizontal conveying pipe body is fixed on a first rotating mechanism; a vertical spiral rod body of the vertical spiral material taking device is positioned in the vertical material conveying pipe body, the vertical material conveying pipe body is fixed and communicated with one end of the horizontal material conveying pipe body, and the vertical spiral rod body is connected with the horizontal spiral rod body through a universal joint connecting piece; the first feeding pipe body is fixedly connected to the bottom end of the vertical material conveying pipe body, and the first discharging pipe body is fixed to the other end of the horizontal material conveying pipe body.
2. The crown block for suction and discharge as claimed in claim 1, wherein said supporting bridge is provided with two sets of screw conveyor systems.
3. The suction and discharge crown block according to claim 1, further comprising a pneumatic conveying system, which comprises a second rotating mechanism, a second feeding pipe body, a second conveying pipe body, a negative pressure fan, a dust removing mechanism and a second discharging pipe body, wherein the second rotating mechanism is fixed on the supporting bridge, and the second feeding pipe body is arranged on the second rotating mechanism; the second material conveying pipe body is horizontally laid on the support bridge; the negative pressure fan and the dust removal mechanism are fixed on the supporting bridge frame, the negative pressure fan acts on the second material conveying pipe body, the output end of the negative pressure fan is communicated with the input end of the dust removal mechanism, and the output end of the dust removal mechanism is communicated with the second discharging pipe body.
4. The suction and discharge crown block as claimed in claim 1, wherein a first discharge pipe body is sleeved in the first discharge pipe body, and a telescopic lifting device is arranged on the first discharge pipe body.
5. The crown block for suction and discharge as claimed in claim 1, wherein the first rotating mechanism is provided with wire ropes on both sides thereof, and connected to the horizontal conveying pipe of the horizontal auger.
6. The suction and discharge crown block as claimed in claim 3, wherein a second discharge pipe body is sleeved in the second discharge pipe body, and a telescopic lifting device is arranged on the second discharge pipe body.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202021266837.8U CN212620136U (en) | 2020-07-02 | 2020-07-02 | Suction and discharge overhead traveling crane |
Applications Claiming Priority (1)
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CN202021266837.8U CN212620136U (en) | 2020-07-02 | 2020-07-02 | Suction and discharge overhead traveling crane |
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CN212620136U true CN212620136U (en) | 2021-02-26 |
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CN202021266837.8U Active CN212620136U (en) | 2020-07-02 | 2020-07-02 | Suction and discharge overhead traveling crane |
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2020
- 2020-07-02 CN CN202021266837.8U patent/CN212620136U/en active Active
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