Carbon brick size processing equipment

By introducing a symmetrical edge grinding mechanism and a rotating platform into the carbon brick processing equipment, the problem of damage caused by bumps and knocks on the edges of carbon bricks has been solved, enabling all-round grinding of carbon bricks and improving the yield and production efficiency.

CN223588993UActive Publication Date: 2025-11-25LUSHAN YAXING TECH DEV CO LTD
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Patent Information

Application Number
CN202421988848.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-16
Publication Date
2025-11-25
Estimated Expiration
2034-08-16

AI Technical Summary

Technical Problem

Existing charcoal brick processing equipment is prone to damage to the edges and corners of charcoal bricks after they have been fired and formed, which can lead to damage to the main body of the charcoal bricks and increase the occurrence of defective products.

Method used

A carbon brick size processing device was designed, which adopts a symmetrical edge grinding mechanism and a rotating platform. The edge grinding mechanism grinds the edges of the carbon bricks, and the rotating platform changes the position of the carbon bricks to ensure that all edges are ground.

Benefits of technology

This effectively prevents carbon bricks from being damaged by bumps during transportation, thus improving the yield and production efficiency of carbon bricks.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223588993U_ABST
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Abstract

The utility model provides carbon brick size processing equipment, which belongs to the technical field of carbon brick processing equipment and comprises a conveying platform, two ends of the conveying platform are respectively provided with a group of edge grinding mechanisms which are symmetrical up and down, the upper edge grinding mechanism is movably arranged up and down, and the corresponding conveying platform is provided with a lifting drive for driving the conveying platform to move. The edge grinding mechanism comprises an equipment support, a positive and negative tooth lead screw is rotationally arranged on the equipment support, sliding blocks are symmetrically and movably arranged on the positive and negative tooth lead screw, sliding plates attached to the sliding blocks are correspondingly arranged on the equipment support, and in addition, grinding assemblies are rotationally arranged on the sliding blocks and comprise transmission shafts rotationally arranged on the sliding blocks. The other end of the transmission shaft is fixedly provided with a conical grinding wheel, the transmission shaft is sleeved with a worm wheel rotating along with the transmission shaft, the equipment support is rotationally provided with a positive and negative tooth worm matched with the worm wheel, the equipment support is further provided with first driving equipment and second driving equipment, and a rotating platform is further arranged in the middle of the conveying platform.
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Description

TECHNICAL FIELD

[0001] The utility model relates to carbon brick processing equipment technical field, concretely relates to a carbon brick size processing equipment. BACKGROUND

[0002] Carbon brick is a kind of carbonaceous refractory material, which is made of coke, anthracite or graphite and tar as raw materials, mixed, formed, and burned to 1450 DEG C in reducing flame, can resist the corrosion of molten metal and various molten slag, and is used for lining the furnace bottom and bosh of blast furnace as an important refractory material, and has wide application in metallurgy, chemical industry, electric power and building materials fields;

[0003] The existing carbon brick processing equipment directly transports and stacks after carbon brick is formed by burning, and the corners of the carbon brick that have not been repaired cannot be protected when the carbon brick collides, which may cause serious damage to the main body of the carbon brick, thereby increasing the occurrence of defective products, and therefore a carbon brick size processing equipment is provided to solve this problem. SUMMARY

[0004] Therefore, the utility model provides a carbon brick size processing equipment, the edge of carbon brick conveyed on the conveying platform can be polished through the upper and lower symmetrical edge polishing mechanism, the position of the carbon brick is changed by the rotating platform when passing through the rotating platform, and then the edge of another carbon brick is polished, so that the situation that the carbon brick cannot be protected when colliding is avoided.

[0005] To solve the above technical problems, the utility model provides a carbon brick size processing equipment, which comprises a conveying platform, a group of upper and lower symmetrical edge polishing mechanisms are arranged at both ends of the conveying platform, the upper edge polishing mechanism is movably arranged, a lifting drive for driving the upper edge polishing mechanism is arranged on the conveying platform, the edge polishing mechanism comprises an equipment support, a forward and reverse toothed rod is rotatably arranged on the equipment support, a sliding block is movably arranged on the forward and reverse toothed rod, a sliding plate is arranged on the equipment support and matched with the sliding block, a polishing assembly is rotatably arranged on the sliding block, the polishing assembly comprises a transmission shaft rotatably arranged on the sliding block, a conical polishing wheel is fixedly arranged at the other end of the transmission shaft, a worm wheel is rotatably arranged on the transmission shaft and rotates with the transmission shaft, a forward and reverse toothed worm is rotatably arranged on the equipment support and matched with the worm wheel, a first driving device and a second driving device are further arranged on the equipment support, the first driving device is in transmission connection with the forward and reverse toothed rod, the second driving device is in transmission connection with the forward and reverse toothed worm, and a rotating platform is further arranged at the middle position of the conveying platform.

[0006] The rotating platform comprises a base arranged at the lower part of the conveying platform, a plurality of guide sliding rods are arranged on the base, a mounting plate is movably arranged on the guide sliding rods, a sliding hole matched with the guide sliding rods is arranged on the mounting plate, and a telescopic drive for driving the mounting plate to move is arranged on the base.

[0007] The mounting plate has a rotating seat on its base surface. A support boss that rotates with the rotating seat is fixed on the upper part of the rotating seat. A connecting protrusion is fixed on the base surface at the edge of the rotating seat. The connecting protrusion is rotatably connected to the telescopic push rod assembly set on the base surface of the mounting plate.

[0008] A bracket is fixedly installed on the upper surface of the support boss.

[0009] The upper equipment bracket is fixedly connected to the lifting drive output end.

[0010] The beneficial effects of the above-mentioned technical solution of this utility model are as follows:

[0011] 1. The symmetrically arranged edge grinding mechanism grinds the edges of the carbon bricks conveyed on the conveying platform. When the carbon bricks pass through the rotating platform, the rotating platform changes their position and then grinds the edges of other carbon bricks, thus avoiding the situation where the carbon bricks cannot be protected in the event of a collision.

[0012] 2. Place the carbon brick on the conveying platform, which will move it. At the same time, according to the size of the carbon brick, start the first drive device to drive the positive and negative threaded screws to rotate. This will allow the slider to drive the grinding component to adapt to the size of the carbon brick. Simultaneously, control the lifting drive to adapt to the height of the carbon brick. When the carbon brick passes by, the second drive device will drive the positive and negative threaded worm gear, so that the worm wheel and worm gear will rotate together, which will drive the conical grinding wheel on the trigger shaft to grind the edge of the carbon brick.

[0013] 3. Further, the carbon bricks are moved to the rotating platform position by the conveying equipment. The telescopic drive is controlled to move the mounting plate up and down, thereby lifting the carbon bricks with the bracket. The telescopic push rod assembly is then controlled to push the connecting protrusion, which in turn drives the rotating seat to rotate. This causes the supporting protrusion to rotate the bracket 90 degrees. The telescopic drive is then controlled to retract, allowing the carbon bricks to return to the conveying platform and continue moving. The bricks then pass through the edge grinding mechanism at the other end, where the remaining edges are ground. The grinding process is completed during the conveying process, improving production efficiency. Attached Figure Description

[0014] Fig. 1 This is a schematic diagram of the main structure of a carbon brick size processing equipment according to the present invention;

[0015] Fig. 2 This is a schematic diagram of the main structure behind the hidden part of the conveying platform of this utility model;

[0016] Fig. 3 This is a schematic diagram of the main structure from another perspective, showing the hidden part of the conveying platform of this utility model.

[0017] Explanation of reference signs: 100, conveying platform; 101, lifting drive; 200, edge grinding mechanism; 210, equipment support; 211, sliding plate; 212, forward and reverse tooth screw rod; 213, forward and reverse tooth worm; 214, first driving device; 215, second driving device; 220, sliding block; 230, polishing assembly; 231, transmission shaft; 232, conical polishing wheel; 233, worm gear; 300, rotating platform; 310, base; 320, guide slide rod; 330, mounting plate; 331, sliding hole; 340, telescopic drive; 350, rotating seat; 351, connecting protrusion; 360, supporting boss; 370, telescopic push rod assembly; 380, bracket. DETAILED DESCRIPTION

[0018] To make the purpose, technical scheme and advantages of the embodiments of the present application more clear, the following will combine the drawings of the embodiments of the present application to make a detailed description. Figs. 1-3 The technical scheme of the embodiments of the present application is described clearly and completely. Obviously, the described embodiments are part of the embodiments of the present application, not all the embodiments. Based on the described embodiments of the present application, all other embodiments obtained by those skilled in the art belong to the scope of protection of the present application.

[0019] As shown in the drawings: Figs. 1-3

[0020] The present embodiment provides a kind of carbon brick size processing equipment, including conveying platform 100, conveying platform 100 both ends are equipped with a group of upper and lower symmetrical edge grinding mechanism 200, wherein upper edge grinding mechanism 200 is movably arranged, and corresponding conveying platform 100 is equipped with lifting drive 101 for driving its activity, edge grinding mechanism 200 includes equipment support 210, equipment support 210 is rotatably provided with forward and reverse tooth screw rod 212, forward and reverse tooth screw rod 212 is movably provided with sliding block 220 symmetrically, and corresponding equipment support is equipped with sliding plate 211 that is attached to sliding block 220, in addition, polishing assembly 230 is rotatably arranged on sliding block 220, polishing assembly 230 includes transmission shaft 231 rotatably arranged on sliding block 220, conical polishing wheel 232 is fixedly arranged on the other end of transmission shaft 231, worm gear 233 is rotatably arranged on transmission shaft 231, equipment support is rotatably provided with forward and reverse tooth worm 213 matched with worm gear 233, equipment support is also provided with first driving device 214 and second driving device 215, first driving device 214 is in transmission connection with forward and reverse tooth screw rod 212, second driving device 215 is in transmission connection with forward and reverse tooth worm 213, in addition, rotating platform 300 is also arranged at middle position of conveying platform 100.

[0021] ​In use, the carbon brick is placed on the conveying platform 100, which is driven to move by the conveying platform 100, and according to the size of the carbon brick, the first driving device 214 is started to drive the reverse tooth screw rod 212 to rotate, so that the sliding block drives the grinding assembly 230 to adapt to the size of the carbon brick, and the lifting drive 101 is controlled to adapt to the height of the carbon brick. When the carbon brick passes, the second driving device 215 drives the reverse tooth worm gear 213 to rotate, and the worm gear 233 cooperates with the worm to rotate, and then drives the conical grinding wheel 232 on the touch shaft to grind the edge of the carbon brick. Further, the carbon brick is moved to the rotating platform 300 position under the driving of the conveying device, the telescopic drive 340 drives the mounting plate 330 to move up and down, so that the bracket 380 lifts the carbon brick, and the telescopic push rod assembly 370 is controlled to operate, so as to push the connecting protrusion 351, and then drive the rotating seat 350 to rotate, so that the supporting boss 360 drives the bracket 380 to rotate 90 degrees. Control the telescopic drive 340 to recover, so that the carbon brick returns to the conveying platform 100 to continue to move, and further passes through the edge grinding mechanism 200 on the other end, and grinds the other edges. In the conveying process, the grinding treatment is completed, and the production efficiency is improved.

[0022] As shown in Fig. 3 , the rotating platform 300 includes a base 310 arranged at the lower part of the conveying platform 100, a plurality of guide sliding rods 320 are arranged on the base 310, a mounting plate 330 is movably arranged on the guide sliding rod 320, and a sliding hole 331 matched with the guide sliding rod 320 is arranged on the corresponding mounting plate 330. The base 310 is provided with a telescopic drive 340 for driving the mounting plate 330 to move.

[0023] As shown in Fig. 3 , the mounting plate 330 is provided with a rotating seat 350 on the base surface, the rotating seat 350 is fixedly provided with a supporting boss 360 rotating with it on the upper part, and the mounting plate 330 is provided with a connecting protrusion 351 fixedly arranged on the base surface at the edge position of the rotating seat 350. The output end of the telescopic push rod assembly 370 arranged on the base surface of the mounting plate 330 is provided with a connecting sleeve matched with the connecting protrusion 351, so that it can normally rotate when pushed.

[0024] As shown in Fig. 1 , 2 , the supporting boss 360 is fixedly provided with a bracket 380 on the end surface, and the bracket 380 is arranged in a cross shape. The conveying roller on the conveying platform 100 is provided with a cross-shaped station, so that the bracket 380 can complete the lifting and rotating action.

[0025] As shown in Fig. 1As shown in the figure, the upper equipment support 210 is fixedly connected with the output end of the lifting drive 101, and then the upper edging mechanism 200 is driven to lift by the lifting drive 101 to adapt to the height of different carbon bricks.

[0026] In addition, it also needs to be explained that, in the description of the present application, unless otherwise explicitly specified and limited, the terms "mounting", "connecting", "connection" should be understood broadly, for example, it can be fixed connection, or detachable connection, or integrally connected; it can be mechanical connection, or electrical connection; it can be directly connected, or indirectly connected through intermediate medium, or the communication inside two elements. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.

[0027] The above is the preferred embodiment of the present application, it should be pointed out that, for those skilled in the art, without departing from the principle of the present application, a number of improvements and refinements can be made, these improvements and refinements should also be considered as the protection scope of the present application.

Claims

1. A carbon brick sizing apparatus, characterized by: The application relates to a conveying platform (100) which is provided with a group of upper and lower symmetrical edge grinding mechanisms (200) at both ends, wherein the upper edge grinding mechanism (200) is movably arranged, a lifting drive (101) is arranged on the corresponding conveying platform (100) to drive the movement of the edge grinding mechanism (200), the edge grinding mechanism (200) comprises a device support (210), a reversible toothed lead screw (212) is rotatably arranged on the device support (210), a sliding block (220) is movably arranged on the reversible toothed lead screw (212) in a symmetrical mode, a sliding plate (211) is arranged on the corresponding device support and abuts against the sliding block (220), in addition, a polishing assembly (230) is rotatably arranged on the sliding block (220), the polishing assembly (230) comprises a transmission shaft (231) which is rotatably arranged on the sliding block (220), a conical polishing wheel (232) is fixedly arranged at the other end of the transmission shaft (231), a worm wheel (233) is sleeved on the transmission shaft (231) and rotates along with the transmission shaft (231), a reversible toothed worm (213) is rotatably arranged on the device support and matches the worm wheel (233), a first driving device (214) and a second driving device (215) are further arranged on the device support, the first driving device (214) is in transmission connection with the reversible toothed lead screw (212), the second driving device (215) is in transmission connection with the reversible toothed worm (213), and in addition, a rotating platform (300) is further arranged at the middle position of the conveying platform (100).

2. A carbon brick sizing apparatus as claimed in claim 1, characterized in that: The rotating platform (300) comprises a base (310) arranged at the lower part of the conveying platform (100), a plurality of guide sliding rods (320) are arranged on the base (310), a mounting plate (330) is movably arranged on the guide sliding rods (320), corresponding sliding holes (331) which match the guide sliding rods (320) are arranged on the mounting plate (330), and a telescopic drive (340) for driving the movement of the mounting plate (330) is arranged on the base (310).

3. A carbon brick sizing apparatus as claimed in claim 2, wherein: A rotating seat (350) is arranged on the base surface of the mounting plate (330), a support boss (360) which rotates along with the rotating seat (350) is fixedly arranged at the upper part of the rotating seat (350), a connecting protrusion (351) is fixedly arranged on the base surface of the edge position of the rotating seat (350), and the connecting protrusion (351) is in rotary connection with a telescopic push rod assembly (370) arranged on the base surface of the mounting plate (330).

4. A carbon brick sizing apparatus as claimed in claim 3, wherein: A bracket (380) is fixedly arranged on the end surface of the support boss (360).

5. A carbon brick sizing apparatus as claimed in claim 4, wherein: The upper device support (210) is fixedly connected with the output end of the lifting drive (101).