CN211993511U - High-efficiency clean production equipment combination for processing refractory bricks - Google Patents

High-efficiency clean production equipment combination for processing refractory bricks Download PDF

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Publication number
CN211993511U
CN211993511U CN202020446318.3U CN202020446318U CN211993511U CN 211993511 U CN211993511 U CN 211993511U CN 202020446318 U CN202020446318 U CN 202020446318U CN 211993511 U CN211993511 U CN 211993511U
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China
Prior art keywords
mixer
production equipment
refractory bricks
material conveying
clean production
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CN202020446318.3U
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Chinese (zh)
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孟迪
成志飞
李幸可
白勇
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Henan Huayu New Material Co ltd
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Henan Huayu New Material Co ltd
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Abstract

The utility model relates to a set of high-efficiency clean production equipment combination for processing refractory bricks, which comprises a material tank, a mixer, a storage pit, a material conveying hopper, a material conveying pipe, a support bracket, a brick pressing forming machine, a feeding machine, a crusher and a hoisting machine; the storage pit and the pulverizer are arranged below the ground, and the rest equipment is arranged above the ground; the feeding machine, the pulverizer, the elevator, the charging bucket and the mixer are arranged in sequence; the storage pit, the material conveying hopper, the bearing bracket and the brick pressing forming machine are arranged in sequence; a partition wall is arranged between the material tank and the mixer, and a discharge hole of the material tank is connected with a feed inlet of the mixer through a feed delivery pipe; and a material conveying hopper is arranged in the material storage pit. The utility model has the advantages of, all equipment subareas are arranged, partial equipment keeps apart the setting, participate in the staff and fall to minimum, various production facility arrange neatly, surveyability, basically there is not the dust in the workshop to high-efficient clean purpose has been realized.

Description

High-efficiency clean production equipment combination for processing refractory bricks
Technical Field
The utility model belongs to the technical field of resistant firebrick processing is with production facility structure, especially, belong to a resistant firebrick processing is with structure technical field of production facility combination.
Background
The existing firebrick processing factory has very extensive production, even if purchased equipment is available, the firebrick processing factory has little combined use planning of production equipment inside a factory building because the firebrick processing factory has no special classification and division of functionality. For example, the use of the mixing equipment is to manually add various raw materials into the mixing equipment, and then start the stirring device to stir, thereby achieving the purpose of mixing. The material mixing mode has great pollution to workers, many workers often suffer pneumoconiosis caused by the fact that a large amount of dust is sucked into the lung after working for a certain time, and the dumping time can occur in the stirring process, so that the waste of raw materials is caused. In order to improve the whole cleanliness of resistant firebrick processing factory, satisfy the high efficiency in the production simultaneously, consequently need set up the high-efficient clear production facility combination of one set of resistant firebrick processing usefulness, this application has realized this demand.
Disclosure of Invention
The utility model discloses having just solved above-mentioned problem defect, providing one set of processing of nai firebrick and using high-efficient clear production facility combination, the utility model has the advantages of, all equipment subareas are arranged, partial equipment keeps apart the setting, participates in the staff and falls to minimum, various production facility and arranges neatly, surveyability, and basically there is not the dust in the workshop to high-efficient clean purpose has been realized.
The utility model adopts the following technical scheme to realize.
The utility model discloses a set of high-efficiency clean production equipment combination for processing refractory bricks, which comprises a material tank, a mixer, a storage pit, a material conveying hopper, a material conveying pipe, a support bracket, a brick pressing forming machine, a feeding machine, a crusher and a hoisting machine;
the storage pit and the pulverizer are arranged below the ground, and the rest equipment is arranged above the ground;
the feeding machine, the pulverizer, the elevator, the charging bucket and the mixer are arranged in sequence;
the storage pit, the material conveying hopper, the bearing bracket and the brick pressing forming machine are arranged in sequence;
a partition wall is arranged between the material tank and the mixer, and a discharge hole of the material tank is connected with a feed inlet of the mixer through a feed delivery pipe;
and a material conveying hopper is arranged in the material storage pit.
Furthermore, the utility model is provided with a horizontal material blowing pipe; the material blowing pipe is arranged between the hoister and the material tank and on the top of the hoister; a fan is arranged at the starting end of the material blowing pipe; a plurality of support rods are fixedly arranged at the lower part of the blowing pipe.
Furthermore, the upper part of the feeder is provided with a feeding pipeline, the lower part of the feeder is a feed opening, the lower part of the feed opening of the feeder is provided with a crusher, and the feed end of the crusher is arranged corresponding to the feed opening of the feeder; the elevator is arranged on one side of the crusher, and the bottom of the elevator is connected with the discharge end of the crusher; the end of the blowing pipe is connected with the charging bucket.
Further, a stirring device is arranged in the mixer, and the stirring device comprises support frames arranged at two sides of the mixer, a stirrer arranged at the top of the middle part of the support frame, and 1-3 groups of stirring blades fixedly connected with a rotating shaft of the stirrer; the stirring leaf sets gradually from last to down, and the stirring leaf incline direction of the superiors is opposite with the 1-2 stirring leaf incline direction of group of lower part, and the direction F of the higher side of the directional horizontal position of the lower one side of the stirring leaf horizontal position of the superiors and stirring leaf rotation direction syntropy.
Further, the support bracket on be provided with the striker plate.
Further, fortune hopper bottom parallel arrangement groove limit, at the embedded pulling flitch of being equipped with of groove limit, the pulling flitch end is provided with the handle under the pulling.
Furthermore, the production equipment combination of the utility model also comprises an electric hoist and a mobile platform, wherein the electric hoist is movably connected on the mobile platform; the moving platform is arranged between the storage pit and the support bracket and reciprocates between the storage pit and the support bracket; the lower part of the electric hoist is connected with a material conveying hopper.
Further, material jar set up to 2 and above.
Further, the crusher body arranged below the ground is provided with a cover plate on the upper part.
Further, the utility model discloses this production facility combination is still including the defeated material platform that sets up, defeated material platform one end setting in setting up in support bracket lower extreme ejection of compact department, the other end setting is in pressing brick make-up machine feed inlet department, and the end that sets up the defeated material platform of support bracket lower extreme ejection of compact department is higher than the end of the defeated material platform of pressing brick make-up machine feed inlet department.
The utility model has the advantages that 1) the equipment arrangement is neat and neat, the vision is very refreshing, the staff can be clear at a glance during the production, and the maintenance position during the production dynamic and machine failure can be conveniently mastered; 2) various devices used in production are classified according to different functions, and a partition wall is arranged if necessary, so that the cleanliness of a main workshop is reduced; 3) the equipment combination of the efficiency is improved, so that the participation degree of workers on the site is greatly reduced, the workers are transferred to a control room/a monitoring room from a workshop site for remote monitoring, the occurrence of pneumoconiosis is thoroughly eliminated, and the equipment combination is very good for the health of the workers; 4) the unique blowing feeding mode can lead the raw materials to be concentrated in a certain specific area, only a small amount of dust is generated in the specific area, and the dust can be controlled in a nearly nonexistent state by matching with a dust removal device specially designed by an applicant. As for the equipment, the raw materials are blown into a plurality of charging buckets for natural settlement, and the discharge ports of the charging buckets are arranged at the bottom, so that the raw materials can smoothly enter the next link, namely a mixer, and different raw materials are fed at the feeding pipelines of the feeding machine, so that the mixing of the raw materials can be realized, and the equipment is very convenient; 5) the utility model discloses a storage pit and rubbing crusher all set up in the below ground, and the production of being convenient for very has also played the purpose that reduces the dust, and the apron that cooperation rubbing crusher organism upper portion set up, and the effect is better.
The present invention will be further described with reference to the accompanying drawings and the following detailed description.
Drawings
Fig. 1 is a general view of the structure of the present invention.
Fig. 2 is a schematic structural diagram of the first section of the present invention.
Fig. 3 is a schematic structural diagram of the second stage of the present invention.
Fig. 4 is a schematic structural diagram of the third section of the present invention.
Fig. 5 is an enlarged schematic view of a portion a in fig. 1.
Fig. 6 is a schematic structural view of the material transporting hopper of the present invention.
The reference numbers in the figures are: the brick pressing machine comprises a charging bucket (100), a mixer (101), a storage pit (103), a conveying hopper (104), a conveying pipe (105), a bearing bracket (106), a feeding machine (200), a pulverizer (201), a lifting machine (202), a brick pressing forming machine (203), a blowing pipe (301), a fan (302), a supporting frame (400), a stirring machine (401), a stirring blade (402), a material baffle plate (501), a groove edge (502), a drawing and discharging plate (503), a handle (504), an electric hoist (601), a moving platform (602), a cover plate (701) and a conveying platform (702).
Detailed Description
See fig. 1, fig. 2, fig. 3, fig. 4, fig. 5, fig. 6.
The utility model discloses a set of high-efficient clean production equipment combination for processing refractory bricks, which comprises a charging bucket 100, a mixer 101, a storage pit 103, a material conveying bucket 104, a material conveying pipe 105, a support bracket 106, a brick pressing forming machine 203, a feeder 200, a crusher 201 and a lifter 202;
the storage pit 103 and the pulverizer 201 are arranged below the ground, and the rest equipment is arranged above the ground;
the feeding machine 200, the pulverizer 201, the elevator 202, the charging bucket 100 and the mixer 101 are sequentially arranged;
the storage pit 103, the material conveying hopper 104, the support bracket 106 and the brick pressing forming machine 203 are arranged in sequence;
a partition wall is arranged between the charging bucket 100 and the mixer 101, and a discharge hole of the charging bucket 100 is connected with a feed inlet of the mixer 101 through a feed delivery pipe 105;
a material conveying hopper 104 is arranged in the storage pit 103.
Further, the utility model is provided with a horizontal material blowing pipe 301; the blowing pipe 301 is arranged between the elevator 202 and the charging bucket 100 and on the top of the elevator 202; a fan 302 is arranged at the starting end of the material blowing pipe 301; a plurality of support rods are fixedly arranged at the lower part of the material blowing pipe 301. The design of the blowing pipe 301 can meet the requirement that raw materials run in one direction in a closed space and are considered controllable.
Further, the upper part of the feeder 200 of the utility model is provided with a feed pipe, the lower part of the feeder 200 is a feed opening, the lower part of the feed opening of the feeder 200 is provided with a crusher 201, and the feed end of the crusher 201 is arranged corresponding to the feed opening of the feeder 200; the hoister 202 is arranged at one side of the crusher 201, and the bottom of the hoister 202 is connected with the discharge end of the crusher 201; the end of the blowing pipe 301 is connected with the charging bucket 100.
Further, a stirring device is arranged in the mixer 101, and the stirring device comprises a support frame 400 arranged at two sides of the mixer, a stirrer 401 arranged at the top of the middle part of the support frame, and 1-3 groups of stirring blades 402 fixedly connected with a rotating shaft of the stirrer; the stirring blades 402 are sequentially arranged from top to bottom, the inclination direction of the stirring blade 402 on the uppermost layer is opposite to that of the stirring blades of 1-2 groups on the lower part, and the direction F of the lower side of the horizontal position of the stirring blade 402 on the uppermost layer points to the higher side of the horizontal position is the same as the rotation direction of the stirring blade 402. The aim at of so designing when agitating unit moves, when guaranteeing that middle part, lower part stirring leaf stir the compounding, the stirring leaf on upper portion can carry out certain effect of smoothing to the raw materials surface, can guarantee that the compounding can not pour down.
Further, the support bracket 106 of the present invention is provided with a striker plate 501. When the bottom of the material conveying hopper 104 is opened to take out the raw materials, the material baffle 501 can prevent the raw materials from being scattered to two sides.
Further, fortune hopper 104 bottom parallel arrangement groove limit 502, at the embedded flitch 503 under drawing that is equipped with of limit 502, the flitch end is provided with handle 504 under the drawing. The drawing is designed to open the bottom of the hopper 104.
Furthermore, the production equipment combination of the utility model also comprises an electric hoist 601 and a mobile platform 602, wherein the electric hoist 601 is movably connected on the mobile platform 602; the moving platform 602 is arranged between the storage pit 103 and the support bracket 106, and reciprocates between the storage pit 103 and the support bracket 106; the lower part of the electric hoist 601 is connected with a material conveying hopper 104.
Further, the material tank 100 of the present invention is set to 2 or more.
Further, the cover plate 701 is disposed on the upper portion of the crusher 201 disposed below the ground.
Further, the utility model discloses this production facility combination is still including the defeated material platform 702 that sets up, defeated material platform 702 one end set up in setting up in support bracket 106 lower extreme ejection of compact department, the other end setting is in pressing brick make-up machine 203 feed inlet department, and the end that sets up the defeated material platform in support bracket lower extreme ejection of compact department is higher than the end of the defeated material platform of pressing brick make-up machine feed inlet department. The introduction of the material delivery platform 702 can greatly reduce the complicated and heavy actions of manually feeding the raw materials into the brick pressing forming machine 203.
The above description is only for the specific embodiment of the present invention, and the common general knowledge of the known specific structure and characteristics of the scheme is not described too much here. It should be noted that, for those skilled in the art, without departing from the structure of the present invention, several modifications and improvements can be made, which should also be regarded as the protection scope of the present invention, and these will not affect the effect of the implementation of the present invention and the practicability of the patent. The scope of the claims of the present application shall be determined by the contents of the claims, and the description of the embodiments and the like in the specification shall be used to explain the contents of the claims.

Claims (10)

1. A set of efficient clean production equipment combination for processing refractory bricks is characterized by comprising a charging bucket (100), a mixer (101), a storage pit (103), a conveying hopper (104), a conveying pipe (105), a bearing bracket (106), a brick pressing forming machine (203), a feeding machine (200), a crusher (201) and a lifter (202);
the storage pit (103) and the pulverizer (201) are arranged below the ground, and the rest equipment is arranged above the ground;
the feeding machine (200), the pulverizer (201), the lifting machine (202), the charging bucket (100) and the mixer (101) are arranged in sequence;
the storage pit (103), the material conveying hopper (104), the support bracket (106) and the brick pressing forming machine (203) are arranged in sequence;
a partition wall is arranged between the charging bucket (100) and the mixer (101), and a discharge hole of the charging bucket (100) is connected with a feed inlet of the mixer (101) through a feed delivery pipe (105);
a material conveying hopper (104) is arranged in the material storage pit (103).
2. The set of efficient clean production equipment combination for processing refractory bricks according to claim 1, wherein a horizontal blowing pipe (301) is arranged; the material blowing pipe (301) is arranged between the hoister (202) and the charging bucket (100), and the top of the hoister (202); a fan (302) is arranged at the starting end of the material blowing pipe (301); a plurality of support rods are fixedly arranged at the lower part of the blowing pipe (301).
3. The efficient clean production equipment combination for processing the refractory bricks according to claim 1, wherein a feeding pipeline is arranged at the upper part of the feeding machine (200), a feed opening is arranged at the lower part of the feeding machine (200), a crusher (201) is arranged at the lower part of the feed opening of the feeding machine (200), and a feeding end of the crusher (201) is arranged corresponding to the feed opening of the feeding machine (200); the elevator (202) is arranged on one side of the crusher (201), and the bottom of the elevator (202) is connected with the discharge end of the crusher (201); the tail end of the blowing pipe (301) is connected with the charging bucket (100).
4. The set of efficient clean production equipment combination for processing refractory bricks according to claim 1, wherein a stirring device is arranged in the mixer (101), and the stirring device comprises support frames (400) arranged at two sides of the mixer, a stirrer (401) arranged at the top of the middle part of the support frames, and 1-3 groups of stirring blades (402) fixedly connected with a rotating shaft of the stirrer; stirring leaf (402) are from last to setting gradually down, and the stirring leaf (402) incline direction of the superiors is opposite with the 1-2 stirring leaf incline direction of group of lower part, and the direction F of the higher one side of the lower directional horizontal position of the stirring leaf (402) horizontal position of the superiors rotates the direction syntropy with stirring leaf (402).
5. The set of efficient clean production equipment combination for processing refractory bricks according to claim 1, wherein the material baffle plate (501) is arranged on the support bracket (106).
6. The set of efficient clean production equipment combination for processing refractory bricks according to claim 1, wherein the bottom of the material conveying hopper (104) is provided with a groove edge (502) in parallel, a drawing lower material plate (503) is embedded in the groove edge (502), and the end of the drawing lower material plate (503) is provided with a handle (504).
7. The set of efficient clean production equipment combination for processing refractory bricks, according to claim 1, is characterized by further comprising an electric hoist (601) and a moving platform (602), wherein the electric hoist (601) is movably connected on the moving platform (602); the moving platform (602) is arranged between the storage pit (103) and the support bracket (106) and reciprocates between the storage pit (103) and the support bracket (106); the lower part of the electric hoist (601) is connected with a material conveying hopper (104).
8. The set of efficient clean production equipment combination for processing refractory bricks according to claim 1, wherein the number of the charging buckets (100) is 2 or more.
9. The set of efficient clean production equipment combination for processing refractory bricks according to claim 1, wherein the cover plate (701) is arranged on the upper part of the body of the pulverizer (201) arranged below the ground.
10. The set of efficient clean production equipment combination for processing refractory bricks according to claim 1, further comprising a material conveying platform (702), wherein one end of the material conveying platform (702) is arranged at a material outlet at the lower end of the support bracket (106), the other end of the material conveying platform is arranged at a material inlet of the brick pressing and forming machine (203), and the end of the material conveying platform arranged at the material outlet at the lower end of the support bracket is higher than the end of the material conveying platform at the material inlet of the brick pressing and forming machine.
CN202020446318.3U 2020-03-31 2020-03-31 High-efficiency clean production equipment combination for processing refractory bricks Active CN211993511U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020446318.3U CN211993511U (en) 2020-03-31 2020-03-31 High-efficiency clean production equipment combination for processing refractory bricks

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020446318.3U CN211993511U (en) 2020-03-31 2020-03-31 High-efficiency clean production equipment combination for processing refractory bricks

Publications (1)

Publication Number Publication Date
CN211993511U true CN211993511U (en) 2020-11-24

Family

ID=73422004

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202020446318.3U Active CN211993511U (en) 2020-03-31 2020-03-31 High-efficiency clean production equipment combination for processing refractory bricks

Country Status (1)

Country Link
CN (1) CN211993511U (en)

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