CN220072361U - Coal preparation equipment with small occupied area - Google Patents

Coal preparation equipment with small occupied area Download PDF

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Publication number
CN220072361U
CN220072361U CN202321413387.4U CN202321413387U CN220072361U CN 220072361 U CN220072361 U CN 220072361U CN 202321413387 U CN202321413387 U CN 202321413387U CN 220072361 U CN220072361 U CN 220072361U
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China
Prior art keywords
shell
screen
screen cloth
coal
vibrating motor
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CN202321413387.4U
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Chinese (zh)
Inventor
陈忠杰
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John Fenlei Good Friend Technology Hefei Co ltd
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John Fenlei Good Friend Technology Hefei Co ltd
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Abstract

The utility model provides coal dressing equipment with small occupied area, which comprises: the novel air extractor comprises a shell, an exhaust fan, a first screen and a second screen, wherein a feed inlet is formed in the upper surface of the shell, a containing cavity is formed in the shell, four supporting legs are arranged on the lower side surface of the shell, the first screen, a baffle, the second screen and a conveyor belt are sequentially arranged in the shell from top to bottom, a third discharge outlet is formed in the lower side edge of the left side surface of the shell, a first discharge outlet and a second discharge outlet are formed in the right side surface of the shell, and the exhaust fan is arranged in the upper half part of the left side surface of the shell. Through setting up the shell, the shell can protect the part, makes the part can avoid the destruction of striking to extension device's life through setting up screen cloth one and screen cloth two, thereby reaches and carries out hierarchical screening to coal, and whole device compact structure, thereby makes the device less to the area occupied on ground, and convenience of customers uses.

Description

Coal preparation equipment with small occupied area
Technical Field
The utility model belongs to the field of coal dressing equipment, and particularly relates to coal dressing equipment with small occupied area.
Background
The coal separation equipment is mechanical equipment for screening and classifying coal so as to separate coal products with different grades and different qualities, however, the prior coal separation equipment has some defects in structure, wherein the most prominent problem is overlarge occupied area and compact structure.
Firstly, the existing coal dressing equipment is complex in structure and large in occupied area, as the coal dressing equipment needs to complete various different procedures, all parts are connected through equipment such as a conveyor and a conveyor belt, the equipment is complex in structure, the occupied area of the whole equipment is large, the requirements of modern coal processing enterprises on plant areas cannot be met, in addition, the coal dressing equipment needs to be maintained and maintained for many times in the using process, and the maintenance difficulty and cost are increased due to the complex structure of the equipment;
secondly, the structure of the existing coal preparation equipment is not compact, certain waste is generated, the structural design of the traditional coal preparation equipment has obvious defects, such as a washing and separation pool, a screening system and the like, the occupied area of the traditional coal preparation equipment is large, so that some space cannot be fully utilized, precious field resources are wasted, moreover, the occupied area of the coal preparation equipment is too large, the production efficiency and the competitiveness of enterprises can be influenced, and therefore a new structure is required to be provided for solving the technical problems.
Disclosure of Invention
Aiming at the defects existing in the prior art, the utility model aims to provide coal dressing equipment with small occupied area, and solves the problems in the background art.
The utility model is realized by the following technical scheme: a small footprint coal preparation device comprising: shell, air exhauster, screen cloth first, screen cloth second, the upper surface mounting of shell has the feed inlet, the inside chamber that holds that is provided with of shell, four supporting legs of downside surface mounting of shell, screen cloth first, baffle, screen cloth second, conveyer belt have been installed from the top down in proper order to the inside of shell, discharge gate third has been seted up to the left side surface lower side edge of shell, discharge gate first and discharge gate second have been seted up to the right side surface of shell, the air exhauster is installed to the left side surface upper half of shell, vibrating motor first is installed in the downside surface butt of screen cloth first, vibrating motor second is installed in the downside surface butt of screen cloth second.
As a preferred implementation mode, the upper surface mid-mounting of shell has the feed inlet, the feed inlet is Y font structure, the feed inlet communicates with each other with the inside holding chamber of shell and is connected, the shell material is copper alloy, the air exhauster is connected with the power electricity through the electric wire, the end setting that induced drafts of air exhauster is inside the shell.
As a preferred implementation mode, the first screen is arranged between the left inner wall and the right inner wall of the shell in a mode that the right side is high, the left side is low and the inclined angle is 35 degrees, the vibrating motor I is arranged on the lower surface of the right end of the first screen in an abutting mode, the vibrating motor I is electrically connected with a power supply through an electric wire, and the vibrating motor I and the vibrating motor II are identical in structure.
As a preferred implementation mode, the baffle is installed between the left inner wall and the right inner wall of the shell in a mode of being high left and low right and inclined by 35 degrees, the upper surface of the right end of the baffle is connected with the first discharge hole in an aligned mode, the second screen is installed between the left inner wall and the right inner wall of the shell in a mode of being high left and low right and inclined by 35 degrees, and the first screen mesh is larger than the second screen mesh.
As a preferred implementation mode, the right-hand member upper side surface of screen cloth II is connected with the two pairs of alignment of discharge gate, the specification of discharge gate I and discharge gate II is the same, the structure, the size of screen cloth I and screen cloth II are the same but the specification is different, the conveyer belt is installed to the bottom in shell holding chamber, the conveyer belt is connected with the electric power electricity with the electric wire, the conveyer belt is anticlockwise rotation.
As a preferred embodiment, the bottom of the third discharge hole is provided with a triangular lug with a left lower side, a right higher side and an inclined side at an angle of 25 degrees, the left end of the triangular lug is aligned with the third discharge hole, and the right end of the triangular lug is abutted with the left end of the conveyor belt.
After the technical scheme is adopted, the utility model has the beneficial effects that: through setting up the shell, inside screen cloth first, the baffle, screen cloth second, the conveyer belt of installing from the top down of shell, the upper surface mounting of shell has the feed inlet, a supporting leg is installed respectively to four corners of the downside surface of shell, air exhauster is installed at the left side surface first half center of shell, when using, the shell can protect the part, make the part can avoid the destruction of striking, in order to prolong the life of device, and the exhaust end setting of air exhauster is inside the shell, can produce coal dust when the device is screening coal, open the air exhauster at this moment and get into dust extraction inside dust collector with the dust suction of shell and handle, avoid polluted environment, and whole device comprises the shell parcel, the simple structure, small, area is little, convenience of customers uses.
Through setting up screen cloth one and screen cloth two, when using, the user is put in the shell inside through the feed inlet at first, then the raw coal enters into the upside surface of screen cloth one, then open the vibrating motor one of screen cloth downside surface, carry out vibration screening to screen cloth one upside surface raw coal, make the one-level coal after the screening leak down from screen cloth one upper surface, enter into the upper surface of baffle one, then collect the use through discharge gate one, then the coal that screen cloth one upper surface was not screened is vibrated to screen cloth two's upper surface by vibrating motor one, then start vibrating motor two, screen cloth two's upper surface coal, then make screen cloth two upper surface's coal leak to the upper surface of conveyer belt, then start the conveyer belt and transport the second grade coal after the screening to the discharge gate three place through the conveyer belt, and screen cloth two upper surface will be followed the discharge gate two and leak down, thereby by the user collects and use, and reach and carry out the screening to coal, and whole device compact structure, thereby make the device carry out the classifying to the floor area of occupation of ground less, the user uses conveniently.
Drawings
In order to more clearly illustrate the embodiments of the utility model or the technical solutions of the prior art, the drawings which are used in the description of the embodiments or the prior art will be briefly described, it being obvious that the drawings in the description below are only some embodiments of the utility model, and that other drawings can be obtained according to these drawings without inventive faculty for a person skilled in the art.
Fig. 1 is a schematic diagram of the overall structure of a coal dressing apparatus with a small floor area.
Fig. 2 is a schematic diagram of the internal structure of the coal dressing apparatus with small occupied area.
In the figure, a shell 100, a supporting leg 110, a feeding hole 120 and an exhaust fan 130 are arranged;
200-a screen I, 201-a discharge hole I, 210-a vibration motor I and 220-a baffle;
300-second screen mesh, 301-second discharge port, 310-second vibration motor;
400-conveyor belt, 410-triangular bump.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Referring to fig. 1 to 2, the present utility model provides a technical solution: a small footprint coal preparation device comprising: the novel screen comprises a shell 100, an exhaust fan 130, a first screen 200 and a second screen 300, wherein a feed inlet 120 is formed in the upper surface of the shell 100, a containing cavity is formed in the shell 100, four supporting legs 110 are arranged on the lower side surface of the shell 100, the first screen 200, a baffle 220, the second screen 300 and a conveyor belt 400 are sequentially arranged in the shell 100 from top to bottom, a third discharge outlet is formed in the lower side edge of the left side surface of the shell 100, a first discharge outlet 201 and a second discharge outlet 301 are formed in the right side surface of the shell 100, the exhaust fan 130 is arranged in the upper half of the left side surface of the shell 100, a first vibrating motor 210 is arranged in the lower side surface of the first screen 200 in an abutting mode, and a second vibrating motor 310 is arranged in the lower side surface of the second screen 300 in an abutting mode.
As an embodiment of the present utility model: the middle part of the upper surface of the shell 100 is provided with a feeding hole 120, the feeding hole 120 is in a Y-shaped structure, the feeding hole 120 is communicated with a containing cavity in the shell 100, the shell 100 is made of copper alloy, an exhaust fan 130 is electrically connected with a power supply through an electric wire, and an air suction end of the exhaust fan 130 is arranged in the shell 100;
through setting up shell 100, shell 100 inside from the top down installs screen cloth 200, baffle 220, screen cloth two 300, conveyer belt 400, shell 100's upper surface installs feed inlet 120, a supporting leg 110 is installed respectively at four corners of shell 100's downside surface, air exhauster 130 is installed to shell 100's left side surface top half center, when using, shell 100 can protect the part, make the part can avoid the destruction of striking, in order to prolong the life of device, and air exhauster 130's exhaust end sets up inside shell 100, can produce coal dust when the device is screening coal, open air exhauster 130 at this moment with the inside dust suction entering dust collector of shell 100 inside handle, avoid polluting the environment, and whole device is by the parcel of shell 100 constitution, the structure is simple, and is small, and a user's convenience uses.
As an embodiment of the present utility model: the first screen 200 is arranged between the left inner wall and the right inner wall of the shell 100 in a right-high left-low inclined mode by 35 degrees, the lower surface of the right end of the first screen 200 is in butt joint with the first vibration motor 210, the first vibration motor 210 is electrically connected with a power supply through an electric wire, and the first vibration motor 210 and the second vibration motor 310 have the same structure;
the baffle 220 is arranged between the left inner wall and the right inner wall of the shell 100 in a left-high-right low-inclined mode, the upper side surface of the right end of the baffle 220 is connected with the first discharge port 201 in an aligned mode, the second screen 300 is arranged between the left inner wall and the right inner wall of the shell 100 in a left-high-right low-inclined mode, and the number of the first screen 200 meshes is larger than that of the second screen 300;
the upper surface of the right end of the second screen 300 is connected with the second discharge port 301 in an aligned manner, the specifications of the first discharge port 201 and the second discharge port 301 are the same, the structures and the sizes of the first screen 200 and the second screen 300 are the same but the specifications are different, a conveyor belt 400 is arranged at the bottom of a containing cavity of the shell 100, the conveyor belt 400 is electrically connected with a power supply through an electric wire, and the conveyor belt 400 rotates anticlockwise;
the bottom of the discharge port III is provided with a triangular lug 410 with a left lower side, a right higher side and a 25-degree inclination, the left end of the triangular lug 410 is aligned with the discharge port III, and the right end of the triangular lug 410 is abutted with the left end of the conveyor belt 400;
through setting up screen cloth 200 and screen cloth two 300, when using, the user is put in raw coal into shell 100 inside through feed inlet 120 at first, then the raw coal enters into the upper side surface of screen cloth one 200, then open the vibrating motor one 210 of screen cloth one 200 downside surface, vibration screening is carried out to screen cloth one 200 upside surface raw coal, make the first-level coal after the screening leak down from screen cloth one 200 upper surface, enter into baffle 220 one's upper surface, then collect the use through discharge gate one 201, then the coal that screen cloth one 200 upper surface was not screened is vibrated to screen cloth two 300's upper surface by vibrating motor one 210, then start vibrating motor two 310, screen cloth two 300's upper surface coal filters, then make two 300 upper surface's coal leak to the upper surface of conveyer 400, then start the conveyer 400 and transport the second-level coal after the screening to three places of discharge gate through the conveyer 400, and the coal that screen cloth two 300 upper surface was not screened is followed the discharge gate two 301 and is got out, thereby collect the use by the user, thereby screen cloth one's upper surface is collected and is used, and the whole device is compact, and the floor space is convenient for the user is reached.
The foregoing description of the preferred embodiments of the utility model is not intended to be limiting, but rather is intended to cover all modifications, equivalents, alternatives, and improvements that fall within the spirit and scope of the utility model.

Claims (6)

1. A small footprint coal preparation device comprising: the device comprises a shell (100), an exhaust fan (130), a first screen (200) and a second screen (300), and is characterized in that a feed inlet (120) is formed in the upper surface of the shell (100), and a containing cavity is formed in the shell (100);
four supporting legs (110) are arranged on the lower side surface of the shell (100), a first screen (200), a baffle (220), a second screen (300) and a conveyor belt (400) are sequentially arranged in the shell (100) from top to bottom, and a third discharge hole is formed in the lower side edge of the left side surface of the shell (100);
the right side surface of shell (100) has seted up discharge gate one (201) and discharge gate two (301), air exhauster (130) are installed to the left side surface upper half of shell (100), vibrating motor one (210) are installed in the downside surface butt of screen cloth one (200), vibrating motor two (310) are installed in the downside surface butt of screen cloth two (300).
2. A small footprint coal preparation apparatus as claimed in claim 1, wherein: the utility model discloses a solar energy collection device, including shell (100), air exhauster (130) and power supply, upper surface mid-mounting of shell (100) has feed inlet (120), feed inlet (120) are Y font structure, feed inlet (120) are connected with the inside holding chamber of shell (100) communicates with each other, shell (100) material is copper alloy, air exhauster (130) are connected with the power electricity through the electric wire, the end setting of induced drafting of air exhauster (130) is inside shell (100).
3. A small footprint coal preparation apparatus as claimed in claim 1, wherein: the screen cloth I (200) is installed between the left side inner wall and the right side inner wall of the shell (100) in a right-high left-low inclined mode by 35 degrees, the vibrating motor I (210) is installed on the lower side surface of the right end of the screen cloth I (200) in an abutting mode, the vibrating motor I (210) is electrically connected with a power supply through an electric wire, and the vibrating motor I (210) and the vibrating motor II (310) are identical in structure.
4. A small footprint coal preparation apparatus as claimed in claim 1, wherein: the baffle (220) is installed between the left inner wall and the right inner wall of the shell (100) in a left-high-right low-inclined mode, the upper surface of the right end of the baffle (220) is connected with the first discharge port (201) in an aligned mode, the second screen (300) is installed between the left inner wall and the right inner wall of the shell (100) in a left-high-right low-inclined mode, and the mesh number of the first screen (200) is larger than that of the second screen (300).
5. A small footprint coal preparation apparatus as claimed in claim 4, wherein: the upper surface of the right end of the screen cloth II (300) is connected with the discharge port II (301) in an aligned mode, the specification of the discharge port I (201) is the same as that of the discharge port II (301), the structure and the size of the screen cloth I (200) are the same as those of the screen cloth II (300) but different in specification, a conveying belt (400) is arranged at the bottom of the accommodating cavity of the shell (100), the conveying belt (400) is electrically connected with a power supply through an electric wire, and the conveying belt (400) rotates anticlockwise.
6. A small footprint coal preparation apparatus as claimed in claim 1, wherein: triangular lugs (410) are arranged at the bottom of the third discharge hole in a mode of being low left and high right and inclined by 25 degrees, the left ends of the triangular lugs (410) are aligned with the third discharge hole, and the right ends of the triangular lugs (410) are abutted to the left ends of the conveyor belt (400).
CN202321413387.4U 2023-06-03 2023-06-03 Coal preparation equipment with small occupied area Active CN220072361U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321413387.4U CN220072361U (en) 2023-06-03 2023-06-03 Coal preparation equipment with small occupied area

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321413387.4U CN220072361U (en) 2023-06-03 2023-06-03 Coal preparation equipment with small occupied area

Publications (1)

Publication Number Publication Date
CN220072361U true CN220072361U (en) 2023-11-24

Family

ID=88814904

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321413387.4U Active CN220072361U (en) 2023-06-03 2023-06-03 Coal preparation equipment with small occupied area

Country Status (1)

Country Link
CN (1) CN220072361U (en)

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