CN208426999U - A kind of high intensity coal-pressing ball nodulizer - Google Patents

A kind of high intensity coal-pressing ball nodulizer Download PDF

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Publication number
CN208426999U
CN208426999U CN201820664245.8U CN201820664245U CN208426999U CN 208426999 U CN208426999 U CN 208426999U CN 201820664245 U CN201820664245 U CN 201820664245U CN 208426999 U CN208426999 U CN 208426999U
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CN
China
Prior art keywords
power unit
shell
helix tube
turntable
high intensity
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Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN201820664245.8U
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Chinese (zh)
Inventor
杜秀芝
杨思国
甄帅
张文磊
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Chuzhou Vocational and Technical College
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Chuzhou Vocational and Technical College
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
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Priority to CN201820664245.8U priority Critical patent/CN208426999U/en
Application granted granted Critical
Publication of CN208426999U publication Critical patent/CN208426999U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model discloses a kind of high-intensitive coal-pressing ball nodulizers, including shell, feed hopper, two pressure rollers, the first power unit, collection funnel, the first helix tube, hopper;Feed hopper is installed on the shell;Two pressure rollers are respectively positioned in shell, form crush-zone between two pressure rollers, which is located at the lower section of feed hopper;First power unit is for driving two pressure roller rotations;Collection funnel is located at the lower section in shell and being located at crush-zone;First helix tube is located in shell, and the top of the first helix tube and the discharge hole of collection funnel connect;Hopper is located at the lower section in shell and being located at the first helix tube.

Description

A kind of high intensity coal-pressing ball nodulizer
Technical field
The utility model relates to nodulizer field more particularly to a kind of high-intensitive coal-pressing ball nodulizers.
Background technique
Nodulizer is mainly used for compacting and is difficult to molding granular material, its main feature is that briquetting pressure is big, host revolution is adjustable, Equipped with spiral feeder, applied to special equipments such as cement, chemical industry, furnace charges, but what present nodulizer was transported in raw material In the process since intensity not enough causes to fall scattered, so as to cause the waste of raw material, and existing device structure is complicated, cost Height, low efficiency are further improved.
Utility model content
To solve technical problem present in background technique, the utility model proposes a kind of high-intensitive coal-pressing ball balling-up Machine, effect are good.
The utility model proposes a kind of high-intensitive coal-pressing ball nodulizer, including shell, feed hopper, two pressure rollers, the One power unit, collection funnel, the first helix tube, hopper;Feed hopper is installed on the shell;Two pressure rollers are respectively positioned in shell, Crush-zone is formed between two pressure rollers, which is located at the lower section of feed hopper;First power unit is for driving two Pressure roller rotation;Collection funnel is located at the lower section in shell and being located at crush-zone;First helix tube is located in shell, the first spiral The top of pipe and the discharge hole of collection funnel connect;Hopper is located at the lower section in shell and being located at the first helix tube.
It preferably, further include the second power unit, the second power unit is for driving hopper to rotate.
Preferably, hopper is equipped with relief hole;It further include third power unit, baffle, third power unit is for driving Relief hole is opened in baffle closing.
It preferably, further include turntable, the 4th power unit, turntable is located in shell, and turntable is equipped with multiple accommodation spaces, Multiple accommodation spaces are distributed in a ring, and accommodation space runs through the upper and lower surface of turntable;It further include multiple forming parts, multiple forming parts It is arranged in a one-to-one correspondence with multiple accommodation spaces, forming part includes two forming blocks, the 5th power unit, and two forming blocks are respectively positioned on In accommodation space and hinged with turntable, two forming blocks are positioned opposite, and forming blocks are equipped with forming tank;5th power unit is used In drive two forming blocks mutually close to or far from;When two forming blocks are bonded, two forming tanks form groove;4th power list Member is for driving turntable to rotate to cause the lower section of the into and out relief hole of groove.
Preferably, shell is equipped with through-hole;It further include conveyer belt, one end of conveyer belt, which is located in shell and is located at, accommodates sky Between lower section, the other end of conveyer belt passes through the outside that through-hole is located at shell.
It preferably, further include collet, the 6th power unit, collet is located at the top in shell and being located at groove;6th is dynamic Power unit is used to drive collet mobile to the direction close to or far from groove.
It preferably, further include infrared generator, infrared induction switch, controller, infrared generator is mounted on turntable On;Infrared induction switch is located in shell;Infrared generator, infrared induction switch, the second power unit, third power list Member, the 4th power unit, the 5th power unit, the 6th power unit are connect with controller communication.
It preferably, further include the second helix tube, the second helix tube is located in shell, the top of the second helix tube and feed hopper Discharge port connection, the bottom end of the second helix tube is located at the top of crush-zone.
In the utility model, by being equipped with the first helix tube and the second helix tube, to raw material during raw material transport It is buffered, falls scattered when avoiding raw material from falling, lead to the waste of raw material, by being equipped with turntable, rolled in spherical raw material After the completion, raw material is classified, by driving collet to carry out reinforcement processing to raw material, increases the tightness of raw material, keep away Exempt to scatter.By the way that forming part is arranged, after the completion of reinforcement processing, forming blocks are driven to separate using the 5th power unit, Ke Yizhi Blanking is connect, it is very convenient, by being equipped with infrared induction switch and infrared generator, the essence cooperated between each component can be increased Accuracy.The utility model structure is simple, and using effect is good.
Detailed description of the invention
Fig. 1 is the structural schematic diagram of the utility model;
Fig. 2 is the top view of turntable;
Fig. 3 is the cross-sectional view in dial portion region.
Specific embodiment
It should be noted that in the absence of conflict, the features in the embodiments and the embodiments of the present application can phase Mutual combination;Below with reference to the accompanying drawings it elaborates to the utility model and in conjunction with the embodiments
Referring to Fig.1-3, the utility model proposes a kind of high-intensitive coal-pressing ball nodulizer, including shell 1, feed hopper 2, Two pressure rollers 3, the first power unit, collection funnel 4, the first helix tube 5, hopper 6;Feed hopper 2 is mounted on shell 1;Two Pressure roller 3 is respectively positioned in shell 1, forms crush-zone between two pressure rollers 3, which is located at the lower section of feed hopper 2;First Power unit is for driving two pressure rollers 3 to rotate;Collection funnel 4 is located at the lower section in shell 1 and being located at crush-zone;First spiral shell Coil 5 is located in shell 1, and the top of the first helix tube is connect with the discharge hole of collection funnel 4;Hopper 6 is located in shell 1 and position In the lower section of the first helix tube.
It is rotated using the first power unit band dynamic pressure roller 3.Raw material enters in shell 1 by feed hopper 2, and raw material enters extruding Region forms material extruding using pressure roller 3.Then fallen in hopper 6 by collection funnel 4, the first helix tube 5.It can be with thing Powder end is first spread in hopper 6, and spherical raw material is avoided to be sticked together.
By being equipped with the first helix tube 5, raw material is buffered during raw material transport, avoid that raw material falls when Time is fallen scattered, leads to the waste of raw material;Raw material can be rolled, improve spheroidizing.
It further include the second power unit 7, the second power unit 7 is for driving 6 turns of hopper in further embodiment It is dynamic.It drives hopper 6, spherical raw material to rotate using the second power unit 7, raw material can be rolled, improve spheroidizing.
In further embodiment, hopper 6 is equipped with relief hole;It further include third power unit 8, baffle 9, third is dynamic Power unit 8 is for driving baffle 9 to close or open relief hole.When needing for raw material to be discharged, driven using third power unit 8 Baffle 9 is mobile, punches relief hole, and raw material can be discharged from relief hole.
It further include turntable 10, the 4th power unit 11 in further embodiment, turntable 10 is located in shell 1, turntable 10 are equipped with multiple accommodation spaces 12, and multiple accommodation spaces 12 are distributed in a ring, and accommodation space 12 runs through the upper following table of turntable 10 Face;It further include multiple forming parts, multiple forming parts are arranged in a one-to-one correspondence with multiple accommodation spaces 12, and forming part includes two moldings Block 13, the 5th power unit 14, two forming blocks 13 are respectively positioned in accommodation space 12 and hinged with turntable 10, two forming blocks 13 is positioned opposite, and forming blocks 13 are equipped with forming tank;5th power unit 14 is mutually close or remote for driving two forming blocks 13 From, can use the 5th power unit 14 drive forming blocks 13 rotate;When two forming blocks 13 are bonded, two forming tanks are formed Groove 15;The lower section that 4th power unit 11 is used to drive the rotation of turntable 10 to cause the into and out relief hole of groove 15.
Turntable 10 is driven to rotate using the 4th power unit 11, the spherical raw material for allowing hopper 6 to be discharged is fallen in groove 15.It is logical Cross setting forming part, using the 5th power unit 14 drive forming blocks 13 separate, can direct blanking, it is very convenient.
In further embodiment, shell 1 is equipped with through-hole 16;It further include conveyer belt 17, one end position of conveyer belt 17 In the lower section in shell 1 and positioned at accommodation space 12, the other end of conveyer belt 17 passes through the outside that through-hole 16 is located at shell 1.
Raw material in groove 15 falls on conveyer belt 17 and is discharged by conveyer belt 17, realizes Continuous maching operation.
It further include collet 18, the 6th power unit 19, collet 18 is located in shell 1 and position in further embodiment In the top of groove 15;6th power unit 19 is used to drive collet 18 mobile to the direction close to or far from groove 15.Work as ball When shape raw material is located in groove 15, it can use the 6th power unit 19 and collet 18 driven to press raw material, raw material is reinforced Processing avoids scattering during transport.
It further include infrared generator 20, infrared induction switch 21, controller 22 in further embodiment, it is infrared Line generator 20 is mounted on turntable 10;Infrared induction switch 21 is located in shell 1;Infrared generator 20, infrared induction are opened Close the 21, second power unit 7, third power unit 8, the 4th power unit 11, the 5th power unit 14, the 6th power unit 19 With 22 communication connection of controller.It realizes automation, intelligentized control method operation, improves processing efficiency, improve machining accuracy, improve Processing effect.
It further include the second helix tube 23 in further embodiment, the second helix tube is located in shell 1, the second spiral The top of pipe 23 is connect with the discharge port of feed hopper 2, and the bottom end of the second helix tube 23 is located at the top of crush-zone.
By being equipped with the second helix tube 23, raw material is buffered during raw material transport, raw material is avoided to fall When, falls scattered, leads to the waste of raw material.
The preferable specific embodiment of the above, only the utility model, but the protection scope of the utility model is not It is confined to this, anyone skilled in the art is within the technical scope disclosed by the utility model, practical according to this Novel technical solution and its utility model design are subject to equivalent substitution or change, should all cover the protection model in the utility model Within enclosing.

Claims (8)

1. a kind of high intensity coal-pressing ball nodulizer, which is characterized in that including shell, feed hopper, two pressure rollers, the first power list Member, collection funnel, the first helix tube, hopper;Feed hopper is installed on the shell;Two pressure rollers are respectively positioned in shell, two pressure rollers Between form crush-zone, which is located at the lower section of feed hopper;First power unit is for driving two pressure roller rotations; Collection funnel is located at the lower section in shell and being located at crush-zone;First helix tube is located in shell, the top of the first helix tube It is connect with the discharge hole of collection funnel;Hopper is located at the lower section in shell and being located at the first helix tube.
2. high intensity coal-pressing ball nodulizer according to claim 1, which is characterized in that it further include the second power unit, Second power unit is for driving hopper to rotate.
3. high intensity coal-pressing ball nodulizer according to claim 2, which is characterized in that hopper is equipped with relief hole;Also Including third power unit, baffle, third power unit is for driving baffle to close or open relief hole.
4. high intensity coal-pressing ball nodulizer according to claim 3, which is characterized in that further include turntable, the 4th power Unit, turntable are located in shell, and turntable is equipped with multiple accommodation spaces, and multiple accommodation spaces are distributed in a ring, and accommodation space is passed through Wear the upper and lower surface of turntable;It further include multiple forming parts, multiple forming parts are arranged in a one-to-one correspondence with multiple accommodation spaces, forming part Including two forming blocks, the 5th power unit, two forming blocks are respectively positioned in accommodation space and hinged with turntable, two moldings Block is positioned opposite, and forming blocks are equipped with forming tank;5th power unit for drive two forming blocks mutually close to or far from;When two When a forming blocks are bonded, two forming tanks form groove;4th power unit is for driving turntable to rotate to cause groove to enter Or it is detached from the lower section of relief hole.
5. high intensity coal-pressing ball nodulizer according to claim 4, which is characterized in that shell is equipped with through-hole;Also wrap Conveyer belt is included, one end of conveyer belt is located at the lower section in shell and being located at accommodation space, and the other end of conveyer belt passes through through-hole position In the outside of shell.
6. high intensity coal-pressing ball nodulizer according to claim 4, which is characterized in that further include collet, the 6th power Unit, collet are located at the top in shell and being located at groove;6th power unit is for driving collet to close to or far from groove Direction it is mobile.
7. high intensity coal-pressing ball nodulizer according to claim 6, which is characterized in that further include infrared generator, Infrared induction switch, controller, infrared generator are mounted on turntable;Infrared induction switch is located in shell;Infrared ray hair Raw device, infrared induction switch, the second power unit, third power unit, the 4th power unit, the 5th power unit, the 6th move Power unit is connect with controller communication.
8. high intensity coal-pressing ball nodulizer according to claim 1, which is characterized in that it further include the second helix tube, the Two helix tubes are located in shell, and the top of the second helix tube and the discharge port of feed hopper connect, and the bottom end of the second helix tube is located at The top of crush-zone.
CN201820664245.8U 2018-05-04 2018-05-04 A kind of high intensity coal-pressing ball nodulizer Expired - Fee Related CN208426999U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201820664245.8U CN208426999U (en) 2018-05-04 2018-05-04 A kind of high intensity coal-pressing ball nodulizer

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201820664245.8U CN208426999U (en) 2018-05-04 2018-05-04 A kind of high intensity coal-pressing ball nodulizer

Publications (1)

Publication Number Publication Date
CN208426999U true CN208426999U (en) 2019-01-25

Family

ID=65102742

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201820664245.8U Expired - Fee Related CN208426999U (en) 2018-05-04 2018-05-04 A kind of high intensity coal-pressing ball nodulizer

Country Status (1)

Country Link
CN (1) CN208426999U (en)

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

Granted publication date: 20190125