CN222535500U - A waste recovery device for ceramsite production - Google Patents

A waste recovery device for ceramsite production Download PDF

Info

Publication number
CN222535500U
CN222535500U CN202421834149.5U CN202421834149U CN222535500U CN 222535500 U CN222535500 U CN 222535500U CN 202421834149 U CN202421834149 U CN 202421834149U CN 222535500 U CN222535500 U CN 222535500U
Authority
CN
China
Prior art keywords
assembly
screening
waste recycling
outer frame
recycling device
Prior art date
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.)
Active
Application number
CN202421834149.5U
Other languages
Chinese (zh)
Inventor
何艳萍
陈笑兰
李云
张美华
刘艺杰
孔德伟
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Fujian Mingneng New Building Material Co ltd
Original Assignee
Fujian Mingneng New Building Material Co ltd
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.)
Filing date
Publication date
Application filed by Fujian Mingneng New Building Material Co ltd filed Critical Fujian Mingneng New Building Material Co ltd
Priority to CN202421834149.5U priority Critical patent/CN222535500U/en
Application granted granted Critical
Publication of CN222535500U publication Critical patent/CN222535500U/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Classifications

    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P40/00Technologies relating to the processing of minerals
    • Y02P40/60Production of ceramic materials or ceramic elements, e.g. substitution of clay or shale by alternative raw materials, e.g. ashes

Landscapes

  • Combined Means For Separation Of Solids (AREA)

Abstract

The utility model relates to the field of waste recovery, in particular to a waste recovery device for ceramsite production. The technical problem is that in the waste recycling process, most of the existing waste recycling devices for ceramsite production utilize a vibrating screen for screening when in use, and when screening ceramsites with a certain particle size range, repeated screening work is often needed, so that the service efficiency of the waste recycling devices for ceramsite production is reduced. According to the technical scheme, the waste recycling device for ceramsite production comprises an outer frame assembly, a vibration assembly, a screening assembly and a discharging assembly, and the produced ceramsite and waste are screened through the arrangement of a double-shaft motor and a screening plate, so that the problem that the use efficiency of the waste recycling device for ceramsite production is reduced because the existing waste recycling device for ceramsite production is screened by utilizing a vibration screen mostly when the existing waste recycling device for ceramsite production is used is solved, and repeated screening work is needed when ceramsites with a certain particle size range are screened.

Description

Waste recycling device for ceramsite production
Technical Field
The utility model relates to the field of waste recovery, in particular to a waste recovery device for ceramsite production.
Background
The ceramic particles have the appearance characteristics of most of round or oval spheres, have spherical appearance, smooth and hard surface, honeycomb inside, and have the characteristics of small density, low heat conductivity and high strength, in the refractory industry, the ceramic particles are mainly used as aggregate of heat insulation refractory materials, in use, the ceramic particles need to be ensured to have similar diameters and shapes so as to improve the overall homogeneity, in the ceramic particle production, the produced ceramic particles which are not standard need to be recovered by a waste recovery device so as to reduce the cost, most of the waste recovery devices for the ceramic particle production use utilize vibrating screens to screen out ceramic particles with required particle sizes when the vibrating screens screen out ceramic particles, and most of the vibrating screens screen out ceramic particles with particle sizes above a certain range need to be screened out repeatedly so as to determine the ceramic particles with particle sizes within a certain range, thereby reducing the screening efficiency.
Disclosure of utility model
In order to overcome the in-process of waste recycling, can utilize the shale shaker to screen because of current haydite production is with waste recycling device most when using, when screening the haydite of certain particle diameter scope, often need repeated screening work, lead to haydite production to use waste recycling device's availability factor decline.
The technical scheme is that the waste recycling device for ceramsite production comprises an outer frame assembly, a vibrating assembly, a screening assembly and a discharging assembly, wherein the vibrating assembly is arranged at the lower end of the outer frame assembly, the screening assembly is connected to the inner side of the outer frame assembly in a sliding mode, and the discharging assembly is connected to the front end of the screening assembly in a sliding mode.
Preferably, the outer frame assembly is arranged to prevent internal materials from leaking outwards during vibration, the vibration assembly is arranged to drive the device to vibrate, the screening assembly is arranged to screen the ceramsite, and the discharging assembly is arranged to facilitate discharging of the ceramsite.
The rotary baffle is rotatably connected with the rotary baffle through a rotating shaft, the second positioning groove is formed in the inner side of the rotary baffle, the inner assembly is protected through the outer frame barrel and the rotary baffle, and the internal ceramsite is prevented from being exposed during vibration screening.
Preferably, the lower end of the outer frame cylinder is provided with a power motor, a rotating shaft of the power motor is rotationally connected with a rotating rod, a positioning plate is fixedly connected to the rotating rod, a stirring plate is arranged on the outer side of the rotating rod, and the stirring plate is driven to rotate by the power motor so as to sweep out ceramsite remained on the screening plate.
The vibration assembly comprises a supporting base, a fixed block, an elastic sheet, a vibration table, a double-shaft motor and an eccentric block, wherein the lower end of the power motor is provided with the supporting base, the upper end part of the supporting base is fixedly connected with the fixed block, the elastic sheet is installed on the fixed block, the vibration table is installed on the upper end part of the elastic sheet, the double-shaft motor is installed on the lower end part of the vibration table, the eccentric block is rotationally connected to a rotating shaft of the double-shaft motor, the eccentric block is driven to rotate through the double-shaft motor so as to drive the vibration table to vibrate, and the position is restored through the elastic sheet so as to improve vibration efficiency.
The screening assembly comprises a screening plate, a connecting ring, a first slideway and a third positioning groove, wherein the screening plate is arranged on the outer side of the positioning piece, the connecting ring is fixedly connected to the outer side of the screening plate, the screening plate and the outer frame cylinder are rotatably connected through the connecting ring and the first positioning groove, the first slideway is arranged on the screening plate, the third positioning groove is arranged on the inner side of the first slideway, the pore diameter of the screening plate is smaller and smaller from top to bottom, and the screening plate at the bottommost end is arranged to be pore-free so as to facilitate screening of ceramsites with different particle diameters through the screening plate.
The discharging assembly comprises a movable frame, a connecting sheet, a second slideway, a sliding rod, a rotary discharging hole and a blocking sheet, wherein the inner side of the first slideway is connected with the movable frame in a sliding manner, the connecting sheet is fixedly connected to the outer side of the movable frame, the movable frame is connected with the screening plate in a sliding manner through the connecting sheet and a third positioning groove, the second slideway is arranged at the front end part of the movable frame, and the rotary discharging hole is arranged on the screening plate through the movable frame so as to facilitate blocking of ceramsite during vibration screening through the rotary discharging hole and the blocking sheet.
Preferably, the inner side of the second slideway is connected with a sliding rod in a sliding way, a rotary discharge hole is fixedly connected to the sliding rod, blocking sheets are fixedly connected to the end parts of the two sides of the rotary discharge hole, and after screening is finished, the rotary discharge hole is pulled and rotated through the sliding rod, so that the screened ceramsite and the waste are discharged through the rotary discharge hole.
The utility model has the beneficial effects that:
1. The double-shaft motor and the vibrating block are arranged to drive each vibrating screen to vibrate so as to separate out the ceramic grains with different grain diameters, and the poking piece is used to drive the screened ceramic grains to discharge materials through the rotary discharge chute, so that the problem that the conventional ceramic grain production waste recycling device is screened by utilizing the vibrating screens mostly in the process of waste recycling is solved, and when screening ceramic grains with a certain grain diameter range, repeated screening work is often needed, so that the service efficiency of the ceramic grain production waste recycling device is reduced, and the service convenience of the whole ceramic grain production waste recycling device can be improved;
2. Through setting up biax motor to drive eccentric block and rotate, so that drive the shaking table vibration, so that less granule and waste material pass through the screening board of different aperture, and keep somewhere at last on the pore-free screening board of lower extreme, simultaneously, vertical rotation discharge gate can block inside haydite, so that can keep the haydite of certain grain size range on each screening board, and then can improve the convenience of use of whole haydite production with waste recovery unit to a certain extent;
3. Through setting up movable frame and second slide to the pulling rotates the discharge gate, so that through haydite and waste material under the discharge gate discharge sieve, starts power motor, drives and stirs the board and rotate, so that sweep the haydite and pass through the discharge gate ejection of compact of rotating, simultaneously, can assist to sweep into the lower stage screening board with the granule of small-size, and then can improve whole haydite production and use waste recovery device's work efficiency.
Drawings
FIG. 1 is a schematic perspective view showing a waste recycling apparatus for producing ceramsite according to the present utility model;
FIG. 2 is a schematic perspective view showing an outer frame assembly of the waste recycling device for ceramsite production according to the present utility model;
FIG. 3 is a schematic perspective view showing a vibration assembly of the waste material recovering device for producing ceramsite of the present utility model;
FIG. 4 is a schematic perspective view showing a screening assembly of a waste recycling device for producing ceramsite according to the present utility model;
FIG. 5 shows a schematic perspective view of a discharging assembly of the waste recycling device for ceramsite production.
The reference numerals comprise 1, an outer frame assembly, 2, a vibration assembly, 3, a screening assembly, 4, a discharging assembly, 101, an outer frame cylinder, 102, a connecting seat, 103, a charging hopper, 104, a first positioning groove, 105, a rotating baffle, 106, a second positioning groove, 107, a power motor, 108, a rotating rod, 109, a positioning sheet, 110, a toggle plate, 201, a supporting base, 202, a fixed block, 203, a spring sheet, 204, a vibration table, 205, a double-shaft motor, 206, an eccentric block, 301, a screening plate, 302, a connecting ring, 303, a first slideway, 304, a third positioning groove, 401, a moving frame, 402, a connecting sheet, 403, a second slideway, 404, a sliding rod, 405, a rotating discharging hole and 406, a blocking sheet.
Detailed Description
The utility model is further described below with reference to the drawings and examples.
Referring to fig. 1, the utility model provides an embodiment of a waste recycling device for ceramsite production, which comprises an outer frame assembly 1, a vibrating assembly 2, a screening assembly 3 and a discharging assembly 4, wherein the vibrating assembly 2 is arranged at the lower end part of the outer frame assembly 1, the screening assembly 3 is connected to the inner side of the outer frame assembly 1 in a sliding manner, and the discharging assembly 4 is connected to the front end part of the screening assembly 3 in a sliding manner.
Referring to fig. 2-3, in this embodiment, the outer frame assembly 1 includes an outer frame barrel 101, a connecting seat 102, a hopper 103, a first positioning slot 104, a rotating baffle 105, a second positioning slot 106, a power motor 107, a rotating rod 108, a positioning piece 109 and a stirring plate 110, wherein the connecting seat 102 is fixedly connected to two side ends of the outer frame barrel 101, the hopper 103 is mounted at the upper end of the outer frame barrel 101, the first positioning slot 104 is formed inside the outer frame barrel 101, the rotating baffle 105 is rotatably connected with the rotating baffle 105 through a rotating shaft, the second positioning slot 106 is formed inside the rotating baffle 105, the power motor 107 is mounted at the lower end of the outer frame barrel 101, the rotating rod 108 is rotatably connected with the rotating rod 108, the positioning piece 109 is fixedly connected to the rotating rod 108, the stirring plate 110 is mounted at the outer side of the rotating rod 108, the vibrating assembly 2 includes a supporting base 201, a fixed block 202, a 203, a vibrating table 204, a double-shaft motor 205 and an eccentric block 206, the lower end of the power motor 107 is provided with the supporting base 201, the fixed block 202 is fixedly connected to the upper end of the supporting base 201, the fixed block 202 is mounted on the fixed block 202, the 203, the upper end 205 is rotatably mounted with the motor 205, the motor 205 is rotatably connected with the rotating shaft 205 through a rotating shaft 205, the rotating shaft 205 is rotatably connected with the rotating shaft 205 through a rotating shaft 205, the rotating rod 108 is rotatably connected with the rotating rod 108 through the rotating shaft, the rotating rod 108 is rotatably connected with the rotating rod 108, the vibrating plate 108 is rotatably fixed by a vibrating plate and is conveniently protected by a vibrating plate, and is conveniently driven by vibrating plate and is conveniently and is in vibration by vibrating and a vibrating device is conveniently and a vibrating and is conveniently protected by vibrating and a vibrating device.
Referring to fig. 4-5, in this embodiment, screen assembly 3 includes screen plate 301, connecting ring 302, first chute 303, and third positioning slot 304; the outside of the positioning sheet 109 is provided with a screening plate 301, the outside of the screening plate 301 is fixedly connected with a connecting ring 302, the screening plate 301 and the outer frame barrel 101 are rotatably connected through the connecting ring 302 and the first positioning groove 104, a first slideway 303 is arranged on the screening plate 301, a third positioning groove 304 is arranged on the inner side of the first slideway 303, the discharging assembly 4 comprises a moving frame 401, a connecting sheet 402, a second slideway 403, a sliding rod 404, a rotary discharging hole 405 and a blocking sheet 406, the inner side of the first slideway 303 is slidably connected with the moving frame 401, the outer side of the moving frame 401 is fixedly connected with the connecting sheet 402, the moving frame 401 and the screening plate 301 are slidably connected through the connecting sheet 402 and the third positioning groove 304, the front end part of the moving frame 401 is provided with the second slideway 403, the inner side of the second slideway 403 is slidably connected with a sliding rod 404, the sliding rod 404 is fixedly connected with the rotary discharging hole 405, the two side ends of the rotary discharging hole 405 are fixedly connected with blocking sheets 406, the screening plate 301 is small in the lower aperture from top to bottom, the screening plate 301 is arranged to be convenient for screening ceramsites with the screening plate 301 with different particle sizes, the moving frame 405 is arranged on the inner side of the moving frame 303, the moving frame 401 is slidably connected with the moving frame 401, the moving frame 401 is fixedly connected with the sliding sheets 401, the moving frame 401 is fixedly arranged on the sliding frame 405, the sliding frame 405 and the sliding rod 405 is provided with the first positioning groove, the sliding chute and the sliding chute 405.
In the mounting, first, the screening plate 301 is mounted through the first positioning groove 104 and the positioning piece 109, the screening plate 301 is rotated so as to adjust the first slide 303 toward the front end, then the rotating shutter 105 is rotated to close the device, and finally, the moving frame 401 and the rotating discharge port 405 are mounted through the first slide 303;
During screening, the produced ceramsite and waste are added through the hopper 103, the double-shaft motor 205 is started to drive the eccentric block 206 to rotate so as to drive the vibrating table 204 to vibrate, smaller particles and waste pass through the screening plates 301 with different apertures and are finally reserved on the non-porous screening plate 301 at the lowest end, and during screening, the discharge port 405 is vertically rotated so as to block the ceramsite inside;
When discharging, after the ceramic particles with different particle sizes are screened out through the screening plate 301, the rotary discharge port 405 is pulled, the rotary discharge port 405 is rotated through the sliding rod 404, so that the ceramic particles and waste materials under the screening are discharged through the rotary discharge port 405, the power motor 107 is started to drive the stirring plate 110 to rotate, the ceramic particles are swept and discharged through the rotary discharge port 405, and small-particle-size particles can be assisted to be swept into the screening plate 301 at the lower stage.
Through the steps, the external leakage of internal materials is prevented when the external frame barrel 101 and the rotary baffle 105 are arranged, the elastic sheet 203, the double-shaft motor 205 and the device are arranged to vibrate, the screening plate 301 is arranged to screen the ceramsite, and the movable frame 401 and the rotary discharge port 405 are arranged to facilitate the discharging of the ceramsite, so that the problem that the existing waste recycling device for ceramsite production is screened by utilizing a vibrating screen mostly when being used in the waste recycling process is solved, and when screening ceramsite with a certain particle size range, repeated screening work is often needed, so that the service efficiency of the waste recycling device for ceramsite production is reduced, and the service convenience of the whole waste recycling device for ceramsite production can be improved.
The embodiments of the present utility model have been described in detail with reference to the drawings, but the present utility model is not limited to the above embodiments, and various changes can be made within the knowledge of those skilled in the art without departing from the spirit of the present utility model.

Claims (7)

1. The waste recycling device for the ceramsite production comprises an outer frame assembly (1) and is characterized by further comprising a vibrating assembly (2), a screening assembly (3) and a discharging assembly (4), wherein the vibrating assembly (2) is arranged at the lower end part of the outer frame assembly (1), and the screening assembly (3) is connected to the inner side of the outer frame assembly (1) in a sliding manner;
The front end part of the screening component (3) is connected with a discharging component (4) in a sliding way.
2. The waste recycling device for ceramsite production, which is characterized in that the outer frame assembly (1) comprises an outer frame barrel (101), a connecting seat (102), a feeding hopper (103), a first positioning groove (104), a rotating baffle plate (105), a second positioning groove (106), a power motor (107), a rotating rod (108), positioning pieces (109) and a stirring plate (110), wherein the connecting seat (102) is fixedly connected to two side end parts of the outer frame barrel (101), the feeding hopper (103) is arranged at the upper end part of the outer frame barrel (101), the first positioning groove (104) is formed in the inner side of the outer frame barrel (101), the rotating baffle plate (105) is connected with the rotating baffle plate (105) through a rotating shaft in a rotating mode, and the second positioning groove (106) is formed in the inner side of the rotating baffle plate (105).
3. The waste recycling device for ceramsite production according to claim 2 is characterized in that a power motor (107) is arranged at the lower end of the outer frame barrel (101), a rotating rod (108) is rotatably connected to a rotating shaft of the power motor (107), a positioning sheet (109) is fixedly connected to the rotating rod (108), and a toggle plate (110) is arranged on the outer side of the rotating rod (108).
4. The waste recycling device for ceramsite production, which is characterized in that the vibration assembly (2) comprises a supporting base (201), a fixed block (202), an elastic sheet (203), a vibration table (204), a double-shaft motor (205) and an eccentric block (206), wherein the supporting base (201) is arranged at the lower end of the power motor (107), the fixed block (202) is fixedly connected to the upper end of the supporting base (201), the elastic sheet (203) is arranged on the fixed block (202), the vibration table (204) is arranged at the upper end of the elastic sheet (203), the double-shaft motor (205) is arranged at the lower end of the vibration table (204), and the eccentric block (206) is rotatably connected to the rotating shaft of the double-shaft motor (205).
5. The waste recycling device for ceramsite production according to claim 3, wherein the screening assembly (3) comprises a screening plate (301), a connecting ring (302), a first slideway (303) and a third positioning groove (304), the screening plate (301) is arranged on the outer side of the positioning piece (109), the connecting ring (302) is fixedly connected on the outer side of the screening plate (301), the screening plate (301) is rotatably connected with the outer frame cylinder (101) through the connecting ring (302) and the first positioning groove (104), and the first slideway (303) is arranged on the screening plate (301);
a third positioning groove (304) is formed in the inner side of the first slideway (303).
6. The waste recycling device for ceramsite production according to claim 5, wherein the discharging assembly (4) comprises a movable frame (401), a connecting sheet (402), a second slideway (403), a sliding rod (404), a rotary discharging hole (405) and a blocking sheet (406), wherein the movable frame (401) is connected to the inner side of the first slideway (303) in a sliding manner, the connecting sheet (402) is fixedly connected to the outer side of the movable frame (401), and the movable frame (401) is connected with the screening plate (301) in a sliding manner through the connecting sheet (402) and the third positioning groove (304);
the front end of the movable frame (401) is provided with a second slideway (403).
7. The waste recycling device for ceramsite production according to claim 6, wherein a sliding rod (404) is connected to the inner side of the second sliding way (403) in a sliding manner, a rotary discharging hole (405) is fixedly connected to the sliding rod (404), and blocking pieces (406) are fixedly connected to the end parts of the two sides of the rotary discharging hole (405).
CN202421834149.5U 2024-07-31 2024-07-31 A waste recovery device for ceramsite production Active CN222535500U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202421834149.5U CN222535500U (en) 2024-07-31 2024-07-31 A waste recovery device for ceramsite production

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202421834149.5U CN222535500U (en) 2024-07-31 2024-07-31 A waste recovery device for ceramsite production

Publications (1)

Publication Number Publication Date
CN222535500U true CN222535500U (en) 2025-02-28

Family

ID=94727070

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202421834149.5U Active CN222535500U (en) 2024-07-31 2024-07-31 A waste recovery device for ceramsite production

Country Status (1)

Country Link
CN (1) CN222535500U (en)

Similar Documents

Publication Publication Date Title
CN107716278A (en) A kind of high-efficiency sand sieve easy to remove
CN219581093U (en) Battery recovery powder screening plant and recovery processing equipment
CN220195485U (en) Vibrating screen convenient for discharging and used for mineral processing equipment
CN222535500U (en) A waste recovery device for ceramsite production
CN221772853U (en) A mixed screening device for producing rare earth polishing powder
CN218610366U (en) Building regeneration aggregate classified screening device
CN206794122U (en) A kind of vibratory peanut screening machine
CN215943412U (en) Powder blanking equipment for production of oil-free compressor leather cup
CN215613163U (en) A rotary fractional flame retardant raw material screening device
CN213223141U (en) Drum-type quick sand screening machine for constructional engineering
CN217017386U (en) Vibrating screen for superfine stirring mill system
CN223440413U (en) A vibrating seed selection device
CN216137657U (en) Portable high-efficient tealeaves screening machine
CN222984929U (en) A chemical vibration screen
CN222077271U (en) Rice processing bran sieving device
CN222000665U (en) A kind of machine-made sand powder removal device
CN222551347U (en) A new type of vibrating screening equipment for coal mining
CN222624761U (en) Putty powder raw materials feeding sieving mechanism
CN222220215U (en) A corundum particle screening device
CN214718316U (en) A screening device for granulation
CN214638095U (en) A filter screen for dry-mixed mortar screening with high screening efficiency
CN221714862U (en) A seed screening device with easy replacement of screen
CN221872746U (en) Cable material particle sorting device
CN220804386U (en) Composite seasoning screening and separating device
CN221890321U (en) Sand classifying and screening equipment

Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant