CN116393228B - Building solid waste treatment equipment - Google Patents

Building solid waste treatment equipment Download PDF

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Publication number
CN116393228B
CN116393228B CN202310501776.0A CN202310501776A CN116393228B CN 116393228 B CN116393228 B CN 116393228B CN 202310501776 A CN202310501776 A CN 202310501776A CN 116393228 B CN116393228 B CN 116393228B
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China
Prior art keywords
side wall
rotating
driving
bearing seat
rod
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Application number
CN202310501776.0A
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Chinese (zh)
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CN116393228A (en
Inventor
王文峰
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Jiangsu Shanbao Group Co Ltd
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Jiangsu Shanbao Group Co Ltd
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Priority to CN202310501776.0A priority Critical patent/CN116393228B/en
Publication of CN116393228A publication Critical patent/CN116393228A/en
Application granted granted Critical
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B02CRUSHING, PULVERISING, OR DISINTEGRATING; PREPARATORY TREATMENT OF GRAIN FOR MILLING
    • B02CCRUSHING, PULVERISING, OR DISINTEGRATING IN GENERAL; MILLING GRAIN
    • B02C21/00Disintegrating plant with or without drying of the material
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B02CRUSHING, PULVERISING, OR DISINTEGRATING; PREPARATORY TREATMENT OF GRAIN FOR MILLING
    • B02CCRUSHING, PULVERISING, OR DISINTEGRATING IN GENERAL; MILLING GRAIN
    • B02C1/00Crushing or disintegrating by reciprocating members
    • B02C1/02Jaw crushers or pulverisers
    • B02C1/04Jaw crushers or pulverisers with single-acting jaws
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B02CRUSHING, PULVERISING, OR DISINTEGRATING; PREPARATORY TREATMENT OF GRAIN FOR MILLING
    • B02CCRUSHING, PULVERISING, OR DISINTEGRATING IN GENERAL; MILLING GRAIN
    • B02C23/00Auxiliary methods or auxiliary devices or accessories specially adapted for crushing or disintegrating not provided for in preceding groups or not specially adapted to apparatus covered by a single preceding group
    • B02C23/08Separating or sorting of material, associated with crushing or disintegrating
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B02CRUSHING, PULVERISING, OR DISINTEGRATING; PREPARATORY TREATMENT OF GRAIN FOR MILLING
    • B02CCRUSHING, PULVERISING, OR DISINTEGRATING IN GENERAL; MILLING GRAIN
    • B02C4/00Crushing or disintegrating by roller mills
    • B02C4/02Crushing or disintegrating by roller mills with two or more rollers
    • B02C4/08Crushing or disintegrating by roller mills with two or more rollers with co-operating corrugated or toothed crushing-rollers
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B02CRUSHING, PULVERISING, OR DISINTEGRATING; PREPARATORY TREATMENT OF GRAIN FOR MILLING
    • B02CCRUSHING, PULVERISING, OR DISINTEGRATING IN GENERAL; MILLING GRAIN
    • B02C4/00Crushing or disintegrating by roller mills
    • B02C4/28Details
    • B02C4/42Driving mechanisms; Roller speed control
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B02CRUSHING, PULVERISING, OR DISINTEGRATING; PREPARATORY TREATMENT OF GRAIN FOR MILLING
    • B02CCRUSHING, PULVERISING, OR DISINTEGRATING IN GENERAL; MILLING GRAIN
    • B02C2201/00Codes relating to disintegrating devices adapted for specific materials
    • B02C2201/06Codes relating to disintegrating devices adapted for specific materials for garbage, waste or sewage
    • 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
    • Y02WCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO WASTEWATER TREATMENT OR WASTE MANAGEMENT
    • Y02W30/00Technologies for solid waste management
    • Y02W30/50Reuse, recycling or recovery technologies
    • Y02W30/58Construction or demolition [C&D] waste

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  • Engineering & Computer Science (AREA)
  • Food Science & Technology (AREA)
  • Mechanical Engineering (AREA)
  • Crushing And Pulverization Processes (AREA)

Abstract

本发明涉及建筑固废处理设备技术领域,尤其为一种建筑固废处理设备,包括连接支架,所述连接支架上连接有多级粉碎结构,所述连接支架上并且位于多级粉碎结构的出口处连接有输送机,所述连接支架上并且位于输送机的下方连接有智能控制器,所述连接支架上并且位于智能控制器的一侧通过弹簧座连接有出料仓,所述出料仓的侧壁上对称连接有震动器,所述出料仓的侧壁上连接有筛选速度调节结构,本发明通过在建筑固废处理设备中设置铁末分离结构,从而利用铁末分离结构中的伺服电机经过传动结构,从而将废料中铁末快速分离的设计,从而使得使得建筑固废处理设备在使用的过程中,可以有效的节约了资源,从而解决了铁末不可被分离的问题。

The present invention relates to the technical field of construction solid waste treatment equipment, and in particular to a construction solid waste treatment equipment, comprising a connecting bracket, a multi-stage crushing structure is connected to the connecting bracket, a conveyor is connected to the connecting bracket and located at the outlet of the multi-stage crushing structure, an intelligent controller is connected to the connecting bracket and located below the conveyor, a discharge bin is connected to the connecting bracket and located at one side of the intelligent controller through a spring seat, a vibrator is symmetrically connected to the side wall of the discharge bin, and a screening speed adjustment structure is connected to the side wall of the discharge bin. The present invention sets an iron filings separation structure in the construction solid waste treatment equipment, thereby utilizing a servo motor in the iron filings separation structure to pass through a transmission structure to quickly separate iron filings from waste, so that the construction solid waste treatment equipment can effectively save resources during use, thereby solving the problem that iron filings cannot be separated.

Description

Building solid waste treatment equipment
Technical Field
The invention relates to the technical field of building solid waste treatment equipment, in particular to building solid waste treatment equipment.
Background
At present, the solid useless treatment facility of building needs to pass through many times repeatedly when the waste material is smashed at the in-process of using, the time of having consumed too much at this in-process, thereby reduced kibbling efficiency, simultaneously at the in-process of screening, its screening net adopts fixed, consequently, the in-process of screening hardly adjusts corresponding screening efficiency according to actual conditions, it is not very convenient to lead to the use, can not effectually separate out the iron dust in the waste material after the waste material is smashed simultaneously, thereby lead to the waste of resource, to above problem, but need provide the solid useless treatment facility of building of multistage kibbling, adjustable screening rate, but quick with iron dust separation.
Disclosure of Invention
The invention aims to provide a building solid waste treatment device for solving the problems in the background technology.
In order to achieve the above purpose, the present invention provides the following technical solutions:
The utility model provides a solid useless treatment facility of building, includes the linking bridge, be connected with multistage crushing structure on the linking bridge, be connected with the conveyer on the linking bridge and be located the exit of multistage crushing structure, be connected with intelligent control ware on the linking bridge and be located the below of conveyer, be connected with the ejection of compact storehouse through the spring holder on the linking bridge and be located one side of intelligent control ware, the symmetry is connected with the electromagnetic shaker on the lateral wall of ejection of compact storehouse, be connected with screening speed adjustment structure on the lateral wall of ejection of compact storehouse, be connected with iron powder separation structure on the screening speed adjustment structure, iron powder separation structure's one end is rotated with ejection of compact storehouse's one end through the hinge and is connected;
The multistage crushing structure comprises a connecting base, the connecting base is connected to the end face of a connecting support, a jaw crusher is connected to the end face of the connecting base, a driving motor is connected to one side of the jaw crusher, which is located on the end face of the connecting base, a driving end of the driving motor is connected with a driving belt pulley through a coupling, a driven belt pulley is connected to the side wall of the driving belt pulley through a belt, a transmission main shaft is connected to the center of the driven belt pulley, the transmission main shaft is connected to a crushing plate of the jaw crusher, a rotating belt pulley is connected to the other end of the transmission main shaft, a transmission belt pulley is connected to the side wall of the rotating belt pulley through a belt, a main crushing roller is connected to the side wall of the main crushing roller through a driving gear in a meshed manner, an auxiliary crushing roller is connected to the center of the driven gear, a crushing lining plate is arranged in a spacing groove of the main crushing roller and the auxiliary crushing roller, a fixed box is connected to one side of the crushing lining plate, the fixed box is connected to the lower part of an outlet of the jaw crusher, and the bottom of the fixed box is arranged above a conveyor.
The screening speed adjusting structure comprises a fixed connecting plate, wherein the fixed connecting plate is connected to the side wall of a discharging bin, a rotating motor is connected to the end face of the fixed connecting plate, a driving connecting rod is connected to the driving end of the rotating motor through a coupling, a driven bevel gear is connected to the other end of the driving connecting rod through a driving bevel gear in a meshed mode, a rotating connecting rod is connected to the center of the driven bevel gear, transmission bevel gears are connected to the two ends of the rotating connecting rod through rotating bevel gears in a meshed mode, a rotating screw rod is connected to the center of the transmission bevel gear, a telescopic connecting rod is connected to the side wall of the rotating screw rod, a guide sleeve is connected to the side wall of the telescopic connecting rod, a fixed connecting plate is connected to the side wall of the discharging bin, and a sliding support column is connected to the other end of the telescopic connecting rod and provided with a movable guide rail;
The utility model provides a separation structure, including separating the storehouse, the one end in separating the storehouse is connected with ejection of compact storehouse through the hinge, the building stones export has been seted up to the one end in separating the storehouse, be connected with the fixed bolster on the lateral wall of separating the storehouse other end, be connected with electromagnet control ware on the lateral wall in separating the storehouse and be located one side of fixed bolster and be connected with servo motor, servo motor's drive end is connected with the actuating lever through the coupling, the other end of actuating lever is connected with connection bevel gear through the engagement of linking bevel gear, connection bevel gear's center department is connected with the dwang, the one end of dwang is connected with driving worm, symmetrical engagement is connected with driven worm wheel on the lateral wall of driving worm, the center department of driven worm wheel is connected with the transfer line, be connected with the pinion on the lateral wall of transfer line and be located the bottom in separating the storehouse, be connected with spacing slide rail on the lateral wall of rotating the pinion, spacing slide rail is connected with on the lateral wall of fixed bolster, driven end is connected with the driven end face and is connected with the stable slide rail on the side of stable slide rail through the baffle on the side of stable slide rail, the stable side of the baffle is connected with the stable side of the baffle on the baffle.
As a preferable scheme of the invention, the conveyor is connected with the intelligent controller through a wire and is electrically connected in a connection mode, the vibrator is connected with the intelligent controller through a wire and is electrically connected in a connection mode, and the driving motor is connected with the intelligent controller through a wire and is electrically connected in a connection mode.
As a preferable scheme of the invention, the transmission main shaft is connected to the end face of the jaw crusher connecting shell through the bearing seat, wherein the transmission main shaft is in rotary connection with the bearing seat, the main crushing roller is connected to the side wall of the fixed box body through the bearing seat, and the main crushing roller is in rotary connection with the bearing seat.
As a preferable scheme of the invention, the auxiliary crushing roller is connected to the side wall of the fixed box body through the bearing seat, wherein the auxiliary crushing roller is connected with the bearing seat in a rotating way, and the rotating motor is connected with the intelligent controller through a wire and is electrically connected with the intelligent controller in a connecting way.
As a preferable scheme of the invention, the driving connecting rod is connected to the end face of the fixed connecting plate through the bearing seat, wherein the driving connecting rod is connected with the bearing seat in a rotating way, the rotating connecting rod is connected to the end face of the fixed connecting plate through the bearing seat, and the rotating connecting rod is connected with the bearing seat in a rotating way.
As a preferable scheme of the invention, the rotating screw rod is connected to the end face of the fixed connecting plate through the bearing seat, wherein the rotating screw rod is in rotating connection with the bearing seat, and the rotating screw rod is in threaded connection with the telescopic connecting rod.
As a preferable scheme of the invention, the telescopic connecting rod is in clearance fit with the guide sleeve, and the sliding guide rail is provided with a sliding groove corresponding to the sliding support column, wherein the sliding support column is connected with the sliding groove in a sliding way.
As a preferable scheme of the invention, the movable guide rail is connected to the side wall of the separation bin, the electromagnet controller is connected with the intelligent controller through a wire and is electrically connected in a connection mode, the electromagnet controller is connected with the electromagnet adsorption plate through a wire and is electrically connected in a connection mode, and the servo motor is connected with the intelligent controller through a wire and is electrically connected in a connection mode.
As a preferable scheme of the invention, the driving rod is connected to the side wall of the separation bin through the bearing seat, wherein the driving rod is connected with the bearing seat in a rotating way, the rotating rod is connected to the side wall of the separation bin through the bearing seat, the rotating rod is connected with the bearing seat in a rotating way, the driving rod is connected to the side wall of the separation bin through the bearing seat, and the driving rod is connected with the bearing seat in a rotating way.
As a preferable scheme of the invention, the driven rack is connected with the limiting slide rail in a sliding way, a slide groove is formed on the side wall of the feeding funnel and corresponds to the baffle plate, the baffle plate is connected with the slide groove in a sliding way, and the stable slide bar is connected with the stable slide rail in a sliding way.
Compared with the prior art, the invention has the beneficial effects that:
1. According to the invention, the multistage crushing structure is arranged in the building solid waste treatment equipment, so that the design that the building waste is crushed secondarily through the transmission structure by utilizing the driving motor in the multistage crushing structure is utilized, the building waste can be crushed more thoroughly in the use process of the building solid waste treatment equipment, and meanwhile, the crushing efficiency can be improved, so that the problem that the building waste cannot be crushed secondarily is solved.
2. According to the invention, the screening speed adjusting structure is arranged in the building solid waste treatment equipment, so that the design of the screening speed is controlled by utilizing the transmission structure of the rotating motor in the screening speed adjusting structure, and the corresponding screening efficiency can be quickly adjusted according to the actual condition of waste materials in the using process of the building solid waste treatment equipment, so that the use is very convenient, and the problem that the screening speed cannot be adjusted is solved.
3. According to the invention, the iron powder separation structure is arranged in the building solid waste treatment equipment, so that the design that the iron powder in the waste is rapidly separated by utilizing the servo motor in the iron powder separation structure through the transmission structure is adopted, and the resource can be effectively saved in the use process of the building solid waste treatment equipment, so that the problem that the iron powder cannot be separated is solved.
Drawings
FIG. 1 is a schematic diagram of an isometric structure of the present invention;
FIG. 2 is a schematic structural view of a multi-stage pulverizing structure according to the present invention;
FIG. 3 is the view of FIG. 1 of the present invention a partial schematic structure;
FIG. 4 is a schematic diagram showing the front structure of the iron powder separating structure and the screening speed adjusting structure of the present invention;
FIG. 5 is a schematic view showing the back surface structure of the iron powder separating structure and the screening speed adjusting structure of the present invention;
FIG. 6 is a schematic diagram of a screening speed adjustment structure according to the present invention;
FIG. 7 is a schematic view of the portion of FIG. 6 according to the present invention;
FIG. 8 is a schematic structural view of a separation structure of iron powder according to the present invention;
FIG. 9 is a schematic view of the portion of FIG. 8 in accordance with the present invention;
FIG. 10 is a schematic view of the portion of FIG. 9 according to the present invention.
In the figure, 1, a connecting bracket; 2, a multi-stage crushing structure; 3, a conveyor; 4, intelligent controller, 5, discharging bin, 6, vibrator, 7, screening speed adjusting structure, 8, iron separating structure, 201, connecting base, 202, jaw crusher, 203, driving motor, 204, driving pulley, 205, driven pulley, 206, transmission main shaft, 207, rotating pulley, 208, driving pulley, 209, main crushing roller, 210, driving gear, 211, driven gear, 212, auxiliary crushing roller, 213, crushing lining plate, 214, fixed box, 701, fixed connecting plate, 702, rotating motor, 703, driving connecting rod, 704, driving bevel gear, 705, driven bevel gear, 706, rotating connecting rod, 707, rotating bevel gear, 708, driving bevel gear, 709, rotating screw rod, 710, telescopic connecting rod, guiding sleeve, 712, fixed connecting plate, 713, sliding support column, 714, moving guide rail, 801, separating bin, 802, stone outlet, fixed bracket, 804, electromagnet controller, 805, servo motor, driving rod, 807, bevel gear, 808, connecting bevel gear, 809, rotating rod, 810, worm gear, 811, worm gear, driving hopper, 706, driven bevel gear, rotary support, wire, flexible guide wire, 712, flexible guide wire, flexible connecting rod, flexible guide wire, 713, flexible guide wire, flexible connecting wire, flexible connecting wire, flexible, connecting wire, connecting, a connecting, a sieving connecting, a.
Detailed Description
The technical solutions of the embodiments of the present invention will be clearly and completely described below in conjunction with the embodiments of the present invention, and it is apparent that the described embodiments are only some embodiments of the present invention, but not all embodiments, and all other embodiments obtained by those skilled in the art without making any inventive effort based on the embodiments of the present invention are within the scope of protection of the present invention.
In order that the invention may be readily understood, several embodiments of the invention will be described more fully hereinafter with reference to the accompanying drawings, in which embodiments of the invention are shown, but in which the invention may be embodied in many different forms and is not limited to the embodiments described herein, but instead is provided to provide a more thorough and complete disclosure of the invention.
It will be understood that when an element is referred to as being "mounted" on another element, it can be directly on the other element or intervening elements may also be present, and when an element is referred to as being "connected" to the other element, it may be directly connected to the other element or intervening elements may also be present, the terms "vertical", "horizontal", "left", "right" and the like are used herein for the purpose of illustration only.
Unless defined otherwise, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention belongs, and the terms used herein in this description of the invention are for the purpose of describing particular embodiments only and are not intended to be limiting of the invention, with the term "and/or" as used herein including any and all combinations of one or more of the associated listed items.
Referring to fig. 1-10, the present invention provides a technical solution:
The utility model provides a solid useless treatment facility of building, including linking bridge 1, be connected with multistage crushing structure 2 on the linking bridge 1, the exit that is located multistage crushing structure 2 on the linking bridge 1 is connected with conveyer 3, on the linking bridge 1 and be located the below of conveyer 3 and be connected with intelligent control ware 4, on the linking bridge 1 and be located one side of intelligent control ware 4 and be connected with ejection of compact storehouse 5 through the spring holder, symmetrical connection has vibrator 6 on the lateral wall of ejection of compact storehouse 5, be connected with screening speed adjustment structure 7 on the lateral wall of ejection of compact storehouse 5, be connected with iron powder separation structure 8 on the screening speed adjustment structure 7, one end of iron powder separation structure 8 is through hinge and the one end rotation connection of ejection of compact storehouse 5;
In this embodiment, referring to fig. 1, 2 and 3, in the multistage crushing structure 2 comprising a connection base 201, the connection base 201 is connected to the end face of the connection bracket 1, a jaw crusher 202 is connected to the end face of the connection base 201, a drive motor 203 is connected to one side of the connection base 201, and the drive motor 203 is started under the condition that the drive motor 203 is connected to the intelligent controller 4 by a wire and electrically connected in such a manner that the driving end of the drive motor 203 is connected to a driving pulley 204 by a coupling, the driven pulley 205 is driven to rotate under the condition that the side wall of the driving pulley 204 is connected to a driven pulley 205 by a belt, a transmission spindle 206 is connected to the center of the driven pulley 205, the transmission spindle 206 is connected to a crushing plate of the jaw crusher 202 by a bearing block, and the transmission spindle 206 is connected to the end face of the jaw crusher 202 by a bearing block, wherein the transmission spindle 206 is driven to rotate under the condition that the connection of the transmission spindle 206 is in a rotating connection with the bearing block of the bearing block, and the crushing roller 209 is driven by a main pulley 209 is rotated under the condition that the side wall of the main pulley 209 is connected to the main pulley 209 by a rotating body under the condition that the side wall of the main pulley 208 is connected to the main pulley 209, the main roller 209 is connected to the side wall of the main roller 209, the method comprises the steps that driven gears 211 are driven to rotate under the condition that driven gears 211 are connected to the side walls of a main crushing roller 209 in a meshed mode through driving gears 210, auxiliary crushing rollers 212 are connected to the centers of the driven gears 211, crushing lining plates 213 are arranged in spacing grooves of the main crushing roller 209 and the auxiliary crushing rollers 212, one side of each crushing lining plate 213 is connected with a fixed box 214, the fixed box 214 is connected below an outlet of a jaw crusher 202, the bottom of the fixed box 214 is arranged above a conveyor 3, the auxiliary crushing rollers 212 are connected to the side walls of the fixed box 214 through bearing seats, the secondary crushing is conducted on the construction waste under the condition that the auxiliary crushing rollers 212 are connected with the bearing seats in a rotating mode, and then the conveyor 3 is connected with an intelligent controller 4 through wires and is electrically connected, so that the conveyor 3 conveys the crushed construction waste into a feeding hopper 818;
Wherein, the driving motor 203 is connected with the intelligent controller 4 through a wire and the connection mode is electric connection, the transmission main shaft 206 is connected on the end face of the connecting shell of the jaw crusher 202 through a bearing seat, the connection mode of the transmission main shaft 206 and the bearing seat is rotation connection, the main crushing roller 209 is connected on the side wall of the fixed box 214 through a bearing seat, the connection mode of the main crushing roller 209 and the bearing seat is rotation connection, the auxiliary crushing roller 212 is connected on the side wall of the fixed box 214 through a bearing seat, the connection mode of the auxiliary crushing roller 212 and the bearing seat is rotation connection, the rotation motor 702 is connected with the intelligent controller 4 through a wire and the connection mode is electric connection, so that the device runs more smoothly;
In this embodiment, referring to fig. 1, 4,5 and 6, before the iron tip separating structure 8 works, firstly, the actual condition of the waste material is adjusted, the screening rate adjusting structure 7 includes a fixed connection plate 701, the fixed connection plate 701 is connected to the side wall of the discharge bin 5, a rotation motor 702 is connected to the end face of the fixed connection plate 701, and the rotation motor 702 is started under the condition that the rotation motor 702 is connected to the intelligent controller 4 through a wire and is electrically connected, so that the driving end of the rotation motor 702 rotates, the driving end of the rotation motor 702 is connected to a driving connection rod 703 through a coupling, and the driving connection rod 703 is connected to the end face of the fixed connection plate 701 through a bearing housing, wherein the driving connection rod 703 rotates under the condition that the driving connection mode of the driving connection rod 703 is rotationally connected to the end face of the bearing housing, the driven connection rod 705 rotates under the condition that the other end of the driving connection rod 703 is engaged with a driven connection bevel gear, the rotation connection rod 706 is connected to the center of the driven connection rod 705 through the driving connection gear 704, and the rotation connection rod 706 is connected to the end face of the fixed connection plate 709 rotates under the condition that the rotation of the bearing housing is rotatably connected to the lead screw 709, and the rotation rod 708 rotates under the condition that the rotation connection rod is rotatably connected to the end of the rotation shaft is rotatably connected to the lead screw 709, the connection mode of the rotary screw rod 709 and the telescopic connecting rod 710 is threaded connection, the distance between the rotary screw rod 709 and the telescopic connecting rod 710 is adjusted under the condition that the telescopic connecting rod 710 and the guide sleeve 711 are in clearance fit, the telescopic connecting rod 710 is connected to the side wall of the rotary screw rod 709, the guide sleeve 711 is connected to the side wall of the telescopic connecting rod 710, the fixed connecting plate 712 is connected to the side wall of the discharging bin 5, the other end of the telescopic connecting rod 710 is connected with the sliding support column 713, the sliding support column 713 is connected with the movable guide rail 714, and a sliding groove is formed in the movable guide rail 714 and corresponds to the sliding support column 713, wherein the connection mode of the sliding support column 713 and the sliding groove is sliding connection, the inclination angle of the separating bin 801 is adjusted under the condition that one end of the separating bin 801 is connected with the discharging bin 5 through a hinge, so that the sliding speed of the separating bin 801 is controlled, the vibrator 6 is started under the condition that the vibrator 6 is connected with the intelligent controller 4 through a wire and the connection mode is electrically connected, so that stones are guided out of the stones from the stone outlet 802 and the iron dust is adsorbed on the electromagnet adsorption plate 813;
Wherein, the driving connecting rod 703 is connected to the end surface of the fixed connecting plate 701 through a bearing seat, wherein the connection mode of the driving connecting rod 703 and the bearing seat is rotation connection, the rotating connecting rod 706 is connected to the end surface of the fixed connecting plate 701 through a bearing seat, wherein the connection mode of the rotating connecting rod 706 and the bearing seat is rotation connection, the rotating screw rod 709 is connected to the end surface of the fixed connecting plate 701 through a bearing seat, wherein the connection mode of the rotating screw rod 709 and the bearing seat is rotation connection, the connection mode of the rotating screw rod 709 and the telescopic connecting rod 710 is screw connection, the matching mode of the telescopic connecting rod 710 and the guide sleeve 711 is clearance fit, a sliding groove is formed on the moving guide rail 714 and corresponds to the sliding support post 713, the connection mode of the sliding support post 713 and the sliding groove is sliding connection, and the moving guide rail 714 is connected to the side wall of the separating bin 801, so that the device runs more smoothly;
in this embodiment, referring to fig. 1, 7, 8 and 9, when more iron powder is adsorbed on the electromagnet adsorption plate 813 after a certain time, the iron powder separation structure 8 includes a separation bin 801, one end of the separation bin 801 is connected with a discharge bin 5 through a hinge, one end of the separation bin 801 is provided with a stone outlet 802, a side wall of the other end of the separation bin 801 is connected with a fixed bracket 803, a side wall of the separation bin 801 is connected with an electromagnet controller 804, one side of the side wall of the separation bin 801, which is positioned on the fixed bracket 803, is connected with a servo motor 805, and the servo motor 805 is started under the condition that the servo motor 805 is connected with the intelligent controller 4 through a wire and is electrically connected in a connection manner, so that the driving end of the servo motor 805 rotates, the driving end of the servo motor 805 is connected with a driving rod 806 through a coupler, and the driving rod 806 is connected on the side wall of the separation bin 801 through a bearing seat, wherein the driving rod 806 is connected with the bearing seat in a rotating way to drive the driving rod 806 to rotate, the other end of the driving rod 806 is connected with the connecting bevel gear 808 in a meshed way through the connecting bevel gear 807 to drive the connecting bevel gear 808 to rotate, the rotating rod 809 is connected with the center of the connecting bevel gear 808 and is connected with the side wall of the separation bin 801 through the bearing seat, the rotating rod 809 is driven to rotate under the condition that the rotating rod 809 is connected with the bearing seat in a rotating way, one end of the rotating rod 809 is connected with the driving worm 810, the side wall of the driving worm 810 is symmetrically meshed with the driven worm 811 to drive the driven worm 811 to rotate, the center of the driven worm 811 is connected with the transmission rod 812, the side wall of the transmission rod 812 is connected with the electromagnet adsorption plate 813 at the bottom of the separation bin 801, and the transmission rod 812 is connected to the side wall of the separation bin 801 through a bearing seat, wherein the transmission rod 812 is driven to rotate under the condition that the connection mode of the transmission rod 812 and the bearing seat is rotary connection, so that the electromagnet adsorption plate 813 is opened, the electromagnet controller 804 is connected with the intelligent controller 4 through a wire and is electrically connected with the intelligent controller 4, and the electromagnet controller 804 is closed under the condition that the electromagnet controller 804 is connected with the electromagnet adsorption plate 813 through a wire and is electrically connected with the intelligent controller 813, so that iron powder on the electromagnet adsorption plate 813 falls into the discharge bin 5, and separation of the iron powder is completed;
In this embodiment, referring to fig. 1, 8, 9 and 10, while the electromagnet adsorption plate 813 is opened, a rotary gear 814 is connected to the other end of the rotary rod 809, a driven rack 815 is connected to the side wall of the rotary gear 814 in an engaged manner, a limit slide rail 816 is connected to the side wall of the driven rack 815, the limit slide rail 816 is connected to the side wall of the fixed bracket 803, one end of the driven rack 815 is connected to a baffle plate 817, a connecting frame is passed through the end face of the separation bin 801 and is provided with a feed hopper 818 corresponding to the baffle plate 817, a stabilizing slide bar 819 is symmetrically connected to the side wall of the baffle plate 817 and is positioned on the side wall of the driven rack 815, a stabilizing slide rail 820 is connected to the side wall of the stabilizing slide bar 820, the stabilizing slide rail 820 is connected to the support of the end face of the separation bin 801, and the driven rack 815 is connected to the rotary gear 814 in an engaged manner on the side wall of the rotary gear 814, the driven rack 815 moves forward under the condition that the driven rack 815 is connected to the limit slide rail 816, a chute 818 is provided with a chute 818 on the side wall of the feed hopper, a chute 818 is provided with a chute 817 corresponding to the baffle plate, and the baffle plate 817 is connected to the same slide way as the baffle plate, and the upper chute is closed, and the feed hopper is moved down by the same way as the baffle plate is moved down, and the chute plate is moved down by the baffle plate is moved down by the stabilizing slide plate 819;
Wherein, be connected and connected with intelligent control ware 4 through the wire through the electro-magnet controller 804 and the connected mode is electric connection, electro-magnet controller 804 is connected and connected with electro-magnet adsorption plate 813 through the wire and connected mode is electric connection, servo motor 805 is connected and connected mode is electric connection through the wire with intelligent control ware 4, actuating lever 806 passes through the bearing frame and connects on the lateral wall of separation storehouse 801, wherein actuating lever 806 is connected for rotating with the connected mode of bearing frame, actuating lever 809 passes through the bearing frame and connects on the lateral wall of separation storehouse 801, wherein the connected mode of actuating lever 809 and bearing frame is connected for rotating, actuating lever 812 passes through the bearing frame and connects on the lateral wall of separation storehouse 801, wherein the connected mode of actuating lever 812 and bearing frame is connected for rotating, driven rack 815 and spacing slide rail 816 is sliding connection, on the lateral wall of feed hopper 818 and set up the spout corresponding with baffle 817, wherein the connected mode of baffle 817 and spout is sliding connection, the design of stabilizing slide 819 and stabilizing slide rail 820, make the operation of device more smooth.
The working flow of the invention is as follows: when the construction solid waste treatment equipment is used, the device is firstly powered on to enable the device to be in a working state, then construction waste is put into the inlet end of the jaw crusher 202, the driving motor 203 is started under the condition that the driving motor 203 is connected with the intelligent controller 4 through a wire and the connection mode is electric connection, the driving end of the driving motor 203 rotates, the driving end of the driving motor 203 is connected with the driving belt pulley 204 through a coupling, the driven belt pulley 205 is driven to rotate under the condition that the side wall of the driving belt pulley 204 is connected with the driven belt pulley 205 through a belt, the transmission main shaft 206 is connected with the end face of the jaw crusher 202 through a bearing seat, the transmission main shaft 206 is driven to rotate under the condition that the connection mode of the transmission main shaft 206 and the bearing seat is rotary connection, simultaneously, the jaw crusher 202 is operated under the condition that the transmission main shaft 206 is connected with the crushing plate of the jaw crusher 202 so as to crush the construction waste for the first time, then the other end of the transmission main shaft 206 is connected with a rotary belt pulley 207, the side wall of the rotary belt pulley 207 is connected with a transmission belt pulley 208 through a belt so as to drive the transmission belt pulley 208 to rotate, the main crushing roller 209 is connected with the side wall of the fixed box 214 through a bearing seat, the main crushing roller 209 is driven to rotate under the condition that the main crushing roller 209 is connected with the bearing seat in a rotating way, the driven gear 211 is driven to rotate under the condition that the side wall of the main crushing roller 209 is meshed with the driven gear 211 through a driving gear 210, the auxiliary crushing roller 212 is connected with the side wall of the fixed box 214 through the bearing seat, the auxiliary crushing roller 212 is connected with the bearing seat in a rotating way so as to crush the construction waste for the second time, the conveyor 3 is then connected to the intelligent controller 4 by wires and electrically connected thereto, wherein the conveyor 3 is such that the conveyor 3 conveys the crushed construction waste into the feed hopper 818;
Before the iron and powder separating structure 8 works, firstly, the screening rate of the waste materials is adjusted, the rotating motor 702 is started under the condition that the rotating motor 702 is connected with the intelligent controller 4 through a wire and the connection mode is electric connection, so that the driving end of the rotating motor 702 rotates, the driving connecting rod 703 is connected on the end face of the fixed connecting plate 701 through a bearing seat, the driving connecting rod 703 is driven to rotate under the condition that the driving connecting rod 703 is connected with the bearing seat in a rotating way, the driven bevel gear 705 is driven to rotate under the condition that the other end of the driving connecting rod 703 is connected with the driven bevel gear 705 through the driving bevel gear 704 in a meshing way, the rotating connecting rod 706 is connected on the end face of the fixed connecting plate 701 through the bearing seat, the rotating connecting rod 706 is driven to rotate under the condition that the connecting mode of the rotating connecting rod 706 and the bearing seat is in a rotating way, the transmission bevel gear 708 is driven to rotate under the condition that the transmission bevel gear 708 is meshed and connected with the two ends of the rotation connecting rod 706 through the rotation bevel gear 707, the rotation screw rod 709 is connected with the end face of the fixed connecting plate 701 through a bearing seat, the rotation screw rod 709 is driven to rotate under the condition that the connection mode of the rotation screw rod 709 and the bearing seat is rotary connection, the connection mode of the rotation screw rod 709 and the telescopic connecting rod 710 is threaded connection, the distance between the rotation screw rod 709 and the telescopic connecting rod 710 is adjusted under the condition that the matching mode of the telescopic connecting rod 710 and the guide sleeve 711 is clearance fit, a sliding groove is formed on the movable guide rail 714 and corresponds to the sliding supporting column 713, the connection mode of the sliding supporting column 713 and the sliding groove is sliding connection, the inclination angle of the separation bin 801 is adjusted under the condition that one end of the separation bin 801 is connected with the discharging bin 5 through a hinge, so that the sliding speed of the downward sliding is controlled, the vibrator 6 is started under the condition that the vibrator 6 is connected with the intelligent controller 4 through a wire and the connection mode is electric connection, so that stones are led out from the stone outlet 802, and iron powder is adsorbed on the electromagnet adsorption plate 813;
after a certain time, when more iron powder is adsorbed on the electromagnet adsorption plate 813, the servo motor 805 is started under the condition that the servo motor 805 is connected with the intelligent controller 4 through a wire and the connection mode is electrically connected, so that the driving end of the servo motor 805 rotates, the driving rod 806 is connected on the side wall of the separation bin 801 through a bearing seat, the driving rod 806 is driven to rotate under the condition that the driving rod 806 is connected with the bearing seat in a rotating way, the connecting bevel gear 808 is driven to rotate under the condition that the other end of the driving rod 806 is connected with the connecting bevel gear 808 through a connecting bevel gear 807 in a meshing way, the rotating rod 809 is connected on the side wall of the separation bin 801 through the bearing seat, the rotating rod 809 is driven to rotate under the condition that the connecting mode of the rotating rod 809 and the bearing seat is rotating connection, one end of the rotating rod 809 is connected with the driving worm 810, the side wall of the driving worm 810 is symmetrically meshed with the driven worm wheel 811 to drive the driven worm wheel 811 to rotate, the transmission rod 812 is connected on the side wall of the separation bin 801 through a bearing seat, the transmission rod 812 is driven to rotate under the condition that the transmission rod 812 is connected with the bearing seat in a rotating way, the electromagnet adsorption plate 813 is opened, the electromagnet controller 804 is connected with the intelligent controller 4 through a wire and is electrically connected with the intelligent controller, the electromagnet controller 804 is connected with the electromagnet adsorption plate 813 through a wire and is electrically connected with the electromagnet adsorption plate 813 in a connecting way, the electromagnet controller 804 is closed, iron powder on the electromagnet adsorption plate 813 falls into the discharge bin 5, thereby completing separation of the iron powder, the other end of the rotation rod 809 is connected with the rotation gear 814 while the electromagnet adsorption plate 813 is opened, the side wall of the rotation gear 814 is meshed with the driven rack 815, the driven rack 815 and the limit sliding rail 816 are connected in a sliding manner, so that the driven rack 815 moves forward under the condition that the driven rack 815 is in sliding connection, a sliding groove is formed in the side wall of the feeding funnel 818 and corresponds to the baffle 817, the baffle 817 is connected in sliding manner, the baffle 817 is driven to move forward under the condition that the stable sliding strip 819 is connected in sliding manner with the stable sliding rail 820, a feeding hole of the feeding funnel 818 is blocked, and when the feeding funnel is used next time, the electromagnet adsorption plate 813 is closed in the same manner, the baffle 817 moves backwards, so that the feeding hole of the feeding funnel 818 is opened, and next screening work is performed.
Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made therein without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (10)

1.一种建筑固废处理设备,包括连接支架(1),其特征在于:所述连接支架(1)上连接有多级粉碎结构(2),所述连接支架(1)上并且位于多级粉碎结构(2)的出口处连接有输送机(3),所述连接支架(1)上并且位于输送机(3)的下方连接有智能控制器(4),所述连接支架(1)上并且位于智能控制器(4)的一侧通过弹簧座连接有出料仓(5),所述出料仓(5)的侧壁上对称连接有震动器(6),所述出料仓(5)的侧壁上连接有筛选速度调节结构(7),所述筛选速度调节结构(7)上连接有铁末分离结构(8),所述铁末分离结构(8)的一端通过铰链与出料仓(5)的一端转动连接;1. A construction solid waste treatment device, comprising a connecting bracket (1), characterized in that: a multi-stage crushing structure (2) is connected to the connecting bracket (1), a conveyor (3) is connected to the connecting bracket (1) and located at the outlet of the multi-stage crushing structure (2), an intelligent controller (4) is connected to the connecting bracket (1) and located below the conveyor (3), a discharge bin (5) is connected to the connecting bracket (1) and located on one side of the intelligent controller (4) through a spring seat, a vibrator (6) is symmetrically connected to the side wall of the discharge bin (5), a screening speed adjustment structure (7) is connected to the side wall of the discharge bin (5), an iron dust separation structure (8) is connected to the screening speed adjustment structure (7), and one end of the iron dust separation structure (8) is rotatably connected to one end of the discharge bin (5) through a hinge; 所述多级粉碎结构(2)包括连接底座(201),所述连接底座(201)连接在连接支架(1)的端面上,所述连接底座(201)的端面上连接有颚式粉碎机(202),所述连接底座(201)的端面上并且位于颚式粉碎机(202)的一侧连接有驱动电机(203),所述驱动电机(203)的驱动端通过联轴器连接有驱动皮带轮(204),所述驱动皮带轮(204)的侧壁上通过皮带连接有从动皮带轮(205),所述从动皮带轮(205)的中心处连接有传动主轴(206),所述传动主轴(206)与颚式粉碎机(202)的粉碎板相连接,所述传动主轴(206)的另一端连接有转动皮带轮(207),所述转动皮带轮(207)的侧壁上通过皮带连接有传动皮带轮(208),所述传动皮带轮(208)的中心处连接有主粉碎辊(209),所述主粉碎辊(209)的侧壁上通过驱动齿轮(210)啮合连接有从动齿轮(211),所述从动齿轮(211)的中心处连接有辅粉碎辊(212),所述主粉碎辊(209)与辅粉碎辊(212)的间隔槽中设置有粉碎衬板(213),所述粉碎衬板(213)的一侧连接有固定箱体(214),所述固定箱体(214)连接在颚式粉碎机(202)的出口下方,所述固定箱体(214)的底部设置在输送机(3)的上方;The multi-stage crushing structure (2) comprises a connecting base (201), wherein the connecting base (201) is connected to the end surface of the connecting bracket (1), a jaw crusher (202) is connected to the end surface of the connecting base (201), a driving motor (203) is connected to the end surface of the connecting base (201) and located on one side of the jaw crusher (202), the driving end of the driving motor (203) is connected to a driving pulley (204) via a coupling, a driven pulley (205) is connected to the side wall of the driving pulley (204) via a belt, a transmission main shaft (206) is connected to the center of the driven pulley (205), the transmission main shaft (206) is connected to the crushing plate of the jaw crusher (202), and the other end of the transmission main shaft (206) is connected to A rotating pulley (207) is provided, a driving pulley (208) is connected to the side wall of the rotating pulley (207) via a belt, a main crushing roller (209) is connected at the center of the driving pulley (208), a driven gear (211) is meshedly connected to the side wall of the main crushing roller (209) via a driving gear (210), an auxiliary crushing roller (212) is connected at the center of the driven gear (211), a crushing liner (213) is provided in the spacing groove between the main crushing roller (209) and the auxiliary crushing roller (212), a fixed box (214) is connected to one side of the crushing liner (213), the fixed box (214) is connected below the outlet of the jaw crusher (202), and the bottom of the fixed box (214) is provided above the conveyor (3); 所述筛选速度调节结构(7)包括固定连接板(701),所述固定连接板(701)连接在出料仓(5)的侧壁上,所述固定连接板(701)的端面上连接有转动电机(702),所述转动电机(702)的驱动端通过联轴器连接有驱动连杆(703),所述驱动连杆(703)的另一端通过驱动锥齿轮(704)啮合连接有从动锥齿轮(705),所述从动锥齿轮(705)的中心处连接有转动连杆(706),所述转动连杆(706)的两端均通过转动锥齿轮(707)啮合连接有传动锥齿轮(708),所述传动锥齿轮(708)的中心处连接有转动丝杆(709),所述转动丝杆(709)的侧壁上连接有伸缩连杆(710),所述伸缩连杆(710)的侧壁上连接有导向套筒(711),所述导向套筒(711)的侧壁上的侧壁上连接有固定衔接板(712),所述固定衔接板(712)连接在出料仓(5)的侧壁上,所述伸缩连杆(710)的另一端连接有滑动支撑柱(713),所述滑动支撑柱(713)上连接有移动导轨(714);The screening speed adjustment structure (7) comprises a fixed connecting plate (701), wherein the fixed connecting plate (701) is connected to the side wall of the discharge bin (5), and a rotating motor (702) is connected to the end surface of the fixed connecting plate (701), and a driving end of the rotating motor (702) is connected to a driving connecting rod (703) via a coupling, and the other end of the driving connecting rod (703) is meshedly connected to a driven bevel gear (705) via a driving bevel gear (704), and a rotating connecting rod (706) is connected to the center of the driven bevel gear (705), and both ends of the rotating connecting rod (706) are meshedly connected to the driven bevel gear (707). A transmission bevel gear (708) is connected to the transmission bevel gear (708), a rotating screw (709) is connected to the center of the transmission bevel gear (708), a telescopic connecting rod (710) is connected to the side wall of the rotating screw (709), a guide sleeve (711) is connected to the side wall of the telescopic connecting rod (710), a fixed connecting plate (712) is connected to the side wall of the guide sleeve (711), the fixed connecting plate (712) is connected to the side wall of the discharge bin (5), the other end of the telescopic connecting rod (710) is connected to a sliding support column (713), and a movable guide rail (714) is connected to the sliding support column (713); 所述铁末分离结构(8)包括分离仓(801),所述分离仓(801)的一端通过铰链与出料仓(5)相连接,所述分离仓(801)的一端开设有石料出口(802),所述分离仓(801)另一端的侧壁上连接有固定支架(803),所述分离仓(801)的侧壁上连接有电磁铁控制器(804),所述分离仓(801)的侧壁上并且位于固定支架(803)的一侧连接有伺服电机(805),所述伺服电机(805)的驱动端通过连轴器连接有驱动杆(806),所述驱动杆(806)的另一端通过衔接锥齿轮(807)啮合连接有连接锥齿轮(808),所述连接锥齿轮(808)的中心处连接有转动杆(809),所述转动杆(809)的一端连接有驱动蜗杆(810),所述驱动蜗杆(810)的侧壁上对称啮合连接有从动蜗轮(811),所述从动蜗轮(811)的中心处连接有传动杆(812),所述传动杆(812)的侧壁上并且位于分离仓(801)的底部连接有电磁铁吸附板(813),所述转动杆(809)的另一端连接有转动齿轮(814),所述转动齿轮(814)的侧壁上啮合连接有从动齿条(815),所述从动齿条(815)的侧壁上连接有限位滑轨(816),所述限位滑轨(816)连接在固定支架(803)的侧壁上,所述从动齿条(815)的一端连接有阻隔板(817),所述分离仓(801)的端面上通过连接架并且与阻隔板(817)对应设置有进料漏斗(818),所述阻隔板(817)的侧壁上并且位于从动齿条(815)的两侧对称连接有稳定滑条(819),所述稳定滑条(819)的侧壁上连接有稳定滑轨(820),所述稳定滑轨(820)连接在分离仓(801)端面的支架上。The iron dust separation structure (8) comprises a separation bin (801), one end of the separation bin (801) being connected to a discharge bin (5) via a hinge, one end of the separation bin (801) being provided with a stone material outlet (802), a side wall of the other end of the separation bin (801) being connected to a fixed bracket (803), an electromagnet controller (804) being connected to the side wall of the separation bin (801), and a servo motor (806) being connected to the side wall of the separation bin (801) and located on one side of the fixed bracket (803). 805), the driving end of the servo motor (805) is connected to a driving rod (806) via a coupling, the other end of the driving rod (806) is meshedly connected to a connecting bevel gear (808) via a connecting bevel gear (807), a rotating rod (809) is connected at the center of the connecting bevel gear (808), one end of the rotating rod (809) is connected to a driving worm (810), and a driven worm gear (811) is symmetrically meshedly connected on the side wall of the driving worm (810), and the driven worm gear (811) is symmetrically meshed. 1) is connected to a transmission rod (812) at the center thereof, an electromagnet adsorption plate (813) is connected to the side wall of the transmission rod (812) and located at the bottom of the separation bin (801), the other end of the rotating rod (809) is connected to a rotating gear (814), a driven rack (815) is meshingly connected to the side wall of the rotating gear (814), a limiting slide rail (816) is connected to the side wall of the driven rack (815), and the limiting slide rail (816) is connected to the side wall of the fixed bracket (803) One end of the driven rack (815) is connected to a baffle plate (817); a feed hopper (818) is provided on the end surface of the separation bin (801) via a connecting frame and corresponding to the baffle plate (817); stabilizing slide bars (819) are symmetrically connected on the side walls of the baffle plate (817) and located on both sides of the driven rack (815); stabilizing slide rails (820) are connected to the side walls of the stabilizing slide bars (819); and the stabilizing slide rails (820) are connected to the bracket on the end surface of the separation bin (801). 2.根据权利要求1所述的一种建筑固废处理设备,其特征在于:所述输送机(3)通过导线与智能控制器(4)相连接并且连接方式为电性连接,所述震动器(6)通过导线与智能控制器(4)相连接并且连接方式为电性连接,所述驱动电机(203)通过导线与智能控制器(4)相连接并且连接方式为电性连接。2. A construction solid waste treatment device according to claim 1, characterized in that: the conveyor (3) is connected to the intelligent controller (4) through a wire and the connection method is an electrical connection, the vibrator (6) is connected to the intelligent controller (4) through a wire and the connection method is an electrical connection, and the drive motor (203) is connected to the intelligent controller (4) through a wire and the connection method is an electrical connection. 3.根据权利要求1所述的一种建筑固废处理设备,其特征在于:所述传动主轴(206)通过轴承座连接在颚式粉碎机(202)连接壳的端面上,其中传动主轴(206)与轴承座的连接方式为转动连接,所述主粉碎辊(209)通过轴承座连接在固定箱体(214)的侧壁上,其中主粉碎辊(209)与轴承座的连接方式为转动连接。3. A construction solid waste treatment equipment according to claim 1, characterized in that: the transmission main shaft (206) is connected to the end face of the connecting shell of the jaw crusher (202) through a bearing seat, wherein the connection mode of the transmission main shaft (206) and the bearing seat is a rotational connection, and the main crushing roller (209) is connected to the side wall of the fixed box (214) through the bearing seat, wherein the connection mode of the main crushing roller (209) and the bearing seat is a rotational connection. 4.根据权利要求1所述的一种建筑固废处理设备,其特征在于:所述辅粉碎辊(212)通过轴承座连接在固定箱体(214)的侧壁上,其中辅粉碎辊(212)与轴承座的连接方式为转动连接,所述转动电机(702)通过导线与智能控制器(4)相连接并且连接方式为电性连接。4. A construction solid waste treatment device according to claim 1, characterized in that: the auxiliary crushing roller (212) is connected to the side wall of the fixed box (214) through a bearing seat, wherein the auxiliary crushing roller (212) is connected to the bearing seat in a rotating manner, and the rotating motor (702) is connected to the intelligent controller (4) through a wire and the connection method is an electrical connection. 5.根据权利要求1所述的一种建筑固废处理设备,其特征在于:所述驱动连杆(703)通过轴承座连接在固定连接板(701)的端面上,其中驱动连杆(703)与轴承座的连接方式为转动连接,所述转动连杆(706)通过轴承座连接在固定连接板(701)的端面上,其中转动连杆(706)与轴承座的连接方式为转动连接。5. A construction solid waste treatment device according to claim 1, characterized in that: the driving connecting rod (703) is connected to the end face of the fixed connecting plate (701) through a bearing seat, wherein the driving connecting rod (703) and the bearing seat are connected in a rotating manner, and the rotating connecting rod (706) is connected to the end face of the fixed connecting plate (701) through a bearing seat, wherein the rotating connecting rod (706) and the bearing seat are connected in a rotating manner. 6.根据权利要求1所述的一种建筑固废处理设备,其特征在于:所述转动丝杆(709)通过轴承座连接在固定连接板(701)的端面上,其中转动丝杆(709)与轴承座的连接方式为转动连接,所述转动丝杆(709)与伸缩连杆(710)的连接方式为螺纹连接。6. A construction solid waste treatment device according to claim 1, characterized in that: the rotating screw (709) is connected to the end face of the fixed connecting plate (701) through a bearing seat, wherein the rotating screw (709) is connected to the bearing seat in a rotating manner, and the rotating screw (709) is connected to the telescopic connecting rod (710) in a threaded manner. 7.根据权利要求1所述的一种建筑固废处理设备,其特征在于:所述伸缩连杆(710)与导向套筒(711)的配合方式为间隙配合,所述移动导轨(714)上并且与滑动支撑柱(713)对应开设有滑槽,其中滑动支撑柱(713)与滑槽的连接方式为滑动连接。7. A construction solid waste treatment device according to claim 1, characterized in that: the cooperation mode between the telescopic connecting rod (710) and the guide sleeve (711) is clearance cooperation, and a sliding groove is provided on the movable guide rail (714) corresponding to the sliding support column (713), wherein the connection mode between the sliding support column (713) and the sliding groove is a sliding connection. 8.根据权利要求1所述的一种建筑固废处理设备,其特征在于:所述移动导轨(714)连接在分离仓(801)的侧壁上,所述电磁铁控制器(804)通过导线与智能控制器(4)相连接并且连接方式为电性连接,所述电磁铁控制器(804)通过导线与电磁铁吸附板(813)相连接并且连接方式为电性连接,所述伺服电机(805)通过导线与智能控制器(4)相连接并且连接方式为电性连接。8. A construction solid waste treatment device according to claim 1, characterized in that: the movable guide rail (714) is connected to the side wall of the separation bin (801), the electromagnet controller (804) is connected to the intelligent controller (4) via a wire and the connection method is an electrical connection, the electromagnet controller (804) is connected to the electromagnet adsorption plate (813) via a wire and the connection method is an electrical connection, and the servo motor (805) is connected to the intelligent controller (4) via a wire and the connection method is an electrical connection. 9.根据权利要求1所述的一种建筑固废处理设备,其特征在于:所述驱动杆(806)通过轴承座连接在分离仓(801)的侧壁上,其中驱动杆(806)与轴承座的连接方式为转动连接,所述转动杆(809)通过轴承座连接在分离仓(801)的侧壁上,其中转动杆(809)与轴承座的连接方式为转动连接,所述传动杆(812)通过轴承座连接在分离仓(801)的侧壁上,其中传动杆(812)与轴承座的连接方式为转动连接。9. A construction solid waste treatment device according to claim 1, characterized in that: the driving rod (806) is connected to the side wall of the separation chamber (801) through a bearing seat, wherein the driving rod (806) and the bearing seat are connected in a rotational manner, the rotating rod (809) is connected to the side wall of the separation chamber (801) through a bearing seat, wherein the rotating rod (809) and the bearing seat are connected in a rotational manner, and the transmission rod (812) is connected to the side wall of the separation chamber (801) through a bearing seat, wherein the transmission rod (812) and the bearing seat are connected in a rotational manner. 10.根据权利要求1所述的一种建筑固废处理设备,其特征在于:所述从动齿条(815)与限位滑轨(816)的连接方式为滑动连接,所述进料漏斗(818)的侧壁上并且与阻隔板(817)对应开设有滑槽,其中阻隔板(817)与滑槽的连接方式为滑动连接,所述稳定滑条(819)与稳定滑轨(820)的连接方式为滑动连接。10. A construction solid waste treatment equipment according to claim 1, characterized in that: the connection method between the driven rack (815) and the limiting slide rail (816) is a sliding connection, and a slide groove is provided on the side wall of the feed funnel (818) and corresponds to the baffle plate (817), wherein the connection method between the baffle plate (817) and the slide groove is a sliding connection, and the connection method between the stabilizing slide bar (819) and the stabilizing slide rail (820) is a sliding connection.
CN202310501776.0A 2023-05-06 2023-05-06 Building solid waste treatment equipment Active CN116393228B (en)

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Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109225433A (en) * 2018-09-27 2019-01-18 冯邹邹 A kind of civil engineering construction waste cleaning sorting unit
CN114289162A (en) * 2021-12-31 2022-04-08 唐凯 Environment-friendly premixed concrete preparation device utilizing construction waste

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN211436361U (en) * 2019-11-13 2020-09-08 朱述敏 Civil engineering construction waste treatment device
WO2022120696A1 (en) * 2020-12-10 2022-06-16 唐山圣因海洋科技有限公司 Buried scraper conveyor for conveying port bulk grain and method therefor
CN215694292U (en) * 2021-09-06 2022-02-01 遵义师范学院 A crushing apparatus for construction rubbish

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109225433A (en) * 2018-09-27 2019-01-18 冯邹邹 A kind of civil engineering construction waste cleaning sorting unit
CN114289162A (en) * 2021-12-31 2022-04-08 唐凯 Environment-friendly premixed concrete preparation device utilizing construction waste

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