WO2022111430A1 - 一种碳素生产用振动筛分装置 - Google Patents

一种碳素生产用振动筛分装置 Download PDF

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Publication number
WO2022111430A1
WO2022111430A1 PCT/CN2021/132237 CN2021132237W WO2022111430A1 WO 2022111430 A1 WO2022111430 A1 WO 2022111430A1 CN 2021132237 W CN2021132237 W CN 2021132237W WO 2022111430 A1 WO2022111430 A1 WO 2022111430A1
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Prior art keywords
screening
cavity
box
fastening
screening box
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PCT/CN2021/132237
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English (en)
French (fr)
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殷勤锋
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湖南省虹宇碳素新材料有限公司
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Publication of WO2022111430A1 publication Critical patent/WO2022111430A1/zh

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B07SEPARATING SOLIDS FROM SOLIDS; SORTING
    • B07BSEPARATING SOLIDS FROM SOLIDS BY SIEVING, SCREENING, SIFTING OR BY USING GAS CURRENTS; SEPARATING BY OTHER DRY METHODS APPLICABLE TO BULK MATERIAL, e.g. LOOSE ARTICLES FIT TO BE HANDLED LIKE BULK MATERIAL
    • B07B1/00Sieving, screening, sifting, or sorting solid materials using networks, gratings, grids, or the like
    • B07B1/28Moving screens not otherwise provided for, e.g. swinging, reciprocating, rocking, tilting or wobbling screens
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B07SEPARATING SOLIDS FROM SOLIDS; SORTING
    • B07BSEPARATING SOLIDS FROM SOLIDS BY SIEVING, SCREENING, SIFTING OR BY USING GAS CURRENTS; SEPARATING BY OTHER DRY METHODS APPLICABLE TO BULK MATERIAL, e.g. LOOSE ARTICLES FIT TO BE HANDLED LIKE BULK MATERIAL
    • B07B1/00Sieving, screening, sifting, or sorting solid materials using networks, gratings, grids, or the like
    • B07B1/46Constructional details of screens in general; Cleaning or heating of screens
    • B07B1/4609Constructional details of screens in general; Cleaning or heating of screens constructional details of screening surfaces or meshes
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B08CLEANING
    • B08BCLEANING IN GENERAL; PREVENTION OF FOULING IN GENERAL
    • B08B15/00Preventing escape of dirt or fumes from the area where they are produced; Collecting or removing dirt or fumes from that area
    • B08B15/04Preventing escape of dirt or fumes from the area where they are produced; Collecting or removing dirt or fumes from that area from a small area, e.g. a tool

Definitions

  • the invention belongs to the technical field of carbon production, in particular to a vibrating screening device for carbon production.
  • Carbon and graphite materials are non-metallic solid materials mainly composed of carbon elements, wherein carbon materials are basically materials composed of non-graphitic carbon, and graphite materials are materials basically composed of graphitic carbon. Not only graphite, but also all carbon-containing materials including diamond, fullerene, and carbene are called carbon materials. In the carbon production process, carbon materials need to be screened.
  • the purpose of the present invention is to provide a vibrating screening device for carbon production to solve the problems raised in the above-mentioned background art.
  • a vibrating screening device for carbon production comprising a screening box, a purification structure, a mounting frame and a filter screen, the screening box is in a rectangular box-like structure, and the Four supporting legs are fixed at the four corners of the bottom of the screening box, a screening cavity is opened inside the screening box, a funnel-shaped feeding port is installed at one end of the top of the screening box, and an auxiliary purification is arranged at the top of the screening box
  • the purification structure of the air inside the screening box comprising a screening box, a purification structure, a mounting frame and a filter screen, the screening box is in a rectangular box-like structure, and the Four supporting legs are fixed at the four corners of the bottom of the screening box, a screening cavity is opened inside the screening box, a funnel-shaped feeding port is installed at one end of the top of the screening box, and an auxiliary purification is arranged at the top of the screening box The purification structure of the air inside the screening box;
  • An installation frame is installed in the screening cavity by slanted insertion.
  • the installation frame is in the shape of a rectangular frame. Limit bars are fixed symmetrically on both sides of the installation frame.
  • An installation frame is arranged inside the installation frame.
  • Four sliding rods are symmetrically fixed on both sides of the installation frame, a sliding cavity for sliding the sliding rods is opened on the mounting frame, the sliding rod is arranged in the sliding cavity, and two sliding rods are symmetrically arranged on both sides of the installation frame
  • the turntable that drives the sliding rod to move, four clamping cavities are symmetrically opened on the top of the installation frame, and four fastening blocks are symmetrically fixed on both sides of the filter screen.
  • a fastening cavity is arranged between the clamping cavities, a fastening structure is arranged in the fastening cavity, a slag discharge port is opened at one end of the screening box corresponding to the bottom of the installation frame, and a bottom of the screening box is provided with a slag discharge port. discharge port.
  • the fastening structure comprises a bevel gear, a fastening cylinder, a threaded rod and a plug-in block
  • the bevel gear is rotatably arranged at the middle section of the fastening cavity
  • the top of the bevel gear is provided with a rotating column
  • the bevel gear is provided with a rotating column.
  • Two tightening cylinders are symmetrically arranged on both sides of the gear, and one end of the tightening cylinder close to the bevel gear is installed with a matching wheel that cooperates with the tightening cylinder.
  • a threaded rod that is threadedly matched, one end of the threaded rod away from the bevel gear is fixed with a rectangular block-shaped plug-in block, and the fastening block is provided with a plug-in hole for the plug-in block to be plugged in.
  • the purification structure includes a suction pipe, a collection box, a collection drawer and a suction fan
  • the suction pipe is provided with several air inlet pipes
  • the air inlet pipes communicate with the screening cavity
  • the collection box is installed on the screen
  • both ends of the collection box are provided with ventilation ports, which are respectively connected with the air outlet of the suction pipe and the air inlet of the suction fan through hoses
  • a collection drawer is inserted and installed inside the collection box.
  • Several dust filters are vertically fixed on the collection drawer.
  • a connecting rod is hingedly installed at the outer edge of the turntable, the other end of the connecting rod is hingedly installed on one end of the sliding rod, and a rotating motor is arranged inside the mounting frame to drive the turntable to rotate.
  • two ends of the mounting frame are symmetrically mounted with a shielding plate, a middle section of the shielding plate is installed with fastening bolts, the shielding plate covers both ends of the installation frame, and the shielding plate is fixed by the fastening bolts
  • a fixing plate is arranged at the middle section of the bottom of the mounting frame, and fixing bolts for auxiliary fixing are arranged on the fixing plate.
  • the vibrating screening device for carbon production through the filter screen arranged on the installation frame and the bevel gear, the fastening cylinder, the threaded rod, the plug-in block and the fastening block in the fastening structure
  • the cooperation between the upper insertion holes can facilitate the quick and effective replacement and fixing of the filter screen when needed, and avoid the problem that the filter screen is not conducive to replacement in the screening box.
  • the cooperation between the suction pipe, the collection box, the collection drawer and the suction fan can well filter the dust generated by the screening during the working process and avoid problems such as poor working environment.
  • the vibrating screening device for carbon production has a reasonable design, and can quickly and effectively replace the filter screen inside the screening box as required, avoiding the problem that the filter screen is not conducive to replacement, and is suitable for popularization and use.
  • Fig. 1 is the structural representation of the present invention
  • Fig. 2 is a sectional view of the present invention
  • Fig. 3 is the structural representation of the filter screen of the present invention.
  • FIG. 5 is an enlarged view of the position A in FIG. 1 of the present invention.
  • 1 screening box 1 feeding port, 3 purification structure, 4 suction pipe, 5 collection box, 6 collection drawer, 7 suction fan, 8 mounting frame, 9 mounting frame, 10 sliding rod, 11 filter screen, 12 fastening blocks, 13 fixing plates, 14 shielding plates, 15 fastening bolts, 16 fastening structures, 17 bevel gears, 18 fastening cylinders, 19 threaded rods, 20 insert blocks, 21 turntables, 22 connecting rods.
  • the present invention provides a vibrating screening device for carbon production as shown in Figures 1-5, comprising a screening box 1, a purification structure 3, a mounting frame 8 and a filter screen 11, the screening box 1 is a rectangular box four support legs are fixed at the bottom four corners of the screening box 1, a screening cavity is opened inside the screening box 1, and a funnel-shaped feeding port 2 is installed at one end of the top of the screening box 1.
  • the top of the screening box 1 is provided with a purification structure 3 that assists in purifying the air inside the screening box 1;
  • a mounting frame 8 is installed in the screening cavity by tilting and plugging.
  • the mounting frame 8 is in the shape of a rectangular frame.
  • the two sides of the mounting frame 8 are symmetrically fixed with limit bars.
  • Frame 9, four sliding rods 10 are symmetrically fixed on both sides of the mounting frame 9, and a sliding cavity for sliding rods 10 is provided on the mounting frame 8, and the sliding rod 10 is arranged in the sliding cavity.
  • the two sides of the installation frame 9 are symmetrically provided with two turntables 21 that drive the sliding rod 10 to move.
  • the top of the installation frame 9 is symmetrically provided with four clamping cavities, and the two sides of the filter screen 11 are symmetrically fixed with four fastening blocks. 12.
  • the fastening block 12 is arranged in the clamping cavity, a fastening cavity is arranged between the two clamping cavities on the same side, and a fastening structure 16 is arranged in the fastening cavity, and the screening box 1 is inclined corresponding to the mounting frame 8 One end at the bottom is provided with a slag discharge port, and the bottom of the screening box 1 is provided with a discharge port.
  • the fastening structure 16 includes a bevel gear 17 , a fastening cylinder 18 , a threaded rod 19 and a plug-in block 20 , and the fastening structure 16 can facilitate the fast and effective fixing of the filter screen 11 , thereby reducing the need to replace the filter.
  • the bevel gear 17 is rotatably arranged in the middle of the fastening cavity, the top of the bevel gear 17 is provided with a rotating column, and the two sides of the bevel gear 17 are symmetrically arranged with two
  • the tightening cylinder 18, the end of the tightening cylinder 18 close to the bevel gear 17 is installed with a matching wheel that cooperates with the tightening cylinder 18, the tightening cylinder 18 is provided with a threaded cavity inside, and the threaded cavity is provided with a thread for threaded matching Rod 19, the end of the threaded rod 19 away from the bevel gear 17 is fixed with a plug block 20 of a rectangular block structure, and the fastening block 12 is provided with a plug hole for the plug block 20 to be plugged.
  • the purification structure 3 includes a suction pipe 4, a collection box 5, a collection drawer 6 and a suction fan 7.
  • the purification structure 3 can collect and filter the dust generated by the screening well, thereby improving the overall environmental performance.
  • the suction pipe 4 is provided with several air inlet pipes, the air inlet pipes are communicated with the screening cavity, the collection box 5 is installed at the top of the screening box 1, and the two ends of the collection box 5 are provided with ventilation ports , the air vent is connected with the air outlet of the suction pipe 4 and the air inlet of the suction fan 7 through a hose, and a collection drawer 6 is inserted and installed inside the collection box 5, and a number of dust filters are vertically fixed on the collection drawer 6 .
  • a connecting rod 22 is hingedly installed at the outer edge of the turntable 21 , and the other end of the connecting rod 22 is hingedly installed on one end of the sliding rod 10 , and a rotating motor is arranged inside the mounting frame 8 to drive the turntable 21 to rotate. .
  • two ends of the mounting frame 8 are symmetrically hingedly mounted with a shielding plate 14 , a middle section of the shielding plate 14 is installed with a fastening bolt 15 , and the shielding plate 14 covers both ends of the installation frame 9 and blocks
  • the plate 14 is fixed by tightening bolts 15, and a fixing plate 13 is provided at the middle section of the bottom of the mounting frame 8.
  • the fixing plate 13 can cover both sides of the filter screen 11 well to prevent unqualified raw materials from falling down.
  • the fixing plate 13 is provided with fixing bolts for auxiliary fixing.
  • the vibrating screening device for carbon production when working, when the carbon raw material needs to be screened, pour the raw material into the feeding port 2, start the rotating motor, and drive the turntable 21 to rotate when the rotating motor rotates , when the turntable 21 rotates, it drives the connecting rod 22 to rotate, so that the connecting rod 22 drives the sliding rod 10 to move back and forth, thereby making the filter screen 11 move back and forth, and then sieve the raw materials.
  • the unqualified raw materials are discharged through the slag discharge port.
  • the suction fan 7 is activated, and the suction fan 7 drives the airflow, and then the airflow is adsorbed through the suction pipe 4 and filtered through the dust filter on the collection drawer 6.

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  • Combined Means For Separation Of Solids (AREA)
  • Carbon And Carbon Compounds (AREA)

Abstract

提供了一种碳素生产用振动筛分装置,包括筛分箱(1)、净化结构(3)、安装架(8)和滤网(11),所述筛分箱(1)呈矩形箱状结构,所述筛分箱(1)底部四角固定有四根支撑腿,所述筛分箱(1)内部开设有筛分腔,所述筛分箱(1)顶部一端安装有漏斗状进料口(2),所述筛分箱(1)顶部处设置有辅助净化筛分箱(1)内部空气的净化结构(3);所述筛分腔内倾斜插接安装有安装架(8),所述紧固块(12)设置在卡接腔内,同一侧两个卡接腔之间设置有紧固腔,紧固腔内设置有紧固结构(16),所述筛分箱(1)对应安装架(8)倾斜最底部处的一端开设有排渣口,所述筛分箱(1)底部处开设有排料口。该碳素生产用振动筛分装置,设计合理,能根据需要对筛分箱内部的滤网进行快速有效的更换,避免滤网不利于更换的问题发生,适合推广使用。

Description

一种碳素生产用振动筛分装置 技术领域
本发明属于碳素生产技术领域,具体涉及一种碳素生产用振动筛分装置。
背景技术
碳素是炭和石墨材料是以碳元素为主的非金属固体材料,其中炭材料基本上由非石墨质碳组成的材料,而石墨材料则是基本上由石墨质碳组成的材料。不仅是石墨,同时也包含金刚石、富勒烯、卡宾所有的含碳材料都称为碳素材料。在碳素生产过程中需要对碳素材料进行筛分。
现有的碳素伸长用筛分装置,筛网大都直接安装在内部,不便于在需要时进行更换。
发明内容
本发明的目的在于提供一种碳素生产用振动筛分装置,以解决上述背景技术中提出的问题。
为实现上述目的,本发明提供如下技术方案:一种碳素生产用振动筛分装置,包括筛分箱、净化结构、安装架和滤网,所述筛分箱呈矩形箱状结构,所述筛分箱底部四角固定有四根支撑腿,所述筛分箱内部开设有筛分腔,所述筛分箱顶部一端安装有漏斗状进料口,所述筛分箱顶部处设置有辅助净化筛分箱内部空气的净化结构;
所述筛分腔内倾斜插接安装有安装架,所述安装架呈矩形框状结构,所述安装架的两侧对称固定有限位条,所述安装架内部设置有一个安装框,所述安装框的两侧对称固定有四个滑杆,所述安装架上开设有供滑杆滑动的滑腔,所述滑杆设置在滑腔内,所述安装框的两侧对称设置有两个带动滑杆移动的转盘,所述安装框顶部对称开设有四个卡接腔,所述滤网的两侧对称固定有四个紧固块,所述紧固块设置在卡接腔内,同一侧两个卡接腔之间设置有紧固腔,紧固腔内设置有紧固结构,所述筛分箱对应安装架倾斜最底部处 的一端开设有排渣口,所述筛分箱底部处开设有排料口。
优选的,所述紧固结构包括锥齿轮、紧固筒、螺纹杆和插接块,所述锥齿轮转动设置在紧固腔的中段处,所述锥齿轮顶部设置有转动柱,所述锥齿轮的两侧对称设置有两个紧固筒,所述紧固筒靠近锥齿轮的一端安装有与紧固筒配合的配合轮,所述紧固筒内部开设有螺纹腔,螺纹腔内设置有螺纹配合的螺纹杆,所述螺纹杆的远离锥齿轮的一端固定有矩形块状结构的插接块,所述紧固块上开设有供插接块插接的插接孔。
优选的,所述净化结构包括吸风管、收集盒、收集屉和吸风机,所述吸风管设置有若干个进风管,进风管与筛分腔连通,所述收集盒安装在筛分箱顶部处,且收集盒的两端开设有通气口,通气口通过软管分别与吸风管出风口和吸风机的进风口连通,所述收集盒内部插接安装有收集屉,所述收集屉上垂直固定有若干个滤尘网。
优选的,所述转盘的外缘处铰接安装有连杆,所述连杆的另一端铰接安装在滑杆的一端,所述安装架内部设置有带动转盘转动的转动电机。
优选的,所述安装架的两端对称铰接安装有遮挡板,所述遮挡板的中段处安装有紧固螺栓,所述遮挡板盖覆在安装框的两端且遮挡板通过紧固螺栓进行固定,所述安装架底部中段处设置有一个固定板,所述固定板上设置有辅助固定的固定螺栓。
本发明的技术效果和优点:该碳素生产用振动筛分装置,通过设置在安装框上的滤网以及紧固结构中的锥齿轮、紧固筒、螺纹杆、插接块和紧固块上插接孔之间的配合,可以在需要时方便对滤网进行快速有效的更换和固定,避免滤网在筛分箱内部不利于更换的问题发生,通过设置的净化结构,净化结构中的吸风管、收集盒、收集屉、吸风机之间的配合,可以在工作过程中对筛分产生的灰尘进行很好的过滤,避免工作环境较差等问题发生。该碳素生产用振动筛分装置,设计合理,能根据需要对筛分箱内部的滤网进行快速 有效的更换,避免滤网不利于更换的问题发生,适合推广使用。
附图说明
图1为本发明的结构示意图;
图2为本发明的剖视图;
图3为本发明滤网的结构示意图;
图4为本发明紧固结构处的剖视图;
图5为本发明图1中A处的放大图。
图中:1筛分箱、2进料口、3净化结构、4吸风管、5收集盒、6收集屉、7吸风机、8安装架、9安装框、10滑杆、11滤网、12紧固块、13固定板、14遮挡板、15紧固螺栓、16紧固结构、17锥齿轮、18紧固筒、19螺纹杆、20插接块、21转盘、22连杆。
具体实施方式
下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本发明一部分实施例,而不是全部的实施例。基于本发明中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。
本发明提供了如图1-5所示的一种碳素生产用振动筛分装置,包括筛分箱1、净化结构3、安装架8和滤网11,所述筛分箱1呈矩形箱状结构,所述筛分箱1底部四角固定有四根支撑腿,所述筛分箱1内部开设有筛分腔,所述筛分箱1顶部一端安装有漏斗状进料口2,所述筛分箱1顶部处设置有辅助净化筛分箱1内部空气的净化结构3;
所述筛分腔内倾斜插接安装有安装架8,所述安装架8呈矩形框状结构,所述安装架8的两侧对称固定有限位条,所述安装架8内部设置有一个安装框9,所述安装框9的两侧对称固定有四个滑杆10,所述安装架8上开设有供滑杆10滑动的滑腔,所述滑杆10设置在滑腔内,所述安装框9的两侧对 称设置有两个带动滑杆10移动的转盘21,所述安装框9顶部对称开设有四个卡接腔,所述滤网11的两侧对称固定有四个紧固块12,所述紧固块12设置在卡接腔内,同一侧两个卡接腔之间设置有紧固腔,紧固腔内设置有紧固结构16,所述筛分箱1对应安装架8倾斜最底部处的一端开设有排渣口,所述筛分箱1底部处开设有排料口。
具体的,所述紧固结构16包括锥齿轮17、紧固筒18、螺纹杆19和插接块20,所述紧固结构16可以方便对滤网11进行快速有效的固定,进而降低更换滤网11时的时间,提高整体工作效率,所述锥齿轮17转动设置在紧固腔的中段处,所述锥齿轮17顶部设置有转动柱,所述锥齿轮17的两侧对称设置有两个紧固筒18,所述紧固筒18靠近锥齿轮17的一端安装有与紧固筒18配合的配合轮,所述紧固筒18内部开设有螺纹腔,螺纹腔内设置有螺纹配合的螺纹杆19,所述螺纹杆19的远离锥齿轮17的一端固定有矩形块状结构的插接块20,所述紧固块12上开设有供插接块20插接的插接孔。
具体的,所述净化结构3包括吸风管4、收集盒5、收集屉6和吸风机7,所述净化结构3可以对筛分产生的灰尘进行很好的收集过滤,提高整体环境的工作质量,所述吸风管4设置有若干个进风管,进风管与筛分腔连通,所述收集盒5安装在筛分箱1顶部处,且收集盒5的两端开设有通气口,通气口通过软管分别与吸风管4出风口和吸风机7的进风口连通,所述收集盒5内部插接安装有收集屉6,所述收集屉6上垂直固定有若干个滤尘网。
具体的,所述转盘21的外缘处铰接安装有连杆22,所述连杆22的另一端铰接安装在滑杆10的一端,所述安装架8内部设置有带动转盘21转动的转动电机。
具体的,所述安装架8的两端对称铰接安装有遮挡板14,所述遮挡板14的中段处安装有紧固螺栓15,所述遮挡板14盖覆在安装框9的两端且遮挡板14通过紧固螺栓15进行固定,所述安装架8底部中段处设置有一个固定板 13,固定板13可以对滤网11的两侧进行很好的遮盖,避免不合格的原料掉落下,所述固定板13上设置有辅助固定的固定螺栓。
工作原理,该碳素生产用振动筛分装置,工作时,当需要对碳素原料进行筛分时,将原料倒入到进料口2中,启动转动电机,转动电机转动时带动转盘21转动,转盘21转动时带动连杆22转动,进而使连杆22带动滑杆10往复移动,进而使滤网11往复移动,进而对原料进行筛分,通过倾斜设置的安装架8进而保证筛分后不合格的原料通过排渣口排出,在筛分过程中,启动吸风机7,吸风机7带动气流流动,进而通过吸风管4对气流进行吸附,并通过收集屉6上的滤尘网进行过滤,当需要对不同规格的滤网11进行更换时,扭松固定板13将安装架8抽出,扭松紧固螺栓15将遮挡板14展开,反转转动柱,进而使锥齿轮17转动,锥齿轮17转动时带动紧固筒18转动,紧固筒18与螺纹杆19之间螺纹配合,进而使插接块20回缩,进而送出插接孔,将滤网11取出换上不同规格的滤网11并正转锥齿轮17通过插接块20对紧固块12进行再次固定即可。该碳素生产用振动筛分装置,设计合理,能根据需要对筛分箱内部的滤网进行快速有效的更换,避免滤网不利于更换的问题发生,适合推广使用。
最后应说明的是:以上所述仅为本发明的优选实施例而已,并不用于限制本发明,尽管参照前述实施例对本发明进行了详细的说明,对于本领域的技术人员来说,其依然可以对前述各实施例所记载的技术方案进行修改,或者对其中部分技术特征进行等同替换,凡在本发明的精神和原则之内,所作的任何修改、等同替换、改进等,均应包含在本发明的保护范围之内。

Claims (5)

  1. 一种碳素生产用振动筛分装置,包括筛分箱(1)、净化结构(3)、安装架(8)和滤网(11),其特征在于:所述筛分箱(1)呈矩形箱状结构,所述筛分箱(1)底部四角固定有四根支撑腿,所述筛分箱(1)内部开设有筛分腔,所述筛分箱(1)顶部一端安装有漏斗状进料口(2),所述筛分箱(1)顶部处设置有辅助净化筛分箱(1)内部空气的净化结构(3);
    所述筛分腔内倾斜插接安装有安装架(8),所述安装架(8)呈矩形框状结构,所述安装架(8)的两侧对称固定有限位条,所述安装架(8)内部设置有一个安装框(9),所述安装框(9)的两侧对称固定有四个滑杆(10),所述安装架(8)上开设有供滑杆(10)滑动的滑腔,所述滑杆(10)设置在滑腔内,所述安装框(9)的两侧对称设置有两个带动滑杆(10)移动的转盘(21),所述安装框(9)顶部对称开设有四个卡接腔,所述滤网(11)的两侧对称固定有四个紧固块(12),所述紧固块(12)设置在卡接腔内,同一侧两个卡接腔之间设置有紧固腔,紧固腔内设置有紧固结构(16),所述筛分箱(1)对应安装架(8)倾斜最底部处的一端开设有排渣口,所述筛分箱(1)底部处开设有排料口。
  2. 根据权利要求1所述的一种碳素生产用振动筛分装置,其特征在于:所述紧固结构(16)包括锥齿轮(17)、紧固筒(18)、螺纹杆(19)和插接块(20),所述锥齿轮(17)转动设置在紧固腔的中段处,所述锥齿轮(17)顶部设置有转动柱,所述锥齿轮(17)的两侧对称设置有两个紧固筒(18),所述紧固筒(18)靠近锥齿轮(17)的一端安装有与紧固筒(18)配合的配合轮,所述紧固筒(18)内部开设有螺纹腔,螺纹腔内设置有螺纹配合的螺纹杆(19),所述螺纹杆(19)的远离锥齿轮(17)的一端固定有矩形块状结构的插接块(20),所述紧固块(12)上开设有供插接块(20)插接的插接孔。
  3. 根据权利要求1所述的一种碳素生产用振动筛分装置,其特征在于: 所述净化结构(3)包括吸风管(4)、收集盒(5)、收集屉(6)和吸风机(7),所述吸风管(4)设置有若干个进风管,进风管与筛分腔连通,所述收集盒(5)安装在筛分箱(1)顶部处,且收集盒(5)的两端开设有通气口,通气口通过软管分别与吸风管(4)出风口和吸风机(7)的进风口连通,所述收集盒(5)内部插接安装有收集屉(6),所述收集屉(6)上垂直固定有若干个滤尘网。
  4. 根据权利要求1所述的一种碳素生产用振动筛分装置,其特征在于:所述转盘(21)的外缘处铰接安装有连杆(22),所述连杆(22)的另一端铰接安装在滑杆(10)的一端,所述安装架(8)内部设置有带动转盘(21)转动的转动电机。
  5. 根据权利要求1所述的一种碳素生产用振动筛分装置,其特征在于:所述安装架(8)的两端对称铰接安装有遮挡板(14),所述遮挡板(14)的中段处安装有紧固螺栓(15),所述遮挡板(14)盖覆在安装框(9)的两端且遮挡板(14)通过紧固螺栓(15)进行固定,所述安装架(8)底部中段处设置有一个固定板(13),所述固定板(13)上设置有辅助固定的固定螺栓。
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