WO2018120114A1 - 一种两级锂电池负极材料筛分装置 - Google Patents

一种两级锂电池负极材料筛分装置 Download PDF

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Publication number
WO2018120114A1
WO2018120114A1 PCT/CN2016/113719 CN2016113719W WO2018120114A1 WO 2018120114 A1 WO2018120114 A1 WO 2018120114A1 CN 2016113719 W CN2016113719 W CN 2016113719W WO 2018120114 A1 WO2018120114 A1 WO 2018120114A1
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Prior art keywords
screening
screening device
box
screening box
plate
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PCT/CN2016/113719
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English (en)
French (fr)
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王爽
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深圳市玖创科技有限公司
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Priority to PCT/CN2016/113719 priority Critical patent/WO2018120114A1/zh
Publication of WO2018120114A1 publication Critical patent/WO2018120114A1/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

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  • the invention relates to a battery negative electrode material screening device, in particular to a two-stage lithium battery negative electrode material screening device.
  • the anode materials which have been practically used for lithium ion batteries are basically carbon materials such as artificial graphite, natural graphite, mesocarbon microspheres, petroleum coke, carbon fiber, pyrolysis resin carbon and the like.
  • the particle size of these particles is optimally distributed between 1 ⁇ m and 60 ⁇ m, so classification is necessary.
  • the commonly used classification equipment includes powder sorting equipment and screening equipment, and the sorting effect and classification efficiency of the powder sorting equipment. It is relatively high, but it needs to be equipped with fans when working, and has high energy consumption. Although the screening efficiency is not high in the screening efficiency, it is more energy-efficient.
  • the screening equipment is very suitable for materials with low level of fineness, but the screening When the sub-equipment screens fine particles, irregularly shaped particles can easily block the mesh and affect the continuity and reliability of the screening operation. Since the carbon material particles have excellent lubricating conductive properties, the adhesion is strong. Therefore, in the sieving process, the carbon particles tend to adhere to the mesh of the screen, causing the screen to be clogged and the screening efficiency to decrease. Because carbon particles are light and easy to fly, in the non-closed production space, the environment will be seriously polluted, and these particles can easily enter the electrical equipment and circuit nodes. The accumulation of particles leads to short circuit of the electrical circuit, which will lead to production accidents. . Conventional screening devices generally only screen the material once, and the screening efficiency is low. Some materials are often doped into the sieved material, which is inconvenient for material screening and cannot meet people's needs.
  • An object of the present invention is to provide a two-stage lithium battery negative electrode material screening device to solve the problems set forth in the above background art.
  • the present invention provides the following technical solutions:
  • a two-stage lithium battery anode material screening device comprises a base, a screening box, a first screening device and a secondary screening device; the base is arranged at a lower part of the screening box, and the base is supported by a block, a pillar and a support
  • the block, the column, the bottom plate and the fixing plate are composed; the bottom plate has a circular shape, and the top of the bottom plate is provided with a column and a pillar; the column has four columns, and the four columns are arranged in a circular shape around the center of the bottom plate, and the top of the column
  • a support block is arranged, and the support block is placed at the bottom of the screening box; the pillars have four, and the four pillars are arranged in a circular shape around the center of the bottom plate, and the inner side of the top end of the pillar is provided with a stopper, and the stopper is placed in the screening box.
  • the first end of the upper end cover is provided with a filling chamber, the top of the filling chamber is provided with a top cover, and the upper part of the top cover is provided with a handle;
  • the secondary screening device is supported by a support plate and a limiting sleeve Tube, spring, through hole, baffle, shield
  • the second filter net and the vibrator are composed; the support plate is disposed in the screening box, the inner side of the support plate is provided with a baffle plate, the support plate is provided with a limit sleeve, and the spring is placed in the limit sleeve, the upper part of the spring a second filter is placed, and a vibrator is fixed on the screening box outside the second filter; the baffle is provided with a through
  • the struts are disposed outside the uprights.
  • a fixing plate is disposed on the right portion of the screening box, and the right end of the fixing plate is fixed to the right portion of the stopper.
  • a discharge pipe is connected to the center of the lower end cover, and a control valve is disposed on the discharge pipe.
  • the mounting frame has a circular shape.
  • the ultrasonic generators have four in total and are evenly distributed around the first filter.
  • a leakage tube is connected to the screening box on the right side of the first-stage screening device, and the leakage tube is placed obliquely, and the feeding tube is provided at the end of the leakage tube, and the lower part of the conveying tube A storage bin is connected, and the storage bin is placed on the fixed plate.
  • the invention has the advantages of simple structure, complete functions, reasonable design and convenient use;
  • the two-stage lithium battery anode material screening device is provided with a first-stage screening device and a secondary screening device, which can perform two-stage screening on materials and improve screening. Quality and efficiency;
  • the secondary screening device drives the second filter to vibrate through the vibrator to improve the quality of the screening;
  • the primary screening device generates ultrasonic waves through the ultrasonic generator to screen the material, further improving the screening quality;
  • the leakage pipe can discharge the sieved material and store it in the storage bin to prevent material doping and reduce the quality of the screening;
  • the base can stably support the screening box to prevent the screening box from tilting or rolling over. It is easy to carry out screening.
  • FIG. 1 is a schematic structural view of a two-stage lithium battery anode material screening device.
  • FIG. 2 is a schematic structural view of a first-stage screening device in a two-stage lithium battery anode material screening device.
  • FIG. 3 is a schematic structural view of a secondary screening device in a two-stage lithium battery anode material screening device.
  • FIG. 4 is a schematic structural view of a base in a two-stage lithium battery anode material screening device.
  • a two-stage lithium battery anode material screening device including a base 1, a screening box 5, a primary screening device a 6 and a second screening device 11; the base 1 is disposed at a lower portion of the screening box 5, and the base 1 is composed of a stopper 26, a pillar 27, a support block 28, a column 29, a bottom plate 30, and a fixing plate 31, and is used for
  • the screening box 5 is supported;
  • the bottom plate 30 has a circular shape, and the top of the bottom plate 30 is provided with a column 29 and a pillar 27;
  • the column 29 has a total of four, and the four columns 29 are rounded around the center of the bottom plate 30.
  • the top of the column 29 is provided with a support block 28, and the support block 28 is placed at the bottom of the screening box 5;
  • the pillars 27 have a total of four, the four pillars 27 are arranged circularly around the center of the bottom plate 30, and the pillars 27 are arranged
  • the inner side of the top end of the strut 27 is provided with a stopper 26 which is placed outside the screening box 5 for preventing the screening box 5 from tilting or rolling over; the right portion of the screening box 5
  • the stopper 26 is provided with a fixing plate 31.
  • the right end of the fixing plate 31 is fixed to the right portion of the stopper 26; the bottom upper and lower end covers 4 of the screening box 5, and the upper portion of the screening box 5 is provided with an upper end cover 8 and an upper end.
  • a screening device 5 in the lower part of the cover 8 is provided with a secondary screening device 11, a screening device 5 in the lower portion of the secondary screening device 11 is provided with a primary screening device 6;
  • the center of the lower end cover 4 is connected with a discharge pipe 2, and the discharge pipe 2 is provided with a control valve 3, and the control valve 3 can control the switch of the discharge pipe 2, thereby controlling the discharge progress; the center of the upper end cover 8
  • the filling compartment 7 is provided, the top of the filling compartment 7 is provided with a top cover 10, and the upper part of the top cover 10 is provided with a handle 9 for facilitating the switch top cover 10;
  • the secondary screening device 11 is composed of a support plate 18 and a limiting sleeve 19.
  • the spring 20, the through hole 21, the baffle 22, the fender 23, the second filter net 24 and the vibrator 25 are used for sieving the material;
  • the support plate 18 is disposed in the screening box 5, and supports
  • a baffle 22 is disposed on the inner side of the plate 18, and a limiting sleeve 19 is disposed on the upper portion of the supporting plate 18.
  • a spring 20 is disposed in the limiting sleeve 19, and a second filter net 24 is disposed on the upper portion of the spring 20, and the outer side of the second filter net 24
  • the vibrator 25 is fixed on the screening box 5, and the vibrator 25 can drive the second filter 24 to vibrate, thereby accelerating the filtering;
  • the baffle 22 is provided with a through hole 21, and the second filter 24 is placed in the through hole 21
  • the top of the baffle 22 is provided with a protective plate 23, and the top end of the protective plate 23 is connected to the inner wall of the screening box 5 for preventing material leakage;
  • the device 6 is composed of a mounting frame 15, a first filter net 16, and an ultrasonic generator 17 for further screening the material;
  • the mounting frame 15 has a circular shape, and the mounting frame 15 is fixed in the screening box 5,
  • a first filter net 16 is disposed inside the mounting frame 15, and the first filter net 16 is provided with an ultrasonic generator 17 having four ultrasonic generators 17 uniformly distributed around the first filter net 16 for
  • a leakage tube 12 is connected to the screening box 5 on the right side of the first-stage screening device 6, and the leakage tube 12 is placed obliquely.
  • the end of the leakage tube 12 is provided with a delivery tube 13, and the lower portion of the delivery tube 13 is connected
  • the storage bin 14 is placed on the fixed plate 31 for storing the material at the screening.
  • the working principle of the invention is that the material is filled into the screening box 5 through the filling chamber 7, and the second filter 24 in the second screening device 11 is screened by the vibrator 25, and the second screening is performed.
  • the ultrasonic generator 17 in the primary screening device 6 at the lower portion of the device 11 generates ultrasonic waves, and the material is further sieved, and the sieved material is discharged into the storage tank 14 through the leakage pipe 12, and the sieve is qualified.
  • the material is discharged through the discharge pipe 2 to the screening box 5.

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  • Combined Means For Separation Of Solids (AREA)

Abstract

一种两级锂电池负极材料筛分装置,包括底座(1)、筛分箱(5)、一级筛分装置(6)和二级筛分装置(11);所述底座(1)由挡块(26)、支柱(27)、支撑块(28)、立柱(29)、底板(30)和固定板(31)组成;所述筛分箱(5)的底部上设有下端盖(4),筛分箱(5)的上部设有上端盖(8),上端盖(8)下部的筛分箱(5)内设有二级筛分装置(11),二级筛分装置(11)下部的筛分箱(5)内设有一级筛分装置(6);所述二级筛分装置(11)由支撑板(18)、限位套筒(19)、弹簧(20)、通孔(21)、挡板(22)、防护板(23)、第二过滤网(24)和振动器(25)组成;所述支撑板(18)上部设有限位套筒(19),限位套筒(19)内放置有弹簧(20),弹簧(20)的上部放置有第二过滤网(24),第二过滤网(24)外侧的筛分箱(5)上固定有振动器(25);所述一级筛分装置(6)由安装架(15)、第一过滤网(16)和超声波发生器(17)组成;该装置能对物料进行两级筛选,提高了筛分质量和效率。

Description

一种两级锂电池负极材料筛分装置 技术领域
本发明涉及一种电池负极材料筛分装置,具体是一种两级锂电池负极材料筛分装置。
背景技术
目前,已经实际用于锂离子电池的负极材料基本上都是碳素材料,如人工石墨、天然石墨、中间相碳微球、石油焦、碳纤维、热解树脂碳等。为了获得更好的能量密度,这些颗粒的粒径最佳分布在1μm-60μm之间,所以就必须进行分级,常用的分级设备有选粉设备和筛分设备,选粉设备分级效果和分级效率比较高,但其工作时需配套风机,能耗高;筛分设备,虽然筛分效率没有选粉设备高,但较节能,筛分设备对分级精细程度要求不高的物料非常适合,但筛分设备对细小颗粒筛分时,外形不规则的颗粒很容易堵塞网孔,影响筛分作业的连续性和可靠性。由于碳素材料颗粒具有优良的润滑导电性能,粘附性较强。所以在筛分过程中,碳素颗粒易粘附筛网网孔,造成筛网堵塞,筛分效率下降。又由于碳素颗粒轻小易飞扬,在非密闭的生产空间里,会对环境造成严重污染,同时这些颗粒很容易进入电器设备内部和电路节点,颗粒的堆积导致电器电路短路,会引发生产事故。传统的筛分装置一般只能对物料进行一次筛分,筛分效率较低,常会有部分物料掺杂到筛分后的物料内,不便于物料的筛选,不能满足人们的需求。
发明内容
本发明的目的在于提供一种两级锂电池负极材料筛分装置,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:
一种两级锂电池负极材料筛分装置,包括底座、筛分箱、一级筛分装置和二级筛分装置;所述底座设置在筛分箱的下部,底座由挡块、支柱、支撑块、立柱、底板和固定板组成;所述底板的形状为圆形,底板的顶部设有立柱和支柱;所述立柱共有四根,四根立柱围绕底板的中心呈圆形排列,立柱的顶部设有支撑块,支撑块放置在筛分箱的底部;所述支柱共有四根,四根支柱围绕底板的中心呈圆形排列,支柱顶端的内侧设有挡块,挡块放置在筛分箱的外侧;所述筛分箱的底部上下端盖,筛分箱的上部设有上端盖,上端盖下部的筛分箱内设有二级筛分装置,二级筛分装置下部的筛分箱内设有一级筛分装置;所述上端盖的中心设有填料仓,填料仓的顶部设有顶盖,顶盖的上部设有把手;所述二级筛分装置由支撑板、限位套筒、弹簧、通孔、挡板、防护板、第二过滤网和振动器组成;所述支撑板设置在筛分箱内,支撑板的内侧设有挡板,支撑板上部设有限位套筒,限位套筒内放置有弹簧,弹簧的上部放置有第二过滤网,第二过滤网外侧的筛分箱上固定有振动器;所述挡板上设有通孔,第二过 滤网放置在通孔内,挡板的顶部设有防护板,防护板的顶端连接在筛分箱的内壁上;所述一级筛分装置由安装架、第一过滤网和超声波发生器组成;所述安装架固定在筛分箱内,安装架内部设有第一过滤网,第一过滤网上设有超声波发生器。
作为本发明进一步的方案:所述支柱设置在立柱的外侧。
作为本发明进一步的方案:所述筛分箱右部的挡块上设有固定板,固定板的右端固定在挡块的右部。
作为本发明进一步的方案:所述下端盖的中心连接有排料管,排料管上设有控制阀。
作为本发明进一步的方案:所述安装架的形状为圆环形。
作为本发明进一步的方案:所述超声波发生器共有四个,均匀分布在第一过滤网的四周。
作为本发明再进一步的方案:所述一级筛分装置右部的筛分箱上连接有漏料管,漏料管倾斜放置,漏料管的末端设有输料管,输料管的下部连接有储料箱,储料箱放置在固定板上。
与现有技术相比,本发明的有益效果是:
本发明结构简单,功能齐全,设计合理,使用方便;该两级锂电池负极材料筛分装置中设有一级筛分装置和二级筛分装置,能对物料进行两级筛选,提高了筛分质量和效率;二级筛分装置通过振动器带动第二过滤网晃动,提高了筛分质量;一级筛分装置通过超声波发生器产生超声波,对物料进行筛分,进一步提高了筛分质量;漏料管能排出筛分出的物料,并储存在储料箱内,防止物料掺杂,降低筛分质量;底座能稳定的将筛分箱支撑起来,能防止筛分箱倾斜或侧翻,便于筛分的进行。
附图说明
图1为两级锂电池负极材料筛分装置的结构示意图。
图2为两级锂电池负极材料筛分装置中一级筛分装置的结构示意图。
图3为两级锂电池负极材料筛分装置中二级筛分装置的结构示意图。
图4为两级锂电池负极材料筛分装置中底座的结构示意图。
图中:1-底座,2-排料管,3-控制阀,4-下端盖,5-筛分箱,6-一级筛分装置,7-填料仓,8-上端盖,9-把手,10-顶盖,11-二级筛分装置,12-漏料管,13-输料管,14-储料箱,15-安装架,16-第一过滤网,17-超声波发生器,18-支撑板,19-限位套筒,20-弹簧,21-通孔,22-挡板,23-防护板,24-第二过滤网,25-振动器,26-挡块,27-支柱,28-支撑块,29-立柱,30-底板,31-固定板。
具体实施方式
下面结合具体实施方式对本专利的技术方案作进一步详细地说明。
请参阅图1-4,一种两级锂电池负极材料筛分装置,包括底座1、筛分箱5、一级筛分装 置6和二级筛分装置11;所述底座1设置在筛分箱5的下部,底座1由挡块26、支柱27、支撑块28、立柱29、底板30和固定板31组成,用于将筛分箱5支撑起来;所述底板30的形状为圆形,底板30的顶部设有立柱29和支柱27;所述立柱29共有四根,四根立柱29围绕底板30的中心呈圆形排列,立柱29的顶部设有支撑块28,支撑块28放置在筛分箱5的底部;所述支柱27共有四根,四根支柱27围绕底板30的中心呈圆形排列,并且支柱27设置在立柱29的外侧,支柱27顶端的内侧设有挡块26,挡块26放置在筛分箱5的外侧,用于防止筛分箱5倾斜或侧翻;所述筛分箱5右部的挡块26上设有固定板31,固定板31的右端固定在挡块26的右部;所述筛分箱5的底部上下端盖4,筛分箱5的上部设有上端盖8,上端盖8下部的筛分箱5内设有二级筛分装置11,二级筛分装置11下部的筛分箱5内设有一级筛分装置6;所述下端盖4的中心连接有排料管2,排料管2上设有控制阀3,控制阀3能控制排料管2的开关,进而控制排料进度;所述上端盖8的中心设有填料仓7,填料仓7的顶部设有顶盖10,顶盖10的上部设有把手9,便于开关顶盖10;所述二级筛分装置11由支撑板18、限位套筒19、弹簧20、通孔21、挡板22、防护板23、第二过滤网24和振动器25组成,用于对物料进行筛分;所述支撑板18设置在筛分箱5内,支撑板18的内侧设有挡板22,支撑板18上部设有限位套筒19,限位套筒19内放置有弹簧20,弹簧20的上部放置有第二过滤网24,第二过滤网24外侧的筛分箱5上固定有振动器25,振动器25能带动第二过滤网24振动,进而加速过滤;所述挡板22上设有通孔21,第二过滤网24放置在通孔21内,挡板22的顶部设有防护板23,防护板23的顶端连接在筛分箱5的内壁上,用于防止物料外泄;所述一级筛分装置6由安装架15、第一过滤网16和超声波发生器17组成,用于对物料进一步筛分;所述安装架15的形状为圆环形,安装架15固定在筛分箱5内,安装架15内部设有第一过滤网16,第一过滤网16上设有超声波发生器17,超声波发生器17共有四个,均匀分布在第一过滤网16的四周,用于产生超声波;所述一级筛分装置6右部的筛分箱5上连接有漏料管12,漏料管12倾斜放置,漏料管12的末端设有输料管13,输料管13的下部连接有储料箱14,储料箱14放置在固定板31上,用于储存筛分处的物料。
本发明的工作原理是:物料通过填料仓7填充到筛分箱5内,二级筛分装置11中的第二过滤网24在振动器25的带动下对物料进行筛分,二级筛分装置11下部的一级筛分装置6中的超声波发生器17产生超声波,对物料进行进一步的筛分,筛分出的物料通过漏料管12排入到储料箱14内,筛分合格的物料通过排料管2排出筛分箱5。
上面对本专利的较佳实施方式作了详细说明,但是本专利并不限于上述实施方式,在本领域的普通技术人员所具备的知识范围内,还可以在不脱离本专利宗旨的前提下做出各种变化。

Claims (7)

  1. 一种两级锂电池负极材料筛分装置,包括底座(1)、筛分箱(5)、一级筛分装置(6)和二级筛分装置(11);其特征在于,所述底座(1)设置在筛分箱(5)的下部,底座(1)由挡块(26)、支柱(27)、支撑块(28)、立柱(29)、底板(30)和固定板(31)组成;所述底板(30)的形状为圆形,底板(30)的顶部设有立柱(29)和支柱(27);所述立柱(29)共有四根,四根立柱(29)围绕底板(30)的中心呈圆形排列,立柱(29)的顶部设有支撑块(28),支撑块(28)放置在筛分箱(5)的底部;所述支柱(27)共有四根,四根支柱(27)围绕底板(30)的中心呈圆形排列,支柱(27)顶端的内侧设有挡块(26),挡块(26)放置在筛分箱(5)的外侧;所述筛分箱(5)的底部上下端盖(4),筛分箱(5)的上部设有上端盖(8),上端盖(8)下部的筛分箱(5)内设有二级筛分装置(11),二级筛分装置(11)下部的筛分箱(5)内设有一级筛分装置(6);所述上端盖(8)的中心设有填料仓(7),填料仓(7)的顶部设有顶盖(10),顶盖(10)的上部设有把手(9);所述二级筛分装置(11)由支撑板(18)、限位套筒(19)、弹簧(20)、通孔(21)、挡板(22)、防护板(23)、第二过滤网(24)和振动器(25)组成;所述支撑板(18)设置在筛分箱(5)内,支撑板(18)的内侧设有挡板(22),支撑板(18)上部设有限位套筒(19),限位套筒(19)内放置有弹簧(20),弹簧(20)的上部放置有第二过滤网(24),第二过滤网(24)外侧的筛分箱(5)上固定有振动器(25);所述挡板(22)上设有通孔(21),第二过滤网(24)放置在通孔(21)内,挡板(22)的顶部设有防护板(23),防护板(23)的顶端连接在筛分箱(5)的内壁上;所述一级筛分装置(6)由安装架(15)、第一过滤网(16)和超声波发生器(17)组成;所述安装架(15)固定在筛分箱(5)内,安装架(15)内部设有第一过滤网(16),第一过滤网(16)上设有超声波发生器(17)。
  2. 根据权利要求1所述的一种两级锂电池负极材料筛分装置,其特征在于,所述支柱(27)设置在立柱(29)的外侧。
  3. 根据权利要求1所述的一种两级锂电池负极材料筛分装置,其特征在于,所述筛分箱(5)右部的挡块(26)上设有固定板(31),固定板(31)的右端固定在挡块(26)的右部。
  4. 根据权利要求1所述的一种两级锂电池负极材料筛分装置,其特征在于,所述下端盖(4)的中心连接有排料管(2),排料管(2)上设有控制阀(3)。
  5. 根据权利要求1所述的一种两级锂电池负极材料筛分装置,其特征在于,所述安装架(15)的形状为圆环形。
  6. 根据权利要求1所述的一种两级锂电池负极材料筛分装置,其特征在于,所述超声波发生器(17)共有四个,均匀分布在第一过滤网(16)的四周。
  7. 根据权利要求1所述的一种两级锂电池负极材料筛分装置,其特征在于,所述一级筛分装 置(6)右部的筛分箱(5)上连接有漏料管(12),漏料管(12)倾斜放置,漏料管(12)的末端设有输料管(13),输料管(13)的下部连接有储料箱(14),储料箱(14)放置在固定板(31)上。
PCT/CN2016/113719 2016-12-30 2016-12-30 一种两级锂电池负极材料筛分装置 WO2018120114A1 (zh)

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CN109603974A (zh) * 2018-12-11 2019-04-12 江西兴业机械设备有限公司 一种有分选功能辊式破碎机
CN110102465A (zh) * 2019-04-26 2019-08-09 天津市弘亚润滑粉制造有限公司 一种润滑粉制备过程中杂质筛分设备
CN110140750A (zh) * 2019-03-04 2019-08-20 青岛滨海学院 一种自动筛分进料型扇贝柱肉糜加工设备
CN110420839A (zh) * 2019-08-05 2019-11-08 南通三优佳磁业有限公司 一种用于磁粉加工的筛分机
CN110665794A (zh) * 2019-09-28 2020-01-10 靖江市金舟船舶器材有限公司 一种用于防火堵料原料的筛选设备
CN110665798A (zh) * 2019-10-31 2020-01-10 河南理工大学 一种用于采空区填充作业中快速出料的筛分机
CN111250387A (zh) * 2020-03-24 2020-06-09 桐城市天林米业有限公司 稻谷自动化分级筛选设备
CN111299126A (zh) * 2019-12-10 2020-06-19 九江鸿立食品有限公司 一种糖用振动筛粉机
CN112191328A (zh) * 2020-09-22 2021-01-08 连云港秉文科技有限公司 一种碳化硅微粉超微粉碎研磨机及研磨方法
CN112317289A (zh) * 2020-11-16 2021-02-05 瑞德(新乡)路业有限公司 一种废料回收装置用筛分机构
CN112719210A (zh) * 2020-12-24 2021-04-30 安徽永恒泰环保科技有限公司 一种环保型树脂细沙层次筛选方法
CN113695226A (zh) * 2021-09-23 2021-11-26 扬州市聚鑫机械有限公司 一种冶金机械用粉尘运输装置
CN113857037A (zh) * 2021-09-29 2021-12-31 东海县联诚光伏石英有限公司 用于高纯石英砂生产线的筛选装置及其筛选方法
CN114178173A (zh) * 2021-12-02 2022-03-15 李名火 一种废弃电池分类设备
CN115025961A (zh) * 2022-06-20 2022-09-09 温州中诺工程检测有限公司 一种工程质量检测用物料筛分装置
CN115921298A (zh) * 2022-12-27 2023-04-07 湖南中科电气股份有限公司 一种锂电池石墨负极材料整形机
CN118698866A (zh) * 2024-08-28 2024-09-27 河南科技学院 一种用于速冻面条高品控生产的面粉筛分装置

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CN110140750A (zh) * 2019-03-04 2019-08-20 青岛滨海学院 一种自动筛分进料型扇贝柱肉糜加工设备
CN110102465A (zh) * 2019-04-26 2019-08-09 天津市弘亚润滑粉制造有限公司 一种润滑粉制备过程中杂质筛分设备
CN110420839A (zh) * 2019-08-05 2019-11-08 南通三优佳磁业有限公司 一种用于磁粉加工的筛分机
CN110665794A (zh) * 2019-09-28 2020-01-10 靖江市金舟船舶器材有限公司 一种用于防火堵料原料的筛选设备
CN110665798A (zh) * 2019-10-31 2020-01-10 河南理工大学 一种用于采空区填充作业中快速出料的筛分机
CN111299126A (zh) * 2019-12-10 2020-06-19 九江鸿立食品有限公司 一种糖用振动筛粉机
CN111250387A (zh) * 2020-03-24 2020-06-09 桐城市天林米业有限公司 稻谷自动化分级筛选设备
CN112191328A (zh) * 2020-09-22 2021-01-08 连云港秉文科技有限公司 一种碳化硅微粉超微粉碎研磨机及研磨方法
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CN114178173A (zh) * 2021-12-02 2022-03-15 李名火 一种废弃电池分类设备
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