WO2018120690A1 - 一种用于废旧液晶显示器的立体式拆解系统 - Google Patents

一种用于废旧液晶显示器的立体式拆解系统 Download PDF

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Publication number
WO2018120690A1
WO2018120690A1 PCT/CN2017/090299 CN2017090299W WO2018120690A1 WO 2018120690 A1 WO2018120690 A1 WO 2018120690A1 CN 2017090299 W CN2017090299 W CN 2017090299W WO 2018120690 A1 WO2018120690 A1 WO 2018120690A1
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Prior art keywords
belt
conveying belt
circuit board
conveying
metal
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PCT/CN2017/090299
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English (en)
French (fr)
Inventor
许开华
鲁习金
龚道年
Original Assignee
荆门市格林美新材料有限公司
山西洪洋海鸥废弃电器电子产品回收处理有限公司
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Application filed by 荆门市格林美新材料有限公司, 山西洪洋海鸥废弃电器电子产品回收处理有限公司 filed Critical 荆门市格林美新材料有限公司
Publication of WO2018120690A1 publication Critical patent/WO2018120690A1/zh

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65GTRANSPORT OR STORAGE DEVICES, e.g. CONVEYORS FOR LOADING OR TIPPING, SHOP CONVEYOR SYSTEMS OR PNEUMATIC TUBE CONVEYORS
    • B65G37/00Combinations of mechanical conveyors of the same kind, or of different kinds, of interest apart from their application in particular machines or use in particular manufacturing processes

Definitions

  • the utility model relates to the technical field of a disassembling device, in particular to a stereo disassembling system for a waste liquid crystal display.
  • patent name "a three-dimensional disassembly system” discloses a three-dimensional disassembly system, including a feeding conveyor belt, used to transport waste liquid crystal to the disassembly platform Display, disassembly platform, disassembled waste LCD display for conveying conveyor belt, disassembling product conveying device, plexiglass, plastic parts, metal iron material, metal aluminum material, printing for disassembling the disassembly platform
  • the circuit board and the speaker are respectively delivered to the corresponding memory; the dust removal system is disposed above the disassembly platform for providing vacuum suction to the disassembly platform and the disassembled product conveying device.
  • the three-dimensional disassembly system can quickly and easily disassemble the waste liquid crystal display into organic glass, plastic parts, metal iron materials, metal aluminum materials, printed circuit boards, speakers, and liquid crystal lamps that can be recycled.
  • the blanking assembly of the three-dimensional disassembly system is another set of belts perpendicular to the dismantling product conveying belt, and five storage boxes are horizontally placed on the same horizontal surface of the belt end to store the disassembled product.
  • Such a design makes the entire device appear L-shaped, increasing the width of the device, causing waste of space, and the process of transferring the same material from one conveyor belt to another perpendicular to the conveyor belt is also prone to material scattering.
  • the main object of the present invention is to provide a three-dimensional disassembly system for a waste liquid crystal display that can save space.
  • the present invention provides a three-dimensional disassembly system for a waste liquid crystal display, including a feed conveyor belt, a disassembly platform, a material collection mechanism, and two sets of discharge conveyor belts, and two sets of the discharge conveyor belts Set separately On both sides of the disassembly platform, each set of the discharge conveyor belt comprises a plastic conveying belt, a metal iron conveying belt, a plexiglass conveying belt, a metal aluminum conveying belt, a printed circuit board conveying belt, a high voltage circuit board.
  • the material collecting mechanism comprises a plastic parts collecting component, a metal iron collecting component, a plexiglass collecting box, a metal aluminum material collecting assembly, a printed circuit board collecting box, and a high voltage circuit board collecting box;
  • the plastic part conveying belt, the metal iron conveying belt, the plexiglass conveying belt, and the metal aluminum conveying belt are stacked on the outer side of the disassembling platform from top to bottom, and the printed circuit board conveying belt
  • a high voltage circuit board conveying belt is disposed below the disassembly platform
  • the printed circuit board collection box is disposed under the discharge end of the printed circuit board conveyor belt along the conveying direction of the printed circuit board output belt;
  • the high-voltage circuit board collecting box is disposed under the discharging end of the high-voltage circuit board conveying belt along the discharging direction of the high-voltage circuit board conveying belt;
  • the plexiglass collecting box is disposed below the discharge end of the plexiglass conveying belt along the conveying direction of the plexiglass conveying belt;
  • the plastic piece collecting assembly is disposed at an output end of the plastic piece conveying belt along a conveying direction of the plastic piece conveying belt;
  • the metal iron material collecting assembly is disposed at an output end of the metal iron conveying belt along a conveying direction of the metal iron conveying belt;
  • the metal aluminum material collecting assembly is disposed at an output end of the metal aluminum material conveying belt.
  • the plastic part collecting assembly comprises a plastic part collecting box, a first bracket and a first inclined belt, the first inclined belt is fixed above the first bracket and conveys a belt along the plastic part
  • the conveying direction is disposed at an output end of the plastic conveying belt, and the plastic collecting box is disposed below the discharging end of the first inclined belt along a conveying direction of the first inclined belt.
  • the metal iron collecting assembly comprises a second bracket, a second inclined belt and a metal iron collecting box, the second inclined belt is fixed above the second bracket and along the metal iron
  • the conveying direction of the material conveying belt is disposed at an output end of the metal iron conveying belt
  • the metal iron collecting box is disposed below the discharging end of the second inclined belt along a conveying direction of the second inclined belt.
  • the plastics collection box, the metal iron collection box and the plexiglass collection box are at the same level On the surface.
  • the metal aluminum material collecting assembly comprises a third belt and a metal aluminum material collecting box, the third belt is perpendicular to the metal aluminum material conveying belt and is connected to the metal on both sides of the dismantling platform.
  • An output end of the aluminum material conveying belt, the metal aluminum material collecting box is disposed under the discharge end of the third belt, and the third belt is to output metal of the metal aluminum material conveying belt on both sides of the dismantling platform
  • the aluminum material is delivered to the metal aluminum material collection tank.
  • the output end of the third belt is disposed outside the plastic conveying belt, the metal iron conveying belt and the plexiglass conveying belt.
  • the dismantling platform is provided with a metal aluminum material lower hopper, a plexiglass lower hopper, a high voltage circuit board lower hopper and a printed circuit board lower hopper.
  • the three-dimensional disassembly system of the present invention includes a feed conveyor belt, a disassembly platform, a material collection mechanism, and two sets of discharge conveyor belts.
  • the two sets of the discharge conveyor belts are respectively disposed on two sides of the disassembly platform, and each group of the discharge conveyor belt comprises a plastic conveying belt, a metal iron conveying belt, a plexiglass conveying belt, a metal aluminum conveying belt, and printing.
  • the material collecting mechanism comprises a plastic parts collecting component, a metal iron collecting component, a plexiglass collecting box, a metal aluminum material collecting assembly, a printed circuit board collecting box, and a high voltage circuit board collecting box.
  • the plastic part conveying belt, the metal iron conveying belt, the plexiglass conveying belt, and the metal aluminum conveying belt are stacked on the outer side of the disassembling platform from top to bottom, the printed circuit board A conveyor belt and a high voltage circuit board conveyor belt are disposed below the disassembly platform.
  • the printed circuit board collecting box is disposed under the discharging end of the printed circuit board conveying belt along the conveying direction of the printed circuit board output belt; the high voltage circuit board collecting box is transported along the high voltage circuit board conveying belt The direction is disposed below the discharge end of the high-pressure circuit board conveying belt; the plexiglass collecting box is disposed under the discharging end of the plexiglass conveying belt along the conveying direction of the plexiglass conveying belt;
  • the collecting assembly is disposed at an output end of the plastic conveying belt along a conveying direction of the plastic conveying belt; the metal iron collecting assembly is disposed on the metallic iron conveying along a conveying direction of the metallic iron conveying belt An output end of the belt; the metal aluminum material collecting assembly is disposed at an output end of the metal aluminum material conveying belt.
  • the discharge belt of the utility model is arranged in a stack, and the space between the layers is small, which saves space.
  • the stacked discharge belts are sequentially extended from bottom to top, so that the plastics collection assembly, the metal iron collection assembly, the plexiglass collection box, the printed circuit board collection box, and the high voltage circuit board collection box have sufficient space along their respective
  • the conveying direction of the discharge conveyor belt is set at the discharge end of each discharge conveyor belt.
  • FIG. 1 is a top view of the three-dimensional disassembly system of the present invention.
  • FIG. 2 is a front view of the three-dimensional disassembly system of the present invention.
  • the present invention provides a three-dimensional disassembly system for a liquid crystal display, including a feeding conveyor belt 1, a disassembly platform 2, a material collecting mechanism, and two sets of discharging conveyance. band.
  • the feeding conveyor belt 1 is used for conveying the waste liquid crystal display to the dismantling platform 2;
  • the disassembling platform 2 is used for disassembling the waste liquid crystal display conveyed by the feeding conveyor belt 1 to decompose the plastic parts, the metal iron materials, the plexiglass , aluminum metal, high voltage circuit boards, printed circuit boards and fluorescent tubes.
  • the fluorescent tube is disassembled, it is manually placed in the fluorescent tube collecting box, and the discharging conveying belt is used to transport the disassembled products other than the fluorescent tube to the pair.
  • the collection box should be.
  • each group of discharge conveyor belts comprises a plastic conveying belt 31, a metal iron conveying belt 32, a plexiglass conveying belt 33, A metal aluminum conveyor belt 34, a printed circuit board conveyor belt 36 and a high voltage circuit board conveyor belt 35.
  • the material collection mechanism includes a plastics collection assembly, a metal iron collection assembly, a plexiglass collection box 43, a metal aluminum collection assembly, a printed circuit board collection box 45, and a high voltage circuit board collection box 44.
  • the plastic conveying belt 31, the metal iron conveying belt 32, the plexiglass conveying belt 33, and the metal aluminum conveying belt 34 are stacked on the outer side of the disassembling platform 2 from top to bottom.
  • the printed circuit board transport belt 36 and the high voltage circuit board transport belt 35 are disposed below the disassembly platform 2.
  • the printed circuit board collection box 45 is disposed along the discharge end of the printed circuit board output belt 36 along the discharge end of the printed circuit board delivery belt 36.
  • the high-voltage circuit board collection box 44 is disposed along the discharge end of the high-voltage circuit board conveyance belt 35 along the discharge end of the high-voltage circuit board conveyance belt 35.
  • the plexiglass collecting box 43 is disposed below the discharge end of the plexiglass conveying belt 33 along the conveying direction of the plexiglass conveying belt 33.
  • the plastics collecting assembly is disposed at the output end of the plastic conveying belt 31 along the conveying direction of the plastic conveying belt 31; the metallic iron collecting assembly is disposed at the output end of the metallic iron conveying belt 32 along the conveying direction of the metallic iron conveying belt 32.
  • the metal aluminum material collection assembly is disposed at the output end of the metal aluminum material conveying belt 34.
  • the plastics collection assembly includes a plastics collection box 41, a first bracket 51, and a first inclined belt 47.
  • the first inclined belt 47 is fixed above the first bracket 51 and conveys the belt along the plastic member.
  • the conveying direction of 31 is set at the output end of the plastic conveying belt 31, and the plastic collecting box is disposed below the discharge end of the first inclined belt 47 in the conveying direction of the first inclined belt 47.
  • the metal iron collecting assembly includes a second bracket 52, a second inclined belt 48, and a metal iron collecting box 42, and the second inclined belt 48 is fixed above the second bracket 52 and conveyed along the metal iron conveying belt 32.
  • the direction is set at the output end of the metal iron conveying belt 32, and the metal iron collecting box 42 is disposed below the discharge end of the second inclined belt 48 in the conveying direction of the second inclined belt 48.
  • the plastics collection box 41, the metal iron collection box 42 and the plexiglass collection box 43 are on the same level.
  • the metal aluminum material collecting assembly includes a third belt 49 and a metal aluminum material collecting box 46, and the third belt 49 is perpendicular to the metal aluminum material conveying belt 34 and is connected to the metal aluminum material conveying belt 34 on both sides of the disassembling platform 2. At the output end, the metal aluminum collecting box 46 is disposed below the discharge end of the third belt 49. The third belt 49 will disassemble both sides of the platform 2 The metal aluminum material output from the metal aluminum conveying belt 34 is conveyed to the metal aluminum collecting box 46.
  • the output end of the third belt 49 is disposed outside the plastic conveying belt 31, the metal iron conveying belt 32, and the plexiglass conveying belt 33.
  • the plastic conveying belt 31, the metal iron conveying belt 32, the plexiglass conveying belt 33, and the metal aluminum conveying belt 34 are stacked on the outer side of the disassembling platform 2 from top to bottom.
  • the disassembly platform 2 is provided with a metal aluminum material lower hopper 24, an organic glass lower hopper 23, a high voltage circuit board lower hopper 21, and a printed circuit board lower hopper 22.
  • the disassembled plexiglass, metal aluminum material, high-voltage circuit board and printed circuit board are put into the inlets of the corresponding lower hoppers, and the disassembled products are respectively led to the respective conveying belts for output by the respective lower hoppers.
  • the height of the plastic conveying belt 31 and the metal iron conveying belt 32 is suitable for the disassembling platform 2, and the disassembled plastic parts and metal iron materials can be directly placed on the plastic conveying belt 31 and the metal iron conveying. On the belt 32.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Processing Of Solid Wastes (AREA)
  • Separation, Recovery Or Treatment Of Waste Materials Containing Plastics (AREA)

Abstract

一种用于废旧液晶显示器的立体式拆解系统,包括进料输送带(1)、拆解平台(2)、物料收集机构和两组出料输送带,两组所述出料输送带分别设置于所述拆解平台(2)的两侧,所述物料收集机构包括塑料件收集组件、金属铁料收集组件、有机玻璃收集箱(43)、金属铝料收集组件、印刷电路板收集箱(45)、高压电路板收集箱(44)。出料皮带采用层叠式设置,各层之间空间很小,节省空间。且层叠式的出料皮带由下向上依次延长,使得塑料件收集组件、金属铁料收集组件、有机玻璃收集箱(43)、印刷电路板收集箱(45)、高压电路板收集箱(44)有足够的空间沿与其对应的各出料输送皮带的输送方向设置于各出料输送皮带的出料端。

Description

一种用于废旧液晶显示器的立体式拆解系统 技术领域
[0001] 本实用新型涉及拆解装置技术领域, 特别涉及一种用于废旧液晶显示器的立体 式拆解系统。
背景技术
[0002] 中国专利, 专利号 "201520261297.7", 专利名称为"一种立体式拆解系统 "公幵 了一种立体式拆解系统, 包括进料输送带, 用于向拆解平台输送废旧液晶显示 器, 拆解平台, 用于将进料输送带输送的废旧液晶显示器拆解, 拆解产物输送 装置, 用于将拆解平台分解的有机玻璃、 塑料件、 金属铁料、 金属铝料、 印刷 电路板、 扬声器分别输送至对应的存储器; 除尘系统, 设置于拆解平台上方, 用于对拆解平台和拆解产物输送装置提供负压吸尘。
[0003] 该立体式拆解系统能够快速方便的将废旧液晶显示器拆解出可以回收利用的有 机玻璃、 塑料件、 金属铁料、 金属铝料、 印刷电路板、 扬声器、 液晶灯管。 但 是该立体式拆解系统的下料收集组件均是与拆解产物输送皮带垂直的另一组皮 带, 并在皮带末端同一水平面上水平放置五个存储箱, 存放拆解产物。 这样的 设计使得整套设备呈现出 L型, 增加了设备的宽度, 造成空间的浪费, 同吋物料 由一条传送带传送到另一条与之垂直的传送带上的过程也容易发生物料散落的 现象。
技术问题
[0004] 为了克服上述现有技术存在的不足, 本实用新型的主要目的在于提供一种能够 节省空间的用于废旧液晶显示器的立体式拆解系统。
问题的解决方案
技术解决方案
[0005] 为了实现上述目的, 本实用新型具体采用以下技术方案:
[0006] 本实用新型提供一种用于废旧液晶显示器的立体式拆解系统, 包括进料输送带 、 拆解平台、 物料收集机构和两组出料输送带, 两组所述出料输送带分别设置 于所述拆解平台的两侧, 每组所述出料输送带包括塑料件输送皮带、 金属铁料 输送皮带、 有机玻璃输送皮带、 金属铝料输送皮带、 印刷电路板输送皮带、 高 压电路板输送皮带, 所述物料收集机构包括塑料件收集组件、 金属铁料收集组 件、 有机玻璃收集箱、 金属铝料收集组件、 印刷电路板收集箱、 高压电路板收 集箱;
[0007] 所述塑料件输送皮带、 金属铁料输送皮带、 有机玻璃输送皮带、 金属铝料输送 皮带由上至下呈层叠式设置于所述拆解平台的外侧, 所述印刷电路板输送皮带
、 高压电路板输送皮带设置于所述拆解平台下方;
[0008] 所述印刷电路板收集箱沿所述印刷电路板输出皮带的输送方向设置于所述印刷 电路板输送皮带的出料端下方;
[0009] 所述高压电路板收集箱沿所述高压电路板输送皮带的输送方向设置于所述高压 电路板输送皮带的出料端下方;
[0010] 所述有机玻璃收集箱沿所述有机玻璃输送皮带的输送方向设置于所述有机玻璃 输送皮带的出料端下方;
[0011] 所述塑料件收集组件沿所述塑料件输送皮带的输送方向设置于所述塑料件输送 皮带的输出端;
[0012] 所述金属铁料收集组件沿所述金属铁料输送皮带的输送方向设置于所述金属铁 料输送皮带的输出端;
[0013] 所述金属铝料收集组件设置于所述金属铝料输送皮带的输出端。
[0014] 优选地, 所述塑料件收集组件包括塑料件收集箱、 第一支架和第一倾斜皮带, 所述第一倾斜皮带固定于所述第一支架的上方且沿所述塑料件输送皮带的输送 方向设置于所述塑料件输送皮带的输出端, 所述塑料件收集箱沿所述第一倾斜 皮带的输送方向设置于所述第一倾斜皮带的出料端的下方。
[0015] 优选地, 所述金属铁料收集组件包括第二支架、 第二倾斜皮带和金属铁料收集 箱, 所述第二倾斜皮带固定于所述第二支架的上方且沿所述金属铁料输送皮带 的输送方向设置于所述金属铁料输送皮带的输出端, 所述金属铁料收集箱沿所 述第二倾斜皮带的输送方向设置于所述第二倾斜皮带的出料端下方。
[0016] 优选地, 所述塑料件收集箱、 金属铁料收集箱和有机玻璃收集箱处于同一水平 面上。
[0017] 优选地, 所述金属铝料收集组件包括第三皮带和金属铝料收集箱, 所述第三皮 带垂直于所述金属铝料输送皮带并连接于所述拆解平台两侧的金属铝料输送皮 带的输出端, 所述金属铝料收集箱设置于所述第三皮带的出料端下方, 所述第 三皮带将所述拆解平台两侧的金属铝料输送皮带输出的金属铝料输送至所述金 属铝料收集箱。
[0018] 优选地, 所述第三皮带的输出端设置于所述塑料件输送皮带、 金属铁料输送皮 带及有机玻璃输送皮带的外侧。
[0019] 优选地, 所述拆解平台上设置有金属铝料下料斗、 有机玻璃下料斗、 高压电路 板下料斗及印刷电路板下料斗。
[0020] 相比于现有技术, 本实用新型的立体式拆解系统包括进料输送带、 拆解平台、 物料收集机构和两组出料输送带。 两组所述出料输送带分别设置于拆解平台的 两侧, 每组所述出料输送带包括塑料件输送皮带、 金属铁料输送皮带、 有机玻 璃输送皮带、 金属铝料输送皮带、 印刷电路板输送皮带、 高压电路板输送皮带 。 所述物料收集机构包括塑料件收集组件、 金属铁料收集组件、 有机玻璃收集 箱、 金属铝料收集组件、 印刷电路板收集箱、 高压电路板收集箱。
[0021] 其中, 所述塑料件输送皮带、 金属铁料输送皮带、 有机玻璃输送皮带、 金属铝 料输送皮带由上至下呈层叠式设置于所述拆解平台的外侧, 所述印刷电路板输 送皮带、 高压电路板输送皮带设置于所述拆解平台下方。 所述印刷电路板收集 箱沿所述印刷电路板输出皮带的输送方向设置于所述印刷电路板输送皮带的出 料端下方; 所述高压电路板收集箱沿所述高压电路板输送皮带的输送方向设置 于所述高压电路板输送皮带的出料端下方; 所述有机玻璃收集箱沿所述有机玻 璃输送皮带的输送方向设置于所述有机玻璃输送皮带的出料端下方; 所述塑料 件收集组件沿所述塑料件输送皮带的输送方向设置于所述塑料件输送皮带的输 出端; 所述金属铁料收集组件沿所述金属铁料输送皮带的输送方向设置于所述 金属铁料输送皮带的输出端; 所述金属铝料收集组件设置于所述金属铝料输送 皮带的输出端。
发明的有益效果 有益效果
[0022] 本实用新型的出料皮带采用层叠式设置, 各层之间空间很小, 节省空间。 且层 叠式的出料皮带由下向上依次延长, 使得塑料件收集组件、 金属铁料收集组件 、 有机玻璃收集箱、 印刷电路板收集箱、 高压电路板收集箱有足够的空间沿与 其对应的各出料输送皮带的输送方向设置于各出料输送皮带的出料端。 该方案 结构简单, 设计合理, 非常节省空间。
对附图的简要说明
附图说明
[0023] 图 1为本实用新型立体式拆解系统俯视图;
[0024] 图 2为本实用新型立体式拆解系统正视图;
[0025] 图中: 1、 进料输送皮带; 2、 拆解平台; 21、 高压电路板下料斗; 22、 印刷电 路板下料斗; 23、 有机玻璃下料斗; 24、 金属铝料下料斗; 31、 塑料件输送皮 带; 32、 金属铁料输送皮带 33、 有机玻璃输送皮带; 34、 金属铝料输送皮带; 3 5、 高压电路板输送皮带; 36、 印刷电路板输送皮带; 41、 塑料件收集箱; 42、 金属铁料收集箱; 43、 有机玻璃收集箱; 44、 高压电路板收集箱; 45、 印刷电 路板收集箱; 46、 金属铝料收集组件; 47、 第一倾斜皮带; 48、 第二倾斜皮带 ; 49、 第三皮带; 51、 第一支架; 52、 第二支架。
实施该发明的最佳实施例
本发明的最佳实施方式
[0026] 为了使本实用新型的目的、 技术方案及优点更加清楚明白, 以下结合附图及实 施例, 对本实用新型进行进一步详细说明。 应当理解, 此处所描述的具体实施 例仅仅用以解释本实用新型, 并不用于限定本实用新型。
[0027] 如图 1、 图 2所示, 本实用新型提供一种用于液晶显示器的立体式拆解系统, 包 括进料输送带 1、 拆解平台 2、 物料收集机构和两组出料输送带。 其中, 进料输 送皮带 1用于向拆解平台 2输送废旧液晶显示器; 拆解平台 2用于将进料输送皮带 1输送的废旧液晶显示器拆解, 分解出塑料件、 金属铁料、 有机玻璃、 金属铝料 、 高压电路板、 印刷电路板和荧光灯管。 荧光灯管拆解出来后人工放入荧光灯 管收集盒中, 出料输送皮带用于将除荧光灯管之外的其他各拆解产物输送至对 应的收集箱。
[0028] 两组所述出料输送带分别设置于所述拆解平台 2的两侧, 每组出料输送带包括 塑料件输送皮带 31、 金属铁料输送皮带 32、 有机玻璃输送皮带 33、 金属铝料输 送皮带 34、 印刷电路板输送皮带 36和高压电路板输送皮带 35。 物料收集机构包 括塑料件收集组件、 金属铁料收集组件、 有机玻璃收集箱 43、 金属铝料收集组 件、 印刷电路板收集箱 45和高压电路板收集箱 44。
[0029] 为了节省空间, 塑料件输送皮带 31、 金属铁料输送皮带 32、 有机玻璃输送皮带 33、 金属铝料输送皮带 34由上至下呈层叠式设置于拆解平台 2的外侧。 印刷电路 板输送皮带 36、 高压电路板输送皮带 35设置于拆解平台 2的下方。 印刷电路板收 集箱 45沿印刷电路板输出皮带 36的输送方向设置于印刷电路板输送皮带 36的出 料端下方。 高压电路板收集箱 44沿高压电路板输送皮带 35的输送方向设置于高 压电路板输送皮带 35的出料端下方。 有机玻璃收集箱 43沿有机玻璃输送皮带 33 的输送方向设置于有机玻璃输送皮带 33的出料端下方。 塑料件收集组件沿塑料 件输送皮带 31的输送方向设置于塑料件输送皮带 31的输出端; 金属铁料收集组 件沿金属铁料输送皮带 32的输送方向设置于金属铁料输送皮带 32的输出端; 金 属铝料收集组件设置于金属铝料输送皮带 34的输出端。
[0030] 在本实施例中, 塑料件收集组件包括塑料件收集箱 41、 第一支架 51和第一倾斜 皮带 47, 第一倾斜皮带 47固定于第一支架 51的上方且沿塑料件输送皮带 31的输 送方向设置于塑料件输送皮带 31的输出端, 塑料件收集箱沿第一倾斜皮带 47的 输送方向设置于第一倾斜皮带 47的出料端的下方。
[0031] 金属铁料收集组件包括第二支架 52、 第二倾斜皮带 48和金属铁料收集箱 42, 第 二倾斜皮带 48固定于第二支架 52的上方且沿金属铁料输送皮带 32的输送方向设 置于金属铁料输送皮带 32的输出端, 金属铁料收集箱 42沿第二倾斜皮带 48的输 送方向设置于第二倾斜皮带 48的出料端下方。 并且, 塑料件收集箱 41、 金属铁 料收集箱 42和有机玻璃收集箱 43处于同一水平面上
[0032] 金属铝料收集组件包括第三皮带 49和金属铝料收集箱 46, 第三皮带 49垂直于金 属铝料输送皮带 34并连接于拆解平台 2两侧的金属铝料输送皮带 34的输出端, 金 属铝料收集箱 46设置于第三皮带 49的出料端下方。 第三皮带 49将拆解平台 2两侧 的金属铝料输送皮带 34输出的金属铝料输送至金属铝料收集箱 46。
[0033] 为了方便出料, 第三皮带 49的输出端设置于塑料件输送皮带 31、 金属铁料输送 皮带 32、 有机玻璃输送皮带 33的外侧。
[0034] 由于塑料件输送皮带 31、 金属铁料输送皮带 32、 有机玻璃输送皮带 33、 金属铝 料输送皮带 34由上至下呈层叠式设置于拆解平台 2的外侧。 为了方便将拆解后的 产物放置于对应的输送皮带上, 拆解平台 2上设置有金属铝料下料斗 24、 有机玻 璃下料斗 23、 高压电路板下料斗 21印刷电路板下料斗 22。 将拆解后的有机玻璃 、 金属铝料、 高压电路板和印刷电路板投入各对应的下料斗的入口, 由各下料 斗分别将拆解后各产物引至各对应的输送皮带上输出。 而塑料件输送皮带 31和 金属铁料输送皮带 32的设置的高度与拆解平台 2相适, 拆解后的塑料件和金属铁 料可直接分别放置于塑料件输送皮带 31和金属铁料输送皮带 32上。
[0035] 以上所述, 仅为本实用新型较佳的具体实施方式, 但本实用新型的保护范围并 不局限于此, 任何熟悉本技术领域的技术人员在本实用新型揭露的技术范围内 , 可轻易想到的变化或替换, 都应涵盖在本实用新型的保护范围之内。 因此, 本实用新型的保护范围应该以权利要求的保护范围为准。

Claims

权利要求书
[权利要求 1] 一种用于废旧液晶显示器的立体式拆解系统, 其特征在于: 包括进料 输送带、 拆解平台、 物料收集机构和两组出料输送带, 两组所述出料 输送带分别设置于所述拆解平台的两侧, 每组所述出料输送带包括塑 料件输送皮带、 金属铁料输送皮带、 有机玻璃输送皮带、 金属铝料输 送皮带、 印刷电路板输送皮带、 高压电路板输送皮带, 所述物料收集 机构包括塑料件收集组件、 金属铁料收集组件、 有机玻璃收集箱、 金 属铝料收集组件、 印刷电路板收集箱、 高压电路板收集箱; 每组所述塑料件输送皮带、 金属铁料输送皮带、 有机玻璃输送皮带、 金属铝料输送皮带由上至下呈层叠式设置于所述拆解平台的外侧, 每 组所述印刷电路板输送皮带、 高压电路板输送皮带设置于所述拆解平 台下方;
所述印刷电路板收集箱沿所述印刷电路板输出皮带的输送方向设置于 所述印刷电路板输送皮带的出料端下方;
所述高压电路板收集箱沿所述高压电路板输送皮带的输送方向设置于 所述高压电路板输送皮带的出料端下方;
所述有机玻璃收集箱沿所述有机玻璃输送皮带的输送方向设置于所述 有机玻璃输送皮带的出料端下方;
所述塑料件收集组件沿所述塑料件输送皮带的输送方向设置于所述塑 料件输送皮带的输出端;
所述金属铁料收集组件沿所述金属铁料输送皮带的输送方向设置于所 述金属铁料输送皮带的输出端;
所述金属铝料收集组件设置于所述金属铝料输送皮带的输出端。
[权利要求 2] 根据权利要求 1所述的一种用于废旧液晶显示器的立体式拆解系统, 其特征在于, 所述塑料件收集组件包括塑料件收集箱、 第一支架和第 一倾斜皮带, 所述第一倾斜皮带固定于所述第一支架的上方且沿所述 塑料件输送皮带的输送方向设置于所述塑料件输送皮带的输出端, 所 述塑料件收集箱沿所述第一倾斜皮带的输送方向设置于所述第一倾斜 皮带的出料端的下方。
根据权利要求 2所述的一种用于废旧液晶显示器的立体式拆解系统, 其特征在于, 所述金属铁料收集组件包括第二支架、 第二倾斜皮带和 金属铁料收集箱, 所述第二倾斜皮带固定于所述第二支架的上方且沿 所述金属铁料输送皮带的输送方向设置于所述金属铁料输送皮带的输 出端, 所述金属铁料收集箱沿所述第二倾斜皮带的输送方向设置于所 述第二倾斜皮带的出料端下方。
根据权利要求 3所述的一种用于废旧液晶显示器的立体式拆解系统, 其特征在于, 所述塑料件收集箱、 金属铁料收集箱和有机玻璃收集箱 处于同一水平面上。
根据权利要求 1所述的一种用于废旧液晶显示器的立体式拆解系统, 其特征在于, 所述金属铝料收集组件包括第三皮带和金属铝料收集箱 , 所述第三皮带垂直于所述金属铝料输送皮带并连接于所述拆解平台 两侧的金属铝料输送皮带的输出端, 所述金属铝料收集箱设置于所述 第三皮带的出料端下方, 所述第三皮带将所述拆解平台两侧的金属铝 料输送皮带输出的金属铝料输送至所述金属铝料收集箱。
根据权利要求 5所述的一种用于废旧液晶显示器的立体式拆解系统, 其特征在于, 所述第三皮带的输出端设置于所述塑料件输送皮带、 金 属铁料输送皮带及有机玻璃输送皮带的外侧。
根据权利要求 1至 6其中任一项所述的一种用于废旧液晶显示器的立体 式拆解系统, 其特征在于, 所述拆解平台上设置有金属铝料下料斗、 有机玻璃下料斗、 高压电路板下料斗及印刷电路板下料斗。
PCT/CN2017/090299 2016-12-27 2017-06-27 一种用于废旧液晶显示器的立体式拆解系统 WO2018120690A1 (zh)

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CN106140787A (zh) * 2015-04-27 2016-11-23 江西格林美资源循环有限公司 一种立体式拆解系统
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