WO2012006795A1 - 产线分流输送架构及其横移输送带平台 - Google Patents

产线分流输送架构及其横移输送带平台 Download PDF

Info

Publication number
WO2012006795A1
WO2012006795A1 PCT/CN2010/075922 CN2010075922W WO2012006795A1 WO 2012006795 A1 WO2012006795 A1 WO 2012006795A1 CN 2010075922 W CN2010075922 W CN 2010075922W WO 2012006795 A1 WO2012006795 A1 WO 2012006795A1
Authority
WO
WIPO (PCT)
Prior art keywords
conveying
product
conveyor belt
production line
conveying end
Prior art date
Application number
PCT/CN2010/075922
Other languages
English (en)
French (fr)
Inventor
贺成明
潘昶宏
Original Assignee
深圳市华星光电技术有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 深圳市华星光电技术有限公司 filed Critical 深圳市华星光电技术有限公司
Priority to US12/996,130 priority Critical patent/US20120037481A1/en
Publication of WO2012006795A1 publication Critical patent/WO2012006795A1/zh

Links

Classifications

    • 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
    • B65G49/00Conveying systems characterised by their application for specified purposes not otherwise provided for
    • B65G49/05Conveying systems characterised by their application for specified purposes not otherwise provided for for fragile or damageable materials or articles
    • B65G49/06Conveying systems characterised by their application for specified purposes not otherwise provided for for fragile or damageable materials or articles for fragile sheets, e.g. glass
    • B65G49/063Transporting devices for sheet glass
    • B65G49/064Transporting devices for sheet glass in a horizontal position
    • 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
    • B65G47/00Article or material-handling devices associated with conveyors; Methods employing such devices
    • B65G47/52Devices for transferring articles or materials between conveyors i.e. discharging or feeding devices
    • B65G47/64Switching conveyors
    • B65G47/641Switching conveyors by a linear displacement of the switching conveyor
    • B65G47/642Switching conveyors by a linear displacement of the switching conveyor in a horizontal plane

Definitions

  • the invention relates to a production line split conveying structure and a traversing conveyor belt platform, in particular to a production line split conveying structure capable of effectively increasing the line dividing efficiency and a traversing conveyor belt platform dragon
  • FIG. 1A to Figure 1D A schematic diagram of the shunting operation of the prior art line shunting structure, comprising a front conveying end 90, two rear conveying end 91 and a traverse conveyor belt platform 92, the front conveying end 90 carrying a plurality of products to be shunted and transported 81 -83, such as a liquid crystal panel.
  • the two rear conveying ends 91 are arranged side by side in parallel, and are divided into a first rear conveying end 910 and a second rear conveying end 911.
  • the traverse conveying belt platform 92 is disposed at the front conveying end 90 and the two rear ends.
  • the transport ends 91 are reciprocally displaced in a transport direction perpendicular to the front transport end 90.
  • the traverse conveyor platform 92 includes a transport mechanism that includes a plurality of rollers 920 that collectively form a transport plane. As shown in FIG. 1A, the traverse conveyor platform 92 is then displaced to the front of the first rear delivery end 910 after receiving a product 81, and the product 81 is transferred to the first rear delivery end. 910. The traverse conveyor belt platform 92 then returns to the front of the front front transport end 90 to continue receiving product 82, and then displaced to the front of the second rear transport end 911 to transport the product 82 out, and then back to the original The front of the front transport end 90 continues to receive the product 83, and so on.
  • this architecture has a problem of slower transfer speeds. Since the traverse conveyor platform 93 can only accept one product 81 from the front delivery end 90 at a time, the next product 82 must wait for the previous production. After the product 81 is delivered, it can flow into the traverse conveyor platform 92. Thus, the output speed of the entire production line is bound to be dragged down, resulting in a decrease in output.
  • the main object of the present invention is to provide a production line split conveying structure in which the same traversing conveyor belt platform has two sets of independently operated conveying mechanisms, wherein one conveying mechanism performs a product conveying operation, and the other conveying mechanism
  • the transfer mechanism can simultaneously perform the receiving operation of another product, effectively increasing the smoothness of the production line, improving the splitting efficiency and increasing the production capacity.
  • a secondary object of the present invention is to provide a traverse conveyor belt platform which has two sets of independently operated transport mechanisms. When applied to a production line split transport structure, the two sets of transport mechanisms can respectively perform a product transfer. And the acceptance of another product, and thus the efficiency of the split line of the effective production line.
  • the present invention provides a line split conveying structure comprising: a front conveying end;
  • a first rear conveying end the conveying direction is parallel to the conveying direction of the front conveying end; a second rear conveying end, the conveying direction is parallel to the conveying direction of the front conveying end, and the second rear conveying end is combined with Said first rear delivery end side by side, and
  • a traverse conveyor belt platform disposed between the front conveying end and the first and second rear conveying ends, wherein a moving direction is perpendicular to a conveying direction of the front conveying end, and the traverse conveyor belt platform comprises a The first conveying mechanism and the second conveying mechanism respectively perform product conveying corresponding to the first and second rear conveying ends; wherein the first conveying mechanism transmits a first product corresponding to the first rear conveying end
  • the second transport mechanism receives a second product corresponding to the front transport end; when the first transport mechanism receives a third product corresponding to the front transport end, the second transport mechanism corresponds to the second rear
  • the delivery end delivers the second product.
  • the present invention provides a traverse conveyor belt platform for a production line split conveying structure, disposed between a front conveying end and two first rear conveying ends and a second rear conveying end side by side,
  • the traverse conveyor platform includes a first conveying mechanism and a second conveying mechanism respectively for product conveying corresponding to the first and second rear conveying ends; wherein the first conveying mechanism transmits corresponding to the first rear conveying end In a first product, the second transport mechanism receives a second product corresponding to the front transport end; the first transport mechanism corresponds to the front transport end receiving a third product, the second transport mechanism And transmitting the second product corresponding to the second rear conveying end.
  • the first conveying mechanism and the second conveying mechanism each include a plurality of rollers, and the plurality of rollers constitute a conveying plane, and the conveying direction of the conveying plane is parallel to the The conveying direction of the front conveying end and the first and second rear conveying ends.
  • the front conveying end is an output end of a conveyor belt.
  • the first rear conveying end and the second rear conveying end are input ends of two parallel rear side conveyor belts.
  • the size of the traverse conveyor platform is greater than the size of two products side by side, and the first conveying mechanism and the second conveying mechanism are independent and side by side.
  • the product is a finished or semi-finished product of a flat panel display, such as a liquid crystal panel, a liquid crystal module or a backlight module.
  • the production line split conveying structure of the invention and the traverse conveyor belt platform can speed up the production line splitting efficiency, and the output of the production line is significantly improved.
  • FIGS. 1A to 1D are schematic diagrams showing a shunting operation of a conventional line shunting architecture.
  • Figure 2 is a top plan view of a traverse conveyor belt platform applied to Figure 1.
  • 3A to 3C are schematic diagrams showing the shunting operation of the line split conveying structure of the preferred embodiment of the present invention.
  • 4 is a top plan view of a traverse conveyor belt platform in accordance with a preferred embodiment of the present invention.
  • 5A to 5H are schematic diagrams showing detailed shunting operations of the line split conveying structure of the present invention.
  • 6A to 6H are schematic diagrams showing detailed shunting operations of the prior art line split conveying structure.
  • the line shunt conveying structure mainly includes a front conveying end 10 and a first rear conveying end 20, A second rear delivery end 21 and a transverse conveyor belt platform 30.
  • the present invention will be described in detail below using a preferred embodiment.
  • the front conveying end 10 of the preferred embodiment of the present invention is an output end of a conveyor belt, and the front conveyor belt 10 can be loaded with a plurality of products 41-43 to be separated and conveyed.
  • the products 41-44 to be split-transported in the preferred embodiment may be finished or semi-finished products of various electronic products, preferably finished or semi-finished products of flat panel displays, such as liquid crystal panels, liquid crystal modules or backlight modules.
  • the first rear conveying end 20 and the second rear conveying end 21 of the preferred embodiment of the present invention are input ends of two parallel side-by-side rear conveyor belts for respectively receiving the shunting. Products 41 to 43.
  • FIG. 4 is a top view of the traverse conveyor belt platform in accordance with a preferred embodiment of the present invention.
  • the traverse conveyor belt platform 30 of the preferred embodiment of the present invention is disposed between the front conveying end 10 and the first rear conveying end 20 and the second rear conveying end 21, and the traverse conveyor belt platform 30 can be Controlled to move back and forth between the front transport end 10 and the first rear transport end 20 and the second rear transport end 21.
  • the moving direction of the traverse conveyor belt platform 30 is perpendicular to the conveying direction of the front conveying end 10, and the traverse conveyor belt platform 30 is moved back and forth to pass the front conveying end 10
  • the delivered products 41 to 43 are distributed one by one to the first rear conveying end 20 and the second rear conveying end 21.
  • the size of the traverse conveyor belt platform 30 is larger than the size of the two products 41-42 side by side, and the traverse conveyor belt platform 30 includes a first conveying mechanism 31 and a second conveying mechanism 32.
  • the first conveying mechanism 31 and the second conveying mechanism 32 are independent and side by side, and the side-by-side direction of the two is parallel to the side-by-side direction of the first rear conveying end 20 and the second rear conveying end 21, thus corresponding to the respective The first rear delivery end 20 and the second rear delivery end 21 are provided.
  • the first transport mechanism 31 includes a plurality of rollers 310 to form a transport plane by the plurality of rollers 310, the transport direction of which is parallel to the front transport end 10 and the The conveying direction of the first rear conveying end 20 and the second rear conveying end 21.
  • the second conveying mechanism 32 includes a plurality of rollers 320 to form a conveying plane by the plurality of rollers 320, and the conveying direction is also parallel to the front conveying end 10 and the first rear conveying end. 20 and the conveying direction of the second rear conveying end 21.
  • the first conveying mechanism 31 and the second conveying mechanism 32 can sequentially carry the products 41 to 43 from the front conveying end 10 when the traverse conveyor belt platform 30 moves back and forth, and further convey the products 41 to 43 to Corresponding to the first rear conveying end 20 and the second rear conveying end 21.
  • the traverse conveyor platform 30 moves to the front position of the first rear conveying end 20, so that The first conveying mechanism 31 can perform the conveying of the product 41 corresponding to the first rear conveying end 20; at this time, the second conveying mechanism 32 is positioned to correspond to the position of the front conveying end 10 to receive the product 42.
  • FIG. 5A to FIG. 5H and FIG. 6A to FIG. 6H are schematic diagrams showing detailed shunting operations of the line shunt conveying structure of the present invention, and each of the figures is similar to the foregoing FIG. 3A to FIG. 3C. Therefore, the same component symbols and names are used; in addition, the above FIG. 6A to FIG. 6H The schematic diagram of the detailed shunting operation of the existing production line split conveying structure, each figure and the foregoing figure
  • FIG. 5A to FIG. 5H are respectively compared with FIG. 6A to FIG. 6H
  • FIG. 5A to FIG. 5C are diagrams showing the conveying process of the product 41 for the line shunt conveying structure of the present invention
  • FIGS. 6A to 6C are diagrams showing a product 81.
  • There is a conveying process of the production line split conveying structure wherein it can be seen from Fig. 5C compared with Fig. 6C that the present invention performs the conveying of the products 41, 81 simultaneously with the existing line dividing conveying structure, but the present invention is outputting
  • the product 41 is further subjected to simultaneous reception of the product 42 (Fig. 5C).
  • FIG. 5D to FIG. 5F are the delivery process of the product 42 according to the production line split conveying structure of the present invention.
  • the present invention further performs synchronous reception of a product 43 before outputting the product 42 (FIG. 5F).
  • the existing line shunt delivery architecture is performing the receipt of the product 82 (Figs. 6D-6F), but the output action of the product 82 has not yet been completed.
  • the line split conveying structure of the present invention has completed the splitting operation of the product 41 and the product 42, and continues the conveying of the product 43 in the same mode.
  • the split delivery architecture is still performing the delivery of the product 82 (Figs. 6G to 6H). Therefore, it can be compared that the split line conveying structure of the present invention is significantly superior to the existing line split conveying structure in the splitting efficiency.
  • the traverse conveyor platform traverse has only a single transmission mechanism compared to the existing production line split conveying structure, and the receiving and outputting of one product can be completely performed before the next product can be received and outputted.
  • the production line shunt conveying architecture of the present invention of FIGS. 3A to 3C and FIG. 4 is operated independently by two groups on the traverse conveyor platform 30, resulting in disadvantages such as poor shunting efficiency and reduced efficiency of the entire production line.
  • the transporting mechanisms 31, 32 can simultaneously perform the output of one product 41 and the other product 42 in one horizontal movement, which can effectively improve the shunting efficiency and improve the output efficiency of the production line.

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Intermediate Stations On Conveyors (AREA)

Abstract

公开了一种产线分流输送架构及其横移输送带平台,该产线分流输送架构包含一前输送端(10)、两后输送端(20,21)及一横移输送带平台(30),该横移输送带平台配置于前输送端与后输送端之间,并包含有两组并排的传送机构(31,32),分别对应后输送端(20,21)。横移输送带平台于来回移动时,两组传送机构依序承载来自前输送端的产品,再依序传递给所对应的后输送端。两组传送机构可同时进行传送与接收产品的动作,因此改善了产线分流效率。

Description

产线分流输送架构及其横移输送带平台 技术领域
本发明是有关于一种产线分流输送架构及其横移输送带平台, 特别是有 关于一种可有效增加产线分流效率的产线分流输送架构及其横移输送带平 台 龍
现今, 科技产业为了扩大平面显示器的成品或半成品的产线产能, 乃发 展出一种单输送带 (conveyer)分流至双输送带的产线分流架构, 请参照图 1A 至图 1D所示, 为前述现有产线分流架构的分流动作示意图, 其中包含一前 输送端 90、两后输送端 91以及一横移输送带平台 92,所述前输送端 90乘载 有数个待分流输送的产品 81-83, 例如液晶面板。 所述两后输送端 91呈平行 并排, 分为一第一后输送端 910及一第二后输送端 911, 所述横移输送带平 台 92配置于所述前输送端 90与所述两后输送端 91之间,并以垂直于所述前 输送端 90的输送方向进行往返位移。
请进一步参照图 2所示,所述横移输送带平台 92包含一传送机构,所述 传送机构包含有多个滚轮 920, 由所述多个滚轮共同组成一输送平面。 如图 1A所示,所述横移输送带平台 92在接受一产品 81后, 随即位移至所述第一 后输送端 910的前方, 进而将所述产品 81传送给所述第一后输送端 910。 所 述横移输送带平台 92 随后回到原本所述前输送端 90 的前方继续接受产品 82,接着再位移至所述第二后输送端 911的前方将产品 82传送出去, 之后再 回到原本所述前输送端 90的前方继续接受产品 83, 如此周而复始。
然而, 此架构存在有传送速度较慢的问题。 因为所述横移输送带平台 93 一次仅能从所述前输送端 90接受一个产品 81,下一产品 82必须等待前一产 品 81被输送出去后才能流入所述横移输送带平台 92, 如此, 整条产线的产 出速度势必会受到拖累而导致产出量降低。
故, 有必要提供一种产线分流输送架构及其横移输送带平台, 以解决现 有技术所存在的问题。 发明内容
本发明的主要目的在于提供一种产线分流输送架构, 其所使用的同一横 移输送带平台中具有两组独立运行的传送机构, 其中一传送机构在进行一产 品的传送动作时, 另一传送机构可同时进行另一产品的接收动作, 有效增加 产线分流顺畅度, 提高分流效率而增加产能。
本发明的次要目的在于提供一种横移输送带平台, 其同时具有两组独立 运行的传送机构, 应用于一产线分流输送架构时, 可由所述两组传送机构分 别进行一产品的传送及另一产品的接受, 进而有效产线的分流效率。
为达成本发明的前述目的,本发明提供一种产线分流输送架构,其包含: 一前输送端;
一第一后输送端, 其输送方向与所述前输送端的输送方向平行; 一第二后输送端, 其输送方向与所述前输送端的输送方向平行, 所述第 二后输送端并与所述第一后输送端并排, 以及
一横移输送带平台, 配置于所述前输送端与所述第一及第二后输送端之 间, 其移动方向垂直于所述前输送端的输送方向, 所述横移输送带平台包含 一第一传送机构及一第二传送机构, 分别对应所述第一及第二后输送端进行 产品传送;其中所述第一传送机构对应所述第一后输送端传送一第一产品时, 所述第二传送机构则对应所述前输送端接收一第二产品; 所述第一传送机构 对应所述前输送端接收一第三产品时, 所述第二传送机构则对应所述第二后 输送端传送所述第二产品。 再者, 本发明提供一种用于产线分流输送架构的横移输送带平台, 配置 于一前输送端与两并排的一第一后输送端及一第二后输送端之间, 所述横移 输送带平台包含一第一传送机构及一第二传送机构, 分别对应所述第一及第 二后输送端进行产品传送; 其中所述第一传送机构对应所述第一后输送端传 送一第一产品时, 所述第二传送机构则对应所述前输送端接收一第二产品; 所述第一传送机构对应所述前输送端接收一第三产品时, 所述第二传送机构 则对应所述第二后输送端传送所述第二产品。
在本发明的一实施例中, 所述第一传送机构及第二传送机构皆包含有多 个滚轮, 而由所述多个滚轮组成一输送平面, 所述输送平面的输送方向平行 于所述前输送端与所述第一及第二后输送端的输送方向。
在本发明的一实施例中, 所述前输送端为一输送带的输出末端。
在本发明的一实施例中, 所述第一后输送端及第二后输送端为两平行并 排的后输送带的输入端。
在本发明的一实施例中, 所述横移输送带平台的尺寸大于二个产品并排 的尺寸, 所述第一传送机构及第二传送机构各自独立且并排。
在本发明的一实施例中, 所述产品是平面显示器的成品或半成品, 例如 液晶面板、 液晶模块或背光模块。
与现有技术相比较, 本发明的产线分流输送架构及其横移输送带平台, 可加快产线分流效率, 使得产线的产出量获得显着提升。 附图说明
图 1A至图 1D是示意一现有的产线分流架构的分流动作示意图。
图 2是一应用于图 1的横移输送带平台的上视图。
图 3A至图 3C是示意本发明较佳实施例产线分流输送架构的分流动作示 意图。 图 4是本发明较佳实施例横移输送带平台的上视图。
图 5A至图 5H是示意本发明产线分流输送架构的详细分流动作示意图。 图 6A至图 6H是示意现有的产线分流输送架构的详细分流动作示意图。 具体实施方式
为让本发明上述目的、 特征及优点更明显易懂, 下文特举本发明较佳实 施例, 并配合附图, 作详细说明如下:
请参照图 3A至 3C所示,其揭示本发明较佳实施例产线分流输送架构的 分流动作示意图, 所述产线分流输送架构主要包含一前输送端 10、 一第一后 输送端 20、 一第二后输送端 21以及一横移输送带平台 30。 本发明将于下文 利用一较佳实施例来详细说明上述各组件。
请参照图 3A至 3C所示, 本发明较佳实施例的前输送端 10为一输送带 的输出末端, 所述前输送带 10可乘载有数个待分流输送的产品 41-43, 本较 佳实施例中所述待分流输送的产品 41-44可以是各种电子产品的成品或半成 品, 优选是平面显示器的成品或半成品, 例如液晶面板、 液晶模块或背光模 块。
请再参照图 3A至图 3C所示, 本发明较佳实施例的第一后输送端 20及 第二后输送端 21为两平行并排的后输送带的输入端,用以分别接收经过分流 的产品 41至 43。
请参照图 3A至图 3C及图 4所示,图 4是本发明较佳实施例横移输送带 平台的上视图。本发明较佳实施例的横移输送带平台 30是配置于所述前输送 端 10与所述第一后输送端 20及第二后输送端 21之间,所述横移输送带平台 30可受控制而在所述前输送端 10与所述第一后输送端 20及第二后输送端 21 之间来回移动。 所述横移输送带平台 30的移动方向垂直于所述前输送端 10 的输送方向, 所述横移输送带平台 30通过来回移动以将所述前输送端 10传 递的产品 41至 43逐一分配传送至所述第一后输送端 20及第二后输送端 21。 在本发明中,所述横移输送带平台 30的尺寸大于二个产品 41-42并排的尺寸, 所述横移输送带平台 30包含一第一传送机构 31及一第二传送机构 32。所述 第一传送机构 31及第二传送机构 32各自独立且呈并排, 两者的并排方向与 所述第一后输送端 20及第二后输送端 21的并排方向平行, 因而分别对应所 述第一后输送端 20及第二后输送端 21。
再者, 如图 4所示, 所述第一传送机构 31包含有多个滚轮 310, 以由所 述多个滚轮 310组成一输送平面,其输送方向平行于所述前输送端 10与所述 第一后输送端 20及第二后输送端 21的输送方向。 同样地, 所述第二传送机 构 32包含有多个滚轮 320, 以由所述多个滚轮 320组成一输送平面, 其输送 方向也平行于所述前输送端 10与所述第一后输送端 20及第二后输送端 21 的输送方向。 所述第一传送机构 31及第二传送机构 32于所述横移输送带平 台 30来回移动时能依序承载来自所述前输送端 10的产品 41至 43, 并进而 传送产品 41至 43给所对应的所述第一后输送端 20及第二后输送端 21。
更详细来说, 如图 3A至图 3C, 当所述第一传送机构 31接受所述产品 41后, 所述横移输送带平台 30往所述第一后输送端 20的前方位置移动, 使 得所述第一传送机构 31可对应至所述第一后输送端 20而进行产品 41 的输 送; 此时, 所述第二传送机构 32位置刚好对应至所述前输送端 10位置而接 收产品 42; 待所述横移输送带平台 30往所述第二后输送端 21的前方位置移 动, 使得所述第二传送机构 32位置对应至所述第二后输送端 21而进行产品 42的输送; 此时, 所述第一传送机构 31位置刚好对应至所述前输送端 10位 置而接受产品 43, 如此周而复始。
进一步参照图 5A至图 5H以及图 6A至图 6H所示, 所述图 5A至图 5H 用以示意本发明产线分流输送架构的详细分流动作示意图,各图与前述图 3A 至图 3C类似, 因此沿用相同的组件符号与名称; 另外, 所述图 6A至图 6H 则用以示意现有的产线分流输送架构的详细分流动作示意图, 各图与前述图
1A至图 1D相似, 因此沿用相同的组件符号与名称。
首先, 以图 5A至图 5H分别对应图 6A至图 6H比较, 图 5A至图 5C是 示意产品 41就本发明产线分流输送架构的输送过程, 图 6A至图 6C是示意 一产品 81就现有产线分流输送架构的输送过程, 其中以图 5C相较于图 6C 可看出,本发明与现有产线分流输送架构同时进行了所述产品 41、81的输送, 但本发明在输出所述产品 41前还进一步进行了一产品 42的同步接收 (图 5C)。
接着, 图 5D到图 5F为本发明产线分流输送架构进行所述产品 42的输 送过程, 本发明在输出所述产品 42前还进一步进行了一产品 43的同步接收 (图 5F)。相较之下,现有产线分流输送架构才正在执行所述产品 82的接收 (图 6D到图 6F) , 但尚未完成所述产品 82的输出动作。
再者, 在图 5G到图 5H中, 本发明产线分流输送架构已完成所述产品 41跟产品 42的分流动作, 并依同样模式继续进行所述产品 43的输送, 此时 现有产线分流输送架构尚仍在执行所述产品 82的输送 (图 6G到图 6H)。由此 可比较出本发明产线分流输送架构在分流效率上明显优于现有产线分流输送 架构。
如上所述, 相较于现有产线分流输送架构的横移输送带平台横移仅具有 单个传送机构, 需完整执行一产品的接收与输出之后才能再进行下一产品的 接收与输出, 进而导致分流效率不佳, 使整条产线的产出效率降低等缺点, 图 3A至 3C及图 4的本发明产线分流输送架构通过在所述横移输送带平台 30上的两组独立运行的传送机构 31、 32,可于一次横移动作同时进行一产品 41 的输出及另一产品 42的接收, 其确实可以有效提高分流效率, 达到提升 产线的产出效能。
本发明已由上述相关实施例加以描述, 然而上述实施例仅为实施本发明 的范例。 必需指出的是, 已公开的实施例并未限制本发明的范围。 相反地, 包含于权利要求书的精神及范围的修改及均等设置均包括于本发明的范围 内。

Claims

权 利 要 求
1. 一种产线分流输送架构, 其包含:
一前输送端;
一第一后输送端, 其输送方向与所述前输送端的输送方向平行; 以及 一第二后输送端,其输送方向与所述前输送端的输送方向平行,所述第二 后输送端并与所述第一后输送端并排,其特征在于:所述产线分流输送架 构另包含:
一横移输送带平台, 配置于所述前输送端与所述第一及第二后输送端之 间,其移动方向垂直于所述前输送端的输送方向,所述横移输送带平台的 尺寸大于二个产品并排的尺寸,所述横移输送带平台包含一第一传送机构 及一第二传送机构, 所述第一传送机构及第二传送机构各自独立而且并 排,分别对应所述第一及第二后输送端进行产品传送;所述第一传送机构 及第二传送机构皆包含有多个滚轮, 而由所述多个滚轮组成一输送平面, 所述输送平面的输送方向平行于所述前输送端与所述第一及第二后输送 端的输送方向;
其中所述第一传送机构对应所述第一后输送端传送一第一产品时,所述第 二传送机构则对应所述前输送端接收一第二产品;所述第一传送机构对应 所述前输送端接收一第三产品时,所述第二传送机构则对应所述第二后输 送端传送所述第二产品。
2. 一种产线分流输送架构, 其包含:
一前输送端;
一第一后输送端, 其输送方向与所述前输送端的输送方向平行; 以及 一第二后输送端,其输送方向与所述前输送端的输送方向平行,所述第二 后输送端并与所述第一后输送端并排,其特征在于:所述产线分流输送架 构另包含: 一横移输送带平台, 配置于所述前输送端与所述第一及第二后输送端之 间,其移动方向垂直于所述前输送端的输送方向,所述横移输送带平台包 含一第一传送机构及一第二传送机构,分别对应所述第一及第二后输送端 进行产品传送;
其中所述第一传送机构对应所述第一后输送端传送一第一产品时,所述第 二传送机构则对应所述前输送端接收一第二产品;所述第一传送机构对应 所述前输送端接收一第三产品时,所述第二传送机构则对应所述第二后输 送端传送所述第二产品。
3. 如权利要求 2所述的产线分流输送架构, 其特征在于: 所述第一传送机构 及第二传送机构皆包含有多个滚轮, 而由所述多个滚轮组成一输送平面, 所述输送平面的输送方向平行于所述前输送端与所述第一及第二后输送 端的输送方向。
4. 如权利要求 2所述的产线分流输送架构, 其特征在于: 所述前输送端为一 输送带的输出末端。
5. 如权利要求 2所述的产线分流输送架构, 其特征在于: 所述第一后输送端 及第二后输送端为两平行并排的后输送带的输入端。
6. 如权利要求 2所述的产线分流输送架构, 其特征在于: 所述横移输送带平 台的尺寸大于二个产品并排的尺寸,所述第一传送机构及第二传送机构各 自独立并排。
7. 一种用于产线分流输送架构的横移输送带平台,配置于一前输送端与两并 排的一第一后输送端及一第二后输送端之间,其特征在于:所述横移输送 带平台包含一第一传送机构及一第二传送机构,分别对应所述第一及第二 后输送端进行产品传送;其中所述第一传送机构对应所述第一后输送端传 送一第一产品时, 所述第二传送机构则对应所述前输送端接收一第二产 品;所述第一传送机构对应所述前输送端接收一第三产品时,所述第二传 送机构则对应所述第二后输送端传送所述第二产品。
8. 如权利要求 7所述用于产线分流输送架构的横移输送带平台,其特征在于: 所述第一传送机构及第二传送机构皆包含有多个滚轮,而由所述多个滚轮 组成一输送平面,所述输送平面的输送方向平行于所述前输送端与所述第 一及第二后输送端的输送方向。
9. 如权利要求 7所述的用于产线分流输送架构的横移输送带平台, 其特征在 于: 所述前输送端为一输送带的输出末端。
10.如权利要求 7所述的用于产线分流输送架构的横移输送带平台,其特征在 于: 所述第一后输送端及第二后输送端为两平行并排的后输送带的输入
^山
¾。
11.如权利要求 7所述的用于产线分流输送架构的横移输送带平台,其特征在 于:所述横移输送带平台的尺寸大于二个产品并排的尺寸,所述第一传送 机构及第二传送机构各自独立并排。
PCT/CN2010/075922 2010-07-14 2010-08-12 产线分流输送架构及其横移输送带平台 WO2012006795A1 (zh)

Priority Applications (1)

Application Number Priority Date Filing Date Title
US12/996,130 US20120037481A1 (en) 2010-07-14 2010-08-12 Production-line distribution conveyor system and reciprocating conveying platform thereof

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN2010102307707A CN101891063B (zh) 2010-07-14 2010-07-14 产线分流输送架构及其横移输送带平台
CN201010230770.7 2010-07-14

Publications (1)

Publication Number Publication Date
WO2012006795A1 true WO2012006795A1 (zh) 2012-01-19

Family

ID=43100446

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2010/075922 WO2012006795A1 (zh) 2010-07-14 2010-08-12 产线分流输送架构及其横移输送带平台

Country Status (3)

Country Link
US (1) US20120037481A1 (zh)
CN (1) CN101891063B (zh)
WO (1) WO2012006795A1 (zh)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110065795A (zh) * 2018-01-22 2019-07-30 亨内克***有限责任公司 晶片分拣设备

Families Citing this family (24)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102745454B (zh) * 2012-07-31 2015-04-15 长沙伍扬工业设备科技有限公司 一种智能化物流装卸输送***
DE102013105002A1 (de) * 2013-05-15 2014-11-20 Focke & Co. (Gmbh & Co. Kg) Verfahren zur Handhabung von Behältern, insbesondere Kartons, für Gruppen von Gegenständen, insbesondere Packungen
CN103350895B (zh) * 2013-06-18 2016-12-07 广西力源宝科技有限公司 一种码垛机自动分路输送***
US9741009B2 (en) * 2013-09-09 2017-08-22 Dematic Corp. Transfer system and material-handling system and method using such transfer system
TWI584879B (zh) * 2013-11-06 2017-06-01 All Ring Tech Co Ltd Coating method and device
CN104627425B (zh) * 2015-02-10 2016-09-28 山东兰剑物流科技股份有限公司 一种条烟的机械码垛方法
CN105173674A (zh) * 2015-08-28 2015-12-23 江苏通达动力科技股份有限公司 一种用于薄片材料直角换向输送的输送带
DE102016108449A1 (de) * 2016-05-06 2017-11-09 Bleichert Automation Gmbh & Co. Kg Transfervorrichtung zum Transfer von Stückgütern
CN106241375B (zh) * 2016-09-07 2018-04-17 福耀集团(福建)机械制造有限公司 一种玻璃移载流水线
CN106698911B (zh) * 2016-11-18 2019-06-25 深圳市华星光电技术有限公司 一种基板混切***及分流方法
CN106553892B (zh) * 2016-12-07 2018-04-20 东莞市奥海科技股份有限公司 高低产能对接生产线
CN106672624A (zh) * 2016-12-13 2017-05-17 惠科股份有限公司 一种显示面板的传送装置
CN107116165A (zh) * 2017-04-21 2017-09-01 耐世特凌云驱动***(芜湖)有限公司 轴套自动搓花键装置
CN110715942A (zh) * 2018-07-11 2020-01-21 皓琪科技股份有限公司 电路板自动检测方法及***
CN108996267B (zh) * 2018-09-30 2024-06-04 欧谷(鄂州)智能设备有限公司 一种袋装饲料投放***
CN109335521A (zh) * 2018-10-17 2019-02-15 珠海格力智能装备有限公司 移载***
CN109607161B (zh) * 2018-11-26 2021-04-13 广东天机工业智能***有限公司 流水线转运装置
CN111760808B (zh) 2019-06-28 2022-02-01 北京京东乾石科技有限公司 分拣装置和分拣方法
CN111392464B (zh) * 2020-03-14 2021-03-26 安徽匠桥网络科技有限公司 一种平面口罩生产用输送装置
CN112247245A (zh) * 2020-09-29 2021-01-22 超威电源集团有限公司 一种电池极板制造装置及方法
CN113617693A (zh) * 2021-08-08 2021-11-09 山东交通职业学院 一种具有自动定心功能的高速连续检测设备
CN113942820B (zh) * 2021-09-30 2023-07-18 象山大宇机械设备有限公司 一种用于流水线的快速合道装置
CN114873222B (zh) * 2022-06-20 2024-04-02 博众精工科技股份有限公司 一种分组设备
CN117401417B (zh) * 2023-12-01 2024-03-22 济南诺洁清洁用品有限公司 一种洗衣粉生产用输送装置

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS61150919A (ja) * 1984-12-24 1986-07-09 Shinko Electric Co Ltd 部品の二列ふり分け装置
JPS61203023A (ja) * 1985-03-04 1986-09-08 Hitachi Electronics Eng Co Ltd 振分搬送装置
DE19617187A1 (de) * 1996-04-29 1997-10-30 Biforce Anstalt Verfahren und Vorrichtung zum Verteilen eines Produktstromes
CN1799962A (zh) * 2004-12-27 2006-07-12 株式会社大福 货物合流设备

Family Cites Families (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
BE839885A (nl) * 1976-03-22 1976-07-16 INRICHTING VOOR HET MET 90è VERDRAAIEN VAN DE BEWEGINGSTICHTING VAN PALETTEN EN DERGELIJKE TUSSEN TWEE TRANSPORTBANEN
EP0247408B1 (de) * 1986-05-20 1991-07-03 Erwin Jenkner Plattenaufteil- und -sortieranlage
DE4108612A1 (de) * 1990-03-22 1991-09-26 Eisenmann Foerdertechnik Kg Foerderanlage, beispielsweise fuer skids
US5238100A (en) * 1991-06-13 1993-08-24 Ford Motor Company Method and apparatus for handling glass sheets
DE4327445C2 (de) * 1993-08-14 1997-09-11 Trauten Karl Lager- und Transportsystem für Lagergüter
JPH11227943A (ja) * 1998-02-09 1999-08-24 Ishikawajima Harima Heavy Ind Co Ltd 基板移載装置
JP4436689B2 (ja) * 2004-01-28 2010-03-24 マルヤス機械株式会社 ガラス基板の搬送システム
JP2006182502A (ja) * 2004-12-27 2006-07-13 Murata Mach Ltd トレイ搬送システム
JP2006206218A (ja) * 2005-01-26 2006-08-10 Maruyasu Kikai Kk ガラス基板等の搬送システム

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS61150919A (ja) * 1984-12-24 1986-07-09 Shinko Electric Co Ltd 部品の二列ふり分け装置
JPS61203023A (ja) * 1985-03-04 1986-09-08 Hitachi Electronics Eng Co Ltd 振分搬送装置
DE19617187A1 (de) * 1996-04-29 1997-10-30 Biforce Anstalt Verfahren und Vorrichtung zum Verteilen eines Produktstromes
CN1799962A (zh) * 2004-12-27 2006-07-12 株式会社大福 货物合流设备

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110065795A (zh) * 2018-01-22 2019-07-30 亨内克***有限责任公司 晶片分拣设备
CN110065795B (zh) * 2018-01-22 2022-10-21 梅耶博格有限责任公司 晶片分拣设备

Also Published As

Publication number Publication date
CN101891063A (zh) 2010-11-24
US20120037481A1 (en) 2012-02-16
CN101891063B (zh) 2011-08-31

Similar Documents

Publication Publication Date Title
WO2012006795A1 (zh) 产线分流输送架构及其横移输送带平台
US20090169351A1 (en) Automatic stacking device
CN107265130A (zh) 灌装机的料箱自动输送堆垛装置
CN206108306U (zh) 一种三向分拣用输送装置
JP2007176702A5 (zh)
JP2006056712A5 (zh)
IT9021538A1 (it) Modulo di smistamento per apparati di convogliamento.
JP6307598B2 (ja) スタッキング装置、包装機械、および、複数のスタックを連続的に形成するための方法
CN201808920U (zh) 转向运输装置
CN105752687A (zh) 传送装置和加工***
CN101428708A (zh) 基板移载装置及方法
CN205500224U (zh) 一种多工作台固晶机的上下料***
CN205312552U (zh) 码瓶垛机的输瓶机构
JP2007186321A (ja) 板材の搬送システム
EP2552784B1 (en) Apparatus and method for loading articles into cases.
KR101325466B1 (ko) 수평 이송 장치
JP2006273364A (ja) 容器整列装置、及び容器整列方法
CN103662709A (zh) 一种送料平台及冻干线移动式进出料***
JP2007084313A (ja) 搬送物合流及び整列装置
JP2005222949A5 (zh)
CN207061339U (zh) 灌装机的料箱自动输送堆垛装置
CN101659350A (zh) 可双面装卸的连续式输送***及其方法
TWM528886U (zh) 紙材輸送裝置
CN206606692U (zh) 一种自动化物料搬送***
CN205771968U (zh) 传送装置和加工***

Legal Events

Date Code Title Description
WWE Wipo information: entry into national phase

Ref document number: 12996130

Country of ref document: US

121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 10854587

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE

122 Ep: pct application non-entry in european phase

Ref document number: 10854587

Country of ref document: EP

Kind code of ref document: A1