WO2018233011A1 - 用于非金属材料下料机的快速更换输送带机构 - Google Patents

用于非金属材料下料机的快速更换输送带机构 Download PDF

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Publication number
WO2018233011A1
WO2018233011A1 PCT/CN2017/099471 CN2017099471W WO2018233011A1 WO 2018233011 A1 WO2018233011 A1 WO 2018233011A1 CN 2017099471 W CN2017099471 W CN 2017099471W WO 2018233011 A1 WO2018233011 A1 WO 2018233011A1
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Prior art keywords
frame
conveyor belt
roller
disposed
metal connecting
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PCT/CN2017/099471
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English (en)
French (fr)
Inventor
付主木
孙月群
王�忠
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江苏坤泰机械有限公司
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Priority to JP2018600146U priority Critical patent/JP3227308U/ja
Publication of WO2018233011A1 publication Critical patent/WO2018233011A1/zh

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65HHANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
    • B65H35/00Delivering articles from cutting or line-perforating machines; Article or web delivery apparatus incorporating cutting or line-perforating devices, e.g. adhesive tape dispensers
    • B65H35/0006Article or web delivery apparatus incorporating cutting or line-perforating devices
    • B65H35/0073Details

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  • the invention relates to a compound machine, in particular to a quick change conveyor belt mechanism for a non-metal material cutting machine.
  • the laminating machine needs to use the unloading machine to cut the material during the process of use.
  • the conveyor belt type cutting machine can cut more than 90% of non-metallic materials, especially for the ultra-soft ultra-thin material.
  • the replacement of the ring-shaped cut-to-conveyor belt is troublesome, and the same problem exists in either the domestic or imported conveyor belt cutting machine.
  • the replacement of conveyor belts at home and abroad mainly adopts the following methods to replace, that is, the same ring belt is customized with the conveyor belt manufacturer, and then the mechanical manufacturer sends two or three professionals to the site to cut the upper part of the cutting machine.
  • the head is disassembled and the ring-shaped belt is put in, and the punching head is reassembled and debugged and then delivered to the customer.
  • This method is time-consuming and labor-intensive, has high replacement cost, and delays work efficiency, and cannot meet the production needs of the enterprise.
  • the structure of the cut-resistant conveyor belt comprises: an opening belt body, and a plurality of first metal connecting blocks are evenly disposed on one end of the opening belt body, in the adjacent two Between the first metal connecting blocks, a second metal connecting block connected to the other end of the opening strip body is disposed, and the first metal connecting block and the second metal connecting block are respectively provided with fixing holes communicating with each other.
  • FIG. 3 is a structural schematic view of the quick-change conveyor belt mechanism for the non-metallic material cutting machine of the present invention when the cutting-resistant conveying belt carries away the material.
  • FIG. 4 is a schematic enlarged view of a portion A in FIG. 1.
  • the quick change conveyor belt mechanism for the non-metal material cutting machine comprises: a frame 1 disposed on the left side of the upper end of the frame 1
  • the movable roller 2, the lower driven roller 3 disposed on the left side of the lower end of the frame 1, the tension roller 4 disposed on the right side of the upper end of the frame 1, and the correcting roller 5 disposed on the right side of the lower end of the frame 1, the upper roller
  • the movable roller 2, the lower driven roller 3, the correcting roller 5 and the tension roller 4 are connected by a cut-resistant conveyor belt 6, and the structure of the cut-resistant conveyor belt 6 includes: an opening belt body 61, which is provided
  • a plurality of first metal connecting blocks 62 are evenly disposed on one end of the opening strip body 61, and a second metal connected to the other end of the opening strip body 61 is disposed between the adjacent two first metal connecting blocks 62, respectively.
  • a cutting machine 12 is disposed on the frame 1 at the rear end of the front metal connecting block detector 11, and a rear metal connecting block detector 13 is disposed on the frame 1 at the rear end of the cutting machine 12.
  • the frame 1 at the rear end of the rear metal connection block detector 13 is provided with a cut-resistant conveyor belt presser Roller 14.
  • the fixing wire 65 is taken out from the fixing hole 64, and the first metal connecting block 62 and the second metal connecting block 63 are separated to thereby convey the ring-shaped cut-resistant conveying.
  • the belt 6 is turned into an open cut-resistant conveyor belt structure, the open-cut end-resistant conveyor belt is withdrawn from the frame 1, and the new open-end cut-resistant conveyor belt is rotated around the frame 1 for a new metal opening to the first metal connection at both ends of the conveyor belt
  • the block 62 and the second metal connecting block 63 are connected together by a fixed wire to quickly complete the replacement installation.
  • the front material fixing clip 8 and the rear material fixing clip 10 are driven by the cylinder when feeding.
  • the cut-resistant conveyor belt press material is opened to the roller 14, and the material is sent to the cut-resistant conveyor belt 6 through the loading device 7, and the clamping material 9 and the cut-resistant conveyor belt 6 are moved by the cylinder to drive the feed clamp 9 through the driving device.
  • the frame 1 slides backwards.
  • the material fixing clip 10 clamps the material and the cut-resistant conveyor belt 6 after being driven by the cylinder, and the moving feed clamp 9 is reset to open back to the original position, and starts.
  • the cutting machine 12 cuts the material.
  • the rear material fixing clip 10 is reset and opened, and the moving feeding clip 9 is re-driven by the cylinder to clamp the material and the cut-resistant conveying belt 6, and the moving feeding clip 9 is re-driven by the driving device.
  • the moving feeding clip 9 drives the material together with the cut-resistant conveyor belt 6 to feed the cut-resistant conveyor.
  • the rear metal connection block detector 13 transmits a detection signal to the control device, the control device controls the cylinder to drive the moving feed clamp 9 to close, the front material fixing clip 8 and the cut-resistant conveyor belt press-to-roll 14
  • the driving device controls the cutting-resistant conveyor belt to press the roller 14 to rotate, the cutting-resistant conveyor belt presses the roller 14 to move the cutting conveyor belt 6 backward, and drives the moving feeding clip 9 to slide backward on the frame 1 by the driving device.
  • the material fixing clip 10 clamps the material and the cut-resistant conveyor belt 6.
  • the moving feed clamp 9 is reset and returned to the original position, and the cutting machine 12 is started to cut the material. After the cutting is completed, the above action is repeated for continuous cutting. .
  • the above-mentioned quick change conveyor belt mechanism for non-metal material cutting machine has novel structure, convenient replacement, time and labor saving, fast replacement speed, low cost, no delay in work efficiency, and meets the production demand of the enterprise.

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  • Feeding Of Workpieces (AREA)
  • Structure Of Belt Conveyors (AREA)
  • Press Drives And Press Lines (AREA)

Abstract

一种用于非金属材料下料机的快速更换输送带机构,包括:机架(1)和设置在机架(1)上的上从动辊(2)、下从动辊(3)、张紧辊(4)、纠偏辊(5),上从动辊(2)、下从动辊(3)、纠偏辊(5)和张紧辊(4)之间通过耐切输送带(6)相连接,耐切输送带(6)包括:开口带本体(61),开口带本体(61)的一端上均匀设置有若干第一金属连接块(62),在相邻两个第一金属连接块(62)之间分别设置有与开口带本体(61)另一端相连接的第二金属连接块(63),在第一金属连接块(62)和第二金属连接块(63)内分别贯穿设置有相互连通的固定孔(64)。该用于非金属材料下料机的快速更换输送带机构,更换方便,成本低。

Description

用于非金属材料下料机的快速更换输送带机构 技术领域
本发明涉及一种复合机,尤其涉及一种用于非金属材料下料机的快速更换输送带机构。
背景技术
复合机在使用的过程中需要使用下料机进行下料,其中输送带式下料机可以对90%以上的非金属材料进行裁切,尤其对超柔超薄材料的自动裁切效果最佳,但是环形耐切输送带更换比较麻烦,无论是国产的或是进口的输送带下料机都存在同样的问题。目前,国内外更换输送带主要采取以下方法进行更换,就是跟输送带厂家订制一条同样的环型带,然后由机械生产商派两到三个专业人员到现场将裁切机上半部冲切头拆卸下来将环型带套进去,再将冲切头重新进行组装调试后交给客户使用,这种方式费时费力,更换成本高,耽误工作效率,满足不了企业的生产需求。
发明内容
本发明所要解决的技术问题是:提供一种更换方便的用于非金属材料下料机的快速更换输送带机构。
为了解决上述技术问题,本发明采用的技术方案是:用于非金属材料下料机的快速更换输送带机构,包括:机架,设置在机架上端左侧的上从动辊,设 置在机架下端左侧的下从动辊,设置在机架上端右侧的张紧辊,设置在机架下端右侧的纠偏辊,所述上从动辊、下从动辊、纠偏辊和张紧辊之间通过耐切输送带相连接,所述耐切输送带的结构包括:开口带本体,设置在开口带本体的一端上均匀设置有若干第一金属连接块,在所述相邻两个第一金属连接块之间分别设置有与开口带本体另一端相连接的第二金属连接块,在所述第一金属连接块和第二金属连接块内分别贯穿设置有相互连通的固定孔,固定钢丝穿设在固定孔内将第一金属连接块和第二金属连接块连接在一起,在所述张紧辊前端的机架上设置有上料装置和前材料固定夹,在所述张紧辊后端的机架上滑动设置有移动送料夹,在所述移动送料夹后端的机架上设置有后材料固定夹,在所述后材料固定夹后端的机架上设置有前金属连接块检测器,在所述前金属连接块检测器后端的机架上设置有裁切机,在所述裁切机后端的机架上设置有后金属连接块检测器,在所述后金属连接块检测器后端的机架上设置有耐切输送带压料对辊。
本发明的优点是:上述用于非金属材料下料机的快速更换输送带机构,结构新颖,更换方便,省时省力,更换速度快、成本低,不耽误工作效率,满足了企业的生产需求。
附图说明
图1为本发明用于非金属材料下料机的快速更换输送带机构初始状态时的结构示意图。
图2为本发明用于非金属材料下料机的快速更换输送带机构送料状态时的结构示意图。
图3为本发明用于非金属材料下料机的快速更换输送带机构耐切输送带走材料不走状态时的结构示意图。
图4为图1中A处的放大结构示意图。
图5为本发明用于非金属材料下料机的快速更换输送带机构中耐切输送带的立体连接结构示意图。
图中:1、机架,2、上从动辊,3、下从动辊,4、张紧辊,5、纠偏辊,6、耐切输送带,61、开口带本体,62、第一金属连接块,63、第二金属连接块,64、固定孔,65、固定钢丝,7、上料装置,8、前材料固定夹,9、移动送料夹,10、后材料固定夹,11、前金属连接块检测器,12、裁切机,13、后金属连接块检测器,14、耐切输送带压料对辊。
具体实施方式
下面结合附图和具体实施例详细描述一下本发明的具体内容。
如图1、图2、图3、图4、图5所示,用于非金属材料下料机的快速更换输送带机构,包括:机架1,设置在机架1上端左侧的上从动辊2,设置在机架1下端左侧的下从动辊3,设置在机架1上端右侧的张紧辊4,设置在机架1下端右侧的纠偏辊5,所述上从动辊2、下从动辊3、纠偏辊5和张紧辊4之间通过耐切输送带6相连接,所述耐切输送带6的结构包括:开口带本体61,设置 在开口带本体61的一端上均匀设置有若干第一金属连接块62,在所述相邻两个第一金属连接块62之间分别设置有与开口带本体61另一端相连接的第二金属连接块63,在所述第一金属连接块62和第二金属连接块63内分别贯穿设置有相互连通的固定孔64,固定钢丝65穿设在固定孔64内将第一金属连接块62和第二金属连接块63连接在一起,在所述张紧辊4前端的机架1上设置有上料装置7和前材料固定夹8,在所述张紧辊4后端的机架1上滑动设置有移动送料夹9,在所述移动送料夹9后端的机架1上设置有后材料固定夹10,在所述后材料固定夹10后端的机架1上设置有前金属连接块检测器11,在所述前金属连接块检测器11后端的机架1上设置有裁切机12,在所述裁切机12后端的机架1上设置有后金属连接块检测器13,在所述后金属连接块检测器13后端的机架1上设置有耐切输送带压料对辊14。
上述用于非金属材料下料机的快速更换输送带机构更换输送带时,将固定钢丝65从固定孔64内抽出,第一金属连接块62和第二金属连接块63分离从而将环形耐切输送带6变成开口耐切输送带结构,将开口带开口耐切输送带从机架1上抽出,将新的开口耐切输送带围绕机架1旋转一周,新的开口耐切输送带两端的第一金属连接块62和第二金属连接块63通过固定钢丝连接在一起,快速完成更换安装。
上述用于非金属材料下料机的快速更换输送带机构使用时,如图1、图2、图4、图5所示,送料时,通过气缸带动前材料固定夹8、后材料固定夹10和 耐切输送带压料对辊14打开,通过上料装置7将材料送到耐切输送带6上,通过气缸带动移动送料夹9夹紧材料和耐切输送带6,通过驱动装置带动移动送料夹9在机架1上向后滑动,当材料被送入到裁切机12下端时,通过气缸带动后材料固定夹10夹紧材料和耐切输送带6,移动送料夹9复位打开回到原位,启动裁切机12对材料进行裁切,裁切完成后,后材料固定夹10复位打开,通过气缸重新带动移动送料夹9夹紧材料和耐切输送带6,通过驱动装置重新带动移动送料夹9在机架1上向后滑动将材料继续送入到裁切机12下端进行下一次裁切;如图3、图5所示,移动送料夹9带动材料和耐切输送带6一起送料,当耐切输送带6上的第一金属连接块62和第二金属连接块63移动至前金属连接块检测器11正下方时,前金属连接块检测器11将检测信号传递给控制装置,控制装置控制气缸带动移动送料夹9和后材料固定夹10打开、前材料固定夹8和耐切输送带压料对辊14关闭,通过驱动装置控制耐切输送带压料对辊14转动,耐切输送带压料对辊14带动耐切输送带6向后移动,此时,材料在前材料固定夹8的作用下保持不动,当耐切输送带6上的第一金属连接块62和第二金属连接块63移动至后金属连接块检测器13正下方时,后金属连接块检测器13将检测信号传递给控制装置,控制装置控制气缸带动移动送料夹9关闭、前材料固定夹8和耐切输送带压料对辊14打开,通过驱动装置控制耐切输送带压料对辊14转动,耐切输送带压料对辊14带动耐切输送带6向后移动,通过驱动装置带动移动送料夹9在机架1上向后滑动,当材料被送入到裁切机12下端时,通过 气缸带动后材料固定夹10夹紧材料和耐切输送带6,移动送料夹9复位打开回到原位,启动裁切机12对材料进行裁切,裁切完成后,重复上述动作进行持续裁切。
上述用于非金属材料下料机的快速更换输送带机构,结构新颖,更换方便,省时省力,更换速度快、成本低,不耽误工作效率,满足了企业的生产需求。

Claims (1)

  1. 用于非金属材料下料机的快速更换输送带机构,其特征在于:包括:机架(1),设置在机架(1)上端左侧的上从动辊(2),设置在机架(1)下端左侧的下从动辊(3),设置在机架(1)上端右侧的张紧辊(4),设置在机架(1)下端右侧的纠偏辊(5),所述上从动辊(2)、下从动辊(3)、纠偏辊(5)和张紧辊(4)之间通过耐切输送带(6)相连接,所述耐切输送带(6)的结构包括:开口带本体(61),设置在开口带本体(61)的一端上均匀设置有若干第一金属连接块(62),在所述相邻两个连接块(62)之间分别设置有与开口带本体(61)另一端相连接的第二金属连接块(63),在所述第一金属连接块(62)和第二金属连接块(63)内分别贯穿设置有相互连通的固定孔(64),固定钢丝(65)穿设在固定孔(64)内将第一金属连接块(62)和第二金属连接块(63)连接在一起,在所述张紧辊(4)前端的机架(1)上设置有上料装置(7)和前材料固定夹(8),在所述张紧辊(4)后端的机架(1)上滑动设置有移动送料夹(9),在所述移动送料夹(9)后端的机架(1)上设置有后材料固定夹(10),在所述后材料固定夹(10)后端的机架(1)上设置有前金属连接块检测器(11),在所述前金属连接块检测器(11)后端的机架(1)上设置有裁切机(12),在所述裁切机(12)后端的机架(1)上设置有后金属连接块检测器(13),在所述后金属连接块检测器(13)后端的机架(1)上设置有耐切输送带压料对辊(14)。
PCT/CN2017/099471 2017-06-23 2017-08-29 用于非金属材料下料机的快速更换输送带机构 WO2018233011A1 (zh)

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