WO2020252608A1 - 一种纳米材料生产用快速捆绑装置 - Google Patents

一种纳米材料生产用快速捆绑装置 Download PDF

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Publication number
WO2020252608A1
WO2020252608A1 PCT/CN2019/091466 CN2019091466W WO2020252608A1 WO 2020252608 A1 WO2020252608 A1 WO 2020252608A1 CN 2019091466 W CN2019091466 W CN 2019091466W WO 2020252608 A1 WO2020252608 A1 WO 2020252608A1
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Prior art keywords
telescopic rod
electric telescopic
bottom plate
rotating plate
binding device
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PCT/CN2019/091466
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English (en)
French (fr)
Inventor
陈耀庭
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绍兴君合新材料科技有限公司
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Priority to PCT/CN2019/091466 priority Critical patent/WO2020252608A1/zh
Publication of WO2020252608A1 publication Critical patent/WO2020252608A1/zh

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65BMACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
    • B65B13/00Bundling articles
    • B65B13/18Details of, or auxiliary devices used in, bundling machines or bundling tools
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65BMACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
    • B65B13/00Bundling articles
    • B65B13/18Details of, or auxiliary devices used in, bundling machines or bundling tools
    • B65B13/22Means for controlling tension of binding means
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65BMACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
    • B65B13/00Bundling articles
    • B65B13/18Details of, or auxiliary devices used in, bundling machines or bundling tools
    • B65B13/24Securing ends of binding material
    • B65B13/32Securing ends of binding material by welding, soldering, or heat-sealing; by applying adhesive

Definitions

  • the utility model relates to the technical field of nano material binding devices, in particular to a fast binding device for nano material production.
  • Nanomaterials refer to materials that have at least one dimension in the nanometer size (0.1-100nm) or are composed of them as basic units in a three-dimensional space. This is approximately equivalent to a scale of 10-100 atoms closely arranged together. Generally, nanomaterials are produced After coming out, they need to be bundled together to facilitate packaging;
  • the purpose of the present utility model is to provide a fast binding device for the production of nano materials, so as to solve the problems raised in the background art.
  • a fast binding device for nanomaterial production comprising a bottom plate, a motor is fixedly welded in the middle of the lower end surface of the bottom plate, and the main shaft end of the motor passes through the bottom plate vertically,
  • a rotating plate is horizontally arranged at the center of the upper end surface of the bottom plate and the rotating plate is fixedly connected to the main shaft end of the motor.
  • the upper end surface of the rotating plate is fitted with a gravity induction switch and the gravity induction switch is electrically connected to the motor through a power wire, Both the left and right ends of the rotating plate are provided with clamping mechanisms, and the upper end surface of the bottom plate is fixedly welded with a support frame on the left and right sides.
  • the upper end of the support frame is rotatably connected with a scroll column through a rotating shaft.
  • the columns are fixedly wound with tie ropes and the ends of the tie ropes on the left and right sides are placed on the rotating plate.
  • the tie ropes are equidistantly provided with rubber cushions. Both ends of the rubber cushions are provided with perforations and The tie rope is threaded through each of the perforations in turn, the middle position of the rubber cushion is fixedly welded with screw sleeves, and the screw sleeves at the ends of the tie ropes on the left and right sides are aligned together and aligned here with the screw sleeves.
  • a bolt is arranged in the space through a screw thread, and a welding mechanism is arranged on the front and rear sides directly above the bottom plate.
  • the clamping mechanism includes a first electric telescopic rod, the first electric telescopic rod is horizontally fixed and welded in pairs on the left and right ends of the rotating plate, and the telescopic end of the first electric telescopic rod is vertical A splint is fixed and welded.
  • the support frame is a common telescopic rod.
  • the welding mechanism includes a second electric telescopic rod and an electric iron, the second electric telescopic rods are horizontally arranged in pairs on the front and rear above the rotating plate, and the second electric telescopic rods are fixedly connected to the bottom plate through the frame.
  • the second electric telescopic rod is in a front-to-back horizontal position, and the telescopic end of the second electric telescopic rod is vertically fixed and welded with an electric iron.
  • the electric iron is a long strip in the vertical direction.
  • the motor is energized and the rotating plate rotates with the nano material and the binding rope, and the upper ends of the binding ropes on both sides are gradually twisted together.
  • the second electric telescopic rod on the front and rear sides will drive the front and rear electric irons to move closer to the entangled ropes, and finally make The rubber soft pads on the twisted tie ropes are welded together to realize the fixed butt joint of the winding ends of the tie rope, and then the part of the tie rope connected to the reel is cut off.
  • Figure 1 is a schematic diagram of the overall structure of a fast binding device for the production of nano materials of the present invention
  • Figure 2 is a structural diagram of the connection between the lashing rope and the rubber cushion in the fast binding device for the production of nano materials of the present invention
  • Fig. 3 is a top view of the connection between the electric iron and the second electric telescopic rod in the fast binding device for nanomaterial production of the present invention.
  • a fast binding device for nanomaterial production comprising a bottom plate 1, a motor 9 is fixedly welded to the middle of the lower end surface of the bottom plate 1, and the spindle end of the motor 9 is vertically oriented Passing through the bottom plate 1, the center of the upper end surface of the bottom plate 1 is horizontally provided with a rotating plate 8 and the rotating plate 8 is fixedly connected to the spindle end of the motor 9.
  • the upper end surface of the rotating plate 8 is fitted with a gravity sensor switch 7 and a gravity sensor switch 7 is electrically connected to the motor 9 through the power wire.
  • the gravity sensor switch 7 makes the motor 9 energize and run; the left and right ends of the rotating plate 8 are equipped with clamping In mechanism 12, the left and right sides of the upper end surface of the bottom plate 1 are vertically fixed and welded with a support frame 2.
  • the upper end of the support frame 2 is rotated by a rotating shaft and connected with a reel 3, and the reel 3 is fixedly wound with a tie rope 6 and the left and right sides
  • the end of the tie rope 6 is placed on the rotating plate 8.
  • the tie rope 6 is provided with rubber cushions 13 equidistantly. Both ends of the rubber cushion 13 are provided with perforations 14 and the tie rope 6 passes through each perforation 14 in turn.
  • the perforation 14 facilitates the connection of the tie rope 6 and the rubber cushion 13; the middle position of the rubber cushion 13 is fixed and welded with a screw sleeve 15, and the screw sleeves 15 at the ends of the left and right sides of the tie rope 6 are aligned together and aligned here.
  • the thread is equipped with a latch 16 which makes the ends of the left and right sides of the rope 6 fixedly connected together, which is convenient for placing materials; the front and rear sides of the bottom plate 1 are both provided with welding mechanisms 17.
  • the clamping mechanism 12 includes a first electric telescopic rod 10, the first electric telescopic rod 10 is horizontally fixed and welded to the left and right ends of the rotating plate 8 in pairs, and the telescopic end of the first electric telescopic rod 10 is vertically fixed and welded with a clamping plate 11,
  • the first electric telescopic rod 10 is started to shrink, and the splints 11 on the left and right sides move closer to the middle, thereby clamping the tie rope 6 and the material together, so that when the rotating plate 8 rotates, Stably drives the rotation of the nano-material, so that the upper ends of the tie ropes 6 on both sides can be wound together.
  • the support frame 2 is an ordinary telescopic rod, which facilitates the height adjustment of the roller 3 according to the height of the material stacked on the rotating plate 8.
  • the welding mechanism 17 includes a second electric telescopic rod 5 and an electric iron 4.
  • the second electric telescopic rod 5 is horizontally arranged in pairs on the front and rear sides above the rotating plate 8 and the second electric telescopic rod 5 is fixedly connected to the bottom plate 1 through the frame.
  • the second electric telescopic rod 5 is in a front-to-back horizontal position, and the telescopic end of the second electric telescopic rod 5 is vertically fixed and welded with an electric iron 4, when the tie rope 6 pressed under the nano material is twisted together due to the rotation of the rotating plate 8
  • the second electric telescopic rod 5 is activated to extend and energize the electric iron 4
  • the second electric telescopic rods 5 on the front and rear sides will drive the electric iron 4 on the front and rear sides to move closer to the entangled rope 6 and finally make the winding
  • the rubber soft pads 13 on the tying rope 6 are welded together to realize the fixed butt joint of the winding ends of the tying rope 6 and then the part of the tying rope 6 connected to the reel 3 is cut off.
  • the electric iron 4 is a long strip in the vertical direction, which is convenient for the electric iron 4 to be clamped to the rubber cushion 13 on the tying rope 6 that is wound together.
  • the splints 11 on the left and right sides move closer to the middle, thereby clamping the rope 6 and the material together, and when the gravity sensor switch 7 on the rotating plate 8 senses the corresponding weight
  • the rotating plate 8 takes the nano material and the tie rope 6 to rotate, and the upper ends of the tie ropes 6 on both sides are gradually entangled together to achieve rapid binding of the material, and then start the second electric telescopic
  • the rod 5 is extended and the electric iron 4 is energized.
  • the second electric telescopic rods 5 on the front and rear sides drive the electric iron 4 on the front and rear sides to move closer to the entangled rope 6, and finally make the rope on the entangled rope 6.
  • the rubber cushions 13 are welded together to realize the fixed butt joint of the winding ends of the tie rope 6 and then the part of the tie rope 6 connected to the reel 3 is cut off.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Wire Processing (AREA)

Abstract

一种纳米材料生产用快速捆绑装置,包括底板(1),所述底板(1)下端面中间位置固定设置有电机(9),所述底板(1)的上端面中心位置水平设置有转板(8),所述转板(8)的上端面嵌合设置有重力感应开关(7),所述转板(8)的左右两端均设置有夹紧机构(12),支撑架(2)的上端转动设置有卷柱(3),所述卷柱(3)上均固定设置有绑绳(6),所述绑绳(6)上等距设置有橡胶软垫(13),转板(8)带着纳米材料和绑绳(6)转动起来,则两侧绑绳(6)上端便逐渐缠绕在一起,实现对材料的快速捆绑,然后再启动第二电动伸缩杆(5)伸长且为电烫斗(4)通电,则前后侧的第二电动伸缩杆(5)便带动前后侧的电烫斗(4)向缠绕在一起的绑绳(6)靠拢,最终使得缠绕在一起的绑绳(6)上的橡胶软垫(13)熔接在一起,实现绑绳(6)缠绕端固定对接。

Description

一种纳米材料生产用快速捆绑装置 技术领域
本实用新型涉及纳米材料捆绑装置技术领域,具体为一种纳米材料生产用快速捆绑装置。
背景技术
纳米材料是指在三维空间中至少有一维处于纳米尺寸(0.1-100nm)或由它们作为基本单元构成的材料,这大约相当于10~100个原子紧密排列在一起的尺度,而一般纳米材料生产出来后都需要将其捆绑在一起,方便打包;
一般纳米材料捆绑装置存在的不足之处在于:一般纳米材料生产完成后都是依靠工人手动将绑绳缠绕在材料外围,然后手动进行打结,整个过程十分缓慢,影响捆绑效率。
实用新型内容
本实用新型的目的在于提供一种纳米材料生产用快速捆绑装置,以解决上述背景技术中提出的问题。
为实现上述目的,本实用新型提供如下技术方案:一种纳米材料生产用快速捆绑装置,包括底板,所述底板下端面中间位置固定焊接有电机且电机的主轴端竖直向下穿过底板,所述底板的上端面中心位置水平设置有转板且转板固定连接着电机的主轴端,所述转板的上端面嵌合设置有重力感应开关且重力感应开关通过电源导线电连接着电机,所述转板的左右两端均设置有夹紧机构,所述底板的上端面左右两侧均竖直固定焊接有支撑架,所述支撑架的上端通过转轴转动交接有卷柱,所述卷柱上均固定缠绕有绑绳且左右两侧所述绑绳的末端搭放在转板上,所述绑绳上等距设置有橡胶软垫,所述橡胶软垫两端均开设有穿孔且绑绳依次穿接在各个所述穿孔内,所述橡胶软垫中间位置固定熔接有螺套,左右两侧所述绑绳末端的所述螺套对齐在一起且此处对齐所述螺套之间通过螺纹配设有卡栓,所述底板正上方前后侧均设置 有熔接机构。
优选的,所述夹紧机构包括第一电动伸缩杆,所述第一电动伸缩杆左右成对水平固定焊接在所述转板的左右两端,所述第一电动伸缩杆的伸缩端竖直固定焊接有夹板。
优选的,所述支撑架为普通伸缩杆。
优选的,所述熔接机构包括第二电动伸缩杆和电烫斗,所述第二电动伸缩杆前后成对水平设置在转板上方前后侧且第二电动伸缩杆通过架体固定连接着底板,同时第二电动伸缩杆处于前后走向水平位置,所述第二电动伸缩杆的伸缩端竖直固定焊接有电烫斗。
优选的,所述电烫斗为竖直方向的长条形。
与现有技术相比,本实用新型的有益效果是:
1、本实用新型底板上方左右两侧的卷柱上的绑绳的末端搭放在转板上,然后使得两侧的绑绳末端橡胶软垫上的螺套对齐在一起且此处对齐的螺套之间通过卡栓连接,从而使得两侧绑绳末端固定连接在一起,然后再将纳米材料堆放在转板上,并且同时压在绑绳上,并且启动第一电动伸缩杆收缩,则左右两侧的夹板向中间靠拢,从而将绑绳和材料一起夹紧;
2、本实用新型转板上的重力感应开关感应达到对应重量时,便使得电机通电运行,则转板便带着纳米材料和绑绳转动起来,则两侧绑绳上端便逐渐缠绕在一起,实现对材料的快速捆绑,然后再启动第二电动伸缩杆伸长且为电烫斗通电,则前后侧的第二电动伸缩杆便带动前后侧的电烫斗向缠绕在一起的绑绳靠拢,最终使得缠绕在一起的绑绳上的橡胶软垫熔接在一起,实现绑绳缠绕端固定对接,然后剪断连接着卷柱的绑绳部分即可。
附图说明
图1为本实用新型一种纳米材料生产用快速捆绑装置整体结构示意图;
图2为本实用新型一种纳米材料生产用快速捆绑装置中的绑绳与橡胶软 垫连接的结构图;
图3为本实用新型一种纳米材料生产用快速捆绑装置中的电烫斗与第二电动伸缩杆连接的俯视结构图。
图中:1、底板;2、支撑架;3、卷柱;4、电烫斗;5、第二电动伸缩杆;6、绑绳;7、重力感应开关;8、转板;9、电机;10、第一电动伸缩杆;11、夹板;12、夹紧机构;13、橡胶软垫;14、穿孔;15、螺套;16、卡栓;17、熔接机构。
具体实施方式
下面将结合本实用新型实施例中的附图,对本实用新型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实用新型一部分实施例,而不是全部的实施例。基于本实用新型中的实施例,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,都属于本实用新型保护的范围。
请参阅图1-3,本实用新型提供一种技术方案:一种纳米材料生产用快速捆绑装置,包括底板1,底板1下端面中间位置固定焊接有电机9且电机9的主轴端竖直向下穿过底板1,底板1的上端面中心位置水平设置有转板8且转板8固定连接着电机9的主轴端,转板8的上端面嵌合设置有重力感应开关7且重力感应开关7通过电源导线电连接着电机9,当堆积在转板8上的纳米材料达到一定设定重量时,重力感应开关7便使得电机9通电运行;转板8的左右两端均设置有夹紧机构12,底板1的上端面左右两侧均竖直固定焊接有支撑架2,支撑架2的上端通过转轴转动交接有卷柱3,卷柱3上均固定缠绕有绑绳6且左右两侧绑绳6的末端搭放在转板8上,绑绳6上等距设置有橡胶软垫13,橡胶软垫13两端均开设有穿孔14且绑绳6依次穿接在各个穿孔14内,穿孔14方便绑绳6与橡胶软垫13连接;橡胶软垫13中间位置固定熔接有螺套15,左右两侧绑绳6末端的螺套15对齐在一起且此处对齐螺套15 之间通过螺纹配设有卡栓16,卡栓16使得左右两侧绑绳6末端固定连接在一起,方便架放材料;底板1正上方前后侧均设置有熔接机构17。
夹紧机构12包括第一电动伸缩杆10,第一电动伸缩杆10左右成对水平固定焊接在转板8的左右两端,第一电动伸缩杆10的伸缩端竖直固定焊接有夹板11,当纳米材料堆放在转板8上时,启动第一电动伸缩杆10收缩,则左右两侧的夹板11向中间靠拢,从而将绑绳6和材料一起夹紧,方便转板8在转动时,稳固带动纳米材料转动,从而方便两侧绑绳6的上端缠绕在一起。
支撑架2为普通伸缩杆,方便卷柱3根据堆放在转板8上的材料高度而调节高度。
熔接机构17包括第二电动伸缩杆5和电烫斗4,第二电动伸缩杆5前后成对水平设置在转板8上方前后侧且第二电动伸缩杆5通过架体固定连接着底板1,同时第二电动伸缩杆5处于前后走向水平位置,第二电动伸缩杆5的伸缩端竖直固定焊接有电烫斗4,当压在纳米材料下方的绑绳6由于转板8的转动而缠绕在一起时,启动第二电动伸缩杆5伸长且为电烫斗4通电,则前后侧的第二电动伸缩杆5便带动前后侧的电烫斗4向缠绕在一起的绑绳6靠拢,最终使得缠绕在一起的绑绳6上的橡胶软垫13熔接在一起,实现绑绳6缠绕端固定对接,然后剪断连接着卷柱3的绑绳6部分即可。
电烫斗4为竖直方向的长条形,方便电烫斗4夹到缠绕在一起的绑绳6上的橡胶软垫13。
工作原理:该实用新型底板1上方左右两侧的卷柱3上的绑绳6的末端搭放在转板8上,然后使得两侧的绑绳6末端橡胶软垫13上的螺套15对齐在一起且此处对齐的螺套15之间通过卡栓16连接,从而使得两侧绑绳6末端固定连接在一起,然后再将纳米材料堆放在转板8上,并且同时压在绑绳6上,并且启动第一电动伸缩杆10收缩,则左右两侧的夹板11向中间靠拢,从而将绑绳6和材料一起夹紧,而转板8上的重力感应开关7感应达到对应 重量时,便使得电机9通电运行,则转板8便带着纳米材料和绑绳6转动起来,则两侧绑绳6上端便逐渐缠绕在一起,实现对材料的快速捆绑,然后再启动第二电动伸缩杆5伸长且为电烫斗4通电,则前后侧的第二电动伸缩杆5便带动前后侧的电烫斗4向缠绕在一起的绑绳6靠拢,最终使得缠绕在一起的绑绳6上的橡胶软垫13熔接在一起,实现绑绳6缠绕端固定对接,然后剪断连接着卷柱3的绑绳6部分即可。
需要说明的是,在本文中,诸如第一和第二等之类的关系术语仅仅用来将一个实体或者操作与另一个实体或操作区分开来,而不一定要求或者暗示这些实体或操作之间存在任何这种实际的关系或者顺序。而且,术语“包括”、“包含”或者其任何其他变体意在涵盖非排他性的包含,从而使得包括一系列要素的过程、方法、物品或者设备不仅包括那些要素,而且还包括没有明确列出的其他要素,或者是还包括为这种过程、方法、物品或者设备所固有的要素。
尽管已经示出和描述了本实用新型的实施例,对于本领域的普通技术人员而言,可以理解在不脱离本实用新型的原理和精神的情况下可以对这些实施例进行多种变化、修改、替换和变型,本实用新型的范围由所附权利要求及其等同物限定。

Claims (5)

  1. 一种纳米材料生产用快速捆绑装置,包括底板(1),其特征在于:所述底板(1)下端面中间位置固定设置有电机(9),所述底板(1)的上端面中心位置水平设置有转板(8)且转板(8)固定连接着电机(9)的主轴端,所述转板(8)的上端面嵌合设置有重力感应开关(7)且重力感应开关(7)电连接着电机(9),所述转板(8)的左右两端均设置有夹紧机构(12),所述底板(1)的上端面左右两侧均竖直固定设置有支撑架(2),所述支撑架(2)的上端转动设置有卷柱(3),所述卷柱(3)上均固定设置有绑绳(6),所述绑绳(6)上等距设置有橡胶软垫(13),所述橡胶软垫(13)两端均开设有穿孔(14),所述橡胶软垫(13)中间位置固定设置有螺套(15),左右两侧所述绑绳(6)末端的所述螺套(15)对齐在一起且此处对齐所述螺套(15)之间设置有卡栓(16),所述底板(1)正上方前后侧均设置有熔接机构(17)。
  2. 根据权利要求1所述的一种纳米材料生产用快速捆绑装置,其特征在于:所述夹紧机构(12)包括第一电动伸缩杆(10),所述第一电动伸缩杆(10)左右成对水平固定设置在所述转板(8)的左右两端,所述第一电动伸缩杆(10)的伸缩端竖直固定设置有夹板(11)。
  3. 根据权利要求1所述的一种纳米材料生产用快速捆绑装置,其特征在于:所述支撑架(2)为普通伸缩杆。
  4. 根据权利要求1所述的一种纳米材料生产用快速捆绑装置,其特征在于:所述熔接机构(17)包括第二电动伸缩杆(5)和电烫斗(4),所述第二电动伸缩杆(5)水平设置在转板(8)上方前后侧且第二电动伸缩杆(5)固定连接着底板(1),所述第二电动伸缩杆(5)的伸缩端竖直固定设置有电烫斗(4)。
  5. 根据权利要求4所述的一种纳米材料生产用快速捆绑装置,其特征在于:所述电烫斗(4)为竖直方向的长条形。
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