WO2022048458A1 - 光纤预制棒检测平台及套袋方法 - Google Patents

光纤预制棒检测平台及套袋方法 Download PDF

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Publication number
WO2022048458A1
WO2022048458A1 PCT/CN2021/113773 CN2021113773W WO2022048458A1 WO 2022048458 A1 WO2022048458 A1 WO 2022048458A1 CN 2021113773 W CN2021113773 W CN 2021113773W WO 2022048458 A1 WO2022048458 A1 WO 2022048458A1
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support unit
optical fiber
fiber preform
support
platform
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PCT/CN2021/113773
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English (en)
French (fr)
Inventor
张虎
俞佳宾
李凡
眭立洪
施国棋
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江苏永鼎光纤科技有限公司
江苏永鼎股份有限公司
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Publication of WO2022048458A1 publication Critical patent/WO2022048458A1/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
    • B65B5/00Packaging individual articles in containers or receptacles, e.g. bags, sacks, boxes, cartons, cans, jars
    • B65B5/04Packaging single articles
    • B65B5/045Packaging single articles in bags
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01MTESTING STATIC OR DYNAMIC BALANCE OF MACHINES OR STRUCTURES; TESTING OF STRUCTURES OR APPARATUS, NOT OTHERWISE PROVIDED FOR
    • G01M11/00Testing of optical apparatus; Testing structures by optical methods not otherwise provided for

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  • the invention relates to the technical field of optical fiber preform processing, in particular to an optical fiber preform detection platform and a bagging method.
  • the quality of the optical fiber preform plays a decisive role in the quality of the optical fiber cable. If the optical fiber preform has defects such as foreign matter inclusions, air bubbles, scratches, etc., these defects are often prone to abnormal production such as blockage and fiber breakage during the drawing process. On the one hand, it affects the production efficiency of optical fiber preform drawing and produces more production scraps. On the other hand, it brings greater processing problems to subsequent processing procedures such as optical fiber screening and testing, which will undoubtedly increase unnecessary costs. Therefore, for the manufacture of optical fibers, defect detection inside the optical fiber preform is very important, and after the inspection is completed, the optical fiber preform needs to be covered with a dust-free bag to prevent contamination. The existing method is to first remove the optical fiber preform from the detection platform, and because the preform is long, it needs to be tilted and then bagged. This production method has low efficiency and poor safety.
  • the technical problem to be solved by the present invention is to provide an optical fiber preform detection platform with a reasonable structure and capable of assisting bagging after detection.
  • the present invention provides an optical fiber preform inspection platform, including a platform body, and the platform body is provided with a first support unit, a second support unit and a third support unit in sequence, the first support unit It includes a first lift platform and a first lift drive member, the first lift platform is provided with a first support member, and the second support unit includes a second lift platform and a second lift drive member, the second lift drive A second support member is provided on the table, the third support unit includes a third lift table and a third lift drive member, the third lift table is provided with a third support member, and the bottom of the second support unit is provided with a third support member.
  • the position of the second support unit between the first support unit and the second support unit can be adjusted by the translation assembly, the first support unit
  • the supporting unit, the second supporting unit and the third supporting unit can cooperate in pairs to alternately support the optical fiber preform.
  • the platform body is further provided with a fourth support unit, the fourth support unit is arranged between the second support unit and the third support unit, and the fourth support unit is assembled on the On the translation assembly, in the process of bagging the optical fiber preform, the fourth supporting unit cooperates with the first supporting unit, and the second supporting unit cooperates with the third supporting unit to alternately support the optical fiber preform.
  • the structures of the first support unit, the second support unit and the third support unit are the same.
  • the first support unit further includes a support seat, a lifting guide rail is arranged on the support seat, and the first lifting platform is slidably connected to the lifting guide rail.
  • the first lift driving member is an electric push rod.
  • the first support member includes two support rollers.
  • the translation assembly includes a translation guide rail, and the second support unit is slidably connected to the translation guide rail.
  • the two ends of the translation guide rail are provided with blocks.
  • a detection light is also provided on the platform body.
  • the detection lamp is adsorbed on the platform body through a magnetic base.
  • the present invention also provides a method for bagging an optical fiber preform, which is applied to any of the above-mentioned optical fiber preform detection platforms, including: in the process of bagging the optical fiber preform, the second support unit passes through the The translation assembly adjusts the position between the first support unit and the second support unit, and the first support unit, the second support unit and the third support unit cooperate in pairs to support the optical fiber preform alternately.
  • the optical fiber preform detection platform of the present invention can stably support the optical fiber preform by setting three supporting units, so as to facilitate the detection of the optical fiber preform.
  • the rod is supported to assist in bagging, and the detection platform has good stability and high safety.
  • FIG. 1 is a schematic structural diagram of an optical fiber preform detection platform in a preferred embodiment of the present invention
  • Fig. 2 is the working state schematic diagram of the optical fiber preform detection platform in the preferred embodiment of the present invention.
  • FIG. 3 is a schematic structural diagram of a first support unit in a preferred embodiment of the present invention.
  • Marking description 1. Optical fiber preform; 100, Platform body; 110, First support unit; 111, First lift table; 112, First lift drive; 113, Support roller; 114, Support seat; 120, the second support unit; 130, the third support unit; 140, the fourth support unit; 150, the translation guide rail; 151, the block;
  • the optical fiber preform inspection platform includes a platform body 100.
  • the platform body 100 is provided with a first support unit 110 and a second support unit in sequence. 120 and the third support unit 130.
  • the structures of the first support unit 110 , the second support unit 120 and the third support unit 130 are the same.
  • the first support unit 110 includes a first lift platform 111 and a first lift drive member 112
  • the first lift platform 111 is provided with a first support member
  • the second support unit 120 includes a second lift platform and a first lift drive member 112 .
  • Two lifting and lowering driving members the second lifting and driving platform is provided with a second supporting member
  • the third supporting unit 130 includes a third lifting platform and a third lifting and driving member
  • the third lifting platform is provided with a third supporting member
  • the second supporting member The bottom of the unit 120 is provided with a translation component.
  • a supporting unit 110 , a second supporting unit 120 and a third supporting unit 130 can cooperate in pairs to alternately support the optical fiber preform 1 .
  • the rod 1 is supported, and the dust-free bag continues to be pushed forward to the first support unit 110.
  • the second support unit 120 is moved to the end of the translation assembly close to the first support unit 110, and the second lift drive member drives the second support unit 110.
  • the lift table rises, the first lift table 111 is driven down by the first lift drive member 112, the optical fiber preform 1 is supported by the second support unit 120 and the third support unit 130, and the dust-free bag continues to move forward until all the optical fibers are covered On the preform 1, the bagging is completed.
  • the platform body 100 is further provided with a fourth support unit 140, the fourth support unit 140 is disposed between the second support unit 120 and the third support unit 130, and the fourth support unit 140 is assembled to the translation assembly
  • the fourth supporting unit 140 cooperates with the first supporting unit 110
  • the second supporting unit 120 cooperates with the third supporting unit 130
  • the first support unit 110 further includes a support base 114 , the support base 114 is provided with a lifting guide rail 115 , and the first lifting platform 111 is slidably connected to the lifting guide rail 115 , which can increase the stability of the structure.
  • the first lift driving member 112 is an electric push rod. In other embodiments, the first lift driving member 112 may be a structure such as a lift cylinder.
  • the first support member includes two support rollers 113, the support rollers 113 are assembled on the bearing seat, and the two support rollers 113 cooperate to support the optical fiber preform 1, so as to ensure that the optical fiber preform 1 rotates more smoothly, which is convenient for the optical fiber preform 1 to rotate. test.
  • the translation assembly includes a translation guide rail 150
  • the second support unit is slidably connected to the translation guide rail 150 .
  • the second support unit is connected to the translation guide rail 150 through the bottom sliding platform.
  • blocks 151 are provided at both ends of the translation guide rail 150 .
  • the second support unit is prevented from sliding out of the translation guide rail 150 .
  • a detection light 160 is further provided on the platform body 100 .
  • the detection light 160 is adsorbed on the platform body 100 through a magnetic base, so that the position of the detection light 160 can be easily adjusted.
  • the platform body 100 is further provided with a tool table 170, which is convenient for storing testing tools.
  • the present invention also provides a method for bagging an optical fiber preform, which is applied to the above-mentioned optical fiber preform detection platform.
  • the method includes: in the process of bagging the optical fiber preform, the second support unit passes the translation component. The position between the first support unit and the second support unit is adjusted, and the first support unit, the second support unit and the third support unit cooperate in pairs to support the optical fiber preform alternately.

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  • Chemical & Material Sciences (AREA)
  • Analytical Chemistry (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Investigating Materials By The Use Of Optical Means Adapted For Particular Applications (AREA)

Abstract

一种光纤预制棒检测平台及套袋方法,光纤预制棒检测平台包括平台本体(100),在平台本体(100)上依次设有第一支撑单元(110)、第二支撑单元(120)和第三支撑单元(130),第一支撑单元(110)包括第一升降台(111)和第一升降驱动件(112),第一升降台(111)上设有第一支撑件,第二支撑单元(120)包括第二升降台和第二升降驱动件,第二升降台上设有第二支撑件,第三支撑单元(130)包括第三升降台和第三升降驱动件,第三升降台上设有第三支撑件,第二支撑单元(120)的底部设有平移组件,第二支撑单元(120)可通过平移组件调节在第一支撑单元(110)和第三支撑单元(130)之间的位置。

Description

光纤预制棒检测平台及套袋方法 技术领域
本发明涉及光纤预制棒加工技术领域,特别涉及一种光纤预制棒检测平台及套袋方法。
背景技术
光纤预制棒的质量对光纤光缆的质量起着决定性的作用,如果光纤预制棒中存在着异物夹杂、气泡、刮伤等缺陷,这些缺陷往往在拉丝过程中容易出现堵模、断纤等异常生产情况,一方面影响光纤预制棒拉丝的生产效率并产生较多的生产报废,另一方面为光纤筛选、测试等后道处理工序带来较大的处理问题,无疑会增加不必要的成本。因此,对于光纤的制造来说,光纤预制棒内部的缺陷检测至关重要,而在完成检测后,需要将光纤预制棒套上无尘袋,以防止被污染。现有的方式是先将光纤预制棒从检测平台搬下,而由于预制棒长度较长,需要将其倾斜后进行套袋,此种生产方式效率较低,安全性较差。
发明内容
本发明要解决的技术问题是提供一种结构合理、可在检测后辅助套袋的光纤预制棒检测平台。
为了解决上述问题,本发明提供了一种光纤预制棒检测平台,包括平台本体,所述平台本体上依次设有第一支撑单元、第二支撑单元和第三支撑单元,所述第一支撑单元包括第一升降台和第一升降驱动件,所述第一升降台上设有第一支撑件,所述第二支撑单元包括第二升降台和第二升降驱动件,所述第二升降驱动台上设有第二支撑件,所述第三支撑单元包括第三升降台和第三升降驱动件,所述第三升降台上设有第三支撑件,所述第二支撑单元的底部设有平移组件,在对光纤预制棒进行套袋的过程中,所述第二支撑单元可通过所述平移组件调节在所述第一支撑单元和第二支撑单元之间的位置,所述第一支撑单元、第二支撑单元和第三支撑单元可两两配合交替对光纤预制棒进行支撑。
作为本发明的进一步改进,所述平台本体上还设有第四支撑单元,所述第四支撑单元设于第二支撑单元和第三支撑单元之间,所述第四支撑单元装配于所述平移组件上,在对光纤预制棒进行套袋的过程中,所述第四支撑单元与第一支撑单元配合,所述第二支撑单元与第三支撑单元配合,交替对光纤预制棒进行支撑。
作为本发明的进一步改进,所述第一支撑单元、第二支撑单元和第三支撑单元结构相同。
作为本发明的进一步改进,所述第一支撑单元还包括支撑座,所述支撑座上设有升降导轨,所述第一升降台滑动连接于所述升降导轨上。
作为本发明的进一步改进,所述第一升降驱动件为电动推杆。
作为本发明的进一步改进,所述第一支撑件包括两支撑滚轮。
作为本发明的进一步改进,所述平移组件包括平移导轨,所述第二支撑单元滑动连接于所述平移导轨上。
作为本发明的进一步改进,所述平移导轨的两端设有挡块。
作为本发明的进一步改进,所述平台本体上还设有检测灯。
作为本发明的进一步改进,所述检测灯通过磁性底座吸附于所述平台本体上。
本发明还提供了一种光纤预制棒套袋方法,应用于上述任一所述的光纤预制棒检测平台,包括:在对光纤预制棒进行套袋的过程中,所述第二支撑单元通过所述平移组件调节在所述第一支撑单元和第二支撑单元之间的位置,所述第一支撑单元、第二支撑单元和第三支撑单元两两配合交替对光纤预制棒进行支撑。
本发明的有益效果:
本发明的光纤预制棒检测平台通过设置三个支撑单元,可以对光纤预制棒进行稳定支撑,便于对其进行检测,同时,三个支撑单元可两两相互配合在套袋过程中交替对光纤预制棒进行支撑,以辅助套袋,该检测平台稳定性好,安全性高。
上述说明仅是本发明技术方案的概述,为了能够更清楚了解本发明的技术手段,而可依照说明书的内容予以实施,并且为了让本发明的上述和其他目的、特征和优点能够更明显易懂,以下特举较佳实施例,并配合附图,详细说明如下。
附图说明
图1是本发明优选实施例中光纤预制棒检测平台的结构示意图;
图2是本发明优选实施例中光纤预制棒检测平台的工作状态示意图;
图3是本发明优选实施例中第一支撑单元的结构示意图。
标记说明:1、光纤预制棒;100、平台本体;110、第一支撑单元;111、第一升降台;112、第一升降驱动件;113、支撑滚轮;114、支撑座;115、升降导轨;120、第二支撑单元;130、第三支撑单元;140、第四支撑单元;150、平移导轨;151、挡块;160、检测灯;170、工具台。
具体实施方式
下面结合附图和具体实施例对本发明作进一步说明,以使本领域的技术人员可以更好地理解本发明并能予以实施,但所举实施例不作为对本发明的限定。
如图1-2所示,为本发明优选实施例中的光纤预制棒检测平台,该光纤预制棒检测平台包括平台本体100,平台本体100上依次设有第一支撑单元110、第二支撑单元120和第三支撑单元130。在本实施例中,第一支撑单元110、第二支撑单元120和第三支撑单元130结构相同。
如图3所示,第一支撑单元110包括第一升降台111和第一升降驱动件112,第一升降台111上设有第一支撑件,第二支撑单元120包括第二升降台和第二升降驱动件,第二升降驱动台上设有第二支撑件,第三支撑单元130包括第三升降台和第三升降驱动件,第三升降台上设有第三支撑件,第二支撑单元120的底部设有平移组件,在对光纤预制棒1进行套袋的过程中,第二支撑单元120可通过平移组件调节在第一支撑单元110和第二支撑单元120之间的位置,第一支撑单元110、第二支撑单元120和第三支撑单元130可两两配合交替对光纤预制棒1进行支撑。
具体的,在完成检测后,套袋时,先将第二支撑单元120移动至平移组件上靠近第三支撑单元130一端,通过第三升降驱动件驱动第三升降台下降,由第一支撑单元110和第二支撑单元120将光纤预制棒1支撑,然后将无尘袋套在光纤预制棒1上靠近第三支撑单元130的一端,由于第二支撑单元130的阻挡,无尘袋只能套至第二支撑单元130处,接着,通过第三升降驱动件驱动第三升降台上升,第二升降驱动件驱动第二升降台下降,由第一支撑单元110和第三支撑单元130将光纤预制棒1支撑,将无尘袋继续向前套至第一支撑单元110处,再接着,将第二支撑单元120移动至平移组件上靠近第一支撑单元110一端,第二升降驱动件驱动第二升降台上升,通过第一升降驱动件112驱动第一升降台111下降,由第二支撑单元120和第三支撑单元130将光纤预制棒1支撑,将无尘袋继续向前至全部套在光纤预制棒1上,即完成套袋。
在其中一实施例中,平台本体100上还设有第四支撑单元140,第四支撑单元140设于第二支撑单元120和第三支撑单元130之间,第四支撑单元140装配于平移组件上,在对光纤预制棒进行套袋的过程中,第四支撑单元140与第一支撑单元110配合,第二支撑单元120与第三支撑单元130配合,交替对光纤预制棒进行支撑,直至将无尘袋继续向前至全部套在光纤预制棒1上。
在其中一实施例中,第一支撑单元110还包括支撑座114,支撑座114上设有升降导轨115,第一升降台111滑动连接于升降导轨115上,可以增加结构的稳定性。
在其中一实施例中,第一升降驱动件112为电动推杆。在其他实施例中,第一升降驱动件112可以为升降气缸等结构。
在本实施例中,第一支撑件包括两支撑滚轮113,支撑滚轮113装配于轴承座上,两支撑滚轮113配合对光纤预制棒1进行支撑,保证光纤预制棒1转动更加顺畅,便于对其进行检测。
在其中一实施例中,平移组件包括平移导轨150,第二支撑单元滑动连接于平移导轨150上。具体的,第二支撑单元通过底部滑台与平移导轨150连接。
优选的,平移导轨150的两端设有挡块151。避免第二支撑单元滑出平移导轨150。
在其中一实施例中,平台本体100上还设有检测灯160。优选的,检测灯 160通过磁性底座吸附于平台本体100上,便于调节检测灯160的位置。
在其中一实施例中,平台本体100上还设有工具台170,便于存放检测工具。
本发明还提供了一种光纤预制棒套袋方法,应用于上述光纤预制棒检测平台,该方法包括:在对光纤预制棒进行套袋的过程中,所述第二支撑单元通过所述平移组件调节在所述第一支撑单元和第二支撑单元之间的位置,所述第一支撑单元、第二支撑单元和第三支撑单元两两配合交替对光纤预制棒进行支撑。
以上实施例仅是为充分说明本发明而所举的较佳的实施例,本发明的保护范围不限于此。本技术领域的技术人员在本发明基础上所作的等同替代或变换,均在本发明的保护范围之内。本发明的保护范围以权利要求书为准。

Claims (10)

  1. 光纤预制棒检测平台,其特征在于,包括平台本体,所述平台本体上依次设有第一支撑单元、第二支撑单元和第三支撑单元,所述第一支撑单元包括第一升降台和第一升降驱动件,所述第一升降台上设有第一支撑件,所述第二支撑单元包括第二升降台和第二升降驱动件,所述第二升降驱动台上设有第二支撑件,所述第三支撑单元包括第三升降台和第三升降驱动件,所述第三升降台上设有第三支撑件,所述第二支撑单元的底部设有平移组件,在对光纤预制棒进行套袋的过程中,所述第二支撑单元可通过所述平移组件调节在所述第一支撑单元和第二支撑单元之间的位置,所述第一支撑单元、第二支撑单元和第三支撑单元可两两配合交替对光纤预制棒进行支撑。
  2. 如权利要求1所述的光纤预制棒检测平台,其特征在于,所述平台本体上还设有第四支撑单元,所述第四支撑单元设于第二支撑单元和第三支撑单元之间,所述第四支撑单元装配于所述平移组件上,在对光纤预制棒进行套袋的过程中,所述第四支撑单元与第一支撑单元配合,所述第二支撑单元与第三支撑单元配合,交替对光纤预制棒进行支撑。
  3. 如权利要求1所述的光纤预制棒检测平台,其特征在于,所述第一支撑单元、第二支撑单元和第三支撑单元结构相同。
  4. 如权利要求3所述的光纤预制棒检测平台,其特征在于,所述第一支撑单元还包括支撑座,所述支撑座上设有升降导轨,所述第一升降台滑动连接于所述升降导轨上。
  5. 如权利要求3所述的光纤预制棒检测平台,其特征在于,所述第一升降驱动件为电动推杆。
  6. 如权利要求3所述的光纤预制棒检测平台,其特征在于,所述第一支撑件包括两支撑滚轮。
  7. 如权利要求1所述的光纤预制棒检测平台,其特征在于,所述平移组件包括平移导轨,所述第二支撑单元滑动连接于所述平移导轨上。
  8. 如权利要求7所述的光纤预制棒检测平台,其特征在于,所述平移导轨的两端设有挡块。
  9. 如权利要求1所述的光纤预制棒检测平台,其特征在于,所述平台本体上还设有检测灯,所述检测灯通过磁性底座吸附于所述平台本体上。
  10. 一种光纤预制棒套袋方法,应用于如权利要求1-9任一所述的光纤预制棒检测平台,其特征在于,在对光纤预制棒进行套袋的过程中,所述第二支撑单元通过所述平移组件调节在所述第一支撑单元和第二支撑单元之间的位置,所述第一支撑单元、第二支撑单元和第三支撑单元两两配合交替对光纤预制棒进行支撑。
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