CN202649566U - Bundling machine for continuously producing optical cable - Google Patents

Bundling machine for continuously producing optical cable Download PDF

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Publication number
CN202649566U
CN202649566U CN 201220299620 CN201220299620U CN202649566U CN 202649566 U CN202649566 U CN 202649566U CN 201220299620 CN201220299620 CN 201220299620 CN 201220299620 U CN201220299620 U CN 201220299620U CN 202649566 U CN202649566 U CN 202649566U
Authority
CN
China
Prior art keywords
rotating shaft
bundling machine
spindle
poly
optical cable
Prior art date
Legal status (The legal status 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 status listed.)
Expired - Fee Related
Application number
CN 201220299620
Other languages
Chinese (zh)
Inventor
孙义兴
何吉焱
许建国
陈曲
刘�东
陈治均
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Chengdu Hengtong Optical Communication Co Ltd
Original Assignee
Chengdu Hengtong Optical Communication Co Ltd
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 Chengdu Hengtong Optical Communication Co Ltd filed Critical Chengdu Hengtong Optical Communication Co Ltd
Priority to CN 201220299620 priority Critical patent/CN202649566U/en
Application granted granted Critical
Publication of CN202649566U publication Critical patent/CN202649566U/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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Abstract

The utility model discloses a bundling machine for continuously producing optical cables. The bundling machine comprises a wire gathering spindle (1) and a hollow spindle (2), wherein the wire gathering spindle (1) and the hollow spindle (2) are positioned at the same horizontal position; one end of the wire gathering spindle (1) and one end of the hollow spindle (2) are close to each other, and the other two ends are installed on rigid machine bases (3) through a bearing; the wire gathering spindle (1) and the hollow spindle (2) are driven to rotate by motors respectively; at least two yarn bundles (4) and an aircraft (5) are disposed on the wire gathering spindle (1) and the hollow spindle (2); the aircraft (5) is disposed at the end where the wire gathering spindle (1) and the hollow spindle (2) are close with each other through a bearing; and the aircraft (5) includes two mutually symmetrical connecting shafts (6) and a hollow shaft (7) disposed on the connecting shafts (6). The bundling machine has the beneficial effects that the arrangement of multiple yarn bundles enables prolonged time for continuous production, and thus the operation amount is reduced, and productivity is improved.

Description

Optical cable continuous production formula bundling machine
Technical field
The utility model relates to a kind of optical cable continuous production formula bundling machine.
Background technology
Optical cable mainly is by light transmitting fiber (thin glass fiber such as hair) and plastic protective sleeve pipe and plastic peel formation.Optical cable is the main delivery means of the various Information Networks of current information society.
During optical cable is produced, at first several optical fiber boundlings are encased by the PBT plastics, be called sleeve pipe this moment, then many sleeve pipes are by the rotation of twisting point high speed positive and negative alternate, and the bundling machine high-speed coiling is fixed, by the traction take-up, make stranding, a yarn group generally all is set on the existing bundling machine, needs in the production constantly to change yarn group, affected production.
The utility model content
The purpose of this utility model namely is to overcome the deficiency of present technology, and a kind of optical cable continuous production formula bundling machine is provided, and solves existing bundling machine and changes yarn group frequency height, the drawback that impact is produced.
The utility model is achieved through the following technical solutions: optical cable continuous production formula bundling machine, comprise poly-line rotating shaft and hollow rotating shaft, described poly-line rotating shaft and hollow rotating shaft are positioned at the same level position, both ends are adjacent to each other, the other end is installed on the stiff stand by bearing, all be provided with at least two yarn groups and aircraft on poly-line rotating shaft and the hollow rotating shaft, described aircraft is installed in poly-line rotating shaft and the mutual close end of hollow rotating shaft by bearing, aircraft comprises two symmetrical connecting shafts and the quill shaft that is installed on the connecting shaft, and the bundle yarn on described yarn is rolled into a ball is connected to cable core by quill shaft.
Be provided with electromagnetism tension force damper in the described quill shaft.
Be provided with a plurality of ducts in the described poly-line rotating shaft, be used for passing through of optical fiber.
Be provided with a center pit in the described hollow rotating shaft, be used for passing through of cable core.
But described motor is the variable speed drive motor of positive and negative rotation.
The beneficial effects of the utility model are: a plurality of yarn group is set, so that the continuous production time increases, has so not only reduced operational ton, but also improved yield-power.
Description of drawings
Fig. 1 is structural representation of the present utility model;
Fig. 2 is the structural representation of aircraft;
Fig. 3 is the side view of poly-line rotating shaft;
Fig. 4 is the side view of hollow rotating shaft;
Among the figure, 1-gathers line rotating shaft, 2-hollow rotating shaft, 3-support, 4-yarn group, 5-aircraft, 6-connecting shaft, 7-quill shaft, 8-duct, 9-center pit.
Embodiment
The utility model is described in further detail below in conjunction with embodiment, but structure of the present utility model is not limited only to following examples:
[embodiment]
Shown in Fig. 1~4, optical cable continuous production formula bundling machine, comprise poly-line rotating shaft 1 and hollow rotating shaft 2, described poly-line rotating shaft 1 and hollow rotating shaft 2 are positioned at the same level position, both ends are adjacent to each other, the other end is installed on the stiff stand 3 by bearing, poly-line rotating shaft 1 and hollow rotating shaft 2 rotate by driven by motor respectively, all be provided with at least two yarn groups 4 and aircraft 5 on poly-line rotating shaft 1 and the hollow rotating shaft 2, described aircraft 5 is installed in poly-line rotating shaft 1 and hollow rotating shaft 2 mutual close ends by bearing, aircraft 5 comprises two symmetrical connecting shafts 6 and the quill shaft 7 that is installed on the connecting shaft 6, and the bundle yarn that described yarn is rolled into a ball on 4 is connected to cable core by quill shaft 7.
Be provided with electromagnetism tension force damper in the described quill shaft 7, strengthen the tension force of pricking yarn, can twine more tightly cable core.
Be provided with a plurality of ducts 8 in the described poly-line rotating shaft 1, be used for passing through of optical fiber.
Be provided with a center pit 9 in the described hollow rotating shaft 2, be used for passing through of cable core.
But described motor is the variable speed drive motor of positive and negative rotation.
Principle of work of the present utility model: during work, poly-line rotating shaft 1 and hollow rotating shaft 2 by driven by motor, be the positive and negative alternate rotation, and both rotation directions are always opposite, and several optical fiber passing hole channels 8 enter center pit 9, because the opposite rotation of poly-line rotating shaft 1 and hollow rotating shaft 2, optical fiber namely is stranded in together becomes cable core, after bundle yarn in the yarn group 4 is emitted, cross quill shaft 7 to cable core, cable core is wrapped.
All be provided with two yarn groups 4 on the poly-line rotating shaft 1 of present embodiment and the hollow rotating shaft 2, after a yarn group 4 uses, can be transformed into rapidly in another yarn group 4, and do not affect production, increased like this time of continuous production.

Claims (5)

1. optical cable continuous production formula bundling machine, it is characterized in that: comprise poly-line rotating shaft (1) and hollow rotating shaft (2), described poly-line rotating shaft (1) and hollow rotating shaft (2) are positioned at the same level position, both ends are adjacent to each other, the other end is installed on the stiff stand (3) by bearing, poly-line rotating shaft (1) and hollow rotating shaft (2) rotate by driven by motor respectively, all be provided with at least two yarn groups (4) and aircraft (5) on poly-line rotating shaft (1) and the hollow rotating shaft (2), described aircraft (5) is installed in poly-line rotating shaft (1) and the mutual close end of hollow rotating shaft (2) by bearing, aircraft (5) comprises two symmetrical connecting shafts (6) and is installed in quill shaft (7) on the connecting shaft (6) that the bundle yarn in the described yarn group (4) is connected to cable core by quill shaft (7).
2. optical cable continuous production formula bundling machine according to claim 1 is characterized in that: be provided with electromagnetism tension force damper in the described quill shaft (7).
3. optical cable continuous production formula bundling machine according to claim 2 is characterized in that: be provided with a plurality of ducts (8) in the described poly-line rotating shaft (1), be used for passing through of optical fiber.
4. optical cable continuous production formula bundling machine according to claim 3 is characterized in that: be provided with a center pit (9) in the described hollow rotating shaft (2), be used for passing through of cable core.
5. optical cable continuous production formula bundling machine according to claim 4 is characterized in that: but described motor is the variable speed drive motor of positive and negative rotation.
CN 201220299620 2012-06-26 2012-06-26 Bundling machine for continuously producing optical cable Expired - Fee Related CN202649566U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN 201220299620 CN202649566U (en) 2012-06-26 2012-06-26 Bundling machine for continuously producing optical cable

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN 201220299620 CN202649566U (en) 2012-06-26 2012-06-26 Bundling machine for continuously producing optical cable

Publications (1)

Publication Number Publication Date
CN202649566U true CN202649566U (en) 2013-01-02

Family

ID=47418654

Family Applications (1)

Application Number Title Priority Date Filing Date
CN 201220299620 Expired - Fee Related CN202649566U (en) 2012-06-26 2012-06-26 Bundling machine for continuously producing optical cable

Country Status (1)

Country Link
CN (1) CN202649566U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103543507A (en) * 2013-10-31 2014-01-29 烽火通信科技股份有限公司 Yarn binding device and method for producing optical cable of dry-type structure

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103543507A (en) * 2013-10-31 2014-01-29 烽火通信科技股份有限公司 Yarn binding device and method for producing optical cable of dry-type structure
CN103543507B (en) * 2013-10-31 2015-09-30 烽火通信科技股份有限公司 A kind of yarn bundler for the production of dry construction optical cable and method

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Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
C17 Cessation of patent right
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20130102

Termination date: 20130626