CN105297177A - Industrial filament for braiding cable for ship - Google Patents

Industrial filament for braiding cable for ship Download PDF

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Publication number
CN105297177A
CN105297177A CN201510734118.1A CN201510734118A CN105297177A CN 105297177 A CN105297177 A CN 105297177A CN 201510734118 A CN201510734118 A CN 201510734118A CN 105297177 A CN105297177 A CN 105297177A
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CN
China
Prior art keywords
filament
spun fibre
industrial filament
cable
spinning
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.)
Pending
Application number
CN201510734118.1A
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Chinese (zh)
Inventor
马学东
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.)
ANHUI TENGYUE ALUMINIUM PLASTIC Co Ltd
Original Assignee
ANHUI TENGYUE ALUMINIUM PLASTIC 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 ANHUI TENGYUE ALUMINIUM PLASTIC Co Ltd filed Critical ANHUI TENGYUE ALUMINIUM PLASTIC Co Ltd
Priority to CN201510734118.1A priority Critical patent/CN105297177A/en
Publication of CN105297177A publication Critical patent/CN105297177A/en
Pending legal-status Critical Current

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Abstract

The invention discloses an industrial filament for braiding a cable for a ship, relating to the technical field of braiding of cables for chips. The cable comprises the following processing steps: solid-phase polymerization and spinning, tensile heat setting, assistant coating and the like. A layer of amino-silicone series compound coats the surface of an original SBS industrial filament as an assistant and is subjected to cross-linking reaction on original spinning oil (the main component of the oiling agent is high-level fatty acid ester) on the surface of the filament to form a flexibly fastened thin-film layer. The thin-film layer has good adhesiveness on polyester fiber, can effectively prevent water and resist corrosion to seawater, has a good protecting effect on the cable; meanwhile, the thin-film layer is attached to the surface of the SBS fiber, so that the friction between the fibers is greatly alleviated; the corrosion resistance, the saline-alkali tolerance and the like of a gear and the cable made of the industrial filament for a marine operation are greatly improved; and the service life of the cable is effectively prolonged.

Description

A kind of industrial filament for working out wheel Cable rope for ship
Technical field:
The present invention relates to wheel Cable rope for ship knitting skill field, being specifically related to a kind of industrial filament for taking turns Cable rope for ship.
Background technology:
Hawser is the flat rope for tying boats and ships.Requirement possesses tension, shock resistance, wear-resistant, the pliable and tough performance such as light and soft.The weaving being different from other hawsers is needed when establishment wheel Cable rope for ship, and it is also very high to the requirement of establishment material, the hawser of common material establishment does not have good corrosion resistance and saline-alkali tolerance, and corrosion resistance and saline-alkali tolerance are concerning particularly important wheel Cable rope for ship, therefore great majority wheel Cable rope for ship all adopts industrial filament to work out as raw material, but the kind of industrial filament is a lot, different technique and the hawser produced of filling a prescription have different effects.
Summary of the invention:
It is remarkable that technical problem to be solved by this invention is to provide a kind of saline-alkali tolerance energy, and corrosion resistance is good, and has the industrial filament for taking turns Cable rope for ship resisting seawater ability.
For taking turns an industrial filament for Cable rope for ship, production technology comprise the following steps:
(1) solid phase: by SBS particle under inert gas shielding, 100-180 degree Celsius of lower polycondensation reaction, obtains high viscosity SBS particle;
(2) spinning: gained high viscosity SBS particle is become molten state spinning solution at screw extruder through 270 ~ 330 degrees Celsius of extrusion moltens, then amino silicon oil emulsion is added, strand is formed again through filament spinning component spinning under 120 ~ 280 bar pressure conditions, strand forms as-spun fibre by cooling quench cooling curing, and the addition of amino silicon oil emulsion is 1/5 of high viscosity SBS granular mass;
(3) stretching HEAT SETTING: oiled by as-spun fibre, through multistage drafting, then soaks 20-30 minute by the as-spun fibre of upper oil excessively, then carries out HEAT SETTING in desalted water;
(4) auxiliary agent coating: utilize high speed coating device, auxiliary agent is coated on as-spun fibre with the coating amount of the 1-1.5% of as-spun fibre quality, then through winding, obtain the industrial filament for steamer hawser;
Described auxiliary agent by:
Proportioning forms;
The present invention has one deck amino silicone series compound to make auxiliary agent at the surface application of original SBS industrial filament, cross-linking reaction is there is with the original spinning oil of filament surface (finish main component is higher fatty acids fat), form the thin layer of flexible fastener, this thin layer not only has good tack with polyester fiber, and can effective waterproof, the erosion of opposing seawater, to hawser, there is good protective effect, simultaneously this thin layer is attached to SBS fiber surface and greatly reduces friction between fiber and fiber, ocean operation rigging is made with this industrial filament, the abilities such as the corrosion resistance saline-alkali tolerance of hawser improve the service life effectively extending hawser greatly.
Detailed description of the invention:
The technological means realized to make the present invention, creation characteristic, reaching object and effect is easy to understand, below in conjunction with concrete example, setting forth the present invention further.
Embodiment 1:
For taking turns an industrial filament for Cable rope for ship, production technology comprise the following steps:
(1) solid phase: by SBS particle under inert gas shielding, 180 degrees Celsius of lower polycondensation reactions, obtains high viscosity SBS particle;
(2) spinning: gained high viscosity SBS particle is become molten state spinning solution at screw extruder through 30 degrees Celsius of extrusion moltens, then amino silicon oil emulsion is added, strand is formed again through filament spinning component spinning under 280 bar pressure conditions, strand forms as-spun fibre by cooling quench cooling curing, and the addition of amino silicon oil emulsion is 1/5 of high viscosity SBS granular mass;
(3) stretching HEAT SETTING: oiled by as-spun fibre, through multistage drafting, then soaks 30 minutes by the as-spun fibre of upper oil excessively, then carries out HEAT SETTING in desalted water;
(4) auxiliary agent coating: utilize high speed coating device, by auxiliary agent with 1.5% of as-spun fibre quality coating amount be coated on as-spun fibre, then through winding, obtain the industrial filament for steamer hawser;
Described auxiliary agent by:
Proportioning forms;
Embodiment 2: a kind of industrial filament for taking turns Cable rope for ship, production technology comprise the following steps:
(1) solid phase: by SBS particle under inert gas shielding, 100 degrees Celsius of lower polycondensation reactions, obtains high viscosity SBS particle;
(2) spinning: gained high viscosity SBS particle is become molten state spinning solution at screw extruder through 270 degrees Celsius of extrusion moltens, then amino silicon oil emulsion is added, strand is formed again through filament spinning component spinning under 120 bar pressure conditions, strand forms as-spun fibre by cooling quench cooling curing, and the addition of amino silicon oil emulsion is 1/5 of high viscosity SBS granular mass;
(3) stretching HEAT SETTING: oiled by as-spun fibre, through multistage drafting, then soaks 20 minutes by the as-spun fibre of upper oil excessively, then carries out HEAT SETTING in desalted water;
(4) auxiliary agent coating: utilize high speed coating device, by auxiliary agent with 1% of as-spun fibre quality coating amount be coated on as-spun fibre, then through winding, obtain the industrial filament for steamer hawser;
Described auxiliary agent by:
Proportioning forms;
Embodiment 3:
For taking turns an industrial filament for Cable rope for ship, production technology comprise the following steps:
(1) solid phase: by SBS particle under inert gas shielding, 150 degrees Celsius of lower polycondensation reactions, obtains high viscosity SBS particle;
(2) spinning: gained high viscosity SBS particle is become molten state spinning solution at screw extruder through 300Shi degree extrusion molten, then amino silicon oil emulsion is added, strand is formed again through filament spinning component spinning under 220 bar pressure conditions, strand forms as-spun fibre by cooling quench cooling curing, and the addition of amino silicon oil emulsion is 1/5 of high viscosity SBS granular mass;
(3) stretching HEAT SETTING: oiled by as-spun fibre, through multistage drafting, then soaks 25 minutes by the as-spun fibre of upper oil excessively, then carries out HEAT SETTING in desalted water;
(4) auxiliary agent coating: utilize high speed coating device, by auxiliary agent with 1.2% of as-spun fibre quality coating amount be coated on as-spun fibre, then through winding, obtain the industrial filament for steamer hawser;
Described auxiliary agent by:
Proportioning forms;
More than show and describe general principle of the present invention and principal character and advantage of the present invention.The technical staff of the industry should understand; the present invention is not restricted to the described embodiments; what describe in above-described embodiment and description just illustrates principle of the present invention; without departing from the spirit and scope of the present invention; the present invention also has various changes and modifications, and these changes and improvements all fall in the claimed scope of the invention.Application claims protection domain is defined by appending claims and equivalent thereof.

Claims (2)

1., for taking turns an industrial filament for Cable rope for ship, it is characterized in that: production technology comprises the following steps:
(1) solid phase: by SBS particle under inert gas shielding, 100-180 degree Celsius of lower polycondensation reaction, obtains high viscosity SBS particle;
(2) spinning: gained high viscosity SBS particle is become molten state spinning solution at screw extruder through 270 ~ 330 degrees Celsius of extrusion moltens, then amino silicon oil emulsion is added, strand is formed again through filament spinning component spinning under 120 ~ 280 bar pressure conditions, strand forms as-spun fibre by cooling quench cooling curing, and the addition of amino silicon oil emulsion is 1/5 of high viscosity SBS granular mass;
(3) stretching HEAT SETTING: oiled by as-spun fibre, through multistage drafting, then soaks 20-30 minute by the as-spun fibre of upper oil excessively, then carries out HEAT SETTING in desalted water;
(4) auxiliary agent coating: utilize high speed coating device, auxiliary agent is coated on as-spun fibre with the coating amount of the 1-1.5% of as-spun fibre quality, then through winding, obtain the industrial filament for steamer hawser.
2. a kind of industrial filament for taking turns Cable rope for ship according to claim 1, is characterized in that: the auxiliary agent in described processing step 4 by:
CN201510734118.1A 2015-10-29 2015-10-29 Industrial filament for braiding cable for ship Pending CN105297177A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201510734118.1A CN105297177A (en) 2015-10-29 2015-10-29 Industrial filament for braiding cable for ship

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201510734118.1A CN105297177A (en) 2015-10-29 2015-10-29 Industrial filament for braiding cable for ship

Publications (1)

Publication Number Publication Date
CN105297177A true CN105297177A (en) 2016-02-03

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201510734118.1A Pending CN105297177A (en) 2015-10-29 2015-10-29 Industrial filament for braiding cable for ship

Country Status (1)

Country Link
CN (1) CN105297177A (en)

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101307566A (en) * 2007-12-25 2008-11-19 浙江尤夫工业纤维有限公司 Sea water repellent type polyester industrial filament and its manufacturing technique
CN101914818A (en) * 2010-08-09 2010-12-15 陈晓美 Method for manufacturing wear-resistant high-strength polyester fibers
CN102418158A (en) * 2011-08-02 2012-04-18 东华大学 Preparation method of polyester filament yarns for industry
CN102465447A (en) * 2010-11-05 2012-05-23 浙江尤夫高新纤维股份有限公司 Polyester fibre surface coating material for sea mooring rope and production process of polyester fibre surface coating material

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101307566A (en) * 2007-12-25 2008-11-19 浙江尤夫工业纤维有限公司 Sea water repellent type polyester industrial filament and its manufacturing technique
CN101914818A (en) * 2010-08-09 2010-12-15 陈晓美 Method for manufacturing wear-resistant high-strength polyester fibers
CN102465447A (en) * 2010-11-05 2012-05-23 浙江尤夫高新纤维股份有限公司 Polyester fibre surface coating material for sea mooring rope and production process of polyester fibre surface coating material
CN102418158A (en) * 2011-08-02 2012-04-18 东华大学 Preparation method of polyester filament yarns for industry

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Application publication date: 20160203