https://www.avient.com/sites/default/files/2020-07/sem-w-c-solutions-for-optical-fiber-cable-product-bulletin-a4.pdf
KEY CHARACTERISTICS
• Faster processing speeds (up to 1,000
m/min) at low wall thickness (100 µm)
• Increased chemical resistance
• Lower gel migration
• ECCOH 6153 UV - optimized for Teroson
• ECCOH 6154 UV - optimized for Unigel
• High color rendition and compatibility with
Avient masterbatch
• High UV resistance
• Very low shrinkage
MARKET & APPLICATIONS
Optical Fiber Cables including:
• Stranded loose tubes – gel-filled/dry
• Micro-modules
• Tight buffer applications – gel-filled/dry
STANDARD COMPLIANCE
• IEC 60794
• NF XP C93-850-1-1:2020
• EN 50289-4-17:2016
• ISO 4892:2016
• ST/CNET/5843 (1998)
PRODUCT BULLETIN
GEL MIGRATION PERFORMANCE
ECCOH LSFOH 6153/6154 UV grades offer greater gel migration performance compared to alternative
ECCOH grades.
Gel migration is measured using a quantitative internal method
* 6151 can be supplied with UV protection
* Values concluded from the simulation of materials rheological data and modelling standard extrusion tooling
Pressure: can affect extruder performance, higher pressure gives a lower output at the same rpm
Shear rate: has a relation with self-cleaning of the walls and mixing conditions
Stress: can affect the surface of the product, less stress gives a better surface aspect
MIGRATION OF GEL COMPOUND
Gel Compound ECCOH™ 6151* ECCOH™ 6153 UV ECCOH™ 6154 UV
Unigel Average Good Excellent
Teroson Average Excellent Good
Itcogel Average Good Excellent
ECCOH™ 6151 ECCOH™ 6153 UV ECCOH™ 6154 UV
∆P (bars) 101 63 60
Shear Rate (1/s) 9 9 9
Stress (kPa) 127 79 75
Application example:
Gel-filled stranded loose tube optical fiber cable
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Copyright © 2020, Avient Corporation.
https://www.avient.com/resources/safety-data-sheets?page=5024
SAFETY GLASSES
SAFETY GLASSES
SAFETY GLASSES
https://www.avient.com/sites/default/files/2023-11/Cesa Fiber Additives Hydrophobic for PP Nonwovens Product Bulletin.pdf
Cesa™ Fiber Additives
Hydrophobic Solutions for PP Nonwovens
Polypropylene nonwovens are used for a variety
of applications, some of which require water
repellency.
https://www.avient.com/idea/whats-difference-tpes-vs-silicones
LSR flows easily into molds with varied wall thicknesses and can fill very long, thin sections of a mold.
Though the viscosity of TPEs are reduced when processed at high shear rates, TPEs must be “packed” into a mold to ensure complete fill-out.
Materials with lower specific gravity will fill more volume and therefore yield more parts per pound.
https://www.avient.com/resources/safety-data-sheets?page=4281
311 DUSK GLASS PP OUT
308 MYRTLE GLASS PP OUT
339 CADET GLASS PP OUT
https://www.avient.com/resources/safety-data-sheets?page=4320
T339.0 NP-101 CONCENTRATE 5% BN-FILLED
T339.9 FEP100 CONCENTRATE 5% BN-FILLED
PP FR 8-6 LMS-1000
https://www.avient.com/resources/safety-data-sheets?page=4324
BN-FILLED
T635.5 FEP HIGH FLOW CONC. 5% BN-FILLED
PP FR 8-6 LMS-1000
https://www.avient.com/products/polymer-additives/processing-enhancement-additives/cesa-slip-additives
Simplifies food packaging operations by reducing the coefficient of friction on thermoformed containers, facilitating easy separation during manufacturing and filling.
https://www.avient.com/products/polymer-additives/processing-enhancement-additives/cesa-process-additives
Simplifies food packaging operations by reducing the coefficient of friction on thermoformed containers, facilitating easy separation during manufacturing and filling.
https://www.avient.com/idea/achieve-sensory-branding-goals-packaging
For applications ranging from luxury spirits to cosmetics closures, these high-density filled polymers offer chemical resistance, customizable density and flexibility, and ease of processing.