https://www.avient.com/sites/default/files/2020-09/surround-processing-guide-2020.pdf
TEMPERATURE
Material Rear
Center
Front
Nozzle
Melt
Mold
Nylon 6,6
540–570
530–560
530–560
540–570
540–570
200–300
(90–150)
Nylon 6,6
30% SS
540–570
530–560
530–560
540–570
540–570
200–300
(90–150)
PBT
510–410
(265–280)
490–540
(255–280)
480–530
480–530
480–530
150–250
(65–120)
PC
14% NiCF
540–570
540–570
530–560
530–560
530–560
150–250
(65–120)
ABS
470–520
460–520
460–520
460–530
(240–275)
460–530
(240–275)
100–200
(40–90)
PP
440–480
(225–250)
440–480
(225–250)
430–470
(220–245)
420–460
(215–240)
420–460
(215–240)
125–175
(50–80)
DRYING
Material Temperature
°F (°C) Time Minimum
Moisture
Maximum
Moisture
Nylon 6,6
14% NiCF 180 (80) 4–5 hours 0.05% 0.20%
Nylon 6,6
30% SS 180 (80) 4–5 hours 0.05% 0.20%
PBT
14% NiCF 250 (120) 6-8 hours 0.02% 0.03%
PC
14% NiCF 250 (120) 3–4 hours 0.02% 0.02%
ABS
14% NiCF 200 (90) 2–4 hours 0.05% 0.10%
PP
14% NiCF 180 (80) 2–4 hours 0.20% 0.30%
Equipment
• Feed throats smaller than 2.5" may cause bridging due to pellet size
- Larger feed throats will be more advantageous with long fiber EMI shielding resins
• General purpose metering screw is recommended
- Mixing/barrier screws are not recommended
• L/D ratio
- 18:1–20:1 (40% feed, 40% transition, 20% metering)
• Low compression ratio
- 2:1–3:1
• Deep flights recommended
- Metering zone 3.5 mm
- Feed zone 7.5 mm
• Check ring
- Three-piece, free-flowing check ring
• General purpose nozzle (large nozzle tips are recommended)
- Minimum orifice diameter of 7/32"
- Tapered nozzles are not recommended for long fiber EMI shielding resins
• Clamp tonnage:
- 2.5–5 tons/in2
Gates
• Large, free-flow gating recommended
- 0.25" x 0.125" land length
- 0.5" gate depth
Runners
• Full round gate design
• No sharp corners
• Minimum of 0.25" diameter
• Hot runners can be used
PROCESSING
Screw Speed Slower screw speeds are recommended to protect fiber length
Back Pressure Lower back pressure is recommended to protect fiber length
Pack Pressure 60–80% of max injection pressure
Hold Pressure 40–60% of max injection pressure
Cool Time 10–30 seconds (depends on part geometry and dimensional stability)
PROCESS CONSIDERATIONS
Recommended – retain fiber length (maximize conductivity)
• Low shear process
• Low screw speed and screw RPM
• Slow Injection speed
• Fill to 99–100% on first stage of injection
- Reduces potential nesting of fibers at gate location
- Improves mechanical performance near gate location
- Promotes ideal fiber orientation
Resin Rich Surface
• Achieved when using a hot mold temperature and longer cure times
≥ Max mold temperature recommendation
• Improved surface aesthetic
• Reduced surface conductivity
• Could reduce attenuation performance in an assembly
Fiber Rich Surface
• Achieved when using a cold mold temperature and shorter cure times
≤ Minimum mold temperature recommendation
• Improved surface aesthetic
• Reduced surface conductivity
• Could improve attenuation performance in an assembly
www.avient.com
Copyright © 2020, Avient Corporation.
https://www.avient.com/sites/default/files/2021-11/artisan-ar7300-pre-colored-formulation-processing-guide.pdf
BASE RESIN ABS
Drying Temperature 80–90°C
Drying Time 2–3 Hours
Barrel Temperatures °C
Rear Zone 180–210
Center Zone 190–220
Front Zone 200–230
Nozzle 210–240
Mold Temperature 50–80
Screw Speed Moderate
Back Pressure 3–10 bar
Cushion 5–15 mm
Injection Speed Low to medium
Injection Pressure Moderate to high
Holding Pressure 10–30% of injection pressure
Screw Type General purpose
Screw L/D 20:1
Screw Compression Ratio 2.0:1–2.5:1
Non-return Check Valve Free flow check ring
Nozzle Type Reverse taper
Barrel Capacity 30–80% of barrel should be used
STARTUP & SHUTDOWN RECOMMENDATIONS
Purge Compound 2–3 melt flow PP or purging compound.
Draft Angle • Maintain a minimum draft angle of 1° per side.
https://www.avient.com/sites/default/files/2023-11/2023 Syncure Wire and Cable Product Selection Guide_SPANISH.pdf
Syncure™ XLPE
Formulaciones Para
Polietileno Reticulable
PARA CABLES DE BAJA TENSIÓN
GUÍA DE SELECCIÓN DE PRODUCTO
Syncure™ XLPE
POLIETILENO RETICULABLE POR HUMEDAD PARA AISLAMIENTO PARA CABLES DE BAJA TENSIÓN
SISTEMA S100FH S100FH-XUV S100FH-UV S100FV S100FV-UV S112NA S120NA S200FH S200FV
Aplicaciones Cable para construcción,
Cable para construcción,
Cable fotovoltaico
(PV)
Cable para construcción,
Cable para construcción,
Cable para construcción,
Teck-90 Tuberia
Cable para edificaciones,
tray cables,
cables de servicio
Cable para edificaciones,
tray cables,
cables de servicio
Especificaciones UL 44 UL 44 UL 44, UL 4703 UL 44 UL 44 CSA 22.2 Usable para
NSF 61 UL 44 UL 44
Tipo de alambre XHHW-2, RHW-2, USE-2,
XHHW-2, RHW-2, USE-2,
SIS
XHHW-2, RHW-2,
USE-2, SIS, PV
XHHW-2, RHW-2,
XHHW-2, RHW-2,
USE-2, SIS, PV RW-90, Teck-90 – RHW-2, RHW, RHH,
XHHW-2, XHH, XHHW, SIS RHW, RHH, RHW-2
% de
componentes
83% S1054A
17% V0022G RoHS
83% S1054A
17% V0022G-UV RoHS
70% S1054A
30% V0022G-UV RoHS
50% S1054A
50% V0044G RoHS
50% S1054A
50% V0044G-UV RoHS
95% S1054A
5% S1000B
95% S1016A
5% S1037B
78% S1054A
22% SC5400-0002 RoHS
MB ALT FR
50% S1054A
50% SC5400-0003 RoHS
MB ALT FR
Caracteristicas Flama horizontal
Flama horizontal,
resistencia UV,
Flama horizontal,
flama FV-1, resistencia UV,
VW-1 VW-1, resistencia UV,
Sin retardante
a la flama
Para aplicaciones
de tuberia
Flama horizontal,
libre de DBDPE VW-1, libre de DBDPE
PROPIEDADES GENERALES
Gravedad Específica 1.01 1.02 1.10 1.31 1.31 0.92 0.95 1.01 1.31
Rigidez Shore D,
10 Segundos 47 47 47 48 48 47 59 47 48
% de Contenido
de Gel 68 68 70 70 70 72 72 68 70
PROPIEDADES DE RESISTENCIA A LA TRACCIÓN
Resistencia a la
Tracción (psi) 2800 2500 2500 3200 2650 2800 4500 2800 3200
% de Elongación 400 400 400 470 540 400 80 400 470
% de Retención
de Tracción 100 100 97 110 110 95 75 95 100
% de Retención
de Elongación 90 90 94 100 100 90 75 90 93
PROPIEDADES ELÉCTRICAS
Resistencia Dieléctrica
(V/mil) 1000 1400 1400 1200 1200 1000 –– 1000 1200
Constante Dieléctrica 2.31 2.45 2.61 2.61 2.61 2.24 2.1 2.31 2.61
% de Factor
de Disipación 0.0012 0.0080 0.008 0.0043 0.0043 0.0008 0.002 0.0012 0.0043
PROPIEDADES TÉRMICAS
Condiciones Nominales
de Temperatura en °C 90 90 90 90 90 90 125 90 90
% de Deformación
Térmica 10 10 5 5 5 10 10 10 5
La cartera Syncure XLPE es un sistema de dos pasos
de Polietileno reticulable por humedad, injertado con
Silano.
https://www.avient.com/sites/default/files/2020-11/cotrep-at-20-21-avient-corporation-cesar-ir-pe-94000828.pdf
Cotrep AT 20-21_AVIENT CORPORATION_CESA® IR PE 94000828
AT 20-21
1
Avis Technique – Tri
Détectabilité et tri de la solution colorante AVIENT CORPORATION / CESA® IR PE 94000828
dans les centres de tri
ES
C
R
IP
TI
O
N
D
E
LA
D
EM
A
N
E GENERALITES
Demandeur Avient Corporation
Date de la demande 2020
Référence de la solution colorante CESA® IR PE 94000828
Limite max de concentration de la
solution colorante
4%
DESCRIPTION DE LA SOLUTION COLORANTE
Couleur Noire
Solution colorante adaptée pour : Emballages rigides en PP
OBJET DE LA DEMANDE
Etude de la détectabilité dans les centres de tri français de la solution colorante noire CESA® IR PE 94000828
proposée par Avient Corporation et utilisée pour colorer des emballages rigides en PP.
D’une part, l’entreprise Avient Corporation s’est engagée à :
- utiliser le protocole de tri fournis par le COTREP (« Procédure de tests de tri optique
COTREP pour évaluer la détectabilité d’emballages sombres lors des étapes de tri
optique » - version Janvier 20191) ;
- réaliser les tests chez les deux Fabricants T.O. représentatifs des capacités de tri
existantes en France ;
- remettre au COTREP les rapports des essais pour analyse et avis ;
- proposer une solution colorante :
o qui réponde aux exigences essentielles de la directive emballage 94/62/CE
o qui ne fait pas basculer la densité de l’emballage : les emballages
majoritairement en PP ou PE doivent conserver une densité < 1 et les emballages
majoritairement en PET ou en PS une densité > 1.
À Paris, le 17 juillet 2020
1
Disponible sur le site du COTREP : https://www.cotrep.fr/content/uploads/sites/3/2019/02/tri-p1-emballages-sombres-v01-2019.pdf
https://www.avient.com/sites/default/files/2020-11/cotrep-at-20-20-avient-corporation-cesar-ir-pp-94000721.pdf
AT 20-20
1
Avis Technique – Tri
Détectabilité et tri de la solution colorante AVIENT CORPORATION / CESA® IR PP
94000721dans les centres de tri
S
C
R
IP
TI
O
N
D
L
A
D
M
A
N
GENERALITES
Demandeur Avient Corporation
Date de la demande 2020
Référence de la solution colorante CESA® IR PP 94000721
Limite max de concentration de la
solution colorante
4%
DESCRIPTION DE LA SOLUTION COLORANTE
Couleur Noire
Solution colorante adaptée pour : Emballages rigides en PP
OBJET DE LA DEMANDE
Etude de la détectabilité dans les centres de tri français de la solution colorante noire CESA® IR PP
94000721proposée par Avient Corporation et utilisée pour colorer des emballages rigides en PP.
D’une part, l’entreprise Avient Corporation s’est engagée à :
- utiliser le protocole de tri fournis par le COTREP (« Procédure de tests de tri optique
COTREP pour évaluer la détectabilité d’emballages sombres lors des étapes de tri
optique » - version Janvier 20191) ;
- réaliser les tests chez les deux Fabricants T.O. représentatifs des capacités de tri
existantes en France ;
- remettre au COTREP les rapports des essais pour analyse et avis ;
- proposer une solution colorante :
o qui réponde aux exigences essentielles de la directive emballage 94/62/CE
o qui ne fait pas basculer la densité de l’emballage : les emballages
majoritairement en PP ou PE doivent conserver une densité < 1 et les emballages
majoritairement en PET ou en PS une densité > 1.
À Paris, le 17 juillet 2020
1
Disponible sur le site du COTREP : https://www.cotrep.fr/content/uploads/sites/3/2019/02/tri-p1-emballages-sombres-v01-2019.pdf
https://www.cotrep.fr/content/uploads/sites/3/2019/02/tri-p1-emballages-sombres-v01-2019.pdf
https://www.avient.com/sites/default/files/2020-11/cotrep-at-20-16-avient-corporation-cesar-ir-pe-94000817.pdf
AT 20-16
1
Avis Technique – Tri
Détectabilité et tri de la solution colorante AVIENT CORPORATION / CESA® IR PE 94000817
dans les centres de tri
S
C
R
IP
TI
O
N
D
L
A
D
M
A
N
GENERALITES
Demandeur Avient Corporation
Date de la demande 2020
Référence de la solution colorante CESA® IR PE 94000817
Limite max de concentration de la
solution colorante
4%
DESCRIPTION DE LA SOLUTION COLORANTE
Couleur Noire
Solution colorante adaptée pour : Emballages rigides en PE
OBJET DE LA DEMANDE
Etude de la détectabilité dans les centres de tri français de la solution colorante noire CESA® IR PE 94000817
proposée par Avient Corporation et utilisée pour colorer des emballages rigides en PE.
D’une part, l’entreprise Avient Corporation s’est engagée à :
- utiliser le protocole de tri fournis par le COTREP (« Procédure de tests de tri optique
COTREP pour évaluer la détectabilité d’emballages sombres lors des étapes de tri
optique » - version Janvier 20191) ;
- réaliser les tests chez les deux Fabricants T.O. représentatifs des capacités de tri
existantes en France ;
- remettre au COTREP les rapports des essais pour analyse et avis ;
- proposer une solution colorante :
o qui réponde aux exigences essentielles de la directive emballage 94/62/CE
o qui ne fait pas basculer la densité de l’emballage : les emballages
majoritairement en PP ou PE doivent conserver une densité < 1 et les emballages
majoritairement en PET ou en PS une densité > 1.
À Paris, le 17 juillet 2020
1
Disponible sur le site du COTREP : https://www.cotrep.fr/content/uploads/sites/3/2019/02/tri-p1-emballages-sombres-v01-2019.pdf
https://www.cotrep.fr/content/uploads/sites/3/2019/02/tri-p1-emballages-sombres-v01-2019.pdf
https://www.avient.com/sites/default/files/2020-08/2020-hammerhead-application-install-guide.pdf
MARINE PLYWOOD
Hammerhead™ panels are three times lighter than marine plywood
MOISTURE ABSORPTION % weight change due to water absorption for selected
composites and marine plywood
10000
60000
110000
160000
210000
260000
310000
360000
0.5 0.75 1 1.25 1.5
F
le
x
u
ra
l
R
it
y
-
lb
/
2
Panel Thickness - in
Hammerhead™ 5.3lb/in^3 Core Density Hammerhead™ 8.4lb/in^3 Core Density Plywood
— Hammerhead™ 5.3 lb/ft3 Core Density
— Hammerhead™ 8.4 lb/ft3 Core Density
— Marine Plywood
0%
10%
20%
30%
40%
50%
60%
70%
80%
90%
0 10 20 30 40 50 60 70 80 90 100
%
W
t
C
a
g
Immersion Time - Days
.50" Hammerhead™ .75" Hammerhead™ 1" Hammerhead™ 1.50" Hammerhead™
.50" marine plywood .75" marine plywood 1" marine plywood
Fl
ex
ur
al
R
ity
-
lb
-in
2
INSTALLATION INSTRUCTIONS
CUTTING & DRILLING
Recommended blade: Industrial fine cut-off saw blade, 10" x 80 teeth 38° ATB grind with 5/8" bore,
PTFE coating
Recommended router bits: 3/8" diameter, 4 flute TiAlN (titanium aluminum nitride) coated carbide bit
FORMING
Apply localized 400˚F heat at a length proportional to the panel thickness (see equation below)
and bend to shape.
Heat Length =
π
2 * Thickness
Radius = S
B
S
T = 400°F
B S
GL
AS
S/
EP
OX
Y
TA
B
M
AT
ER
IA
L
TAB TESTING OF VARIOUS INSTALLATION METHODS
BREAK
STRENGTH (LBS)
PETG Skins
with Plywood Core
1 in
1.5 in
2 in
2400
2820
2748
Hammerhead™
with 5.3 lb/ft3
2 in 665
Hammerhead™
with 8.4 lb/ft3
2 in 1084
Marine Plywood 2 in 770
Glass/Epoxy with
Plywood Core 2 in 1055
Glass/Polyester
with Balsa Core 2 in 919
L-Bracket Installation
BREAK
STRENGTH (LBS)
PETG Skins
with Plywood Core 2 in 2375
Marine Plywood 2 in 770
Glass/Polyester
with Balsa Core 2 in 797
U-Channel Installation
N
O
T
AB
BREAK STRENGTH
(LBS)
Hammerhead™
with 5.3 lb/ft3
2 in 420
Hammerhead™
with 8.4 lb/ft3
2 in 332
Marine Plywood 2 in 984
Glass/Polyester with
Balsa Core 2 in 1298
Hammerhead™
with 5.3 lb/ft3
Core Density -
ITW Plexus
NA 501
Hammerhead™
with 8.4 lb/ft3
Core Density -
ITW Plexus
NA 1156
Hammerhead™
with 8.4 lb/ft3
Core Density -
Crestomer
1152PA Adhesive
NA 1530
Hammerhead™
with 8.4 lb/in3
Core Density -
Crestomer
M1-30 Adhesive
NA 1471
Mixed Conditions
ITW Plexus MA420 adhesive was used in all tab
testing installations except where noted.
BREAK STRENGTH
(LBS)
Hammerhead™
with 5.3 lb/ft3
2 in 420
Hammerhead™
with 8.4 lb/ft3
2 in 332
Marine Plywood 2 in 984
Glass/Polyester with
Balsa Core 2 in 1298
Hammerhead™
with 5.3 lb/ft3
Core Density -
ITW Plexus
NA 501
Hammerhead™
with 8.4 lb/ft3
Core Density -
ITW Plexus
NA 1156
Hammerhead™
with 8.4 lb/ft3
Core Density -
Crestomer
1152PA Adhesive
NA 1530
Hammerhead™
with 8.4 lb/in3
Core Density -
Crestomer
M1-30 Adhesive
NA 1471
ADHESIVE
DESCRIPTION
ADHESIVE
GRADE MANUFACTURER
AVERAGE
BOND
STRENGTH
(PSI)
STANDARD
DEVIATION
FAILURE
MODE
BEST ADHESION
2k Urethane 75421 Lord 2281 184 Substrate
Cohesive
2k Acrylic SA1-705 GRY1 AccraLock 2211 78 Substrate
2k Acrylic Plexus MA420 ITW 2171 262 Substrate
2k Acrylic SA10-05 Blk1 AccraLock 2102 138 Substrate
2k Urethane 75451 Lord 2047 68 Cohesive
2k Acrylic SA1-705 GRY 1:2 AccraLock 1966 68 Substrate
2k Acrylic Scotchweld 8010 3M 1907 61 Adhesive
Cyanoacrylate Gorilla Glue Gorilla Glue 1885 432 Cohesive
2k Acrylic Crestabond PP-04 Scott Bader 1873 281 Substrate
2k Acrylic SA10-05 Blk 10:2 AccraLock 1779 127 Cohesive
2k Urethane 75422 Lord 1716 190 Cohesive
Adhesive
2k Urethane 75452 Lord 1535 98 Adhesive
2k Methacrylate Polyfuse Icon
Containment 1610 98 Adhesive
INTERMEDIATE ADHESION
2k Acrylic FA10-05 Blk
C010817 AccraLock 724 58 Cohesive
2k Acrylic FA10-05 Blk1 AccraLock 722 44 Cohesive
2k Epoxy Loctite Epoxy
Instant Mix Loctite 508 81 Adhesive
2k Epoxy Gorilla Glue Epoxy Gorilla Glue 341 198 Adhesive
NOT RECOMMENDED
2k Epoxy Loctite Epoxy
Marine Loctite 0 0 No bond
ADHESIVE SELECTION
Brands identified are owned by the manufacturers of the adhesive products.
1 surface sanded with 220 grit scuff prep 2 surface primed with 459T
FASTENER TYPE BENEFITS CONSIDERATIONS
Through-Bolting Best mechanical
locking system
Need back side
access to panel
Screw-In Anchor Highest pullout
strength Requires pilot hole
Cup Washer Spreads
compressive load
Requires relief hole;
For substructure and
hard point attachment
Wide Grip
(Bulb-Style)
Rivet
Ease of use—no
installation torque
limitations
For lower
load attachments
Sheet Metal or
Wood Screw
Readily available,
low cost
Penetrate both skins
for improved pullout
Shoulder Washer Limits
compressive load
Requires relief hole;
For substructure and
hard point attachment
For more information on installation, adhesives, and fasteners
for specific applications, please contact Avient.
https://www.avient.com/sites/default/files/Avient Climate Change Scenario Analysis Summary 2022.pdf
Continued R&D investment in current initiatives is
expected
· Steep increases in advanced economies' carbon prices · Considerable increases in emerging economies' carbon
prices
· Some change in carbon prices
· Declining fuel prices · Regional variability in fuel prices, though slight net
increase
· Rising fuel prices
1 International Energy Agency World Energy Outlook 2021
The following summarizes Avient's climate-related risks and opportunities analyzed across multiple scenarios, in alignment with the Task Force on Climate-Related Financial Disclosures (TCFD) framework.
By 2030, Avient will reduce Scope 1 & 2 GHG emissions by 60% with 2019 as a baseline and achieve operational carbon neutrality by 2050
Clean electrification of our operations and processes will represent some of our
current scope 1 emissions reductions, though further evaluation is required
https://www.avient.com/sites/default/files/2023-10/Wire _ Cable Tri-fold Selection Guide_0.pdf
PRODUCT SELECTION GUIDE
WIRE & CABLE
SOLUTIONS
Specialty Engineered
Materials
High performance insulation, jacketing,
and cross-web formulations for the
wire and cable industry
Syncure™ XLPE Cross-linkable
Polyethylene Formulations
• Ambient curing
• Resistant to heat, oil, creep,
& abrasion
• Low temperature properties
• Low capital investment
• DBDPE-free grades available
• UL/CSA bulletins
Maxxam™ FR Flame Retardant
Polyolefin Formulations
• FEP alternative
• Fire performance
• UL 444 & plenum yellow
card compliance
• Low dielectric
• High extrusion speeds
• Thin wall extrudability
Maxxam™ SY Foamable Flame
Retardant Formulations
• Low dielectric
• Uniform cell structure
• Crush & heat resistance
• Ease of chemical foaming
ECCOH™ Low Smoke and Fume
Non-Halogen Formulations
• Improved fire safety
• Low smoke, fume, non-halogen
(LSFOH) formulations
ECCOH™ XL Cross-Linkable Solutions
• Non-halogen, low smoke, toxicity,
& corrosiveness
• Excellent mechanical & electrical
properties
• Easily processed
• Operating temperature of 90°C
• Moisture cure technology
Synprene™ Flame Retardant
Thermoplastic Elastomers
• Low temperature
brittleness (LTB) resistance
• Easily colored
FireCon™ CPE Insulation Jacketing
Formulations
• Resistance to harsh environments
• Sunlight resistance
ECCOH™ XL 8148 Non-halogen, low smoke, toxicity, & corrosiveness EN50618
Syncure™ S100FH Horizontal flame UL 44
Syncure™ S100FH-XUV Horizontal flame, UV resistant UL 44
Syncure™ S100FH-UV Horizontal flame, FV-1 flame, UV resistant UL 44, UL 4703
Syncure™ S100FV VW-1 flame UL 44
Syncure™ S100FV-UV VW1, UV resistant UL 44
Syncure™ S112NA Non-flame retardant CSA 22.2
Syncure™ S120NA Non-flame retardant NSF 61
Syncure™ S200FH Horizontal flame, DBDPE-free UL 44
Syncure™ S200FV VW-1, DBDPE-free UL 44
INSULATION FOR POWER CABLE SYSTEMS
Low Voltage Power Cables
• Resistance to heat, oil, creep, & abrasion
• Low capital investment
INSULATION & CROSS-WEBS FOR DATA CABLE SYSTEMS
Category Cables
• FEP alternative
• Low dielectric constant
• High extrusion speeds & thin wall capability
• Flexibility
Maxxam™ FR 0521-48 R1 Low smoke & fume, non-halogen UL 444
Maxxam™ FR 0587-21 R3 Halogenated to plenum performance UL 444
Optical Fiber Cables
• Resistance to harsh environments, chemicals, & sunlight
• Low temperature brittleness (LTB) resistance
• Low smoke & toxicity
ECCOH™ 6649 UV Low DD Low smoke & fume, non-halogen Meets customer-specific
flame requirements
Coaxial Cables
• Flexibility
• Low dielectric constant
• Uniform cell structure
• Crush & heat resistance
Maxxam™ SY 89-22-7 Foamable Meets customer-specific
flame requirements
JACKETING FOR POWER & DATA CABLE SYSTEMS
Low & Medium Voltage Jacketing
• Resistance to harsh environments, chemicals, & UV degradation
• Low temperature brittleness (LTB) resistance
• Low smoke & toxicity
• Flexibility
• High extrusion speeds
• Easily colored
FEATURES SUBMARKETS & USES
FireCon™ CPE 30-33 RoHS Black Flame retardant, flexible Building & construction, industrial,
FireCon™ CPE 37-36 RoHS Black Flame retardant, flexible Building & construction, industrial,
FireCon™ CPE 30-20 RoHS Natural Flame retardant, flexible Building & construction, industrial,
ECCOH™ 5549 UV Low smoke & fume, non-halogen,
flame retardant Building & construction, industrial
ECCOH™ 6649 UV Low DD Low smoke & fume, non-halogen,
flame retardant Optical fiber, ducts
ECCOH™ 5981 UV Low smoke & fume, non-halogen,
flame retardant Industrial, Teck 90 wire
Synprene™ RT5180 Flame retardant, LTB resistance Building & construction, industrial
Synprene™ RT5180UV Flame retardant, LTB resistance Building & construction, industrial
Synprene™ RT3870M Flame retardant, LTB resistance Building & construction, industrial
1.844.4AVIENT
www.avient.com
Copyright © 2023, Avient Corporation.
https://www.avient.com/sites/default/files/2023-12/_ECCOH LSFOH 5983 Formulations Product Bulletin.pdf
KEY CHARACTERISTICS ECCOH 5924
ECCOH 5981
ECCOH 5983 UV
Material Standards BS7655-6, 1 (LTS1–4),
BS6724, IEC 60502 BS7655-6, 1 (LTS3) BS7655-6, 1 (LTS1–4)
Tear Strength at 23°C 7.7 N/mm 10 N/mm 11 N/mm
Tear Strength at 65°C 2.3 N/mm 5 N/mm 6.5 N/mm
Hot Pressure Test (6h at 90°C) 39% –