https://www.avient.com/sites/default/files/2023-08/Maxxam BIO Bio-Based Polyolefin Formulations Product Bulletin.pdf
KEY CHARACTERISTICS
Formulated with bio-based resin and/or
10–50% filler from renewable plant sources,
Maxxam BIO formulations:
• Reduce product carbon footprint
• Achieve equivalent performance to standard
polyolefin formulations
• Provide good stiffness, durability, impact
resistance and UV stability
• Deliver good surface finish and are easy to color
• Enable customized performance characteristics
depending on application need
• Offer food contact compliance
MARKETS AND APPLICATIONS
Maxxam BIO formulations are suitable for use across
many industries and applications where traditional
polyolefin materials are used, including:
• Transportation Interior Applications -
Decorative profiles, trunk side liners, pillars,
T-cup
• Industrial - Structural parts, furniture
• Consumer - Household goods, personal care
items, packaging, office supplies, food contact
applications
• Electrical and Electronic – Housings, buttons,
junction boxes
SUSTAINABILITY BENEFITS
• Formulated with bio-based resin and/or
10–50% natural filler
• Utilize natural filler from renewable plant
sources including olive seed based powder
and cellulose fiber
• Offer a lower product carbon footprint
compared to traditional petroleum-based
feedstock
• Can be recycled at end of life
PRODUCT BULLETIN
CHARACTERISTICS UNITS
Maxxam BIO
MX5200-5036
Natural FD
Maxxam BIO
MX5200-5030
Natural FD
Maxxam BIO
MX5200-5030
Natural FD X1
Maxxam BIO
MX5200-5001
RS HS Natural
Maxxam BIO
MX5200-5033
RS HS Natural
Maxxam BIO
MX5200-5034
RS HS Natural
Maxxam BIO
MX5200-5035
RS HS Natural
Filler/Reinforcement Unfilled Unfilled Unfilled
30%
Glass Fiber
10%
Mineral
20%
Mineral
30%
Mineral
Density
(ISO 1183)
g/cm 0.90 0.90 0.90 1.12 0.96 1.03 1.12
Tensile Modulus
(ISO 527-1) @ 23°C
MPa 1500 1000 1000 6400 1350 1650 2100
Tensile Stress
(ISO 527-2) @ 23°C
MPa 27.0 20.0 20.0 75.0 13.0 14.0 15.0
Tensile Strain
at Break
(ISO 527-2) @ 23°C
% 5 50 50 3.0 50 37 18
Charpy Notched
(ISO 179)
kJ/m 5 20 25 10 12 10 10
CHARACTERISTICS UNITS
Maxxam BIO
MX5200-5023
RS HS HI
Natural 70
Maxxam BIO
MX5200-5025
RS HS
Natural 70
Maxxam BIO
MX5200-5004
RS HS
Natural 70
Maxxam BIO
MX5200-5003
RS
Natural 70
Maxxam BIO
MX5200-5009
RS HS Natural
70
Maxxam BIO
MX5200-5024
RS HS
Natural 70
Maxxam BIO
MX5200-5022
RS HS
Natural 70
Filler/Reinforcement
15%
Olive Seed
Based
25%
Olive Seed
Based
30%
Olive Seed
Based/
10%
Mineral
35%
Olive Seed
Based/
5%
Mineral
15%
Olive Seed
Based/
17%
Glass Fiber/
Mineral
20%
Olive Seed
Based/
20% Glass/
Mineral
10%
Olive Seed
Based/
20%
Mineral
Density
(ISO 1183)
g/ccm 1.00 1.15 1.10 1.07 1.09 1.25 1.10
Tensile Modulus
(ISO 527-1) @ 23°C
MPa 1750 2000 2700 2500 3800 3500 4100
Tensile Stress
at Break
(ISO 527-2) @ 23°C
MPa 21.0 20.0 30.0 20.0 40.0 35.0 42.0
Tensile Strain
at Break
(ISO 527-2) @ 23°C
% 24 5 3 5 3 4 2
Notched Izod
(ISO 180)
kJ/m 15 7 3 2 5 15 7
MAXXAM BIO POLYOLEFINS – BIO-BASED RESIN – TECHNICAL PERFORMANCE
MAXXAM BIO POLYOLEFINS – OLIVE SEED BASED FILLER – TECHNICAL PERFORMANCE
CHARACTERISTICS UNITS
Maxxam BIO
MX5200-5029 NF HI
UV Black X1
Maxxam BIO
MX5200-5032 NFS
UV Natural
Maxxam BIO
MX5200-5020 NF/NFS
UV Natural X1
Maxxam BIO
MX5200-5016 NF
Natural
Filler/Reinforcement 10% Cellulose Fiber 20% Cellulose Fiber 30% Cellulose Fiber 40% Cellulose Fiber
Density
(ISO 1183)
g/ccm 0.95 1.00 1.02 1.07
Tensile Modulus
ISO 527-1) @ 23°C
MPa 1550 1750 2640 3600
Tensile Stress at Break
(ISO 527-2) @ 23°C
MPa 33 30 48 55
Tensile Strain at Break
(ISO 527-2) @ 23°C
% 8 12 9 4
Charpy Notched Impact
Strength (ISO 179/1eA)
kJ/m2 5 6 5 5
Charpy Unnotched Impact
Strength (ISO 179/1eU)
kJ/m2 33 49 38 30
MAXXAM BIO POLYOLEFINS – CELLULOSE FIBER FILLER – TECHNICAL PERFORMANCE
Copyright © 2023, Avient Corporation.
https://www.avient.com/sites/default/files/2020-09/versaflex-pf-technical-bulletin-sept-2020-es-la.pdf
VERSAFLEX™ PF
Capa de adherencia Versaflex™ PF para
películas de protección de superficies
BOLETÍN TÉCNICO
Propiedades Versaflex PF MD6727
Versaflex PF
MD6741
Versaflex PF
MD6649
Versaflex PF
9512
Versaflex PF
MD6666
Versaflex PF
MD6748
Versaflex PF
MD6700
Características Baja adherencia
Baja adherencia; se utiliza
para ajustar el revestimiento
con MD6700
Baja-media adherencia Oferta de valor
Adherencia media
Bajo contenido
de gel/residuos
Construcción de baja
adherencia Alta adherencia
Resistencia al
desprendimiento Baja Baja-media Media Media-Alta Media-Alta Alta Alta
Aplicaciones Películas ópticas Electrodomésticos Plásticos Construcción / Metales sin recubrimiento Metales acabados Acero/Metales pintados Metales sin recubrimiento
MFR a 190 °C/2,16 kg -- 4,5 17 5,4 21 4,8 6,5
MFRa@ 230 °C/2,16 kg 10 20 -- -- -- -- --
Gravedad específica, g/cc 0,92 0,91 0,92 0,92 0,94 0,94 0,94
Dureza, Límite A 50 49 37 38 37 31 30
G' a 23 °C, Pa 28,0 x 105 10,4 x 106 8,3 x 105 -- 9,9 x 105 11,8 x 105 10,0 x 105
Tg DMA, °C -29 -30 -9 10 11 15 21
Película LDPE/Versaflex PF1 Desprendimiento de 180°, N/25 mm
Acero inoxidable
después de 20 minutos
a 25 °C 0,5 2,2 3,2 6,1 6,7 8,5 8,6
después de 7 días
a 25 °C 0,6 2,7 4,3 5,5 8,2 8,3 10,3
PMMA2
después de 20 minutos
a 25 °C 1,1 1,7 3,8 4,9 6,9 8,3 8,8
después de 20 minutos
a 75 °C 2,8 4,1 5,1 6,9 9,0 10,7 11,8
después de 7 días
a 75 °C 4,0 4,4 5,9 9,8 8,4 9,8 10,3
Policarbonato3
después de 20 minutos
a 25 °C 1,4 2,2 3,8 6,8 6,3 8,4 7,0
después de 20 minutos
a 75 °C 3,4 4,8 6,7 8,8 8,8 10,0 11,8
después de 7 días
a 75 °C 4,6 6,5 7,5 10,6 11,6 10,6 13,8
1 Grosor de la película: LDPE de 51 micras/Versaflex PF de 25 micras.
2 Arkema Plexiglas™ V052-100 (Plexiglas es una marca comercial de Arkema France Corp).
3 Sabic Lexan™ L52-111 (Lexan es una marca comercial de Sabic Innovative Plastics).