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/2025-02/Hexagon and digimat case study.pdf
The resulting tensile test
data shown in Figure 1 gives an indication of the variation
in material response that can be observed as a function of
the fibre orientations.
In reality, the material response can
fall anywhere between the curves shown in Figure 1.
Figure 1: Tensile test data as a function of the fibre orientation 0°
(orange), 45° (green), 90° (blue)
https://www.hexagonmi.com
Figure 4: Failure location in the flexural test for the isotropic modelling
Figure 6: Failure location in the tensile test for the isotropic modelling
approach (left), Digimat anisotropic modelling approach (middle) and
reality (right)
Figure 3: Flexural test results with the isotropic modelling approach
(orange) and Digimat anisotropic modelling approach (green)
Figure 5: Tensile test results with the isotropic modelling approach
(orange) and Digimat anisotropic modelling approach (green)
Figure 5 shows the tensile test results with, again,
a convincing advantage for the Digimat anisotropic
modelling approach against the isotropic modelling
approach.
https://www.avient.com/sites/default/files/2020-07/avient-abac-russian-200721.pdf
Глобальная
политика компании
Avient по борьбе с
коррупцией и
взяточничеством
Политика принята:
1 июля 2020 г.
Оглавление
Наша глобальная политика по борьбе с коррупцией и взяточничеством 1
Важность соблюдения нормативных требований 1
Наша ответственность 1
Что такое взятка?
Эйвон-Лейк, США
33587 Walker Road Avon Lake, OH,
United States
44012
Бесплатный тел.: +1-866-765-9663
Телефон: +1-440-930-1000
Факс: +1-440 930 3064
Азиатско-Тихоокеанский
регион
Региональный офис в Шанхае,
Китай
2F, Block C 200 Jinsu Road
Pudong, 201206 Shanghai, China
Телефон: +86 (0) 21 6028 4888
Факс: +86 (0) 21 6028 4999
Южная Америка
Региональный офис в Сан-Паулу,
Бразилия
Av.
https://www.avient.com/sites/default/files/2024-08/Avient AUG 2024 Investor Presentation- w Non-GAAP.pdf
&
Canada
EMEA
Asia
Latin America
64%
36%
Specialty
Engineered
Materials
Color
Additives
and Inks
41%
36%
18%
5%
7%
7%
23%
19%
9%
16%
10%
5% 4%
Defense
Healthcare
Packaging
Consumer
Building &
Construction
Industrial
Transportation
Energy Telecom
Geography
Segment
Industry
2024 Financial Guidance
$515 to $540 million
Adjusted EBITDA
$2.55 to $2.70
Adjusted EPS
4
Industry Sustainability Standards
ESG Ratings Performance
1
2
4
87th
94th
percentile
Avient CDP Score:
A-
SUSTAINABILITY PERFORMANCE
AND RECOGNITION
A U G U S T 6 , 2 0 2 4
W E B C A S T
P R E S E N TA T I O N
6
Q2 2024 HIGHLIGHTS
• 5% organic sales growth supported by
broad-based growth across all regions
in both CAI and SEM segments
• Growth stemmed from gaining share,
winning new product specifications
and restocking in certain end markets
• Cost control and operational
discipline expanded EBITDA margins
by 100 bps
• EPS exceeded guidance by $0.05
and increased 21% vs the prior year
Adj.
Q2 2023
( T O TA L C O M PA N Y )
$824
$850
Q2 23 Q2 24
$131
$143
Q2 23 Q2 24
Sales Adjusted EBITDA
(in millions)
$0.63
$0.76
Q2 23 Q2 24
(in millions)
Adjusted EBITDA Adjusted EPS
8
+ 3%
(+5% excluding FX)
+ 9%
(+12% excluding FX)
+ 21%
(+25% excluding FX)
Sales
9
Q2 2 024 RESULTS – ORGA NI C SA LES BY
REGION VS PY
9
US & Canada
Latin America
EMEA
Asia
+5%
+4%
+1%
+19%
Avient ex.
FX +4.6%
FX -1.5%
Total Avient +3.1%
Note: Regional Sales Percentages exclude impact of foreign exchange
Q2 2024 SEGMENT PERFORMANCE
( C O L O R , A D D I T I V E S & I N K S )
$525
$542
Q2 23 Q2 24
$94
$108
Q2 23 Q2 24
19.9%
Sales Adjusted EBITDA
(in millions) (in millions)
Sales Adjusted EBITDA
10
17.9%
+200 bps
*
*
* Adjusted EBITDA Margin %
• Organic sales growth in all
regions led by Americas
• Raw material deflation combined
with cost reduction actions drove
EBITDA margin expansion
+ 3%
(+5% excluding FX)
+ 15%
(+17% excluding FX)
Q2 2024 SEGMENT PERFORMANCE
( S P E C I A LT Y E N G I N E E R E D M AT E R I A L S )
$301
$308
Q2 23 Q2 24
$60
$64
Q2 23 Q2 24
20.6%
Sales Adjusted EBITDA
(in millions) (in millions)
Sales Adjusted EBITDA
11
19.8%
+80 bps
*
*
* Adjusted EBITDA Margin %
• Sales growth in consumer,
healthcare and building &
construction end markets offset
by weaker demand in
telecommunications
• EBITDA margin expansion
driven by positive end market
mix as well as raw material
deflation
+ 2%
(+4% excluding FX)
+ 7%
(+8% excluding FX)
2 0 2 4 G U I D A N C E
FY 20 24 GUIDA NC E
Previous (May 7) Current
Adjusted EBITDA $510 to $535 million $515 to $540 million
Adjusted EPS $2.50 to $2.65 $2.55 to $2.70
Interest Expense $105 million $105 million
Adjusted Effective Tax Rate 23% to 25% 23% to 25%
Capital Expenditures ~$140 million ~$140 million
13
Q3 2024: Adjusted EPS of $0.62
14
Highlights
• Provides performance updates on 2030
Sustainability Goals
• Reduced company’s Scope 1 & 2 GHG emissions
by 48% since 2019
• Highlights ESG performance ratings, certifications,
and awards, including recent upgrades by
Ecovadis to Gold and CDP to A-
• Reflects Great Place to Work® culture focused on
health, safety and employee engagement
20 23 SUSTAI NA BILI TY REPORT
14
Sustainability for a
Better Tomorrow
2023
SUSTAINABILITY REPORT
15
• Investor Day to be held December 4, 2024 in
New York, NY
• The focus will be to do a deep dive on the
Company’s strategy
• Further details to be communicated
20 24 AVI ENT INVESTOR DAY
A P P E N D I X
18
Performance
Additives
15%
Pigments
13%
TiO2
9%
Dyestuffs
2%
Polyethylene
10%Nylon
5%
Polypropylene
4%
Styrenic Block
Copolymer
4%
Other Raw
Materials
38%
~40% hydrocarbon based
(Grey shaded materials are hydrocarbon based,
includes portion of “Other Raw Materials”)
Non-hydrocarbon
based materials
RA W MATERI AL BA SKET
SEGMENT DATA
U.S. & Canada
41%
EMEA
36%
Asia
18%
Latin America
5%
2023 SEGMENT, END MARKET AND GEOGRAPHY
GEOGRAPHY REVENUESEGMENT FINANCIALS
Consumer
19%
Packaging
23%Industrial
16%
Building and
Construction
9%
Telecommunications
4%
Energy
5%
Defense
7%
END MARKET REVENUE
$2,007M $358M
$1,138M $224M
Sales EBITDA
Specialty Engineered Materials
Color Additives and Inks
$502M$3,143M
(1)
Transportation
10%
Healthcare
7%
20
(1) Total company sales and adjusted EBITDA of $3,143M and $502M, respectively, include intercompany sales eliminations and corporate costs
2 0 2 3 R E V E N U E | $ 2 . 0 B I L L I O N
US & Canada
34%
EMEA
37%
Asia
21%
Latin America
8%
END MARKET REGION
21
Packaging
34%
Consumer
21%
Healthcare
8%
Industrial
15%
Transportation
9%
Building &
Construction
10%
Telecommunications
1% Energy
2%
COLOR , AD DI TI VES & INKS
2 0 2 3 R E V E N U E | $ 1 . 1 B I L L I O N
US & Canada
52%
EMEA
35%
Asia
13%
22
Packaging
5%
Consumer
16%
Healthcare
6%Industrial
16%
Transportation
12%
Telecommunications
9%
Energy
10% Defense
18%
Building &
Construction
8%
END MARKET REGION
SPEC IA LTY ENGI NEER ED MATERI ALS
Packaging
32%
Consumer
26%
Healthcare
9%
Industrial
13%
Building &
Construction
6%
Telecommunications
2%
Energy
2% Defense
1%
Asia
(18% of sales)
Transportation
9%
2 0 2 3 AV I E N T R E G I O N A L S A L E S
Packaging
25%
Consumer
13%
Healthcare
5%
Industrial
18%
Building &
Construction
9%
Energy
5%
Defense
8%
EMEA
(36% of sales)Transportation
13%
Packaging
13%
Consumer
22%
Healthcare
10%
Industrial
16%
Building &
Construction
12%
Energy
6%
Defense
8%
US &
Canada
(41% of sales)
Transportation
9%
Packaging
59%
Consumer
22%
Healthcare
2%
Industrial
8%
Building &
Construction
4%
LATAM
(5% of sales)
Transportation
5%
Telecommunications
4%
Telecommunications
4%
23
B Y E N D M A R K E T
Reconciliation of Non-GAAP Financial Measures
(Unaudited)
(Dollars in millions, except for per share data)
Senior management uses comparisons of adjusted net income from continuing operations attributable to Avient shareholders
and diluted adjusted earnings per share (EPS) from continuing operations attributable to Avient shareholders, excluding special
items, to assess performance and facilitate comparability of results.
https://www.avient.com/sites/default/files/2023-10/2023 Syncure Wire and Cable Product Selection Guide.pdf
Syncure™ XLPE
Cross-linkable
Polyethylene
Formulations
FOR LOW VOLTAGE CABLES
PRODUCT SELECTION GUIDE
Syncure™ XLPE
MOISTURE CROSS-LINKABLE POLYETHYLENE INSULATION FOR LOW VOLTAGE CABLE SYSTEMS
SYSTEM S100FH S100FH-XUV S100FH-UV S100FV S100FV-UV S112NA S120NA S200FH S200FV
Applications
Building Wire,
Tray Cable
Building Wire,
Tray Cable
Photo-Voltaic (PV)
Wire
Building Wire,
Tray Cable
Building Wire,
Tray Cable
Building Wire,
Teck-90
Pipe and Tube
Building Wire, Tray Cable,
Service Entrance
Building Wire, Tray Cable,
Service Entrance
Specification UL 44 UL 44 UL 44, UL 4703 UL 44 UL 44 CSA 22.2
Suitable for
NSF 61
UL 44 UL 44
Wire Type
XHHW-2, RHW-2, USE-2,
SIS
XHHW-2, RHW-2, USE-2,
SIS
XHHW-2, RHW-2,
USE-2, SIS, PV
XHHW-2, RHW-2,
SIS
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
Components %
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
Features
Horizontal
Flame
Horizontal Flame,
UV Resistant,
Colors Possible
Horizontal Flame,
FV-1 Flame, UV Resistant,
Colors Possible
VW-1
VW-1, UV Resistant,
Colors Possible
Non-FR Rigid Pipe Applications
Horizontal Flame,
DBDPE-free
VW-1, DBDPE-free
GENERAL PROPERTIES
Specific Gravity 1.01 1.02 1.10 1.31 1.31 0.92 0.95 1.01 1.31
Hardness Shore D,
10 Seconds
47 47 47 48 48 47 59 47 48
Gel 68 68 70 70 70 72 72 68 70
TENSILE PROPERTIES
Tensile Strength
(psi) 2800 2500 2650 3200 2650 2800 4500 2800 3200
Elongation % 400 400 540 470 540 400 80 400 470
Tensile
Retention %
100 100 97 110 110 95 75 95 100
Elongation
Retention %
90 90 94 100 100 90 75 90 93
ELECTRICAL
Dielectric
Strength (V/mil) 1000 1400 1400 1200 1200 1000 – 1000 1200
Dielectric
Constant
2.31 2.45 2.61 2.61 2.61 2.24 2.1 2.31 2.61
Dissipation
Factor %
0.0012 0.0080 0.008 0.0043 0.0043 0.0008 0.002 0.0012 0.0043
THERMAL
Temperature
Rating °C
90 90 90 90 90 90 125 90 90
Heat
Deformation %
10 5 5 5 5 10 10 10 5
The Syncure™ XLPE portfolio is a two-step, silane-
grafted, moisture cross-linkable polyethylene system.
https://www.avient.com/sites/default/files/2020-12/firecon-cpe-a-processing-guide.pdf
EXTRUDER
Screw 1" to 6" deep flighted metering screw 3:1 compression ratio
Tooling
Tubing type – zero land (for smaller sizes)
Pressure type – for 1" size or larger
Die
Tubing type – low DDR
Pressure type – short land
L/D 24:1 or higher
Screen Pack 20/40/20 Mesh
Cooling Trough 120–150 °F (50–65 °C) recommended
Dryer Hot air or desiccant type, 4 hours at 175–185 °F
PROCESSING
Temperature
Wire Preheat None
Feed Zones 290–300 °F
Transition 320–340 °F
Metering 340–350 °F
Head/Die 350–365 °F
Target Melt 350–365 °F
Maximum Melt 390 °F
Purge Compound HDPE
www.avient.com
Copyright © 2020, Avient Corporation.
https://www.avient.com/sites/default/files/2021-05/avient-responsible-care-ehs-s-policies-2021.pdf
Bob Patterson
Chairman, President, and CEO
August 1, 2020
SAFETY & HEALTH POLICY
Avient Corporation believes safety and health are the highest corporate
priority.
Bob Patterson
Chairman, President, and CEO
August 1, 2020
Product Stewardship Policy
Product Stewardship plays a significant role in Avient’s sustainable and
ethical business practices.
Bob Patterson
Chairman, President, and CEO
August 1, 2020
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
ig
id
it
y
-
lb
/
in
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
e
ig
h
t
C
h
a
n
g
e
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
ig
id
it
y
- l
b-
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
G
LA
SS
/E
P
O
XY
T
AB
M
AT
ER
IA
L
TAB TESTING OF VARIOUS INSTALLATION METHODS
Hammerhead™
PETG Laminate
Hammerhead™
PETG Laminate
BOTTOM PANEL
LEG
LENGTH
BREAK
STRENGTH (LBS)
PETG Skins
with Plywood Core
1 in
1.5 in
2 in
2400
2820
2748
Hammerhead™
with 5.3 lb/ft3
Core Density
2 in 665
Hammerhead™
with 8.4 lb/ft3
Core Density
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
Hammerhead™
PETG Laminate
Hammerhead™
PETG Laminate
BOTTOM PANEL
LEG
LENGTH
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
BOTTOM PANEL
LEG
LENGTH
BREAK STRENGTH
(LBS)
Hammerhead™
with 5.3 lb/ft3
Core Density
2 in 420
Hammerhead™
with 8.4 lb/ft3
Core Density
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
MA420 Adhesive
NA 501
Hammerhead™
with 8.4 lb/ft3
Core Density -
ITW Plexus
MA420 Adhesive
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.
BOTTOM PANEL
LEG
LENGTH
BREAK STRENGTH
(LBS)
Hammerhead™
with 5.3 lb/ft3
Core Density
2 in 420
Hammerhead™
with 8.4 lb/ft3
Core Density
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
MA420 Adhesive
NA 501
Hammerhead™
with 8.4 lb/ft3
Core Density -
ITW Plexus
MA420 Adhesive
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 SubstrateCohesive
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 CohesiveAdhesive
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/2023-02/turkisk-entity-legal-information-en-tu.pdf
İNTERNET SİTESİ İÇERİĞİ
POLYONE TEKNO POLİMER MÜHENDİSLİK PLASTİKLERİ SANAYİ VE TİCARET
ANONİM ŞİRKETİ
Şirket Bilgileri (Yönlendirilmiş Mesaj)
No İçerik Detay
1 Ticaret Unvanı Polyone Tekno Polimer
Mühendislik Plastikleri Sanayi
ve Ticaret Anonim Şirketi
2 MERSİS Numarası 0836003561100014
3 Merkezi Orhan Gazi Mah.1683 Sk.
No.150
Şişli/İstanbul
1
WEBSITE CONTENT
POLYONE TEKNO POLİMER MÜHENDİSLİK PLASTİKLERİ SANAYİ VE TİCARET
ANONİM ŞİRKETİ
Content to be published permanently
* Please note that in case of any changes to the following content, the update shall be
published on the websites on the date such changes occur.
No Content Detail
1 MERSIS number of the Company 0836003561100014
2 Title of the Company Polyone Tekno Polimer
Mühendislik Plastikleri Sanayi
ve Ticaret Anonim Şirketi
3 Registered office of the Company Orhan Gazi Mah.1683 Sk.
https://www.avient.com/sites/default/files/2024-02/US_OH_North Baltimore_ ISO_IEC 17025.pdf
No. 0562.01) Revised 05/31/2022 Page 1 of 1
SCOPE OF ACCREDITATION TO ISO/IEC 17025:2017
AVIENT CORPORATION
733 East Water Street
North Baltimore, OH 45872
Claire Holman Phone: (419) 257-1327
MECHANICAL
Valid To: October 31, 2023 Certificate Number: 0562.01
In recognition of the successful completion of the A2LA evaluation process, accreditation is granted to this
laboratory to perform the following automotive plastics tests:
Test Method: Test Name:
ASTM D412 Tensile
ASTM D523 Specular Gloss
ASTM D618 (A) Conditioning of Plastics
ASTM D624 (Die C) Tear Strength
ASTM D638 Tensile Properties
ASTM D792 (A) Density and Specific Gravity by Displacement
ASTM D1004 Initial Tear Resistance
ASTM D1203 (A) Volatile Loss
ASTM D1895 (A) Apparent Density, Bulk Factor, Pourability
ASTM D1921 Particle Size (Sieve Analysis)
ASTM D2240 Durometer Hardness (Shore A and D)
ASTM E1331 Color by Spectrophotometry Using Hemispherical Geometry
FMVSS 571.302 Flammability
FORD BN-102-01 (A) Low Temperature Flexibility
FORD BO-131-03 Interior Odor
ISO 3795 Determination of Burning Behavior of Interior Materials
SAE J323 (A) Cold Cracking (Mandrel Bend)
SAE J1351 Hot Odor for Insulation Materials
SAE J1545 Instrumental Color Difference Measurement
SAE J1756 Fogging Characteristics of Interior Automotive Materials (Photometric Only)
DOC-058151 Angle of Repose
1 Laboratory Developed Method
For the tests to which this accreditation applies, please refer to the laboratory’s Mechanical Scope of Accreditation.