https://www.avient.com/news/avient’s-newest-trilliant-hc-materials-stand-disinfectants-better-alternative-fr-polymers
NOTE: On July 1, 2020, PolyOne and Clariant Masterbatches joined together as Avient, a new kind of materials company focused on conquering customer challenges and unlocking the potential for innovation and sustainability around the globe.
https://www.avient.com/news/avient-launches-colormatrix-optica-specialty-toners-enhanced-polycarbonate-clarity-chinaplas-2021
These new toners are formulated without heavy metal or restricted ingredients, and can be used at lower doses in comparison to alternatives like pigment and solid masterbatches.
https://www.avient.com/news/advanced-innovation-made-possible-sustainable-fr-solutions-polyone
OnCap™ Anti-Rodent & Anti-Termite Technology: non-hazardous, non-toxic and eco-conscious masterbatches that increase product life by preventing damage from rodents and termites
https://www.avient.com/news/polyone-launches-first-ever-tpe-blue-jean-stain-resistance-phone-cases
This new Versaflex offering can be pre-colored to specifications or used with a PolyOne OnColor™ masterbatch colorant.
https://www.avient.com/idea/how-use-color-and-texture-boost-vehicle-interior-appeal
The judicious use of color masterbatch, additives to provide texture to a part, and other color and additive formulations enable manufacturers to realize innovative color matching even as they incorporate new materials into the mix.
https://www.avient.com/sites/default/files/2025-05/Cesa Low Retention Product Bulletin.pdf
KEY CHARACTERISTICS
• Eliminates secondary coating operations
• Easily delivers the last drop out of a container
• Reduces residual content
• Reduces production costs
• Won’t impact visual clarity
• Non-PFAS formulations available
APPLICATIONS
Cesa Low Retention Additives are suitable for any
olefinic application that would benefit from the
ability to repel water or fluids, including:
• Labware, including pipette tips
• Monofilaments
• Industrial fixtures
• Woven fibers
• Platform mats
• Molded optical lenses
• Medical devices
• Extruded films
• Carpet fibers
• Textiles
PRODUCT BULLETIN
https://www.avient.com/sites/default/files/2021-11/polystrand-product-selection-guide_0.pdf
POLYSTRAND
CONTINUOUS FIBER
REINFORCED
THERMOPLASTIC
TAPES & LAMINATES
™
PRODUCT SELECTION GUIDE
Material Min Finished
Slit Width
Max Finished
Slit Width
Unidirectional Tape 2” (50.8 mm) 24” (610 mm)
X-Ply™, 3-Ply, 4-Ply 2” (50.8 mm) 120” (3048 mm)
SLITTING CAPABILITIES
Max Unfinished Width Max Finished Slit Width Max Finished Roll Weight Max Roll Length
(X-Ply™, Full Width)
Up to 125"
(3175 mm)
Up to 120"
(3048 mm)
Up to 10,000 lbs
(4500 kg)
Up to 4,000 ft
(1200 m)
LAMINATION LINE CAPABILITIES
Tape Width Resin Capabilities Fiber Inputs Max Tape Roll Weight Max Roll Length
25" (635 mm)
Standard Width,
Slit Capabilities
PP, PE, PETG,
aPET, PA6
Additional polymers
in development
E-Glass
S-Glass, Aramid
Up to 1,800 lbs
(816 kg)
Up to 12,000 ft
(366 m)
TAPE LINE CAPABILITIES
Product
Name Resin Fiber
Content Areal Weight Nominal
Thickness1
Flexural
Modulus
Flexural
Strength
Tensile
Modulus
Tensile
Strength
wt % lb/ft2 oz/yd2 gsm in mm ksi GPa ksi MPa ksi GPa ksi MPa
6337
PP
63 0.10 14.75 500 0.015 0.38 3570 24.6 58 402 4010 27.6 111 765
6531
65
0.05 7.40 251 0.006 0.15 4020 27.7 73 505 4900 33.8 140 965
6536 0.07 10.32 350 0.009 0.23 4050 27.9 72 494 4500 31.0 131 903
6538 0.14 19.77 670 0.019 0.48 3540 24.4 47 324 4260 29.4 100 689
7034B PP-Black 70 0.07 10.24 347 0.009 0.23 4400 30.3 83 569 5000 34.5 111 765
6020
PE
60 0.08 11.95 405 0.012 0.30 3600 24.8 54 372 3800 26.2 109 752
6621 66 0.10 13.97 474 0.012 0.30 4000 27.6 55 379 4720 32.5 126 869
68222 68 0.16 23.34 791 0.022 0.56 4060 28.0 55 379 4560 31.4 113 779
5843 PETG 58 0.08 11.85 402 0.008 0.20 3680 25.4 90 621 4400 30.3 137 945
5840B aPET-Black 58 0.09 13.00 441 0.009 0.23 4120 28.4 107 738 5080 35.0 150 1034
5860B PA6-Black 58 0.08 11.48 389 0.010 0.25 3620 25.0 104 717 3970 27.4 108 745
TYPICAL PROPERTIES - UNIDIRECTIONAL FIBERGLASS REINFORCED THERMOPLASTIC TAPE
1 Nominal thicknesses indicated are baseline values that may vary depending on material processing and other variables.
TYPICAL PROPERTIES - MULTI-AXIAL LAMINATES
0° Testing Orientation 90° Testing Orientation
Product
Name Resin Fiber
Content
Laminate Layers
& Orientation Areal Weight Nominal
Thickness1
Flexural Modulus
Flexural Strength
Tensile Modulus
Tensile Strength
Flexural Modulus
Flexural Strength
Tensile Modulus
Tensile Strength
wt % lb/ft2 oz/yd2 gsm in mm ksi GPa ksi MPa ksi GPa ksi MPa ksi GPa ksi MPa ksi GPa ksi MPa
6337
PP
63
0/90 0.20 29.49 1000 0.031 0.79 - - - - 2020 13.9 59.7 412 - - - - 2020 13.9 59.7 412
0/90/0 0.31 44.24 1500 0.045 1.14 2250 15.5 46.4 320 3070 21.2 79.4 547 186 1.3 9.7 67 1330 9.2 39.6 273
0/90/90/0 0.41 58.98 2000 0.057 1.45 2000 13.8 44.0 303 2400 16.5 60.6 418 496 3.4 20.7 143 2210 15.2 56.4 389
6531
65
0/90 0.10 14.80 502 0.014 0.36 - - - - 2240 15.4 60.9 420 - - - - 2240 15.4 60.9 420
0/90/0 0.15 22.20 753 0.020 0.50 2650 18.3 58.3 402 3100 21.4 82.8 571 280 1.9 NB2 NB2 1670 11.5 42.5 293
0/90/90/0 0.21 29.61 1004 0.027 0.68 2260 15.6 51.5 355 2470 17.0 62.2 429 580 4.0 30.4 210 2310 15.9 59.6 411
6536
0/90 0.14 20.71 702 0.021 0.53 - - - - 1980 13.7 60.5 417 - - - - 1980 13.7 60.5 417
0/90/0 0.22 31.06 1053 0.029 0.74 2309 15.9 48.3 333 2730 18.8 81.5 562 245 1.7 13.0 90 1490 10.3 44.3 305
0/90/90/0 0.29 41.41 1404 0.037 0.94 2164 14.9 47 324 2170 15.0 59.6 411 512 3.5 25.4 175 2340 16.1 71.2 491
6538
0/90 0.27 39.54 1341 0.034 0.86 - - - - 2220 15.3 60.0 414 - - - - 2220 15.3 60.0 414
0/90/0 0.41 59.53 2018 0.057 1.44 2825 19.5 40.9 282 2780 19.2 67.6 466 218 1.5 10.2 70 1410 9.7 40.0 276
0/90/90/0 0.55 79.37 2691 0.073 1.85 1880 13.0 32.4 223 2060 14.2 54.0 372 478 3.3 18.0 124 2360 16.3 61.0 421
7034B PP-Black 70
0/90 0.14 20.48 694 0.016 0.40 - - - - 2680 18.5 62.0 427 - - - - 2680 18.5 62.0 427
0/90/0 0.21 30.72 1041 0.028 0.71 1750 12.1 55.9 385 3710 25.6 75.1 518 160 1.1 11.3 78 1440 9.9 36.2 250
0/90/90/0 0.28 40.95 1388 0.036 0.90 1700 11.7 40.4 279 2800 19.3 55.7 384 432 3.0 25.4 175 2350 16.2 52.4 361
6020
PE
60
0/90 0.17 23.90 810 0.023 0.57 - - - - 1830 12.6 52.00 359 - - - - 1830 12.6 52.0 359
0/90/0 0.25 35.86 1216 0.033 0.84 2265 15.6 40.0 276 2740 18.9 68.2 470 181 1.2 10.0 69 1350 9.3 35.3 243
0/90/90/0 0.33 47.81 1621 0.044 1.12 1810 12.5 30.0 207 2000 13.8 48.0 331 502 3.5 22.0 152 1820 12.5 46.0 317
6621 66
0/90 0.19 27.94 947 0.025 0.65 - - - - 2280 15.7 60.0 414 - - - - 2280 15.7 60.0 414
0/90/0 0.29 41.90 1421 0.040 1.01 2490 17.2 37.0 255 2900 20.0 70.0 483 165 1.1 9.7 67 1440 9.9 38.0 262
0/90/90/0 0.39 55.87 1894 0.053 1.35 1810 12.5 29.0 200 2160 14.9 58.0 400 508 3.5 21.0 145 2170 15.0 53.0 365
5843 PETG 58
0/90 0.16 23.70 804 0.020 0.50 - - - - 2050 14.1 59.6 411 - - - - 2050 14.1 59.6 411
0/90/0 0.25 35.55 1205 0.030 0.76 2800 19.3 89.0 614 2900 20.0 78.0 538 397 2.7 NB2 NB2 1580 10.9 42.5 293
0/90/90/0 0.33 47.40 1607 0.039 0.99 2540 17.5 72.0 496 2300 15.9 57.7 398 780 5.4 35.0 241 2170 15.0 63.0 434
5840B aPET-Black 58
0/90 0.18 26.01 882 0.021 0.53 - - - - 2530 17.4 55.3 381 - - - - 2530 17.4 55.3 381
0/90/0 0.27 39.01 1323 0.032 0.82 2986 20.6 91.1 628 3160 21.8 68.7 474 252 1.7 20.0 138 1580 10.9 36.9 254
0/90/90/0 0.36 52.01 1763 0.042 1.07 3065 21.1 73.1 504 2570 17.7 54.2 374 813 5.6 37.0 255 2440 16.8 55.6 383
5860B PA6-Black 58
0/90 0.16 22.95 778 0.021 0.52 - - - - 2190 15.1 56.00 386 - - - - 2190 15.1 56.0 386
0/90/0 0.24 34.43 1167 0.034 0.86 2510 17.3 117.0 807 2760 19.0 63.7 439 657 4.5 22.2 153 1630 11.2 39.7 274
0/90/90/0 0.32 45.91 1556 0.046 1.18 2210 15.2 106.0 731 2090 14.4 45.6 314 1110 7.7 50.8 350 2150 14.8 57.4 396
1 Nominal thicknesses indicated are baseline values that may vary depending on material processing and other variables.
https://www.avient.com/sites/default/files/2020-09/stat-tech-tri-fold-processing-guide.pdf
These materials combine the performance
of select engineering resins with reinforcing additives, such as carbon powder, carbon fiber, nickel-coated carbon fiber and
stainless steel fiber, for low-to-high levels of conductivity depending upon application requirements.
PROBLEM CAUSE SOLUTION
Incomplete Fill Melt and/or mold
temperature too cold
Shot Size
• Increase nozzle and barrel temperatures
• Increase mold temperature
• Increase injection speed
• Increase pack and hold pressure
• Increase nozzle tip diameter
• Check thermocouples and heater bands
• Enlarge or widen vents and increase number of vents
• Check that vents are unplugged
• Check that gates are unplugged
• Enlarge gates and/or runners
• Perform short shots to determine fill pattern and verify
proper vent location
• Increase wall thickness to move gas trap to parting line
• Increase cushion
Brittleness Melt temperature too low
Degraded/Overheated material
Gate location and/or size
• Increase melt temperature
• Increase injection speed
• Measure melt temperature with pyrometer
• Decrease melt temperature
• Decrease back pressure
• Use smaller barrel/excessive residence time
• Relocate gate to nonstress area
• Increase gate size to allow higher flow speed
and lower molded-in stress
Fibers on Surface
(Splay)
Melt temperature too low
Insufficient packing
• Increase melt temperature
• Increase mold temperature
• Increase injection speed
• Increase pack and hold pressure, and time
Sink Marks Part geometry too thick
Melt temperature too hot
Insufficient material volume
• Reduce wall thickness
• Reduce rib thickness
• Decrease nozzle and barrel temperatures
• Increase shot size
• Increase injection rate
• Increase packing pressure
Flash Injection pressure too high
Excess material volume
Melt and/or mold
temperature too hot
• Decrease injection pressure
• Increase clamp pressure
• Decrease injection speed
• Increase transfer position
• Decrease pack pressure
• Decrease shot size
• Decrease injection speed
• Decrease nozzle and barrel temperatures
• Decrease mold temperature
• Decrease screw speed
TROUBLESHOOTING RECOMMENDATIONS
PROBLEM CAUSE SOLUTION
Excessive Shrink Too much orientation • Increase packing time and pressure
• Increase hold pressure
• Decrease melt temperature
• Decrease mold temperature
• Decrease injection speed
• Decrease screw rpm
• Increase venting
• Increase cooling time
Not Enough Shrink Too little orientation • Decrease packing pressure and time
• Decrease hold pressure
• Increase melt temperature
• Increase mold temperature
• Increase injection speed
• Increase screw rpm
• Decrease cooling time
Burning Melt and/or mold
temperature too hot
Mold design
Moisture
• Decrease nozzle and barrel temperatures
• Decrease mold temperature
• Clean, widen and increase number of vents
• Increase gate size or number of gates
• Verify material is dried at proper conditions
Nozzle Drool Nozzle temperature too hot • Decrease nozzle temperature
• Decrease back pressure
• Increase screw decompression
• Verify material has been dried at proper conditions
Weld Lines Melt front temperatures
too low
• Increase pack and hold pressure
• Increase melt temperature
• Increase vent width and locations
• Increase injection speed
• Decrease injection speed
• Increase gate size
• Perform short shots to determine fill pattern and verify
proper vent location
• Add vents and/or false ejector pin
• Move gate location
Warp Excessive orientation
• Increase cooling time
• Increase melt temperature
• Decrease injection pressure and injection speed
• Increase number of gates
Sticking in Mold Cavities are overpacked
Part is too hot
• Decrease injection speed and pressure
• Decrease pack and hold pressure
• Decrease nozzle and barrel temperatures
• Decrease mold temperature
• Increase cooling time
• Increase draft angle
• Decrease nozzle and barrel temperatures
• Decrease mold temperature
TROUBLESHOOTING RECOMMENDATIONS
www.avient.com
Copyright © 2020, Avient Corporation.
https://www.avient.com/sites/default/files/2024-07/Ballistic Resistant Composite Panels Product Selection _ Install Guide.pdf
Originally developed for protection from mortar
fire, fiber-reinforced composite panels offer
superior ballistic resistance at less than 25% of the
weight of a comparable steel panel.
PRODUCT DESCRIPTION
GlasArmor™ thermoset panels are constructed
from layers of 0°/90° woven E-glass fiber
reinforcements with a proprietary resin system.
ThermoBallistic™
thermoplastic panels are thermally formed
with layers of 0°/90° unidirectional E-glass fiber
reinforcements with polyolefin-based resin systems
and are available for protection to UL 752 level 3.
https://www.avient.com/sites/default/files/2022-05/AVNT May IR Presentation w Non GAAP Recs.pdf
Examples include:
• Unique technologies that improve the
recyclability of products and enable recycled
content to be incorporated, thus advancing a
more circular economy
• Light-weighting solutions that replace heavier
traditional materials like metal, glass and wood,
which can improve fuel efficiency in all modes of
transportation and reduce carbon footprint
• Sustainable infrastructure solutions that increase
energy efficiency, renewable energy, natural
resource conservation and fiber optic / 5G
network accessibility
Avient employs approximately 8,700 associates and is
certified ACC Responsible Care® and a founding
member of the Alliance to End Plastic Waste.
FX)
$429
$490
$3.05
$3.50
FY 2022 PERFORMANCE
16
$4,819
$5,100
+ 6%
(+ 8% excluding FX)
Adjusted EPS
+ 14%
(+ 17% excluding FX)
+ 15%
(+ 18% excluding FX)
(in millions) (in millions)
Sales Adjusted Operating Income
17
CASH FLOW / LEVERAGE
($ millions) 2022E
Cash Flow from Operating Activities 400$
Less:
Run-Rate CapEx (90)
CapEx for Clariant Integration (10)
CapEx for IT System Upgrade (15)
Total CapEx (115)
Free Cash Flow 285$
Adjusted EBITDA 635$
Net Debt / Adjusted EBITDA 1.7x
DYN E E MA ACQ U I S I T I O N
19
15x stronger than steel
Reduces weight by 30% vs. other solutions
Well-maintained global asset base poised to serve growing demand
• Purchase price of $1.48B represents 11.4x multiple of
2022 EBITDA
• Acquisition will expand Avient’s composites and fiber
portfolio with Dyneema®, the World’s Strongest Fiber™
• $415M sales and 30%+ EBITDA margins; Immediately
accretive to pro forma 2022 EPS, adding $0.35
• 1,300 patents globally, ~50% of sales patent protected
• 1,000+ employees across global production network and
dedicated technology centers
• Composites platform will increase from $261M to $680M in
revenue and from $49M to $180M in EBITDA Indicates Dyneema® location
$175M
(42%)
$65M
(16%)
$175M
(42%)
2022E Sales By Region ($M)
(1) $0.35 EPS excludes intangible amortization
(2) Based on 2022 expected results
(1) (2)
(2)
FIT WITH FOUR PILLAR STRATEGY
20
Specialization
• Innovation-led organization with
tremendous intellectual property value in
trademarks, patents and “know-how”
• Deep history of application development
and premium, leading brand with the
World’s Strongest FiberTM
Globalization
• Global customer base with an
established presence across all major
geographic regions
• Global technology centers complement
existing Composites applications and
expertise
Operational
Excellence
• Best-in-class safety performance
• Well-run and maintained asset base fit to
serve future growth
• Highly effective and reliable supply chain
with emphasis on optimizing service to
customers
Commercial
Excellence
• Deep customer relationships extend
across the value chain and drive ability
to grow
• Offer a full suite of services with an active
role in design, development and
commercialization
People
Experienced and
talented associates
with a passion for
safety, specialization
and winning
DYNEEMA® OVERVIEW
K E Y I N D U S T R I E S
PERSONAL PROTECTION
Military • Law Enforcement • First
Responders Body Armor • Helmets •
Vehicle Protection
$215M
MARINE & SUSTAINABLE
INFRASTRUCTURE
Towing / Mooring • Aquaculture •
Floating Wind • Offshore Cranes
$130M
CONSUMER
Consumer • Outdoor High Performance •
Safety Equipment
$70M
21 Figures reflect 2022 expected sales
MIFOverview Competition Valuechain &
Go-to-market Strategy Innovation Financials
TECHNOLOGY
22
1,200 1,300
2,500
Avient Dyneema Combined
Patents
• True specialty business – the World’s Strongest Fiber™
• Deep history of application development with customers,
strongest in the industry
• The only UHMwPE (ultra-high molecular weight polyethylene)
fiber producer that is backward integrated
o Provides innovation advantage through control of all steps of the process
• Complementary with our existing reinforced film expertise
(PolyStrand) and engineered fiber presences (Fiber-Line)
WINNING PROPERTIES
Ultra high strength vs. weight Highly flexible
Floats on water Chemically inert; no smell/taste and non-toxic
High resistance to UV radiation Self-lubricating, with low friction
One-of-a-kind technology
®
FORMULATION PROCESS
23
• Like Avient, Dyneema® offers similar
core competencies around formulation
and material science
• Technology that combines polymers and
fibers to provide specialized, high
performing solutions for customers
• Design capabilities ensure that
applications are highly customized for
the specified end use
DYNEEMA® IN THE VALUE CHAIN
24
UHMwPE
Fiber / Tapes
Military Personnel,
Law Enforcement
Heavy Marine,
Offshore Wind Energy
and Mooring,
Aquaculture
Outdoor,
Footwear, Apparel,
Inflatables
• Material Science
• Formulation
• Service
INTERMEDIATE MANUFACTURING
(CUSTOMERS) OEM / APPLICATION
DEMAND TRENDS
25
• Military spending and near-term demand for higher performing personal protection
products (like Dyneema®) expected to increase
o European NATO members annual defense spend expected to increase by up to 20%(1)
o Japan aiming to almost double defense spending over the next 5 years(2)
o Accelerated launch of next generation technology in North America
• Policy-driven demand for sustainable energy; growth in floating offshore wind
farms which require advanced, durable technology
o Offshore wind expected to grow at a CAGR of 32% with the level of annual installations
quadrupling over the next five years(3)
• Continued investment in aquaculture as a sustainable food source(4)
• Strong demand in outdoor high performance space across niche consumer
applications aligns with 10% growth assumption for Avient’s Composites portfolio
Sources:
(1) “Funding NATO”, NATO.int (April 1, 2022)
(2) “Japan Ruling Party Calls for Defense Spending Boost to 2% of GDP”, WSJ (April 21, 2022)
(3) “Global Wind Report 2021”, Global Wind Energy Council
(4) “Aquaculture Supports a Sustainable Earth”, NOAA Fisheries
26
A L I G N M E N T W I T H
S U S T A I N A B I L I T Y G O A L S
PRODUCTS
AVIENT’S EXISTING COMPOSITES PORTFOLIO
D I V E R S E C A P A B I L I T I E S A N D S O L U T I O N S S E R V I N G
M A N U F A C T U R E R S A N D O E M S
LFT Tapes Laminates/Panels Shapes Pultrusion Engineered Fibers
27
AVIENT’S COMPOSITES PORTFOLIO
SALES AND EBITDA
28
$74 $84
$216 $212
$261
$5 $10
$32
$41
$49
$180
0
100
150
200
$-
$50
$100
$150
$200
$250
$300
$350
$400
$450
$500
$550
$600
$650
$700
$750
2017 2018 2019 2020 2021 2022E
$680
• Dyneema® acquisition will further
improve Composites EBITDA margins
to 26%
• Dyneema® will complement our
existing portfolio with deep formulation
expertise, innovative culture and
global commercial presence
• Composites will continue to be a key
growth driver to deliver future revenue
growth in excess of GDP
(1) Pro forma for the acquisition of Dyneema®
DISTRIBUTION DIVESTITURE
CONSIDERATIONS
DISTRIBUTION HIGHLIGHTS
30
$21
$57
$69
$94
$105
0
100
150
2006 2011 2016 2021 2022E
• Leading North American Distribution business with
longstanding blue-chip supplier and customer
relationships
• Commercial excellence and regulatory knowledge have
grown healthcare portfolio to over 25% of sales and
positioned business for long-term growth
• Highly specialized portfolio of engineered polymers along
with sustainable solution offerings
• Leading digital capabilities through Avient Now, allowing
enhanced visibility and 24/7 interface with customers
• 98% free cash flow conversion drives greater than 30%
after-tax return on invested capital (ROIC)
• Potential divestiture allows us to remain modestly
leveraged with net debt to adjusted EBITDA expected to
be 2.9x and positions us for further specialty growth in the
future
EBITDA (in $M)
DYNEEMA® TRANSACTION OVERVIEW
31
- $1.48B net purchase price
- Represents 11.4x expected 2022 EBITDA
- Committed financing in place
- Permanent financing to be combination of available cash on-hand, new
Senior Unsecured Notes, new Senior Secured Term Loan
- Potential proceeds from Distribution divestment could be used to pay down
near-term maturing debt
- Closing expected in second half of 2022, subject to regulatory
approvals and certain customary closing conditions
Transaction
Value
Financing
Closing
Conditions /
Timing
CAPITAL STRUCTURE / LEVERAGE
32
• Financing commitments secured from Morgan Stanley
and J.P.
Purchase price multiple rapidly declining on strength of
business and synergy capture
(1) Financial information is pro forma to include a full year of Clariant Color acquisition
11.9%
16.2%
2019PF 2021
EBITDA Margins
SPECIALTY TRANSFORMATION
46%
66%
86%
100%
0%
40%
60%
80%
100%
2005 2010 2015 2021 2022 PF
%
o
f A
dj
us
te
d
EB
IT
D
A(1
)
JVs Distribution Performance Products & Solutions Specialty
(1) Adjusted EBITDA is EBITDA excluding corporate costs and special items
(2) Pro forma for the acquisition of Dyneema® and potential divestiture of Distribution
(2)
38
CULTURE AND PEOPLE
39
OUR SPECIALTY JOURNEY CONTINUES
40
• Dyneema® brings leading technology and brand with the World’s
Strongest Fiber™, deep history of application development and
strong management team focused on specialty applications
• Dyneema® transaction is aligned with our previously stated acquisition
goal of expanding our composites and fiber capabilities
• Similar to our other technology expansion acquisitions, Dyneema®
allows us to leverage our invest-to-grow strategy
• We plan to explore a possible sale of our Distribution business.