https://www.avient.com/sites/default/files/resources/POL%2520Gabelli%2520IR%2520Presentation%2520w%2520Non-GAAP%252003%252020%25202014.pdf
Use of Non-GAAP Measures
Page 3
PolyOne Commodity to Specialty Transformation
Page 4
• Continue specialty
transformation
• Targeting $2.50
Adjusted EPS by
2015, nearly
double 2013 EPS
• Drive double digit
operating income
and adjusted EPS
growth
• 17 consecutive
quarters of double-
digit adjusted EPS
growth
• Shift to faster
growing, high
margin, less cyclical
end markets
• Key acquisitions
propel current and
future growth, as
well as margin
expansion
• Established
aggressive 2015
targets
• Steve Newlin
Appointed,
Chairman, President
and CEO
• New leadership
team appointed
• Implementation of
four pillar strategy
• Focus on value
based selling,
investment in
commercial
resources and
innovation to drive
transformation
• Volume driven,
commodity
producer
• Heavily tied to
cyclical end markets
• Performance largely
dependent on non-
controlling joint
ventures
2000-2005 2006 - 2009 2010 – 2013 2014 and beyond
-150.00%
-50.00%
50.00%
150.00%
250.00%
350.00%
PolyOne S&P 500 Russell 2000 Dow Jones Chemical
All time high of
$38.38
March 7th, 2014
• 17 consecutive quarters of
double digit EPS growth
• 49% CAGR adjusted EPS
expansion 2006-2013
• 2013 stock price increased
73% versus 30% growth in the
S&P
• More than seven fold increase in
market cap: $0.5b $3.6b
Strategy and Execution Drive Results
Page 5
Appliance
4%
Building &
Construction
13%
Wire & Cable
9%
Electrical &
Electronics
5%
Consumer
10%Packaging
16%
Industrial
12%
HealthCare
11%
Transportation
18%
Misc.
2%
United
States
66%
Europe
14%
Canada
7%
Asia
6%
Latin
America
7%
PP&S
Specialty
53%
Distribution
27%
0.12
0.27 0.21
0.13
0.68
0.82
1.00
1.31
2.50
$0.00
$0.25
$0.50
$0.75
$1.00
$1.25
$1.50
$1.75
$2.00
$2.25
$2.50
2006 2007 2008 2009 2010 2011 2012 2013 2015
Target
Ad
ju
st
ed
E
ar
ni
ng
s P
er
S
ha
re
2013 Revenues: $3.8 Billion
End Markets
2013 Revenues: $3.8 Billion
EPS
Page 6
PolyOne
At A Glance
Old
PolyOne Transformation
*Operating Income excludes corporate charges and special items
2%
34% 43%
62%
65-
75%
0%
20%
40%
60%
80%
100%
2005 2008 2010 2013 2015
%
o
f O
pe
ra
tin
g
In
co
m
e*
JV's Performance Products & Solutions Distribution Specialty
Specialty OI $5M $46M $87M $195M Target
Mix Shift Highlights Specialty Transformation
2015
Target
Page 7
2006 2013 2015
“Where we were” “Where we are” Target
1) Operating Income %
Specialty:
Global Color, Additives & Inks 1.7% 12.2% 12 – 16%
Global Specialty Engineered
Materials 1.1% 9.3% 12 – 16%
Designed Structures & Solutions -- 5.6% 8 – 10%
Performance Products &
Solutions 5.4% 7.2% 9 – 12%
Distribution 2.6% 5.9% 6 – 7.5%
2) Specialty Platform % of
Operating Income 6.0% 62% 65 – 75%
3) ROIC* (after-tax) 5.0% 9.1% 15%
4) Adjusted EPS Growth N/A 31% Double Digit
Expansion
Proof of Performance & 2015 Goals
*ROIC is defined as TTM adjusted OI divided by the sum of average debt and equity over a 5 quarter period
Page 8
Bridge To $2.50 Adjusted EPS By 2015
2015 EPS: $2.50
2013 EPS: $1.31
Mid single digit
revenue CAGR
Page 9
Mergers & Acquisitions
Spartech accretion
Incremental share buybacks
Ongoing LSS Programs
(50-100 bps/yr)
Accelerated Innovation &
Mix Improvement
Innovation Drives Earnings Growth
$20.3
$52.3
2006 2013
Research & Development
Spending
($ millions)
Specialty Platform
Vitality Index Progression*
*Percentage of Specialty Platform revenue from products introduced in last five years
Page 10
14.3%
30.7%
2006 2013
Specialty Platform
Gross Margin %
19.5%
43.0%
2006 2013
Healthcare
Consumer
Packaging and Additive Technology
Transportation
Page 11
Unique and Innovative Solutions that Help
Customers Win
https://www.dropbox.com/sh/dwe4t8aacvhb8ui/uD3p_bdglP/Presentation revise pics/GLS Beverage can closure XO 2.jpg
https://www.dropbox.com/sh/dwe4t8aacvhb8ui/-YgkycKypw/Anti-Counterfeiting release & images/GN1979.JPG
Net Debt / EBITDA* = 1.8x
$48
$317
$600
$0
$100
$200
$300
$400
$500
$600
$700
$800
2015 2020 2023
Significant Debt Maturities
As of December 31, 2013
($ millions)
Page 12
Coupon Rates: 7.500% 7.375% 5.250%
Debt Maturities & Pension Funding – 12/31/13
*TTM 12/31/2013 ** includes US-qualified plans only
60%
100%
20%
30%
40%
50%
60%
70%
80%
90%
100%
2008 2013
Pension Funding**
As of December 31, 2013
Free Cash Flow and Strong Balance Sheet Fund Investment
•Targets that expand our:
• Specialty offerings
•End market presence
•Geographic footprint
•Operating Margin
• Synergy opportunities
•Adjacent material solutions
•Expanding our sales,
marketing, and technical
capabilities
• Investing in operational and
LSS initiatives (including
synergy capture)
•Manufacturing alignment Organic
Growth
Share
Repurchases
Dividends
Acquisitions
Page 13
$0.16
$0.20 $0.24
$0.32
$0.00
$0.10
$0.20
$0.30
$0.40
2011 2012 2013 2014
Annual Dividend
• Repurchased ~5 million
shares in 2013
• 15 million shares
are available for
repurchase under
the current
authorization
The New PolyOne: A Specialty Growth Company
2015 Target: $2.50 Adjusted EPS
Why Invest In PolyOne?
https://www.avient.com/sites/default/files/2024-05/Responsible Care_14001 Global Cert_Avient_2024.pdf
Avient Corporation - Butterworth, Malaysia
Lot 1232, MK. 15, Kawasan Industri
Kecil & Sederhana
Butterworth, Penang 14120
Malaysia
65536-116860Certificate No:
Page 11 of 53
ABS Quality Evaluations, Inc. 1701 City Plaza Drive, Spring, TX 77389, U.S.A.
Avient Corporation - Guatemala City
27 Avenida 34-11, Zona 12 Complejo Parque
Guatemala City 01012
Guatemala
65536-116866Certificate No:
Page 15 of 53
ABS Quality Evaluations, Inc. 1701 City Plaza Drive, Spring, TX 77389, U.S.A.
https://www.avient.com/sites/default/files/2024-06/OnColor UL 94 Colorants Brochure.pdf
Compliance to IEC 60695 part 2-11 for the end product and parts 2-12 and 2-13 for materials is required in
Europe—and increasingly in other regions—for certain electrical and electronic applications.
ONCOLOR™
UL 94 COLORANTS
HOW TO USE THE TABLES
UL HB
GENERIC RESIN TYPE FLAME
MINIMUM
THICKNESS
MAXIMUM
LET-DOWN
Acetal Copolymer (POM) HB 1.50 1:20
Acrylonitrile Butadiene Styrene (ABS) HB 1.50 1:10
Ethylene Propylene Thermoplastic Rubber (EPTR) HB 1.50 1:20
High Impact Polystyrene (HIPS) HB 1.50 1:10
Liquid Crystal Polymer (LCP) HB 0.83 1:10
Polyamide (PA) HB 3.20 1:33
Polyamide (PA66 and PA 4/6) HB 0.81 1:20
Polyamide 6 (PA6) HB 0.75 1:25
Polyamide 66 (PA66) HB 0.40 1:40
Polybutylene Terephthalate (PBT) HB 0.81 1:20
Polybutylene Terephthalate/Polycarbonate (PBT/PC) HB 1.50 1:10
Polycarbonate (PC) HB 1.50 1:15
Polycarbonate/Acrylonitrile Butadiene Styrene (PC/ABS) HB 1.50 1:20
Polycarbonate/Polyethylene Terephthalate (PC/PET) HB 1.50 1:20
Polyethylene (PE) HB 1.50 1:50
Polyethylene Terephthalate (PET) HB 0.80 1:16.7
Polyketone HB 1.50 1:20
Polymethyl Methacrylate (PMMA) HB 3.00 1:25
Polypropylene (PP) HB 1.50 1:15
Polystyrene (PS) HB 0.83 1:15
Polyurethane (PUR) HB 1.50 1:25
Polyvinylchloride (PVC) HB 1.50 1:20
Styrene Acrylonitrile (SAN) HB 1.50 1:20
Thermoplastic Elastomer (TPE) HB 0.75 1:25
ASCEND
GENERIC
MINIMUM
THICKNESS
FLAME
MAXIMUM
LET-DOWN
Polyamide 66
21X1(a)(f2), 21SPC1(a)(f2),
21SPF1(a)(f2), 21SPG1(a)(f2),
21SPM1(a)(f2), 20NSP1(a)(f2)
0.75 V-2 1:40
22HSP(e) 0.75 V-2 1:40
64C-R 3.0 V-2 1:50
ECO366(e) 0.4 V-0 1:40
ECO366H(e) 0.2 V-0 1:25
FR350J 0.4 V-0 1:25
20NSP(a)(f2), 21SPF(a)(f2),
21SPM(a)(f2), 21SPC(a)(f2) 0.4 V-2 1:40
20NSP(a)(h)(f2), 21SPF(a)(h)(f2),
21SPM(a)(h)(f2), 21SPC(a)(h) (f2) 1.5 V-2 1:20
Polyamide 66/6
(PA66/6)
ECO315(e), ECO315J(e) 0.4 V-0 1:40
M344 3.0 V-0 1:25
909 0.75 V-0 1:25
BASF
GENERIC
MINIMUM
THICKNESS
FLAME
MAXIMUM
LET-DOWN
Polyamide 6
8202(t1), 8202 Blend (t1) 0.71 V-2 1:25
8202C(t1), 8202C BLEND (t1) 1.50 V-2 1:25
8202CHS(t1) (t3), 8202C HS Blend 1.50 V-2 1:25
8202HS(t1) 1.50 V-2 1:25
B3S
0.80 V-2 1:25
B3S Q661 1.50 V-2 1:25
B3S R03 1.50 V-2 1:25
8232G HSFR(t9), B3U10G5 (t9) 1.50 V-0 1:25
Polyamide 6/66
(PA6/66)
C3U (m) 0.40 V-0 1:25
KR4205(m), C3U (m), C3U (t)(m) 0.40 V-0 1:25
KR4205, C3U 0.40 V-0 1:25
Polyamide 66
1000(b), 1310-(b), Ultramid A3K Q603(+) 1.50 V-2 1:10
A3K (o) Q790(g)(f2) 0.41 V-2 1:20
A3K(f2), A3K Q601(f2) 0.41 V-2 1:20
A3SK 0.41 V-2 1:25
A5 3.00 V-2 1:33
A3W(f1), A3W FC (f1) 0.75 V-2 1:10
A3K R01 (t)(g)(f2) 0.40 V-2 1:20
Polybutylene
Terephthalate
B4406 G2 (o) Q798 1.50 V-0 1:20
B4406 G2(a), B4406 G2 (o) Q717(a) 1.50 V-0 1:20
B4406 G3 (o) Q798 1.50 V-0 1:20
B4406 G3(a), B4406 G3 (o) Q717(a) 1.50 V-0 1:20
B4406 G4 (o) Q798 1.50 V-0 1:20
B4406 G4(a2), B4406 G4 (o) Q717(a2) 1.50 V-0 1:20
B4406 G6 (o) Q798 3.00 V-0 1:12.5
B4406 G6(%) 1.50 V-0 1:20
B4406 G6(a1), B4406 G6 (o) Q717(a1),
B4406 G6 (o) Q717 High Speed(a1) 1.50 V-0 1:20
B4406(a), B4406 (o) Q717(a) 1.50 V-0 1:20
B4406@ 1.50 V-0 1:20
B4450 G5, B4450 G5 (t) 0.40 V-2 1:50
Polyurethane
(PUR) 11 85 A(a) FHF 000 (f2) 0.75 V-0 1:33
CELANESE
GENERIC
MINIMUM
THICKNESS
FLAME
MAXIMUM
LET-DOWN
Liquid Crystal
Polymer
(LCP)
A130(+), MT1310 1.50 V-0 1:40
Polyamide
(PA)
132F(+)(f1), 135F(+)(f1) 0.75 V-2 1:20
HTNFR42G30NH 0.40 V-0 1:25
Polyamide 6/12
(PA6/12) 151, 151L 1.50 V-2 1:25
Polyamide 66
A3 GF 25 V0XI 0.40 V-0 1:25
101(r9)(f1), 101F(r9)(f1), 101L(r9)(f1) 0.75 V-2 1:20
103FHS(+), 103HSL(+) 0.75 V-2 1:20
FR50(+)(f1) 0.35 V-0 1:20
FR7025V0F(+) 0.50 V-0 1:33
Polyamide 66/6
(PA66/6) FR72G25V0 0.80 V-0 1:25
Polyamide 66/6T
(PA66/6T)
FR95G25V0NH 0.40 V-0 1:25
HTNFR52G30BL(r3) 0.75 V-0 1:33
HTNFR52G30L(+), HTNFR52G30(+) 0.75 V-0 1:33
HTNFR52G30NH(r6)
0.40 V-0 1:25
0.75 V-0 1:10
HTNFR52G35BL 0.75 V-0 1:25
HTNFR52G35(+), HTNFR52G35 0.75 V-0 1:33
Polyamide 6T/
MPMDT HTNFR51G35L(+) 0.81 V-0 1:33
Polybutylene
Terephthalate
2016(b) 1.50 V-0 1:20
3116(b) 1.50 V-0 1:20
3216(b) 1.50 V-0 1:20
3316(b) 1.50 V-0 1:20
3316HF 1.50 V-0 1:20
LW9030FR 1.50 V-0 1:25
T841FR (r4) 1.50 V-0 1:25
Polyethylene
Terephthalate
(PET)
FR530(l)(+)(f1), FR530L(l)(+)(f1) 0.75 V-0 1:25
Thermoplastic
Elastomer
(TPE)
HTR8068 1.60 V-0 1:25
DOMO
GENERIC
MINIMUM
THICKNESS
FLAME
MAXIMUM
LET-DOWN
Polyamide
(PA) J 60X1 V30 0.40 V-0 1:25
Polyamide 6
PSB 286
0.80 V-2 1:25
3.00 V-2 1:25
S 60X1 V30 0.75 V-0 1.25
Polyamide 66
A 205F(r4) 0.38 V-2 1:25
A 225F 0.75 V-2 1:25
A 50H1 (r3)(f2) 0.40 V-0 1:25
A 30G1 0.40 V-0 1:25
COVESTRO
GENERIC
MINIMUM
THICKNESS
FLAME
MAXIMUM
LET-DOWN
Polycarbonate
2407 + (z)(f1) 0.75-2.60 V-2 1:10
2807 + MAS183 0.75 V-2 1:25
6455 + (z)
6485 + (z)(f1) 1.50 V-0 1:25
Acrylonitrile
Butadiene Styrene
FR110 + 1.50 V-0 1:33
FR3005 HF + (z), FR3005 HF + BBS314 1.50 V-0 1:12.5
FR3010 + (z)
1.50 V-0 1:25
FR3010 HF + 3.00 V-0 1:25
FR3030 + 3.00 V-0 1:25
ENVALIOR
GENERIC
MINIMUM
THICKNESS
FLAME
MAXIMUM
LET-DOWN
Polyamide 46
(PA46) TE250F6(h1)(j) 0.50 V-0 1:25
Polyamide 6
F223-D(f1), F223-D /A(f1) 0.75 V-2 1:25
K222-KGV5(f1)
0.75 V-2 1:16.7
1.50 V-2 1:16.7
K-FKGS6/B(f1)(y) 0.80 V-0 1:25
Polyamide 66
(PA66) SG-KGS6/HV 0.75 V-0 1:25
Thermoplastic
Elastomer
(TPE)
PL460-S 1.60 V-0 1:25
Polyamide 4T
(PA4T) T11 (h) 0.40 V-0 1:20
EXXONMOBIL
LANXESS
GENERIC
MINIMUM
THICKNESS
FLAME
MAXIMUM
LET-DOWN
Ethylene
Propylene
Thermoplastic
Rubber
(EPTR)
251-80W232(f7) 1.50 V-2 1:20
251-92W232 1.50 V-0 1:20
251-70W232
1.00 V-2 1:10
GENERIC
MINIMUM
THICKNESS
FLAME
MAXIMUM
LET-DOWN
Polyamide 6
B30S+(f1) 1.50 V-2 1:25
B31SK+ 1.50 V-2 1:25
Polybutylene
Terephthalate
B4235+ 1.50 V-0 1:10
TP364-302+, BF4232+(f1) 0.75 V-0 1:25
GENERIC
MINIMUM
THICKNESS
FLAME
MAXIMUM
LET-DOWN
Polybutylene
Terephthalate
310(w) 1.50 V-0 1:20
310SE0(w) 1.50 V-0 1:20
310SE0(w),310SE0R(w) 1.50 V-0 1:20
420SE0(f1)(w)(GG)(rr1) 1.50 V-0 1:20
420SE0(f1)(w)(GG)(rr2) 1.50 V-0 1:20
457(w) 1.50 V-0 1:20
457(w), 451(w) 1.50 V-0 1:20
553(a)(f1)(w) 1.50 V-0 1:20
553(a)(f1)(w), 553E(a)(f1)(w),
553U(a)(f1)(w) 1.50 V-0 1:20
553(w)(f1), 553M(w)(f1) 1.50 V-0 1:20
DR48(w) 1.50 V-0 1:20
DR48,DR48M 1.50 V-0 1:20
V4760(a2) 0.40 V-0 1:20
EXVX1259, ENH4550 0.40 V-0 1:20
771 0.75 V-0 1:25
Polybutylene
Terephthalate/
Polycarbonate
(PBT/PC)
357(f1)(w)(IC), 357M(f1)(w)(IC),
357U(f1)(w)(IC) 1.50 V-0 1:20
357(f1)(w)(IC), 357U(f1)(w)(IC) 1.50 V-0 1:20
357X(f1) 1.50 V-0 1:20
V3900WX(GG)(f1)(IA),
V3901WX(GG)(f1)(IA)
3.00 V-0 1:20
1.50 V-0 1:20
357(w)(f2)(IC), 357M(w)(f2)(IC),
357U(w)(f2)(IC) 1.50 V-0 1:20
GENERIC
MINIMUM
THICKNESS
FLAME
MAXIMUM
LET-DOWN
Polycarbonate
221(f2) 1.50 V-2 1:25
221R(f2) 1.50 V-2 1:25
500(f2), 500R(f2) 3.00 V-0 1:33
503(f1)
3.00 V-0 10:1
1.50 V-0 10:1
503(f1), 503R(f1)
3.00 V-0 10:1
1.50 V-0 10:1
943(ab) 1.50 V-0 1:20
943(f1) 1.50 V-0 1:20
943(f1), 923(f1) 1.50 V-0 1:20
950A, 920ASR, FXD911A(GG), 940ASR 1.50 V-2 1:25
CFR7630(f1)(gg*) 1.50 V-0 1:25
ML5139R(f2) 3.00 V-0 1:33
950A, FXD911A(GG), 940ASR 3.00 V-0 1:25
943 1.50 V-0 1:20
920A
Acrylonitrile
Butadiene Styrene
C2950 1.50 V-0 6:100
C6200(GG) 2.00 V-0 1:20
Acrylonitrile
Styrene Acrylate/
Polycarbonate
(ASA/PC)
HRA222 (GG) 0.80 V-2 1:20
SOLVAY (SYENSQO)
GENERIC
MINIMUM
THICKNESS
FLAME
MAXIMUM
LET-DOWN
Polyphenyl Sulfone
(PPSU) R-5100 (r1)(##), R-5000 (r1)(##) 1.50 V-0 1:10
Polyphthalamide
(PPA) AFA-4133 V0(+) (*) 0.75 V-0 1:25
BASE RESIN
GENERIC
SPECIFIC
MINIMUM
THICKNESS
FLAME
MAXIMUM
LET-DOWN
ALBIS Polypropylene
(PP) PP 13 CV2 14 1.50 V-2 1:25
AVIENT Polyvinylchloride
M3700(X), M3755(X) 1.50 V-0 1:25
M3900 1.50 V-0 1:25
CHI MEI
Acrylonitrile
Butadiene Styrene
(ABS)
PA-765(+) 1.50 V-0 1:10
Acrylonitrile
Butadiene Styrene
PC-510(+) 1.50 V-0 1:25
EMS-CHEMIE Polyamide 6
(PA6) Grilon A 26 V0 0.75 V-0 1:25
FORMOSA Polycarbonate
(PC) #1700+(f2) 0.36-0.42 V-2 1:50
GEON Polyvinylchloride
85891(f1) 1.70 V-0 1:20
85891(f2) 1.70 V-0 1:20
M3700(X) 1.50 V-0 1:25
M3900
1:25
INEOS Polystyrene
(PS) 855 HV 3.00 V-1 100:4
INVISTA Polyamide 66
FRU4800 XHL (r1) 0.40 V-0 1:25
U4820L (r1) 0.40 V-2 1:25
BASE RESIN
GENERIC
SPECIFIC
MINIMUM
THICKNESS
FLAME
MAXIMUM
LET-DOWN
KINGFA Polyamide 66
(PA66) PA66-R11G25 (##) 0.25 V-0 1:25
KURARAY Polyamide 9T
(PA9T) GP2300S 0.40 V-0 1:25
LG CHEM
Acrylonitrile
Butadiene Styrene
LUPOY GP-5106-F 3.00 V-0 1:20
LOTTE CHEMICAL
Acrylonitrile
Butadiene Styrene
(ABS)
VH-0800(+) 1.50 V-0 1:25
Polycarbonate
(PC) HN-1064(+)
0.75 V-2 1:10
1.20 V-1 1:10
Polystyrene
(PS) VH-1800+
1.50 V-0 1:25
MITSUBISHI Polycarbonate
(PC) S-2000+(f1) 1.50-1.80 V-2 1:10
POLYMER
PRODUCTS
Polystyrene
(PS)
ZYNTAR 351
2.00 V-0 1:20
1.50 V-0 1:20
ZYNTAR 7000 2.00 V-0 1:25
ZYNTAR 702 2.00 V-0 1:25
8020 2.00 V-0 1:20
8120 2.00 V-0 1:20
8130 1.50 V-0 1:20
POLYMER
RESOURCES
Polycarbonate
PC-FR1A-D, PC-
FR2A-D, PC-FR3A-D
3.00 V-0 1:33
1.50 V-2 1:33
SUMITOMO
Liquid Crystal
Polymer
(LCP)
E6007LHF(ra) 0.30 V-0 1:25
E6007LHF-MR(gt) 0.20 V-0 1:12.5
BASE RESIN
GENERIC
SPECIFIC
MINIMUM
THICKNESS
FLAME
MAXIMUM
LET-DOWN
TORAY
Polyamide 6
(PA6) 1017 1.60 V-2 1:16.5
Polyamide 66
3004-V0(rr),
CM3004-V0(rr) 0.40 V-0 1:25
TRINSEO Polycarbonate
(PC) 891(w) 1.10 V-0 1:25
WELLMAN Polyamide 66/6
(PA66/6) 220-N, 21L-N, 22L-N 1.50 V-2 1:25
WESTLAKE Polyvinylchloride
6597(f1), HF-6597(f1) 1.50 V-0 1:25
SP-7107 (f1)(a) 3.00 V-0 1:25
5VA AND 5VB
BASE RESIN
GENERIC
SPECIFIC
MINIMUM
THICKNESS
FLAME
RATING COLORS
MAXIMUM
LET-DOWN
AVIENT Polyvinylchloride
(PVC) M3900 1.50 5VB
ALL 1:25
WHITE 1:10
CELANESE
Polyamide 66/6T
(PA66/6T) FR95G25V0NH 1.50 5VA ALL 1:25
Polybutylene
Terephthalate
LW9030FR
2.00 5VA BLACK 1:25
3.00 5VA ALL 1:25
SK642FR 1.50 5VA BLACK 1:25
COVESTRO
Acrylonitrile
Butadiene Styrene
FR3010 + (z) 3.00 5VA ALL 1:25
GEON Polyvinylchloride
(PVC) M3900 1.50 5VB
ALL 1:25
WHITE 1:10
Polybutylene
Terephthalate/
Polycarbonate
(PBT/PC)
V3900WX(GG)(f1)(IA),
V3901WX(GG)(f1)(IA) 3.00 5VA ALL 1:20
1.844.4AVIENT
www.avient.com
Copyright © 2024, Avient Corporation.
https://www.avient.com/sites/default/files/resources/PolyOne_English-Thai_Terms_and_Conditions.pdf
การรบัรองความปลอดภยั และสุขอนามยั ผูซื้7 อรบัทราบวา่
ผูข้ายไดส่้งมอบเอกสารขอ้มูลความปลอดภยั (Material Safety Data sheets)
ใหแ้ก่ผูซื้7 อแลว้ ซึ(งรวมถึงขอ้ควรระวงัต่างๆ
พรอ้มดว้ยขอ้มูลความปลอดภยัและสุขอนามยัเกี(ยวกบัสินคา้
และ/หรือบรรจุภณัฑข์องสินคา้ดงักล่าว ผูซ้ื7 อจะเผยแพรข่อ้มลูดงักลา่วเพื(อแจง้
ขอ้ควรระวงัเกี(ยวกบัอนัตรายต่างๆ ที(อาจเกดิขึ7 นแกบุ่คคลที(
ผูซื้7 อพึงคาดหมายไดต้ามสมควรวา่อาจไดร้บัอนัตรายดงักล่าว รวมถงึ
แต่ไม่จาํกดัเพียง ลกูจา้ง ตวัแทน ผูร้บัจา้ง
และลูกคา้ของผูซื้7 อ ผูซ้ื7 อจะชดใชค้วามเสียหาย แกต้่าง
และคุม้ครองผูข้ายใหป้ลอดพน้จากความรบัผิดทั7งปวงอนัเกิดจาก
หรือเกี(ยวเนื(องกบัการที(ผูซื้7 อมิไดเ้ผยแพร่ขอ้มลูดงักล่าว รวมถึง
แต่ไม่จาํกดัเพียง ความรบัผิดต่อการบาดเจ็บ การเจ็บป่วย การเสียชีวติ
และความเสียหายต่อทรพัยสิ์น และค่าใชจ่้ายในการตรวจสอบ
การฟ้องรอ้งดาํเนินคดี และค่าทนายความตามสมควร
11.
Except in
the case of a force majeure, if not satisfied with
Seller’s determination, Buyer as its sole
remedy shall have a right to terminate this
contract without further obligation upon: (i) 10
days written notice; and (ii) payment for all
Product received to date.
11.
https://www.avient.com/sites/default/files/2025-03/Q4 2024 Avient Webcast Slides w Non-GAAP.pdf
FX
• Driven by strong drug delivery
sales, new business wins in
building & construction and
consumer
• Higher sales and favorable mix
more than offset by variable
compensation reset resulting in
lower adjusted EBITDA
Copyright © .
2025 11
Specialty Engineered Materials - Q4 2024 performance
260
280
49
56
• Growth headlined by healthcare,
including engineered materials in
remote monitoring devices, as
well as composites for building &
construction, wind energy, and
defense applications
• Higher sales and favorable mix
contributed to adjusted EBITDA
growth which more than offset
unfavorable impact of variable
compensation
FY 2024
Copyright © .
2025 13
Color, Additives & Inks – full year 2024 performance
2,007
2,047
358
384
• Driven by new applications for
drug delivery and building &
construction as well as demand
recovery in packaging and
consumer
• Adjusted EBITDA margin
expansion driven by higher sales
and net price benefit
Adj.
17.8%
Adj.
18.7%
Copyright © .
2025 14
Specialty Engineered Materials – full year 2024 performance
1,138
1,197
224
249
• Growth headlined by strong
demand for applications in
defense end market and
composites used in building &
construction and engineered
materials used in healthcare
• Adjusted EBITDA margin
expansion driven by higher sales
and favorable mix
Adj.
19.7%
Adj.
20.8%
Copyright © .
2025 15
Avient full year 2024 performance vs. full year 2023
3,143
3,240
502
526
Adj.
Color, Additives & Inks
END MARKETS REGIONS
34%
21%
15%
11%
8%
Packaging
Telecom 1%Energy 1%
34%
US & Canada
Latin America
Europe, Middle East
Construction
21Copyright © .
https://www.avient.com/sites/default/files/resources/Novel_Thermoplastic_elastomers_for_overmolding_applications.pdf
Furthermore, the material has outstanding
adhesion to Ultramid B3G6 (glass reinforced polyamide 6) as demonstrated in Figure 10 and 11.
OM6240 adhesion to Ultramid B3ZG6
1.7
1.91.9
0.0
1.0
2.0
250°C 260°C 270°C
Melt temperature
l,
Injection speed: 64 mm/sec
Figure 10: Versfalex OM 6240 adhesion values to polyamide Ultrmid B3ZG6
OM6240 adhesion to Ultramid B3ZG6
1.7
1.91.9
0.0
1.0
2.0
250°C 260°C 270°C
Melt temperature
l,
Injection speed: 64 mm/sec
Figure 11: Versaflex OM 6258 adhesion values to polyamide Ultrmid B3ZG6
GLS Corporation, 833 Ridgeview Drive, McHenry, IL 60050
https://www.avient.com/knowledge-base/article/what-s-difference-fillers-reinforcements
PCC improves stiffness and impact in polypropylene and adds impact strength to rigid polyvinyl chloride for such applications as window profiles and siding.
https://www.avient.com/knowledge-base/article/what-s-difference-fillers-reinforcements?ind[]=6598
PCC improves stiffness and impact in polypropylene and adds impact strength to rigid polyvinyl chloride for such applications as window profiles and siding.
https://www.avient.com/knowledge-base/article/what-s-difference-fillers-reinforcements?ind[]=21506
PCC improves stiffness and impact in polypropylene and adds impact strength to rigid polyvinyl chloride for such applications as window profiles and siding.
https://www.avient.com/knowledge-base/article/what-s-difference-fillers-reinforcements?ind[]=6599
PCC improves stiffness and impact in polypropylene and adds impact strength to rigid polyvinyl chloride for such applications as window profiles and siding.