VESTAMID HTplus - PA 6T/X and PA 10T/X product range and main properties

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1 Technical Information VESTAMID - PA 6T/X and PA 10T/X product range and main properties The following pages provide an overview of the main product information and properties of VESTAMID - PA 6T/X and PA 10T/X. In case, there are additional information missing please contact our technical support. Therefore please note our contact list on the last page. Evonik Resource Efficiency GmbH VESTAMID Januar 2016 Page 1/24

2 VESTAMID base and unfilled polymers VESTAMID Description acc. ISO Characterization Processing Tensile modulus [MPa] Applications M1000 natural color PA6T/X Medium viscosity, semicrystalline with aromatic segments CO 3600 Manufacturing of compounds for injection molding M3000 natural color PA10T/X Medium viscosity, semicrystalline with aromatic segments; partly based on renewable raw materials CO 2700 Manufacturing of compounds for injection molding C2505 natural color PA10T/X Low viscosity, stabilized PO 2100 Fiber composites M5000 natural color PA6I/6T Medium viscosity, amorphous with aromatic segments; CO 2700 Manufacturing of compounds for injection molding M8000 natural color PA10T/X Medium viscosity, semicrystalline with aromatic segments; partly based on renewable raw materials CO 2700 Manufacturing of compounds for injection molding Abbreviations: CO = Compounding PO = Powder Evonik Resource Efficiency GmbH VESTAMID Page 2/24

3 Main properties of VESTAMID base and unfilled polymers Properties Test method Unit VESTAMID M1000 M3000 C2505 2) M5000 M8000 Physical, thermal, mechanical properties, and flammability Density 23 ISO 1183 g/cm³ Melting temperature 2 nd heating DSC ISO approx. 285 approx. 265 Softening t approx. 130 approx. 297 Temp. of deflection under load 1.8 MPa 0.45 MPa ISO > 105 > Vicat softening temperature 10 N 10 N ISO Flammability acc. UL mm 3.2 mm IEC Water absorption 23, saturation 23, 50 rel. humidity ISO Mold shrinkage in flow direction in transverse direction ISO Tensile test Stress at break Strain at break ISO 527-1/ -2 MPa > > Tensile modulus ISO 527-1/ -2 MPa CHARPY impact strength ISO 179/1eU 45 C 1) 40 C 1) 60 C 1) 60 C 1) N 1) >100 N 1) 300 C 1) 50 C 1) 50 C 1) CHARPY notched impact strength ISO 179/1eA 4,5 C 1) 4 C 1) 6,4 C 1) 5,5 C 1) 18 C 1) 15 C 1) 9.5 C 1) 8 C 1) 5,5 C 1) 5,5 C 1) Electrical properties Electric strength IEC kv/mm 30 Volume resistivity IEC Ω cm 550 1) C = Complete break, incl. hinge break H N = No break 2) Powder, based on C2000 Evonik Resource Efficiency GmbH VESTODUR Page 3/24

4 Glass fiber reinforced VESTAMID PA6T/X grades VESTAMID Description acc. ISO Characterization Processing Tensile modulus [MPa] Applications M10315 PA6T/X, GF15 15 glass fibers, medium viscosity, stabilized; colors: natural, black M1033 PA6T/X, GF30 30 glass fibers, medium viscosity, stabilized; colors: natural, black M10345 PA6T/X, GF45 45 glass fibers, medium viscosity, stabilized; colors: natural, black M1035 PA6T/X, GF50 50 glass fibers, medium viscosity, stabilized; colors: natural, black M1036 PA6T/X, GF60 60 glass fibers, medium viscosity, stabilized; colors: natural, black IM 7100 Dimension-stable, highly and machinery IM Dimension-stable, highly and machinery IM Dimension-stable, highly and machinery, metal replacement IM Dimension-stable, highly and machinery, metal replacement IM Dimension-stable, highly and machinery, metal replacement Abbreviations: IM = Injection molding Evonik Resource Efficiency GmbH VESTAMID Page 4/24

5 Main properties of glass fiber reinforced VESTAMID PA6T/X grades Properties Test method Unit VESTAMID M10315 M1033 M10345 M1035 M1036 Physical, thermal, mechanical properties, and flammability Density 23 ISO 1183 g/cm³ Melting temperature 2 nd heating DSC ISO Temp. of deflection under load 1.8 MPa 0.45 MPa ISO Vicat softening temperature Method 10 N ISO Linear thermal expansion ISO K -1 7 Flammability acc. UL mm 3.2 mm IEC Water absorption 23, saturation 23, 50 rel. humidity ISO Mold shrinkage in flow direction in transverse direction ISO < Tensile test Stress at break Strain at break ISO 527-1/ -2 MPa Tensile modulus ISO 527-1/ -2 MPa CHARPY impact strength ISO 179/1eU 19 C 1) 18 C 1) 35 C 1) 27 C 1) 54 C 1) 37 C 1) 60 C 1) 40 C 1) 60 C 1) 40 C 1) CHARPY notched impact strength ISO 179/1eA 4 C 1) 4 C 1) 7 C 1) 7 C 1) 10 C 1) 10 C 1) 11 C 1) 11 C 1) 17 C 1) 17 C 1) Electrical properties Electric strength IEC kv/mm Volume resistivity IEC Ω cm 7 x x ) C = Complete break, incl. hinge break H Evonik Resource Efficiency GmbH VESTODUR Page 5/24

6 Glass fiber reinforced VESTAMID PA10T/X grades VESTAMID Description acc. ISO Characterization Processing Tensile modulus [MPa] Applications M30315 PA10T/X, GF15 15 glass fibers, medium viscosity, stabilized; wide processing window; green, colors: natural, black IM 5600 Dimension-stable, highly temperatures and in contact with chemicals in and machinery M3033 PA10T/X, GF30 30 glass fibers, medium viscosity, stabilized; wide processing window; green, colors: natural, black IM 9400 Dimension-stable, highly temperatures and in contact with chemicals in and machinery M3035 PA10T/X, GF50 50 glass fibers, medium viscosity, stabilized; wide processing window; green, colors: natural, black IM Dimension-stable, highly temperatures and in contact with chemicals in and machinery, metal replacement M3036 PA10T/X, GF60 60 glass fibers, medium viscosity, stabilized; wide processing window; green, colors: natural, black IM Dimension-stable, highly temperatures and in contact with chemicals in and machinery, metal replacement Abbreviations: IM = Injection molding Evonik Resource Efficiency GmbH VESTAMID Page 6/24

7 Main properties of glass fiber reinforced VESTAMID compounds Properties Test method Unit VESTAMID M30315 M3033 M3035 M3036 Physical, thermal, mechanical properties, and flammability Density ISO 1183 g/cm³ Melting temperature 2 nd heating DSC ISO approx. 285 approx. 285 approx. 285 approx. 285 Temp. of deflection under load 1.8 MPa 0.45 MPa ISO >265 > Vicat softening temperature Method 10 N ISO Linear thermal expansion ISO K Flammability acc. UL mm 3.2 mm IEC Water absorption 23, saturation 23, 50 rel. humidity ISO Mold shrinkage in flow direction in transverse direction ISO processing acc. ISO Tensile test Stress at break Strain at break ISO 527-1/ -2 MPa Tensile modulus ISO 527-1/ -2 MPa CHARPY impact strength ISO 179/1eU 21 C 1) 19 C 1) 40 C 1) 30 C 1) 58 C 1) 50 C 1) 60 C 1) 50 C 1) CHARPY notched impact strength ISO 179/1eA 4 C 1) 3,5 C 1) 8,5 C 1) 8 C 1) 11 C 1) 12 C 1) 13,5 C 1) 15,5 C 1) Electrical properties Electric strength IEC kv/mm Volume resistivity IEC Ω cm ) C = Complete break, incl. hinge break H Evonik Resource Efficiency GmbH VESTODUR Page 7/24

8 Reinforced VESTAMID grades for drinking water applications VESTAMID Description acc. ISO Characterization Processing Tensile modulus [MPa] Applications M1633 PA6T/X, GF30 30 glass fibers, medium approvals for contact with drinking water; colors: natural, black M1634 PA6T/X, GF40 40 glass fibers, medium approvals for contact with drinking water; colors: natural, black M1635 PA6T/X, GF50 50 glass fibers, medium approvals for contact with drinking water; colors: natural, black M1636 PA6T/X, GF60 60 glass fibers, medium approvals for contact with drinking water; colors: natural, black IM Dimension-stable, highly and machinery, metal replacement IM Dimension-stable, highly and machinery, metal replacement IM Dimension-stable, highly and machinery, metal replacement IM Dimension-stable, highly and machinery, metal replacement Abbreviations: IM = Injection molding Evonik Resource Efficiency GmbH VESTAMID Page 8/24

9 Main properties of reinforced VESTAMID grades for drinking water applications Properties Test method Unit VESTAMID M1633 M1634 M1635 M1636 Glass fiber content Physical, thermal, mechanical properties, and flammability Density ISO 1183 g/cm³ Water absorption 23, saturation 23, 50 rel. humidity ISO Tensile strength 23 ISO 527 MPa Strain at break ISO Tensile modulus ISO 527-1/ -2 MPa CHARPY impact strength ISO 179/1eU 35 C 1) 27 C 1) 47 C 1) 34 C 1) 60 C 1) 40 C 1) 60 C 1) 40 C 1) CHARPY notched impact strength ISO 179/1eA 7 C 1) 7 C 1) 9 C 1) 9 C 1) 11 C 1) 11 C 1) 18 C 1) 13 C 1) Temp. of deflection under load 1.8 MPa 0.45 Mpa ISO Vicat softening temperature Method 10 N ISO Flammability UL94 1) C = Complete break, incl. hinge break H Evonik Resource Efficiency GmbH VESTODUR Page 9/24

10 Reinforced VESTAMID grades for water / glycol applications VESTAMID Description acc. ISO Characterization Processing Tensile modulus [MPa] Applications HY10333 PA6T/X, GF33 33 glass fibers, medium viscosity, stabilized1); colors: black HY1034 PA6T/X, GF40 40 glass fibers, medium viscosity, stabilized1); colors: black HY10345 PA6T/X, GF45 45 glass fibers, medium viscosity, stabilized 1) ; colors: black HY1035 PA6T/X, GF50 50 glass fibers, medium viscosity, stabilized1); colors: black IM Dimension-stable, highly automotives, machinery, and in contact with water / glycol IM Dimension-stable, highly automotives, machinery, and in contact with water / glycol IM Dimension-stable, highly automotives, machinery, and in contact with water / glycol IM Dimension-stable, highly automotives, machinery, and in contact with water / glycol HY3034 PA10T/X, GF40 40 glass fibers, medium viscosity, stabilized1), wide processing window, colors: black IM Dimension-stable, highly automotives, machinery, and in contact with water / glycol 1) for water / glycol contact Abbreviations: IM = Injection molding Evonik Resource Efficiency GmbH VESTAMID Page 10/24

11 Main properties of glass fiber reinforced VESTAMID PA6T/X grades Properties Test method Unit VESTAMID HY10333 HY1034 HY10345 HY1035 HY3034 Physical, thermal, mechanical properties, and flammability Density 23 ISO 1183 g/cm³ Melting range 2 nd heating DSC ISO approx. 286 Temp. of deflection under load 1.8 MPa 0.45 MPa ISO Vicat softening temperature 10 N 50 N ISO Tensile test Stress at break Strain at break ISO 527-1/ -2 MPa Tensile modulus ISO 527-1/ -2 MPa CHARPY impact strength ISO 179/1eU 55 C 1) 40 C 1) 65 C 1) 50 C 1) 65 C 1) 60 C 1 ) 81 C 1) 77 C 1) 70 C 1) 55 C 1) CHARPY notched impact strength ISO 179/1eA 8 C 1) 7 C 1) 9 C 1) 8 C 1) 9 C 1) 9 C 1) 13 C 1) 11 C 1) 10 C 1) 8 C 1) 1) C = Complete break, incl. hinge break H Evonik Resource Efficiency GmbH VESTODUR Page 11/24

12 Flame retardant VESTAMID grades VESTAMID Description acc. ISO Characterization Processing Tensile modulus [MPa] Applications M1900 PA6T/X unreinforced, medium viscosity, flame retardant (UL94 V-0 from 0,4 mm), halogen free, free of red phosphorus, RoHS and WEEE conform colors: natural, black IM 4000 Parts for the electric and elec-tronics industry demanding UL94 V-0, suitable for industrial soldering. UL94 listed in file E Parts fulfill RoHS 2002/95/EC, Restriction of Hazardous Substances. WEEE: Parts are not related to "selective recovery" according to Directive 2002/96/EC on waste electrical and electronic equipment. M1933 PA6T/X, GF glass fibers, medium viscosity, flame retardant (UL94 V-0 from 0,4 mm), halogen free, free of red phosphorus, RoHS and WEEE conform colors: natural, black IM Parts for the electric and electronics industry demanding UL94 V-0, suitable for industrial soldering. UL94 listed in file E Parts fulfill RoHS 2002/95/EC, Restriction of Hazardous Substances. WEEE: Parts are not related to "selective recovery" according to Directive 2002/96/EC on waste electrical and electronic equipment. Abbreviations: IM = Injection molding Evonik Resource Efficiency GmbH VESTAMID Page 12/24

13 Main properties of flame retardant VESTAMID grades Properties Test method Unit VESTAMID M1900 M1933 Physical, thermal, mechanical properties, and flammability Density 23 ISO 1183 g/cm³ Melting temperature 2 nd heating DSC ISO Temp. of deflection under load 1.8 MPa 0.45 MPa ISO Vicat softening temperature 10 N 50 N ISO Flammability acc. UL mm 0.8 mm IEC V-0 V-0 V-0 V-0 Water absorption 23, saturation 23, 50 rel. humidity ISO Mold shrinkage in flow direction in transverse direction ISO Tensile test Stress at break Strain at break ISO 527-1/ -2 MPa Tensile modulus ISO 527-1/ -2 MPa CHARPY impact strength ISO 179/1eU 34 C 27 C 35 C 1) 30 C 1) CHARPY notched impact strength ISO 179/1eA 3 C 3 C 6 C 1) 6 C 1) Electrical properties Electric strength K20 / K20 IEC kv/mm Comparative tracking index CTI IEC Volume resistivity IEC Ω cm ) C = Complete break, incl. hinge break H Evonik Resource Efficiency GmbH VESTODUR Page 13/24

14 Rubber bondable reinforced VESTAMID grades VESTAMID Description acc. ISO Characterization Processing Tensile modulus [MPa] Applications R1033 PA6T/X, GF30 30 glass fibers, medium adhesive modified for plastic-rubber composites, high heat resistance colors: black R1133 PA6T/X, GF30 30 glass fibers, medium adhesive modified for plastic-rubber composites especially with EPDM, high heat resistance colors: black R1035 PA6T/X, GF50 50 glass fibers, medium adhesive modified for plastic-rubber composites, high heat resistance colors: black IM Plastic-rubber composites (K&K): Bonding to rubber without adhesive, e.g., to ACM, FPM, H-NBR; dimension-stable, highly rigid parts for use at high service temperatures IM Plastic-rubber composites (K&K): Bonding to rubber without adhesive, especially to EPDM, AEM; dimension-stable, highly rigid parts for use at high service temperatures IM Plastic-rubber composites (K&K): Bonding to rubber without adhesive, e.g., to ACM, FPM, H-NBR; dimension-stable, highly rigid parts for use at high service temperatures Abbreviations: IM = Injection molding Evonik Resource Efficiency GmbH VESTAMID Page 14/24

15 Main properties of rubber bondable reinforced VESTAMID grades Properties Test method Unit VESTAMID R1033 R1133 R1035 Physical, thermal, mechanical properties, and flammability Density 23 ISO 1183 g/cm³ Melting temperature 2 nd heating DSC ISO Temp. of deflection under load 1.8 MPa 0.45 MPa ISO Vicat softening temperature Method 10 N ISO Flammability acc. UL mm 3.2 mm IEC Water absorption 23, saturation 23, 50 rel. humidity ISO Mold shrinkage in flow direction in transverse direction ISO Tensile test Stress at break Strain at break ISO 527-1/ -2 MPa Tensile modulus ISO 527-1/ -2 MPa CHARPY impact strength ISO 179/1eU 45 C 1) 30 C 1) 29 C 1) 23 C 1) 70 C 1) 50 C 1) CHARPY notched impact strength ISO 179/1eA 7 C 1) 7 C 1) 6 C 1) 6 C 1) 11 C 1) 11 C 1) 1) C = Complete break, incl. hinge break H Evonik Resource Efficiency GmbH VESTODUR Page 15/24

16 Tribological modified VESTAMID grades VESTAMID Description acc. ISO Characterization Processing Tensile modulus [MPa] Applications M1533 PA6T/X, GF30 30 glass fibers, medium lubricated, low wear, colors: natural, black IM Tribological loaded parts at high service temperatures, e.g. sliding bearings, pivot bushings, bearing cups, slide rails, sliding parts Abbreviations: IM = Injection molding Evonik Resource Efficiency GmbH VESTAMID Page 16/24

17 Main properties of tribological modified VESTAMID grades Properties Test method Unit VESTAMID M1533 Density 23 ISO 1183 g/cm³ 1.54 Melting temperature 2 nd heating DSC ISO Temp. of deflection under load 1.8 MPa ISO Flammability acc. UL mm 3.2 mm IEC Water absorption 23, saturation 23, 50 rel. humidity ISO 62 Mold shrinkage in flow direction in transverse direction ISO ,0 0,6 Tensile test Stress at break Strain at break ISO 527-1/ -2 MPa Tensile modulus ISO 527-1/ -2 MPa CHARPY impact strength 23 ISO 179/1eU 35 C 1) CHARPY notched impact strength 23 ISO 179/1eA 10 C 1) 1) C = Complete break, incl. hinge break H Evonik Resource Efficiency GmbH VESTODUR Page 17/24

18 Mineral reinforced VESTAMID grades VESTAMID Description acc. ISO Characterization Processing Tensile modulus [MPa] Applications M10525 M1054 PA6T/X, MD25 25 mineral, medium anisotropic, colors: black PA6T/X, MD40 40 mineral, medium anisotropic, colors: black IM 8600 Dimension-stable, anisotropic technical parts for the and machinery, glossy surface IM Dimension-stable, anisotropic technical parts for the and machinery, glossy surface M10465 PA6T/X, GMD65 65 mineral and glass fiber, medium viscosity, stabilized, anisotropic, colors: black IM Dimension-stable, highly rigid and anisotropic technical parts for the use at high service and machiner Abbreviations: IM = Injection molding Evonik Resource Efficiency GmbH VESTAMID Page 18/24

19 Main properties of mineral reinforced VESTAMID grades Properties Test method Unit VESTAMID M10525 M1054 M10465 Physical, thermal, mechanical properties, and flammability Density 23 ISO 1183 g/cm³ Melting temperature 2 nd heating DSC ISO Temp. of deflection under load 1.8 MPa 0.45 MPa ISO Tensile test Stress at break Strain at break ISO 527-1/ -2 MPa Tensile modulus ISO 527-1/ -2 MPa CHARPY impact strength ISO 179/1eU 34 C 1) 30 C 1) 52 C 1) 37 C 1) 40 C 1) 35 C 1) CHARPY notched impact strength ISO 179/1eA 3.6 C 1) 2.6 C 1) 3.7 C 1) 3.1 C 1) 5.5 C 1) 5.0 C 1) 1) C = Complete break, incl. hinge break H Evonik Resource Efficiency GmbH VESTODUR Page 19/24

20 Carbon fiber reinforced VESTAMID grades VESTAMID Description acc. ISO Characterization Processing Tensile modulus [MPa] Applications M1063 PA6T/X, CF30 30 carbon fibers, medium antistatic, low wear, conductive; colors: black IM Dimension-stable, exhibiting high stiffness, highly rigid technical parts for the and machinery Abbreviations: IM = Injection molding Evonik Resource Efficiency GmbH VESTAMID Page 20/24

21 Main properties of carbon fiber reinforced VESTAMID grades Properties Test method Unit VESTAMID M1063 Density 23 ISO 1183 g/cm³ 1.32 Melting temperature 2 nd heating DSC ISO Temp. of deflection under load 1.8 MPa 0.45 MPa ISO Vicat softening temperature Method 10 N ISO 306 Flammability acc. UL mm 3.2 mm IEC Water absorption 23, saturation 23, 50 rel. humidity ISO 62 Mold shrinkage in flow direction in transverse direction ISO ,08 0,43 Tensile test Stress at break Strain at break ISO 527-1/ -2 MPa Tensile modulus ISO 527-1/ -2 MPa CHARPY impact strength ISO 179/1eU 45 C 1) 40 C 1) CHARPY notched impact strength ISO 179/1eA 7 C 1) 6.5 C 1) Electrical properties Surface resistance ROA IEC60093 Ohm ) C = Complete break, incl. hinge break H Evonik Resource Efficiency GmbH VESTODUR Page 21/24

22 VESTAMID grades for Laser Direct Structuring (LDS) VESTAMID Description acc. ISO Characterization Processing Tensile modulus [MPa] Applications LDS1031 PA6T/X, GF10 10 glass fibers, mineral reinforced, medium qualified for LPKF LDS process, optimized shrinkage, suitable for lead-free solders IM Three-dimensional interconnect devices in electronical applications, specially adapted for the LDS process. Dimensionstable, glossy surface LDS3031 PA10T/X, GF10 10 glass fibers, mineral reinforced, medium qualified for LPKF LDS process, optimized shrinkage, suitable for lead-free solders. Partly biobased and eco-friendly IM 9500 Three-dimensional interconnect devices in electronical applications, specially adapted for the LDS process. Dimensionstable, glossy surface Abbreviations: IM = Injection molding Evonik Resource Efficiency GmbH VESTAMID Page 22/24

23 Main properties of VESTAMID grades for Laser Direct Structuring Properties Test method Unit VESTAMID LDS1031 LDS3031 Physical, thermal, mechanical properties, and flammability Density 23 ISO 1183 g/cm³ Melting temperature 2 nd heating DSC ISO approx Temp. of deflection under load 1.8 MPa 0.45 MPa ISO Vicat softening temperature 10 N 50 N ISO Flammability acc. UL mm 0.8 mm IEC no classification no classification Water absorption 23, saturation 23, 50 rel. humidity ISO 62 Mold shrinkage in flow direction in transverse direction ISO Tensile test Stress at break Strain at break ISO 527-1/ -2 MPa Tensile modulus ISO 527-1/ -2 MPa CHARPY impact strength ISO 179/1eU 13 C 1) 10 C 1) 15 C 1) 12 C 1) CHARPY notched impact strength ISO 179/1eA 1.8 C 1) 1.8 C 1) 2.3 C 1) 2.2 C 1) Electrical properties Electric strength K20 / P50 IEC kv/mm Comparative tracking index CTI IEC < <1 Volume resistivity pd IEC Ω cm 1.41 E E+15 1) C = Complete break, incl. hinge break H Evonik Resource Efficiency GmbH VESTODUR Page 23/24

24 Integrated expertise: direct contacts in every region Contact Country Phone Mobile Karsten Goldstein Scandinavia Frank Lindner Germany Prafulla Toke Andrzej Wolak Austria, Switzerland Czech. Republic, Poland, Slovakia Géraud Apchin France geraud.apchin@evonik.com Luca Castelli Roberto Sacchi Italy, Spain luca.castelli@evonik.com roberto.sacchi@evonik.com Julia Trufanova Russia (ext. 566) julia.trufanova@evonik.com Cigdem Kir Turkey cigdem.kir@evonik.com Karel Ogenia UK, Eire, Nordic karel.ogenia@evonik.com Peter Colburn USA, Canada peter.colburn@evonik.com Miguel A. Delgado Mexico miguel.delgado@evonik.com Haroldo Rodrigues South America haroldo.rodrigues@evonik.com Sandra Kao Taiwan sandra.kao@evonik.com Stanford Tang China stanford.tang@evonik.com Hitesh Shah India hitesh.shah@evonik.com Mitsunori Naganuma Japan m.naganuma@daicel-evonik.com David Baek Joonsang Park Korea david.baek@evonik.com joonsang.park@evonik.com Andrew Windsor Australia sharad.gune@evonik.com VESTAMID is a registered trademark of the Evonik Degussa GmbH This information and any recommendations, technical or otherwise, are presented in good faith and believed to be correct as of the date prepared. Recipients of this information and recommendations must make their own determination as to its suitability for their purposes. In no event shall Evonik assume liability for damages or losses of any kind or nature that result from the use of or reliance upon this information and recommendations. EVONIK EXPRESSLY DISCLAIMS ANY REPRESENTATIONS AND WARRANTIES OF ANY KIND, WHETHER EXPRESS OR IMPLIED, AS TO THE ACCURACY, COMPLETENESS, NON-INFRINGEMENT, MERCHANTABILITY AND/OR FITNESS FOR A PARTICULAR PURPOSE (EVEN IF EVONIK IS AWARE OF SUCH PURPOSE) WITH RESPECT TO ANY INFORMATION AND RECOMMENDATIONS PROVIDED. Reference to any trade names used by other companies is neither a recommendation nor an endorsement of the corresponding product, and does not imply that similar products could not be used. Evonik reserves the right to make any changes to the information and/or recommendations at any time, without prior or subsequent notice. Evonik Resource Efficiency GmbH High Performance Polymers, Marl Phone , evonik-hp@evonik.com

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