11/4/13 BASF WIS Datasheet
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- Matilda Martin
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1 Ultramid 8233G HS Commercial Product PA6-GF33 (TP) BASF Print Description Delivery Form Pellets Special Characteristics Heat stabilized or stable to heat Additives With fillers Processing Injection Molding Regional Availability North America Product text Ultramid 8233G HS is a heat stabilized, glass fiber reinforced Polyamid 6 injection molding compound offering excellent strength, stiffness, high temperature performance and dimensional stability. It is also available in non-heat stabilized and/or pigmented versions. Ultramid 8233G HS is generally recommended for applications such as power tool housings, weed trimmer components, gears, automotive housings and under hood applications. Rheological Properties dry/cond Melt volume-flow rate MVR for CAMPUS * / * cm³/10min ISO 1133 Temperature MVR * / * C ISO 1133 Load MVR * / * kg ISO 1133 Molding shrinkage (parallel) (CAMPUS) - / * % ISO 2577, Molding shrinkage (normal) (CAMPUS) - / * % ISO 2577, Melt volume-flow rate (1) - cm³/10min ISO 1133 Temperature (1) - C ISO 1133 Load (1) - kg ISO 1133 Melt volume-flow rate (2) - cm³/10min ISO 1133 Temperature (2) - C ISO 1133 Load (2) - kg ISO 1133 MFR - g/10min ISO 1133 Temperature MFR - C ISO 1133 Load MFR - kg ISO 1133 Molding shrinkage, free, longitudinal, plate, with film gate % - Molding shrinkage, after-shrinkage, thermoplastics % - Molding shrinkage aftershrinkage temperature - C Molding shrinkage aftershrinkage duration - min Molding shrinkage, free, transversal, plate with film gate % - Molding shrinkage, constrained, longitudinal, Model-housing, d = 1.5 mm % - Molding shrinkage, Melt temperature, Test part processing - C - Molding shrinkage, Mold temperature, Test part processing - C - Molding shrinkage, constrained, transversal, Model-housing, d = 1.5 mm % - MFR (ASTM) - g/10min ASTM D 1238 Temperature (ASTM) - C ASTM D 1238 Load (ASTM) - kg ASTM D 1238 Mechanical Properties dry/cond Tensile modulus / 5840 MPa ISO 527-1/-2 Yield stress, 50 mm/min * / * MPa ISO 527-1/-2 Yield strain, 50 mm/min * / * % ISO 527-1/-2 Nominal strain at break, 50 mm/min * / * % ISO 527-1/-2 Stress at 50% strain, 50 mm/min * / * MPa ISO 527-1/-2 Stress at break 185 / 125 MPa ISO 527-1/-2 Strain at break 3.5 / 6 % ISO 527-1/-2 Tensile creep modulus (1h) * / - MPa ISO Tensile creep modulus (1000h) * / - MPa ISO Charpy impact strength ISO 179-1eU (23 C) (CAMPUS) 88 / - kj/m² ISO 179/1eU Charpy impact strength ISO 179/1eU (-30 C) (CAMPUS) - / - kj/m² ISO 179/1eU Charpy notched impact strength ISO 179/1eA (23 C) (CAMPUS) 15 / - kj/m² ISO 179/1eA Charpy notched impact strength ISO 179/1eA (-30 C) (CAMPUS) 10 / - kj/m² ISO 179/1eA Tensile notched impact strength (23 C) - / - kj/m² ISO 8256/1 Puncture - maximum force (23 C) - / - N ISO Puncture - maximum force (-30 C) - / - N ISO Puncture energy (+23 C) - / - J ISO Puncture energy (-30 C) - / - J ISO Poissons ratio - / Creep stress, 1000 h, 1% strain (23 C) - / - MPa ISO Tensile creep strength 1000 h (23 C) - / - MPa ISO Flexural modulus - / - MPa ISO 178 Flexural strength - / - MPa ISO 178 Outer fiber strain - / - % ISO 178 Flexural stress at 3.5 % strain - / - MPa ISO 178 Flexural fatigue strength - / - MPa DIN Shear modulus - / - MPa ISO logarithmic decrement (23 C) - / - - ISO 6721 mechanical loss factor (23 C) - / - - ISO 6721 Charpy impact strength ISO 179-1eU (+23 C), MPTS - / - kj/m² ISO 179/1eU wis.basf-ag.de/wis-3.7/matdb/printdatasheet.php 1/10
2 Charpy impact strength ISO 179-1eU (+23 C), MPTS - / - kj/m² ISO 179/1eU Charpy impact strength ISO 179-1eU (-30 C), MPTS - / - kj/m² ISO 179/1eU Charpy notched impact strength ISO 179/1eA (23 C), MPTS - / - kj/m² ISO 179/1eA Charpy notched impact strength ISO 179/1eA (-30 C), MPTS - / - kj/m² ISO 179/1eA Charpy notched impact strength ISO 179/1eA (-40 C) - / - kj/m² ISO 179/1eA Charpy notched impact strength ISO 179/1eA (-40 C), MPTS - / - kj/m² ISO 179/1eA Tensile notched impact strength (-30 C) - / - kj/m² ISO 8256 Izod notched impact strength ISO 180/A (23 C) - / - kj/m² ISO 180/A Izod notched impact strength ISO 180/A (23 C), MPTS - / - kj/m² ISO 180/A Izod notched impact strength ISO 180/A (-30 C) - / - kj/m² ISO 180/A Izod notched impact strength ISO 180/A (-30 C), MPTS - / - kj/m² ISO 180/A Izod notched impact strength ISO 180/A (-40 C) - / - kj/m² ISO 180/A Izod notched impact strength ISO 180/A (-40 C), MPTS - / - kj/m² ISO 180/A Izod impact strength ISO 180/U (23 C), MPTS - / - kj/m² ISO 180/U Izod impact strength ISO 180/U (-30 C), MPTS - / - kj/m² ISO 180/U Izod notched impact strength ASTM D 256 (23 C) - / - J/m ASTM D 256 Izod notched impact strength ASTM D 256 (-40 C) - / - J/m ASTM D 256 Izod notched impact strength ASTM D 256 (0 C) - / - J/m ASTM D 256 Izod notched impact strength ASTM D 256 (-18 C = 0 F) - / - J/m ASTM D 256 Izod notched impact strength ASTM D 256 (-30 C) - / - J/m ASTM D 256 Ball indentation hardness - / - MPa ISO Force - / - N ISO Duration - / - s ISO Ball indentation hardness - / - MPa ISO Force - / - N ISO Duration - / - s ISO Shore A hardness - / - - ISO 868 Shore D hardness - / - - ISO 868 Coefficient of sliding friction, pin/disc - / Wear rate due to friction, pin/disc - / - E-6m/km - Modulus of elasticity (ASTM) - / - MPa ASTM D 638 Tensile stress at yield, 2 in/min (ASTM) - / - MPa ASTM D 638 Percent elongation at break, 2 in/min (ASTM) - / - % ASTM D 638 Flexural modulus (ASTM) - / - MPa ASTM D 790 Flexural strength (ASTM) - / - MPa ASTM D 790 Tensile modulus -30 C - / * MPa ISO 527-1/-2 Stress at break -30 C - / * MPa ISO 527-1/-2 Strain at break -30 C - / * % ISO 527-1/-2 Tensile modulus 80 C - / * MPa ISO 527-1/-2 Stress at break 80 C - / * MPa ISO 527-1/-2 Strain at break 80 C - / * % ISO 527-1/-2 Tensile modulus 150 C - / * MPa ISO 527-1/-2 Stress at break 150 C - / * MPa ISO 527-1/-2 Strain at break 150 C - / * % ISO 527-1/-2 Tensile modulus 200 C - / * MPa ISO 527-1/-2 Stress at break 200 C - / * MPa ISO 527-1/-2 Strain at break 200 C - / * % ISO 527-1/-2 Tensile modulus -40 C - / * MPa ISO 527-1/-2 Tensile modulus 120 C - / * MPa ISO 527-1/-2 Tensile strength 5mm/min (ASTM) - / - kg/cm² ASTM D 638 Tensile elongation 5mm/min (ASTM) - / - % ASTM D 638 ASTM dry/cond Izod notched impact strength ASTM D 256 (23 C) - / - J/m ASTM D 256 Izod notched impact strength ASTM D 256 (-40 C) - / - J/m ASTM D 256 Izod notched impact strength ASTM D 256 (0 C) - / - J/m ASTM D 256 Izod notched impact strength ASTM D 256 (-18 C = 0 F) - / - J/m ASTM D 256 Izod notched impact strength ASTM D 256 (-30 C) - / - J/m ASTM D 256 Tear propagation resistance (ASTM D 1922) d = 50 µm, longitudinal - / - cn ASTM D 1922 Tear propagation resistance (ASTM D 1922) d = 50 µm, transversal - / - cn ASTM D 1922 Free falling dart drop (ASTM D 1709), method B - / - g ASTM D 1709 Tensile stress at yield, 2 in/min (ASTM) - / - MPa ASTM D 638 Percent elongation at break, 2 in/min (ASTM) - / - % ASTM D 638 Flexural strength (ASTM) - / - MPa ASTM D 790 Flexural modulus (ASTM) - / - MPa ASTM D 790 Modulus of elasticity (ASTM) - / - MPa ASTM D 638 MFR (ASTM) - g/10min ASTM D 1238 Temperature (ASTM) - C ASTM D 1238 Load (ASTM) - kg ASTM D 1238 Percent elongation at yield, 2 in /min (ASTM) - / - % ASTM D 638 Tensile stress at 100% strain, 2 in/min (ASTM) - / - MPa ASTM D 638 Flexural stress at 5% strain (ASTM) - / - MPa ASTM D 790 Shore A hardness (ASTM) - / - - ASTM D 2240 Shore D hardness (ASTM) - / - - ASTM D 2240 Vicat softening temperature (ASTM) - C ASTM D 1525 Density (ASTM) - g/cm³ ASTM D 792 Burning behaviour, ASTM, Burning rate, d = 3.2 mm - cm/min ASTM D 635 Burning behaviour, ASTM, Burning distance (AEB), d = 3.2 mm - mm ASTM D 635 Burning behaviour, ASTM, Burning time (ATB), d = 3.2 mm - s ASTM D 635 Water absorption, equilibrium in water at 23 C, ASTM % ASTM D 570 Moisture absorption, equilibrium 23 C/50% r.h., ASTM % ASTM D 570 HDT A (1.80 MPa), ASTM - C ASTM D 648 HDT B (0.45 MPa), ASTM - C ASTM D 648 MVR (1), ASTM - cm³/10min ASTM D 1238 MVR (2), ASTM - cm³/10min ASTM D 1238 Temperature (1), ASTM - C ASTM D 1238 Temperature (2), ASTM - C ASTM D 1238 wis.basf-ag.de/wis-3.7/matdb/printdatasheet.php 2/10
3 Temperature (2), ASTM - C ASTM D 1238 Load (1), ASTM - kg ASTM D 1238 Load (2), ASTM - kg ASTM D 1238 Specific gravity ASTM - / - - ASTM D 792 Moisture absorption, 24 hours ASTM -//- % ASTM D 570 Moisture absorption, 50% RH ASTM % ASTM D 570 Moisture absorption, Saturation ASTM % ASTM D 570 Degree of light transmission, crystal clear and transparent, d = 4 mm - % ASTM D 1003 Haze, d = 4 mm - % ASTM D 1003 Shrinkage (Flow direction) - % ASTM D 955 Shrinkage (Across flow direction) - % ASTM D 955 Thermal Properties dry/cond Vicat softening temperature, VST/A/50 (10 N, 50 K/h) - / * C ISO 306 Coefficient of linear thermal expansion, longitudinal (140 C) E-6/K DIN Coefficient of linear thermal expansion, longitudinal (180 C) E-6/K DIN Temperature limit for application, max. time of use of several hours, Known value for parts - C - Temperature limit for high temperatures, h, related to 50% decrease of tensile strength - C IEC 216 Temperature limit for high temperatures, 5000 h, related to 50% decrease of tensile strength - C IEC 216 Temperature limit for low temperatures, related to remarkable decrease in toughness, related temperature 23 C - C - RTI, electrical, d = 0.8 mm - C UL-746B RTI, electrical, d = 1.6 mm - C UL-746B RTI, electrical, d = 3.2 mm - C UL-746B RTI, mechanical, under impact stress, d = 0.8 mm - C UL-746B RTI, mechanical, under impact stress, d = 1.6 mm - C UL-746B RTI, mechanical, under impact stress, d = 3.2 mm - C UL-746B RTI, mechanical, without impact stress, d = 0.8 mm - C UL-746B RTI, mechanical, without impact stress, d = 1.6 mm - C UL-746B RTI, mechanical, without impact stress, d = 3.2 mm - C UL-746B Thermal conductivity, solid material (23 C) - W/(m K) DIN Specific heat capacity, solid material (23 C) - J/(kg*K) - Vicat softening temperature, VST/A/120 (10 N, 120 K/h) - / * C ISO 306 Burning behaviour at thickness h (1) HB class UL-94, IEC tested thickness (1) 3 mm UL-94, IEC UL 94 (1) UL - UL-94, IEC Burning behaviour at thickness h (2) - class UL-94, IEC tested thickness (2) - mm UL-94, IEC UL 94 (2) - - UL-94, IEC Burning behaviour at thickness h (3) - class UL-94, IEC tested thickness (3) - mm UL-94, IEC UL 94 (3) - - UL-94, IEC Burning behaviour, Method FH (horizontal), d = 3 mm - class IEC Burning rate - mm/min IEC Burning behaviour, Method FV (vertical), d = 3 mm - class IEC Burning behaviour, Method A, burning rate, horizontal, d = 3 mm - cm/min ISO 1210 Burning behaviour, Method B, burning duration, vertical, d = 3 mm - s ISO 1210 Burning behaviour, Method B, afterglow duration, vertical, d = 3 mm - s ISO 1210 Flammability by electrical sources of ignition, Method BH, d = 4 mm - class IEC Burning rate - mm/min IEC Glow-Wire test, d < 1 mm - C IEC Glow-Wire test, d 1 mm - C IEC Burning behaviour, ASTM, Burning rate, d = 3.2 mm - cm/min ASTM D 635 Burning behaviour, ASTM, Burning distance (AEB), d = 3.2 mm - mm ASTM D 635 Burning behaviour, ASTM, Burning time (ATB), d = 3.2 mm - s ASTM D 635 Vicat softening temperature, VST A (10 N, 50 K/h) (ASTM) - / * C ASTM D 1525 Glow Wire Flammability Index, GWFI (1) - C IEC Thickness GWFI (1) - mm IEC Glow Wire Flammebility Index, GWFI (2) - C IEC Thickness GWFI (2) - mm IEC Glow Wire Flammability Index, GWFI (3) - C IEC Thickness GWFI (3) - mm IEC Glow Wire Ignition Test, GWIT (1) - C IEC Thickness GWIT (1) - mm IEC High-Current Arc Ignition, HAI - class UL 746A Thickness HAI - mm UL746A Hot Wire Ignition, HWI (1) - class ASTM D Thickness HWI (1) - mm ASTM D Hot Wire Ignition, HWI (2) - class ASTM D Thickness HWI (2) - mm ASTM D Specific optical smoke density - - EN ISO Conventional index of toxicity - - EN ISO Toxicity of smoke CIT NLP acc. to CEN/TS NF X /-2 Fire/ignition performance (UL94+HAI+HWI), min. thickness - mm UL746C Melting temperature, DSC (10 C/min) 220 / * C ISO /-3 Glass transition temperature, DSC (10 C/min) - / * C ISO /-2 Crystallization temperature, DSC (10 C/min) - / * C ISO /-3 HDT A (1.80 MPa) 205 / * C ISO 75-1/-2 HDT B (0.45 MPa) 215 / * C ISO 75-1/-2 HDT C (8.0 MPa) * / * C ISO 75-1/-2 Vicat softening temperature, VST/B/50 (50 N, 50 K/h) (CAMPUS) - / * C ISO 306 Coeff. of linear therm. expansion 23 C - 55 C (parallel) (CAMPUS) E-6/K ISO /-2 Coeff. of linear therm. expansion 23 C - 55 C (normal) (CAMPUS) E-6/K ISO /-2 Burning Behav. at 1.6 mm nom. thickn. (CAMPUS) - / * class IEC Thickness tested (1.6) - / * mm IEC UL recognition (1.6) - / * - - Burning Behav. at thickness h (CAMPUS) b1 HB / * class IEC Thickness tested (b1) 0.71 / * mm IEC wis.basf-ag.de/wis-3.7/matdb/printdatasheet.php 3/10
4 UL recognition (b1) UL / * - - Burning Behav. 5V at thickness h (CAMPUS) - / * class IEC Thickness tested (5V) - / * mm IEC UL recognition (5V) - / * - - Oxygen index - / * % ISO /-2 HDT B (0.45 MPa) after tempering (180 C, 30min) - C ISO 75-2 Ball pressure - C IEC Melting point - C ISO 3146 Electrical Properties dry/cond Electric strength K20/P50, d = 1 mm 44 / - kv/mm IEC Electric strength K20/P50, d = mm - / - kv/mm IEC Comparative tracking index, CTI M, test liquid B - / - - IEC Relative permittivity (100Hz) 4.2 / - - IEC Relative permittivity (1 MHz) 3.6 / - - IEC Relative permittivity (1 KHz) - / - - IEC Dissipation factor (100 Hz) 0.02 / - E-4 IEC Dissipation factor (1 MHz) 0.02 / - E-4 IEC Dissipation factor (1 KHz) - / - E-4 IEC Volume resistivity >1E13 / - Ohm*m IEC Surface resistivity * / - Ohm IEC Electric strength K20/K20, ( 60*60*1 mm^3) - / - kv/mm IEC Comparative tracking index, CTI, test liquid A - / - - IEC Volume resistivity, ASTM D-4496 according to SAE J1645/ISO 3915, 4 point measurement - / - Ohm*cm ISO 3915 Optical Properties dry/cond Refractive index, crystal clear and transparent - - ISO 489 Degree of light transmission, crystal clear and transparent - % DIN Degree of light transmission, crystal clear and transparent, d = 2 mm - % DIN Degree of light transmission, crystal clear and transparent, d = 0.5 mm - % DIN Haze, transparent plates - % DIN Surface gloss, BASF-Method - Skalenteile - Other Properties dry/cond Solution viscosity, K-value, only PA and PVC - - DIN Water absorption, 24 h in water, 23 C - % ISO 62 Density, Apparent density, - / * g/cm³ ISO 60 Gas permeability, O2, 23 C, 50% r.h. - ml/m²*d*bar DIN Gas permeability, N2, 23 C, 50% r.h. - ml/m²*d*bar DIN Gas permeability, CO2, 23 C, 50% r.h. - ml/m²*d*bar DIN Water avapor-permeability, 20 C 85% r.h. --> 20 C 0% r.h. d = 50 µm, - / - g/(m²*d) DIN Other, Elastomer amount, related to PVC - % - Molecular weight Mw (GPC in DMF, PS standard) - g/mol - Mw/Mn (GPC in DMF) Molecular weight Mw (GPC in THF, PS standard) - g/mol - Mw/Mn (GPC in THF) Moisture content - % ISO Viscosity number - cm³/g DIN Acrylonitrile content - % - Water absorption, equilibrium in water at 23 C (CAMPUS) % similar to ISO 62 Moisture absorption, equilibrium 23 C/50% r.h. (CAMPUS) % similar to ISO 62 Density 1390 / * kg/m³ ISO 1183 Molecular weight Mw (GPC in DMAc, PMMA standard) - g/mol - Mw/Mn (GPC in DMAc, PMMA standard) Laser transparency, lasertype Nd:YAG, 1064 nm - % BASF-Methode Packaging dry/cond Blown film, Thickness - / - µm - Blown film, Gloss (20 ) - / - % DIN Blown film, Haze - / - % ASTM D 1003 Blown film, tear strength, longitudinal - / - MPa ISO Blown film, elongation at break, longitudinal - / - % ISO Blown film, Dart im pact failure weigth - / - g ASTM D 1709 Blown film, Fracture energy - / - J/mm DIN Blown film, Coefficient of friction film-film - / - - DIN Blown film, tear strength, transversal - / - MPa ISO Blown film, elongation at break, longitudinal - / - % ISO Extruded film, Thickness - / - µm - Extruded film, Gloss (20 ) - / - % DIN Extruded film, Haze - / - % ASTM D 1003 Extruded film, tear strength, longitudinal - / - MPa ISO Extruded film, elongation at break, transverse - / - MPa ISO Extruded film, Dart im pact failure weigth - / - g ASTM D 1709 Extruded film, Fracture energy - / - J/mm DIN Extruded film, Coefficient of friction film-film - / - - DIN Exrtuded film, tear strength, transversal - / - MPa ISO Exrtuded film, elongation at break, longitudinal - / - MPa ISO Gas permeability O2 50% r.h., d = 50 µm - / - ml/m²*d*bar DIN Gas permeability CO2 50% r.h., d = 50 µm - / - ml/m²*d*bar ISO 2556 Gas permeability O2 0% r.h., d = 50 µm - / - ml/m²*d*bar DIN Gas permeability O2 85% r.h., d = 50 µm - / - ml/m²*d*bar DIN Gas permeability CO2 0% r.h., d = 50 µm - / - ml/m²*d*bar ISO 2556 Gas permeability CO2 85% r.h., d = 50 µm - / - ml/m²*d*bar ISO 2556 Tear propagation resistance (ASTM D 1922) d = 50 µm, longitudinal - / - cn ASTM D 1922 Tear propagation resistance (ASTM D 1922) d = 50 µm, transversal - / - cn ASTM D 1922 Free falling dart drop (ASTM D 1709), method B - / - g ASTM D 1709 Test Specimen dry/cond Injection Molding, melt temperature * C ISO 294 mold temperature * C ISO injection velocity * mm/s ISO 294 wis.basf-ag.de/wis-3.7/matdb/printdatasheet.php 4/10
5 injection velocity * mm/s ISO 294 pressure at hold - MPa ISO 294 Material standard ISO : Compression Molding, molding temperature * C ISO 293 molding time * min ISO 293 cooling rate * K/min ISO 293 demolding temperature * C ISO 293 Processing conditions acc. ISO - - ISO...-2 Rheological Calculation Properties dry/cond Density of melt 1.14 kg/m³ - Thermal conductivity of melt W/(m K) - Spec. heat capacity melt 2430 J/(kg K) - Eff. thermal diffusivity - m²/s - Ejection temperature - C - Density, reference pvt - kg/m³ - Specific heat capacity, average - J/(kg*K) - Eff. thermal diffusivity - m²/s - Eff. thermal diffusivity - m²/s - at temperature - C - Eff. thermal diffusivity - m²/s - at temperature - C - Eff. thermal diffusivity - m²/s - at temperature - C - Transitiontemperatur (=NoFlow) - C - Entrance pressure loss c1 - Pa**(1-c2) - Entrance pressure loss c2 Processing dry/cond Molding shrinkage, free, longitudinal, plate, with film gate % - Molding shrinkage, after-shrinkage, thermoplastics % - Molding shrinkage, free, transversal, plate with film gate % - Molding shrinkage, constrained, longitudinal, Model-housing, d = 1.5 mm % - Molding shrinkage, constrained, transversal, Model-housing, d = 1.5 mm % - Molding shrinkage, Melt temperature, Test part processing - C - Molding shrinkage, Mold temperature, Test part processing - C - Molding shrinkage free, ISO294 % ISO294 Coating melt temperature C - Pre/Post-processing, max. allowed water content - % - Pre/Post-processing, Pre-drying, Temperature C - Pre/Post-processing, Pre-drying, Time h - Pre/Post-processing, Annealing, Temperature C - Pre/Post-processing, Annealing, Time - s - Pre/Post-processing, Conditioning in water, Temperature range C - Pre/Post-processing, Conditioning in air, Temperature range C - Pre/Post-processing optimal moisture % Flowability, Injectin pressure, Model-housing, d = 1.5 mm - MPa BASF-Methode Melt temperature - C - Mold temperature - C - Flowability, Flow length, Spiral d = 2 mm - cm BASF-Methode Melt temperature - C - Mold temperature - C hold pressure - bar - Profitability, Cycle time, Model-part: cover - s BASF-Methode injection molding, Melt temperature, range C - injection molding, Melt temperature, recommended C - injection molding, Mold temperature, range C - injection molding, Mold temperature, recommended - C - injection molding, Dwell time, thermoplastics - min - Extrusion, Prepreg, Melt temperature C - Extrusion, Plates, Melt temperature C - Extrusion, Pipes, Melt temperature C - Extrusion, Profiles, Melt temperature C - Extrusion, Blown film, Melt temperature C - Extrusion, Flat film, Melt temperature C - Extrusion, cable sheathing, Melt temperature C - Blow moulding, Mould temperature C - Blow moulding, Melt temperature C - Injection molding Temperature hopper throat C Injection molding cylinder temperature 1 (feed zone) C Injection molding cylinder temperature 2 (compression) C Injection molding cylinder temperature 3 (metering-zone, head room of screw) C Injection molding cylinder temperature 4 (die) C Injection molding Rotational screw speed m/s Flowability, Flow length, Spiral d = 0,5 mm - cm BASF-Methode Melt temperature - C - Mold temperature - C - Flowability, Flow length, Spiral d = 1,0 mm - cm BASF-Methode Melt temperature - C Mold temperature - C Flowability, Flow length, Spiral d = 1,5 mm - cm BASF-Methode Melt temperature - C - Mold temperature - C - Mechanical Data for FE Calculation dry/cond E (Matrix) - / - MPa - nu (Matrix) - / CLTE (Matrix) - / - 1/K - Density (Matrix) - / - kg/m³ - wis.basf-ag.de/wis-3.7/matdb/printdatasheet.php 5/10
6 Filler 1 Weight content F1 - % - Density F1 - kg/m³ - L/D F1 E-Modul F1 - MPa - Poissons ratio F1 CLTE F1-1/K - Filler 2 Weight content F2 - % - Density F2 - kg/m³ - L/D F2 E-Modul F2 - MPa - Poissons ratio F2 CLTE F2-1/K - E1 (Comp) - / - MPa - E2 (Comp) - / - MPa - nu12 (Comp) - / nu23 (Comp) - / G12 (Comp) - / - MPa - CLTE1 (Comp) - / - 1/K - CLTE2 (Comp) - / - 1/K - App. Area (Packaging) dry/cond Blow molding Blown film Film Food packaging Extruded film (B), Blown film, water cooled (Sw) Profiles Material specific properties dry/cond Viscosity number - / * cm³/g ISO 307, 1157, 1628 relative viscosity - - ISO 307 Indicative density (PE only) * kg/m³ ISO Molecular weight Mw (GPC in DMF, PS standard) - g/mol - Mw/Mn (GPC in DMF) Test specimen production dry/cond Processing conditions acc. ISO - - ISO...-2 Injection Molding, injection temperature - C ISO mold temperature - C ISO injection velocity - mm/s ISO hold pressure - MPa ISO cure time - s ISO Compression Molding, mold temperature - C ISO 295 cure time - min ISO 295 Mechanical properties (Film) dry/cond Stress at yield, parallel - MPa ISO Stress at yield, normal - MPa ISO Strain at yield, parallel - % ISO Strain at yield, normal - % ISO Maximum stress, parallel - MPa ISO Maximum stress, normal - MPa ISO Maximum strain, parallel - % ISO Maximum strain, normal - % ISO Elmendorf Tear resistance, parallel - g ISO Elmendorf Tear resistance, normal - g ISO Trouser Tear resistance, parallel - - ISO Trouser Tear resistance, normal - - ISO Dart drop A - g ISO Dart drop B - g ISO Dynamic coefficient of friction - - ISO 8295 Other properties (Film) dry/cond Gloss, ISO 2813 Gloss, ISO 2813 Gloss, ISO 2813 Haze - - ISO WVTR at 23 C/85%r.h. - g/(m²*d) ISO /-2 Oxygen transmission rate at 23 C/0%r.h. - cm³/(m²*d*bar) ISO /-2 Oxygen transmission rate at 23 C/85%r.h. - cm³/(m²*d*bar) ISO /-2 Carbon Dioxide transm. rate at 23 C/0%r.h. - cm³/(m²*d*bar) ISO /-2 Carbon Dioxide transm. rate at 23 C/85%r.h. - cm³/(m²*d*bar) ISO /-2 Test specimen production (Film) dry/cond Minimum achievable thickness - mm - Type of extrusion Thickness of specimen - mm - Mechanical properties (TPE) dry/cond Stress at 10% elongation - MPa ISO 527-1/-2 Stress at 100% elongation - MPa ISO 527-1/-2 Stress at 300% elongation - MPa ISO 527-1/-2 Strain at break - % ISO 527-1/-2 Stress at break - MPa ISO 527-1/-2 Compression Set under constant strain (23 C) - % ISO 815 Compression Set under constant strain (70 C) - % ISO 815 Compression Set under constant strain (100 C) - % ISO 815 Tear strength - kn/m ISO 34-1 Abrasion resistance - mm³ ISO 4649 Shore A hardness (3s) - - ISO 868 Shore D hardness (15s) - - ISO 868 wis.basf-ag.de/wis-3.7/matdb/printdatasheet.php 6/10
7 Shore D hardness (15s) - - ISO 868 Chemical Media Resistance dry/cond ASTM (Film) dry/cond Strain at break, 2 in/min, longitudinal (Film, ASTM) - / - % ASTM D 882 tested film thickness - µm Strain at break, 2 in/min, transversal (Film, ASTM) - / - % ASTM D 882 tested film thickness - µm Strain at break, 2 in/min, longitudinal (Film, ASTM) - / - % ASTM D 882 tested film thickness - µm Strain at break, 2 in/min, transversal (Film, ASTM) - / - % ASTM D 882 tested film thickness - µm VDA dry/cond Puncture - ductile/brittle transition temperature - C ISO Coeff. of linear therm. expansion -40 C to +100 C (normal) - E-6/K ISO /2 Coeff. of linear therm. expansion -40 C to +100 C (parallel) - E-6/K ISO /2 Burning rate (Thickness 1 mm) - mm/min ISO 3795 (FMVSS 302) Thermal stability in air (Charpy at 50% decrease, 3000 h) - C DIN/IEC Test specimen - - Weather stability delta l - - ISO Weather stability delta a - - ISO Weather stability delta b - - ISO Weather stability delta E - - ISO Weather stability grey scale - - ISO Light stability delta l - - ISO Light stability delta a - - ISO Light stability delta b - - ISO Light stability delta E - - ISO Light stability grey scale - - ISO Emission of organic compounds - µg C/g VDA 277 Thermal desorption analysis of organic emissions - µg/g VDA 278 Odor test - - VDA 270 Laminate/Tape dry/cond Density (laminate) - / - g/cm³ ISO 1183 Fiber content, vol - % ISO 1172 Fiber content, wt - % ISO 1172 Tensile modulus 0/90 - / - GPa ISO Stress at break 0/90 - / - MPa ISO Strain at break 0/90 - / - % ISO Flexural modulus 0/90 - / - GPa ISO Flexural strength 0/90 - / - MPa ISO Flexural strain 0/90 - / - % ISO Thickness (tape) - mm Tensile modulus (tape) - / - GPa ISO Stress at break (tape) - / - MPa ISO Strain at break (tape) - / - % ISO Flexural modulus (tape) - / - GPa ISO Flexural strength (tape) - / - MPa ISO Flexural strain (tape) - / - % ISO CAMPUS Multi-point data according to ISO /-2 wis.basf-ag.de/wis-3.7/matdb/printdatasheet.php 7/10
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10 Processing Information Injection Molding PREPROCESSING Max. Water content: 0.12% Product is supplied in sealed containers and drying prior to molding is not required. If drying becomes necessary, a dehumidifying or desiccant dryer operating at 80 C (176 F) is recommended. Drying time is dependent on moisture level.further information concerning safe handling procedures can be obtained from the Material Safety Data Sheet. Alternatively, please contact your BASF representative. PROCESSING Melt Temperature C ( F) Mold Temperature C ( F) Injection and Packing Pressure bar ( psi) This product can be processed over a wide range of mold temperatures; however, for applications where aesthetics are critical, a mold surface temperature of C ( F) is required. Injection pressure controls the filling of the part and should be applied for 90% of ram travel. Packing pressure affects the final part and can be used effectively in controlling sink marks and shrinkage. It should be applied and maintained until the gate area is completely frozen off. Back pressure can be utilized to provide uniform melt consistency and reduce trapped air and gas. A maximum of 3.5 bar (50 psi) is recommended to minimize glass fiber breakage. Fast fill rates are recommended to insure uniform melt delivery to the cavity and prevent premature freezing. Surface appearance is directly affected by injection rate. Chemical resistance No data available at this time Disclaimer The data contained in this publication are based on our current knowledge and experience. In view of the many factors that may affect processing and application of our product, these data do not relieve processors from carryi wis.basf-ag.de/wis-3.7/matdb/printdatasheet.php 10/10
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