Sarlink® TPV 3140

About
SARLINK® TPV 3100 series are engineered materials designed primarily for general purpose, automotive and industrial applications requiring a good balance of thermal, mechanical, and physical properties. SARLINK® 3140, available in NAT and BLK, is a low hardness, low density, multi-purpose thermoplastic vulcanizate that can be processed by injection molding, blow molding or extrusion for applications such as grips, seals, gaskets, profiles, hose & tubes, bellows, and other articles.&&

Product Description
SupplierTeknor Apex
GenericTPV
Material StatusCommercial: Active
FeaturesWeather resistance is good,Excellent Processability,Good flexibility,Good surface appearance,High elastic,Good bond,Elastic,Low density,Low Hardness,Heat Resistance, Good,Solvent resistance,HB
AvailabilitysAfrica & Middle East ,North America,Latin America,Asia Pacific,Europe
Process MethodsInjection Molding

Technical Data
PHYSICALNominal valueUnitTest method
Density0.928g/cm³ASTM D792
Density0.930g/cm³ISO 1183

elastic bodyNominal valueUnitTest method
tensile strength ASTM D412
TD, 100% strain1.20MPaASTM D412
MD, 100% strain2.50MPaASTM D412
tensile strength ISO 37
TD, 100% strain1.20MPaISO 37
MD, 100% strain2.50MPaISO 37
tensile strength ASTM D412
fracture4.40MPaASTM D412
MD, fracture2.50MPaASTM D412
tensile strength ISO 37
fracture4.40MPaISO 37
MD, fracture2.50MPaISO 37
Tensile strain ASTM D412
fracture600%ASTM D412
Flow rate, fracture210%ASTM D412
Tensile strain ISO 37
fracture600%ISO 37
Flow rate, fracture210%ISO 37
tear strength
TD15.9kN/mASTM D624
TD16kN/mISO 34-1
Compression deformation ASTM D395
23℃,22 hr18%ASTM D395
70℃,22 hr31%ASTM D395
125℃,70 hr52%ASTM D395
Compression deformation ISO 815
23℃,22 hr18%ISO 815
70℃,22 hr31%ISO 815
125℃,70 hr52%ISO 815

MECHANICALNominal valueUnitTest method
Shore hardness ISO 868
Shore A, 5 seconds, extrusion molding41 ISO 868
Shore A, 5 seconds, injection molding46 ISO 868
Shore hardness ASTM D2240
Shore A, 5 seconds, extrusion molding41 ASTM D2240
Shore A, 5 seconds, injection molding46 ASTM D2240

THERMALNominal valueUnitTest method
Relative temperature index
Electrical performance50.0UL 746
Strength mechanical performance50.0UL 746
Impact mechanical performance50.0UL 746

Aging performanceNominal valueUnitTest method
Change rate of tensile strength in air – TD ASTM D573
135℃,1000 hr12%ASTM D573
100% strain, 135 ℃, 1000 hr5.0%ASTM D573
150℃,168 hr11%ASTM D573
100% strain, 150 ℃, 168 hr6.0%ASTM D573
Change rate of tensile strength in air – TD ISO 188
135℃,1000 hr12%ISO 188
100% strain 135 ℃, 1000 hr5.0%ISO 188
150℃,168 hr11%ISO 188
100% strain 150 ℃, 168 hr6.0%ISO 188
Change rate of ultimate elongation in air – TD ASTM D573
135℃,1000 hr12%ASTM D573
150℃,168 hr-7.0%ASTM D573
Changes in tensile stress when fractured in air – TD ISO 188
135℃,1000 hr12%ISO 188
150℃,168 hr7.0%ISO 188
The rate of change in hardness of a hardness tester in the air ASTM D573
Shaw A, 135 ℃, 1000 hr-1.0 ASTM D573
Shaw A, 150 ℃, 168 hr1.0 ASTM D573
The rate of change of Shore hardness in air ISO 188
Shaw A, 135 ℃, 1000 hr-1.0 ISO 188
Shaw A, 150 ℃, 168 hr1.0 ISO 188
Volume change
125 ℃, 70 hr, in IRM 903 oil140%ASTM D471
125 ℃, 70 hr, in IRM 903 oil140%ISO 1817

FLAME CHARACTERISTICSNominal valueUnitTest method
1.5 mm,Natural and Black ColorsHB UL 94

Supplementary informationNominal valueUnitTest method
Apparent viscosity of melt – Capillary, @ 206/s 
200℃270Pa·sISO 11443
200℃270Pa·sASTM D3835

Process Conditions
injectionNominal valueUnitTest method
ExtrusionNominal valueUnitTest method
Barrel rear temperature180 to 215°C
Barrel middle temperature180 to 215°C
Barrel front temperature180 to 215°C
Nozzle temperature187 to 220°C
Processing (melt) temperature185 to 220°C
Mold temperature10 to 55°C
Back pressure0.100 to 1.00MPa
Screw speed100 to 200rpm
Barrel 1 zone temperature180 to 200°C
Barrel 2 zone temperature180 to 205°C
Barrel 3 zone temperature187 to 210°C
Barrel 4 zone temperature187 to 210°C
Melt temperature195 to 215°C
Nozzle temperature195 to 215°C
Traction roller20 to 50°C

Notes
1. Typical properties: these are not to be construed as specifications.
2. Method Ba, Angle (Unnicked)
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