Plastics — Determination of dynamic mechanical properties Part 4: Tensile vibration — Non-resonance method
€77.00
Plastics — Determination of dynamic mechanical properties Part 5: Flexural vibration — Non-resonance method
Plastics — Determination of dynamic mechanical properties Part 6: Shear vibration — Non-resonance method
Plastics — Determination of dynamic mechanical properties Part 7: Torsional vibration — Non-resonance method
Plastics — Carbon and environmental footprint of biobased plastics Part 1: General principles
Plastics — Carbon and environmental footprint of biobased plastics Part 2: Material carbon footprint, amount (mass) of CO2 removed from the air and incorporated into polymer molecule
Plastics — Carbon and environmental footprint of biobased plastics Part 3: Process carbon footprint, requirements and guidelines for quantification
Plastics — Determination of viscosity using a falling-ball viscometer Part 1: Inclined-tube method
Plastics — Determination of dynamic mechanical properties Part 8: Longitudinal and shear vibration — Wave-propagation method
Plastics — Determination of dynamic mechanical properties Part 9: Tensile vibration — Sonic-pulse propagation method
Plastics — Determination of dynamic mechanical properties Part 11: Glass transition temperature
€115.00
Plastics — Thermomechanical analysis (TMA) Part 3: Determination of penetration temperature
€51.00
Plastics — Methods for determining the density of non-cellular plastics Part 2: Density gradient column method
Plastics — Determination of average molecular weight and molecular weight distribution of polymers using size-exclusion chromatography Part 1: General principles
Plastics — Determination of average molecular weight and molecular weight distribution of polymers using size-exclusion chromatography Part 2: Universal calibration method