Vestodur® X9406 Black E70167 Impact Modified PBT

Технические документы

Description: VESTODUR X9406 is an impact modified compound based on polybutylene terephthalate. The resin is used as a barrier layer resin in multilayer tubing 1000.1 (MLT 1000.1)developed by Degussa.

Детали

Тип продукта
Режиссер
поставщиком
Дреимущества
  • resistance against hydrocarbon permeation when alcohol containing fuels are used
  • provides excellent barrier properties also in contact with fuels at elevated temperatures
Другие приложения

barrier layer resin in multilayer tubing 1000.1 (MLT 1000.1)

Обработка

MLT 1000.1 is a 3-layer-tubing comprising an outermost layer of VESTAMID LX9010, an adhesive layer of VESTODUR X9407, and an innermost layer of VESTODUR X9406.

Технические данные

Количество Стоимость Е диница измерения 3амечание
Физические свойства
MFI 19.68 g/10min
MFI 73.8 g/10min ISO 1133, Temperature 260 °C
MFI 19.68 g/10min ISO 1133, Temperature 250 °C
MFI 8.61 g/10min
MFI 8.61 g/10min
Density 1.23 g/ml ISO 1183
MFI 73.8 g/10min
Тепловые свойства
Vicat softening temperature 215 ºC Method A, 10 N; ISO 306
Heat Deflection temperature 50.0 ºC ISO 75-1/-2;at 1.8 MPa
Vicat softening temperature 145 ºC Method B, 50 N; ISO 306
Heat Deflection temperature 145 ºC ISO 75-1/-2;at 0.46 MPa
Thermal Expansion 140 µm/m-°C Longitudinal; ISO 11359, DIN 53752 @Temperature 23.0 - 80.0 °C
Thermal Expansion 140 µm/m-°C ; ISO 11359, DIN 53752 @Temperature 23.0 - 80.0 °C ;Transverse to Flow
Механические свойства
Elongation at yield 3.8 % ISO 527-1/2
Hardness Shore D 70 ISO 868
Charpy Impact Strength (notched) 15 kJ/m² ISO 179/1eA@Temperature 23.0 °C
Charpy Impact Strength (notched) 12 kJ/m² ISO 179/1eA@Temperature -30.0 °C
(Charpy Impact Strength(unnotched kJ/m² ISO 179/1eU@Temperature -30.0 °C
(Charpy Impact Strength(unnotched kJ/m² ISO 179/1eU@Temperature 23.0 °C
Elongation at break-MD 40 % ISO 527-1/2
Tensile modulus-MD 1750 MPa ISO 527-1/-2
Tensile Stress at yield-MD 40.0 MPa ISO 527-1/2
Химические свойства
Water absorption 0.60 % ISO 62; at Saturation