Stanyl® TE373

Heat Stabilized, Wear and Friction Modified

General Information

Stanyl® is our high-performance polyamide 46 used for applications in automotive, E&E, gears and outdoor power equipments.
Stanyl® is a high performance polyamide that provides unmatched performance and value for demanding applications in which superior heat resistance, design stiffness, wear & friction and process flow qualities are required.
Because Stanyl retains its mechanical properties at high temperatures up to 220°C, this makes it ideal for extremely high-performance applications, where it outperforms PPA, PA6T, PA9T, and often PPS and LCP.
Product
Stanyl® TE373 is a friction-modified high heat polyamide that offers excellent wear & friction properties in combination with outstanding creep resistance, strength, stiffness and fatigue resistance especially at high temperatures in combination with cycle-time advantages and excellent flow.
Special features
Regulatory Affairs
Processing technology
Injection Molding
Design challenge
Wear & Friction
Automotive OEM
FIAT CHRYSLER, GM
OEM Specification
FCA-MS50017(MS-DB-41)-CPN3728-(2017-02)
GMW15702-022071-PA6

Rheological properties

Molding shrinkage [parallel]
2
%
Molding shrinkage [normal]
2
%

Mechanical properties

Tensile modulus
2800
MPa
Yield stress
85
MPa
Yield strain
10
%
Nominal strain at break
10
%
Flexural modulus
2400
MPa
Flexural strength
100
MPa
Charpy impact strength (+23°C)
150
kJ/m²
Charpy impact strength (-30°C)
105
kJ/m²
Charpy notched impact strength (+23°C)
5
kJ/m²
Charpy notched impact strength (-30°C)
4
kJ/m²
Izod notched impact strength (+23°C)
5
kJ/m²
Izod notched impact strength (-40°C)
4
kJ/m²

Thermal properties

Melting temperature (10°C/min)
295
°C
Glass transition temperature (10°C/min)
75
°C
Temp. of deflection under load (1.80 MPa)
190
°C
Coeff. of linear therm. expansion (parallel)
0.85
E-4/°C
Coeff. of linear therm. expansion (normal)
1.1
E-4/°C

Other properties

Water absorption
12.4
%
Water absorption in water at 23°C after 24h
3.5
%
Humidity absorption
3.4
%
Density
1170
kg/m³

Material specific properties

Viscosity number
180
cm³/g

Rheological calculation properties

Density of melt
1000
kg/m³
Thermal conductivity of melt
0.253
W/(m K)
Spec. heat capacity melt
2780
J/(kg K)
Eff. thermal diffusivity
8.96E-8
m²/s

Diagrams