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Solvay TECHNYL® A 218 V35 PA66, 35% glass fiber, Conditioned

Category Polymer , Thermoplastic , Nylon , Nylon 66 , Nylon 66, 40% Glass Fiber Filled
Manufacturer Solvay
Trade Name Technyl®
Port Ningbo port,China
Trade Terms FOB, CFR, CIF
Payment Terms L/C, T/T, Western Union
Download PDF Solvay TECHNYL® A 218 V35 PA66, 35% glass fiber, Conditioned.pdf
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Material Notes:
Description: TECHNYL® A 218 V35 is a polyamide 66, reinforced with 35% of glass fiber, heat stabilized, for injection molding. This product is available in natural and black colors.Benefits: The product offers an excellent combination between thermal and mechanical properties.Available in: Asia Pacific, Europe, Latin America and North AmericaRegulations compliance: Grades produced or imported in Europe comply with directive 453/2010/EC, which amends REACH directive 1907/2006/EC. This grade complies with RoHS directive 2002/95/EC. Unless specified, this grade is not suitable for food contact, medical devices or toy applicationsApplications: It is used in a wide variety of industries.Information provided by Rhodia, Rhodia has been acquired by Solvay.
Physical Properties Metric English Comments
Density 1.41 g/cc
0.0509 lb/in³
ISO 1183/A
Mechanical Properties Metric English Comments
Tensile Strength at Break 150 MPa
21800 psi
ISO 527 Type 1A
Tensile Stress 35.0 MPa

@Strain 1.00 %,
Temperature 120 °C
5080 psi

@Strain 1.00 %,
Temperature 248 °F
45.0 MPa

@Strain 1.00 %,
Temperature 80.0 °C
6530 psi

@Strain 1.00 %,
Temperature 176 °F
50.0 MPa

@Strain 1.00 %,
Temperature 60.0 °C
7250 psi

@Strain 1.00 %,
Temperature 140 °F
55.0 MPa

@Strain 2.00 %,
Temperature 120 °C
7980 psi

@Strain 2.00 %,
Temperature 248 °F
65.0 MPa

@Strain 1.00 %,
Temperature 23.0 °C
9430 psi

@Strain 1.00 %,
Temperature 73.4 °F
70.0 MPa

@Strain 3.00 %,
Temperature 120 °C
10200 psi

@Strain 3.00 %,
Temperature 248 °F
70.0 MPa

@Strain 2.00 %,
Temperature 80.0 °C
10200 psi

@Strain 2.00 %,
Temperature 176 °F
80.0 MPa

@Strain 4.00 %,
Temperature 120 °C
11600 psi

@Strain 4.00 %,
Temperature 248 °F
80.0 MPa

@Strain 2.00 %,
Temperature 60.0 °C
11600 psi

@Strain 2.00 %,
Temperature 140 °F
85.0 MPa

@Strain 3.00 %,
Temperature 80.0 °C
12300 psi

@Strain 3.00 %,
Temperature 176 °F
85.0 MPa

@Strain 6.00 %,
Temperature 120 °C
12300 psi

@Strain 6.00 %,
Temperature 248 °F
90.0 MPa

@Strain 4.00 %,
Temperature 80.0 °C
13100 psi

@Strain 4.00 %,
Temperature 176 °F
90.0 MPa

@Strain 1.00 %,
Temperature 0.000 °C
13100 psi

@Strain 1.00 %,
Temperature 32.0 °F
95.0 MPa

@Strain 6.00 %,
Temperature 80.0 °C
13800 psi

@Strain 6.00 %,
Temperature 176 °F
100 MPa

@Strain 4.00 %,
Temperature 60.0 °C
14500 psi

@Strain 4.00 %,
Temperature 140 °F
100 MPa

@Strain 3.00 %,
Temperature 60.0 °C
14500 psi

@Strain 3.00 %,
Temperature 140 °F
105 MPa

@Strain 2.00 %,
Temperature 23.0 °C
15200 psi

@Strain 2.00 %,
Temperature 73.4 °F
105 MPa

@Strain 6.00 %,
Temperature 60.0 °C
15200 psi

@Strain 6.00 %,
Temperature 140 °F
120 MPa

@Strain 1.00 %,
Temperature -40.0 °C
17400 psi

@Strain 1.00 %,
Temperature -40.0 °F
125 MPa

@Strain 3.00 %,
Temperature 23.0 °C
18100 psi

@Strain 3.00 %,
Temperature 73.4 °F
160 MPa

@Strain 2.00 %,
Temperature 0.000 °C
23200 psi

@Strain 2.00 %,
Temperature 32.0 °F
200 MPa

@Strain 2.00 %,
Temperature -40.0 °C
29000 psi

@Strain 2.00 %,
Temperature -40.0 °F
Elongation at Break 4.0 %
4.0 %
ISO 527 Type 1A
Tensile Modulus 8.70 GPa
1260 ksi
ISO 527 Type 1A
Flexural Modulus 6.80 GPa
986 ksi
ISO 178
Izod Impact, Notched (ISO) 18.0 kJ/m²
8.57 ft-lb/in²
ISO 180/1eA
Charpy Impact Unnotched 10.0 J/cm²
47.6 ft-lb/in²
ISO 179/1eU
Charpy Impact, Notched 1.85 J/cm²
8.80 ft-lb/in²
ISO 179/1eA
Electrical Properties Metric English Comments
Volume Resistivity 1.00e+13 ohm-cm
1.00e+13 ohm-cm
IEC 60093
Surface Resistance 1.00e+12 ohm
1.00e+12 ohm
IEC 60093
Dielectric Constant 4.0
4.0
IEC 60250
Dielectric Strength 29.0 kV/mm
737 kV/in
IEC 60243
Dissipation Factor 0.11
0.11
IEC 60250
Comparative Tracking Index 600 V
600 V
Solution A; IEC 60112
Processing Properties Metric English Comments
Moisture Content <= 0.20 %
<= 0.20 %
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