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Polymer Property : CTE, linear, Parallel to Flow = 2.10 µm/m-°C Product List

Thermal Properties

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Thermal Properties Metric English Comments
CTE, linear, Parallel to Flow 2.10 µm/m-°C

@Thickness 2.00 mm,
Temperature 23.0 - 55.0 °C
1.17 µin/in-°F

@Thickness 0.0787 in,
Temperature 73.4 - 131 °F
ISO 11359-2
Ascend Performance Materials Vydyne® R533 NT Nylon 66, 33% Glass Reinforced, DAM
Vydyne® R533 NT is general-purpose, 33% glass-fiber reinforced PA66 resin. Available in natural, it is an injection-molding grade that is lubricated for good machine feed, flow and mold release. Gl..
CTE, linear, Parallel to Flow 2.10 µm/m-°C

@Thickness 2.00 mm,
Temperature 23.0 - 55.0 °C
1.17 µin/in-°F

@Thickness 0.0787 in,
Temperature 73.4 - 131 °F
ISO 11359-2
Ascend Performance Materials Vydyne® R533H NT Nylon 66, 33% Glass Reinforced, DAM
Vydyne® R533H NT is 33% glass-fiber reinforced, hydrolysis-resistant, heat-stabilized PA66 resin. Available in natural, it is specifically designed to maximize the retention of physical properties ..
CTE, linear, Parallel to Flow 2.10 µm/m-°C

@Thickness 2.00 mm,
Temperature 23.0 - 55.0 °C
1.17 µin/in-°F

@Thickness 0.0787 in,
Temperature 73.4 - 131 °F
ISO 11359-2
Ascend Performance Materials VYDYNE® R533H Nylon, 33% Glass Reinforced, DAM
Vydyne® R533H is 33% glass-fiber reinforced, heat-stabilized PA66 resin. Available in natural, it is specifically designed to maximize the retention of physical properties when exposed to anti-free..
CTE, linear, Parallel to Flow 2.10 µm/m-°C

@Thickness 2.00 mm,
Temperature 23.0 - 55.0 °C
1.17 µin/in-°F

@Thickness 0.0787 in,
Temperature 73.4 - 131 °F
ISO 11359-2
Ascend Performance Materials Vydyne® R533H01 Nylon 66, 33% Glass Reinforced, DAM
Vydyne® R533H01 is 33% glass-fiber reinforced, hydrolysis-resistant, heat-stabilized PA66 resin. Available in black, it is specifically designed to maximize the retention of physical properties whe..
CTE, linear, Parallel to Flow 2.10 µm/m-°C

@Thickness 2.00 mm,
Temperature 23.0 - 55.0 °C
1.17 µin/in-°F

@Thickness 0.0787 in,
Temperature 73.4 - 131 °F
ISO 11359-2
Ascend Performance Materials Vydyne® R535H NT651 Nylon 66, 35% Glass Reinforced, DAM
Vydyne® R535H NT651 is 35% glass-fiber reinforced PA66 resin. Available in natural, it is heat-stabilized with an electrically neutral heat stabilizer. It is designed specially for electrical appli..
CTE, linear, Parallel to Flow 2.10 µm/m-°C

@Thickness 2.00 mm,
Temperature 23.0 - 55.0 °C
1.17 µin/in-°F

@Thickness 0.0787 in,
Temperature 73.4 - 131 °F
ISO 11359-2
Ascend Performance Materials Vydyne® R533H BK02 Nylon 66, 33% Glass Reinforced, DAM
Vydyne® R533H BK02 is 33% glass-fiber reinforced, heat-stabilized PA66 resin. Available in black, it is specifically designed to maximize the retention of physical properties when exposed to anti-f..
CTE, linear, Parallel to Flow 2.10 µm/m-°C

@Thickness 2.00 mm,
Temperature 23.0 - 55.0 °C
1.17 µin/in-°F

@Thickness 0.0787 in,
Temperature 73.4 - 131 °F
ISO 11359-2
Ascend Performance Materials Vydyne® R533H BK0201 Nylon 66, 33% Glass Reinforced, DAM
Vydyne® R533H BK0201 is 33% glass-fiber reinforced, hydrolysis-resistant, heat-stabilized PA66 resin. Available in black, it is specifically designed to maximize the retention of physical propertie..
CTE, linear, Parallel to Flow 2.10 µm/m-°C

@Thickness 2.00 mm,
Temperature 23.0 - 55.0 °C
1.17 µin/in-°F

@Thickness 0.0787 in,
Temperature 73.4 - 131 °F
ISO 11359-2
Ascend Performance Materials Vydyne® R533H BK10A0 Nylon 66, 33% Glass Reinforced, DAM
Vydyne® R533H BK10A0 is 33% glass-fiber reinforced, hydrolysis-resistant, heat-stabilized PA66 resin. Available in black, it is specifically designed to maximize the retention of physical propertie..
CTE, linear, Parallel to Flow 2.10 µm/m-°C

@Thickness 2.00 mm,
Temperature 23.0 - 55.0 °C
1.17 µin/in-°F

@Thickness 0.0787 in,
Temperature 73.4 - 131 °F
ISO 11359-2
Ascend Performance Materials Vydyne® R533H NAT Nylon 66, 33% Glass Reinforced, DAM
Vydyne® R533H NAT is 33% glass-fiber reinforced, hydrolysis-resistant, heat-stabilized PA66 resin. Available in natural, it is specifically designed to maximize the retention of physical properties..
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