Hytrel® 5526

Alternative and trade names
TPC-ET
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Description

Common features of Hytrel® thermoplastic polyester elastomer include mechanical and physical properties such as exceptional toughness and resilience, high resistance to creep, impact and flex fatigue, flexibility at low temperatures and good retention of properties at elevated temperatures. In addition, it resists many industrial chemicals, oils and solvents. Special grades include heat stabilised, flame retardant, food contact compliant, blow molding and extrusion grades. Concentrates offered include black pigments, UV protection additives, heat stabilisers, and flame retardants.Hytrel® thermoplastic polyester elastomer is plasticiser free. The good melt stability of Hytrel® thermoplastic polyester elastomer normally enables the recycling of properly handled production waste. If recycling is not possible, DuPont recommends, as the preferred option, incineration with energy recovery (-24 kJ/g of base polymer) in appropriately equipped installations.For disposal, local regulations have to be observed.Hytrel® thermoplastic polyester elastomer typically is used in demanding applications in the automotive, fluid power, electrical/electronic, consumer goods, appliance and power tool, sporting goods, furniture, industrial and off-road transportation/equipment industry.Hytrel® 5526 is a medium modulus Hytrel® grade with nominal durometer hardness of 55D. It contains non-discoloring stabilizer. It is specially recommended for injection molding applications requiring high flow properties.Typical applications: Seals, packing and gaskets; gears and bearings.

This material data has been provided by Matmatch.

"Typical" values were obtained via a literature search. "Predicted" values were imputed via artificial intelligence technology. While we have placed significant efforts in ensuring data accuracy, "typical" and "predicted" data should be considered indicative and verified by appropriate material testing. Please do contact us if additional information on the the predicted data method is required.
All metrics apply to room temperature unless otherwise stated. SI units used unless otherwise stated.
Equivalent standards are similar to one or more standards provided by the supplier. Some equivalent standards may be stricter whereas others may be outside the bounds of the original standard.

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Properties

General

PropertyTemperatureValueComment

Density

23.0 °C

1.19 g/cm³

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ISO 1183

Water absorption

23.0 °C

0.6 %

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Sim. to ISO 62 | Immersion 24h

Mechanical

PropertyTemperatureValueComment

Elastic modulus

23.0 °C

0.19 GPa

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ISO 527-1/-2

Elongation

23.0 °C

780 %

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ISO 527-1/-2

Elongation at yield

23.0 °C

35 %

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ISO 527-1/-2

Flexural modulus

23.0 °C

0.2 GPa

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ISO 178

Hardness, Shore D

23.0 °C

55 [-]

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max., ISO 7619-1

Impact strength, Charpy notched

-40.0 °C

30 kJ/m²

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No Break @ 23°C, ISO 179/1eU

-6.0 °C

150 kJ/m²

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No Break @ 23°C, ISO 179/1eU

Impact strength, Izod unnotched

-40.0 °C

115 kJ/m²

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ISO 180/1A

Poisson's ratio

23.0 °C

0.48 [-]

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Shear modulus

23.0 °C

0.07 GPa

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ISO 6721

Tear strength

23.0 °C

133 kN/m

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ISO 34-1

Tear strength, transverse

23.0 °C

133 kN/m

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ISO 34-1

Tensile strength

23.0 °C

40 MPa

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ISO 527-1/-2

Yield strength

23.0 °C

15 MPa

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ISO 527-1/-2

Impact strength, Charpy unnotched

No Break @ 23,-6°C, ISO 179/1eA

Thermal

PropertyTemperatureValueComment

Brittleness temperature

-98 °C

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ISO 974

Coefficient of thermal expansion

23.0 °C

1.8E-4 1/K

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ISO 11359-1/-2 | -40 - 23°C

Coefficient of thermal expansion, transverse

23.0 °C

1.7E-4 1/K

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ISO 11359-1/-2 | -40 - 23°C

Glass transition temperature

-20 °C

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ISO 11357-1/-2 | 18°F/min

Heat deflection temperature, 0.45 MPa

65 °C

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ISO 75-1/-2

Heat deflection temperature, 1.80 MPa

45 °C

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ISO 75-1/-2

Melting point

203 °C

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ISO 11357-1/-3 | 18°F/min

Relative temperature index, electrical

85 °C

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UL 746B | 120mil

Relative temperature index, mechanical impact

85 °C

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UL 746B | 120mil

Relative temperature index, mechanical strength

80 °C

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UL 746B | 120mil

Specific heat capacity

23.0 °C

2110 J/(kg·K)

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of melt

Thermal diffusivity

23.0 °C

0 mm²/s

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Vicat softening temperature

180 °C

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ISO 306 | 90°F, 2 lbf

Flammability

Burning Behav. at 60mil nom. thickn.: HB class, Thickness tested: 1.5 mm, UL recognition: yes -, Burning Behav. at thickness h: HB class, Thickness tested: 3 mm, UL recognition: yes -, Oxygen index: 21 %, FMVSS Class: SE -, Burning rate, Thickness 1 mm: 28 mm/min

Electrical

PropertyTemperatureValueComment

Comparative tracking index

23.0 °C

600 V

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IEC 60112

Dielectric constant, 100Hz

23.0 °C

4.9 [-]

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IEC 62631-2-1

Dielectric constant, 1MHz

23.0 °C

4.6 [-]

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IEC 62631-2-1

Dielectric strength

23.0 °C

20 kV/mm

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IEC 60243-1

Dissipation factor, 100Hz

23.0 °C

9E-3 [-]

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IEC 62631-2-1

Dissipation factor, 1MHz

23.0 °C

0.04 [-]

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IEC 62631-2-1

Surface resistivity

23.0 °C

1.00E+15 Ω/sq

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min. | IEC 62631-3-2

Volume resistivity

23.0 °C

4.00E+13 Ω·cm

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IEC 62631-3-1

Rheological Properties

PropertyTemperatureValueComment

Melt mass-flow rate

18 g/10min

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ISO 1133 | 220°C/2.16kg

Melt volume-flow rate

17.5 cm³/10min

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ISO 1133

Shrinkage

23.0 °C

1.4 %

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ISO 294-4, 2577

Shrinkage, transverse

23.0 °C

1.4 %

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ISO 294-4, 2577

Technological properties

Property
Processing methods

Drying Recommended: yes, Drying Temperature: 100°C, Drying Time, Dehumidified Dryer: 2-3h, Processing Moisture Content: ≤0.08%, Melt Temperature Optimum: 230°C, Min. melt temperature: 220°C, Max. melt temperature: 250°C, Mold Temperature Optimum: 45°C, Min. mold temperature: 45°C, Max. mold temperature: 55°C