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Vespel® CR-6100

Composites

DuPont

Product Description

DuPont™ Vespel® CR-6100 is a composite material designed for use in hostile chemical environments.  


Stationary parts in this composite material meet the following specification per API STD 610/ISO 13709,  Centrifugal Pumps For Petroleum Petrochemical and Natural Gas Industries:-46 to 230 °C (-50 to 450 °F)  temperature limits and 2,000 kPa (20 bar; 300 psi) limiting pressure differential per wear part linear  measure of 25 mm (1.0 inch). Due to its low creep and high thermal resistance, Vespel® CR-6100 often  excels where other chemically-resistant plastics fall short. 


This makes Vespel® CR-6100 particularly well  suited for seals, wear rings and other components used in a variety of devices and operating conditions.  


In addition, Vespel® CR-6100 material has been approved for use in potable water applications in the  United Kingdom and Australia per the "Water Regulations Advisory Scheme (WRAS)Tests on Water  Quality" based on the methods described in British Standards Institution, BS6920.

General
Original Document
Technical Datasheet(English)
Features
Heat Stabilized
Creep Resistant
Drinking Water Contact
Chemical Resistance
Appearance
Parts/ Shapes
Compliance
WRAS
Specifications
Physical Value/Unit(Sign in to View) Test Standard Test Condition

Density/Specific Gravity

*** g/cm³ ASTM D792
23 °C

Water Absorption

*** % ASTM D570
23 °C, 24 hr
Mechanical Value/Unit(Sign in to View) Test Standard Test Condition

Tensile Modulus

*** Mpa ASTM D3039
23 °C, x-y Direction

Tensile Modulus

*** Mpa ASTM D3039
23 °C, z Direction

Tensile Modulus

*** Mpa ASTM D3039
260 °C, x-y Direction

Tensile Modulus

*** Mpa ASTM D3039
260 °C, z Direction

Tensile Strength

-

*** Mpa ASTM D3039
23 °C, x-y Direction

-

*** Mpa ASTM D3039
23 °C, z Direction

-

*** Mpa ASTM D3039
260 °C, x-y Direction

-

*** Mpa ASTM D3039
260 °C, z Direction

Tensile Elongation

-

*** % ASTM D3039
23 °C, x-y Direction

-

*** % ASTM D3039
23 °C, z Direction

-

*** % ASTM D3039
260 °C, x-y Direction

-

*** % ASTM D3039
260 °C, z Direction

Flexural Modulus

*** Mpa ASTM D790
23 °C, x-y Direction

Flexural Modulus

*** Mpa ASTM D790
260 °C, x-y Direction

Flexural Strength

-

*** Mpa ASTM D790
23 °C, x-y Direction

-

*** Mpa ASTM D790
260 °C, x-y Direction

PV Limit

*** MPa-m/s Internal
1.72 MPa, x-y Direction

Shear Strength

*** Mpa Internal
23 °C, Interlaminar Shear Strength

Compressive Modulus

*** Mpa ASTM D 695
23 °C, x-y Direction

Compressive Modulus

*** Mpa ASTM D 695
23 °C, z Direction

Compressive Modulus

*** Mpa ASTM D 695
260 °C, x-y Direction

Compressive Modulus

*** Mpa ASTM D 695
260 °C, z Direction

Compressive Strength

*** Mpa ASTM D 695
23 °C, x-y Direction

Compressive Strength

*** Mpa ASTM D 695
23 °C, z Direction

Compressive Strength

*** Mpa ASTM D 695
260 °C, x-y Direction

Compressive Strength

*** Mpa ASTM D 695
260 °C, z Direction
Impact Value/Unit(Sign in to View) Test Standard Test Condition

Izod Notched Impact Strengh

23℃ (73℉)

*** J/m ASTM D256
x-y Direction

23℃ (73℉)

*** J/m ASTM D256
z Direction

Izod Unnotched Impact Strengh

23℃ (73℉)

*** J/m ASTM D256
x-y Direction

23℃ (73℉)

*** J/m ASTM D256
z Direction
Hardness Value/Unit(Sign in to View) Test Standard Test Condition

Shore D hardness

*** D ASTM D 2240
23 °C, x-y Direction

Shore D hardness

*** D ASTM D 2240
23 °C, z Direction
Thermal Value/Unit(Sign in to View) Test Standard Test Condition

Heat Deflection Temperature(HDT)

1.8 Mpa (264 psi)(18.6kg/cm²)

*** °C ASTM D648
x-y Direction

1.8 Mpa (264 psi)(18.6kg/cm²)

*** °C ASTM D648
z Direction

Coefficient of Linear Thermal Expansion

-

*** E-6 m/m/℃ ASTM D E831
149–204 °C, z Direction

-

*** E-6 m/m/℃ ASTM D E831
204–260 °C, z Direction

-

*** E-6 m/m/℃ ASTM D E831
23–260 °C, x-y Direction

-

*** E-6 m/m/℃ ASTM D E831
35–149 °C, z Direction

Thermal Conductivity

*** W/(m K) -
23–149 °C

The information presented on this datasheet was acquired by AjiEng.com from the producer of the material. AjiEng.com makes substantial efforts to assure the accuracy of this data. However, AjiEng.com assumes no responsibility for the data values and strongly encourages that upon final material selection, data points are validated with the material supplier.