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ASTM D 5575 : 2018

Superseded

Superseded

A superseded Standard is one, which is fully replaced by another Standard, which is a new edition of the same Standard.

View Superseded by

Standard Classification System for Copolymers of Vinylidene Fluoride (VDF) with Other Fluorinated Monomers

Available format(s)

Hardcopy , PDF

Superseded date

23-03-2023

Language(s)

English

Published date

13-08-2018

€74.48
Excluding VAT

1.1 This classification system covers both developing property designations and specifications for thermoplastic compositions consisting of vinylidene fluoride (VDF) polymers modified with other fluoromonomers and property-enhancing additives. The other fluoromonomers include one or more of the following: hexafluoropropylene (HFP), tetrafluoroethylene (TFE), and chlorotrifluoroethylene (CTFE). The additives are those that improve its flame resistance, processing, or physical properties. However, these additives are not normally considered to be reinforcing. This classification system covers thermoplastic compositions supplied in pellet or powder forms.1.2 A designation or specification applies only to the virgin polymers prepared from vinylidene fluoride (>50 weight %) with one or more of the following comonomers: hexafluoropropylene, tetrafluoroethylene, and chlorotrifluoroethylene. Some polymers contain additives to enhance certain properties.1.3 This system constitutes a line callout as a means of designating and specifying properties of VDF-based copolymers. At least four of the designated properties are used to define a polymer's specification. Specification criteria from international documents can be used if their criteria match designation properties currently used by this classification system.2 This classification system is not intended for the selection of materials.1.4 The manufacturer of the virgin resin shall establish the designation of a resin based on the property value criteria in this classification system.1.5 The minimum specification properties are established by this classification system. Additional specification properties, based on the designation properties cited, can be established by the resin supplier and customer.1.6 The values stated in SI units are to be regarded as standard.1.7 The property tests are intended to provide information for specifications of modified VDF-copolymer compositions. It is not the purpose of this classification system to provide engineering data for design purposes.NOTE 1: Although the values listed in Table 1, Table 2, Table 3, Table 4, and Table 5 are necessary to include the range of properties available in existing materials, they are not to be interpreted as implying that every possible combination of the properties exists or can be obtained. It is possible for a user or designer, using Tables 1-5, to call out property relationships that are physically impossible to occur in a copolymer made using current technologyNOTE 2: Many of these polymers exhibit polymorphism.3 The type and extent of crystalline structure will vary with the thermomechanical history of the sample. Properties vary based on the technique used to prepare the specimens.1.8 Test methods used in this classification system can result in the incidental production of hazardous materials. Modified VDF polymer fluoroplastics melt between 90 and 182°C (194 and 359°F) and are thermally stable up to about 350°C (662°F), or somewhat higher, depending on the composition. (Warning—Evolution of corrosive, colorless, and toxic hydrogen fluoride can occur under certain conditions.)1.9 This standard does not purport to address all of the safety concerns, if any, associated with its use. It is the responsibility of the user of this standard to establish appropriate safety, health, and environmental practices and determine the applicability of regulatory limitations prior to use. See Warning in 1.8 and Section 10 for specific hazards statements.NOTE 3: Many, but not all of the codes and specifications found in this classification system are also in ISO 12086-1 and ISO 12086-2.1.10 This international standard was developed in accordance with internationally recognized principles on standardization established in the Decision on Principles for the Development of International Standards, Guides and Recommendations issued by the World Trade Organization Technical Barriers to Trade (TBT) Committee.

Committee
D 20
DocumentType
Standard
Pages
12
PublisherName
American Society for Testing and Materials
Status
Superseded
SupersededBy
Supersedes

1.1This classification system covers both developing property designations and specifications for thermoplastic compositions consisting of vinylidene fluoride (VDF) polymers modified with other fluoromonomers and property-enhancing additives. The other fluoromonomers include one or more of the following: hexafluoropropylene (HFP), tetrafluoroethylene (TFE), and chlorotrifluoroethylene (CTFE). The additives are those that improve its flame resistance, processing, or physical properties. However, these additives are not normally considered to be reinforcing. This classification system covers thermoplastic compositions supplied in pellet or powder forms.

1.2A designation or specification applies only to the virgin polymers prepared from vinylidene fluoride (>50 weight %) with one or more of the following comonomers: hexafluoropropylene, tetrafluoroethylene, and chlorotrifluoroethylene. Some polymers contain additives to enhance certain properties.

1.3This system constitutes a line callout as a means of designating and specifying properties of VDF-based copolymers. At least four of the designated properties are used to define a polymer's specification. Specification criteria from international documents can be used if their criteria match designation properties currently used by this classification system.2 This classification system is not intended for the selection of materials.

1.4The manufacturer of the virgin resin shall establish the designation of a resin based on the property value criteria in this classification system.

1.5The minimum specification properties are established by this classification system. Additional specification properties, based on the designation properties cited, can be established by the resin supplier and customer.

1.6The values stated in SI units are to be regarded as standard.

1.7The property tests are intended to provide information for specifications of modified VDF-copolymer compositions. It is not the purpose of this classification system to provide engineering data for design purposes.

Note 1:Although the values listed in Table 1, Table 2, Table 3, Table 4, and Table 5 are necessary to include the range of properties available in existing materials, they are not to be interpreted as implying that every possible combination of the properties exists or can be obtained. It is possible for a user or designer, using Tables 1-5, to call out property relationships that are physically impossible to occur in a copolymer made using current technology.


Position 5

Position 6

Position 7

Position 8

Code

Specific Gravity,
g/cm3

Code

Electrical a-c
Dielectric Constant

Loss

d-c Electric Volume

Code

Limiting Oxygen
Index

Code

Specimen Type

a

<1.6

a

>10E3

a

<40

a

D638 Type I

b

1.6 to <1.7

b

10E3 to 10E12

b

40 to <50

b

D638 Type II

c

1.7 to< 1.8

c

>10E12

c

50 to <60

c

D638 Type III

d

1.8 to <1.9

d

d

60 to< 70

d

D638 Type IV

e

1.9 to< 2.0

e

e

70 to <80

e

ISO 527 Type 1A

f

2.0 to <2.1

f

f

80 to <90

f

ISO 527 Type 1B

g

2.1 to< 2.2

g

<0.0012

g

>90

g

ISO 527 Type 6A

h

2.2 to< 2.3

h

<3.0

<0.0014

h

h

ISO 527 Type 7A

i

2.3 to <2.4

i

3.0 to< 3.1

<0.0016

i

i

ISO 12086/1 Fig. 1

j

2.4 to <2.5

j

3.1 to <3.2

<0.0018

j

j

D638 Type MI

k

k

3.2 to< 3.5

<0.0020

k

k

D638 Type MII

l

l

3.5 to <4.0

<0.0022

l

l

D638 Type MIII

m

m

4.0 to< 4.5

<0.0024

m

m

n

n

4.5 to <5.0

<0.0026

n

n

o

o

5.0 to< 5.5

<0.0028

o

o

p

p

5.5 to <6.0

<0.0030

p

p

D1708

q

q

6.0 to <6.5

<0.0035

q

q

r

r

6.5 to <7.0

<0.0040

r

r

s

s

7.0 to <8.0

<0.0060

s

s

t

t

8.0 to <9.0

<0.0080

t

t

u

u

9.0 to <10

<0.0100

u

u

v

v

10 to <11

<0.0300

v

v

w

w

11 to <12

<0.1000

w

w

x

x

12 to <14

>0.1000

x

x

y

y

>14

y

y

z

not specified

z

not specified

not specified

z

not specified

z

Note 2:Many of these polymers exhibit polymorphism.3 The type and extent of crystalline structure will vary with the thermomechanical history of the sample. Properties vary based on the technique used to prepare the specimens.

1.8Test methods used in this classification system can result in the incidental production of hazardous materials. Modified VDF polymer fluoroplastics melt between 90 and 182°C (194 and 359°F) and are thermally stable up to about 350°C (662°F), or somewhat higher, depending on the composition. (Warning—Evolution of corrosive, colorless, and toxic hydrogen fluoride can occur under certain conditions.)

1.9This standard does not purport to address all of the safety concerns, if any, associated with its use. It is the responsibility of the user of this standard to establish appropriate safety, health, and environmental practices and determine the applicability of regulatory limitations prior to use. See Warning in 1.8 and Section 10 for specific hazards statements.

Note 3:Many, but not all of the codes and specifications found in this classification system are also in ISO 12086-1 and ISO 12086-2.

1.10This international standard was developed in accordance with internationally recognized principles on standardization established in the Decision on Principles for the Development of International Standards, Guides and Recommendations issued by the World Trade Organization Technical Barriers to Trade (TBT) Committee.

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ASTM D 5740 : 2003 Standard Guide for Writing Material Standards in the Classification D4000 Format
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ASTM D 3892 : 1993 : R2003 Standard Practice for Packaging/Packing of Plastics
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ASTM D 2863 : 2008 Standard Test Method for Measuring the Minimum Oxygen Concentration to Support Candle-Like Combustion of Plastics (Oxygen Index)
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ASTM D 3892 : 1993 : R1998 Standard Practice for Packaging/Packing of Plastics
ASTM D 5740 : 1997 Standard Guide for Writing Material Standards in the Classification D4000 Format
ASTM D 4703 : 1993 Standard Practice for Compression Molding Thermoplastic Materials into Test Specimens, Plaques, or Sheets
ASTM D 1600 : 2007 Standard Terminology for Abbreviated Terms Relating to Plastics
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ASTM D 3418 : 2015 Standard Test Method for Transition Temperatures and Enthalpies of Fusion and Crystallization of Polymers by Differential Scanning Calorimetry
ASTM D 2863 : 2009 Standard Test Method for Measuring the Minimum Oxygen Concentration to Support Candle-Like Combustion of Plastics (Oxygen Index)
ASTM D 4703 : 2010 Standard Practice for Compression Molding Thermoplastic Materials into Test Specimens, Plaques, or Sheets
ASTM D 4591 : 2007 : R2012 Standard Test Method for Determining Temperatures and Heats of Transitions of Fluoropolymers by Differential Scanning Calorimetry
ASTM D 3222 : 2020 Standard Specification for Unmodified Poly(Vinylidene Fluoride) (PVDF) Molding Extrusion and Coating Materials
ASTM D 5740 : 2011 Standard Guide for Writing Material Standards in the Classification D4000 Format
ASTM D 3222 : 2021 Standard Specification for Unmodified Poly(Vinylidene Fluoride) (PVDF) Molding Extrusion and Coating Materials
ASTM D 4591 : 1997 Standard Test Method for Determining Temperatures and Heats of Transitions of Fluoropolymers by Differential Scanning Calorimetry
ASTM D 4591 : 2017 Standard Test Method for Determining Temperatures and Heats of Transitions of Fluoropolymers by Differential Scanning Calorimetry
ASTM D 2863 : 1995 Standard Test Method for Measuring the Minimum Oxygen Concentration to Support Candle-like Combustion of Plastics (Oxygen Index)
ASTM D 3222 : 2005 Standard Specification for Unmodified Poly(Vinylidene Fluoride) (PVDF) Molding Extrusion and Coating Materials
ASTM D 2863 : 2019 Standard Test Method for Measuring the Minimum Oxygen Concentration to Support Candle-Like Combustion of Plastics (Oxygen Index)
ASTM D 3835 : 1996 Standard Test Method for Determination of Properties of Polymeric Materials by Means of a Capillary Rheometer
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ASTM D 1238 : 2004 Standard Test Method for Melt Flow Rates of Thermoplastics by Extrusion Plastometer
ASTM D 3835 : 2016 Standard Test Method for Determination of Properties of Polymeric Materials by Means of a Capillary Rheometer
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ASTM D 2863 : 2006 Standard Test Method for Measuring the Minimum Oxygen Concentration to Support Candle-Like Combustion of Plastics (Oxygen Index)
ASTM D 618 : 2013 Standard Practice for Conditioning Plastics for Testing
ASTM D 3222 : 2005 : R2015 Standard Specification for Unmodified Poly(Vinylidene Fluoride) (PVDF) Molding Extrusion and Coating Materials
ASTM D 3418 : 2008 Standard Test Method for Transition Temperatures and Enthalpies of Fusion and Crystallization of Polymers by Differential Scanning Calorimetry
ASTM D 3222 : 2005 : R2010 Standard Specification for Unmodified Poly(Vinylidene Fluoride) (PVDF) Molding Extrusion and Coating Materials
ASTM D 2863 : 2017 Standard Test Method for Measuring the Minimum Oxygen Concentration to Support Candle-Like Combustion of Plastics (Oxygen Index)
ASTM D 3835 : 2008 Standard Test Method for Determination of Properties of Polymeric Materials by Means of a Capillary Rheometer
ASTM D 5740 : 2009 Standard Guide for Writing Material Standards in the Classification D4000 Format
ASTM D 3835 : 1979 : R1983 Standard Test Method for Rheological Properties of Thermoplastics with a Capillary Rheometer
ASTM D 3892 : 1993 : R2009 Standard Practice for Packaging/Packing of Plastics
ASTM D 4703 : 2000 Standard Practice for Compression Molding Thermoplastic Materials into Test Specimens, Plaques, or Sheets
ASTM D 1238 : 2001 : EDT 1 Standard Test Method for Melt Flow Rates of Thermoplastics by Extrusion Plastometer
ASTM D 4703 : 2010 : REV A Standard Practice for Compression Molding Thermoplastic Materials into Test Specimens, Plaques, or Sheets
ASTM D 4703 : 2016 Standard Practice for Compression Molding Thermoplastic Materials into Test Specimens, Plaques, or Sheets
ASTM D 150 : 2018 Standard Test Methods for AC Loss Characteristics and Permittivity (Dielectric Constant) of Solid Electrical Insulation
ASTM D 2863 : 2017 : REV A Standard Test Method for Measuring the Minimum Oxygen Concentration to Support Candle-Like Combustion of Plastics (Oxygen Index)
ASTM D 3835 : 2002 Standard Test Method for Determination of Properties of Polymeric Materials by Means of a Capillary Rheometer
ASTM D 1238 : 2020 Standard Test Method for Melt Flow Rates of Thermoplastics by Extrusion Plastometer
ASTM D 1238 : 2004 : REV A Standard Test Method for Melt Flow Rates of Thermoplastics by Extrusion Plastometer
ASTM D 257 : 2014 : R2021 : EDT 1 Standard Test Methods for DC Resistance or Conductance of Insulating Materials
ASTM D 2863 : 2010 Standard Test Method for Measuring the Minimum Oxygen Concentration to Support Candle-Like Combustion of Plastics (Oxygen Index)
ASTM D 1238 : 1985 Standard Test Method for Flow Rates of Thermoplastics by Extrusion Plastometer
ASTM D 2863 : 2012 : EDT 1 Standard Test Method for Measuring the Minimum Oxygen Concentration to Support Candle-Like Combustion of Plastics (Oxygen Index)
ASTM D 618 : 2021 Standard Practice for Conditioning Plastics for Testing
ASTM D 4591 : 2022 Standard Test Method for Determining Temperatures and Heats of Transitions of Fluoropolymers by Differential Scanning Calorimetry
ASTM D 2863 : 2013 Standard Test Method for Measuring the Minimum Oxygen Concentration to Support Candle-Like Combustion of Plastics (Oxygen Index)
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