
The IGM L 100, IGM L 200 and IGM L 300 materials in the DURAPOLŪ line are made of
resin unsaturated polyester with a reinforcement of glass filament mat and
special grades for solder pallets.
 |
|
Properties |
| Anti-Static Glass Mat |
No |
| Fabrication of Solder Pallets |
Suitable |
| Temperature Resistance |
Short Term resistance to 350°C for 10 minutes |
| Chemical Resistance |
Good |
| Detectable for Light Sensors |
Yes |
| |
 |
|
Properties |
| Anti-Static Glass Mat |
Yes |
| Fabrication of Solder Pallets |
Suitable |
| Temperature Resistance |
Short Term resistance to 350°C for 10 minutes |
| Chemical Resistance |
Good |
| Detectable for Light Sensors |
No |
| |
 |
|
Properties |
| Anti-Static Glass Mat |
Yes |
| Fabrication of Solder Pallets |
Suitable |
| Temperature Resistance |
Short Term resistance to 350°C for 10 minutes |
| Chemical Resistance |
Good |
| Detectable for Light Sensors |
Yes |
| |

| |
Supply Form |
Standard Sheet Size |
Colours |
 |
Sheets and machined parts out of sheets |
Approximately 2000 x 1250 mm |
RAL 5014 Pigeon Blue |
 |
Sheets and machined parts out of sheets |
Approximately 2000 x 1250 mm |
RAL 9005 Jet Black |
 |
Sheets and machined parts out of sheets |
Approximately 2000 x 1250 mm |
RAL 7011 Iron Grey |

Because of its good electrical properties, it has been marketed with great success
in the electrical industry : including winding supports of dry transformers,
insulating walls and switch levers in high voltage switches.
In the electronics sector, it has proved its value as an ideal material for solder pallets.

 |
|
Grade |
Unit |
Values |
 |
ISO 178 |
MPa |
350 |
 |
ISO 178 |
MPa |
180 |
| Modulus of Elasticity from flex. |
ISO 178 |
MPa |
16.000 |
 |
ISO 604 |
MPa |
600 |
| Compressive Strength // to the layers |
ISO 605 |
MPa |
300 |
| Impact Strength // to the layers (Charpy) |
ISO 179 |
kJ/mē |
180 |
| Impact Strength // to the layers (Izod) |
ISO 180 |
kJ/mē |
- |
| Tensile Strength |
ISO 527 |
MPa |
250 |
| |
 |
|
Grade |
Unit |
Values |
 |
ISO 178 |
MPa |
350 |
 |
ISO 178 |
MPa |
180 |
| Modulus of Elasticity from flex. |
ISO 178 |
MPa |
16.000 |
 |
ISO 604 |
MPa |
600 |
| Compressive Strength // to the layers |
ISO 605 |
MPa |
300 |
| Impact Strength // to the layers (Charpy) |
ISO 179 |
kJ/mē |
180 |
| Impact Strength // to the layers (Izod) |
ISO 180 |
kJ/mē |
- |
| Tensile Strength |
ISO 527 |
MPa |
250 |
| |
 |
|
Grade |
Unit |
Values |
 |
ISO 178 |
MPa |
350 |
 |
ISO 178 |
MPa |
180 |
| Modulus of Elasticity from flex. |
ISO 178 |
MPa |
16.000 |
 |
ISO 604 |
MPa |
600 |
| Compressive Strength // to the layers |
ISO 605 |
MPa |
300 |
| Impact Strength // to the layers (Charpy) |
ISO 179 |
kJ/mē |
180 |
| Impact Strength // to the layers (Izod) |
ISO 180 |
kJ/mē |
- |
| Tensile Strength |
ISO 527 |
MPa |
250 |
| |
All data and values of this technical information have been ascertained with care.
Taking into consideration the multiplicity of both usage conditions and the process
and application technologies, the data and information supplied represent lead values
of a non-binding nature so that no warranty claims can be derived therefrom.
Above all, in addition to our general sales conditions, only agreements made in writing
are regarded as being binding.

 |
|
Grade |
Unit |
Values |
 |
IEC 243-1 |
kV/mm |
- |
| Dielectrical Strength at 90°C in oil // to the layers |
IEC 243-1 |
kV |
- |
| Resistance after immersion in water |
IEC 167 |
M |
- |
| Tracking Resistance |
IEC 112 |
- |
- |
| |
 |
|
Grade |
Unit |
Values |
 |
IEC 243-1 |
kV/mm |
- |
| Dielectrical Strength at 90°C in oil // to the layers |
IEC 243-1 |
kV |
- |
| Surface Resistance |
IEC 93 |
Ohm |
 |
| Resistance after immersion in water |
IEC 167 |
M |
- |
| Tracking Resistance |
IEC 112 |
- |
- |
| |
 |
|
Grade |
Unit |
Values |
 |
IEC 243-1 |
kV/mm |
- |
| Dielectrical Strength at 90°C in oil // to the layers |
IEC 243-1 |
kV |
- |
| Surface Resistance |
IEC 93 |
Ohm |
 |
| Resistance after immersion in water |
IEC 167 |
M |
- |
| Tracking Resistance |
IEC 112 |
- |
- |
| |
All data and values of this technical information have been ascertained with care.
Taking into consideration the multiplicity of both usage conditions and the process
and application technologies, the data and information supplied represent lead values
of a non-binding nature so that no warranty claims can be derived therefrom.
Above all, in addition to our general sales conditions, only agreements made in writing
are regarded as being binding.

 |
|
Grade |
Unit |
Values |
| Thermal Index |
IEC 216 |
T.I. |
200 |
| Flammability |
IEC 707 |
Cat. |
HB |
| Contact with the glow-rod |
DIN 53 459 |
Step |
2b |
 |
IPC TM 650 |
ppm/K |
60 - 70 |
| Linear Coefficient of Expansion // to the layers |
IPC TM 650 |
ppm/K |
15 |
| Thermal Conductivity |
DIN 52612 |
W/mK |
0,3 |
| Thermal Decomposition Temperature |
DIN 21006 |
°C |
> 370 |
| Density |
ISO 1183 |
mg |
1,8 - 1,9 |
| Water Absorption |
ISO 62 |
mg |
20 |
| Flatness |
DIN ISO 1101 |
mm |
1,0 |
| |
 |
|
Grade |
Unit |
Values |
| Thermal Index |
IEC 216 |
T.I. |
200 |
| Flammability |
IEC 707 |
Cat. |
HB |
| Contact with the glow-rod |
DIN 53 459 |
Step |
2b |
 |
IPC TM 650 |
ppm/K |
60 - 70 |
| Linear Coefficient of Expansion // to the layers |
IPC TM 650 |
ppm/K |
15 |
| Thermal Conductivity |
DIN 52612 |
W/mK |
0,3 |
| Thermal Decomposition Temperature |
DIN 21006 |
°C |
> 370 |
| Density |
ISO 1183 |
mg |
1,8 - 1,9 |
| Water Absorption |
ISO 62 |
mg |
20 |
| Flatness |
DIN ISO 1101 |
mm |
1,0 |
| |
 |
|
Grade |
Unit |
Values |
| Thermal Index |
IEC 216 |
T.I. |
200 |
| Flammability |
IEC 707 |
Cat. |
HB |
| Contact with the glow-rod |
DIN 53 459 |
Step |
2b |
 |
IPC TM 650 |
ppm/K |
60 - 70 |
| Linear Coefficient of Expansion // to the layers |
IPC TM 650 |
ppm/K |
15 |
| Thermal Conductivity |
DIN 52612 |
W/mK |
0,3 |
| Thermal Decomposition Temperature |
DIN 21006 |
°C |
> 370 |
| Density |
ISO 1183 |
mg |
1,8 - 1,9 |
| Water Absorption |
ISO 62 |
mg |
20 |
| Flatness |
DIN ISO 1101 |
mm |
1,0 |
| |
All data and values of this technical information have been ascertained with care.
Taking into consideration the multiplicity of both usage conditions and the process
and application technologies, the data and information supplied represent lead values
of a non-binding nature so that no warranty claims can be derived therefrom.
Above all, in addition to our general sales conditions, only agreements made in writing
are regarded as being binding.

 |
Developments of innovative
products, often requires materials with highly individualized properties.
|
|
|
|
|
|
| To fulfil the many different requirements of our customers in an optimal
manner, we offer highly specific DURAPOLŪ types. |
|
|
|
|
|
Whether it is high-voltage tracking resistance, temperature
resistance at a certain level, extreme mechanical strength or a specific flammability class,
we have the right DURAPOLŪ quality for every need - and the most strigent safety standards
to go with it.
|
|  |
|
It compiles with all DIN ISO 9001 requirements. The systematic planning and monitoring of all
tests and processes, from incoming raw materials inspection to the finished product, are
standards that are just as important to us as our modern high-tech production techniques.
|
If what you practise is the technology of the future ...
|
 |
Our customers expect materials based on practical
applications and broad-based concepts. This is particularly true of our
DURAPOLŪ polyester resin-bonded mat qualities.
DURAPOLŪ can be supplied in different grades to solve specific customer
problems. For instance, in filler selection, DUARPOLŪ is mainly used in
electrical engineering applications, especially in switching equipment
and transformers. It is an up-and-coming material in traffic technologies.
DURAPOLŪ's excellent flammability classification and good electrical
insulation properties are of primary importance in this field.

|

| These are some of the pallets that we have done using DURAPOLŪ materials: |
 |
 |
 |
 |

|
|