
Glastherm® HT 250 M GFK-EP
- Min. Order:
- 1 Kilogram
- Min. Order:
- 1 Kilogram
- Transportation:
- Ocean, Land, Air, Express
- Port:
- Shenzhen, Guangzhou, Hongkong
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Contact NowSupply Ability: | 1000 |
---|---|
Payment Type: | T/T,Paypal |
Incoterm: | FOB,CFR,CIF,EXW,DDP,DDU |
Transportation: | Ocean,Land,Air,Express |
Port: | Shenzhen,Guangzhou,Hongkong |
Glastherm® HT 250 M GFK-EP
Glastherm® HT 250 M boasts very high compressive strength and is particularly resistant to heat. The heat insulation system is ideally suited to the thermal insulation of press moulds and enables the conservation of energy during the pressing process. The heat insulation system is mainly used in hydraulic wood, plastic and tyre presses. Glastherm® HT 250 M is free of asbestos and can be easily cut and adapted with standard metal tools. We recommend diamond cutters for relatively large jobs.
Maximum continuous operation temperature: 250 °C (482 °F)
Very high compressive strength: 445 MPa (at 200 °C)
Good thermal insulation
Characteristics
Fibre-reinforced composite material developed for applications in field of thermal insulation (max. continuous operating temperature 250°C)
Low thermal conductivity and extremly high compressive strength
Industries
Chemical Processing Industry
Mechanical Engineering Industry
Pipelines
Oil and Gas
Technical Specifications Glastherm® HT 250 M
Mechanical properties
Test Method
Unit
Guideline Value
Density
ISO 1183
g / cm3
2,0
Flexural strength ┴
ISO 178
MPa
300
Modulus of elasticity in flexion ┴
ISO 178
MPa
22000
Compressive strength 1)┴
ISO 604
MPa
600
Compressive strength 1)┴ +200°C
ISO 604
MPa
445
Tensile strength II
ISO 527
MPa
250
Impact strength ┴ (Charpy)
ISO 179
kJ / m2
150
Splitting force II
DIN 53463
N
5000
Thermal properties
Test Method
Unit
Guideline Value
Thermal conductivity 2)┴
W / (m * K)
≈ 0,23
Coefficient of linear expansion II
TMA (Mettler)
10-6 x K-1
Max. continuous operating temperature
°C
250
Physical properties
Test Method
Unit
Guideline Value
Water absorption (4mm thickness)
ISO 62
%
0,15
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