1054 results:
701. Benefits - Comparison with other materials:  
Comparison with other materials: Comparison with other materials: Material Tensile strength Bending strength Elastic modulus Glass-fibre-reinforced plastics (GRP) 500–100 MPa 250–500 MPa 17–40 GPa  
702. Benefits - Benefits of GRP's high load-bearing capacity  
Benefits of GRP's high load-bearing capacity Benefits of GRP's high load-bearing capacity Excellent tensile strength: GRP can withstand tensile stresses of up to 1000 MPa and is therefore extremely r  
703. Benefits  
Glass-fibre-reinforced plastic (GRP) is characterised by its high load-bearing capacity, which makes it an ideal material for many industrial applications. Compared to conventional materials, such  
704. Benefits - High load-bearing capacity  
High load-bearing capacity High load-bearing capacity  
705. Benefits - Benefits of GRP thermal insulation  
Benefits of GRP thermal insulation Benefits of GRP thermal insulation Low thermal conductivity: GRP has low thermal conductivity; i.e., it conducts heat poorly. This makes it an excellent insulating  
706. Benefits - Thermal insulation  
Thermal insulation Thermal insulation  
707. Benefits - Benefits of GRP in a wide temperature range  
Benefits of GRP in a wide temperature range Benefits of GRP in a wide temperature range Wide temperature range: GRP can be used in a temperature range of -50 °C to +200 °C.   Limited therma  
708. Benefits  
Glass-fibre-reinforced plastic (GRP) offers excellent performance over a wide temperature range of -50 °C to +200 °C. This property makes GRP an ideal material for applications in extreme environme  
709. Benefits - Range of application in a wide temperature range  
Range of application in a wide temperature range Range of application in a wide temperature range  
710. Benefits - Advantages of linear stress–strain behaviour  
Advantages of linear stress–strain behaviour Advantages of linear stress–strain behaviour Predictable behaviour: The linear stress–strain behaviour of GRP means that the deformation of the material u  
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