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Finally, design rules are proposed for cold-formed stainless steel bolted connections at post-fire condition for temperature up to 950 °C.
In particular, it has been observed a partial freezing even for temperature up to 30 °C.
Results indicates that ULCC containing small amount of PP fibre can improve the fire resistance of ULCC and eliminate the explosive spalling behaviour of ULCC for temperature up to 900 °C.
Secondly, another simple correlation is developed to approximate external convection heat transfer coefficients for nominal pipe size (NPS) steel pipes of 75, 100, and 150 mm arranged in staggered rows surrounded by combustion gases for temperature up to 600 °C and gas mass flow rates of up to 3 kg/(m2 s).
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Its combination of low density and high strength gives it the most efficient strength-to-weight ratio of common metals for temperatures up to 600 °C (1,100 °F).
Thermal stability of the structures was verified for temperatures up to 300°C.
The apparatus was designed for temperatures up to 473 K and pressures up to 25 MPa.
The temperature coefficient of the solubility has been found negative for temperatures up to about 250°C.
Experimental results showed no significant reduction on bond strength for temperatures up to 60 °C.
The current predictive capacity of the present model is valid for temperatures up to 2500 K.
Temperature and strain sensing capabilities are demonstrated for temperatures up to 200 °C and up to 2% tensile strain.
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