SEW 092 QStE260TM Introduce

SEW 092 QStE260TM is a hot-rolled steel product which is commonly used to form frames, framework and other structural components. This steel has a higher strength and toughness than other types of steel, making it ideal for many types of construction projects. It is also more resistant to corrosion than other steels, and offers excellent formability and weldability.

Smelting temperature:1133°C - 1286°C

Application:High yield strength steel hot rolled sheet for cold forming

SEW 092 QStE260TM Material Chemical Composition

The chemical composition of the SEW 092 QStE260TM steel are as follows:

ElementMinMax
Titanium (Ti)-0.2200
Silicon (Si)-0.5000
Sulfur (S)-0.0300
PhOsphorus (P)-0.0300
Niobium (Nb)-0.0900
Manganese (Mn)-1.1000
Carbon (C)-0.1200
Aluminum (Al)0.0150-

SEW 092 QStE260TM Material Mechanical Properties

The mechanical properties of the SEW 092 QStE260TM steel are as follows:

YieldRp0.2497 (≥)(MPa)
TeileRm499 (≥)(MPa)
ImpactKV/Ku41(J)
ElongationA33%
Reduction in cross section on fractureZ41%
As-Heat-Treated ConditionSolution and Aging, Annealing, Ausaging, Q+T,etc
Brinell hardness (HBW)424

SEW 092 QStE260TM Material Thermal Properties

The thermal performance parameters of the SEW 092 QStE260TM steel are as follows:

Temperature (°C)13373877
Modulus of elasticity (GPa)-228-
Mean coefficient of thermal expaion ×10-6/(°C)--23
Thermal conductivity (W/m·°C)-13.341.2
Specific thermal capacity (J/kg·°C)-431-
Specific electrical resistivity (Ω mm²/m)0.21--
Deity (kg/dm³)--111
Poisson’s coefficient, ν--223

SEW 092 QStE260TM Material Machining Technology

SEW 092 QStE260TM steel is an alloy that is incredibly strong and durable, making it ideal for parts and components that require precision and high load bearing capacities. The alloy is also incredibly stable, which means that it does not lose its form or quality under extreme temperatures and other environmental pressures. Additionally, SEW 092 QStE260TM steel is relatively easy to machine, as it is an alloy that is relatively low in hardness and not susceptible to thermal distortion when machining at higher speeds. It also has low shrinkage and is compatible with automated processes, which means that much of the machining process can be done using robotics or computer-assisted methods.