Most stainless steels have a strenght of at least 500 MPa. Most alloy steels also have that strength.
Yield strength - 13.8 MPa Ultimate tensile strength - 31 MPa
EN10025 S355J2+N structural steel has the higher Tensile of 510 MPa to 680 MPa and a Yield of 355 MPa, depending upon the structural steel thickness. ensteelstandardcom/FAQ/en10025-s355j2+n-structural-steel-plate-supplier.html
There are thousands grades of low carbon steel in the world. The properties (tensile strength) depends of a lot of parameters such as product type, heat treatment, micro-alloying, dimensions of products, etc. Max possible tensile strength for low carbon steel is 1200 - 1400 MPa.
520 Mpa
The shear strength of CRCA (Cold Rolled Close Annealed) steel can vary depending on the specific grade and thickness of the material. Generally, CRCA steel has a shear strength ranging from 300 to 580 megapascals (MPa). It is important to consult the material specifications or testing data for the exact shear strength of the specific CRCA steel being used in a particular application.
Mild steel is a fairly general classification and can cover a considerable variation in material properties. Cold drawn grades in particular will have a higher tensile strength than hot rolled. Something like 400 MPa for yield stress and 500 MPa for ultimate tensile strength is quite common.
860 MPa
Fe in Fe500 steel stands for iron, which is the primary element in the steel alloy. The number 500 refers to the minimum yield strength of the steel in MegaPascals (MPa), which in this case is 500 MPa.
450 MPa
415
275 MPa
10.9 grade steel is a common type of high strength structural steel that is typically used in construction and manufacturing applications. The "10.9" refers to the minimum tensile strength in MPa, which is 1000 MPa for the 10 part and 900 MPa for the 9 part, making it a strong and durable material for various purposes.
yield strength of 10 mm is 32214 mpa 0r 3287 kgyield strength of 16 mm is 82467 mpa
The yield strength of deformed steel bars, commonly used in construction, typically ranges from 250 MPa (megapascals) to 600 MPa, depending on the grade of the steel. For example, grade 40 deformed bars have a yield strength of approximately 280 MPa, while grade 60 bars have a yield strength of about 420 MPa. The specific yield strength can vary based on the standards and specifications of the manufacturer and the region. Always refer to relevant codes and standards for precise values.
In the context of TMT (Thermo-Mechanically Treated) bars, "Fe" stands for iron, which is the primary component of the bars. The grade designation, such as Fe415, Fe500, or Fe600, indicates the yield strength of the steel in megapascals (MPa). For example, Fe500 means the steel has a yield strength of 500 MPa. Higher grades indicate stronger steel, suitable for various construction applications.
At the least (without special treatmens), use 205 MPa 30,000 psi
High strength steel made in India by India's largest steel manufacturer called SAIL (Steel Authority of India Limited). The 450 is the Yeild Strength in MPa/min.