the maximum stress which the material can bear without breaking is called the maximum tensile strength of the material
Ultimate Tensile Strength is the (BHN*500)
Tensile strength is the maximum amount of stress a material can withstand before breaking, while ultimate tensile strength is the highest stress a material can handle before fracturing. Ultimate tensile strength is typically higher than tensile strength, as it represents the material's absolute breaking point. In measuring a material's ability to withstand forces before breaking, ultimate tensile strength provides a more accurate and reliable indication compared to tensile strength.
after ultimate tensile strength (UTS)
Yield strength - 13.8 MPa Ultimate tensile strength - 31 MPa
Yield strength - 13.8 MPa Ultimate tensile strength - 31 MPa
Your question is vague. Any way if it can withstand 300000 PSI the tensile strength is higher than that. It depends on the material since Tensile strength is known as ultimate tensile strength at which level the item fails.
It is the ultimate strength of a material subjected to tensile loading. In other words, it is the maximum stress developed in a material in a tension test.
Tensile strength is the maximum stress a material can withstand before breaking, while ultimate strength is the maximum stress a material can handle before deforming permanently. Tensile strength measures a material's resistance to breaking, while ultimate strength measures its ability to resist deformation. In terms of withstanding external forces, a material with higher tensile strength is better at resisting breaking, while a material with higher ultimate strength is better at resisting permanent deformation.
The ultimate tensile strength of a 12.9-grade tensile bolt is typically around 1,220 MPa. This means that the bolt can withstand a maximum tensile load of 1,220 mega pascals before failing. It is important to note that the actual strength can vary slightly depending on the specific manufacturer and production process.
Yield strength is the point at which a material begins to deform plastically, while ultimate tensile strength is the maximum stress a material can withstand before breaking. Yield strength indicates the material's ability to return to its original shape after being stressed, while ultimate tensile strength shows its maximum strength. These properties affect how a material behaves under different loads and impacts its overall mechanical performance.
The greatest stress that a material can resist before breaking is called the ultimate tensile strength. It is the maximum amount of stress a material can withstand without breaking under tension. Different materials have different ultimate tensile strengths, and it is an important property to consider for designing and engineering structures.
The "metric grade" your asking about conforms to North American metric standards. The 12.9 should have a ultimate tensile strength of 1200 MPa and tensile yield strength of 1080 MPa. The 10.9 should be weaker have a ultimate tensile strength of 1000 MPa and tensile yield strength of 900 MPa. You are asking "can" it be more brittle. It should not be but it can be if a problem with manufacturer quality control.