the collagen fibers of bone have great tensile strength(the strength to endure stretching forces), while the calcium salts, which are similar in physical properties to marble, have great compressional strength (the strength to endure squeezing forces)
Tensile strength is a material propery, it does not depend on size. Look at a material chart to find its yield and tensile strenghts. Then use the stress equation, Stress = Force / Area to determine if your .375 bolt can handle the force on it. If your bolt is in shear, you need to find Shear strenghts.
no iron has any tensile strength
Wood actually has an extremely low tensile strength, especially when compared to almost any other building material.
For ductile materials, the yield stress is always lower than the tensile strength of the material. For brittle material they can usually be considered the same point. Steel is generally considered ductile.
Liquids do not have tensile strength. The equivalent property is viscosity.
No. The tensile strength comes from the grain inside the metal and the ingredients used to make a certain metal. Lengths are determined by tensile strength and material advised to be used for that specific use.
Tensile strength is the maximum amount of tensile stress a material can withstand before breaking. Tensile stress is the force applied per unit area of the material. Tensile strength is a property of the material itself, while tensile stress is the external force acting on the material. In terms of material properties, tensile strength indicates the material's ability to resist breaking under tension, while tensile stress measures the amount of force applied to the material.
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.
the maximum stress which the material can bear without breaking is called the maximum tensile strength of the material
tensile stress is the force ehich applies on a body and the force exert by this body against this force is called tensile strength... simply tansile strength measure the force required the force to pull yhe body like rope and wire .
Tensile stress is the force applied to a material per unit area, while tensile strength is the maximum stress a material can withstand before breaking. Tensile stress is a measure of the internal forces within a material, while tensile strength is a measure of its ability to resist those forces. In the context of material properties, tensile stress helps determine how much force a material can handle, while tensile strength indicates the maximum force it can withstand before failing.
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.
The tensile strength of the material being tested is measured in pounds per square inch (psi).
Yield strength is the point at which a material begins to deform permanently, while tensile strength is the maximum stress a material can withstand before breaking.
Yield strength is the point at which a material deforms permanently, while tensile strength is the maximum stress a material can withstand before breaking. Yield strength indicates when a material will start to deform, while tensile strength shows its maximum strength. These properties affect how a material responds to external forces and its overall durability and performance in various applications.
Yield stress is the point at which a material begins to deform plastically, while tensile strength is the maximum stress a material can withstand before breaking. Yield stress is lower than tensile strength. In the context of material strength, yield stress indicates the point at which permanent deformation occurs, while tensile strength shows the maximum stress a material can handle before failure.
The psi tensile strength of the material being tested is the maximum amount of force per square inch that the material can withstand before breaking.