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Is stress dependent on material property?

Is stress dependent on material property?

Stress is not dependent on material properties, if you are applying same loads then you should get same stress for different materials.

Is stress a physical property?

In particular, these properties encompass texture, density, mass, melting and boiling points, and electrical and thermal conductivity. All such physical properties are measurable or observable. These properties are not constant (will change when subjected to certain variables such as heat).

Is maximum stress a material property?

Design terms. Ultimate strength is an attribute related to a material, rather than just a specific specimen made of the material, and as such it is quoted as the force per unit of cross section area (N/m2). The ultimate strength is the maximum stress that a material can withstand before it breaks or weakens.

Is strain a property of material?

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Strain is the deformation of a material from stress. It is simply a ratio of the change in length to the original length. Deformations that are applied perpendicular to the cross section are normal strains, while deformations applied parallel to the cross section are shear strains.

Why stress is not a material property?

No, stress is not a property of a material. Stress is simply THE RESISTANCE OFFERED BY A BODY to external force applied on it. It doesn’t remain the same every time like a property of a material. The stress inside a body varies with respect to the external force applied on it.

What is a material property?

The material properties are size, shape, density of the particles, and their intrinsic mechanical properties (Young’s modulus, yield stress, fracture toughness, etc. From: Advances in Chemical Engineering, 2015.

What is stress property?

A. Mechanical Properties The term stress refers to a deforming force (e.g. pressure, stretch, shear, torque, etc.) applied. to an object, expressed in terms of the unit area over which it is applied. The deformation of. the object that results from the stress is referred to as strain, which is a normalized measure.

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What are different types of stress and strain?

It is of two types: tensile and compressive stress. (Tangential stress: When the elastic restoring force or deforming force acts parallel to the surface area, the stress is called tangential stress.

What is stress in metal?

Stress occurs when forces pull (tension), push (compression) or act in combination on a material. When a force is applied the material reacts by distorting to counterbalance the force. When a force is applied to a metal deformation occurs and it is strained. The more the force the more the deformation (strain).

What is stress and its type?

Stress can be defined as any type of change that causes physical, emotional, or psychological strain. Stress is your body’s response to anything that requires attention or action. Everyone experiences stress to some degree. It’s also important to recognize how your mental and physical health affects your stress level.

What is the relationship between stress and material properties?

By definition stress is a force acting on an area, σ = F A. So material properties does not come into play. Though, strength is a material property in itself which corresponds to how much stress a material can support.

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What is the difference between stress and strength?

By definition stress is a force acting on an area, . So material properties does not come into play. Though, strength is a material property in itself which corresponds to how much stress a material can support. I have read a different definition which involves RESTORING FORCE, not the force applied.

What is meant by tensile stress?

Tensile stress is that type of stress in which the two sections of material on either side of a stress plane tend to pull apart or elongate. The capacity of a material or structure to withstand loads tending to elongate is known as ultimate tensile strength (UTS).

What is the relationship between stress and strain?

The most common way to analyze the relationship between stress and strain for a particular material is with a stress-strain diagram. The stress-strain diagram provides valuable information about how much force a material can withstand before permanent deformation or failure occurs.