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The allowable bending stress of aluminum plates can vary depending on the grade and temper of the aluminum. Generally, it ranges from 10,000 to 30,000 pounds per square inch (psi) for commonly used aluminum alloys. It is important to consult specific material specifications to determine the precise allowable bending stress for a particular aluminum plate.

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Is bending stress is directly proportional to section modulus?

Yes, bending stress is directly proportional to the section modulus. A larger section modulus indicates that the cross-sectional shape of the member is better at resisting bending, leading to lower bending stress. Conversely, a smaller section modulus results in higher bending stress for the same applied bending moment.


What is the internal bending moment formula used to calculate the bending stress in a beam?

The internal bending moment formula used to calculate bending stress in a beam is M I / c, where M is the bending moment, is the bending stress, I is the moment of inertia, and c is the distance from the neutral axis to the outermost fiber of the beam.


What is bending strength?

It is the maximum stress at which a material will fail when subject to flexural ( moment producing) bending loads. These stresses occur a the material outer fibers.


Difference between unsymmetrical and symmetrical bending?

Symmetrical bending occurs when a beam is loaded uniformly along its length, resulting in bending stresses that are equal on both sides of the beam's neutral axis. Unsymmetrical bending occurs when a beam is loaded unevenly, causing different magnitudes of bending stress on opposite sides of the beam's neutral axis.


What is the unit for the flexure strength?

The unit for flexure strength is typically in pascals (Pa) or megapascals (MPa). It represents the maximum stress a material can withstand before bending or breaking under a bending load.

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What is the allowable bending stress in 6065-T5 aluminium?

The allowable bending stress for 6065-T5 aluminum alloy typically ranges from 150 to 200 MPa (megapascals), depending on the specific application and design conditions. For structural applications, it's essential to consult relevant design codes and standards, as factors like safety margins and service conditions can influence the allowable stress. Always verify with the latest material specifications and engineering guidelines for precise values.


What is the Allowable deflection of aluminium?

The allowable deflection of an aluminum member depends on its size, shape, material properties, and the load it is subjected to. In general, deflection limits for aluminum structures are typically set at L/180 to L/240, where L is the span of the member. It is important to refer to the relevant design codes or standards for specific guidelines on allowable deflections for aluminum components.


What is the ultimate stress of mild steel?

Allowable stress would normally refer to design using Allowable Strength Design, also known as working strength design. In this the allowable stress is usually a fraction of the yield strength and can be different for uniform tension and bending. Typically mild steel has a yield strength of about fy=250MPa with allowable stresses in Tension, 0.6fy=150MPa Bending, 0.66fy=165MPa


What is the relation between ultimate and allowable stress?

ultimate stress=Factor of safety*Allowable stress


What is allowable stresses?

The maximum allowable stress is that value beyond which, after applying an appropriate factor of safety its particular strength criterion is exceeded and failure occurs. For example, if aluminum strength in yield is 35,000 psi, and factor of safety is 1.25, its maximum allowable stress against yield is 35,000/1.25 = 28,000 psi


What is the difference between Allowable Stress Design and Working Stress Design?

allowable stress design-2/3rd of yield working stress design is process yield


What is allowable stress of copper?

Depends on temperature.


Is bending stress is directly proportional to section modulus?

Yes, bending stress is directly proportional to the section modulus. A larger section modulus indicates that the cross-sectional shape of the member is better at resisting bending, leading to lower bending stress. Conversely, a smaller section modulus results in higher bending stress for the same applied bending moment.


Is bending stress and shear stress are same are not?

no


What is the maximmum Allowable stress in concrete M 25?

stress in old concrete