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Maximum Bending Stress is the highest stress experienced by a material subjected to a bending load. Check FAQs
σbmax=(PaxialAsectional)+(Mεcolumn)
σbmax - Maximum Bending Stress?Paxial - Axial Thrust?Asectional - Cross Sectional Area?M - Maximum Bending Moment In Column?εcolumn - Modulus of Elasticity of Column?

Maximum Stress given Elastic Modulus for Strut Subjected to Uniformly Distributed Load Example

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Here is how the Maximum Stress given Elastic Modulus for Strut Subjected to Uniformly Distributed Load equation looks like with Values.

Here is how the Maximum Stress given Elastic Modulus for Strut Subjected to Uniformly Distributed Load equation looks like with Units.

Here is how the Maximum Stress given Elastic Modulus for Strut Subjected to Uniformly Distributed Load equation looks like.

0.0011Edit=(1500Edit1.4Edit)+(16Edit10.56Edit)
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Maximum Stress given Elastic Modulus for Strut Subjected to Uniformly Distributed Load Solution

Follow our step by step solution on how to calculate Maximum Stress given Elastic Modulus for Strut Subjected to Uniformly Distributed Load?

FIRST Step Consider the formula
σbmax=(PaxialAsectional)+(Mεcolumn)
Next Step Substitute values of Variables
σbmax=(1500N1.4)+(16N*m10.56MPa)
Next Step Convert Units
σbmax=(1500N1.4)+(16N*m1.1E+7Pa)
Next Step Prepare to Evaluate
σbmax=(15001.4)+(161.1E+7)
Next Step Evaluate
σbmax=1071.42857294372Pa
Next Step Convert to Output's Unit
σbmax=0.00107142857294372MPa
LAST Step Rounding Answer
σbmax=0.0011MPa

Maximum Stress given Elastic Modulus for Strut Subjected to Uniformly Distributed Load Formula Elements

Variables
Maximum Bending Stress
Maximum Bending Stress is the highest stress experienced by a material subjected to a bending load.
Symbol: σbmax
Measurement: PressureUnit: MPa
Note: Value should be greater than 0.
Axial Thrust
Axial Thrust is the force exerted along the axis of a shaft in mechanical systems. It occurs when there is an imbalance of forces that acts in the direction parallel to the axis of rotation.
Symbol: Paxial
Measurement: ForceUnit: N
Note: Value should be greater than 0.
Cross Sectional Area
Cross Sectional Area of Column is the area of a column that is obtained when a column is sliced perpendicular to some specified axis at a point.
Symbol: Asectional
Measurement: AreaUnit:
Note: Value should be greater than 0.
Maximum Bending Moment In Column
Maximum Bending Moment In Column is the highest amount of bending force that a column experiences due to applied loads, either axial or eccentric.
Symbol: M
Measurement: Moment of ForceUnit: N*m
Note: Value should be greater than 0.
Modulus of Elasticity of Column
Modulus of Elasticity of Column is a quantity that measures column's resistance to being deformed elastically when stress is applied to it.
Symbol: εcolumn
Measurement: PressureUnit: MPa
Note: Value should be greater than 0.

Other Formulas to find Maximum Bending Stress

​Go Maximum Stress for Strut Subjected to Compressive Axial and Uniformly Distributed Load
σbmax=(PaxialAsectional)+(McI)

Other formulas in Strut Subjected to Compressive Axial Thrust and a Transverse Uniformly Distributed Load category

​Go Bending Moment at Section for Strut subjected to Compressive Axial and Uniformly Distributed Load
Mb=-(Paxialδ)+(qf((x22)-(lcolumnx2)))
​Go Axial Thrust for Strut Subjected to Compressive Axial and Uniformly Distributed Load
Paxial=-Mb+(qf((x22)-(lcolumnx2)))δ
​Go Deflection at Section for Strut Subjected to Compressive Axial and Uniformly Distributed Load
δ=-Mb+(qf((x22)-(lcolumnx2)))Paxial
​Go Load Intensity for Strut Subjected to Compressive Axial and Uniformly Distributed Load
qf=Mb+(Paxialδ)(x22)-(lcolumnx2)

How to Evaluate Maximum Stress given Elastic Modulus for Strut Subjected to Uniformly Distributed Load?

Maximum Stress given Elastic Modulus for Strut Subjected to Uniformly Distributed Load evaluator uses Maximum Bending Stress = (Axial Thrust/Cross Sectional Area)+(Maximum Bending Moment In Column/Modulus of Elasticity of Column) to evaluate the Maximum Bending Stress, The Maximum Stress given Elastic Modulus for Strut Subjected to Uniformly Distributed Load formula is defined as the maximum stress a strut can withstand when subjected to a combination of compressive axial thrust and a transverse uniformly distributed load, providing a critical value for structural integrity assessment. Maximum Bending Stress is denoted by σbmax symbol.

How to evaluate Maximum Stress given Elastic Modulus for Strut Subjected to Uniformly Distributed Load using this online evaluator? To use this online evaluator for Maximum Stress given Elastic Modulus for Strut Subjected to Uniformly Distributed Load, enter Axial Thrust (Paxial), Cross Sectional Area (Asectional), Maximum Bending Moment In Column (M) & Modulus of Elasticity of Column column) and hit the calculate button.

FAQs on Maximum Stress given Elastic Modulus for Strut Subjected to Uniformly Distributed Load

What is the formula to find Maximum Stress given Elastic Modulus for Strut Subjected to Uniformly Distributed Load?
The formula of Maximum Stress given Elastic Modulus for Strut Subjected to Uniformly Distributed Load is expressed as Maximum Bending Stress = (Axial Thrust/Cross Sectional Area)+(Maximum Bending Moment In Column/Modulus of Elasticity of Column). Here is an example- 1.1E-9 = (1500/1.4)+(16/10560000).
How to calculate Maximum Stress given Elastic Modulus for Strut Subjected to Uniformly Distributed Load?
With Axial Thrust (Paxial), Cross Sectional Area (Asectional), Maximum Bending Moment In Column (M) & Modulus of Elasticity of Column column) we can find Maximum Stress given Elastic Modulus for Strut Subjected to Uniformly Distributed Load using the formula - Maximum Bending Stress = (Axial Thrust/Cross Sectional Area)+(Maximum Bending Moment In Column/Modulus of Elasticity of Column).
What are the other ways to Calculate Maximum Bending Stress?
Here are the different ways to Calculate Maximum Bending Stress-
  • Maximum Bending Stress=(Axial Thrust/Cross Sectional Area)+(Maximum Bending Moment In Column*Distance from Neutral Axis to Extreme Point/Moment of Inertia)OpenImg
Can the Maximum Stress given Elastic Modulus for Strut Subjected to Uniformly Distributed Load be negative?
No, the Maximum Stress given Elastic Modulus for Strut Subjected to Uniformly Distributed Load, measured in Pressure cannot be negative.
Which unit is used to measure Maximum Stress given Elastic Modulus for Strut Subjected to Uniformly Distributed Load?
Maximum Stress given Elastic Modulus for Strut Subjected to Uniformly Distributed Load is usually measured using the Megapascal[MPa] for Pressure. Pascal[MPa], Kilopascal[MPa], Bar[MPa] are the few other units in which Maximum Stress given Elastic Modulus for Strut Subjected to Uniformly Distributed Load can be measured.
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