Goodman Line Amplitude Stress Solution

STEP 0: Pre-Calculation Summary
Formula Used
Stress Amplitude for Fluctuating Load = Endurance Limit*(1-Mean Stress for Fluctuating Load/Ultimate Tensile strength)
σa = Se*(1-σm/σut)
This formula uses 4 Variables
Variables Used
Stress Amplitude for Fluctuating Load - (Measured in Pascal) - Stress amplitude for fluctuating load is defined as the amount of stress deviation from the mean stress and is also called the alternating component of stress in fluctuating loads.
Endurance Limit - (Measured in Pascal) - The Endurance Limit of a material is defined as the stress below which a material can endure an infinite number of repeated load cycles without exhibiting failure.
Mean Stress for Fluctuating Load - (Measured in Pascal) - Mean Stress for Fluctuating Load is defined as the amount of mean stress acting when a material or component is subjected to fluctuating stress.
Ultimate Tensile strength - (Measured in Pascal) - Ultimate Tensile Strength (UTS) is the maximum stress that a material can withstand while being stretched or pulled.
STEP 1: Convert Input(s) to Base Unit
Endurance Limit: 33.84615 Newton per Square Millimeter --> 33846150 Pascal (Check conversion ​here)
Mean Stress for Fluctuating Load: 50 Newton per Square Millimeter --> 50000000 Pascal (Check conversion ​here)
Ultimate Tensile strength: 440 Newton per Square Millimeter --> 440000000 Pascal (Check conversion ​here)
STEP 2: Evaluate Formula
Substituting Input Values in Formula
σa = Se*(1-σmut) --> 33846150*(1-50000000/440000000)
Evaluating ... ...
σa = 29999996.5909091
STEP 3: Convert Result to Output's Unit
29999996.5909091 Pascal -->29.9999965909091 Newton per Square Millimeter (Check conversion ​here)
FINAL ANSWER
29.9999965909091 30 Newton per Square Millimeter <-- Stress Amplitude for Fluctuating Load
(Calculation completed in 00.020 seconds)

Credits

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Created by Vaibhav Malani
National Institute of Technology (NIT), Tiruchirapalli
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Institute of Aeronautical Engineering (IARE), Hyderabad
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Soderberg and Goodman Lines Calculators

Soderberg Line Tensile Yield Strength
​ Go Tensile Yield Strength for Fluctuating load = Mean Stress for Fluctuating Load/(1-Stress Amplitude for Fluctuating Load/Endurance Limit)
Soderberg Line Amplitude Stress
​ Go Stress Amplitude for Fluctuating Load = Endurance Limit*(1-Mean Stress for Fluctuating Load/Tensile Yield Strength for Fluctuating load)
Soderberg Line Endurance Limit
​ Go Endurance Limit = Stress Amplitude for Fluctuating Load/(1-Mean Stress for Fluctuating Load/Tensile Yield Strength for Fluctuating load)
Soderberg Line Mean stress
​ Go Mean Stress for Fluctuating Load = Tensile Yield Strength for Fluctuating load*(1-Stress Amplitude for Fluctuating Load/Endurance Limit)

Goodman Line Amplitude Stress Formula

​Go
Stress Amplitude for Fluctuating Load = Endurance Limit*(1-Mean Stress for Fluctuating Load/Ultimate Tensile strength)
σa = Se*(1-σm/σut)

What is Endurance Limit?

The fatigue or endurance limit of a material is defined as the maximum amplitude of completely reversed stress that the standard specimen can sustain for an unlimited number of cycles without fatigue failure.

How to Calculate Goodman Line Amplitude Stress?

Goodman Line Amplitude Stress calculator uses Stress Amplitude for Fluctuating Load = Endurance Limit*(1-Mean Stress for Fluctuating Load/Ultimate Tensile strength) to calculate the Stress Amplitude for Fluctuating Load, Goodman Line Amplitude Stress is defined as the stress amplitude (the maximum or the peak value of the alternating stress) of the specimen calculated from the Goodman line diagram. Stress Amplitude for Fluctuating Load is denoted by σa symbol.

How to calculate Goodman Line Amplitude Stress using this online calculator? To use this online calculator for Goodman Line Amplitude Stress, enter Endurance Limit (Se), Mean Stress for Fluctuating Load m) & Ultimate Tensile strength ut) and hit the calculate button. Here is how the Goodman Line Amplitude Stress calculation can be explained with given input values -> 4.5E-5 = 33846150*(1-50000000/440000000).

FAQ

What is Goodman Line Amplitude Stress?
Goodman Line Amplitude Stress is defined as the stress amplitude (the maximum or the peak value of the alternating stress) of the specimen calculated from the Goodman line diagram and is represented as σa = Se*(1-σmut) or Stress Amplitude for Fluctuating Load = Endurance Limit*(1-Mean Stress for Fluctuating Load/Ultimate Tensile strength). The Endurance Limit of a material is defined as the stress below which a material can endure an infinite number of repeated load cycles without exhibiting failure, Mean Stress for Fluctuating Load is defined as the amount of mean stress acting when a material or component is subjected to fluctuating stress & Ultimate Tensile Strength (UTS) is the maximum stress that a material can withstand while being stretched or pulled.
How to calculate Goodman Line Amplitude Stress?
Goodman Line Amplitude Stress is defined as the stress amplitude (the maximum or the peak value of the alternating stress) of the specimen calculated from the Goodman line diagram is calculated using Stress Amplitude for Fluctuating Load = Endurance Limit*(1-Mean Stress for Fluctuating Load/Ultimate Tensile strength). To calculate Goodman Line Amplitude Stress, you need Endurance Limit (Se), Mean Stress for Fluctuating Load m) & Ultimate Tensile strength ut). With our tool, you need to enter the respective value for Endurance Limit, Mean Stress for Fluctuating Load & Ultimate Tensile strength and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
How many ways are there to calculate Stress Amplitude for Fluctuating Load?
In this formula, Stress Amplitude for Fluctuating Load uses Endurance Limit, Mean Stress for Fluctuating Load & Ultimate Tensile strength. We can use 2 other way(s) to calculate the same, which is/are as follows -
  • Stress Amplitude for Fluctuating Load = Endurance Limit*(1-Mean Stress for Fluctuating Load/Tensile Yield Strength for Fluctuating load)
  • Stress Amplitude for Fluctuating Load = Limiting Value of Stress Amplitude/Design Factor of Safety
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