Thickness of Flat Plate with Shoulder Fillet given Nominal Stress Solution

STEP 0: Pre-Calculation Summary
Formula Used
Thickness of Plate = Load on Flat Plate/(Nominal Stress*Smaller Width of Plate)
t = P/(σo*do)
This formula uses 4 Variables
Variables Used
Thickness of Plate - (Measured in Meter) - Thickness of Plate is the thickness or the minimum dimension of the plate or a metal sheet under consideration.
Load on Flat Plate - (Measured in Newton) - Load on Flat Plate is defined as the force exerted on the surface or body of a flat plate.
Nominal Stress - (Measured in Pascal) - Nominal Stress is the value of the stress at the minimum cross-section.
Smaller Width of Plate - (Measured in Meter) - Smaller Width of Plate is the smaller width of a plate which has two different widths or cross-sections or side to side distance.
STEP 1: Convert Input(s) to Base Unit
Load on Flat Plate: 8750 Newton --> 8750 Newton No Conversion Required
Nominal Stress: 25 Newton per Square Millimeter --> 25000000 Pascal (Check conversion ​here)
Smaller Width of Plate: 35 Millimeter --> 0.035 Meter (Check conversion ​here)
STEP 2: Evaluate Formula
Substituting Input Values in Formula
t = P/(σo*do) --> 8750/(25000000*0.035)
Evaluating ... ...
t = 0.01
STEP 3: Convert Result to Output's Unit
0.01 Meter -->10 Millimeter (Check conversion ​here)
FINAL ANSWER
10 Millimeter <-- Thickness of Plate
(Calculation completed in 00.004 seconds)

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Created by Saurabh Patil
Shri Govindram Seksaria Institute of Technology and Science (SGSITS ), Indore
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Shri Govindram Seksaria Institute of Technology and Science (SGSITS), Indore
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9 Flat Plate against Fluctuating Loads Calculators

Smaller Width of Flat Plate with Shoulder Fillet given Nominal stress
​ Go Smaller Width of Plate = Load on Flat Plate/(Nominal Stress*Thickness of Plate)
Thickness of Flat Plate with Shoulder Fillet given Nominal Stress
​ Go Thickness of Plate = Load on Flat Plate/(Nominal Stress*Smaller Width of Plate)
Nominal Tensile Stress in Flat Plate with Shoulder Fillet
​ Go Nominal Stress = Load on Flat Plate/(Smaller Width of Plate*Thickness of Plate)
Major Axis of Elliptical Crack Hole in Flat Plate given Theoretical Stress Concentration Factor
​ Go Major Axis of Elliptical Crack = Minor Axis of Elliptical Crack*(Theoretical Stress Concentration Factor-1)
Minor Axis of Elliptical Crack Hole in Flat Plate given Theoretical Stress Concentration Factor
​ Go Minor Axis of Elliptical Crack = Major Axis of Elliptical Crack/(Theoretical Stress Concentration Factor-1)
Load on Flat Plate with Shoulder Fillet given Nominal Stress
​ Go Load on Flat Plate = Nominal Stress*Smaller Width of Plate*Thickness of Plate
Theoretical Stress Concentration Factor
​ Go Theoretical Stress Concentration Factor = Highest Value of Actual Stress near Discontinuity/Nominal Stress
Theoretical Stress Concentration Factor for Elliptical Crack
​ Go Theoretical Stress Concentration Factor = 1+Major Axis of Elliptical Crack/Minor Axis of Elliptical Crack
Mean Stress for Fluctuating Load
​ Go Mean Stress for Fluctuating Load = (Maximum Stress at Crack Tip+Minimum Stress at Crack Tip)/2

Thickness of Flat Plate with Shoulder Fillet given Nominal Stress Formula

Thickness of Plate = Load on Flat Plate/(Nominal Stress*Smaller Width of Plate)
t = P/(σo*do)

What could be the factors for Variation in Properties of Materials?

In the design of machine components, it is assumed that the material is homogeneous throughout the component. In practice, there is variation in material properties from one end to another due to the following factors:
(a) Internal cracks and flaws like blowholes.
(b) Cavities in welds.
(c) Air holes in steel components.
(d) Nonmetallic or foreign inclusions.

How to Calculate Thickness of Flat Plate with Shoulder Fillet given Nominal Stress?

Thickness of Flat Plate with Shoulder Fillet given Nominal Stress calculator uses Thickness of Plate = Load on Flat Plate/(Nominal Stress*Smaller Width of Plate) to calculate the Thickness of Plate, The Thickness of Flat Plate with Shoulder fillet given Nominal stress is the thickness or the smallest dimension of a flat plate with shoulder fillet with stress concentration. Thickness of Plate is denoted by t symbol.

How to calculate Thickness of Flat Plate with Shoulder Fillet given Nominal Stress using this online calculator? To use this online calculator for Thickness of Flat Plate with Shoulder Fillet given Nominal Stress, enter Load on Flat Plate (P), Nominal Stress o) & Smaller Width of Plate (do) and hit the calculate button. Here is how the Thickness of Flat Plate with Shoulder Fillet given Nominal Stress calculation can be explained with given input values -> 10000 = 8750/(25000000*0.035).

FAQ

What is Thickness of Flat Plate with Shoulder Fillet given Nominal Stress?
The Thickness of Flat Plate with Shoulder fillet given Nominal stress is the thickness or the smallest dimension of a flat plate with shoulder fillet with stress concentration and is represented as t = P/(σo*do) or Thickness of Plate = Load on Flat Plate/(Nominal Stress*Smaller Width of Plate). Load on Flat Plate is defined as the force exerted on the surface or body of a flat plate, Nominal Stress is the value of the stress at the minimum cross-section & Smaller Width of Plate is the smaller width of a plate which has two different widths or cross-sections or side to side distance.
How to calculate Thickness of Flat Plate with Shoulder Fillet given Nominal Stress?
The Thickness of Flat Plate with Shoulder fillet given Nominal stress is the thickness or the smallest dimension of a flat plate with shoulder fillet with stress concentration is calculated using Thickness of Plate = Load on Flat Plate/(Nominal Stress*Smaller Width of Plate). To calculate Thickness of Flat Plate with Shoulder Fillet given Nominal Stress, you need Load on Flat Plate (P), Nominal Stress o) & Smaller Width of Plate (do). With our tool, you need to enter the respective value for Load on Flat Plate, Nominal Stress & Smaller Width of Plate and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
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