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Hollow Circular Section Inner Diameter is the diameter of inner circle of circular hollow shaft. Check FAQs
di=(eload8dcircle)-(dcircle2)
di - Hollow Circular Section Inner Diameter?eload - Eccentricity of Loading?dcircle - Outer Diameter of Hollow Circular Section?

Internal Diameter given Maximum Eccentricity of Load for Hollow Circular Section Example

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Here is how the Internal Diameter given Maximum Eccentricity of Load for Hollow Circular Section equation looks like with Values.

Here is how the Internal Diameter given Maximum Eccentricity of Load for Hollow Circular Section equation looks like with Units.

Here is how the Internal Diameter given Maximum Eccentricity of Load for Hollow Circular Section equation looks like.

63.8044Edit=(25Edit823Edit)-(23Edit2)
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Internal Diameter given Maximum Eccentricity of Load for Hollow Circular Section Solution

Follow our step by step solution on how to calculate Internal Diameter given Maximum Eccentricity of Load for Hollow Circular Section?

FIRST Step Consider the formula
di=(eload8dcircle)-(dcircle2)
Next Step Substitute values of Variables
di=(25mm823mm)-(23mm2)
Next Step Convert Units
di=(0.025m80.023m)-(0.023m2)
Next Step Prepare to Evaluate
di=(0.02580.023)-(0.0232)
Next Step Evaluate
di=0.0638043885637971m
Next Step Convert to Output's Unit
di=63.8043885637971mm
LAST Step Rounding Answer
di=63.8044mm

Internal Diameter given Maximum Eccentricity of Load for Hollow Circular Section Formula Elements

Variables
Functions
Hollow Circular Section Inner Diameter
Hollow Circular Section Inner Diameter is the diameter of inner circle of circular hollow shaft.
Symbol: di
Measurement: LengthUnit: mm
Note: Value should be greater than 0.
Eccentricity of Loading
Eccentricity of Loading is the distance between the actual line of action of loads and the line of action that would produce a uniform stress over the cross section of the specimen.
Symbol: eload
Measurement: LengthUnit: mm
Note: Value should be greater than 0.
Outer Diameter of Hollow Circular Section
Outer Diameter of Hollow Circular Section is the measure of largest diameter of 2D concentric circular cross section.
Symbol: dcircle
Measurement: LengthUnit: mm
Note: Value should be greater than 0.
sqrt
A square root function is a function that takes a non-negative number as an input and returns the square root of the given input number.
Syntax: sqrt(Number)

Other Formulas to find Hollow Circular Section Inner Diameter

​Go Inner Diameter of Hollow Circular Section given Diameter of kernel
di=(4dcircledkernel)-(dcircle2)

Other formulas in Kernel of Hollow Circular Section category

​Go Diameter of kernel for hollow circular section
dkernel=dcircle2+di24dcircle
​Go Maximum Value of Eccentricity of Load for Hollow Circular Section
eload=(18dcircle)((dcircle2)+(di2))
​Go Section Modulus given Bending Stress and Eccentric Load on Hollow Circular Section
S=eloadPσb
​Go Eccentricity given Bending Stress on Hollow Circular Section
eload=σbSP

How to Evaluate Internal Diameter given Maximum Eccentricity of Load for Hollow Circular Section?

Internal Diameter given Maximum Eccentricity of Load for Hollow Circular Section evaluator uses Hollow Circular Section Inner Diameter = sqrt((Eccentricity of Loading*8*Outer Diameter of Hollow Circular Section)-(Outer Diameter of Hollow Circular Section^2)) to evaluate the Hollow Circular Section Inner Diameter, The Internal Diameter given Maximum Eccentricity of Load for Hollow Circular Section formula is defined as a measure of the internal diameter of a hollow circular section under maximum eccentricity of load, which is essential in calculating direct and bending stresses in structural analysis. Hollow Circular Section Inner Diameter is denoted by di symbol.

How to evaluate Internal Diameter given Maximum Eccentricity of Load for Hollow Circular Section using this online evaluator? To use this online evaluator for Internal Diameter given Maximum Eccentricity of Load for Hollow Circular Section, enter Eccentricity of Loading (eload) & Outer Diameter of Hollow Circular Section (dcircle) and hit the calculate button.

FAQs on Internal Diameter given Maximum Eccentricity of Load for Hollow Circular Section

What is the formula to find Internal Diameter given Maximum Eccentricity of Load for Hollow Circular Section?
The formula of Internal Diameter given Maximum Eccentricity of Load for Hollow Circular Section is expressed as Hollow Circular Section Inner Diameter = sqrt((Eccentricity of Loading*8*Outer Diameter of Hollow Circular Section)-(Outer Diameter of Hollow Circular Section^2)). Here is an example- 63804.39 = sqrt((0.025*8*0.023)-(0.023^2)).
How to calculate Internal Diameter given Maximum Eccentricity of Load for Hollow Circular Section?
With Eccentricity of Loading (eload) & Outer Diameter of Hollow Circular Section (dcircle) we can find Internal Diameter given Maximum Eccentricity of Load for Hollow Circular Section using the formula - Hollow Circular Section Inner Diameter = sqrt((Eccentricity of Loading*8*Outer Diameter of Hollow Circular Section)-(Outer Diameter of Hollow Circular Section^2)). This formula also uses Square Root (sqrt) function(s).
What are the other ways to Calculate Hollow Circular Section Inner Diameter?
Here are the different ways to Calculate Hollow Circular Section Inner Diameter-
  • Hollow Circular Section Inner Diameter=sqrt((4*Outer Diameter of Hollow Circular Section*Diameter of kernel)-(Outer Diameter of Hollow Circular Section^2))OpenImg
Can the Internal Diameter given Maximum Eccentricity of Load for Hollow Circular Section be negative?
No, the Internal Diameter given Maximum Eccentricity of Load for Hollow Circular Section, measured in Length cannot be negative.
Which unit is used to measure Internal Diameter given Maximum Eccentricity of Load for Hollow Circular Section?
Internal Diameter given Maximum Eccentricity of Load for Hollow Circular Section is usually measured using the Millimeter[mm] for Length. Meter[mm], Kilometer[mm], Decimeter[mm] are the few other units in which Internal Diameter given Maximum Eccentricity of Load for Hollow Circular Section can be measured.
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