Reluctance of Joints Formula

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Joints Reluctance refers to the resistance to magnetic flux at the interface of two magnetic materials. It influences the flow of magnetic lines and affects the efficiency of magnetic circuits. Check FAQs
Rj=mR-Ry
Rj - Joints Reluctance?m - Specimen Extension Factor?R - Magnetic Circuit Reluctance?Ry - Yokes Reluctance?

Reluctance of Joints Example

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With units
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Here is how the Reluctance of Joints equation looks like with Values.

Here is how the Reluctance of Joints equation looks like with Units.

Here is how the Reluctance of Joints equation looks like.

2.035Edit=1.35Edit8.1Edit-8.9Edit
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Reluctance of Joints Solution

Follow our step by step solution on how to calculate Reluctance of Joints?

FIRST Step Consider the formula
Rj=mR-Ry
Next Step Substitute values of Variables
Rj=1.358.1AT/Wb-8.9AT/Wb
Next Step Prepare to Evaluate
Rj=1.358.1-8.9
LAST Step Evaluate
Rj=2.035AT/Wb

Reluctance of Joints Formula Elements

Variables
Joints Reluctance
Joints Reluctance refers to the resistance to magnetic flux at the interface of two magnetic materials. It influences the flow of magnetic lines and affects the efficiency of magnetic circuits.
Symbol: Rj
Measurement: ReluctanceUnit: AT/Wb
Note: Value should be greater than 0.
Specimen Extension Factor
Specimen Extension Factor is a dimensionless factor that quantifies the relative contribution of the joints and yokes to the overall reluctance of the magnetic circuit.
Symbol: m
Measurement: NAUnit: Unitless
Note: Value should be greater than 0.
Magnetic Circuit Reluctance
Magnetic Circuit Reluctance is the measure of opposition to the flow of magnetic flux in a material, determined by its geometry and magnetic properties.
Symbol: R
Measurement: ReluctanceUnit: AT/Wb
Note: Value should be greater than 0.
Yokes Reluctance
Yokes Reluctance refers to the reluctance of the yoke material or the portion of the magnetic circuit that includes the yoke.
Symbol: Ry
Measurement: ReluctanceUnit: AT/Wb
Note: Value should be greater than 0.

Other formulas in Magnetic Instruments category

​Go Number of Turns in Solenoid
N=HsLI[Permeability-vacuum]
​Go Magnetic Field of Solenoid
Hs=[Permeability-vacuum]NIL
​Go Magneto Motive Force(MMF)
mmf=ΦR
​Go Reluctance of Magnetic Circuit
R=mmfΦ

How to Evaluate Reluctance of Joints?

Reluctance of Joints evaluator uses Joints Reluctance = Specimen Extension Factor*Magnetic Circuit Reluctance-Yokes Reluctance to evaluate the Joints Reluctance, The Reluctance of Joints formula is defined as the multi-degree-of-freedom spherical driving joint with direct bearing driven by spherical motor owns high mechanical integrity. Joints Reluctance is denoted by Rj symbol.

How to evaluate Reluctance of Joints using this online evaluator? To use this online evaluator for Reluctance of Joints, enter Specimen Extension Factor (m), Magnetic Circuit Reluctance (R) & Yokes Reluctance (Ry) and hit the calculate button.

FAQs on Reluctance of Joints

What is the formula to find Reluctance of Joints?
The formula of Reluctance of Joints is expressed as Joints Reluctance = Specimen Extension Factor*Magnetic Circuit Reluctance-Yokes Reluctance. Here is an example- 2.035 = 1.35*8.1-8.9.
How to calculate Reluctance of Joints?
With Specimen Extension Factor (m), Magnetic Circuit Reluctance (R) & Yokes Reluctance (Ry) we can find Reluctance of Joints using the formula - Joints Reluctance = Specimen Extension Factor*Magnetic Circuit Reluctance-Yokes Reluctance.
Can the Reluctance of Joints be negative?
No, the Reluctance of Joints, measured in Reluctance cannot be negative.
Which unit is used to measure Reluctance of Joints?
Reluctance of Joints is usually measured using the Ampere-Turn per Weber[AT/Wb] for Reluctance. are the few other units in which Reluctance of Joints can be measured.
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