Resultant reaction at journal of Bearing 2 of centre crankshaft at max torque given bearing pressure Formula

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Resultant Reaction at Journal of Bearing 2 is the resultant of the horizontal & vertical reaction forces on the 2nd bearing of the crankshaft. Check FAQs
R2j=Pb1d2l2
R2j - Resultant Reaction at Journal of Bearing 2?Pb1 - Bearing Pressure of Journal at Bearing 2?d2 - Diameter of Journal at Bearing 2?l2 - Length of Journal at Bearing 2?

Resultant reaction at journal of Bearing 2 of centre crankshaft at max torque given bearing pressure Example

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Here is how the Resultant reaction at journal of Bearing 2 of centre crankshaft at max torque given bearing pressure equation looks like with Values.

Here is how the Resultant reaction at journal of Bearing 2 of centre crankshaft at max torque given bearing pressure equation looks like with Units.

Here is how the Resultant reaction at journal of Bearing 2 of centre crankshaft at max torque given bearing pressure equation looks like.

13750Edit=5Edit50Edit55Edit

Resultant reaction at journal of Bearing 2 of centre crankshaft at max torque given bearing pressure Solution

Follow our step by step solution on how to calculate Resultant reaction at journal of Bearing 2 of centre crankshaft at max torque given bearing pressure?

FIRST Step Consider the formula
R2j=Pb1d2l2
Next Step Substitute values of Variables
R2j=5N/mm²50mm55mm
Next Step Convert Units
R2j=5E+6Pa0.05m0.055m
Next Step Prepare to Evaluate
R2j=5E+60.050.055
LAST Step Evaluate
R2j=13750N

Resultant reaction at journal of Bearing 2 of centre crankshaft at max torque given bearing pressure Formula Elements

Variables
Resultant Reaction at Journal of Bearing 2
Resultant Reaction at Journal of Bearing 2 is the resultant of the horizontal & vertical reaction forces on the 2nd bearing of the crankshaft.
Symbol: R2j
Measurement: ForceUnit: N
Note: Value should be greater than 0.
Bearing Pressure of Journal at Bearing 2
Bearing Pressure of Journal at Bearing 2 is the compressive stress acting on the contact area between the journal and the crankshaft.
Symbol: Pb1
Measurement: PressureUnit: N/mm²
Note: Value should be greater than 0.
Diameter of Journal at Bearing 2
Diameter of Journal at Bearing 2 is the inner diameter of the journal at the 2nd bearing of the crankshaft.
Symbol: d2
Measurement: LengthUnit: mm
Note: Value should be greater than 0.
Length of Journal at Bearing 2
Length of Journal at Bearing 2 is the length of the journal at the 2nd bearing of the crankshaft.
Symbol: l2
Measurement: LengthUnit: mm
Note: Value should be greater than 0.

Other formulas in Bearings Reactions at Angle of Maximum Torque category

​Go Force acting on piston top due to gas pressure for maximum torque on center crankshaft
P=πD2p'4
​Go Horizontal Reaction on Bearing 1 of centre crankshaft due to tangential force at max torque
R1h=Ptb2b
​Go Horizontal Reaction on Bearing 2 of centre crankshaft due to tangential force at max torque
R2h=Ptb1b
​Go Vertical Reaction on Bearing 2 of centre crankshaft due to radial force at max torque
R2v=Prb1b

How to Evaluate Resultant reaction at journal of Bearing 2 of centre crankshaft at max torque given bearing pressure?

Resultant reaction at journal of Bearing 2 of centre crankshaft at max torque given bearing pressure evaluator uses Resultant Reaction at Journal of Bearing 2 = Bearing Pressure of Journal at Bearing 2*Diameter of Journal at Bearing 2*Length of Journal at Bearing 2 to evaluate the Resultant Reaction at Journal of Bearing 2, The resultant reaction at journal of Bearing 2 of centre crankshaft at max torque given bearing pressure is the resultant reaction force at the journal of bearing 2 of a centre crankshaft when the centre crankshaft is designed for the maximum torsional moment. Resultant Reaction at Journal of Bearing 2 is denoted by R2j symbol.

How to evaluate Resultant reaction at journal of Bearing 2 of centre crankshaft at max torque given bearing pressure using this online evaluator? To use this online evaluator for Resultant reaction at journal of Bearing 2 of centre crankshaft at max torque given bearing pressure, enter Bearing Pressure of Journal at Bearing 2 (Pb1), Diameter of Journal at Bearing 2 (d2) & Length of Journal at Bearing 2 (l2) and hit the calculate button.

FAQs on Resultant reaction at journal of Bearing 2 of centre crankshaft at max torque given bearing pressure

What is the formula to find Resultant reaction at journal of Bearing 2 of centre crankshaft at max torque given bearing pressure?
The formula of Resultant reaction at journal of Bearing 2 of centre crankshaft at max torque given bearing pressure is expressed as Resultant Reaction at Journal of Bearing 2 = Bearing Pressure of Journal at Bearing 2*Diameter of Journal at Bearing 2*Length of Journal at Bearing 2. Here is an example- 13750 = 5000000*0.05*0.055.
How to calculate Resultant reaction at journal of Bearing 2 of centre crankshaft at max torque given bearing pressure?
With Bearing Pressure of Journal at Bearing 2 (Pb1), Diameter of Journal at Bearing 2 (d2) & Length of Journal at Bearing 2 (l2) we can find Resultant reaction at journal of Bearing 2 of centre crankshaft at max torque given bearing pressure using the formula - Resultant Reaction at Journal of Bearing 2 = Bearing Pressure of Journal at Bearing 2*Diameter of Journal at Bearing 2*Length of Journal at Bearing 2.
Can the Resultant reaction at journal of Bearing 2 of centre crankshaft at max torque given bearing pressure be negative?
No, the Resultant reaction at journal of Bearing 2 of centre crankshaft at max torque given bearing pressure, measured in Force cannot be negative.
Which unit is used to measure Resultant reaction at journal of Bearing 2 of centre crankshaft at max torque given bearing pressure?
Resultant reaction at journal of Bearing 2 of centre crankshaft at max torque given bearing pressure is usually measured using the Newton[N] for Force. Exanewton[N], Meganewton[N], Kilonewton[N] are the few other units in which Resultant reaction at journal of Bearing 2 of centre crankshaft at max torque given bearing pressure can be measured.
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