Height of Cross Section of Connecting Rod at Middle Section Solution

STEP 0: Pre-Calculation Summary
Formula Used
Height of Connecting Rod at Mid Section = 5*Thickness of Flange And Web of I Section
Hm = 5*t
This formula uses 2 Variables
Variables Used
Height of Connecting Rod at Mid Section - (Measured in Meter) - Height of connecting rod at mid section is the height of the cross-section at the middle part of the connecting rod.
Thickness of Flange And Web of I Section - (Measured in Meter) - Thickness of flange and web of I section is the thickness of horizontal and vertical parts of an I section beam or a bar.
STEP 1: Convert Input(s) to Base Unit
Thickness of Flange And Web of I Section: 8 Millimeter --> 0.008 Meter (Check conversion here)
STEP 2: Evaluate Formula
Substituting Input Values in Formula
Hm = 5*t --> 5*0.008
Evaluating ... ...
Hm = 0.04
STEP 3: Convert Result to Output's Unit
0.04 Meter -->40 Millimeter (Check conversion here)
FINAL ANSWER
40 Millimeter <-- Height of Connecting Rod at Mid Section
(Calculation completed in 00.004 seconds)

Credits

Created by Saurabh Patil
Shri Govindram Seksaria Institute of Technology and Science (SGSITS ), Indore
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11 Buckling in Connecting Rod Calculators

Critical Buckling Load on Connecting Rod by Rankine Formula
Go Critical Buckling Load on Connecting Rod = Compressive Yield Stress*Cross Sectional Area of Connecting Rod/(1+Constant Used in Buckling Load Formula*(Length of the Connecting Rod/Radius of Gyration of I Section About XX Axis)^2)
Whipping Stress in Connecting Rod of I Cross Section
Go Whipping Stress = Mass of Connecting Rod*Angular Velocity of Crank^2*Crank Radius of Engine*Length of the Connecting Rod*4.593/(1000*Thickness of Flange And Web of I Section^3)
Critical Buckling Load on Steel Connecting Rod given Thickness of Flange or Web of Connecting Rod
Go Critical Buckling Load on Steel Connecting Rod = (261393*Compressive Yield Stress*Thickness of Flange And Web of I Section^4)/(23763*Thickness of Flange And Web of I Section^2+Length of the Connecting Rod)
Maximum Force Acting on Connecting Rod given Maximum Gas Pressure
Go Force on Connecting Rod = pi*Inner Diameter of Engine Cylinder^2*Maximum Pressure in Engine Cylinder/4
Force Acting on Connecting Rod
Go Force on Connecting Rod = Force on Piston Head/cos(Inclination of Connecting Rod With Line of Stroke)
Area Moment of Inertia for Connecting Rod Cross Section
Go Area Moment of Inertia For Connecting Rod = Cross Sectional Area of Connecting Rod*Radius of Gyration For Connecting Rod^2
Critical Buckling Load on Connecting Rod Considering Factor of Safety
Go Critical Buckling Load on Connecting Rod = Force on Connecting Rod*Factor of Safety For Connecting Rod
Radius of Gyration of I Cross Section about yy Axis
Go Radius of Gyration of I Section About YY Axis = 0.996*Thickness of Flange And Web of I Section
Radius of Gyration of I Cross Section about xx Axis
Go Radius of Gyration of I Section About XX Axis = 1.78*Thickness of Flange And Web of I Section
Height of Cross Section of Connecting Rod at Middle Section
Go Height of Connecting Rod at Mid Section = 5*Thickness of Flange And Web of I Section
Width of I Cross Section of Connecting Rod
Go Width of Connecting Rod = 4*Thickness of Flange And Web of I Section

Height of Cross Section of Connecting Rod at Middle Section Formula

Height of Connecting Rod at Mid Section = 5*Thickness of Flange And Web of I Section
Hm = 5*t

Shape of Connecting Rod

The connecting rod must withstand very high forces as the piston moves within the cylinder bore. The shaft portion of the connecting rod is subjected to bending as well as tension and compression. The bearing portions receive a load from the weight of the piston and the con-rod. To avoid failure of the bearings, the con-rod should be made as light as possible. To avoid buckling, the rod portion usually has an I-beam shape because of the high rigidity-to-weight ratio of this shape.

How to Calculate Height of Cross Section of Connecting Rod at Middle Section?

Height of Cross Section of Connecting Rod at Middle Section calculator uses Height of Connecting Rod at Mid Section = 5*Thickness of Flange And Web of I Section to calculate the Height of Connecting Rod at Mid Section, Height of cross section of connecting rod at middle section is the height of the cross-section of an I cross-section connecting rod. Height of Connecting Rod at Mid Section is denoted by Hm symbol.

How to calculate Height of Cross Section of Connecting Rod at Middle Section using this online calculator? To use this online calculator for Height of Cross Section of Connecting Rod at Middle Section, enter Thickness of Flange And Web of I Section (t) and hit the calculate button. Here is how the Height of Cross Section of Connecting Rod at Middle Section calculation can be explained with given input values -> 40000 = 5*0.008.

FAQ

What is Height of Cross Section of Connecting Rod at Middle Section?
Height of cross section of connecting rod at middle section is the height of the cross-section of an I cross-section connecting rod and is represented as Hm = 5*t or Height of Connecting Rod at Mid Section = 5*Thickness of Flange And Web of I Section. Thickness of flange and web of I section is the thickness of horizontal and vertical parts of an I section beam or a bar.
How to calculate Height of Cross Section of Connecting Rod at Middle Section?
Height of cross section of connecting rod at middle section is the height of the cross-section of an I cross-section connecting rod is calculated using Height of Connecting Rod at Mid Section = 5*Thickness of Flange And Web of I Section. To calculate Height of Cross Section of Connecting Rod at Middle Section, you need Thickness of Flange And Web of I Section (t). With our tool, you need to enter the respective value for Thickness of Flange And Web of I Section 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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