Height of Shaft Keyway given Ratio of Torsional Strength of Shaft with Keyway to without Keyway Solution

STEP 0: Pre-Calculation Summary
Formula Used
Height of Shaft Keyway = Diameter of Shaft with Keyway/1.1*(1-Ratio of Shaft Strength-0.2*Width of Key in Round Shaft/Diameter of Shaft with Keyway)
h = d/1.1*(1-C-0.2*bk/d)
This formula uses 4 Variables
Variables Used
Height of Shaft Keyway - (Measured in Meter) - The Height of Shaft Keyway is the vertical dimension of the keyway cut into a shaft, which accommodates a key for securing components and transmitting torque.
Diameter of Shaft with Keyway - (Measured in Meter) - The Diameter of Shaft with Keyway is the measurement across the widest part of a shaft that includes a keyway, crucial for transmitting torque in mechanical systems.
Ratio of Shaft Strength - The Ratio of Shaft Strength is a measure comparing the strength of a shaft to the applied loads, helping to ensure safe and effective machine design.
Width of Key in Round Shaft - (Measured in Meter) - The Width of Key in Round Shaft is the measurement of the key used to secure components in a round shaft, influencing load distribution and stress concentration.
STEP 1: Convert Input(s) to Base Unit
Diameter of Shaft with Keyway: 45 Millimeter --> 0.045 Meter (Check conversion ​here)
Ratio of Shaft Strength: 0.88 --> No Conversion Required
Width of Key in Round Shaft: 5 Millimeter --> 0.005 Meter (Check conversion ​here)
STEP 2: Evaluate Formula
Substituting Input Values in Formula
h = d/1.1*(1-C-0.2*bk/d) --> 0.045/1.1*(1-0.88-0.2*0.005/0.045)
Evaluating ... ...
h = 0.004
STEP 3: Convert Result to Output's Unit
0.004 Meter -->4 Millimeter (Check conversion ​here)
FINAL ANSWER
4 Millimeter <-- Height of Shaft Keyway
(Calculation completed in 00.007 seconds)

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Shri Govindram Seksaria Institute of Technology and Science (SGSITS ), Indore
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​ LaTeX ​ Go Bending Moment on Round Shaft = (Nominal Stress*pi*Smaller Diameter of Shaft with Fillet^3)/32
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Height of Shaft Keyway given Ratio of Torsional Strength of Shaft with Keyway to without Keyway Formula

​LaTeX ​Go
Height of Shaft Keyway = Diameter of Shaft with Keyway/1.1*(1-Ratio of Shaft Strength-0.2*Width of Key in Round Shaft/Diameter of Shaft with Keyway)
h = d/1.1*(1-C-0.2*bk/d)

Stress concentration in brittle materials

The effect of stress concentration is more severe in the case of brittle materials, due to their inability to plastic deformation. Brittle materials do not yield locally and there is no readjustment of stresses at the discontinuities. Once the local stress at the discontinuity reaches the fracture strength, a crack is formed. This reduces the material available to resist external load and also increases the stress concentration at the crack. The part then quickly fails. Therefore, stress concentration factors are used for components made of brittle materials subjected to both static loads as well as fluctuating loads.

How to Calculate Height of Shaft Keyway given Ratio of Torsional Strength of Shaft with Keyway to without Keyway?

Height of Shaft Keyway given Ratio of Torsional Strength of Shaft with Keyway to without Keyway calculator uses Height of Shaft Keyway = Diameter of Shaft with Keyway/1.1*(1-Ratio of Shaft Strength-0.2*Width of Key in Round Shaft/Diameter of Shaft with Keyway) to calculate the Height of Shaft Keyway, Height of shaft keyway given ratio of torsional strength of shaft with keyway to without keyway is the top to bottom length of the keyway of a round shaft and is perpendicular to the circumference of the shaft. Height of Shaft Keyway is denoted by h symbol.

How to calculate Height of Shaft Keyway given Ratio of Torsional Strength of Shaft with Keyway to without Keyway using this online calculator? To use this online calculator for Height of Shaft Keyway given Ratio of Torsional Strength of Shaft with Keyway to without Keyway, enter Diameter of Shaft with Keyway (d), Ratio of Shaft Strength (C) & Width of Key in Round Shaft (bk) and hit the calculate button. Here is how the Height of Shaft Keyway given Ratio of Torsional Strength of Shaft with Keyway to without Keyway calculation can be explained with given input values -> 4000 = 0.045/1.1*(1-0.88-0.2*0.005/0.045).

FAQ

What is Height of Shaft Keyway given Ratio of Torsional Strength of Shaft with Keyway to without Keyway?
Height of shaft keyway given ratio of torsional strength of shaft with keyway to without keyway is the top to bottom length of the keyway of a round shaft and is perpendicular to the circumference of the shaft and is represented as h = d/1.1*(1-C-0.2*bk/d) or Height of Shaft Keyway = Diameter of Shaft with Keyway/1.1*(1-Ratio of Shaft Strength-0.2*Width of Key in Round Shaft/Diameter of Shaft with Keyway). The Diameter of Shaft with Keyway is the measurement across the widest part of a shaft that includes a keyway, crucial for transmitting torque in mechanical systems, The Ratio of Shaft Strength is a measure comparing the strength of a shaft to the applied loads, helping to ensure safe and effective machine design & The Width of Key in Round Shaft is the measurement of the key used to secure components in a round shaft, influencing load distribution and stress concentration.
How to calculate Height of Shaft Keyway given Ratio of Torsional Strength of Shaft with Keyway to without Keyway?
Height of shaft keyway given ratio of torsional strength of shaft with keyway to without keyway is the top to bottom length of the keyway of a round shaft and is perpendicular to the circumference of the shaft is calculated using Height of Shaft Keyway = Diameter of Shaft with Keyway/1.1*(1-Ratio of Shaft Strength-0.2*Width of Key in Round Shaft/Diameter of Shaft with Keyway). To calculate Height of Shaft Keyway given Ratio of Torsional Strength of Shaft with Keyway to without Keyway, you need Diameter of Shaft with Keyway (d), Ratio of Shaft Strength (C) & Width of Key in Round Shaft (bk). With our tool, you need to enter the respective value for Diameter of Shaft with Keyway, Ratio of Shaft Strength & Width of Key in Round Shaft 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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