Resistance of Top Weld given Total Resistance Solution

STEP 0: Pre-Calculation Summary
Formula Used
Resistance of top weld = (Total resistance*Distance of Bottom Weld from Gravity Axis)/(Distance of top weld from gravity axis+Distance of Bottom Weld from Gravity Axis)
F1 = (Fresistance*b)/(a+b)
This formula uses 4 Variables
Variables Used
Resistance of top weld - (Measured in Newton) - Resistance of top weld is a function of the resistivity and surface condition of the parent material.
Total resistance - (Measured in Newton) - Total resistance is a function of the resistivity and surface condition of the parent material.
Distance of Bottom Weld from Gravity Axis - (Measured in Meter) - Distance of bottom weld from gravity axis is the distance of the bottom edge of the angle section from gravity axis.
Distance of top weld from gravity axis - (Measured in Meter) - Distance of top weld from gravity axis is the distance of the top edge of the angle section from gravity axis.
STEP 1: Convert Input(s) to Base Unit
Total resistance: 2.1 Kilonewton --> 2100 Newton (Check conversion ​here)
Distance of Bottom Weld from Gravity Axis: 3 Millimeter --> 0.003 Meter (Check conversion ​here)
Distance of top weld from gravity axis: 2 Millimeter --> 0.002 Meter (Check conversion ​here)
STEP 2: Evaluate Formula
Substituting Input Values in Formula
F1 = (Fresistance*b)/(a+b) --> (2100*0.003)/(0.002+0.003)
Evaluating ... ...
F1 = 1260
STEP 3: Convert Result to Output's Unit
1260 Newton -->1.26 Kilonewton (Check conversion ​here)
FINAL ANSWER
1.26 Kilonewton <-- Resistance of top weld
(Calculation completed in 00.004 seconds)

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Top Weld Calculators

Distance of Top Weld from Gravity Axis given Resistance of Bottom Weld
​ LaTeX ​ Go Distance of top weld from gravity axis = Distance of Bottom Weld from Gravity Axis/((Total resistance)/Resistance of bottom weld-1)
Distance of Top Weld from Gravity Axis given Length of Bottom Weld and Total Length of Weld
​ LaTeX ​ Go Distance of top weld from gravity axis = Distance of Bottom Weld from Gravity Axis/(Total length of weld/Length of Top Weld-1)
Distance of Top Weld from Gravity Axis given Length of Top Weld and Total Length of Weld
​ LaTeX ​ Go Distance of top weld from gravity axis = (Total length of weld/Length of Top Weld-1)*Distance of Bottom Weld from Gravity Axis
Distance of Top Weld from Gravity Axis given Length of Top Weld
​ LaTeX ​ Go Distance of top weld from gravity axis = (Length of Bottom Weld*Distance of Bottom Weld from Gravity Axis)/Length of Top Weld

Resistance of Top Weld given Total Resistance Formula

​LaTeX ​Go
Resistance of top weld = (Total resistance*Distance of Bottom Weld from Gravity Axis)/(Distance of top weld from gravity axis+Distance of Bottom Weld from Gravity Axis)
F1 = (Fresistance*b)/(a+b)

What is axial load and radial load?

Radial Load is defined as the maximum force that can be applied to the shaft in the radial direction (any direction perpendicular to the motor shaft axis). Axial Load is defined as the maximum force that can be applied to the shaft in the axial direction (in the same axis as or parallel to the motor shaft axis).

How to Calculate Resistance of Top Weld given Total Resistance?

Resistance of Top Weld given Total Resistance calculator uses Resistance of top weld = (Total resistance*Distance of Bottom Weld from Gravity Axis)/(Distance of top weld from gravity axis+Distance of Bottom Weld from Gravity Axis) to calculate the Resistance of top weld, The Resistance of top weld given total resistance formula is defined as a function of the resistivity and surface condition of the parent material. Resistance of top weld is denoted by F1 symbol.

How to calculate Resistance of Top Weld given Total Resistance using this online calculator? To use this online calculator for Resistance of Top Weld given Total Resistance, enter Total resistance (Fresistance), Distance of Bottom Weld from Gravity Axis (b) & Distance of top weld from gravity axis (a) and hit the calculate button. Here is how the Resistance of Top Weld given Total Resistance calculation can be explained with given input values -> 0.00126 = (2100*0.003)/(0.002+0.003).

FAQ

What is Resistance of Top Weld given Total Resistance?
The Resistance of top weld given total resistance formula is defined as a function of the resistivity and surface condition of the parent material and is represented as F1 = (Fresistance*b)/(a+b) or Resistance of top weld = (Total resistance*Distance of Bottom Weld from Gravity Axis)/(Distance of top weld from gravity axis+Distance of Bottom Weld from Gravity Axis). Total resistance is a function of the resistivity and surface condition of the parent material, Distance of bottom weld from gravity axis is the distance of the bottom edge of the angle section from gravity axis & Distance of top weld from gravity axis is the distance of the top edge of the angle section from gravity axis.
How to calculate Resistance of Top Weld given Total Resistance?
The Resistance of top weld given total resistance formula is defined as a function of the resistivity and surface condition of the parent material is calculated using Resistance of top weld = (Total resistance*Distance of Bottom Weld from Gravity Axis)/(Distance of top weld from gravity axis+Distance of Bottom Weld from Gravity Axis). To calculate Resistance of Top Weld given Total Resistance, you need Total resistance (Fresistance), Distance of Bottom Weld from Gravity Axis (b) & Distance of top weld from gravity axis (a). With our tool, you need to enter the respective value for Total resistance, Distance of Bottom Weld from Gravity Axis & Distance of top weld from gravity axis and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
How many ways are there to calculate Resistance of top weld?
In this formula, Resistance of top weld uses Total resistance, Distance of Bottom Weld from Gravity Axis & Distance of top weld from gravity axis. We can use 3 other way(s) to calculate the same, which is/are as follows -
  • Resistance of top weld = Resistance of weld per unit length*Length of Top Weld
  • Resistance of top weld = Axial load on angle-Resistance of bottom weld
  • Resistance of top weld = Moment of Inertia of Weld/(Distance of top weld from gravity axis)
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