Net heat per unit volume available for Arc welding Solution

STEP 0: Pre-Calculation Summary
Formula Used
Heat Required per Unit Volume = Input Power/(Travel Speed of Electrode*Area)
hvolume = Pin/(v*A)
This formula uses 4 Variables
Variables Used
Heat Required per Unit Volume - (Measured in Joule per Cubic Meter) - Heat Required per Unit Volume is the heat required for a certain purposes to be supplied per unit volume of material.
Input Power - (Measured in Watt) - Input Power is the power, which is required by the appliance at its input i.e., from the plug point.
Travel Speed of Electrode - (Measured in Meter per Second) - Travel Speed of Electrode is the speed at which an electrode travel during arc welding.
Area - (Measured in Square Meter) - The area is the amount of two-dimensional space taken up by an object.
STEP 1: Convert Input(s) to Base Unit
Input Power: 46 Watt --> 46 Watt No Conversion Required
Travel Speed of Electrode: 5.5 Millimeter per Second --> 0.0055 Meter per Second (Check conversion here)
Area: 50 Square Meter --> 50 Square Meter No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
hvolume = Pin/(v*A) --> 46/(0.0055*50)
Evaluating ... ...
hvolume = 167.272727272727
STEP 3: Convert Result to Output's Unit
167.272727272727 Joule per Cubic Meter --> No Conversion Required
FINAL ANSWER
167.272727272727 167.2727 Joule per Cubic Meter <-- Heat Required per Unit Volume
(Calculation completed in 00.020 seconds)

Credits

Created by Rajat Vishwakarma
University Institute of Technology RGPV (UIT - RGPV), Bhopal
Rajat Vishwakarma has created this Calculator and 400+ more calculators!
Verified by Chilvera Bhanu Teja
Institute of Aeronautical Engineering (IARE), Hyderabad
Chilvera Bhanu Teja has verified this Calculator and 200+ more calculators!

11 Heat Input in Welding Calculators

Net heat supplied to joint
Go Heat Required per Unit Volume = Heat Transfer Efficiency*Electrode Potential*Electric Current/(Melting Efficiency*Travel Speed of Electrode*Area)
Heat required to Melt Joint
Go Heat Required = Mass*((Specific Heat Capacity at Constant Pressure*Rise in Temperature)+Latent Heat of Fusion)
Total heat generated in resistance welding
Go Heat Generated = Constant to Account for Heat Losses*Input Current^2*Resistance*Time
Rated Duty Cycle given Actual Duty Cycle
Go Rated Duty Cycle = Required Duty Cycle*(Maximum current new add/Rated Current)^2
Required Duty cycle for arc welding
Go Required Duty Cycle = Rated Duty Cycle*(Rated Current/Maximum current new add)^2
Net heat per unit volume available for Arc welding
Go Heat Required per Unit Volume = Input Power/(Travel Speed of Electrode*Area)
Heat Transfer Efficiency
Go Heat Transfer Efficiency = Net Heat Supplied/Heat Generated
Power given Electric Potential Difference and Electric Current
Go Power = Electric Potential Difference*Electric Current
Power given Electric Potential Difference and Resistance
Go Power = (Electric Potential Difference^2)/Resistance
Melting Efficiency
Go Melting Efficiency = Heat Required/Net Heat Supplied
Power given Electric Current and Resistance
Go Power = Electric Current^2*Resistance

Net heat per unit volume available for Arc welding Formula

Heat Required per Unit Volume = Input Power/(Travel Speed of Electrode*Area)
hvolume = Pin/(v*A)

How much actual heat is generated during arc welding?

For the melting of the weld joint, it is necessary to know the exact amount of heat that is entering the joint. Since the electrode will be moving at a given velocity, v, therefore actual heat available for melting the joint is to be determined by considering travel speed of tip and weld bead area.

How to Calculate Net heat per unit volume available for Arc welding?

Net heat per unit volume available for Arc welding calculator uses Heat Required per Unit Volume = Input Power/(Travel Speed of Electrode*Area) to calculate the Heat Required per Unit Volume, The Net heat per unit volume available for Arc welding is obtained by considering the travel speed of the tip of electrode during welding. Heat Required per Unit Volume is denoted by hvolume symbol.

How to calculate Net heat per unit volume available for Arc welding using this online calculator? To use this online calculator for Net heat per unit volume available for Arc welding, enter Input Power (Pin), Travel Speed of Electrode (v) & Area (A) and hit the calculate button. Here is how the Net heat per unit volume available for Arc welding calculation can be explained with given input values -> 167.2727 = 46/(0.0055*50).

FAQ

What is Net heat per unit volume available for Arc welding?
The Net heat per unit volume available for Arc welding is obtained by considering the travel speed of the tip of electrode during welding and is represented as hvolume = Pin/(v*A) or Heat Required per Unit Volume = Input Power/(Travel Speed of Electrode*Area). Input Power is the power, which is required by the appliance at its input i.e., from the plug point, Travel Speed of Electrode is the speed at which an electrode travel during arc welding & The area is the amount of two-dimensional space taken up by an object.
How to calculate Net heat per unit volume available for Arc welding?
The Net heat per unit volume available for Arc welding is obtained by considering the travel speed of the tip of electrode during welding is calculated using Heat Required per Unit Volume = Input Power/(Travel Speed of Electrode*Area). To calculate Net heat per unit volume available for Arc welding, you need Input Power (Pin), Travel Speed of Electrode (v) & Area (A). With our tool, you need to enter the respective value for Input Power, Travel Speed of Electrode & Area 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 Heat Required per Unit Volume?
In this formula, Heat Required per Unit Volume uses Input Power, Travel Speed of Electrode & Area. We can use 1 other way(s) to calculate the same, which is/are as follows -
  • Heat Required per Unit Volume = Heat Transfer Efficiency*Electrode Potential*Electric Current/(Melting Efficiency*Travel Speed of Electrode*Area)
Let Others Know
Facebook
Twitter
Reddit
LinkedIn
Email
WhatsApp
Copied!