Tungsten Wire Resistance Test | 12Vdc | Fluke Clamp Meter

In summary, when supplying power to a tungsten wire, the resistance does not change, even when the temperature rises.
  • #1
magmash
18
0
Hi guys

I have been playing around with a piece of tungsten wire by supplying it with 12Vdc and measuring the current draw to see how much the resistance changes when the wire is glowing hot. while doing this i am not getting any change in the resistance, the wire has the same resistance when its cool (no power supplied), and when its Glowing hot (supplied with power), shouldn't the resistance change when the temperature rise in the wire ? .

I am using Ohms law to calculate the resistance while the tungsten wire is being supplied with power
R=V/I, i am measuring the voltage with a Multimeter and the current with a Clamp meter (Fluke).
 
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  • #3
M Quack said:
Yes, the resistance should increase. Maybe the current reading is off? DC currents are difficult to measure with a current clamp.

http://hypertextbook.com/facts/2004/DeannaStewart.shtml

http://en.wikipedia.org/wiki/Current_clamp

I have had no problem with measuring DC currents, did the same experiment with a light bulb and got what i expected, higher resistance.


Does the resistance get higher with the temperature on every conductor Copper, Aluminum, ect ?
 
  • #4
magmash said:
Hi guys

I have been playing around with a piece of tungsten wire by supplying it with 12Vdc and measuring the current draw to see how much the resistance changes when the wire is glowing hot. while doing this i am not getting any change in the resistance, the wire has the same resistance when its cool (no power supplied), and when its Glowing hot (supplied with power), shouldn't the resistance change when the temperature rise in the wire ? .

I am using Ohms law to calculate the resistance while the tungsten wire is being supplied with power
R=V/I, i am measuring the voltage with a Multimeter and the current with a Clamp meter (Fluke).

To be more accurate, you can't be "Using Ohm's Law" in fact, because Ohm's Law requires the temperature to be constant. What you are doing is to use the Formula R = V/I, which is the definition of the Resistance. In this case, you will be measuring different values of resistance as the temperature varies so Ohm's Law is not part of what you are doing. Diodes and other devices are definitely not 'Ohmic resistances' yet you can still measure V/I and get a value for a resistance.

This is not 'the Maths Police' talking. I am just pointing our that confusion can arrive when a term like Ohm's Law is used in the wrong context. People can make assumptions and fall down a hole.
 
  • #5
magmash said:
Hi guys

I have been playing around with a piece of tungsten wire by supplying it with 12Vdc and measuring the current draw to see how much the resistance changes when the wire is glowing hot. while doing this i am not getting any change in the resistance, the wire has the same resistance when its cool (no power supplied), and when its Glowing hot (supplied with power), shouldn't the resistance change when the temperature rise in the wire ? .

I am using Ohms law to calculate the resistance while the tungsten wire is being supplied with power
R=V/I, i am measuring the voltage with a Multimeter and the current with a Clamp meter (Fluke).

What are you supplying power with? A battery or a 12v power supply?
 
  • #6
http://personal.tcu.edu/zerda/manual/lab22.htm has a graph of the variation of resistivity of tungsten with temperature. It covers a temperature range that you won't achieve but you can see the variation between room temperature (300K) and dull red heat (1000K). That's something you should easily achieve.
There may be something 'not optimal' (i.e. wrong) with your measuring arrangement. You need to be careful about where you measure the PD across the wire. For instance, do not include the connections to the power supply as there may be contact resistance where the current comes on and off the wire. Measure PD between two points near each end of the wire and also measure the current and volts simultaneously. If you are using the same multimeter for each measurement, the resistance of the meter and connections can be affecting the current and this can affect the voltage, with and without the meter.
 

1. What is the purpose of a Tungsten Wire Resistance Test?

The purpose of a Tungsten Wire Resistance Test is to measure the resistance of a material, in this case, tungsten wire, to determine its electrical conductivity and quality.

2. How is the Tungsten Wire Resistance Test performed?

The Tungsten Wire Resistance Test is performed by connecting the tungsten wire to a power source with a 12Vdc output and using a Fluke Clamp Meter to measure the electrical resistance of the wire.

3. What is the significance of using a 12Vdc power source for the Tungsten Wire Resistance Test?

The 12Vdc power source is used to provide a consistent and standardized amount of voltage for the test, ensuring accurate and comparable results across different tests and materials.

4. How does a Fluke Clamp Meter measure resistance?

A Fluke Clamp Meter measures resistance by passing a small amount of current through the wire and measuring the voltage drop across the wire. Using Ohm's law, the resistance can then be calculated by dividing the voltage by the current.

5. What factors can affect the results of a Tungsten Wire Resistance Test?

The results of a Tungsten Wire Resistance Test can be affected by factors such as the temperature of the wire, the length and diameter of the wire, and any impurities or defects in the wire. It is important to control these variables in order to obtain accurate and reliable results.

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