MEEN 260 MEEN260 Lab 02 Memo Final Draft – Texas A&M
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MEEN 260 MEEN260 Lab 02 Memo Final Draft – Texas A&M
MEEN 260- SEC 500 9/18/2020
To: Deokgeun Park
From: Daniel Aselin
Subject: Electro-Magnetism
Summary
An electro-magnetism experiment was performed to help gain an understanding of relays and demonstrate how measurements can simplify the learning method.
We carefully inspected the relay, then disassembled it and connected the ohmmeter at the station. The resulting mean was .555 N.
We then use similar triangles to estimate the corresponding displacement of the spring. The resulting displacement was .212 mm and this the full movement of the spring. We then used mean force value and the displacement to calculate the equivalent stiffness.
Description
MEEN 260 MEEN260 Lab 02 Memo Final Draft – Texas A&M
MEEN 260- SEC 500 9/18/2020
To: Deokgeun Park
From: Daniel Aselin
Subject: Electro-Magnetism
Summary
An electro-magnetism experiment was performed to help gain an understanding of relays and demonstrate how measurements can simplify the learning method.
We carefully inspected the relay, then disassembled it and connected the ohmmeter at the station. The resulting mean was .555 N.
We then use similar triangles to estimate the corresponding displacement of the spring. The resulting displacement was .212 mm and this the full movement of the spring. We then used mean force value and the displacement to calculate the equivalent stiffness.
The equivalent stiffness was 2624 N/m, and this is the extent to which the spring resists deformation in response to the applied force.
Furthermore, we reassembled the relay and measured the resistance of the coil and then the sense resistor and calculated the time constant which was .0151.
We then calculated the current of the relay which came out to be .901 Amps. Finally, we connected the power supply to the relay and slowly decrease the voltage until the relay reopens. These results shown below in Table 2.
Introduction
Relays are switching devices that open and close using minimal current while carrying hundreds of amps. They are used in almost all modern machinery for remote switching and controlling high voltage in power supplies.
It allows for the opening and closing of a circuit. The lab showed to how calculate the theoretical time constant of the relay closing while also calculating the experimental time constant of the relay closing using LabVIEW software.
The experiment introduced the concepts of steady state, and how the electromagnetic system operates. It also provided the opportunity to gain knowledge of simple electromagnetic forces and demonstrate how measurements can simplify the learning method.
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