Importance
of vibration analysis, nor do they measure vibration often.
Let’s say you work at a factory, right? You work
every day, clock in, clock out, you pass by this high-vibration fan. One day, you walk by it, and it sounds… off, you’re not sure how. Just
funny. Swoosh, swoosh, swing… swoosh, swoosh, swing – report that to the
manager!
Rather than rely on curious and responsible
employees, site leaders and facility administrators can empower their teams to
deal with high vibration fan performance by encouraging them to use
sensors to measure vibration.
As opposed to manually checking machines, which can
lead to error, especially in expansive operations, the sensors do the work.
Even better, they do it precisely, accurately, and on the nose!
Engineers hate system breakdowns (as do managers
and CEOs). That said, one thing that can help avoid them is investing in
capital with a vibration analysis program that allows site inspectors to measure
vibration around the clock. Hint: Think digital.
What is vibration analysis?
It is basically a method to measure vibration in
order to detect faults in industrial machines. With the help of FFT algorithms,
vibration measuring tools separate signals into frequency and amplitude
components to allow engineers to locate current and impending failures.
What kind of faults can be identified through
vibration analysis solutions?
Vibration analysis sensors are capable of detecting
almost any kind of fault in industrial machines. Here are some faults that can
be identified by analysis solutions:
1. Excessive speeds
2. Pump cavitation
3. Gearbox problems
4. Bent shaft
5. Motor electrical faults
6. Natural and resonance frequencies
7. Misalignment
8. Mechanical ampleness
9. Bearing faults
10. Imbalance
Vibration analysis is a solution that has a lot of
potential, especially when it comes to the need to check faults. Here, a plan
for maintenance can be primed, preventing down time and boosting performance
overall. A broad range of gear is available here: www.stiweb.com.
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