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Guide to machine faults and how to get to root cause

90 percent of machine faults fall into four main categories: misalignment, imbalance, looseness, or bearing wear. Using root cause analysis can help you identify where a problem began and what caused it.

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Demystifying Failure Modes: Matching Machines and Failure Modes

The Fluke 810 Vibration Tester locates and identifies the four most common types of mechanical faults and allows for quick and easy assessments of overall machine health.

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3 ways to improve motor health with vibration testing

One would be hard-pressed to find a facility manager who doesn’t want maintenance operations to run as smoothly as possible. Detecting signs of motor components failure becomes easier when combined with a preventive vibration program.

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Improve uptime with new vibration analysis tools

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No expertise required: Setting up aerospace vibration sensor

To use vibration sensors, many maintenance and reliability personnel believe they have to be a vibration expert. For some sensors, this may be true. However, for the 3561 FC Vibration Sensors paired with Fluke Connect™ Condition Monitoring (FCCM) software, expertise is not required.

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Understanding the practicality of graded asset health

Identifying the severity of a problem by looking at data can be difficult. Color-coded, varying severity alarms enable maintenance managers to make better data-driven decisions.

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Which assets should be screened for vibration?

Figuring out which assets should be screened for vibration can be difficult. Installing vibration monitoring sensors on key assets can increase uptime and reduce costs.

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What is an Industrial Vibration Sensor?

Maintenance professionals may not realize how using vibration sensors can improve facility efficiency. Learn about which industrial sectors can benefit from vibration sensors.

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Top 5 benefits of vibration monitoring

Screening is an economical way to monitor assets by automating data collection. Learn more about the benefits of implementing vibration monitoring in your plant.

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When and how to use and set up vibration monitoring on assets

Breaking down the process and rationale for successfully adding these sensors for condition monitoring

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Glossary of Vibration Terms

Glossary of Vibration Terms

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From screwdrivers to testers: Vibration analysis comes of age

Most machines have rotating parts, and rotating parts vibrate. Measuring how and how much those parts vibrate can tell you a lot about the health of a machine.

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Techs are tuned in to benefits of wireless testing

Wireless testing survey results with comments and insights from Fluke tool users

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Taking a Wireless Approach Gets to the Root of the Problem Faster

Follow the experiences with wireless test tools of electrician Chipper Stohl of AECI, as he works primarily in emergency troubleshooting and repair, with some installation and maintenance.

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Software reveals power of data to more maintenance managers

CNX 3000 wireless test tool field trial by electrical contractor AECI in industrial facilities: trouble call applications

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Inspect moving machinery by putting the 'freeze' on

New stroboscope helps frontline mechanical troubleshooting teams precisely measure machine rotation and oscillation without shutting down the equipment.

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Vibration and the Fluke 810

Sometimes vibration in industrial equipment is a symptom or even a cause of trouble; other times, it is part of normal machine operation.

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Understanding Vibration Monitoring and Analysis

Vibration testing for condition-based maintenance, to reduce costs and production losses. Mechanics of testing, analyzing roller bearing faults.

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Most common causes of machine vibration

Vibration can result from a number of conditions, acting alone or in combination. Keep in mind that vibration problems might be caused by auxiliary equipment, not just the primary equipment.

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Preventing machine failure by detecting the first signs of trouble

Preventing machine failure by detecting the first signs of trouble