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This article is about '''CNC machine tool monitoring by AE sensors.'''
Machine Tool monitoring system is flow of [[Information processing|information]] and system processing in which the information selection, obtaining data, processing of information and decision making on the refined information are integrated. The aim of tool condition monitoring is to detect early the disturbances in the machining process and wear of machine tool components.<ref>{{Cite book|url=https://books.google.com.eg/books?id=uAi8NH6XH2MC&printsec=frontcover&dq=CNC+machine&hl=en&sa=X&ved=0ahUKEwiut83Crv_pAhVqCWMBHc23A5oQ6AEIMDAB|title=Preparing and Proving CNC Machine Tool Programs|publisher=Benchmark Media Limited|language=en}}</ref> ▼
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The condition of tool has been researched extensively in the past and have focused on detection of [[tool wear]], tool breakage and the estimation of remaining tool life. It is very important for on-line identification of tool condition in machining process for enhanced productivity, better quality of parts and lower costs for unmanned, automated manufacturing systems.<ref>{{cite web|url=http://www.eng.nus.edu.sg/EResnews/0310/rd/rd_7.html|website=www.eng.nus.edu.sg}}</ref>
== Techniques of machine tool monitoring ==
Machine tool monitoring can be done with or without additional [[Sensor|sensors]]. Using additional sensors, monitoring can be done by measuring:
* the cutting force (with a multi-channel table [[dynamometer]] or rotating dynamometer)
* [[vibration]] amplitude using multi-channel [[Accelerometer|accelerometers]]
* audible sound from the machining process
* [[High frequency|high-frequency]] sound or [[acoustic emission]]
Sensor-less machine tool monitoring is done by measuring internal drive signals such as:
* feed motor [[Electric current|current]]
* spindle motor current
* spindle power
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== Acoustic emission sensor ==
Machine tool monitoring is explained with [[Acoustic emission|Acoustic Emission]] (AE) sensors. An AE sensor is commonly defined as the sound emitted as an [[Elastic Wave|elastic wave]] by a solid when it is [[deformed]] or struck, caused by the rapid release of localized [[Stress–energy tensor|stress energy]]. Therefore, it is an occurrence phenomenon which releases [[Elastic energy|elastic energy
Rapid stress-releasing events generate a spectrum of [[Stress wave|stress waves]] starting at 0 Hz and typically falling off at several MHz. AE can be related to an irreversible release of energy. It can also be generated from sources not involving material failure including [[friction]], [[cavitation]] and impact.<ref name="auto">{{cite web|url=http://www.tms.org|title=The Minerals, Metals & Materials Society (TMS) }}</ref> The three major applications of AE sensors phenomena are: a) Source ___location - determine the locations of occurrence of an event b) Material mechanical performance - evaluate and characterize materials/structures; and c Health monitoring – monitors the safety operation.<ref name="auto" />
=== How an AE sensor monitors machine tool===
An
An AE sensor detects force proportional monitoring signals even in machining operations, which generate very small cutting forces. In combination with true power, it increases the reliability of breakage monitoring.<ref>{{cite book|last1=arbor|first1=ann|title=MTC tool and process monitoring|date=1997|publisher=Artiscompany|___location=USA}}</ref> It is used especially with solid [[carbide]] tools, or very small tools on large machines and multi spindles. Most of the sensors have to be attached to the machine tool surface.<ref>{{cite book|last1=hur|first1=Winter|title=Piezo-instrumentation|date=1997|publisher=Kistler company|___location=Switzerland}}</ref> However, there are alternative methods of AE wave transmitting. A rotating, [[wireless]] AE sensor consists of a rotating sensor and a fixed receiver.<ref>{{cite book|last1=Aachen|title=Wireless AE sensor AEL 200|publisher=Prometec company|___location=Germany}}</ref> An AE sensor can also receive the acoustic waves via a jet of cooling [[lubricant]], which can be connected directly to the tool or workpiece.<ref>{{cite book|first1=|title=Nordmann sensor technology|date=1997|publisher=Nordmann company|___location=Germany}}</ref><ref>{{cite book|title=Fluid sound sensor WAE 100|publisher=Prometec company|___location=Aachen, Germany|edition=Aachen, Germany: Prometec company}}</ref>
The
All sensors used in
==References==
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