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2021 | OriginalPaper | Buchkapitel

Standard Practices for Acoustic Emission Measurement on Rotating Machinery

verfasst von : Surojit Poddar, N. Tandon

Erschienen in: Recent Developments in Acoustics

Verlag: Springer Singapore

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Abstract

Acoustic Emission Technique (AET) is a state-of-the-art method to measure faint surface vibration resulting from stress waves when a material is subjected to crack, fracture, corrosion, friction, wear, turbulence, etc. Acoustic emission is a widely used and standardized technique in the field of structural diagnosis. The technique has been extended to machinery condition monitoring in recent years. However, with the non-availability of standards dedicated to the machinery section, the measurements are mostly carried out on personal experiences. This article is a set of standard practices, drawn from already established standards, new methods conceived and applied by researchers in their work and authors’ personal experiences, for application of AET in rotating machinery.

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Literatur
1.
Zurück zum Zitat ASTM E1316 (2000) 15a. Standard terminology for nondestructive examinations-section B: acoustic emission (AE) terms. Annu B ASTM Stand 03 ASTM E1316 (2000) 15a. Standard terminology for nondestructive examinations-section B: acoustic emission (AE) terms. Annu B ASTM Stand 03
2.
Zurück zum Zitat SKF: CMSS 786M SEE/AEE (2012) Sensor mounting for on-line systems SKF: CMSS 786M SEE/AEE (2012) Sensor mounting for on-line systems
4.
Zurück zum Zitat Rodgers J (1994) The “Use of a Floating Threshold for Online Acoustic Emission Monitoring of Fossil High Energy Piping.” AE Consult Rodgers J (1994) The “Use of a Floating Threshold for Online Acoustic Emission Monitoring of Fossil High Energy Piping.” AE Consult
5.
Zurück zum Zitat Hardy HR Jr (2005) Acoustic emission/microseismic activity: principles, techniques and geotechnical applications, vol 1. CRC Press Hardy HR Jr (2005) Acoustic emission/microseismic activity: principles, techniques and geotechnical applications, vol 1. CRC Press
6.
Zurück zum Zitat Fahr A (2013) Aeronautical applications of non-destructive testing. DEStech Publications, Inc. Fahr A (2013) Aeronautical applications of non-destructive testing. DEStech Publications, Inc.
7.
Zurück zum Zitat RDSO: BS-104 (2002) Guidelines on use of acoustic emission technique (AET) on railway bridges RDSO: BS-104 (2002) Guidelines on use of acoustic emission technique (AET) on railway bridges
8.
Zurück zum Zitat Mirhadizadeh SA, Moncholi EP, Mba D (2010) Influence of operational variables in a hydrodynamic bearing on the generation of acoustic emission. Tribol Int 43:1760–1767CrossRef Mirhadizadeh SA, Moncholi EP, Mba D (2010) Influence of operational variables in a hydrodynamic bearing on the generation of acoustic emission. Tribol Int 43:1760–1767CrossRef
9.
Zurück zum Zitat ASTM: ASTM E 650-97 (1997) Standard guide for mounting piezoelectric acoustic emission sensors ASTM: ASTM E 650-97 (1997) Standard guide for mounting piezoelectric acoustic emission sensors
10.
Zurück zum Zitat Vallen (2016) Acoustic emission preamplifiers specification brochure Vallen (2016) Acoustic emission preamplifiers specification brochure
11.
Zurück zum Zitat Dong D, Xiangdong Z, Libin L (2014) Research on relationship between parameters correlation of acoustic emission and rock failure. Sens Transducers 183:147 Dong D, Xiangdong Z, Libin L (2014) Research on relationship between parameters correlation of acoustic emission and rock failure. Sens Transducers 183:147
12.
Zurück zum Zitat Tandon N, Nakra BC (1992) Comparison of vibration and acoustic measurement techniques for the condition monitoring of rolling element bearings. Tribol Int 25:205–212CrossRef Tandon N, Nakra BC (1992) Comparison of vibration and acoustic measurement techniques for the condition monitoring of rolling element bearings. Tribol Int 25:205–212CrossRef
13.
Zurück zum Zitat Tandon N, Ramakrishna KM, Yadava GS (2007) Condition monitoring of electric motor ball bearings for the detection of grease contaminants. Tribol Int 40:29–36CrossRef Tandon N, Ramakrishna KM, Yadava GS (2007) Condition monitoring of electric motor ball bearings for the detection of grease contaminants. Tribol Int 40:29–36CrossRef
14.
Zurück zum Zitat Toutountzakis T, Tan CK, Mba D (2005) Application of acoustic emission to seeded gear fault detection. NDT E Int. 38:27–36CrossRef Toutountzakis T, Tan CK, Mba D (2005) Application of acoustic emission to seeded gear fault detection. NDT E Int. 38:27–36CrossRef
15.
Zurück zum Zitat Poddar S, Tandon N (2016) Detection of journal bearing vapour cavitation using vibration and acoustic emission techniques with the aid of oil film photography. Tribol Int 103:95–101CrossRef Poddar S, Tandon N (2016) Detection of journal bearing vapour cavitation using vibration and acoustic emission techniques with the aid of oil film photography. Tribol Int 103:95–101CrossRef
16.
Zurück zum Zitat Hase A, Mishina H, Wada M (2016) Fundamental study on early detection of seizure in journal bearing by using acoustic emission technique. Wear 346:132–139CrossRef Hase A, Mishina H, Wada M (2016) Fundamental study on early detection of seizure in journal bearing by using acoustic emission technique. Wear 346:132–139CrossRef
17.
Zurück zum Zitat Miettinen J, Andersson P (2000) Acoustic emission of rolling bearings lubricated with contaminated grease. Tribol Int 33:777–787CrossRef Miettinen J, Andersson P (2000) Acoustic emission of rolling bearings lubricated with contaminated grease. Tribol Int 33:777–787CrossRef
18.
Zurück zum Zitat Arroll C, Aly S, others (2005) Fracture, fatigue, failure, and damage evolution, vol 5. Springer Arroll C, Aly S, others (2005) Fracture, fatigue, failure, and damage evolution, vol 5. Springer
19.
Zurück zum Zitat PAC (2005) Physical acoustic corporation’s AE system manual, New Jersey, USA PAC (2005) Physical acoustic corporation’s AE system manual, New Jersey, USA
20.
Zurück zum Zitat Wright AP (2009) A multi-axis capacitive MEMS sensor system for acoustic emission sensing. ProQuest Wright AP (2009) A multi-axis capacitive MEMS sensor system for acoustic emission sensing. ProQuest
21.
Zurück zum Zitat Noma H, Tabaru T, Akiyama M, Miyoshi N, Hayano T, Cho H (2007) High-temperature acoustic emission sensing using aluminum nitride sensor. In: The sixth international conference on acoustic emission (Acoustic Emission Working Group), South Lake Tahoe (USA) Noma H, Tabaru T, Akiyama M, Miyoshi N, Hayano T, Cho H (2007) High-temperature acoustic emission sensing using aluminum nitride sensor. In: The sixth international conference on acoustic emission (Acoustic Emission Working Group), South Lake Tahoe (USA)
25.
Zurück zum Zitat Kirk KJ, Scheit CW, Schmarje N (2007) High-temperature acoustic emission tests using lithium niobate piezocomposite transducers. Insight-Non-Destruct Test Cond Monit 49:142–145CrossRef Kirk KJ, Scheit CW, Schmarje N (2007) High-temperature acoustic emission tests using lithium niobate piezocomposite transducers. Insight-Non-Destruct Test Cond Monit 49:142–145CrossRef
26.
Zurück zum Zitat Gibbs V, Cole D, Sassano A (2011) Ultrasound physics and technology: how, why and when. Elsevier Health Sciences Gibbs V, Cole D, Sassano A (2011) Ultrasound physics and technology: how, why and when. Elsevier Health Sciences
28.
Zurück zum Zitat Xu Y, Wang X, Wang Y (2012) Improved or green wave-guide methods in the acoustic emission inspection of high/low-temperature or complicated vessels. In: 2012 Third global congress on intelligent systems (GCIS), pp 323–326 Xu Y, Wang X, Wang Y (2012) Improved or green wave-guide methods in the acoustic emission inspection of high/low-temperature or complicated vessels. In: 2012 Third global congress on intelligent systems (GCIS), pp 323–326
29.
Zurück zum Zitat Dong S, Wu Q, Xu J, Acoustic emission in-service detection of cryogenic storage tank floors Dong S, Wu Q, Xu J, Acoustic emission in-service detection of cryogenic storage tank floors
30.
Zurück zum Zitat Theobald P, Zeqiri B, Avison J (2008) Couplants and their influence on AE sensor sensitivity. J Acoust Emiss 26:91–97 Theobald P, Zeqiri B, Avison J (2008) Couplants and their influence on AE sensor sensitivity. J Acoust Emiss 26:91–97
31.
Zurück zum Zitat Sause MGR (2011) Investigation of pencil-lead breaks as acoustic emission sources. J Acoust Emiss 29 Sause MGR (2011) Investigation of pencil-lead breaks as acoustic emission sources. J Acoust Emiss 29
32.
Zurück zum Zitat Zakharov DA, Ptichkov SN, Shemyakin VV (2010) Acoustic emission signal attenuation in the waveguides used in underwater AE testing. ECNDT 2010-Acoustic Emiss Zakharov DA, Ptichkov SN, Shemyakin VV (2010) Acoustic emission signal attenuation in the waveguides used in underwater AE testing. ECNDT 2010-Acoustic Emiss
33.
Zurück zum Zitat Ono K, Cho H (2004) Rods and tubes as AE waveguides. J Acoust Emiss 22:243–252 Ono K, Cho H (2004) Rods and tubes as AE waveguides. J Acoust Emiss 22:243–252
34.
Zurück zum Zitat Neill IT, Oppenheim IJ, Greve DW (2007) A wire-guided transducer for acoustic emission sensing. In: The 14th international symposium on: smart structures and materials & nondestructive evaluation and health monitoring, p 652913 Neill IT, Oppenheim IJ, Greve DW (2007) A wire-guided transducer for acoustic emission sensing. In: The 14th international symposium on: smart structures and materials & nondestructive evaluation and health monitoring, p 652913
35.
Zurück zum Zitat Pearson SH, Huston D (2014) Nonlinear ball chain waveguides for acoustic emission and ultrasound sensing of ablation. In: SPIE smart structures and materials + nondestructive evaluation and health monitoring, pp 90642P–90642P Pearson SH, Huston D (2014) Nonlinear ball chain waveguides for acoustic emission and ultrasound sensing of ablation. In: SPIE smart structures and materials + nondestructive evaluation and health monitoring, pp 90642P–90642P
36.
Zurück zum Zitat Hellier C (2001) Handbook of nondestructive evaluation. McGraw-Hill Hellier C (2001) Handbook of nondestructive evaluation. McGraw-Hill
Metadaten
Titel
Standard Practices for Acoustic Emission Measurement on Rotating Machinery
verfasst von
Surojit Poddar
N. Tandon
Copyright-Jahr
2021
Verlag
Springer Singapore
DOI
https://doi.org/10.1007/978-981-15-5776-7_24

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