Acta Metallurgica Sinica (English Letters) ›› 2019, Vol. 32 ›› Issue (10): 1244-1252.DOI: 10.1007/s40195-019-00888-1
Special Issue: 2019年复合材料专辑
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Xu Kong1,2, Yu-Min Wang1(), Xu Zhang1, Qing Yang1, Guo-Xing Zhang1, Li-Na Yang1, Rui Yang1(
)
Received:
2018-11-24
Revised:
2019-01-11
Online:
2019-10-10
Published:
2019-09-17
Xu Kong, Yu-Min Wang, Xu Zhang, Qing Yang, Guo-Xing Zhang, Li-Na Yang, Rui Yang. Monitoring Damage Evolution in a Titanium Matrix Composite Shaft Under Torsion Loading Using Acoustic Emission[J]. Acta Metallurgica Sinica (English Letters), 2019, 32(10): 1244-1252.
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Specimen | Torsional rigidity (kN m2) | Torsional strength (N m) | Fatigue life (Torque = 5500 N m) |
---|---|---|---|
Matrix shaft | 12.87 | 7250 | 48,000 |
TMC shaft | 17.63 | 9408 | 164,352 |
Table 1 Mechanical properties obtained during the test
Specimen | Torsional rigidity (kN m2) | Torsional strength (N m) | Fatigue life (Torque = 5500 N m) |
---|---|---|---|
Matrix shaft | 12.87 | 7250 | 48,000 |
TMC shaft | 17.63 | 9408 | 164,352 |
AE signal type | Amplitude range (dB) | Waveform pattern shape | Frequency centroid (kHz) |
---|---|---|---|
Mechanical noise | 45-85 | Creeping rise and slow attenuation | 200-350 |
Interface debonding | 45-70 | Sharp rise and rapid attention | 400-950 |
Matrix deformation | 45-90 | Sharp rise and rapid attention | 150-1000 |
90-110 | 250-450 | ||
Fiber fracture | 90-115 | Sharp rise and rapid attention | 450-600 |
Table 2 Characteristics of several typical AE signals obtained during the test
AE signal type | Amplitude range (dB) | Waveform pattern shape | Frequency centroid (kHz) |
---|---|---|---|
Mechanical noise | 45-85 | Creeping rise and slow attenuation | 200-350 |
Interface debonding | 45-70 | Sharp rise and rapid attention | 400-950 |
Matrix deformation | 45-90 | Sharp rise and rapid attention | 150-1000 |
90-110 | 250-450 | ||
Fiber fracture | 90-115 | Sharp rise and rapid attention | 450-600 |
Fig. 11 Damage evolution in the torsion fatigue test: a periodic AE signals in the initial stage, b first fiber break in the torsion fatigue process, c AE response in the fast fracture stage
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