Glass Fiber-Reinforced Polyester Composite Fatigue Crack Monitoring
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Glass Fiber-Reinforced Polyester Composite Fatigue Crack Monitoring (2016)
DE PB NW RP
ISBN: 9783659893377 bzw. 3659893374, in Deutsch, LAP Lambert Academic Publishing Jun 2016, Taschenbuch, neu, Nachdruck.
Lieferung aus: Deutschland, Versandkostenfrei.
Von Händler/Antiquariat, AHA-BUCH GmbH [51283250], Einbeck, Germany.
This item is printed on demand - Print on Demand Neuware - This book presents acoustic emission (AE) technique for detecting onset damage of composite materials damage and validate this technique using actual AE data from fatigue crack growth. Its aims are to improve understanding of the particular characteristics of AE signals; and also to determine the relationship between AE signals and the failure of the material. Time and frequency domain trends were analyzed at five different applied loads (54.2MPa, 60.97MPa, 67.75MPa, 74.52MPa, and 81.30MPa) representing 40% to 60% of the ultimate tensile strength of material. The relevant AE parameters were analyzed both in the early stages of the test and as the material neared the fracture zone. The results showed a high degree of correlation between AE parameters and the number of cycles to failure. This correlation, suggests that AE can be a valuable tool to predict the fatigue life and detect the onset of damage in such composite materials. 120 pp. Englisch.
Von Händler/Antiquariat, AHA-BUCH GmbH [51283250], Einbeck, Germany.
This item is printed on demand - Print on Demand Neuware - This book presents acoustic emission (AE) technique for detecting onset damage of composite materials damage and validate this technique using actual AE data from fatigue crack growth. Its aims are to improve understanding of the particular characteristics of AE signals; and also to determine the relationship between AE signals and the failure of the material. Time and frequency domain trends were analyzed at five different applied loads (54.2MPa, 60.97MPa, 67.75MPa, 74.52MPa, and 81.30MPa) representing 40% to 60% of the ultimate tensile strength of material. The relevant AE parameters were analyzed both in the early stages of the test and as the material neared the fracture zone. The results showed a high degree of correlation between AE parameters and the number of cycles to failure. This correlation, suggests that AE can be a valuable tool to predict the fatigue life and detect the onset of damage in such composite materials. 120 pp. Englisch.
2
Glass Fiber-Reinforced Polyester Composite Fatigue Crack Monitoring
DE HC NW
ISBN: 9783659893377 bzw. 3659893374, in Deutsch, Lap Lambert Academic Publishing, gebundenes Buch, neu.
Lieferung aus: Deutschland, Versandkostenfrei innerhalb von Deutschland.
This book presents acoustic emission (AE) technique for detecting onset damage of composite materials damage and validate this technique using actual AE data from fatigue crack growth. Its aims are to improve understanding of the particular characteristics of AE signals; and also to determine the relationship between AE signals and the failure of the material. Time and frequency domain trends were analyzed at five different applied loads (54.2MPa, 60.97MPa, 67.75MPa, 74.52MPa, and 81.30MPa) This book presents acoustic emission (AE) technique for detecting onset damage of composite materials damage and validate this technique using actual AE data from fatigue crack growth. Its aims are to improve understanding of the particular characteristics of AE signals; and also to determine the relationship between AE signals and the failure of the material. Time and frequency domain trends were analyzed at five different applied loads (54.2MPa, 60.97MPa, 67.75MPa, 74.52MPa, and 81.30MPa) representing 40% to 60% of the ultimate tensile strength of material. The relevant AE parameters were analyzed both in the early stages of the test and as the material neared the fracture zone. The results showed a high degree of correlation between AE parameters and the number of cycles to failure. This correlation, suggests that AE can be a valuable tool to predict the fatigue life and detect the onset of damage in such composite materials. Lieferzeit 1-2 Werktage.
This book presents acoustic emission (AE) technique for detecting onset damage of composite materials damage and validate this technique using actual AE data from fatigue crack growth. Its aims are to improve understanding of the particular characteristics of AE signals; and also to determine the relationship between AE signals and the failure of the material. Time and frequency domain trends were analyzed at five different applied loads (54.2MPa, 60.97MPa, 67.75MPa, 74.52MPa, and 81.30MPa) This book presents acoustic emission (AE) technique for detecting onset damage of composite materials damage and validate this technique using actual AE data from fatigue crack growth. Its aims are to improve understanding of the particular characteristics of AE signals; and also to determine the relationship between AE signals and the failure of the material. Time and frequency domain trends were analyzed at five different applied loads (54.2MPa, 60.97MPa, 67.75MPa, 74.52MPa, and 81.30MPa) representing 40% to 60% of the ultimate tensile strength of material. The relevant AE parameters were analyzed both in the early stages of the test and as the material neared the fracture zone. The results showed a high degree of correlation between AE parameters and the number of cycles to failure. This correlation, suggests that AE can be a valuable tool to predict the fatigue life and detect the onset of damage in such composite materials. Lieferzeit 1-2 Werktage.
3
Glass Fiber-Reinforced Polyester Composite Fatigue Crack Monitoring
EN NW
ISBN: 9783659893377 bzw. 3659893374, in Englisch, neu.
Lieferung aus: Schweiz, zzgl. Versandkosten, Versandfertig innert 3 - 5 Werktagen.
Glass Fiber-Reinforced Polyester Composite Fatigue Crack Monitoring, This book presents acoustic emission (AE) technique for detecting onset damage of composite materials damage and validate this technique using actual AE data from fatigue crack growth. Its aims are to improve understanding of the particular characteristics of AE signals; and also to determine the relationship between AE signals and the failure of the material. Time and frequency domain trends were analyzed at five different applied loads (54.2MPa, 60.97MPa, 67.75MPa, 74.52MPa, and 81.30MPa) representing 40% to 60% of the ultimate tensile strength of material. The relevant AE parameters were analyzed both in the early stages of the test and as the material neared the fracture zone. The results showed a high degree of correlation between AE parameters and the number of cycles to failure. This correlation, suggests that AE can be a valuable tool to predict the fatigue life and detect the onset of damage in such composite materials.
Glass Fiber-Reinforced Polyester Composite Fatigue Crack Monitoring, This book presents acoustic emission (AE) technique for detecting onset damage of composite materials damage and validate this technique using actual AE data from fatigue crack growth. Its aims are to improve understanding of the particular characteristics of AE signals; and also to determine the relationship between AE signals and the failure of the material. Time and frequency domain trends were analyzed at five different applied loads (54.2MPa, 60.97MPa, 67.75MPa, 74.52MPa, and 81.30MPa) representing 40% to 60% of the ultimate tensile strength of material. The relevant AE parameters were analyzed both in the early stages of the test and as the material neared the fracture zone. The results showed a high degree of correlation between AE parameters and the number of cycles to failure. This correlation, suggests that AE can be a valuable tool to predict the fatigue life and detect the onset of damage in such composite materials.
4
Symbolbild
Glass Fiber-Reinforced Polyester Composite Fatigue Crack Monitoring (2016)
DE PB NW RP
ISBN: 9783659893377 bzw. 3659893374, in Deutsch, LAP LAMBERT Academic Publishing, Taschenbuch, neu, Nachdruck.
Lieferung aus: Deutschland, Versandkostenfrei.
Von Händler/Antiquariat, English-Book-Service Mannheim [1048135], Mannheim, Germany.
This item is printed on demand for shipment within 3 working days.
Von Händler/Antiquariat, English-Book-Service Mannheim [1048135], Mannheim, Germany.
This item is printed on demand for shipment within 3 working days.
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