Characteristics of A. E. Spectrum On the development of amonitoring system for structures by acoustic emission (III)
This report (III) describes spectral characteristics of the A. E. waves, when materials ar subjected to various types of loads: uniaxial compressive, flexural and splitting loads. Previously, we were able to discover more or less that there are some frequencial characteristics of A. E. on the way of...
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          | Published in | Transactions of The Japanese Society of Irrigation, Drainage and Reclamation Engineering Vol. 1984; no. 112; pp. 87 - 92,a2 | 
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| Main Authors | , , , | 
| Format | Journal Article | 
| Language | Japanese | 
| Published | 
            The Japanese Society of Irrigation, Drainage and Rural Engineering
    
        25.08.1984
     | 
| Online Access | Get full text | 
| ISSN | 0387-2335 1884-7234  | 
| DOI | 10.11408/jsidre1965.1984.112_87 | 
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| Abstract | This report (III) describes spectral characteristics of the A. E. waves, when materials ar subjected to various types of loads: uniaxial compressive, flexural and splitting loads. Previously, we were able to discover more or less that there are some frequencial characteristics of A. E. on the way of progressing failure process of materials. In this report, we were able to clarify this more definitely and obtain the following results: (1) Relatively lower frequencial components are much better at the earlier stress state than others. (2) Relatively higher frequencial components are much better near failure point of the materials. (3) These frequencial characteristics seem to be effected by the principal stress states in the materials. (4) It can be said that the spectral distribution is one of the important parameters for the monitoring system. From the above-mentioned results, various conditions are being considered in an effort to make a more efficient monitoring system. | 
    
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| AbstractList | This report (III) describes spectral characteristics of the A. E. waves, when materials ar subjected to various types of loads: uniaxial compressive, flexural and splitting loads. Previously, we were able to discover more or less that there are some frequencial characteristics of A. E. on the way of progressing failure process of materials. In this report, we were able to clarify this more definitely and obtain the following results: (1) Relatively lower frequencial components are much better at the earlier stress state than others. (2) Relatively higher frequencial components are much better near failure point of the materials. (3) These frequencial characteristics seem to be effected by the principal stress states in the materials. (4) It can be said that the spectral distribution is one of the important parameters for the monitoring system. From the above-mentioned results, various conditions are being considered in an effort to make a more efficient monitoring system. | 
    
| Author | KOYAMA, Shuhei NAKAYA, Mituo KUWABARA, Takao KAWANAMI, Hidetugu  | 
    
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| References | 2) 渠原孝雄・中谷三男・小由修平: 繰返し荷重下におけるA. E. 特性,-A. E. 利用による構造物モニタリングシステムの開発 (II)-, 農土論集412, pp.77-86 (1984 1) 桑原孝雄・中谷竃男・小山修平: 単調載荷時のカウントレートおよびトータルカウント特性,-A. E. 利用による構造物モニタリングシステムの開発 (I)-, 農土諭集112, pp.67-75 (1984 3) Gary L. Mowrey: Computer Processing and Analysis of Microseismic Data, Proc. Ist Conf. on Acoustic Emission/Microseismic Activity in Geologic Structures and Materials, pp.427,(1977  | 
    
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| Title | Characteristics of A. E. Spectrum | 
    
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