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有关力学谱和内耗工作的综合与回顾
引用本文:L.B.Magalas.有关力学谱和内耗工作的综合与回顾[J].物理学进展,2006,26(3):258-276.
作者姓名:L.B.Magalas
作者单位:波兰克拉科夫科技大学金属工程与工业计算机科学学院
摘    要:本文广泛地收集了有关内耗,力学谱,超声衰减方面的专著及会议文集。反映了20世纪在此领域的英文,俄文出版的书籍。也列出了历次国际会议及前苏联,乌克兰,中国的国内会议。文中包括了点缺陷,电,声子,位错,晶界,电畴等诸方面在内的内耗与力学谱工作。

关 键 词:内耗  力学谱  力学阻尼  滯弹性  粘弹性  复模量  超声衰减
文章编号:1000-0542(2006)03、04-0258-19
收稿时间:2006-08-09
修稿时间:2006年8月9日

MECHANICAL SPECTROSCOPE AND INTERNAL FRICTION-COMPREHENSIVE COLLECTION OF WORKS. A REVIEW
L. B. Magalas.MECHANICAL SPECTROSCOPE AND INTERNAL FRICTION-COMPREHENSIVE COLLECTION OF WORKS. A REVIEW[J].Progress In Physics,2006,26(3):258-276.
Authors:L B Magalas
Abstract:An extensive collection of recommended books and proceedings from numerous conferences on internal friction, mechanical spectroscopy, and ultrasonic attenuation is provided. Reflecting the complicated history of the 20th century, books published in English and in Russian are presented in two separate sections. International and national conferences organized in various countries are listed. Supplementary lists referring to conferences held in the Soviet Union, Russia, Ukraine, and the Peoples Republic of China are also provided. The interesting evolution of mechanical spectroscopy from internal friction and ultrasonic attenuation in solids is clearly demonstrated, and a choice list of retrospective papers illustrates the evolution of the field. A brief review of mechanical spectroscopy, therefore, is included. Numerous research areas investigated by internal friction and mechanical spectroscopy are addressed, including point defect relaxations, electronic and phonon relaxations, dislocation relaxations, grain boundary relaxations, domain induced relaxations (magnetic, ferroelectric), magnetomechanical relaxations, phase transformations, interface effects as well as a wide array of applications specific to physics and materials science. For many years now, there has been a definite need to provide a thorough list of references that covers major national conferences and books published in English and other languages. The following work strives to achieve this goal.
Keywords:internal friction  mechanical spectroscopy  mechanical damping  anelasticity  viscoelasticity  complex compliance  complex modulus  ultrasonic attenuation
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