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隧道建设(中英文) ›› 2010, Vol. 30 ›› Issue (S1): 176-182.

• 研究与探索 • 上一篇    下一篇

应用电子斑点干涉术研探类岩于双刀贯切破坏之行为

陈韦志1,陈立宪2,陈尧中1,巫奇颕2   

  1. 1.台湾科技大学营建工程系,台北;2.台北科技大学土木工程学系,台北
  • 收稿日期:2010-06-12 出版日期:2010-08-14 发布日期:2010-08-25
  • 作者简介:陈韦志,男,博士班研究生,主以岩石破坏力学为研究主轴。Email:D9605201@mail.ntust.edu.tw。

Application of Electronic Speckle Pattern Interferometry to Study the Failure
Evolution of Rocklike Material under Doubledindenters

 CHEN  Hui-Zhi1, CHEN  Li-Xian2, CHEN  Yao-Zhong1, WU  Ai-Jing2   

  1. 1. Department of Construction engineering, Taiwan University of Science and Technology, Taipei;
    2. Department of Civil Engineering, Taipei University of Technology, Taipei
  • Received:2010-06-12 Online:2010-08-14 Published:2010-08-25

摘要:

回顾机械式隧道掘进工程,考量切削刀头与岩体间互制行为乃至破坏机制之极近域场研探甚少。本研究以双刀式正向楔形贯切破坏试验(normal wedge indentation fracture test)简化仿真实务钻掘工程之多刀楔切削行为为例,并配搭非破坏检测之电子斑点干涉术,探究此项接触互制行为之丛聚、初裂与裂衍等系列破坏特征。于双刀贯压位置下方某深度,采用裂缝开口位移(crack opening displacement, COD)作为回馈控制讯号,求得完整峰前、峰后之加载历程,以进行相关破坏演化之观察。受贯压之类岩(rock-like)试体以水泥砂浆行之,于无围压状态下,变化双刀间距作为主要变量,以理析开挖机具群刀互制之力学行为。再者,配合具高精度(微米)且非接触式之实时、全域性观测等优点之电子斑点干涉术,所得结果计可研探:1) 峰前延性破坏之弹-塑性发展及脆性破坏时机与方位,亦即峰前变形连续(displacement continuous)之弹-塑性界面往临界发展趋势;及变形不连续(displacement discontinuous)之初裂与裂缝演化;2) 峰后脆性破坏裂缝伸衍之发展。

关键词: 电子斑点干涉术, 双刀贯切, 弹塑性界面, 脆性初裂

Abstract:

In terms of the studies of the mechanical excavation of tunnels, there are very few researches focusing on the contact mechanism of cutting process of rock. This paper investigated the effect of groupcutter on the normal wedge indentation fracture. The specimens are indented by doubleindenters and the fracture process is monitored by electronic speckle pattern interferometry (ESPI) to investigate the failure characteristics such as localization of microcracks, initiation and propagation of macrocrack.The complete loading curves, including post peak stages, of the indentation tests are acquired by using crack opening displacement (COD) control as the feedback signal in a closedloop, hydraulic loading system (MTS). This paper presents experimental results with respect to the entire loading history including prior and postpeak behaviors of the rocklike mortar specimens. By varying the space between cutters, the effect of cutter space on the indentation mechanism is examined under unconfined lateral pressure condition. With the advantages of ESPI measurements, such as high accuracy (in micron), noncontact, realtime and wholefield, it is able to monitor the growth of elastoplastic interface and its critical value corresponding to the transit of ductile (displacement continuity) to brittle fracture (displacement discontinuity) during the indentation tests prior to peak loading.

Key words: electronic speckle pattern interferometry (ESPI), doubleindenters, elastoplastic interface, brittle crack initiation