首页> 外文期刊>The Indian concrete journal >NON-DESTRUCTIVE TESTING OF BORED PILES USING THE LOW STRAIN PILE INTEGRITY METHOD
【24h】

NON-DESTRUCTIVE TESTING OF BORED PILES USING THE LOW STRAIN PILE INTEGRITY METHOD

机译:利用低应变桩完整性法对钻孔桩进行无损检测

获取原文
获取原文并翻译 | 示例
       

摘要

Non-destructive testing of piles has gained increased acceptance for various purposes such as Quality Control and Quality Assurance, verification of existing conditions, and quantification of dimensions. The correct use of this technique can greatly simplify and expedite investigation, and be economical in addressing concerns or questions on pile conditions. Equally, its incorrect use can cause controversies, delays or create adverse reputation for the technology. A defect present in pile will severely reduce the structural load carrying capacity of the pile. Therefore, post construction test to verify the integrity of piles are extremely important. A most commonly used post construction integrity test is a low strain Pile Integrity Test commonly referred as PIT. In this type of integrity test a low strain dynamic impulse is given to the pile top by hand held hammer and the velocity of pile top is monitored using accelerometer. The low strain impulse generates a low strain wave that propagates through the pile and reflected from various places where there is change in properties of concrete, cross-section area of pile or stiffness of soil surrounding the pile. Such defects are recorded based on reflections detected by accelerometer. The present paper covers the interpretation of pile integrity test conducted on different deep bored piles in project executed in Delhi. This paper also presents the signal characteristics and their interpretations from low strain pile integrity test performed on mainly bored piles varying in length, size, construction method and founded soil strata. In this paper, the locations of accelerometer on the pile head which has a major influence on the test signals also has been discussed.
机译:对于各种目的而言,桩的非破坏性测试已增加接受,例如质量控制和质量保证,验证现有条件,以及维度的量化。正确使用这种技术可以大大简化和加快调查,并在解决桩状条件的问题或问题方面是经济的。同样,它的使用不正确可能会导致争议,延迟或创造技术的不利声誉。桩中存在的缺陷将严重降低桩的结构载荷承载能力。因此,后施工测试验证桩的完整性极为重要。最常用的后施工完整性测试是一种低应变桩完整性测试,通常称为坑。在这种完整性测试中,通过手持式锤给桩顶部给出低应变动态脉冲,并使用加速度计监测桩顶的速度。低应变脉冲产生低应变波,该低应变波通过桩传播并从各种场所反射,其中围绕桩周围的土壤桩或土壤刚度的特性发生变化。基于加速度计检测的反射记录这种缺陷。本文涵盖了德里在德里在项目中不同深钻桩进行的桩完整性试验的解释。本文还介绍了从长度,尺寸,施工方法和成立土层的低应变桩完整性测试的信号特性及其从低应变桩完整性测试的解释。在本文中,还讨论了对桩头上的加速度计的位置也讨论了对测试信号的主要影响。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号