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Damage process detection of a ceramic tile system by acoustic emission

机译:通过声发射检测瓷砖系统的损伤过程

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摘要

The debonding and falloff of ceramic tile systems are common failure modes for ceramic finishes of buildings and infrastructures due to the damage accumulation caused by application of mechanical load or changes in environmental conditions. To better understand the mechanism of the damage, a newly developed push-off test was conducted and a quantitative acoustic emission (AE) technique was developed to detect the damage processes during the loading history. The source locations of internal damage were determined by a new three-dimensional algorithm. Test results show that the growth of damage and the onset of failure can be monitored by AE technique. Also, the experimental results indicate that a probability density function of AE activity can be used to quantitatively describe the degree of damage of a material. It was found that the ceramic tile system with a lower strength adhesive displayed a higher AE rate than that with a higher strength adhesive at the same loading level prior to failure. [References: 4]
机译:瓷砖系统的脱粘和脱落是建筑和基础设施陶瓷饰面的常见失效模式,这是由于施加机械载荷或环境条件变化而造成的损坏累积。为了更好地了解损坏的机理,进行了新开发的下推测试,并开发了定量声发射(AE)技术来检测装弹过程中的损坏过程。内部损坏的来源位置是通过新的三维算法确定的。测试结果表明,损伤的增长和失效的发生可以通过自动曝光技术进行监测。此外,实验结果表明,AE活动的概率密度函数可用于定量描述材料的损坏程度。发现在相同的载荷水平下,具有较低强度粘合剂的瓷砖系统比具有较高强度粘合剂的瓷砖系统显示出更高的AE率。 [参考:4]

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