首页> 外文会议>ASME(American Society of Mechanical Engineers) Pressure Vessels and Piping Conference vol.5; 20050717-21; Denver,CO(US) >Estimating the Depths of Cracks in SS Pipes by Varying the Frequency of an ACPD Sensor
【24h】

Estimating the Depths of Cracks in SS Pipes by Varying the Frequency of an ACPD Sensor

机译:通过改变ACPD传感器的频率估算SS管中的裂纹深度

获取原文
获取原文并翻译 | 示例

摘要

Alternating Current Potential Drop (ACPD) is one nondestructive evaluation method for detecting cracks within stainless steel pipes at industrial power plants. It is well known that the penetration depth of the excitation current from the ACPD sensor depends on the frequency of the applied alternating current. With respect to a "skin effect," lower frequencies produce deeper penetration. This frequency versus depth relationship can be used to judge the depth of cracks that may exist within stainless steel pipes. By varying the frequency of the alternating current supplied to the excitation circuit of an ACPD sensor, crack depths can be estimated. If the penetration depth of the excitation current nearly reaches the depth of the crack tip, then the existence of the crack will cause an increase in the current and a corresponding decrease in the potential drop measured by the ACPD sensor. On the other hand, if the penetration depth of the excitation current reaches beyond the depth of the crack tip, then the crack impedes the electrical current and causes a corresponding increase in the potential drop measured by the ACPD sensor. The frequency at which the measured potential drop flip-flops from a decrease to an increase corresponds to the depth of the crack tip, which can be calculated by using the standard equation for skin depth according to excitation frequency.
机译:交流电势降(ACPD)是一种无损评估方法,用于检测工业电厂不锈钢管道内的裂纹。众所周知,来自ACPD传感器的激励电流的穿透深度取决于所施加的交流电的频率。关于“集肤效应”,较低的频率会产生更深的穿透力。该频率与深度的关系可用于判断不锈钢管内可能存在的裂纹的深度。通过改变提供给ACPD传感器的励磁电路的交流电的频率,可以估算出裂纹深度。如果励磁电流的穿透深度几乎达到裂纹尖端的深度,则裂纹的存在将导致电流增加,而由ACPD传感器测得的电势降相应降低。另一方面,如果励磁电流的穿透深度超过裂纹尖端的深度,则裂纹会阻碍电流并导致由ACPD传感器测得的电势降相应增加。测得的电位下降触发器从减小到增大的频率对应于裂纹尖端的深度,可以根据激励频率使用趋肤深度的标准公式来计算裂纹尖端的深度。

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