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Vertical optimization arraying method of composite transducer acoustic array
The invention discloses a vertical optimization arraying method of a composite transducer acoustic array. The method comprises the following steps: S1, selecting a detection probe; s2, increasing the number of the sound wave probes; s3, vertically arraying the sonic probes; and S4, applying the array structure. According to the invention, by optimizing the arrangement mode, the staggered-layer stacked honeycomb type ultrasonic sensor array is formed, so that the feasibility of increasing the number of the probes to improve the detection fineness of the ultrasonic pore-forming detector is realized, the defects in the prior art are overcome, high-resolution well hole form details are obtained, the drilling and pore-forming quality detection performance is obviously improved, and the detection efficiency is improved. The drilling engineering quality is controlled through comprehensive detection of the drilling form, contour and characteristics, potential risks such as hole wall chipping and too soft soil texture are effectively checked, it is guaranteed that hole wall chipping defects and deformation of a reinforcement cage are not missed or mistakenly detected, the quality of the drilled hole and the quality of a protection layer of the reinforcement cage can be conveniently, efficiently, accurately and visually judged, and the construction efficiency is improved. Concealed local defects are found, and actual production requirements are met.
本发明公开了一种复合型换能器声基阵的垂直优化布阵方法,包括S1、检测探头选型;S2、增加声波探头的数量;S3、声波探头垂直布阵;S4、布阵结构应用。本发明通过优化布阵方式,形成错层堆叠蜂窝式的超声波传感器阵列,使增加探头数量以提高超声波成孔检测仪的检测精细度具有可行性,克服了现有技术的缺陷,获取高分辨的井孔形态的细节,显著提升钻孔成孔质量检测性能,对钻孔形态、轮廓和特征的全面检测对钻孔工程质量进行把关,对孔壁掉块、土质过软等潜在风险隐患进行有效排查,保证孔壁掉块缺陷、钢筋笼的变形不会被漏检或错检,便于高效、准确地直观判断钻孔和钢筋笼保护层质量,发现隐蔽的局部缺陷,满足了实际生产需要。
Vertical optimization arraying method of composite transducer acoustic array
The invention discloses a vertical optimization arraying method of a composite transducer acoustic array. The method comprises the following steps: S1, selecting a detection probe; s2, increasing the number of the sound wave probes; s3, vertically arraying the sonic probes; and S4, applying the array structure. According to the invention, by optimizing the arrangement mode, the staggered-layer stacked honeycomb type ultrasonic sensor array is formed, so that the feasibility of increasing the number of the probes to improve the detection fineness of the ultrasonic pore-forming detector is realized, the defects in the prior art are overcome, high-resolution well hole form details are obtained, the drilling and pore-forming quality detection performance is obviously improved, and the detection efficiency is improved. The drilling engineering quality is controlled through comprehensive detection of the drilling form, contour and characteristics, potential risks such as hole wall chipping and too soft soil texture are effectively checked, it is guaranteed that hole wall chipping defects and deformation of a reinforcement cage are not missed or mistakenly detected, the quality of the drilled hole and the quality of a protection layer of the reinforcement cage can be conveniently, efficiently, accurately and visually judged, and the construction efficiency is improved. Concealed local defects are found, and actual production requirements are met.
本发明公开了一种复合型换能器声基阵的垂直优化布阵方法,包括S1、检测探头选型;S2、增加声波探头的数量;S3、声波探头垂直布阵;S4、布阵结构应用。本发明通过优化布阵方式,形成错层堆叠蜂窝式的超声波传感器阵列,使增加探头数量以提高超声波成孔检测仪的检测精细度具有可行性,克服了现有技术的缺陷,获取高分辨的井孔形态的细节,显著提升钻孔成孔质量检测性能,对钻孔形态、轮廓和特征的全面检测对钻孔工程质量进行把关,对孔壁掉块、土质过软等潜在风险隐患进行有效排查,保证孔壁掉块缺陷、钢筋笼的变形不会被漏检或错检,便于高效、准确地直观判断钻孔和钢筋笼保护层质量,发现隐蔽的局部缺陷,满足了实际生产需要。
Vertical optimization arraying method of composite transducer acoustic array
一种复合型换能器声基阵的垂直优化布阵方法
ZHU LEI (Autor:in) / XIE HONGPING (Autor:in) / SONG ZIJIAN (Autor:in) / GU MINGQING (Autor:in) / HAN CHAO (Autor:in) / ZHU JIAO (Autor:in) / LIU WEI (Autor:in) / HUANG SHIJUN (Autor:in) / LIU ZHIWEI (Autor:in) / HUANG TAO (Autor:in)
25.10.2024
Patent
Elektronische Ressource
Chinesisch
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