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Ultrasonic Linear Array Validation via Concrete Test Blocks

机译:超声线性阵列验证通过混凝土测试块

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Oak Ridge National Laboratory (ORNL) comparatively evaluated the ability of a number of NDE techniques to generate an image of the volume of 6.5’ X 5.0’ X 10” concrete specimens fabricated at the Florida Department of Transportation (FDOT) NDE Validation Facility in Gainesville, Florida. These test blocks were fabricated to test the ability of various NDE methods to characterize various placements and sizes of rebar as well as simulated cracking and non-consolidation flaws. The first version of the ultrasonic linear array device, MIRA [version 1], was one of 7 different NDE equipment used to characterize the specimens. This paper deals with the ability of this equipment to determine subsurface characterizations such as reinforcing steel relative size, concrete thickness, irregularities, and inclusions using Kirchhoff-based migration techniques. The ability of individual synthetic aperture focusing technique (SAFT) B-scan cross sections resulting from self-contained scans are compared with various processing, analysis, and interpretation methods using the various features fabricated in the specimens for validation. The performance is detailed, especially with respect to the limitations and implications for evaluation of a thicker, more heavily reinforced concrete structures.
机译:橡木岭国家实验室(ORNL)相对评价了许多NDE技术的能力,以产生6.5'x 5.0'x 10“在富国·运输部(FDOT)NDE验证设施的混凝土标本的混凝土标本的体积的图像佛罗里达州。制造这些测试块以测试各种NDE方法的能力,以表征钢筋的各种放置和尺寸以及模拟开裂和非整合缺陷。超声线性阵列装置Mira [版本1]的第一版本是用于表征样本的7种不同的NDE设备中的一个。本文涉及该设备确定地下表征的能力,例如利用基于基于Kirchhoff的迁移技术加强钢相对尺寸,混凝土厚度,不规则性和夹杂物等功能。使用自包含扫描产生的各种合成孔径聚焦技术(SAFT)B扫描横截面的能力与使用试样中制造的各种特征进行验证的各种处理,分析和解释方法进行比较。详细说明了性能,特别是对于评估更厚,更加钢筋混凝土结构的局部局限性和影响。

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