Acoustic concrete tester equipped with a battery that can operate for one day.
The "ACT" is an acoustic concrete tester that uses sophisticated pulse-echo technology for measuring concrete thickness. It accurately measures the thickness of concrete structural components such as pavements, slabs, retaining walls, tunnel linings, and foundation footings. With this product, there is no need for adjustments to the input signal, measuring the wave propagation speed of the material, or drilling holes. 【Features】 ■ Accurately measures the thickness of concrete structural components ■ Capable of measuring the wave propagation speed of materials ■ Applicable for thicknesses from 75 to 900 mm ■ Easy-to-read display ■ Equipped with a battery that allows for a full day's work *For more details, please refer to the PDF document or feel free to contact us.
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【Specifications (Excerpt)】 ■Size: 75×175×235mm ■Weight: 2.2kg ■Display: Large backlit touchscreen ■Operating temperature: 0–50℃ ■Storage temperature: -20–65℃ ■Battery: Built-in, 8 hours, charging time 3 hours ■Probe material: Brass ■Probe size: φ60×H45mm ■Cable length: 2.4m ■Receiving frequency: 2–30kHz *For more details, please refer to the PDF document or feel free to contact us.
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【Usage】 ■Concrete structural components *For more details, please refer to the PDF document or feel free to contact us.
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The Japan Ground Comprehensive Research Institute is a comprehensive consultant involved in field tests and laboratory tests of piles and ground, seismic diagnosis of structures, deterioration diagnosis, ground bearing capacity, foundation pile support capacity, soil contamination surveys, earthquake response analysis, and ground analysis. Experts are responsible for conducting damage investigations of pile foundations (integrity tests), multi-component cone penetration tests, static and dynamic loading tests of foundation piles, deterioration diagnosis of bridges using PSD displacement measurement devices, seismic diagnosis of buildings, generation of seismic waves based on active fault models, and earthquake response analysis of various structures.