Nuclear density pore pressure static cone penetration test probe for testing density of soil mass

A pore pressure static penetration and density technology, which is applied in the field of foundation soil survey, construction, infrastructure engineering, etc., can solve the problems of indoor test results error, difficult to represent the in-situ density of soil, etc., and achieves reliability and repeatability The effect of sex, continuous measurement

Inactive Publication Date: 2012-12-26
SOUTHEAST UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

At present, the determination of soil density relies on borehole sampling and laboratory tests. However, due to the disturbance of sampling and the loss of water i

Method used

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  • Nuclear density pore pressure static cone penetration test probe for testing density of soil mass

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Example Embodiment

[0015] The nucleus density pore pressure static penetration probe capable of measuring soil density of the present invention uses a coaxial cable 1 to transmit signals and data, and an analog-to-digital converter 2 is provided on the top of the upper half of the probe, and is connected to the coaxial cable 1 , The lower part of the analog-to-digital converter 2 is provided with a preamplifier 3. The photomultiplier tube 4 is located below the preamplifier 3. A thin-walled stainless steel window 5 and a lead shield are provided on the side wall of the probe corresponding to the photomultiplier tube 4 6 is located under the photomultiplier tube 4, the gamma ray source 7 is placed at the bottom of the lead shield 6, and wires connect the analog-to-digital converter 2, the preamplifier 3, the photomultiplier tube 4 and the gamma ray source 7 in sequence; In the lower half of the probe, the three-component geophone 8 is provided with an inclinometer 9 at the lower part of the three-c...

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PUM

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Abstract

The invention discloses a nuclear density pore pressure static cone penetration test probe for testing density of soil mass. The upper half segment of the probe is connected with a coaxial cable (1), an analog-to-digital converter (2), a pre-amplifier (3), a photomultiplier (4) and a gamma ray source (7) from top down in sequence; a thin-wall stainless steel window (5) is formed on the probe sidewall corresponding to the photomultiplier (4); a lead shield plate (6) is located below the photomultiplier (4); the probe adopts the coaxial cable (1) to transmit signals and data; on the lower half segment of the probe, a half-segment three-component geophone (8), an inclinometer (9), and a friction drum (10) are arranged from top down in sequence; a pore water pressure sensor (11) is arranged at the middle part of the friction drum (10); a conical probe (13) is connected below the friction drum (10); and a pore pressure filter ring (12) is located at the connection of the friction tube (10) and the conical probe (11). The inventive probe has characteristics of in-situ, direct, rapid, accurate and economic testing, and provides a powerful detection tool for the practice of geotechnical engineering.

Description

technical field [0001] The invention relates to a nuclear density pore pressure static sounding probe for testing soil density, belonging to a static sounding device capable of directly and continuously analyzing and testing the in-situ density of soil layers in the field of geotechnical engineering. Background technique [0002] Static CPT technology refers to using a pressure device to press a penetrating rod with a probe into the test soil layer, and through the measurement system to test the cone tip resistance and side wall friction resistance of the soil, some basic physical properties of the soil can be determined. Mechanical properties, such as the deformation modulus of the soil, the allowable bearing capacity of the soil, etc. The static penetration technology has a history of more than 80 years. Static CPT is widely used in the world, partially or completely replacing drilling and sampling in engineering investigation. In 1965, our country first successfully dev...

Claims

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Application Information

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IPC IPC(8): E02D1/00
Inventor 刘松玉邹海峰蔡国军
Owner SOUTHEAST UNIV
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