CN106153644B - Three axis sample water content real-time testing of unsaturated soil probe and test device - Google Patents

Three axis sample water content real-time testing of unsaturated soil probe and test device Download PDF

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CN106153644B
CN106153644B CN201610454679.0A CN201610454679A CN106153644B CN 106153644 B CN106153644 B CN 106153644B CN 201610454679 A CN201610454679 A CN 201610454679A CN 106153644 B CN106153644 B CN 106153644B
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water content
probe
rubber membrane
unsaturated soil
sample water
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CN106153644A (en
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陈仁朋
罗宏
洪鹏云
程威
鲁立
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Hunan University
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    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N23/00Investigating or analysing materials by the use of wave or particle radiation, e.g. X-rays or neutrons, not covered by groups G01N3/00 – G01N17/00, G01N21/00 or G01N22/00

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Abstract

The invention discloses a kind of three axis sample water content real-time testing of unsaturated soil probe for being based on Time Domain Reflectometry (TDR) technology and test devices, can be used for the test of sample part water content in geotechnical engineering unsaturated soil triaxial test.Probe includes base (1), more fexible conductors (2) and connector (3), with certain flexibility, it can be installed horizontal wrap on the cylindrical sample of geotechnical engineering triaxial test, between three axis samples (10) and rubber membrane (4), it is connected by conducting wire (8) with TDR Test instrument (9), the water content of installation position can be monitored at any time during unsaturated soil triaxial test.The present invention solves the problems, such as that local location water content can not be obtained during geotechnical engineering unsaturated soil triaxial test.

Description

Three axis sample water content real-time testing of unsaturated soil probe and test device
Technical field
The present invention relates to a kind of soil moisture content real-time test devices, are based particularly on the non-of Time Domain Reflectometry (TDR) technology Three axis sample water content real-time testing of saturated soil probe and test device.
Background technique
In geotechnical engineering test, triaxial test is to obtain the important tests means of Rock And Soil shearing strength.And Rock And Soil Shearing strength and the degrees of consolidation of three axis samples have a very close relationship, therefore the water content of sample obtains has important work Cheng Yiyi, for current research technique, the water content of three axis samples can only obtain before being put into pedestal or after finishing test, And test the water content in pilot process and directly determined there is presently no method, especially in the triaxial test of unsaturated soil, have The top and the bottom water content of possible three axis samples is not consistent, therefore during the test if the aqueous of a part can be monitored at any time Amount will have very big help to the Research on Mechanical Properties of Rock And Soil, also very necessary.
1975, the measurement of Davis and Chudobiak by time domain reflection technology (TDR) applied to soil dielectric constant. 1980, Topp et al. was when using the dielectric constant of TDR measurement soil, it was demonstrated that dielectric constant and soil moisture content have well Correlation, and establish the empirical equation of soil moisture content and apparent dielectric constant.U.S. scene water content testing standard ASTM6780 is first to need first to measure the dielectric constant of the soil body using TDR Test water content of soil, then passes through indoor standardization side Journey obtains the water content of the soil body.Compared with other methods, TDR has many good qualities on soil moisture measurement, such as without destructive, fast Speed, accuracy height, measurement result are influenced smaller and can measure soil moisture content and soil conductivity simultaneously by soil types. Commercial TDR instrument is more at present, and most of which can be used for measurement soil moisture content.It needs in test by TDR In the probe insertion soil body of probe, TDR equipment is controlled by software end and emits electromagnetic wave, while recording reflected electromagnetism Wave obtains the dielectric constant of the soil body by analysis, then passes through the relationship of the dielectric constant of soil body established in advance and water content Obtain the water content of the soil body.Currently, most of TDR probe is all probe geometries, need to be inserted into inside soil body, this shape The probe of formula clearly cannot be used for the water content test of sample in triaxial test, because the probe of probe-type can make three axis samples At destruction, the acquisition of its test parameters is directly affected.Therefore, TDR technology is applied in triaxial test, needs otherwise designed Develop the TDR probe and test device suitable for three axis sample water content real-time testings.
Summary of the invention
It pops one's head in and surveys the purpose of the present invention is to provide a kind of water content real-time testing based on time domain reflection technology (TDR) Trial assembly is set, and can be used in the real-time testing of a part water content during three axis specimen test of unsaturated soil in geotechnical engineering.
In order to solve the above technical problems, technical solution proposed by the present invention are as follows:
A kind of three axis sample water content real-time testing of unsaturated soil probe, including flexible bendable base, are set to base one Face paste invests more fexible conductors of sample, and is set to the connector of base's another side;The fexible conductor and connector It is electrically connected.
Further, the base is the insulating materials with certain thickness and intensity, and material is polyimide resin.
Further, the fexible conductor is strip conductor made of metallic film, is distributed in base in parallel and concordantly On, spacing between any two is equal, and the combination with base is gluing or one is made using turmeric technique.
Further, the connector be radio frequency connector, characteristic impedance be 50 Ω or 75 Ω, form be BNC or SMA。
Correspondingly, the present invention also provides a kind of three axis sample water content real-time test device of unsaturated soil, including three axis Pressure chamber, TDR Test instrument, in addition, further including above-mentioned test probe, the probe is set to measurement sample needed for rubber membrane and contains The position of water, the rubber membrane, which is externally provided with, holds film cylinder;The film cylinder that holds is set in triaxial pressure room, and the probe is by leading Line and TDR Test instrument are electrically connected.
Further, the rubber membrane upper and lower ends are set in from inside to outside holds at film cylinder upper and lower side.
Further, the conducting wire is coaxial cable.
Further, it is equipped with rubber membrane opening at the rubber membrane and probe incorporated, the connector of probe is opened from rubber membrane The position of mouth is pierced by rubber membrane, and the length direction of probe is arranged along rubber membrane cross circular section circumferential direction.
Further, the rubber membrane opening is filled with sealant.
Based on the above test device, the present invention also provides a kind of test methods, comprising the following steps:
S1: it will be used to attach three axis samples and more fexible conductors at regular intervals is kept to paste in flexible bendable base On one side, the same end of the fexible conductor passes through base, is electrical connected with the connector for being set to flexbile base another side, and then To bent flexible probe;
S2: the fexible conductor of flexible probe and base are suitably bent, and are allowed to form arc, and the radius of arc is bigger In the radius of three axis samples, the side of flexible conductor has the side of connector outside arc in arc shaped inside;
S3: the position that water content is measured needed for three axis samples is positioned on the cylindric rubber membrane of triaxial test And aperture, rubber membrane opening is formed, openings of sizes is equal to or slightly less than the pedestal cross-sectional sizes of flexible probe upper binding head;
Flexible probe: being placed into the inside of cylindric rubber membrane by S4, opens the connector on flexible probe from rubber membrane The position of mouth is pierced by rubber membrane, and the length direction of flexible probe is along rubber membrane cross circular section circumferential direction;
S5: the connector bottom for being located at rubber membrane opening and rubber membrane are sealed with sealant;Sealant should have Have and enough tensile strength and break elongation percentage, during guaranteeing entire triaxial test, radio frequency jointing and rubber membrane it Between good seal, it is waterproof, it is airtight.
S6: at the top of triaxial cell or bottom punches, and the one end in hole is in triaxial pressure room, and one end is in triaxial cell Outside, the conducting wire of both ends belt lacing is passed through from hole, is sealed between conducting wire and the hole opened;
S7: by 4 sets of rubber membrane on holding film cylinder, after more solito installs three axis samples, connecting wire is in triaxial pressure Indoor connector and penetrating connector and be sealed on flexible probe, install triaxial cell;
S8: connector of the conducting wire outside triaxial pressure room is connected with TDR Test instrument;
S9: debugging TDR Test instrument, after reacting normal by TDR Test instrument carry out the transmitting of electromagnetic wave, reception, Processing, obtains the reflective graphics at three axis sample testing positions;
S10: being varied multiple times the water content of three axis samples, repeats above step, establish three axis sample different moisture contents with not With the corresponding relationship between reflective graphics, the real-time moisture content value at three axis sample testing positions can be obtained.
By apparatus above and method, it can be achieved that a part is aqueous during three axis specimen test of geotechnical engineering unsaturated soil The real-time testing of amount solves the problems, such as to be unable to real-time testing during testing at present, fills up the blank in the field, facilitates non-full With the research in native field.
Detailed description of the invention
Fig. 1 is flexible test of the present invention probe bottom schematic view;
Fig. 2 is flexible test of the present invention probe side schematic view;
Fig. 3 is flexible test of the present invention probe schematical top view;
Fig. 4 is the positional relationship cross-sectional view of flexible test of the present invention probe and rubber membrane;
Fig. 5 be flexible test of the present invention probe during installation with the positional diagram of rubber membrane;
Fig. 6 is to be packed into the schematic diagram for holding film cylinder after flexible test of the present invention probe connects rubber membrane;
Fig. 7 is overall structure of the present invention.
In figure: 1- base, 2- fexible conductor, 3- connector, 4- rubber membrane, 5- rubber membrane opening, 6- hold film cylinder, tri- axis of 7- Pressure chamber, 8- conducting wire, 9-TDR tester, tri- axis sample of 10-.
Specific embodiment
Below in conjunction with Figure of description, the invention will be further described, but protection model not thereby limiting the invention It encloses.
As shown in Figures 1 to 3, TDR probe is made of flexbile base 1, fexible conductor 2 and 3 three parts of connector, wherein flexible Base 1 is Kapton insulating layer, and fexible conductor 2 is red copper, strip made of stainless steel or other metal material films Shape conductor.Connector 3 is radio frequency jointing.
Flexbile base 1 and fexible conductor 2 are directly prepared into one, strip conductor thickness range by gluing or turmeric technique For 0.1~0.5mm, width range is 1~5mm, and length range is 10~500mm.Fexible conductor 2 has 3, in flexbile base 1 On distribution mode be both ends alignment, parallelly distribute on, spacing is equal two-by-two, and in the same face of flexbile base 1, spacing range is 3~10mm.The size and spacing of fexible conductor 2 can carry out preferred according to factors such as type, the sizes of three axis samples.3 flexibilities The same end of conductor 2 passes through flexbile base 1 and reaches the another side of flexbile base 1, and passes through welding manner with radio frequency jointing 3 It is connected, wherein conductor in an intermediate position is connected with the middle conductor of radio frequency jointing 3, and other two fexible conductors 2 It is connected with the outer conductor of radio frequency jointing 3, radio frequency jointing 3 is BNC or SMA form, can pass through coaxial cable and standard Time Domain Reflectometry test equipment be connected, as Compbell Scientific company of the U.S. produce TDR100.
The operating process of triaxial test can be found in People's Republic of China's national regulation " Standard for test methods of earthworks " (GB T50123-1999).By taking three axis samples of 101mm diameter as an example, flexbile base 1 can be set in 135mm × 21mm rectangle, it is soft Property conductor 2 be 125mm × 3mm rectangle, three fexible conductors 2 are centrally disposed on flexbile base 1, are parallel to each other, two-by-two spacing For 3mm.The water content for such as needing to test position among three axis samples, then need to reach following requirement:
1. the present invention is wound in the middle part of sample along sample central cross-section circumference aspect;
2. the one side of the flexible conductor 2 of flexbile base 1 is contacted with specimen surface, and the another side and rubber of flexbile base 1 Film 4 contacts;
3. radio frequency jointing 3 is also needed across rubber membrane 4, sample installation in order to which the present invention can be connected with test equipment After, radio frequency jointing 3 is in 4 outside of rubber membrane.
As also shown in e.g. figs. 4-7, it in order to which the present invention to be installed in place, can be operated as follows:
(1) in advance the position for measuring water content needed for three axis samples position on rubber membrane 4 and aperture forms rubber Epithelium opening 5, aperture size is equal to or slightly less than the pedestal cross-sectional sizes of radio frequency jointing 3;
(2) apparatus of the present invention are suitably bent, forms arc, the radius of arc is slightly larger than radius of specimen, flexible The side of conductor 2 has the side of radio frequency jointing 3 outside arc in arc shaped inside;
(3) present invention is placed into the inside of cylinder-shaped rubber membrane 4, radio frequency jointing 3 is from the position of rubber membrane opening 5 It is pierced by rubber membrane 4, length direction of the invention is along 4 cross circular section circumferential direction of rubber membrane;
(4) 3 bottom of radio frequency jointing and rubber membrane 4 are sealed with sealant, sealant should have enough anti- Tensile strength and elongation percentage is broken, during guaranteeing entire triaxial test, is sealed between radio frequency jointing 3 and rubber membrane 4 good It is good, waterproof, airtight, the Kraft spy's K-5904B sealant produced such as Guangdong Hengda New Materials Technology Co., Ltd.
(5) by 4 sets of rubber membrane on holding film cylinder 6, the structure of film cylinder 6 is held referring to People's Republic of China (PRC) national regulation GB T50123-1999 Figure 16 .2.1-5, because radio frequency jointing 3 has certain height, the diameter for holding film cylinder 6 should be than three Axis specimen finish adds the radio frequency jointing bigger 2~5mm of height, holds in film cylinder 6 so that three axis samples can be smoothly inserted in.
(6) three axis samples are conventionally installed, specific operation process can refer to People's Republic of China's national regulation " Standard for test methods of earthworks " (GB T50123-1999).
(7) three axis samples after the installation is completed, by the conducting wire 8 of both ends belt lacing by radio frequency jointing 3 of the invention with TDR Test instrument 9 outside pressure chamber is connected.Conducting wire 8 is coaxial cable, is punched extractions at pressure chamber base position, coaxial cable and It is sealed between the hole opened, sealing means can be the combination etc. for adding capstan nut with sealant or sealing ring.Coaxial electrical Cable should seal after connecting with radio frequency jointing 3 of the invention, and seal form can be laced belt waterproof plug itself, can also be with It being sealed with sealant, coaxial cable+connector crust itself should be that waterproof is air-locked, in order to avoid water is caused during the test Or gas enters change characteristic impedance in coaxial cable, influences water content test result, while also avoiding that triaxial cell is caused to enclose Pressure decaying.
(8) TDR Test instrument is debugged, after reacting normal by TDR Test instrument carry out the transmitting of electromagnetic wave, reception, Processing obtains the reflective graphics at three axis sample testing positions, while obtaining three axis sample quilts by conventional method (such as oven drying method) Survey the water content at position.
(9) be varied multiple times the water content of three axis samples, repeat above step, establish three axis sample different moisture contents from it is different Corresponding relationship between reflective graphics.
(10) triaxial test is carried out according to a conventional method, carries out the hair of electromagnetic wave during test by TDR Test instrument at any time It penetrates, receive, handle, obtain the reflective graphics at three axis sample testing positions, between the reflective graphics established by step (9) The real-time moisture content value at three axis sample testing positions can be obtained in corresponding relationship.
The principle of TDR water content test can refer to the article that Cheng Xianjun is published in " water conservancy and hydropower technology " nineteen ninety-five o. 11th " soil moisture content is measured according to TDR principle ".As long as demarcating in advance to apparatus of the present invention, pass through the data progress to acquisition Analysis, obtains dielectric constant values, further establishes the relationship between dielectric constant and three axis sample water content, that is, can determine aqueous Amount, to realize the real time measure of water content.
If you need to carry out the water content real-time testing at three other positions of axis sample, it can refer to the above method and pacify apparatus of the present invention Mounted in corresponding position.
As described above, embodiment of the invention is described in detail, but as long as essentially without this hair is detached from Bright feature and effect, can there is many variations, this will be readily apparent to persons skilled in the art, therefore, The example of these deformations is also integrally incorporated within protection scope of the present invention.

Claims (9)

1. a kind of three axis sample water content real-time testing of unsaturated soil probe, which is characterized in that including flexible bendable base (1), The more fexible conductors (2) that base (1) is attached at sample on one side are set to, and are set to the connector of base (1) another side (3);The fexible conductor (2) and connector (3) are electrically connected.
2. three axis sample water content real-time testing of a kind of unsaturated soil probe according to claim 1, which is characterized in that institute Stating base (1) is the insulating materials with certain thickness and intensity, and material is polyimide resin.
3. three axis sample water content real-time testing of a kind of unsaturated soil probe according to claim 1, which is characterized in that institute Stating fexible conductor (2) is strip conductor made of metallic film, is distributed on base (1) in parallel and concordantly, between any two Spacing is equal, and the combination with base (1) is gluing or one is made using turmeric technique.
4. three axis sample water content real-time testing of a kind of unsaturated soil probe according to claim 1, which is characterized in that institute Stating connector (3) is radio frequency connector, and characteristic impedance is 50 Ω or 75 Ω, and form is BNC or SMA.
5. a kind of three axis sample water content real-time test device of unsaturated soil, including triaxial cell (7), TDR Test instrument (9), It is characterized in that, further including test probe, the probe is set to the position of measurement sample water content needed for rubber membrane (4), institute It states rubber membrane (4) and is externally provided with and hold film cylinder (6);The film cylinder (6) that holds is set in triaxial cell (7), and the probe is by leading Line and TDR Test instrument (9) are electrically connected;Probe includes flexible bendable base (1), is set to base (1) and is attached at sample on one side More fexible conductors (2), and be set to the connector (3) of base (1) another side;The fexible conductor (2) and connector (3) it is electrically connected.
6. three axis sample water content real-time test device of a kind of unsaturated soil according to claim 5, which is characterized in that institute It states rubber membrane (4) upper and lower ends and is set in from inside to outside and hold at film cylinder (6) upper and lower side.
7. three axis sample water content real-time test device of a kind of unsaturated soil according to claim 5, which is characterized in that institute Stating conducting wire (8) is coaxial cable.
8. three axis sample water content real-time test device of a kind of unsaturated soil according to claim 5, which is characterized in that institute It states and is equipped with rubber membrane opening (5) at rubber membrane (4) and probe incorporated, the connector (3) of probe is from the position of rubber membrane opening (5) It is pierced by rubber membrane (4), the length direction of probe is arranged along rubber membrane (4) cross circular section circumferential direction.
9. three axis sample water content real-time test device of a kind of unsaturated soil according to claim 8, which is characterized in that institute It states at rubber membrane opening (5) filled with sealant.
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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
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CN108709917A (en) * 2018-05-14 2018-10-26 水利部南京水利水文自动化研究所 Tubular type TDR soil moisture sensors
CN109883851B (en) * 2019-04-03 2024-04-16 水利部交通运输部国家能源局南京水利科学研究院 Gas injection-vacuum consolidation test device and method for high-water-content sludge
CN111122619B (en) * 2019-12-31 2022-02-18 青岛海洋地质研究所 Water content measuring system based on parallel spiral type telescopic time domain reflection probe

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101266271A (en) * 2008-04-25 2008-09-17 浙江大学 Electromagnetic wave test soil body dielectric coefficient test method and device
CN103091173A (en) * 2013-01-14 2013-05-08 桂林理工大学 Triaxial test apparatus of soil under water-soil chemical action and method thereof
CN103743787A (en) * 2013-12-23 2014-04-23 石家庄铁道大学 Tri-axial testing device for testing water content distribution of soil sample
CN104215499A (en) * 2014-09-22 2014-12-17 青岛海洋地质研究所 Multifunctional triaxial compression testing device containing natural gas hydrate sediment and testing method thereof
CN104833579A (en) * 2015-04-24 2015-08-12 河海大学 Test device and test method for testing strength change of soil body after occurrence of seepage deformation of dykes and dams
CN105424488A (en) * 2015-06-29 2016-03-23 西南交通大学 Suction-controllable unsaturated soil static triaxial instrument based on inner volume change precision measurement

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101266271A (en) * 2008-04-25 2008-09-17 浙江大学 Electromagnetic wave test soil body dielectric coefficient test method and device
CN103091173A (en) * 2013-01-14 2013-05-08 桂林理工大学 Triaxial test apparatus of soil under water-soil chemical action and method thereof
CN103743787A (en) * 2013-12-23 2014-04-23 石家庄铁道大学 Tri-axial testing device for testing water content distribution of soil sample
CN104215499A (en) * 2014-09-22 2014-12-17 青岛海洋地质研究所 Multifunctional triaxial compression testing device containing natural gas hydrate sediment and testing method thereof
CN104833579A (en) * 2015-04-24 2015-08-12 河海大学 Test device and test method for testing strength change of soil body after occurrence of seepage deformation of dykes and dams
CN105424488A (en) * 2015-06-29 2016-03-23 西南交通大学 Suction-controllable unsaturated soil static triaxial instrument based on inner volume change precision measurement

Non-Patent Citations (4)

* Cited by examiner, † Cited by third party
Title
TDR联合监测土体含水量和干密度的传感器的设计及应用;陈赟等;《岩石力学与工程学报》;20110228;第30卷(第2期);摘要、第5.3节内容,图1 *
Time Domain Reflectometry Surface Reflections for Dielectric Constant in Highly Conductive Soils;Renpeng Chen et.al;《JOURNAL OF GEOTECHNICAL AND GEOENVIRONMENTAL ENGINEERING》;20071231;1597-1609 *
利用时域反射法探测砂土中LNAPLs的适用性室内试验研究;詹良通等;《中国科学》;20131231;第43卷(第8期);885-894 *
非饱和土与特殊土测试技术新进展;陈正汉等;《岩土工程学报》;20060228;第28卷(第2期);147-169 *

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