TEST SYSTEM AND TEST METHOD FOR DETECTING CEMENT CONTENT OF CEMENT MIXING PILE BODY IN REAL TIME
20180023268 ยท 2018-01-25
Assignee
Inventors
- Fuhai ZHANG (Nanjing, Jiangsu, CN)
- Qing CHEN (Nanjing, Jiangsu, CN)
- Qingsong ZUO (Nanjing, Jiangsu, CN)
- Saifeng YUAN (Nanjing, Jiangsu, CN)
Cpc classification
G01N9/36
PHYSICS
E02D5/46
FIXED CONSTRUCTIONS
International classification
Abstract
The present invention discloses a test system and a test method for detecting the cement content of cement stirring pile body in real time at a construction site. The test system specifically includes a cement slurry density measuring apparatus and a cement admixing amount calculating apparatus. The method includes measuring the density of the cement slurry in the cement slurry tank, measuring the cement soil density and inputting measured values to calculate the cement content. The cement slurry density and the cement soil density can be detected in real time, so that the admixing amount of the cement can be detected in real time during the foundation reinforcing process of the underground engineering, convenience and rapidness are achieved, the time period is short, a supervision effect is good, and cheating on workmanship and materials can be effectively avoided.
Claims
1. A test system for detecting cement content of a cement stirring pile body in real time, comprising a cement slurry density measuring apparatus and a cement admixing amount calculating apparatus, wherein, the cement slurry density measuring apparatus comprises a first electric control center, a measuring wire electrically connected with the first electric control center and a plurality of first pressure sensors; the first electric control center comprises a power supply, a switch, a voltmeter, a resistor, a data processing module and a first display module: when the measuring wire perpendicularly drops to contact with a cement slurry liquid surface from a top of a cement slurry tank, a numerical value of the voltmeter changes; the first pressure sensors are arranged at a bottom wall of the cement slurry tank, and a pressure test data is fed back to the data processing module, and a cement slurry density is calculated and then displayed on the first display module; and the cement admixing amount calculating apparatus comprises a second electric control center and a second pressure sensor electrically connected with the second electric control center, the second pressure sensor is fixed at an end portion of a drill bit, and the drill bit stretches into a pile body to be tested; the second electric control center comprises a data acquisition module, a single chip microprocessor, a second display module and an input module, and when data acquired by the second pressure sensor is fed back to the data acquisition module, a cement soil density is calculated by the single chip microprocessor and then displayed on the second display module; and the cement slurry density, the cement soil density, a water cement ratio and soil density are input into the input module, and then the cement content is calculated by the single chip microprocessor and displayed on the second display module.
2. The test system for detecting cement content of a cement stirring pile body in real time according to claim 1, wherein, the number of the first pressure sensors is 2, 4 or 6, and the first pressure sensors are uniformly distributed on the bottom wall of the cement slurry tank.
3. The test system for detecting cement content of a cement stirring pile body in real time according to claim 1, wherein, an end portion of the measuring wire is provided with a gravity block.
4. A test method for detecting cement content of a cement stirring pile body in real time using a test system, the method comprises the following steps: wherein, the test system comprises a cement slurry density measuring apparatus and a cement admixing amount calculating apparatus, the cement slurry density measuring apparatus comprises a first electric control center, a measuring wire electrically connected with the first electric control center and a plurality of first pressure sensors the first electric control center comprises a power supply, a switch, a voltmeter, a resistor, a data processing module and a first display module; when the measuring wire perpendicularly drops to contact with a cement slurry liquid surface from a top of a cement slurry tank, a numerical value of the voltmeter changes; the first pressure sensors are arranged at a bottom wall of the cement slurry tank, and a pressure test data is fed back to the data processing module, and a cement slurry density is calculated and then displayed on the first display module; and the cement admixing amount calculating apparatus comprises a second electric control center and a second pressure sensor electrically connected with the second electric control center, the second pressure sensor is fixed at an end portion of a drill bit, and the drill bit stretches into a pile body to be tested; the second electric control center comprises a data acquisition module, a single chip microprocessor, a second display module and an input module, and when data acquired by the second pressure sensor is fed back to the data acquisition module, a cement soil density is calculated by the single chip microprocessor and then displayed on the second display module; and the cement slurry density, the cement soil density, a water cement ratio and soil density are input into the input module, and then the cement content is calculated by the single chip microprocessor and displayed on the second display module, S1. measuring the cement slurry density in the cement slurry tank, wherein, switch of the first electric control center is closed; the measuring wire is vertically dropped from the top of the cement slurry tank; the measuring wire contacts with a liquid surface of the cement slurry when a reading of the voltmeter changes; a length h of the measuring wire and a height H of the cement slurry tank are measured; a return value P of each first pressure sensor is recorded; and the cement slurry density is calculated by the data processing module according to a formula .sub.cement slurry=P/g(Hh), wherein g=9.8 g/cm.sup.3. S2. measuring the cement soil density, wherein, a stress measuring signal is transmitted by the second electric control center; data P.sub.i returned by the second sensor is acquired; data P.sub.i+1 is acquired again when jetted slurry at one time is uniformly stirred; a lifting height Z of the drill bit is recorded; the cement soil density is calculated by the single chip microprocessor according to a formula .sub.cement soil=(P.sub.i+1P.sub.i)/gZ, wherein g=9.8 g/cm.sup.3; and S3. inputting the measured values to calculate the cement content, wherein, the cement slurry density .sub.cement slurry obtained in step S1 , the cement soil density .sub.cement soil obtained in step S2, and data of a water cement ratio and a soil density are input into the input module; the cement content is calculated by the single chip microprocessor according to a formula: cement content=(.sub.soil body.sub.cement soil).sub.cement slurry/[(1+water cement ratio)(.sub.cement soil.sub.cement slurry).sub.soil body], and then displayed on the second display module.
5. The test method for detecting cement content of a cement stirring pile body in real time according to claim 4, wherein, the number of the first pressure sensors is 2, 4 or 6, and the first pressure sensors are uniformly distributed on the bottom wall of the cement slurry tank.
6. The test method for detecting cement content of a cement stirring pile body in real time according to claim 4, wherein, an end portion of the measuring wire is provided with a gravity block.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0019]
[0020]
[0021]
[0022] Meanings of the reference numerals in the drawings: 1: cement slurry tank; 2: first electric control center; 3: measuring wire; 4: gravity block; 5: first pressure sensor; 6: Power supply; 7: switch; 8: voltmeter; 9: resistor; 10: second electric control center; 11: second pressure sensor; 12: drill bit; 13: connecting coil; 11: cement stirring pile body.
DETAILED DESCRIPTION
[0023] The embodiments described below with reference to the drawings are exemplary and are intended to explain the present invention but not to limit the present invention. Ordinal numerals used in the claims and the specification such as first, second, third, etc. are only used to modify the claims rather than containing any priority, precedence or representation of an order of one claim prior to another claim or a time sequence of executing steps of a method and are only served as a label to distinguish an element with a specified name of the claims from another element with the same name (rather than a term of the order).
[0024] The present invention is specifically illustrated below in combination with the drawings and specific embodiments.
[0025] Referring to
[0026] With reference to
[0027] The cement admixing amount calculating apparatus may implement the measurement of the cement soil density and the calculation of the cement content, and specifically includes a second electric control center 10 and a second pressure sensor 11 electrically connected with the second electric control center 10, wherein the second pressure sensor 11 is fixed at the end portion of the drill bit 12, and the drill bit 12 stretches into the pile body to be tested; the second electric control center 10 includes a data acquisition module, a single chip microprocessor, a second display module and an input module; data acquired by the second sensor is fed back to the data acquisition module, and the cement soil density is calculated by the single chip microprocessor and displayed on the second display module; and the cement slurry density, the cement soil density, water cement ratio and the soil density are input into the input module, and the cement content is calculated by the single chip microprocessor and displayed on the second display module.
[0028] It should be noted that the connecting coil 13 between the second electric control center 10 and the second pressure sensor 11 should be long enough so as to facilitate the remote operation, thereby improving the safety.
[0029] In order to better understand the present invention, the test method for detecting the cement content of the cement stirring pile body 14 in real time with the test system is described in detail. It is assumed that the volume of the cement soil after being hydrated keeps unchanged, the cement stirring pile body doesn't shrink after being molded, and the cement stirring pile body has already been uniformly stirred.
[0030] The method specifically includes the following steps:
[0031] S1. the density of the cement slurry in the cement slurry tank 1 is measured: the switch 7 of the first electric control center 2 is closed; the numerical value of the voltmeter 8 is essentially constant at the moment; the measuring wire 3 is vertically and slowly dropped from the top of the cement slurry tank 1; when the reading of the voltmeter 8 changes, it indicates that the measuring wire 3 contacts with the liquid surface of the cement slurry; the length h of the measuring wire 3 and the height H of the cement slurry tank 1 are measured; the return value P of the first pressure sensors 5 is recorded; the cement slurry density is calculated according to the formula .sub.cement slurry=P/g(Hh), wherein g=9.8 g/cm.sup.3, h is the height from the top of the cement slurry tank 1 to the liquid surface of the cement slurry, and H is the total height of the cement slurry tank 1; and if there are multiple first pressure sensors 5, the average value
[0032] S2. the cement soil density is measured: a stress measuring signal is transmitted by the second electric control center 10; data P.sub.i returned by the second sensor is acquired; data P.sub.i+1 is acquired again when the sprayed slurry is uniformly stirred; the lifting height Z of the drill bit 12 is recorded; and the cement soil density is calculated by the single chip microprocessor according to the formula .sub.cement soil=(P.sub.i+1P.sub.i)/gZ, wherein g=9.8 g/cm.sup.3; and
[0033] S3. the measured values are input to calculate the cement content: the cement slurry density .sub.cement slurry obtained by calculation in step S1, the cement soil density .sub.cement soil obtained by calculation in step S2, and known data provided in an engineering report such as water cement ratio and soil density are input into the input module, and the cement content is calculated by the single chip microprocessor according to the formula cement content=(.sub.soil body.sub.cement soil).sub.cement slurry/[(1+water cement ratio)(.sub.cement soil.sub.cement slurry).sub.soil body], and displayed on the second display module.
[0034] To sum up, the present invention has the beneficial effects that the test system of the present invention can detect the cement slurry density and the cement soil density in real time at the construction site, so that the cement admixing amount can be detected in real time at the construction site during the foundation reinforcing process of the underground engineering; convenience and rapidness can be realized; the time period is short; the supervision effect is good; and the cheating on the workmanship and the materials can be effectively avoided.
[0035] The basic principle, main characteristics and advantages of the present invention are shown and described above. Those skilled in the art should appreciate that the foregoing embodiments do not limit the present invention in any way; and any technical solution obtained by adopting a way of equivalent replacements or equivalent transformations shall fall within the protection scope of the present invention.