CN103278462B - A kind of authentication method of concrete ingredients - Google Patents

A kind of authentication method of concrete ingredients Download PDF

Info

Publication number
CN103278462B
CN103278462B CN201310248276.7A CN201310248276A CN103278462B CN 103278462 B CN103278462 B CN 103278462B CN 201310248276 A CN201310248276 A CN 201310248276A CN 103278462 B CN103278462 B CN 103278462B
Authority
CN
China
Prior art keywords
concrete
stone
sand
weight
formula
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN201310248276.7A
Other languages
Chinese (zh)
Other versions
CN103278462A (en
Inventor
黄红喜
李君�
包妍
李志广
邢吉龙
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
QINGDAO BRANCH OF FIRST Co OF CHINA ENGINEERING BUREAU Ltd
Original Assignee
QINGDAO BRANCH OF FIRST Co OF CHINA ENGINEERING BUREAU Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by QINGDAO BRANCH OF FIRST Co OF CHINA ENGINEERING BUREAU Ltd filed Critical QINGDAO BRANCH OF FIRST Co OF CHINA ENGINEERING BUREAU Ltd
Priority to CN201310248276.7A priority Critical patent/CN103278462B/en
Publication of CN103278462A publication Critical patent/CN103278462A/en
Application granted granted Critical
Publication of CN103278462B publication Critical patent/CN103278462B/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Landscapes

  • Preparation Of Clay, And Manufacture Of Mixtures Containing Clay Or Cement (AREA)
  • On-Site Construction Work That Accompanies The Preparation And Application Of Concrete (AREA)

Abstract

The invention belongs to technical field of building construction, relate to a kind of authentication method of concrete ingredients, first the concrete sample of extraction is analyzed in spectrum detection instrument the composition drawing the additive existed in concrete and ratio; Concrete sample is poured in feeder hopper again and obtain concrete weight by the first weight induction device, pour wash-down water into from charging aperture simultaneously and concrete is washed away, obtain the potpourri of concrete and water; Then the potpourri of concrete and water is filtered out stone and sand by bitubular roller screen, and measure the weight of saturated water suction stone and saturated water suction sand respectively by the second weight induction device; Finally the mass transport of the concrete obtained, saturated water suction stone and saturated water suction sand is calculated the weight of stone in concrete, sand, cement and water to exterior display device, complete the situ appraisal to concrete ingredients; Its authentication method is simple, and principle is reliable, and measurement result is accurate, easy to operate.

Description

A kind of authentication method of concrete ingredients
Technical field:
The invention belongs to technical field of building construction, relate to the technological process of situ appraisal concrete ingredients in a kind of work progress, particularly a kind of authentication method of concrete ingredients.
Background technology:
Along with the develop rapidly that China's building trade is come, various new construction technology and new machinery constantly emerge, and there has also been higher requirement to Construction Quality simultaneously.Under the background more and more important to Commercial Concrete demand, method for measuring and equipment thereof are carried out to the composition of Commercial Concrete in the scene in work progress that has not yet to see, if concrete ratio is the key factor affecting concrete workability, intensity, permanance, if the error of business's concrete station causes the match ratio of concrete to lack of proper care, concrete will be caused off quality, light then affect normally using and constructing of engineering, heavy then can security incident be caused, directly have influence on the security of the lives and property of construction quality and people.So, design a kind of technical matters and machine, make it irregularly at the construction field (site) can gather sample to concrete, to determine concrete mix and additive component content thereof rapidly and accurately, and carry out in time adjusting to ensure Construction Quality.
Summary of the invention:
The object of the invention is to the shortcoming overcoming prior art existence, seek to design the authentication method that a kind of concrete on construction site composition is provided, overcome the blind area of the fubaritic concrete composition in working-yard in prior art, by controlling concrete composition and quality, thus effectively ensure Construction Quality.
To achieve these goals, the present invention realizes the situ appraisal to concrete admixture and concrete ingredients in concrete ingredients identification apparatus, and its concrete technology step is:
(1), extract the mixed concrete sample in working-yard, first in spectrum detection instrument, adopt existing spectrographic method analysis to draw composition and the ratio of the additive existed in concrete;
(2) concrete sample of the working-yard, step (1) obtained is poured in the feeder hopper of fixed capacity 50L, concrete weight is obtained by the first weight induction device, pour wash-down water into from charging aperture to wash away concrete simultaneously, obtain the potpourri of concrete and water;
(3), by the potpourri of concrete and water filter out stone and sand respectively by the rotary screen of 0.5mm screen cloth and the rotary screen of 0.08mm screen cloth, and measure the weight of saturated water suction stone and saturated water suction sand respectively by the second weight induction device;
(4), by the mass transport of the concrete obtained, saturated water suction stone and saturated water suction sand to exterior display device, drawn the weight of stone in concrete, sand, cement and water by the computer calculate in exterior display device, complete the situ appraisal to concrete ingredients.
The detailed process of computer calculate involved in the present invention is: the natural moisture content of stone and sand is respectively W g, W s, apparent density is respectively ρ ' g, ρ ' s, stone and sand apparent density is in the dry state respectively ρ g, ρ s, then the volume of stone and sand is respectively:
V G = M G ρ G ′ = 1 + W G ρ G ρ G + W G ρ G M G = A 1 M G - - - ( 1 )
V S = M S ρ S ′ = 1 + W S ρ S ρ S + W S ρ S M S = B 1 M S - - - ( 2 )
M in formula g, M sbe respectively stone and sand weight in its natural state; Formula (1) and formula (2) are substituted into formula (3) M c+ M w+ M g+ M s=M and formula (4) V c+ V w+ V g+ V sin=V, obtain formula (5) and formula (6):
V c = M - V - ( 1 - A 1 M G ) - ( 1 - B 1 ) M S ρ C - 1 - - - ( 5 )
V W=V-A 1M G-B 1M S-V C(6)
Wherein M ccv c, M wwv w, M cfor cement weight, ρ cfor cement density, V cfor cement volume, M wfor the weight of water, ρ wfor the density of water, V wfor the volume of water; Consider the existence of the saturated water absorption after the content of stone and sand and water punching, derive M g, M sscreen over-size M ' after rushing with water g, M ' srelation, if the saturated water absorption of stone and silt content are respectively W ' gand Q g, saturated water absorption and the silt content of sand are respectively W ' sand Q s, then to stone definition silt content be so, obtain formula (7):
M G = 1 + W G ( 1 + W G ′ ) ( 1 - Q G ) M G ′ = A 2 M G ′ - - - ( 7 )
In like manner, formula (8) is obtained:
M S = 1 + W S ( 1 + W S ′ ) ( 1 - Q S ) M S ′ = B 2 M S ′ - - - ( 8 )
Formula (7) and formula (8) are substituted into formula (5) and formula (6) obtains
V C = M - V - ( 1 - A 1 ) A 2 M G ′ - ( 1 - B 1 ) B 2 M G ′ ρ C - 1
V W=V-A 1A 2M' G-B 1B 2M' S-V C
Then can draw the computing formula of each component in concrete, namely
M C = ρ C ( ρ C - 1 ) [ M - V - ( 1 - A 1 ) A 2 M G ′ - ( 1 - B 1 ) B 2 M S ′ ]
M W=V W=V-A 1A 2M' G-B 1B 2M' S-V C
M G=A 2M' G
M S=B 2M′ S
The agent structure of the concrete ingredients identification apparatus that the present invention relates to comprises charging aperture, capacity line, the first weight induction device, feeder hopper, the rotary screen of 0.5mm screen cloth, the rotary screen of 0.08mm screen cloth, liquid discharge outlet, discharge gate, the second weight induction device, the first discharge port, the second discharge port, exterior display device, spectrum detection instrument and motor; The below of charging aperture is provided with 50L capacity line, and the below of capacity line is fixedly shaped with the first weight induction device, and concrete is also sent into feeder hopper by the concrete weight that the first induction installation measurement of inductance is poured into from charging aperture, and the capacity of feeder hopper is 50L; The rotary screen that feeder hopper lower end is fixedly connected with rotary screen and the 0.08mm screen cloth being shaped with 0.5mm screen cloth combines the bitubular roller screen formed, and the rotary screen of 0.5mm screen cloth and the rotary screen of 0.08mm screen cloth sift out stone in concrete and sand respectively; The right-hand member of the rotary screen of 0.08mm screen cloth is fixedly connected with and is shaped with motor; The left end port of the rotary screen of 0.5mm screen cloth and the rotary screen of 0.08mm screen cloth is fixedly shaped with the second discharge port and the first discharge port respectively, the stone that the rotary screen that second discharge port discharges 0.5mm screen cloth sifts out, the sand that the rotary screen that the first discharge port discharges 0.08mm screen cloth sifts out; First discharge port is fixedly connected with the second weight induction device with the second discharge port, the weight of the sand that the second weight induction device measurement of inductance first discharge port and the second discharge port are discharged and stone; Second weight induction device lower end is fixedly shaped with discharge gate, and discharge gate discharges sand and stone; The bottom of the rotary screen of 0.08mm screen cloth is opened and is shaped with liquid discharge outlet, and unnecessary liquid is discharged by liquid discharge outlet; Spectrum detection instrument is fixedly connected with the additive composition and ratio that detect and contain in concrete with the first weight induction device; The computing machine that the data recorded are transferred in exterior display device by the first weight induction device and the second weight induction device carries out computational analysis according to the computation process of setting, realizes the situ appraisal to concrete ingredients.
Compared with prior art, its authentication method is simple in the present invention, and principle is reliable, and measurement result is accurate, easy to operate, can be widely used in building construction process the qualification of concrete ingredients and measurement.
Accompanying drawing illustrates:
Fig. 1 is the agent structure principle schematic of concrete ingredients identification apparatus of the present invention.
Fig. 2 is the cross section structure principle schematic of the bitubular roller screen that the present invention relates to.
Embodiment:
Also be described further by reference to the accompanying drawings below by embodiment.
Embodiment:
The present embodiment realizes the situ appraisal to concrete admixture and concrete ingredients in concrete ingredients identification apparatus, and its concrete technology step is:
(1), extract the mixed concrete sample in working-yard, first in spectrum detection instrument 13, adopt existing spectrographic method analysis to draw composition and the ratio of the additive existed in concrete;
(2) concrete sample of the working-yard, step (1) obtained is poured in the feeder hopper 4 of fixed capacity 50L, concrete weight is obtained by the first weight induction device 3, pour wash-down water into from charging aperture 1 to wash away concrete simultaneously, obtain the potpourri of concrete and water;
(3), by the potpourri of concrete and water filter out stone and sand respectively by the rotary screen 5 of 0.5mm screen cloth and the rotary screen 6 of 0.08mm screen cloth, and measure the weight of saturated water suction stone and saturated water suction sand respectively by the second weight induction device 9;
(4), by the mass transport of the concrete obtained, saturated water suction stone and saturated water suction sand to exterior display device 12, drawn the weight of stone in concrete, sand, cement and water by the computer calculate in exterior display device 12, complete the situ appraisal to concrete ingredients.
The detailed process of the computer calculate involved by the present embodiment is: the natural moisture content of stone and sand is respectively W g, W s, apparent density is respectively ρ ' g, ρ ' s, stone and sand apparent density is in the dry state respectively ρ g, ρ s, then the volume of stone and sand is respectively:
V G = M G ρ G ′ = 1 + W G ρ G ρ G + W G ρ G M G = A 1 M G - - - ( 1 )
V S = M S ρ S ′ = 1 + W S ρ S ρ S + W S ρ S M S = B 1 M S - - - ( 2 )
M in formula g, M sbe respectively stone and sand weight in its natural state; Formula (1) and formula (2) are substituted into formula (3) M c+ M w+ M g+ M s=M and formula (4) V c+ V w+ V g+ V sin=V, obtain formula (5) and formula (6):
V c = M - V - ( 1 - A 1 M G ) - ( 1 - B 1 ) M S ρ C - 1 - - - ( 5 )
V W=V-A 1M G-B 1M S-V C(6)
Wherein M ccv c, M wwv w, M cfor cement weight, ρ cfor cement density, V cfor cement volume, M wfor the weight of water, ρ wfor the density of water, V wfor the volume of water; Consider the existence of the saturated water absorption after the content of stone and sand and water punching, derive M g, M sscreen over-size M ' after rushing with water g, M ' srelation, if the saturated water absorption of stone and silt content are respectively W ' gand Q g, saturated water absorption and the silt content of sand are respectively w ' sand Q s, then to stone definition silt content be so, obtain formula (7):
M G = 1 + W G ( 1 + W G ′ ) ( 1 - Q G ) M G ′ = A 2 M G ′ - - - ( 7 )
In like manner, formula (8) is obtained:
M S = 1 + W S ( 1 + W S ′ ) ( 1 - Q S ) M S ′ = B 2 M S ′ - - - ( 8 )
Formula (7) and formula (8) are substituted into formula (5) and formula (6) obtains
V c = M - V - ( 1 - A 1 ) A 2 M G ′ - ( 1 - B 1 ) B 2 M S ′ ρ C - 1
V W=V-A 1A 2M' G-B 1B 2M' S-V C
Then can draw the computing formula of each component in concrete, namely
M C = ρ C ( ρ C - 1 ) [ M - V - ( 1 - A 1 ) A 2 M G ′ - ( 1 - B 1 ) B 2 M S ′ ]
M W=V W=V-A 1A 2M' G-B 1B 2M' S-V C
M G=A 2M' G
M S=B 2M′ S
The agent structure of the concrete ingredients identification apparatus that the present embodiment relates to comprises charging aperture 1, capacity line 2, first weight induction device 3, feeder hopper 4, the rotary screen 5 of 0.5mm screen cloth, the rotary screen 6 of 0.08mm screen cloth, liquid discharge outlet 7, discharge gate 8, second weight induction device 9, first discharge port 10, second discharge port 11, exterior display device 12, spectrum detection instrument 13 and motor 14; The below of charging aperture 1 is provided with 50L capacity line 2, and the below of capacity line 2 is fixedly shaped with concrete weight that the first weight induction device 3, first induction installation 4 measurement of inductance pours into from charging aperture 2 and concrete is sent into feeder hopper 4, and the capacity of feeder hopper 4 is 50L; The rotary screen 6 that feeder hopper 4 lower end is fixedly connected with the rotary screen 5 and 0.08mm screen cloth being shaped with 0.5mm screen cloth combines the bitubular roller screen formed, and the rotary screen 5 of 0.5mm screen cloth and the rotary screen 6 of 0.08mm screen cloth sift out stone in concrete and sand respectively; The right-hand member of the rotary screen 6 of 0.08mm screen cloth is fixedly connected with and is shaped with motor 14; The left end port of the rotary screen 5 of 0.5mm screen cloth and the rotary screen 6 of 0.08mm screen cloth is fixedly shaped with the second discharge port 11 and the first discharge port 10 respectively, the stone that the rotary screen 5 that second discharge port 11 discharges 0.5mm screen cloth sifts out, the sand that the rotary screen 6 that the first discharge port 10 discharges 0.08mm screen cloth sifts out; First discharge port 10 is fixedly connected with the second weight induction device 9 with the second discharge port 11, the weight of the sand that the second weight induction device 9 measurement of inductance first discharge port 10 and the second discharge port 11 are discharged and stone; Second weight induction device 9 lower end is fixedly shaped with discharge gate 8, and discharge gate 8 discharges sand and stone; The bottom of the rotary screen 6 of 0.08mm screen cloth is opened and is shaped with liquid discharge outlet 7, and unnecessary liquid is discharged by liquid discharge outlet 7; Spectrum detection instrument 13 is fixedly connected with the additive composition and ratio that detect and contain in concrete with the first weight induction device 3; The computing machine that the data recorded are transferred in exterior display device 12 by the first weight induction device 3 and the second weight induction device 9 carries out computational analysis according to the computation process of setting, realizes the situ appraisal to concrete ingredients.

Claims (2)

1. an authentication method for concrete ingredients, is characterized in that the situ appraisal realized in concrete ingredients identification apparatus concrete admixture and concrete ingredients, and its concrete technology step is:
(1), extract the mixed concrete sample in working-yard, first in spectrum detection instrument, adopt existing spectrographic method analysis to draw composition and the ratio of the additive existed in concrete;
(2) concrete sample of the working-yard, step (1) obtained is poured in the feeder hopper of fixed capacity 50L, concrete weight is obtained by the first weight induction device, pour wash-down water into from charging aperture to wash away concrete simultaneously, obtain the potpourri of concrete and water;
(3), by the potpourri of concrete and water filter out stone and sand respectively by the rotary screen of 0.5mm screen cloth and the rotary screen of 0.08mm screen cloth, and measure the weight of saturated water suction stone and saturated water suction sand respectively by the second weight induction device;
(4), by the mass transport of the concrete obtained, saturated water suction stone and saturated water suction sand to exterior display device, drawn the weight of stone in concrete, sand, cement and water by the computer calculate in exterior display device, complete the situ appraisal to concrete ingredients;
The agent structure of described concrete ingredients identification apparatus comprises charging aperture, 50L capacity line, the first weight induction device, feeder hopper, the rotary screen of 0.5mm screen cloth, the rotary screen of 0.08mm screen cloth, liquid discharge outlet, discharge gate, the second weight induction device, the first discharge port, the second discharge port, exterior display device, spectrum detection instrument and motor; The below of charging aperture is provided with 50L capacity line, and the below of capacity line is fixedly shaped with the first weight induction device, and concrete is also sent into feeder hopper by the concrete weight that the first weight induction device measurement of inductance is poured into from charging aperture, and the capacity of feeder hopper is 50L; The rotary screen that feeder hopper lower end is fixedly connected with rotary screen and the 0.08mm screen cloth being shaped with 0.5mm screen cloth combines the bitubular roller screen formed, and the rotary screen of 0.5mm screen cloth and the rotary screen of 0.08mm screen cloth sift out stone in concrete and sand respectively; The right-hand member of the rotary screen of 0.08mm screen cloth is fixedly connected with and is shaped with motor; The left end port of the rotary screen of 0.5mm screen cloth and the rotary screen of 0.08mm screen cloth is fixedly shaped with the second discharge port and the first discharge port respectively, the stone that the rotary screen that second discharge port discharges 0.5mm screen cloth sifts out, the sand that the rotary screen that the first discharge port discharges 0.08mm screen cloth sifts out; First discharge port is fixedly connected with the second weight induction device with the second discharge port, the weight of the sand that the second weight induction device measurement of inductance first discharge port and the second discharge port are discharged and stone; Second weight induction device lower end is fixedly shaped with discharge gate, and discharge gate discharges sand and stone; The bottom of the rotary screen of 0.08mm screen cloth is opened and is shaped with liquid discharge outlet, and unnecessary liquid is discharged by liquid discharge outlet; Spectrum detection instrument is fixedly connected with the additive composition and ratio that detect and contain in concrete with the first weight induction device; The computing machine that the data recorded are transferred in exterior display device by the first weight induction device and the second weight induction device carries out computational analysis according to the computation process of setting, realizes the situ appraisal to concrete ingredients.
2. the authentication method of concrete ingredients according to claim 1, is characterized in that the detailed process of involved computer calculate is: the natural moisture content of stone and sand is respectively W g, W s, apparent density is respectively ρ ' g, ρ ' s, stone and sand apparent density is in the dry state respectively ρ g, ρ s, then the volume of stone and sand is respectively:
V G = M G ρ G ′ = 1 + W G ρ G ρ G + W G ρ G M G = A 1 M G - - - ( 1 )
V S = M S ρ S ′ = 1 + W S ρ S ρ S + W S ρ S M S = B 1 M S - - - ( 2 )
M in formula g, M sbe respectively stone and sand weight in its natural state; Formula (1) and formula (2) are substituted into formula (3) M c+ M w+ M g+ M s=M and formula (4) V c+ V w+ V g+ V sin=V, obtain formula (5) and formula (6):
V c = M - V - ( 1 - A 1 ) M G - ( 1 - B 1 ) M S ρ C - 1 - - - ( 5 )
V W=V-A 1M G-B 1M S-V C(6)
Wherein M ccv c, M wwv w, M cfor cement weight, ρ cfor cement density, V cfor cement volume, M wfor the weight of water, ρ wfor the density of water, V wfor the volume of water; Consider the existence of the saturated water absorption after the content of stone and sand and water punching, derive M g, M sscreen over-size M ' after rushing with water g, M ' srelation, if the saturated water absorption of stone and silt content are respectively W ' gand Q g, saturated water absorption and the silt content of sand are respectively W ' sand Q s, then to stone definition silt content be so, obtain formula (7):
M G = 1 + W G ( 1 + W G ′ ) ( 1 - Q G ) M G ′ = A 2 M G ′ - - - ( 7 )
In like manner, formula (8) is obtained:
M S = 1 + W S ( 1 + W S ′ ) ( 1 - Q S ) M S ′ = - B 2 M S ′ - - ( 8 )
Formula (7) and formula (8) are substituted into formula (5) and formula (6) obtains
V C = M - V - ( 1 - A 1 ) A 2 M G ′ - ( 1 - B 1 ) B 2 M S ′ ρ C - 1
V W=V-A 1A 2M' G-B 1B 2M' S-V C
Then can draw the computing formula of each component in concrete, namely
M C = ρ C ( ρ C - 1 ) [ M - V - ( 1 - A 1 ) A 2 M G ′ - ( 1 - B 1 ) B 2 M S ′ ]
M W=V W=V-A 1A 2M' G-B 1B 2M' S-V C
M G=A 2M' G
M S=B 2M′ S
CN201310248276.7A 2013-06-21 2013-06-21 A kind of authentication method of concrete ingredients Expired - Fee Related CN103278462B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201310248276.7A CN103278462B (en) 2013-06-21 2013-06-21 A kind of authentication method of concrete ingredients

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201310248276.7A CN103278462B (en) 2013-06-21 2013-06-21 A kind of authentication method of concrete ingredients

Publications (2)

Publication Number Publication Date
CN103278462A CN103278462A (en) 2013-09-04
CN103278462B true CN103278462B (en) 2015-09-23

Family

ID=49061045

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201310248276.7A Expired - Fee Related CN103278462B (en) 2013-06-21 2013-06-21 A kind of authentication method of concrete ingredients

Country Status (1)

Country Link
CN (1) CN103278462B (en)

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4615215A (en) * 1983-04-20 1986-10-07 Takenaka Komuten Co., Ltd. Method and apparatus for testing ready-mixed concrete
CN101995446A (en) * 2010-06-25 2011-03-30 江苏省交通科学研究院股份有限公司 Method for analyzing components of coal ash and cement in concrete mixture

Family Cites Families (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP5038831B2 (en) * 2007-09-12 2012-10-03 一般財団法人電力中央研究所 Method and apparatus for measuring concrete-containing substances

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4615215A (en) * 1983-04-20 1986-10-07 Takenaka Komuten Co., Ltd. Method and apparatus for testing ready-mixed concrete
CN101995446A (en) * 2010-06-25 2011-03-30 江苏省交通科学研究院股份有限公司 Method for analyzing components of coal ash and cement in concrete mixture

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
《新拌混凝土质量快速检测技术》编写组.《新拌混凝土配合比的快速检测》.《新拌混凝土质量快速检测技术》.1991,第123-125页. *

Also Published As

Publication number Publication date
CN103278462A (en) 2013-09-04

Similar Documents

Publication Publication Date Title
Yılmaz et al. Assessment of strength properties of cemented paste backfill by ultrasonic pulse velocity test
CN103196794B (en) Automatic testing system used for testing fresh mixing performance of concrete
Zhang et al. Investigation of the shape, size, angularity and surface texture properties of coarse aggregates
CN103995036A (en) Method for monitoring cement-based material crack by using electrochemical impedance spectroscopy in real time
US11614420B2 (en) Thermo-piezoresistive embedded wireless sensor with real-time concrete monitoring
Toraman et al. Predicting the crushability of rocks from the impact strength index
Sallehi et al. Formation factor of fresh cementitious pastes
CN103278461B (en) Evaluation device of concrete components
Li et al. Investigation on material properties and surface characteristics related to tyre–road noise for thin layer surfacings
Bascetin et al. Application of Pb-Zn tailings for surface paste disposal: Geotechnical and geochemical observations
CN103278462B (en) A kind of authentication method of concrete ingredients
Lefort et al. Analysis by Ripley’s function of the correlations involved during failure in quasi-brittle materials: Experimental and numerical investigations at the mesoscale
CN203287305U (en) Identifying device for concrete composition
Lafayette et al. Analysis of generation and characterization of construction and demolition waste on construction sites in the city of Recife, Brazil
Romero Clausell et al. Environmental evaluation of a self-compacted clay based concrete with natural superplasticizers
Zhao et al. Application of statistical inference for analysis of heavy metal variability in roadside soil
Ortiz et al. Experimental procedure for evaluation of coarse aggregate polishing resistance
CN104502232A (en) Concrete setting time testing method based on principle of aggregate equal specific surface area substitution
CN104181289B (en) A kind of measuring method of concrete surface layer moisture distribution
Axelsson et al. The PenetraCone, a new robust field measurement device for determining the penetrability of cementitious grouts
Fooladi et al. Multifractal Analysis of Crack Propagation in Concrete Specimens Considering the Influence of the Aggregates’ Grading
Ahn et al. X-ray image analysis of porosity of pervious concretes
CN204064771U (en) A kind of concrete mix aggregate separated device
CN103163039A (en) Method for quickly determining water-cement ratio of industrial-cinder-doped concrete
Hajali et al. Cross-hole sonic logging and frequency tomography analysis of drilled shaft foundations to better evaluate anomalies locations

Legal Events

Date Code Title Description
C06 Publication
PB01 Publication
C10 Entry into substantive examination
SE01 Entry into force of request for substantive examination
C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20150923

Termination date: 20180621