최근 나노 버블 수의 건설 산업에 적용한 효과에 대하여 검증하고자 나노 버블 수를 혼입한 모르타르의 물리적 특성에 관한 연구를 진행하였으며 산소 및 이산화탄소 기체를 이용하여 나노 버블 수를 사용하였다. 모르타르의 물리적 성능을 비교하기 위하여 응결 시험과 압축강도 시험을 진행하였으며 응결 시간 내 열중량 분석을 통하여 응결 시험의 원인을 분석하고자 하였다. 본 연구 결과로써 산소 나노 버블 수를 사용하였을 경우 모르타르의 미세 응결촉진을 가져왔으며 이산화탄소 나노 버블 수를 사용한 경우 응결시간의 지연이 유의미하게 나타났다. 또한 실험한 기체의 종류에 관계 없이 강도가 증가 하였으며 응결 지연 여부와 관계없이 조기강도가 증가함을 확인하였다. 추가적인 공극구조 및 수화물 구조 분석에 관한 연구가 필요하지만 나노 버블 수가 건설 산업에 긍정적인 영향을 미칠 것으로 판단된다.
PURPOSES : The objective of this study is to present a practical application method for measuring the setting time of concrete in the field, considering different concrete blending and curing environments.
METHODS : In the experimental environment of the concrete setting experiment, a mold was made in the laboratory, and the curing temperature was performed at laboratory room temperature (20-25 ℃), heater (30 ℃), and dryer (40 ℃). In the field, the experimental method was performed in summer and autumn, setting experiments on penetration resistance, ultrasonic pulse velocity, and semi-calorimeter.
RESULTS : The result of the concrete setting time experiment was that the early setting time was achieved in the combination of filash and slag when the concrete was mixed, and the setting time in the curing environment was the same as the early setting time in the field. The setting time measurement method shows the correlation of the high crystal coefficient at UPV with 0.99 based on PR and the good ratio of 92 % to 107 % on average. In addition, the semi-calorimeter shows a good crystal coefficient of 0.96 to 0.99 and a good setting time of 88 % to 101 % on average. CONCLUSIONS : The analysis of the setting time of the concrete shows that the curing temperature is more affected than the mixture, and it is considered that the UPV test, which evaluates the reliability of the degree of purification, is easy to sampie among the three methods.
This document gives a result of experiments on concrete using admixture Sikament® R4 combine with Sikacrete PP1. In developing countries, the development guides to build and set up a new infrastructure. In this case, the schedule of works is very important, which depends on the setting time of concrete structure. Specially, in tropical monsoon climate country, we need to use admixtures to increase the life time of constructions, especially concrete structures. Today, there are thousands of building, roads and bridges will be made. By using admixture, it not only helps to save the waiting time on the work site, but also increase quality of concrete structure. By using these good effects of admixtures, it’s necessary to find an optimal ratio of them in the mix design ingredient of concrete. The concrete strength can be controlled by changing a range of variety ratio of admixture in the mix design. This topic will find out the role of admixture and its relationship with the compressive strength of concrete.
This paper describes on the real-time monitoring of net setting and hauling process for fishing operations of Danish seine vessels in the southern waters of Korea as an application of a PC based ECDIS system. Tracking of fishing process was performed for the large scale Danish seine vessel of G/T 90 and 350 PS class using the fishing gear which the length of net, ground rope, head rope and sweep line including warp in both sides were 86m, 104m, 118m and 3,200m, respectively. Tracking information for net setting and hauling process was continuously recorded for 23 fishing operations performed on November and December, 2003. All measurement data, such as trawl position, heading, towing course and past track which was individually time stamped during data acquisition, was processed in real time on the ECDIS and displayed simultaneously on the ENC chart. The results indicated that after the separation of a marker buoy from Danish seiner, the averaged running speed of vessel and the averaged setting period while shooting the seine on the course of diamond shape to surround the fish school in the 23 fishing operations were 8.3 knots and 13.1 minutes, respectively. And with the maker buoy taken on board, the averaged running speed of vessel and the averaged towing period while closing the seine on the straight route was 1.0 knots and 47.0 minutes, respectively. After the closing stage of hand rope, the hand rope was towed by the averaged speed of 2.2 knots during the 13.0 minutes. The average area for route of diamond shape swept by sweep lines of the seine in 23 fishing grounds was 709,951.6m2. Further investigation is also planed to provide more quantitative tracking information and to achieve more effective surveillance and control of Danish seine vessels in EEZ fishing grounds.
본 연구에서는 Durometer A타입으로 응결시간에 확실하게 차이를 나타낼 수 있는 플라이애시(이하 FA) 치환 콘크리트에서 프록터 관입저항 시험치와 경도치를 비교 분석하고자 하였다. 연구결과로 프록터 관입저항 시험치와 Durometer A타입의 경도치는 곡선의 형태로 높은 상관관계를 나타내었다. 표면 마감작업에 대하여 Durometer A타입의 경도치로 약 25 HD는 초결, 약 35 HD는 종결로 관리한다면 표면 마감작업시간 판정에 효과적일 것으로 사료된다.
As a result of this study, the testor penetration resistance and the hardness of the durometer are considered highly correlated and are thought to be effective when using the durometer to determine the setting time in the field structure.
Recently, high-performance and high-fluidity concrete have been studied and developed because high-rised build is constructed. An early-age properties of these concretes have been studied and developed bacause of comparing existed concrete. This study proposed non-destructive method as electrical resistivity measurement, which evaluates setting time of cement-based materials. An assessment of the effect on the setting time was studied on the addition of a superplasticizer to delay the setting time and the curing temperature to promote the setting time. 6th of samples prepared mortar according to adding superplasticizer(PNS) or curing temperature and measured the electrical resistivity during 24 h. As the results, mortars which curing higher temperature were promoted rising time which is setting time in the electrical resistivity, also mortars which adding superplasticizer were retard rising time.
In this study, the setting times of mortar using the biopolymer in seaweed was evaluated by penetration resistance. The evaluation was based on the method presented in KS F 2436. Test results show that the biopolymer was used instead of the synthetic polymer, the termination time was delayed.
In this study, the correlation between the durometer and the proctor penetration resistance tester, which is considered to be efficient in determining the setting time in a simple portability for soil and concrete utilizing organic lime (H) and Goto lime (G), is used. The results of the study show a high correlation between the portable hardness meter, the durometer and the proctor penetration resistance test period. Therefore, it is expected that the durometer will be useful for the measurement of setting time and the time limit.
In this study, the correlation with a proctor penetration resistance tester is analyzed for the purpose of judging the setting time of concrete by the convenient portability of the durometer which is a rubber hardness meter.The result of this study showed a high correlation between the value of the tilt of the durometer and the measured value of the proctor penetration resistance tester.
Recently, high-performance and high-fluidity concrete have been studied and developed because high-rised build is constructed. high-performance and self-consolidating concrete is demanded high strength as low w/cm and fluidity as adding superplasticizer. However, these superplasticizer are changed early-age property such as bleeding, segregation and late setting time etc. This study persents the setting time of fluidity mortars evaluated using the measurement of eletrical resistivity. 7th Samples prepared mortars which were adding polycarboxylate type superplasticizer(Ester) or poly naphthalene sulfonate(PNS) and measured the electrical resisitivity during 24 h. As a results, mortars which added superplasticizers were late rising time which is setting time in measurement of electrical resistivity. However, degree of hardening of PNS mortar were higher than Ester mortar.
α형 반수석고는 생산방법이 복잡하고, 대량 연속 생산이 곤란하며, 재료 단가가 높기 때문에 건설재료로써 활용범위가 크지 않았으 나, 최근 화력발전소의 배연탈황석고를 활용하여 경제적으로 α형 반수석고를 제조하는 기술이 실용화되고 있다. 이에 본 연구에서는 응결 시 작 시간이 빠르고 재령 초기 팽창변형이 발생하는 α형 반수석고의 특징에 주목하여, α형 반수석고를 10, 20, 30 wt.% 치환한 보통포틀랜드시멘 트 및 고로슬래그시멘트 모르타르를 제조한 후 응결 및 압축강도 특성, 건조수축을 검토하였다. 실험 결과, α형 반수석고의 치환율이 증가할수 록 보통포틀랜드시멘트 모르타르 및 고로슬래그시멘트 모르타르의 초결시간이 빨라지는 경향을 확인할 수 있었다. 또한, 보통포틀랜드시멘 트 모르타르와 고로슬래그시멘트 모르타르 모두 α형 반수석고의 치환율이 증가할수록 압축강도가 저하되는 경향을 보였으며, 보통포틀랜드 시멘트보다 고로슬래그시멘트에서 α형 반수석고의 압축강도 발현이 유리한 것으로 나타났다. 한편, α형 반수석고를 치환한 모르타르의 경우 α형 반수석고의 혼입에 의해 생성된 에트링가이트 침상결정의 성장압에 의해 초기재령에서 수축변형이 저감되는 것을 확인할 수 있었으며, 초 기 재령에서 수축변형의 억제 효과는 분명하지만, 재령이 지남에 따라 α형 반수석고를 치환하지 않은 조건과 변형의 차이는 다시 감소하는 경 향을 보였다. 따라서 α형 반수석고를 모르타르에 적용할 경우 강도는 다소 저하하지만, 응결 촉진 및 수축변형 억제에 큰 효과가 있기 때문에 건설재료로써 활용 가치가 높을 것으로 판단된다.
This research proposed MPC (Magnesia Phosphate Composite) mortar as a rapid repair material. But because this rapid reactivity inherently has issues related to microcracking caused by expansion and reaction heat, retarder and fibers are proposed to be used to control the hardening rate and cracking.
In this study, Retarder, which shows characteristics of delay hydration reaction and reduce hydration heat in concrete, was processed through granulation and paraffin coat to induce reaction by hydration heat. The prepared paraffin coated granular retarder was mixed with the mortar and the setting time was measured according to the desired temperature. As a result, it was confirmed that paraffin coated granular retarder which does not react during the concrete placing exhibits performance depending on the temperature.
In the current study, retarding type and standard type admixture design of concrete have been proposed to control the generation of hydration heat for foundation members that use high strengths concrete. Finite element analysis also has been conducted to understand the rational placing heights of concrete. In addition, real-size structures have experimented and their results were compared to the analytical results to evaluate the reducing effect of thermal stress . For a large 6.5 m×6.5 m×3.5 m member with retarding and standard type horizontal partition placement of concrete showed the manageable possibility of temperature difference within 25-degree Celcius between the middle and surface portion while the maximum temperature was 77-degree Celcius. Also, temperature cracking index from the finite element analysis appeared to be 1.49 that predicts no formation of cracking due to the effects of temperature. Finally, it appeared that horizontal partition placement of retarding and standard type concrete has the significant effect of reducing the thermal stress that generated by the hydration heat in the high strengths mass concrete.
This research proposed MPC (Magnesia Phosphate Composite) mortar as a rapid repair material. But because this rapid reactivity inherently has issues related to microcracking caused by expansion and reaction heat, retarder and fibers are proposed to be used to control the hardening rate and cracking
This study was aimed to investigate the effect of blending cement with crushed aggregate powder on the setting time. crushed aggregate powder was incorporated with the ratio of 0~30 wt.% of cement. The experimental results presented that there was little influence on the intial setting time, whereas the final setting time decreased by blending with higher amount of crushed aggregate powder.
Even though high performance concrete was developed according to becoming bigger and higher of reinforced concrete building, the rheological evaluation is not enough to use as input data to accomplish the numerical analysis of construction design. Consistency curves were measured by the viscometer as hydration reaction time passed. There are a sudden change of viscosity and yield stress around initial setting in case of low W/B. The increase of workability by the change of free water in cement paste was offset by the coating effect of impermeable layer in case of W/B 40%.
This study aimed to investigate the effect of boron compounds on the setting time and compressive strength of mortar, which is well known materials effective to capture thermal neutrons but cause delay in the strength development at early ages. Among various types of boron compounds, a boric acid was mainly considered in this study depending on the replacement level in mortar.