As unit 1 of Kori was permanently shut down in June 2017, domestic nuclear industry has entered the path of decommissioning. The most important thing in decommissioning is cost reduction. And volume reduction of radioactive waste is especially important. According to the IAEA report, more than 4,000 tons of metallic waste is generated during the decommissioning of a 1,000 MWe reactor and most of these wastes are LLW or VLLW. To reduce amount of metallic waste dramatically, we should choose efficient decontamination method. In this study, we conducted dry ice and bead blasting decontamination. We prepared Inconel-600 and STS-304 specimen with dimensions of 30 mm × 30 mm × 5 mm. Loose and fixed contamination was applied on the surface of specimen using SIMCON method. Bead and dry-ice blasting was conducted by spraying alumina and dry ice pellet at the same pressure and distance for the same time. The removal of loose contamination was observed using microscope. It was found that contaminants are significantly removed using both dry ice blasting and bead blasting. However, some abrasive material remained on the surface of specimen. The removal of fixed contamination was verified by weight comparison before and after experiment and cobalt concentration comparison before and after experiment using X-ray Fluorescence Spectroscope (XRF). At least 90% of the cobalt was removed, but some abrasive particle was also remained on the surface of specimen. In this study, it is confirmed that the effectiveness of manufacturing a large-scale abrasive decontamination facility, and it is expected that this technology can be used to effectively reduce the amount of metallic waste generated during decommissioning.
To cope with automobile exhaust gas regulations, ISG (Idling Stop & Go) and charging control systems are applied to HEVs (Hybrid Electric Vehicle) for the purpose of improving fuel economy. These systems require quick charge/discharge performance at high current. To satisfy this characteristic, improvement of the positive electrode plate is studied to improve the charge/discharge process and performance of AGM(Absorbent Glass Mat) lead-acid batteries applied to ISG automotive systems. The bonding between grid and A.M (Active Material) can be improved by applying the Sand-Blasting method to provide roughness to the surface of the positive grid. When the Sand-Blasting method is applied with conditions of ball speed 1,000 rpm and conveyor speed 5 M/min, ideal bonding is achieved between grid and A.M. The positive plate of each condition is applied to the AGM LAB (Absorbent Glass Mat Lead Acid Battery); then, the performance and ISG life characteristics are tested by the vehicle battery test method. In CCA, which evaluates the starting performance at -18 oC and 30 oC with high current, the advanced AGM LAB improves about 25 %. At 0 oC CA (Charge Acceptance), the initial charging current of the advanced AGM LAB increases about 25 %. Improving the bonding between the grid and A.M. by roughening the grid surface improves the flow of current and lowers the resistance, which is considered to have a significant effect on the high current charging/discharging area. In a Standard of Battery Association of Japan (SBA) S0101 test, after 300 A discharge, the voltage of the advanced AGM LAB with the Sand-Blasting method grid was 0.059 V higher than that of untreated grid. As the cycle progresses, the gap widens to 0.13 V at the point of 10,800 cycles. As the bonding between grid and A.M. increases through the Sand Blasting method, the slope of the discharge voltage declines gradually as the cycle progresses, showing excellent battery life characteristics. It is believed that system will exhibit excellent characteristics in the vehicle environment of the ISG system, in which charge/discharge occurs over a short time.
In the blast work inevitably exists a vacant space between drilling hole wall and explosive. So it cause an blast inefficiency called on a decoupling effect. In this study, For enhancing the detonation efficiency and reducing the environmental problem(vibration, noise, etc.), water is used to fill the vacant space. Water filling has many advantages such as efficiency, low price and workability. In the comparison analysis the field test is carried out. It result on an aspect of the effectiveness and safety. The result measured in the field is as follows; First, the water tube blast reduces the vibration by 16.5% and lessen the noise by 1% comparing to general blast. Secondly, water tube blast makes a separation distance shortened by maximum 15m. Thirdly, in the case that the same quantities of explosive are used, the amount of crushing per hole increased by about 12.8% in water blast method. The quantity of the explosive is reduced by about 11.4% comparing with general blast.
The powder blasting process has become an important machining technique for the cost effective fabrication of micro devices. This process is similar to sand blasting, and effectively removes hard and brittle materials. A large number of investigations o
The pretreatment for substrate was carried out in change of gun pressure of bar using wet blasting. The size of powder was about . As the results, the surface roughness of cemented carbide substrate was improved with increment of gun pressure of wet blasting. A new surface layer was formed and Co particles were uniformly distributed over the entire surface after pretreatment. The adhesion of the pretreated substrate in same PVD-TiAlN film was improved and in approximately shown the best adhesion value.
최근에 도시화와 산업화 및 교통망의 지속적인 확보로 인하여 발파공사를 시행하는 공사장이 증가하고 있다. 발파공사는 주변 주 민들의 주거환경과 인접시설물들의 안전에 큰 영향을 미치므로 이에 대한 대책이 필요하다. 본 연구에서는 발파피해를 줄이기 위한 방법 중에 서 발파공내의 발파메커니즘을 규명하고 개선하였다. 일반적인 공법에서 발생하는 천공경과 폭약경 사이의 차이로 인한 공간에서 디커플링효 과를 규명하고, 이 공간의 매질을 변화시킴으로서 발파 시 진동발생의 규모를 규명하였다. 발파시험은 도로, 철도, 산업단지에서 실시하고, 발 파진동을 측정하였다. 측정된 진동속도를 회귀분석하여 발파진동추정식을 산정하고 이를 이용하여 이격거리를 산정하였다. 공내 매질이 공 기보다는 물처럼 비중이 큰 경우에 충격력은 크나 폭발 지연시간이 짧아 진동전달거리가 작아 이격거리를 크게 확보할 수 있다. 핵심용어 :
Reconstruction of the bridge is constructed to well foundation at the basement. Therefore, the existing bridge should evaluate the impact according to blasting construction. The result of displacement are presented the standard dispacement of the existing bridge.
2015년도 개통을 위하여 호남고속철도 건설사업 건설이 진행되고 있으며, 이 노선은 차세대 고속열차의 HEMU-430X가 세계 최초로 주행하게 된다. 한편, 인근에 위치한 석회석 광산이 지속적인 발파작업을 시행하고 있으며, 더욱이 향후 연결통로 개설을 통하여 이 노선의 하부를 관통할 예정이다. 이 경우에 광산 발파로 인한 고속철도의 안정성과 열차주행으로 인한 광산 안정성 모두 검토되어야 한다. 이를 위하여 광산 발파진동계측을 통하여 진동추정식을 작성하였으며, 광산발파로 인한 철도 안정성을 정량적으로 검토하였다. 특히, 계측결과 분석에 의한 계측관리기준으로 0.5 kine(cm/sec)을 설정하여, 광산 발파진동을 제어하고자 하였으며, 발파진동의 제어를 통하여 고속열차의 안정성을 확보할 수 있는 광산의 발파패턴을 제안하였다. 또한, 고속열차 주행에 따른 진동이 광산에 미치는 영향을 수치해석적으로 검토하여 광산의 안정성도 확보할 수 있도록 하였다.
Linear and nonlinear models are available to simulate the effect of mine blasting and the results change by each model. Linear model can properly simulate loss of impact wave in plastic failure region based on comparison of site vibration measurement and numerical analysis iteratively. But, loss of impact wave in plastic failure region should be calibrated into input parameter of blasting pressure. A method to convert loss of impact wave into design parameter is suggested in this study.
Linear and nonlinear models are available to simulate the effect of mine blasting. And the results are changed by selection of each model. Plaxis 8.0, FLAC 4.0 are used in this study for simulating blasting pressure. These programs offer linear model and nonlinear model. Linear model can properly simulate loss of impact wave in plastic failure region based on comparison of site vibration measurement and numerical analysis iteratively.
Recent spread of awareness of residential environment and individual rights makes more environmental disputes than ever. More blasting is needed when construction projects like road, tunnel, railways and industrial area constructions. Noises and vibrations by blasting, therefore, cause many environmental disputes. In this study, we will suggest solution of environmental disputes deduction by case analysing.
In building demolition work, major dust-generating activities are blasting concrete and rock. The aim of this study was to find the characteristic of particle size of dusts which were generated during building demolition work using explosion. The DustMate of the Turnkey-Instruments Ltd. was used for particulate size-selective sampling of the four sites. TSP(Total Suspended Particle), PM10(Particle Matter 10 μm), PM2.5(Particle Matter 2.5 μm), and PM1.0(Particle Matter 1.0 μm) were measured during building demolition work using explosion. The large particulate (higher than the diameter 10 μm) showed to be higher than 50%. The particulate ranged from 10 μm to 2.5 μm showed about 30-40%. PM2.5 was not scarcely detected in the samples collected for building demolition work using explosion. We conclude that the dust generated during building demolition work using explosion has not most respirable particulate.
본 연구에서는 수중발파로 인해 발생되는 지반의 진동과 수중소음, 진동의 감쇠정도를 계측 및 분석하였다. 실험과 신뢰성이론으로 부터 진동추정식을 V=K(SD)-0.536으로 제시하였으며, 발파상수 K값은 신뢰도 50%, 90%, 99.9%에 따라 1.507, 2.005, 2.939로 각각 얻어졌다. 수중발파로 인한 육상의 소규모 저수지(양식어장)의 수중소음추정식은 실측된 수중소음 자료를 이용하여 SL=293.2SD-0.164로 제시하였으며, 수중에서는 최대 86.8dB(A), 대기중에서는 최대 147.8dB(A)의 소음이 계측되었다. 이러한 연구결과들을 고려하여 수중발파 설계 및 영향성 평가가 가능한 흐름도를 제시하였다. 수중발파에 대한 영향평가 연구는 이제 시작하는 단계로써 지속적이고 다양한 경우에 대한 연구가 보완되어야 할 것으로 판단된다.