The desulfurizers facility is cylindrical shape. To operate properly it needs nozzles cleaned, get rid of lime adhesion and sludge, repair the wear and corrosion of facility regularly. For this purpose, workers shall access the ceiling or vertical wall at high place. Ordinary scaffoldings such as steel pipe scaffolding or system scaffolding have been using so that workers can access them. With these ordinary scaffoldings, openings around cylindrical wall are inevitable which make workers can expose always to the risk of falling. The purpose of this study is to develop customized scaffolding to minimize the openings to prevent workers form falling during maintenance it. It consists of a hexagonal central tower and six trapezoidal outer towers. And the bracing among the towers have connected each other for self-standing and for maintaining the structure of towers. Span decks, the circumference footstools, steps, etc. are laid on each floor. The safety is reviewed by structural analysis and performance test. With this study, openings each floor of this scaffold are removed. The gap between the cylindrical wall and the edge of the work stage is approximately 100 mm. Therefore, we expect that workers can work safely and efficiently.
The characteristics of CNT-Polyamide composites were analyzed, that is, tensile strength, electrical resistivity, and thermal conductivity were measured according to the align length of CNT. There have been researches on the influence of aligned CNT to improve the mechanical and thermal characteristics in different areas including absorption and shielding of electromagnetic wave, thermal distribution or absorption, and high-strength of CNT.
The aligned CNTs were synthesized by the ethylene gas with a CVD device preheated at 650℃. CNT-Polyamide composites were produced with the mixing of solution. CNT contents were controlled from 1phr to 50phr in the polyamide-ethanol solution, and blended with the 700W bar-type ultrasonic wave for 60 min.. And then CNT-polyamide were precipitated by CNT-polyamide-etnanol falling into the cold water. After dried 12 hours, CNT-polyamide composite were pressed at 150℃~180℃ with 400kgf to get the thickness of 1mm.
As the conclusions, aligned CNT bundles were dispersed by cutting of CNT to the aligned direction because of polyamide properties. Tensile strength and electrical resistivity were improved to the increase of aligned length of CNT. Thermal conductivity was little affected by the align length of CNT.
우리는 시설토마토에서 4가지 침투이행성약제가 사용된 가지를 트랩식물로 활용하여 담배가루이 성충의 방제효과를 조사하였다. 침투이 행성약제가 추천된 농도로 사용되었을 때, 담배가루이 성충에 대한 dinotefuran SG 50% 방제효과는 80%로 방제효과가 각각 51.0%, 12.4%, 11.0%인 cyantraniliprole, pyridaben, clothianidin 보다 높았다. 살충효과가 뛰어난 dinotefuran을 농도별로 처리하였을 때, 200 ppm에서 살충률이 88.4%로 가장 효과적이었다. Dinotefuran의 방제효과는 가지에 적용된 약 9일까지 지속되었고 그 이후 담배가루이 밀도는 증가하였 다. 포장실험에서 가지 트랩식물로부터 0, 15, 20 m 떨어진 토마토 신초에서의 담배가루이 밀도가 가장 높았고 5 m와 10 m에서 가장 낮았다. 담배가루이의 밀도가 낮고 dinotefuran SG 50%가 처리된 가지를 10 m 간격으로 투입했을 때, 담배가루이 성충의 밀도가 전체적으로 낮았으며, 또한 담배가루이의 밀도는 하우스 내부보다는 측면에서 밀도가 더 높았고 가지로부터 멀리 떨어진 곳에서 밀도가 높았다. 담배가루이 밀도가 높 고 dinotefuran SG 50%가 처리된 가지를 5 m간격으로 투입했을 때, 담배가루이 밀도가 낮아졌다. 이러한 결과로 볼 때 가지는 시설토마토 재배 시 담배가루이 성충을 유인하는데 효과적인 트랩식물이며 dinotefuran SG 50% 과 함께 사용한다면 담배가루이 밀도를 효과적으로 감소시킬 수 있을 것이다.
The effect of CNT diameters on properties of CNT-polyamide composites was investigated such as electrical conductivity, tensile strength and thermal conductivity. To get different diameter distributions of CNTs, several portions of Mo and Fe in Mo-Fe/MgO catalysts were synthesized by a combustion method at 600℃. And all CNTs growed at 900℃ with 3 SLM methane and 1 SLM hydrogen for 40min. Four kinds of CNTs with different diameter distributions, such as 1~3nm, 3~7nm, 7~13nm, and 10~30nm, were selected to make CNT-polyamide composites. Each composite was manufactured by a solution mixing using bar-type ultra-sonicator in the CNT portions from 1phr to 50phr. And electrical conductivity, tensile strength, and thermal conductivity were measured. Three properties of CNT-polyamide composite, manufactured with 10nm diameter, were more excellent compared to other composites, with electrical conductivity Ω at 7phr, thermal conductivity 2.4.W/mK at 40phr, tensile strength 60MPa at 30phr. CNTs with a diameter of 10nm were superior to other diameters for the multi-functional composite such as CNT-polyamide composites.
15 vol% ZrO2가 첨가된 Na β"-alumina 복합재를 1단계와 2단계 소결법을 사용하여 제조하였다. ZrO2는 효율적으로 Na β"-alumina에 비해 약 51%정도 증가하였으며 열처리 시간에 따른 Klc값의 큰 변화는 관찰되지 않았다. 그러나 이들 복합재의 굽힘 강도 값은 열처리 시간이 60분을 초과함에 따라 점차 감소하는 경향을 나타냈다. 2단계 소결법으로 제조한 Na 복합재의 전기 전도도는 1단계 소결법으로 제조된 시편과 달리 열처리 시간에 따른 전도도 값의 분산성이 거의 없었으며, 그 값은 다결정 Na β"-alumina의 전도도와 거의 동일하였다. Na 복합재 및 이온교환법에 의해 제조한 K 복합재의 전기전도도 값은 300˚C에서 각각 1.3x 10-1과 5.9x20-2Scm-1로 측정되었다.2Scm-1로 측정되었다.