SUS hexagonal bar, which is manufactured by drawing process of SUS circular bar, have been widely used to make various adapters and fittings. The purpose of this study is to investigate the characteristics and stability of variable roll unit including stand module. Stand module is essential part of variable roll unit. Structural analysis was performed to predict the stability of stand module using 3 loads (50, 75, 100 Ton), thus it may be of help to the manufacture of stand module. As the results, internal ring of bearing showed maximum equivalent stress, and moreover bearing, shaft and roller had to be preferentially considered in order to maintain its stability. In cases of 50 and 75 Ton, there were no problems for stabilities, respectively, on the other hand, problem for stability may occur in case of 100 Ton.
Starch is classified as fast digestible starch (RDS), slowly digestible starch (SDS) and resistant starch (RS) depending on digestibility. RS can avoid enzymatic digestion in the small intestine, but microbes in the large intestine can ferment some RSs. The purpose of this study was to investigate the structural characteristics of low digestible starch by malic acid mutation in rice, corn and potato starch. Rice, corn and potato starch were treated with a 2M malic acid solution in a forced air oven at 130 ° C for 12 hr. Using FT-IR, carbonyl groups were detected in malate starch, indicating the formation of cross-linking by esterification. And, Using X-ray, diffractograms of malic acid-treated starch. In the micrographs, malate treated corn and potato starch granules were marked with elliptical or polygonal shapes and starch retained birefringence. Through microscopic observe in morphology of starch granules, Microscopic observation did not reveal any changes in morphology of starch granules. The modified starches had higher RS than the control and native starch. RS content of maltitized rice, corn and potato starch was 87.6%, 89.8% and 64.8%, respectively. Malic acid treated RS was maintained after the cooking process. The RS of substituted starches increased with increasing degree of substitution. These results suggest that the increase in RS content by malic acid treatment is caused by the change in the structure. And the highest resistant starch content (86.7%) was found at pH 1.5, 2M of malic acid treated corn starch. Malic acid-treated starch can be used as heat-stable and low-digestible starch containing food ingredients.
Flame arrestor as end of line flame arrester for endurance burning prevents a light-back at deflagration and stabilized burning (during and after endurance burning) of potentially explosive vapor-air and gas-air mixtures at the end of vent pipes. In a flame arrestor, spring is an important part. The spring load as well as the spring's elasticity determine when the hood is opened. In addition, the spring have to work in high temperature condition due to gas burning. Therefore, it is necessary to analyze mechanical load and elasticity of spring when gas is burned. Based on the dynamic calculation on working process of a specific flame arrestor, analysis of spring is taken. A three dimensional model for spring burned in flame arrestor by using CFD simulation. Results of the CFD analysis are input in FEM simulation to analyze structure of the spring. The simulation results can predict and estimate the spring’s load and elasticity at variation of the spring’s deflection. Moreover, the obtained result can provide makers with references to optimize design of spring as well as flame arrestor.
쌍동선의 경우 선미의 형상적인 특이성으로 인하여, 두 개의 선체를 연결하는 부위는 선박의 항해 시 발생되는 피칭운동에 의한 손상이 자주 발생하고 있으며, 이로 인하여 주변부에 대한 구조보강 설계가 필요하다. 이러한 국부 보강에 대한 구조설계 지침이 명확하지 않기 때문에, 엔지니어는 판 두께, 보강재 변경 및 프레임 간격을 줄이는 방법으로 대응을 하고 있다. 그러나 이러한 부위는 선 박의 길이방향으로 약 85 % 이상 위치하고 있기 때문에, 최소 구조부재를 국부 보강하여 중량 증가를 최소화하고, 이에 따른 건조비 증 가 및 건현확보의 문제를 해결해야 한다. 따라서 본 연구에서는 KR(한국선급)의 고속경구조선 규칙을 바탕으로, 쌍동형 카페리 구조설 계 절차를 분석하고 추가가 필요한 항목을 발굴하여 쌍동형 구조설계 프로그램을 개발하였다. 좌굴강도 평가 절차서 및 프로그램에 대 한 신뢰성을 확보하기 위하여, 타 선급의 기준과 비교 검토를 수행하여 6 %내 차이가 발생함을 확인하였다.
최근에는 도심지 개발에 따른 지표면 포장률 증가로 인해 불투수면적의 증가하여 지하수의 고갈, 도시형 수해 증가 등의 문제가 발생하고 있다. 투수성 포장기법은 대표적인 저영향개발적용 기술 중 하나인 친환경 포장 공법으로 물순환 체계의 개선을 통한 환경 개선 효과와 더불어 차량 주행소음의 감소, 열섬 현상 완화, 미끄럼 저항의 향상 등 다양한 기능을 얻을 수 있으며 국내외 관련 연구가 활발히 진행되고 있다. 현재 일반도로는 한국형 포장설계법을 적용하여 설계를 하게 되어 있으나, 현재 투수성 아스팔트 도로를 설계를 위한 지침은 제시되어 있지 않다. 이에 본 연구에서는 국내외 선행 연구 조사 및 검토를 통해 투수성 아스팔트 포장 설계인자 및 구조 설계방법을 제안하고자 한다. 선행 연구 조사 결과, 투수성 포장 구조설계는 AASHTO 1993 설계법을 적용하여 수행하고 있는 것으로 확인되었다. 투수성 포장 설계인자 중 투수성 아스팔트 포장재료의 상대강도계수를 제안하였고, 한국형 설계법에서 고려하고 있는 도로설계등급을 고려하여 교통량 산정하는데 적용하였다. 또한, 투수성 콘크리트 포장설계를 위한 지지력 복합계수를 한국형 설계법에서 적용한 방법을 활용하여 구조 설계에 고려하였다. 이러한 설계인자를 고려하고 경제성을 고려한 최적 포장 두께를 산정하기 위한 최적화 알고리즘을 적용설계를 할 수 있는 PerPaveDesign 프로그램을 그림 1과 같이 개발하였다.
In the sewer pipes, reinforced concrete pipes and concrete pipes are mostly used. However, it is difficult to ensure the long-term durability of the pipe due to the corrosion of the rebar which is used for the reinforcement of the concrete. Also, reinforced concrete pipes are difficult to secure watertightness due to deterioration and corrosion by hydrogen sulfide. In order to solve such problems, research on using sewer pipes made of plastic materials is being actively conducted. When soil pressure and live load act on the buried flexible pipe, the load acting on the pipe is transferred to the surrounding soil. So, the flexible pipe will support the load with the surrounding soil together. It is difficult to predict these behaviors theoretically and clearly. Therefore, the design equation for the buried flexible pipe is analyzed by adopting theoretically idealized assumptions and it is estimated through experimental studies that it is similar to the actual structural behavior. In this paper, the mechanical properties of the soil and the polyethylene pipe were considered in application of the method proposed in ASTM D 2412 to design the buried polyethylene pipe. Also, structural behavior of the pipe resisting external loads such as soil pressure was investigated to use a polyethylene pipe as the buried pipe and the long-term behavior of the polyethylene pipe was predicted by the compaction rate of surrounding backfill soil through the field test.
The Hong Nang Sida temple is a cultural heritage that must be preserved due to the historical and cultural values that are highly evaluated in the world. The main sanctuary of Hong Nang Sida temple, presumed to have been built in 11th to 12th centuries, has been exposed in the open air for a long time after the collapse. Therefore, it is necessary to reconstruct the original shape of the Hong Nang Sida temple to reflect the original shape. To do this, it is necessary to examine the overall structure according to the restoration shape. For this purpose, this study analyzes the construction and configuration types for main sanctuary Mandapa of Hong Nang Sida temple, and conducts structural modeling according to actual and restoration plans. The structural and behavioral characteristics are analyzed by comparing stress and displacement values by measurement locations. In addition, we will examine the vertical load distribution by the layers of each wall and cobel arch of the Mandapa using the load distribution method.