• 제목/요약/키워드: Taguchi Method Analysis of variance

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실험계획법을 이용한 탄소섬유/페놀수지의 강화 cycle연구

  • 하헌승;이진용;조동환;윤병일
    • 한국재료학회지
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    • 제3권5호
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    • pp.514-520
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    • 1993
  • 다구찌의 실험계획기법을 이용하여 탄소섬유/페놀수지의 결화싸이클을 연구하였다. 본 연구에서는 1인자 2수준과 7인자 3수준으로 구성된 $L_{18}(2^1 \times 3_7)$ 직교배열표를 사용하였고, 특성치로 굴곡강도와 기공률을 선정하여 실험하였다. 실험계획법의 압축성형 인자로는 8개의 성형인자(승온속도, 가압온도, 성형압력, 경화온도, 경화온도에서의 유지시간, 냉각속도 및 탈기포)가 고려되었으며, 이들 성형인자가 탄소섬유/페놀수지 복합재료의 물성에 미치는 영향을 고찰하였다. 분산분석법으로 실험결과를 분석한 결과, 탄소섬유/패놀수지 복합재료의 굴곡강도에 가장 큰 영향을 미치는 성형인자는 성형압력이고, 기공률에 가장 큰 영향을 미치는 성형인자는 경화온도임이 밝혀졌다.

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성층축열조의 성능에 대한 설계인자의 영향 (Effect of Design Factors on the Performance of Stratified Thermal Storage Tank)

  • 정재동;박주혁;조성환
    • 설비공학논문집
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    • 제16권11호
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    • pp.1077-1083
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    • 2004
  • This study is to systematically analyze the effect of various kinds of design factors on the performance of stratified thermal storage tank. Taguchi method, known as a very reasonable tool in the parametric study, is employed in the present work. Three dimensional unsteady numerical experiment is conducted for 4 design parameters of stratified thermal storage tank: inlet Reynolds number, Froude number, diffuser size d with 3 levels (Re=400, 800, 1200, Fr=0.5, 1.0, 2.0 and d=150 mm, 200mm, 300 mm) and diffuser shape with 2 levels. Orthogonal array $L_{18}(2{\times}3^7)$ is adopted for the analysis of variance. The result gives quantitative estimation of the various design parameters affecting the performance and helps to select the main factors for the optimum design of stratified thermal storage tank. Reynolds number is found to be the most dominant parameter and the diffuser shape plays significant role on the performance of stratified thermal storage tank. Based on this finding, the prior questions on the contribution of the diffuser shape proposed by the authors become clear. The optimum condition for the performance is a set of d=300mm, Re=800, and radial regulated plate diffuser. Conformation test shows the repeatability in the analysis and $1.3\%$ difference between the estimated thermocline thickness and that of numerical result.

980MPa급 열연 후판재 버링 공정의 변수 최적화 연구 (Study on the Optimization of Parameters for Burring Process Using 980MPa Hot-rolled Thick Sheet Metal)

  • 김상훈;도두이퉁;박종규;김영석
    • 소성∙가공
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    • 제30권6호
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    • pp.291-300
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    • 2021
  • Currently, starting with electric vehicles, the application of ultra-high-strength steel sheets and light metals has expanded to improve mileage by reducing vehicle weight. At a time when internal combustion engine vehicles are rapidly changing to electric vehicles, the application of ultra-high-strength steel is expanding to satisfy both weight reductions and the performance safety of the chassis parts. There is an urgent need to improve the quality of parts without defects. It is particularly difficult to estimate the part formability through the finite element method (FEM) in the burring operation, so product design has been based on the hole expansion ratio (HER) and experience. In this study, design of experiment (DOE), analysis of variance (ANOVA), and regression analysis were combined to optimize the formability by adjusting the process variables affecting the burring formability of ultra-high-strength steel parts. The optimal variables were derived by analyzing the influence of variables and the correlation between the variables through FE analysis. Finally, the optimized process parameters were verified by comparing experiment with simulation. As for the main influence of each process variable, the initial hole diameter of the piercing process and the shape height of the preforming process had the greatest effects on burring formability, while the effect of a lower round of punching in the burring process was the least. Moreover, as the diameter of the initial hole increased, the thickness reduction rate in the burring part decreased, and the final burring height increased as the shape height during preforming increased.

폐 배터리 셀 분말의 선택적 리튬 침출을 위한 질산염화 공정 최적화 연구 (A Study on Optimization of Nitric Acid Leaching and Roasting Process for Selective Lithium Leaching of Spent Batreries Cell Powder)

  • 정연재;박성철;김용환;유봉영;이만승;손성호
    • 자원리싸이클링
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    • 제30권6호
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    • pp.43-52
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    • 2021
  • 본 연구에서는 Taguchi method을 사용하여 폐 배터리 셀 분말(LiNixCoyMnzO2, LiCoO2)으로부터 선택적 리튬 침출을 위한 최적의 질산염화 공정에 대한 연구를 진행했다. 질산염화 공정은 질산 침출 및 배소를 통해 질산리튬을 제외한 질산 화합물을 산화물로 변환하여 선택적 리튬 침출을 하는 공정이다. 따라서 전처리 온도, 질산 농도, 질산 침적 양, 배소 온도에 대하여 Taguchi method를 적용하여 인자가 미치는 영향에 대한 분석을 실시하였다. L16(44)직교 배열표를 사용하여 실험하였으며, 신호 대 잡음비(S/N) 및 분산 분석(ANOVA)을 분석하였다. 그 결과 배소 온도가 가장 크게 영향을 미쳤으며 질산 농도, 전처리 온도, 질산 사용량 순으로 영향을 미쳤다. 각 인자에 대해 세부적인 실험을 진행한 결과 전처리 700℃에서 10시간, 10 M 질산 2 ml/g 침출, 275℃ 배소 10시간이 적절하였다. 그 결과 80% 이상의 리튬을 침출을 확인하였다. 400℃ 이상 배소 시 급격하게 리튬 침출율이 감소원인 분석을 위해 질산리튬과 질산 화합물을 배소 후 D.I water에서 침출하지 잔류물에 대해 XRD 분석을 진행하였다. 분석 결과 질산리튬과 질산망간과 400℃ 이상의 온도에서 리튬 망간 옥사이드의 형성하며 D.I water에서 침출하지 않음을 확인하였다. 질산염화 공정 시 침출된 용액을 고액분리 후 증발농축하여 XRD 분석한 결과 LiNO3의 회수를 확인하였다.

USNCAP에 대응하는 반응표면법을 이용한 조수석 안전구속장치 최적화 (Optimization of Passenger Safety Restraint System for USNCAP by Response Surface Methodology)

  • 오은경;이기선;손창규;김동석;채수원
    • 한국자동차공학회논문집
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    • 제22권6호
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    • pp.1-8
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    • 2014
  • Safety performance of a new car is evaluated through USNCAP and their results in the star rating are provided to the consumers. It is very important to obtain high score of USNCAP to appeal their performance to consumers. Therefore the car companies have made the effort to improve their car safety performance. These efforts should satisfy the demand not only to get high score but also to pass the FMVSS, NHTSA regulations on safety. Huge numbers of car crash tests have been conducted on these bases by car companies. However physical tests spend too much cost and time, as an alternative way, the simulation on the car crash could be a solution to reduce the cost and time. Therefore the simulations have been widely conducted in car industry and various researches on this have been reported. In this study, restraint system had been optimized to minimize the injury of female passenger. Belted $5^{th}%ile$ female frontal crash test was selected from various test methods of USNCAP for the study. Initial velocity of the test was 56km/h. The combination injury probability of USNCAP was selected as an objective function and the injury limit value, which was defined in FMVSS, was set to an optimization constraint. Many researches that were similar to this study had been conducted, however most of them had limitation that interaction between airbag and safety belt had not been considered. Contrary to these researches, the interaction was considered in this study.