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In this study, we solved the human hazard problem of aluminum liner by applying plastic PET liner which is widely used as a material for food and beverage containers in the market. In order to reinforce dome area by using low strength / high elongation plastic liner, The aluminum boss was covered on the plastic liner surface. In order to predict the performance of the developed product, the structural analysis was carried out by applying the three - dimensional laminated solid element, and the soundness of the product was verified through the prototype performance test.
인적 서비스 의존도가 높은 외식 산업에서 대표적인 프리미엄 외식 산업인 파인 다이닝 레스토랑은 인적 서비스 중요도가 가장 높다. 고품질의 인적 서비스를 개발하기 위해 파인 다이닝 레스토랑의 서비스종사원과 고객의 비언어 커뮤니케이션에 대한 상황을 서비스종사원 관점에서 보고 서비스 품질로써 어떻게 인식하는지 나타내기 위해 주관성연구인 Q방법으로 분석하였다 분석결과 5개의 유형으로 나왔으며 5유형으로 1유형: 진심 어린 서비스 추구형, 2유형: 분위기 고려형, 3유형: 전문 외양 지향, 4유형: 신뢰감 중시형, 5유형 비주얼, 태도 지향형으로 나타내었다. 서비스 종사원은 추구하는 서비스 품질 가치에 따라 비언어 커뮤니케이션 인식 유형이 다르게 나타나는 것을 알 수있었다. 그래서 이 결과를 바탕으로 서비스 종사원들의 성향을 고려한 인적 서비스 품질 개선을 할 수 있고 디자인개념의 인적 서비스를 구축 할 수 있다. The fine dining restaurant, which is representative premium food service industry in food service industry with high human services dependency, has the most human services importance. To develop high quality human service, I have seen the situation about nonverbal communication of fine dining restaurant's service employees and customer in service employees perspective, and have analyzed as subjectivity researcher Q method to show how it is recognized as service quality. As a analysis result, it was shown as 5 types as below; Type 1 : Sincere service pursuing type. Type 2 : Mood considering type. Type 3 : Professional appearance orientation. Type 4 : Trust oriented type. Type 5 : Visual. Attitude driven type. It was shown that as of service employees, the nonverbal communication recognition type have shown differently according to the quality value of pursuing service. Therefor, based on these results, we can improve human service quality considering the tendency of service workers and can construct a human service of design concept.
The purpose of this study is to understand how the visional visual experience of the audience changes depending on shooting conditions and viewing environments of 3D film. To achieve this purpose, this study produced stereoscopic stimuli with different shooting conditions and investigated whether there wereare changes in the visual experience of the audience while watching the stimuli. The shooting conditions in producing stereoscopic stimuli were divided into the following 3 categories: focal length, object distance, convergence distance, and inter-axial distance and lighting condition; and total 12 experimental stimuli were produced according to combinations of the respective factor. Experiment participants were sampled group that is the main movie-going public participated. Distinctive from studies that focused on technical and engineering analysis that fell short in on the contextual and perspective of the 3D film audience, This study stands apart in its empirical analysis on how the visual experience of audience differs depending on shooting condition and viewing environment. In particular, this study is relevant in producing its results through experimental image which applied the film production standard in post-production processes such as camera, equipment like lighting, and DI (Digital Intermediate) and performing the subjective evaluation after showing the experimental image in the theater for the recruited audience. And it also has a significance in its analysis on the difference in visual experience while the audience is watching the stimulus. The analysis results of this study are not universally applicable in general conditions since they are produced on the basis of the experiment and the stereoscopic stimuli that were produced in the limited conditions. However, they can be a guidance that helps a production and showing. Continued discussions should be held to supply the demand of high quality 3D film and the improvement of the visual experience for the advancement of the 3D film industry.
Most product structural components are assembled by various members and castings except casting products. In such cases, a particular structure is required to move and fix each component. In particular, the safety uncertainty of heavy product assemblies can be linked to large accidents. Thus, the safety design and evaluation of additional structures have become more important. In the field and factories, these additional structures are called handling structures, which are designed and manufactured. As the types of products produced become more diverse, the design and manufacture of a handling structure are also diversified. The results of each evaluation should be derived. We develop a logical design and evaluation method, which was previously designed based on empirical data, for the handling structure.
Aluminum liners used in cylinders are hazardous for human health. In this study, we use a plastic PA liner inside cylinders to solve this problem. Plastic PA liners are widely used in the manufacturing industry in the production of food and beverage containers. We covered the aluminum boss with a plastic liner material and wound the composite fibers over the liner material. To reinforce the dome area, we used low strength / high elongation plastic liner. To predict the performance of the developed product, we conducted structural analyses utilizing the 3D laminated solid element. We verified the soundness of the product by testing the prototype.
In this study, we have developed a composite pressure vessel that is compact and can store refrigerant at high pressure to increase the refrigerant volume. The composite pressure vessel is made of aluminum-based duralumin, which has high rigidity and excellent elongation in the inner liner, considering the characteristics of products in the aerospace and defense industry, where the safety of the applied product is considered as a priority. High strength carbon fiber was applied to the outside. In order to evaluate the performance of the developed product, burst test and cycling test were carried out. In burst test, an excellent safety margin equivalent to 2.7 times the operating pressure was obtained. In cycling test, a stable failure mode in which "pre-burst leak" occurs is proved and the soundness of the product is proved.
Major producers have already built compressors since World War I and have been monopolizing all domestic and overseas markets based on the accumulated technology, and the dependency of the manufacturers over the entire industry is deepening. Therefore, it is expected that the technological gap with developed countries will be larger without development of the related technology. Therefore, it is necessary to develop a unique technology for a new type of high efficiency compression system. In this study, we present localization of Hydraulic Compressor which can meet the technical trends such as cost reduction, efficiency improvement, environmental friendliness, wide operating range, low capacity / high capacity compatibility, size reduction, easy operation and easy maintenance.