• Title/Summary/Keyword: Integration forming

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A Study on the Concept and Type of Integration Senior Center - Focusing on the Development of the Network of Leisure Welfare Facilities for the Elderly - (거점경로당의 개념 및 유형에 관한 연구 - 노인여가복지시설의 네트워크 형성을 중심으로 -)

  • Song, Myung-Jong;Kim, Mo-Du;Lee, Hyo-Won
    • Journal of the Architectural Institute of Korea Planning & Design
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    • v.35 no.9
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    • pp.57-64
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    • 2019
  • Due to the rapid increase of the elderly population, promoted desire for recreational activities in old age and so emerging importance of Leisure welfare facilities for the elderly. Although Senior community centers playing an important role in old people leisure life are quantitative resources occupying majority of the Leisure welfare facilities for the elderly. there are many problems of managing programs, aging facilities, small spaces and so on. So, many facilities are used as simple meeting places of old people without solution about qualitative problem. Also, because of negative perceptions of people about Senior community center socially, desires of using Senior community center of old generation will decrease. In order to perfectly play a role of Leisure welfare facilities for the elderly, we need to review regulations about facility and program of Senior community center and suggest ways to resolve these problems. According to these necessity, Integration senior community centers appeared as a new concept. These centers compensate the physical defects through integrating small Senior community center. Through dividing function and service of senior welfare and forming networks between Senior community center and Senior welfare center, these centers set a goal of increasing quantitative and qualitative improving of leisure life of old people.

The Impact of Information Systems Integration on Organization

  • Juhn, Sung-Hyun
    • Asia pacific journal of information systems
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    • v.7 no.2
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    • pp.225-266
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    • 1997
  • A Causal Transition Model of the IT impact on organization is proposed. The model is based upon the premise that the IT impact is a multi-phase, multi-realm phenomenon, and that the IT impact in one organizational realm logically transpires to another realm, thus forming complex causal webs among them. Two exploratory research studies, the one qualitative and the other quantitative, were conductea to validate the model in a setting involving major structural reorganization of the organizations' IT function. The research results provide support for the general theory structure of the model. The findings include: ⅰ) the IT impact manifests on multiple organizational realms, with different degrees of strength, ⅱ) the impact on the realms follow a particular causal transition path among them, and ⅲ) the IT impact manifests on and through the information processing aspect of work. The results, however, indicate that people's perception of the IT impact is strongly mitigated by the IT relevance of work, and that the organization is affected as much by the structural arrangement surrounding and accompanying the IT as by the technology itself, suggesting that the IT impact is an organizational phenomenon as well as a technological phenomenon. The implications of the research results are discussed at the end.

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Multi-stage Analysis of Elliptic Cup Drawing Processes with the Large Aspect Ratio by an Explicit Elasto-Plastic Finite Element Method (외연적 유한요소법을 이용한 세장비가 큰 타원형 컵 성형공정의 다단계 해석)

  • Kim, S.H.;Kim, S.H.;Huh, H.
    • Transactions of Materials Processing
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    • v.9 no.3
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    • pp.313-319
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    • 2000
  • Finite element analysis is carried out for simulation of the multi-stage elliptic cup drawing process with the large aspect ratio. The analysis incorporates with shell elements for an elasto-plastic finite element method with the explicit time integration scheme. For the simulation, LS-DYNA3D is utilized for its wide capability of solving forming problems. The simulation result shows that the non-uniform drawing ratio at the elliptic cross section ad the small shoulder radius cause failure such as tearing and wrinkling. The result suggests the guideline to modify the tool shape for prevention of the failure during the drawing process.

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The Effect of Deformation Heat Compensation in the Hot Forging Analysis of SAF 2507 Stainless Steel (SAF 2507 스텐레스강의 열간단조해석에서 가공열 보정의 효과)

  • 방원규;정재영;장영원
    • Transactions of Materials Processing
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    • v.10 no.3
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    • pp.206-213
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    • 2001
  • Dynamic deformation of metallic materials mostly accompanies substantial amounts of deformation heat. Since the flow stress of deformation is sensitive to temperature, implication of heat due to plastic work is essential to the evaluation of constitutive relations. In this study, a series of compression tests were conducted for SAF 2507 super duplex stainless steel at various temperatures and strain rates. The accumulation of plastic work was calculated through numerical integration and converted into the elevation of temperature. Subsequent logarithmic interpolation deduced isothermal flow surfaces, which were primary input data of finite element analysis. Simple closed die forging process was analyzed and optimized with commercial FEM code applying both raw and calibrated material database. The effect of accounting deformation heat was more noticeable in high-speed forming process.

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A Study on the Organic Concept of Frank Lloyd Wright's Architecture and Furniture Design (프랭크 로이드 라이트의 건축과 가구디자인의 유기성 연구)

  • Baik, Eun;Lee, Hyun-Jung
    • Journal of the Korea Furniture Society
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    • v.20 no.2
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    • pp.154-165
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    • 2009
  • Frank Lloyd Wright is an architect who established the concept of organic architecture and in his organic architectures, he applied studies on the inflow, growth and development of natural elements of shapes, pursued naturalism in the shapes and functions and connected them organically with each other. His furniture as appeared in his constructions shows geometric plasticity based on naturalism and achieves an integration of shapes, materials and functions while forming a space. The organic nature from the viewpoint of digital which is a new concept of the 21st century is greatly affecting construction and furniture designs. Designs having new organic concepts are emerging in furniture which is organically related with construction to achieve organic harmony with new plastic spaces. Therefore, studies on Wright are more significant as a cornerstone for new theories under development.

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Investigation of Surface Roughness Characteristics according to Tool Runout Variations in Side Milling Cutter for Worm Screw (사이드 밀링 커터를 이용한 워엄 스크루 가공에서 공구 런아웃이 표면조도에 미치는 영향분석)

  • Kim, Sun Ho
    • Journal of the Korean Society of Manufacturing Process Engineers
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    • v.8 no.4
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    • pp.76-82
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    • 2009
  • A worm screw is widely used in a geared motor unit for motion conversion from rotation to linear motion. For mass production of a high quality worm, the current roll forming process is substituted with the milling cutter process. Since the milling cutter process enables the integration of all machining operations of worm manufacturing on a CNC(Computer Numerical Control) lathe, productivity can be remarkably improved. The tooling system for side milling cutter on the CNC lathe to improve machinability is developed. However, the runout of spindle and cutting tips are important factors to be considered for producing high quality worms because the tooling system has multiple tips. In this study, surface roughness variations accuracy according to runout was investigated in side milling cutter for worm screw. The result shows by simulation and experiment.

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Prediction of Deformation Texture Based on a Three-Dimensional Crystal Plasticity Finite Element Method (3차원 결정소성 유한요소해석을 통한 변형 집합조직 예측)

  • Jung, K.H.;Kim, D.K.;Im, Y.T.;Lee, Y.S.
    • Transactions of Materials Processing
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    • v.21 no.4
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    • pp.252-257
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    • 2012
  • Crystallographic texture evolution during forming processes has a significant effect on the anisotropic flow behavior of crystalline material. In this study, a crystal plasticity finite element method (CPFEM), which incorporates the crystal plasticity constitutive law into a three-dimensional finite element method, was used to investigate texture evolution of a face-centered-cubic material - an aluminum alloy. A rate-dependent polycrystalline theory was fully implemented within an in-house program, CAMPform3D. Each integration point in the element was considered to be a polycrystalline aggregate consisting of a large number of grains, and the deformation of each grain in the aggregate was assumed to be the same as the macroscopic deformation of the aggregate. The texture evolution during three different deformation modes - uniaxial tension, uniaxial compression, and plane strain compression - was investigated in terms of pole figures and compared to experimental data available in the literature.

Economic and Information Principles for Cargo Delivery Management in Global Network Supply Chains

  • Savchenko, Liliia;Biletska, Natalia;Buriachenko, Oleksii;Shmahelska, Marina;Коpchykova, Іnnа;Vasylenko, Igor
    • International Journal of Computer Science & Network Security
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    • v.21 no.12spc
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    • pp.443-450
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    • 2021
  • The study is devoted to the formation of a economic principles cargo delivery management in global supply chains. Mathematical model of delivering special categories of goods by road is a key element of these principles. The article analyzes the existing studies on solving the problem of cargo delivery in various aspects. It was noted that the greatest attention is paid to legal regulation, last mile delivery, optimization of routes and delivery schemes, information support, technological innovations, cluster routing, etc. In the developed mathematical model a minimum of total costs of forming loading units and freight shipments was defined as the criterion of optimality of organizing delivery by motor transport. The authors propose the creation of logistics clusters allowing the integration of urban transport flows and global supply chains.

The Geographical Restructuring of the EU Automobile Production System (EU의 지역적 확대와 자동차 생산체계의 지리적 재구조화)

  • Moon, Nam-Cheol
    • Journal of the Economic Geographical Society of Korea
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    • v.9 no.2
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    • pp.243-260
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    • 2006
  • The continuing enlargement, deepening integration of EU and penetration of extra-EU enterprise into EU market are forming a new geographical restructure of the production system. In this paper, I analyse the changing geography of the EU automotive production system. The globalization and regionalisation of production activity intensify a competition among the enterprise. The European automotive production system changes to a platform system and a modular system for a diminution of productive costs, a development of various products and a frequent innovation of products. The European automotive enterprise is restructuring geographically the production functions and products in order to promote efficiency on a new production system, enlarged production space and intensified economic integration. The European automotive industry tends to a spatial specialization and agglomeration according to the locational factors of production functions and products and the locational condition of regions. This intensifies the geographical hierarchic structure of production activity between the core and the periphery.

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Effect of Bonding Process Conditions on the Interfacial Adhesion Energy of Al-Al Direct Bonds (접합 공정 조건이 Al-Al 접합의 계면접착에너지에 미치는 영향)

  • Kim, Jae-Won;Jeong, Myeong-Hyeok;Jang, Eun-Jung;Park, Sung-Cheol;Cakmak, Erkan;Kim, Bi-Oh;Matthias, Thorsten;Kim, Sung-Dong;Park, Young-Bae
    • Korean Journal of Materials Research
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    • v.20 no.6
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    • pp.319-325
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    • 2010
  • 3-D IC integration enables the smallest form factor and highest performance due to the shortest and most plentiful interconnects between chips. Direct metal bonding has several advantages over the solder-based bonding, including lower electrical resistivity, better electromigration resistance and more reduced interconnect RC delay, while high process temperature is one of the major bottlenecks of metal direct bonding because it can negatively influence device reliability and manufacturing yield. We performed quantitative analyses of the interfacial properties of Al-Al bonds with varying process parameters, bonding temperature, bonding time, and bonding environment. A 4-point bending method was used to measure the interfacial adhesion energy. The quantitative interfacial adhesion energy measured by a 4-point bending test shows 1.33, 2.25, and $6.44\;J/m^2$ for 400, 450, and $500^{\circ}C$, respectively, in a $N_2$ atmosphere. Increasing the bonding time from 1 to 4 hrs enhanced the interfacial fracture toughness while the effects of forming gas were negligible, which were correlated to the bonding interface analysis results. XPS depth analysis results on the delaminated interfaces showed that the relative area fraction of aluminum oxide to the pure aluminum phase near the bonding surfaces match well the variations of interfacial adhesion energies with bonding process conditions.