• 제목/요약/키워드: MULTI-LAYERED STRUCTURE

검색결과 376건 처리시간 0.028초

디지털 환경의 웰빙 패션 디자인에 관한 연구 (A Study on Characteristics of Well-being Fashion Design in Digital Environment)

  • 김지언
    • 복식문화연구
    • /
    • 제15권5호
    • /
    • pp.796-809
    • /
    • 2007
  • The viewpoint of growth pursuit is changed to that of life quality's and happiness' pursuit by modern people. Modern people in digital environment, tired of fast-changing and oppressive daily life, prefer well-being trend providing tranquility and relaxation. Well-being is related to digital, because negative influences of digital lead human-oriented, environment-friendly well-being design. Therefore the purpose of this study is to research and analyze the relation of well-being fashion design and digital environment through case study in contemporary well-being fashion design. The results of this study are as follows: 1. This study shows that the attributes of digital environment make up function-intensive, interactivity, mobility & nomad, human & emotion-oriented and environment-friendly. And this study shows the design characteristics of digital environment consist of function-intensive design by digital convergence, open structure design for interactivity, modular design for mobility & nomad, emotion-oriented & multi-sensory design and environment- friendly design. 2. Function-intensive design in modem well-being fashion composed of vogue of caports style(casual+sports), practical use of multi-functional new-healthy textiles, and popularity of many style's mixture at once. Open structure design consist of wrapover design, use of transparent materials. Modular design are layered styling, practical use of zipper and velcro. Emotion-oriented & multi-sensory design are constitute of fad of wrinkle materials, application of bright & vivid tone, personal color and family look. Environment-friendly design in contemporary well-being fashion are comprised in use of natural color, re-advent of natural floral motif and eco-design.

  • PDF

통신 모듈 적층형 산업용 통신 게이트웨이 설계 (Industrial Communication Gateway Design of Communications Module Additive layer type)

  • 엄상희;남재현
    • 한국정보통신학회:학술대회논문집
    • /
    • 한국정보통신학회 2019년도 춘계학술대회
    • /
    • pp.133-136
    • /
    • 2019
  • 최근 많은 산업용 기기들은 외부 모니터링과 제어 시스템에 프로토콜 호환성 문제에 직면하고 있다. 본 논문은 다층 통신 모듈을 사용하여 산업 통신 프로토콜 변환을 지원할 수 있는 산업용 통신 게이트웨이를 설계하였다. 산업용 통신 게이트웨이는 rs485 시리얼 통신을 이용하는 개별 통신 모듈을 다층으로 연결하는 구조를 가지고 있다. 각각의 통신 모듈은 analog data card, digital data card LAN 및 CAN 지원 카드로 구성하였다. 메인 보드 프로세서는 Atmega micro-processor를 사용하였고, rs485 시리얼 슬롯을 배치하여 다층의 통신 모듈 구조를 가지도록 하였다. 이러한 통신 모듈 적층형을 이용하여 아날로그 및 디지털 I/O 기능과 LAN과 CAN을 지원하여 산업용 통신 제어 및 모니터링에 폭넓게 사용할 수 있다.

  • PDF

피에조콘을 이용한 선행압밀하중 결정 신경망 모델의 구조 최적화 및 초기 연결강도 의존성 개선 (Structural Optimization and Improvement of Initial Weight Dependency of the Neural Network Model for Determination of Preconsolidation Pressure from Piezocone Test Result)

  • 김영상;주노아;박현일;박솔지
    • 대한토목학회논문집
    • /
    • 제29권3C호
    • /
    • pp.115-125
    • /
    • 2009
  • 지반의 응력이력을 정의하는데 이용되는 선행압밀하중은 일반적으로 일차원 실내압밀실험으로부터 결정되어져 왔으나 피에조콘과 같은 원위치 시험의 관측값을 이용한 이론적인 방법과 경험적인 상관관계를 통한 결정도 가능하다. 최근 선행압밀하중을 결정하기 위한 인공신경망 모델들이 제안된 바 있으며, 기존의 이론적 경험적 선행압밀하중 추정 방법들이 갖는 지역의존성의 문제를 극복하고 예측 정확도 면에서도 크게 개선된 것으로 보고되었다. 그러나 인공신경망 모델은 모델구조와 학습과정에서 초기에 무작위로 부여되는 연결강도에 영향을 받아 예측에 변동성이 존재한다. 본 연구에서는 기존의 피에조콘 결과를 이용한 선행압밀하중 추정 인공신경망 모델이 연약지반에서 선행압밀하중 예측 시 보이는 변동성을 개선하기 위하여 신경망 모델의 구조 최적화를 수행하고 군집신경망 모델을 구축하였다. 제안된 군집신경망 모델을 이용한 예측결과는 기존의 다층신경망 모델 및 이론적 경험적 모델들과 비교되었다. 연구결과, 최적화된 구조를 갖는 다층신경망 모델일지라도 초기 연결강도에 따라 최종 학습 후 예측결과의 변동성이 여전히 존재하나, 다층신경망을 네트워크로 연결하여 제안된 군집신경망 모델은 기존의 다층신경망 모델들이 갖는 초기 연결강도 의존성을 개선하여 다층신경망 모델에 비해 일관성 있으며 보다 정확한 예측이 가능한 것으로 나타났다.

Effects of Hydrogen on the PWSCC Initiation Behaviours of Alloy 182 Weld in PWR Environments

  • Kim, H.-S.;Hong, J.-D.;Lee, J.;Gokul, O.S.;Jang, C.
    • Corrosion Science and Technology
    • /
    • 제14권3호
    • /
    • pp.113-119
    • /
    • 2015
  • Alloy 82/182 weld metals had been extensively used in joining the components of the PWR primary system. Unfortunately, there have been a number of incidents of cracking caused by PWSCC in Alloy 82/182 welds during the operation of PWR worldwide. To mitigate PWSCC, optimization of water-chemistry conditions, especially dissolved hydrogen (DH) and Zn contents, is considered as the most promising and effective remedial method. In this study, the PWSCC behaviours of Alloy 182 weld were investigated in simulated PWR environments with various DH content. Both in-situ and ex-situ oxide characterizations as well as PWSCC initiation tests were performed. The results showed that PWSCC crack initiation time was shortest in PWR water (DH: 30cc/kg). Also, high stress reduced crack initiation time. Oxide layer showed multi-layered structures consisted of the outer needle-like Ni-rich oxide layer, Fe-rich crystalline oxide, and inner Cr-rich inner oxide layers, which was not altered by the level of applied stress. To analyse the multi-layer structure of oxides, EIS measurement were fitted into an equivalent circuit model. Further analyses including TEM and EDS are underway to verify appropriateness of the equivalent circuit model.

단기 하천수질 예측을 위한 신경망모형 (Artificial Neural Networks for Forecasting of Short-term River Water Quality)

  • 김만식;한재석
    • 한국지반환경공학회 논문집
    • /
    • 제3권4호
    • /
    • pp.11-17
    • /
    • 2002
  • 본 논문의 목적은 섬진다목적댐 유역의 하천을 대상으로 강우시에 단기 수질상태를 예측하기 위하여 병렬다중결선의 계층구조를 갖는 신경망이론을 이용하였다. 본 연구에 적용한 신경망이론의 학습알고리즘으로는 역전파알고리즘을 사용하였으며, 최적모형의 개발을 위해 모멘트법-적응학습율기법을 이용하였다. 하천 수질오염 부하량에 영향을 미치는 요소로서 상류로부터 유입되는 유입량과 수질인자인 BOD, COD, SS를 고려하였다. 섬진다목적댐 유역에 대해 단기 수질을 예측할 수 있는 다층신경망모형을 개발하기 위해 은닉층 노드수와 학습회수에 변화를 주어 각 수질인자별로 4가지씩 총 12개의 모형을 구성하여 학습을 실시하였다. 제안된 신경망모형의 검증을 위해 학습시키지 않은 수질자료를 예측한 결과 양호한 것으로 분석되었고, 하천수계의 단기 수질오염 예측에 활용할 수 있을 것으로 사료되었다.

  • PDF

다축 RP 소프트웨어 기술을 이용한 스캐폴드 제조 장비 개발 (Development of Scaffold Fabrication System using Multi-axis RP Software Technique)

  • 박정환;이준희;조현욱;이수희;박수아;김완두
    • 한국정밀공학회지
    • /
    • 제29권1호
    • /
    • pp.33-40
    • /
    • 2012
  • The scaffold serves as 3D substrate for the cells adhesion and mechanical support for the newly grown tissue by maintaining the 3D structure for the regeneration of tissue and organ. In this paper, we proposed integrated scaffold fabrication system using multi-axis rapid prototyping (RP) technology. It can fabricate various types of scaffolds: arbitrary sculptured shape, primitive shape, and tube shape scaffolds by layered dispensing biocompatible/ biodegradable polymer strands in designated patterns. In order to fabricate the 3D scaffold, we need to generate the plotting path way for the scaffold fabrication system. We design a data processing program - scaffold plotting software, which can convert the 3D STL file, primitive and tube model images into the NC code for the system. Finally, we fabricated the customized 3D scaffolds with high accuracy using the plotting software and the fabrication system.

Wire-woven Bulk Kagome 의 파손 메커니즘 분석 (Analysis of Failure Mechanism for Wire-woven Bulk Kaogme)

  • 이병곤;최지은;강기주;전인수
    • 대한기계학회:학술대회논문집
    • /
    • 대한기계학회 2007년도 춘계학술대회A
    • /
    • pp.1690-1695
    • /
    • 2007
  • Lightweight metallic truss structures with open, periodic cell are currently being investigated because of their multi-functionality such as thermal management and load bearing. The Kagome truss PCM has been proved that it has higher resistance to plastic buckling, more plastic deformation energy and lower anisotropy than other truss PCMs. The subject of this paper is an examination of the failure mechanism of Wire woven Bulk Kagome(WBK). To address this issue, the out-of-plane compressive responses of the WBK has been measured and compared with theoretical and finite element (FE) predictions. For the experiment, 2 multi-layered WBK are fabricated and 3 specimens are prepared. For the theoretical analysis, the brazed joints of each wire in WBK are modeled as the pin-joint. Then, the peak stress of compressive behavior and elastic modulus are calculated based on the equilibrium equation and energy method. The mechanical structure with five by five cells on the plane are constructed is modeled using the commercial code, PATRAN 2005. and the analysis is achieved by the commercial FE code ABAQUS version 6.5 under the incremental theory of plasticity.

  • PDF

High Efficiency AMOLED Using Hybrid of Small Molecule and Polymer Materials Patterned by Laser Transfer

  • Chin, Byung-Doo;Suh, Min-Chul;Kim, Mu-Hyun;Kang, Tae-Min;Yang, Nam-Choul;Song, Myung-Won;Lee, Seong-Taek;Kwon, Jang-Hyuk;Chung, Ho-Kyoon;Wolk, Martin B.;Bellmann, Erika;Baetzold, John P.
    • 한국정보디스플레이학회:학술대회논문집
    • /
    • 한국정보디스플레이학회 2003년도 International Meeting on Information Display
    • /
    • pp.163-166
    • /
    • 2003
  • Laser-Induced Thermal Imaging (LITI) is a laser addressed patterning process and has unique advantages, such as high-resolution patterning with over-all position accuracy of the imaged stripes within 2.5 micrometer and scalability to large-size mother glass. This accuracy is accomplished using real-time error correction and a high -resolution stage control system that includes laser interferometers. Here the new concept of mixed hybrid system which complement the advantages of small molecular and polymeric materials for use as an OLED; our system can realize the easy processing of polymers and high luminance efficiency of recently developed small molecules. LITI process enables to pattern the stripes with excellent thickness uniformity and multi-stacking of various functional layers without using any type of fine metal shadow mask. In this study, we report a full-color hybrid OLED using the multi-layered structure of small molecular/polymeric species.

  • PDF

Effective Properties of Multi-layered Multi-functional Composites

  • Kim, Byeong-Chan;Baltazar, Arturo;Kim, Jin-Yeon
    • Advanced Composite Materials
    • /
    • 제18권2호
    • /
    • pp.153-166
    • /
    • 2009
  • A matrix method for evaluating effective electro-magneto-thermo-elastic properties of a generally anisotropic multilayered composite is presented. Physical variables are categorized into two groups: one that satisfies the continuity across the interface between layers and another that satisfies an average inter-layer compatibility (which is also exact). The coupled electro-magneto-thermo-elastic constitutive equation is accordingly reassembled into submatrices, which leads to the derivation of concise and exact matrix expressions for effective properties of a multilayered composite having the coupled physical effects. Comparing the results for a purely elastic multiplayer with those from other theoretical approaches validates the developed method. Examples are given for a PZT-graphite/epoxy composite and a $BaTiO_3-CoFe_2O_4$ multiplayer which exhibit piezo-thermoelastic and magnetoelectric properties, respectively. The result shows how a strong magnetoelectric effect can be achieved by combining piezoelectric and piezomagnetic materials in a multilayered structure. The magnetoelectric coefficient of the $BaTiO_3-CoFe_2O_4$ multiplayer is compared with those for fibrous and particulate composites fabricated with the same constituents.

Non-linear aero-elastic response of a multi-layer TPS

  • Pasolini, P.;Dowell, E.H.;Rosa, S. De;Franco, F.;Savino, R.
    • Advances in aircraft and spacecraft science
    • /
    • 제4권4호
    • /
    • pp.449-465
    • /
    • 2017
  • The aim of the present work is to present a computational study of the non-linear aero-elastic behavior of a multi-layered Thermal Protection System (TPS). The severity of atmospheric re-entry conditions is due to the combination of high temperatures, high pressures and high velocities, and thus the aero-elastic behavior of flexible structures can be difficult to assess. In order to validate the specific computational model and the overall strategy for structural and aerodynamics analyses of flexible structures, the simplified TPS sample tested in the 8' High Temperature Tunnel (HTT) at NASA LaRC has been selected as a baseline for the validation of the present work. The von $K{\acute{a}}rm{\acute{a}}n^{\prime}s$ three dimensional large deflection theory for the structure and a hybrid Raleigh-Ritz-Galerkin approach, combined with the first order Piston Theory to describe the aerodynamic flow, have been used to derive the equations of motion. The paper shows that a good description of the physical behavior of the fabric is possible with the proposed approach. The model is further applied to investigate structural and aero-elastic influence of the number of the layers and the stitching pattern.