• Title/Summary/Keyword: Ceramic history

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The Citizen Plaza Design around the 1st Korean Postal Building, 'Woojeongchongkuk' (우정총국주변 시민광장 설계)

  • 김성균
    • Journal of the Korean Institute of Landscape Architecture
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    • v.29 no.4
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    • pp.67-74
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    • 2001
  • This paper presents a landscape design for the citizen plaza around the ˝Woojeongchongkuk˝(the 1st Korean postal building) where the ˝Gapsinjeongbyeon˝(1844 coup d´etat) occurred and which was once used as the ˝Jeoneoigam˝(a palace hospital). The site is located in 39 Kyeonji-dong, Jongno-gu, Seoul, and of which area is about 2,013$m^2$. The landscape design goals are to build traditional spaces which fit the traditional buildings and where people feel the old atmosphere; to build interesting spaces where people can learn the post and telegraphic history; and to build nature-friendly green rest spaces in the city. To achieve these goals, symbolic, traditional, educational, historical, and environmentally-friendly concepts are developed. With this concept the space is divided into two axis of the pst and telegraph of Korea. Along the two axis the Postage Stamp ˝Madang˝(yard), the Letter Garden, the Telegraphic ˝Ddeul˝(garden), the Communication Plaza, and the ˝Jeoneoigam˝(old palace hospital) and the ˝Gapsinjeongbyeon˝(1884 coup d´etat) Memorial Place are arranged. The Postal Stamp Madang which symbolizes the first Korean postage stamp is a space for studying history and evolution of stamps in Korea. The Letter Garden which symbolizes and formalizes a letter paper is composed with white bamboo trees which are planted linearly and long granite benches on which famous letters are carved. In the Telegraphic Ddeul which symbolizes the telegraph, the history of the telegraphic instrument and the telephone is exhibited. In the Communication Plaze which symbolizes future post and telegraph service extending to the world, the images of satellite communication, internet, webmail etc. are exhibited. The Jeoneoigan, and the Gapsinjeongbyeon Memorial Place is for memorializing the historic place and events. Throughout the whole place, various models and ceramic picture tiles about the post and telegraph and exhibited for effective education. In conclusion, sustainable management schemes for the site are suggested.

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Non-linear Temperature Dependent Deformation Analysis of BGA Package Using Moire Interferometry (모아레 간섭계를 이용한 BGA 패키지의 비선형 열변형 해석)

  • Ju Jin Won;Han Bongtae
    • Proceedings of the International Microelectronics And Packaging Society Conference
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    • 2003.11a
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    • pp.28-32
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    • 2003
  • Thermo-mechanical behavior of a ceramic ball grid array(CBGA) package assembly and wire bond ball grid array(WB-PBGA) package assemblies are characterized by high sensitive moire interferometry. Moire fringe patterns are recorded and analyzed at various temperatures in a temperature cycle. Thermal-history dependent analyses of global and local deformations are presented, and bending deformation(warpage) of the package and shear strain in the rightmost solder ball are discussed. A significant non-linear global behavior is documented due to stress relaxation at high temperature. The locations of the critical solder ball in WB-PBGA package assemblies are documented.

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Piezoelectric Thin Films for Microtransducer (마이크로 트랜스듀서를 위한 압전 박막 소재 기술 동향)

  • Jung, Soo Young;Baek, Seung-Hyub
    • Ceramist
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    • v.22 no.1
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    • pp.82-95
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    • 2019
  • Piezoelectric materials can directly convert mechanical energy to electrical one, and vice versa. Research on piezoelectric materials and devices has a long history, and now many relevant products are available in a wide range of applications such as medical, military, industrial, home appliance, and mobile electronics. One of the major research trends now is not only to further improve the physical properties of the piezoelectric materials, but also to reduce the size of the piezoelectric devices. This review focuses on the development of piezoelectric thin films that can enhance the performance of microtransducers.

INTRODUCTION OF SPARK EROSION

  • Jeong, Chang-Mo
    • The Journal of Korean Academy of Prosthodontics
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    • v.38 no.4
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    • pp.402-411
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    • 2000
  • The dental profession is currently experiencing a technology explosion. Processes are being replaced by modern, inexpensive, and precise techniques that can be used to solve complex restorative problems. Electrical discharge machining(EDM, known as spark erosion in Europe) is a nonconventional, industrial technique that has application in dentistry. EDM may be defined as a metal removal process using a series of sparks to erode material from a workpiece in a liquid medium under carefully controlled conditions. EDM is recently adopted in the dental laboratory to fabricate precision attachments, hybrid tele-scope crowns, Ti-ceramic crowns. EDM has also been used to achieve a passive precision metal-to-metal fit between the substructure bar and the removable superstructure and to correct the fit of implant retained restorations. In this article, a brief history and explanation of EDM is discussed and a description of the use of this process for fabricating attachments and crowns or for correcting the fit of cast restorations is presented.

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Design of Continuous Cultural Heritage Education Applications via Gamification - Focused on Korean Ceramic History (Gamification을 통한 지속적인 문화재 교육 앱 디자인 - 한국 도자사를 중심으로)

  • Ham, Chorom;Yu, JeongMin
    • Proceedings of the Korean Society of Computer Information Conference
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    • 2020.07a
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    • pp.409-411
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    • 2020
  • 4차 산업 시대의 흐름에 따라 디지털 문화유산 컨텐츠의 생산이 이루어지고 있다. 문화재의 위치와 해설을 사용자에게 제공하거나 문화재 사진을 보고 이름을 맞추며 간략한 정보를 얻는 등 학습을 위한 어플리케이션이 제작되고 있으나 사용자 경험을 고려한 지속적 교육 컨텐츠의 개발은 부족한 상황이다. 이에 따라 본 논문에서는 게이미피케이션을 통해 사용자가 문화재에 대한 정보를 지속적으로 학습할 수 있는 모바일 어플리케이션을 제안한다. 사용자의 흥미를 동반하여 학습을 이어가기 위해 수집형 롤플레잉 게임 시스템을 응용하고 이를 크게 네 가지의 항목으로 세분화하였다. 이 연구를 통해 우리 문화유산을 활용한 지속적 교육 컨텐츠 개발에 기여하길 기대한다.

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Development and application of ex-solution nanocatalyst (용출 현상 기반 나노촉매의 개발 및 응용)

  • Kim, Jun Hyuk;Kim, Jun Kyu;Jung, WooChul
    • Ceramist
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    • v.23 no.2
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    • pp.200-210
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    • 2020
  • Supported catalysts are at the heart of manufacturing essential chemical, agricultural and pharmaceutical products. While the longevity of such systems is critically hinged on the durability of metal nanoparticles, the conventional deposition/dispersion techniques are difficult to enhance the stability of the metal nanoparticles due to the lack of control over the interaction between metal-support. Regarding this matter, ex-solution has begun to be recognized as one of the most promising methodologies to develop thermally and chemically robust nanoparticles. By dissolving desired catalysts as a cation form into a parent oxide, fine and uniformly distributed metal nano-catalysts can be subsequently grown in situ under reductive heat treatment, which is referred to ex-solution. Over the several years, ex-solved analog has resulted in tremendous progress in the chemical-electrochemical applications due to the exceptional robustness coupled with ease synthesis. Herein, we describe the ex-solution process in detail which therein introducing the unique characteristics of ex-solved particles that distinguish them from conventionally dispersed nanoparticles. We then go through the history of science regarding the ex-solution phenomena and summarize several major research achievements which embrace the ex-solved nanoparticles to markedly promote the catalytic performances. In conclusion, we address the remaining challenges and the future perspectives of this rapidly growing field.

Study on the Chemically Method of Epoxy Restoration Material in Antic Ceramics and Stabilization of Their Materials (토기.도자기 복원에 사용된 에폭시 복원재료의 화학적 제거방법과 그 안정성에 관한 연구)

  • Han, Won-Sik;Bae, Jin-Soo;Park, Gi-Jung;Hong, Tae-Kee;Wi, Koang-Chul
    • Journal of Conservation Science
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    • v.26 no.1
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    • pp.25-32
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    • 2010
  • The yellowing is always occurred phenomena in epoxy restoration material of antic-ceramics. For re-restoration of remains with epoxy restoration material, the epoxy elimination step is the first one in all course of restoration In this paper, the chemically elimination treatments methods of epoxy in various antic-ceramics were discussed. We fabricated the epoxy elimination material for antic-ceramics restoration which were made up Dichloromethane and Dichlormethane based Dimethylformamide solution. Dichloromethane and Dichloromethane + Dimethylformamide mixture were applied to epoxy in various antic-ceramic sample. Particularly, Dichloromethane + Dimethylformamide solution had the best result in variation of color change, gloss, vending strength, weight, exfoliation time test after deposition in this solution. Dichloromrthane had the volume increase characteristics for epoxy material and Dimethylformamide had the mollification ones. So, Dichloromathane increased exfoliation in approximal surface of the epoxy material and antic ceramic, and Dimethylformamide decreased the surface hardness of epoxy. In this result, epoxy material even inside of ceramic that have very weak inside bonding is adaptable and stable eliminated. And in order to show the perfect elimination of this material, we successfully dissolve the epoxy restoration material in one antic pottery that is in one university museum's possession using this mixture. So, there is guarantee in the eternity and stabilization of restoration for antic-ceramics.

Non-linear Temperature Dependent Deformation Anaysis of CBGA Package Assembly Using Moir′e Interferometry (모아레 간섭계를 이용한 CBGA 패키지의 비선형 열변형 해석)

  • 주진원;한봉태
    • Journal of the Microelectronics and Packaging Society
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    • v.10 no.4
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    • pp.1-8
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    • 2003
  • Thermo-mechanical behavior of a ceramic ball grid array (CBGA) package assembly are characterized by high sensitive moire interferometry. Moir fringe patterns are recorded and analyzed at various temperatures in a temperature cycle. Thermal-history dependent analyses of global and local deformations are presented, and bending deformation (warpage) of the package and shear strain in the rightmost solder ball are discussed. A significant non-linear global behavior is documented due to stress relaxation at high temperature. Analysis of the solder interconnections reveals that inelastic deformation accumulates on only eutectic solder fillet region at high temperatures.

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Study on the environment design element of Japan subway station wall - Laying stress on techniques of ceramic mural that is manufactured in 2000 years - (일본 지하철 역 벽면의 환경디자인 요소에 관한 연구 - 2000년도에 제작된 도자 벽화의 기법을 중심으로 -)

  • 이병수
    • Proceedings of the Korean Institute of Interior Design Conference
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    • 2003.05a
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    • pp.170-173
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    • 2003
  • Because effect about environmental effect that get to human visually is absolute, ability that mural of subway interior considers relation with space is required. Also, public environment element should be designed must intend agreeableness sex by same traitor effect of quality of the material and color and can be evaluated by cultural inheritance that is powerful enemy same time. Wish to accomplish access as meaning of city environment improvement of wall of subway station or underground space etc. through Japan course South Korea's illustration regarding environment landscaping features that is designed in wall of latest domestic building subway interior in this research. Various and new reading by that study and analyze manufactured wall environment landscaping features recently that could find and was approached in variouser technique, practical use of material than single material and is expressed according to history's special quality and planning know can. Underground space can give agreeableness feel and psychological sense of security by user though expression method, material, color plan etc. consist because is having image blockade enemy. Therefore, wall environment landscaping features of underground space to be cultural value and environment Dija because diversified research that is accompanied in element is gone subway interior space of our country and underground space etc. as new culture space develop be able to must.

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Secondary Ion Mass Spectrometry : Theory and Recent trends (이차이온질량분석기의 원리와 분석법 동향)

  • Byeon, Mirang;Kim, Da Young;Hong, Tae Eun
    • Ceramist
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    • v.22 no.4
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    • pp.357-367
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    • 2019
  • Secondary Ion Mass Spectrometry(SIMS) is an analytical method that measures the distribution and concentration of elements or compounds by analyzing the mass of secondary ions released by irradiating ion beams with energy of hundreds eV to 20 keV on the sample surface. Unlike other similar analytical instruments, SIMS directly detect the elemental ions that constitute a sample, allowing you to accurately identify components and obtain concentration information in the depth direction. It is also a great feature for measuring isotopes and analyzing light elements, especially hydrogen. In particular, with the development of materials science, there is an increasing demand for trace concentration analysis and isotope measurements in the micro-regions of various materials. SIMS has a short history compared to other similar methods; nevertheless, SIMS is still advancing in hardware and is expected to contribute to the development of materials science through research and development of advanced analytical techniques.