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농촌지역 활성화를 위한 도시공원의 활용 - 구례군 백련제 주변 관광자원화사업을 사례로 -
박지환,오창송,Park, Ji-Hwan,Oh, Chang-Song 한국농촌계획학회 2018 농촌계획 Vol.24 No.3
This study is conducted to propose urban park utilization and master plan in rural areas. Urban parks designed for the rural areas can be divided into three types: a themed type for rural tourism, a community type for hub regenerations and a waterfront type for using agricultural reservoirs. To use the themes and characteristics of ruralness, these types are required a multi-layered spatial structure. And ecological, cultural and economic networks of local tourism resources have to be integrated by utilizing agricultural reservoirs. Therefore, urban parks in rural areas can be defined as a part of the public benefit project aiming to revitalize the local economy. Also, urban parks are necessary to use attractions and amenities in rural areas. Based on theoretical backgrounds, this study proposed two sustainable master plans as the tourism resource development project for Baelyeonje, Gulye-gun. For ecological and cultural sustainability, this study proposed the environment restoration plan which reinforces the scenic resource of Nogodan in Mt. Jiri by developing the underdevelopment plan with consideration of the local landscape characteristics and resources. For economic sustainability, building the Mt. Jiri tourism complex and economic communities are needed to promote investments for securing mutual economic benefits. To achieve the sustainability, further studies related to the social equity and investment of private capital in rural areas are needed.
Hot pressing으로 제조된 Cu-W계 소결재의 미세조직 및 내마모특성
박지환,김수방,박윤우,Park, Ji-Hwan,Kim, Su-Bang,Park, Yun-U 한국재료학회 2000 한국재료학회지 Vol.10 No.3
Cu-20wt.%W 복합재료를 $800^{\circ}C$에서 $1000^{\circ}C$의 소결온도에서 15MPa과 30MPa의 소결압력으로 30분과 60분 동안 유지하여 진공가압소결하였다. 진공가압소결로 제조한 결과 일반적인 소결공정에 비해 높은 밀도와 경도값의 상승 및 내마모성이 향상되었다. 그런데, 15MPa의 소결압력에서 Cu-W의 미세조직은 W이 부분적으로 불균일하게 군집한 것을 관찰할 수 있다. 이러한 결과는 구리와 텅스텐간의 상호 불고용성과 소결시 소결압력의 차이의 의한 효과라 생각된다. Cu-W composites containing 20wt.% W were fabricated by hot pressing. Hot pressing was carried out at temperatures ranging from 800 to $1000^{\circ}C$ under pressures of 15MPa for 30MPa for 30min and 60min. This process gave composites of higher density, higher hardness and higher wear resistance than the conventional sintering processes. However, the microstructure of Cu-W composites under pressure of 15MPa revealed there was an inhomogeneous distribution of W, segregation of W on some area. These undesirable results are attributed to the immiscibility of W in Cu and the pressure effect on sintering.
박지환,이동원,김종렬,Park, Ji-Hwan,Lee, Dong-Won,Kim, Jong-Ryoul 한국분말야금학회 2010 한국분말재료학회지 (KPMI) Vol.17 No.5
Titanium powders have been usually produced by de-hydrogenating treatment in vacuum with titanium hydride ($TiH_2$) powders prepared by milling of hydrogenated sponge titanium, $TiH_x$. The higher stoichiometry of x in $TiH_x$, whose maximum value is 2, is achieved, crushing behavior is easier. $TiH_x$ powder can be, therefore, easy to manufactured leading to obtain higher recovery factor of it. In addition, contamination of the powder can also minimized by the decrease of milling time. In this study, the hydrogenation behavior of sponge titanium was studied to find the maximum stoichiometry. The maximum stoichiometry in hydride formation of sponge titanium could be obtained at $750^{\circ}C$ for 2 hrs leading to the formation of $TiH_{{\sim}1.99}$ and the treating temperatures lower or higher than $750^{\circ}C$ caused the poor stoichiometries by the low hydrogen diffusivity and un-stability of $TiH_x$, respectively. Such experimental behavior was compared with thermodynamically calculated one. The hydrogenated $TiH_{1.99}$ sponge was fully ball-milled under -325 Mesh and the purity of pure titanium powders obtained by de-hydrogenation was about 99.6%.