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The Korean Lamination Female Roof tile of Applied lamination to Seismic Design
The Korean Lamination Female Roof tile of Applied lamination to Seismic Design
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机译:应用于抗震设计的韩国层压女性屋面瓦
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摘要
The present invention provides an earthquake-resistant Korean-style plain roof tile. The earthquake-resistant Korean-style plain roof tile, which is built on the roof of a Korean-style house, is prevented from dislodging in a vertical and horizontal direction by vibrations caused by typhoons and earthquakes. Moreover, when installing the roof tile, an amount of an exposed area is able to be maximized; thereby being able to reduce the number of roof tiles used for installation; and substantially reduce a load applied to the roof. In addition, the plain roof tile is able to be standardized to replace two pieces of existing plain roof tiles with one piece of the plain roof tiles of the present invention. The plain roof tile comprises: rainwater inflow prevention steps having three edges on an outer framework projecting in the form of a step; stone step insertion grooves formed on a center of an upper portion on both sides; horizontal support pieces horizontally formed on both sides below the stone step insertion grooves; borders formed in a longitudinal direction of both edges of an external outer framework, wherein the edges are formed on an opposite side; rectangular holding stone projections formed horizontally on a center of an upper end of both edges wherein the rectangular holding stone projections are formed on both sides; a rectangular holding space formed on a convex surface below the stone projections; a fixing projection with a recessed groove and a protruding groove formed below the rectangular holding space; and a slipping prevention piece formed below the fixing projection having separation pieces horizontally formed on an opened surface. The Korean-style plain roof tile is advantageous in that it is possible to minimize heat transmission to an upper surface of the plain roof while a plastic process is maintained, and an organic bonding relation between an upper surface structure and a lower surface structure is formed when the plain roof tiles are overlapped to each other; thereby preventing the plain roof tiles from dislodging by earthquakes or typhoons, and maximizing an effective area of exposure.
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