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    • 11. 发明授权
    • 고 내구성을 지닌 투수아스팔트콘크리트 및 그 제조방법
    • 具有高耐久性的可渗透沥青混凝土及其制造方法
    • KR100813164B1
    • 2008-03-17
    • KR1020070089906
    • 2007-09-05
    • 한국휴로드 (주)주식회사 윤성이엔지
    • 김희덕오희교
    • C04B26/26C04B14/02C04B14/10
    • C04B28/02C04B26/26C04B2111/00267C04B7/00C04B14/02C04B14/08C04B20/00C04B20/0096C04B32/02C04B24/36
    • A water permeable asphalt concrete of high durability and a manufacturing method thereof are provided to protect the asphalt concrete pavement from aging and plastic deformation by employing filler and diatomite for extending the lifetime of the pavement. A water permeable asphalt concrete of high durability comprises 65-80% by weight of coarse aggregate, 14-26% by weight of fine aggregate, 4-5% by weight of asphalt, 2-4% by weight of filler and 10-35% by weight of diatomite (the ratio filler:diatomite is 9-1:1-7). The coarse aggregate has particle size of 13-2.5mm which passes through 20, 13, 10, 5, 2.5 and 1.2mm sieve in the amount of 100% by weight, 90-100% by weight, 40-75% by weight, 5-25% by weight, 0-10% by weight and 0-5% by weight, respectively, and the fine aggregate has particle size of 5-0.08mm. The filler is selected from a group consisting of limestone powder, igneous rock powder, cement slacked lime and steel-making dust, and the filler passes through 0.6, 0.3, 0.15 and 0.08mm sieve in the amount of 100% by weight, at least 95% by weight, at least 90% by weight and at least 70% by weight, respectively. The combined particles of the coarse aggregate, fine aggregate and filler pass through 20, 13, 5, 2.5, 0.3 and 0.08mm sieve in the amount of 100% by weight, 95-100% by weight, 15-35% by weight, 10-25% by weight, 5-15% by weight and 0-10% by weight, respectively. The diatomite is purified by calcining at 800-1200deg.C in a rotation furnace. A colored water permeable asphalt concrete comprises 1.5-3% by weight of asphalt pigment with respect to the total water permeable asphalt concrete.
    • 提供高耐久性的透水性沥青混凝土及其制造方法,通过采用填料和硅藻土来延长路面使用寿命,保护沥青混凝土路面免受老化和塑性变形。 高耐久性的透水性沥青混凝土包含65-80重量%的粗骨料,14-26重量%的细骨料,4-5重量%的沥青,2-4重量%的填料和10-35 硅藻土重量百分比(填料比例:硅藻土比例为9-1:1-7)。 粗骨料的粒径为13〜2.5mm,通过20重量%,13重量%,10重量%,2.5重量,2.5重量%,1.2重量%的筛子,100重量%,90-100重量%,40-75重量% 5-25重量%,0-10重量%和0-5重量%,细骨料的粒径为5-0.08毫米。 填料选自由石灰石粉末,火成岩粉末,水泥松散石灰和炼钢粉尘组成的组,填料通过0.6重量%,0.3重量%,0.15重量%和0.08毫米的筛子,至少为100重量% 95重量%,至少90重量%和至少70重量%。 粗骨料,细骨料和填料的组合颗粒通过量为100重量%,95-100重量%,15-35重量%的20,13,5,2.5,0.3和0.08毫米筛子, 10-25重量%,5-15重量%和0-10重量%。 硅藻土通过在旋转炉中在800-1200℃下煅烧来纯化。 有色透水沥青混凝土包含相对于总透水性沥青混凝土的沥青颜料重量的1.5-3%。
    • 13. 发明公开
    • 황토 바이오 보드 및 그 제조방법
    • OCHER生物板及其制造方法
    • KR1020010069315A
    • 2001-07-25
    • KR1020010011717
    • 2001-03-07
    • 두레황토 주식회사
    • 이효중
    • C04B33/00
    • C04B14/10C04B14/18C04B14/365C04B20/00C04B33/32C04B2103/0097C04B2111/00482E04C2/04
    • PURPOSE: Disclosed are an ocher bio board and method for manufacturing thereof to prevent a cold etc. by improving insulation efficiency and dam control faculty in accordance with character of ocher component using ocher board as interior material etc. by adding ocher, perlite and anhydrous gypsum. CONSTITUTION: The method for manufacturing ocher bio board comprises first step to crush ocher, perlite and anhydrous gypsum with fixed grain size or less using crusher; second step to remove moisture by drying crushed ocher, perlite and anhydrous gypsum; third step to mix 45-50 pts.wt of dried ocher, desirably 47 pts.wt, 35-45 pts.wt of perlite, desirably 40 pts.wt, 8-12 pts.wt of anhydrous gypsum, desirably 10 pts.wt; fourth step to stir by blending 3 pts.wt of natural orange tree sap as natural hardening agent into the mixture of ocher, perlite, anhydrous gypsum; fifth step to form the product of the fourth step to desire shape; sixth step to cool after burning by heating the product of the fifth step with fixed temperature.
    • 目的:通过添加赭石,珍珠岩和无水石膏,公开了根据赭石板作为内部材料等的赭石组分的特性,通过提高绝缘效率和坝体控制能力来制造其来防止冷等的赭石生物板及其制造方法 。 构成:赭石生物板的制造方法包括用破碎机粉碎固定粒度以下的赭石,珍珠岩和无水石膏的第一步骤; 通过干燥粉碎的赭石,珍珠岩和无水石膏去除水分的第二步; 将45-50重量份干赭石,理想的47重量份,35-45重量份的珍珠岩,理想的40重量份,8-12重量份的无水石膏,理想的10重量份 ; 将3重量份天然橙树汁作为天然硬化剂掺入赭石,珍珠岩,无水石膏的混合物中搅拌第四步; 第五步形成第四步的欲望形状的产物; 通过加热固定温度第五步骤的产品燃烧后的第六步骤。
    • 14. 发明公开
    • 폐기물을 이용한 무결빙 도로포장재 및 그 제조방법
    • 使用废弃材料的道路非冷冻摊铺材料及其制备工艺
    • KR1020000030342A
    • 2000-06-05
    • KR1020000008805
    • 2000-02-23
    • 이성구조용상
    • 이성구조용상
    • C04B18/00
    • C04B18/04C04B20/00C04B20/12E01C19/1004
    • PURPOSE: Non-freezing pavement material of a road is provided which prevents deterioration of physical properties of asphalt according to variation of temperature, maintains its durability and rigidity, is not easily frozen even in a severe cold, and can use industrial wastes such as tires of automobiles serviceably. CONSTITUTION: The non-freezing pavement material of a road comprises an aggregate core which is prepared by mixing and heating dirt, stone powder, waste rubber materials and waste vinyl materials in a certain ratio while stirring; a carbonate layer coated to the exterior of said aggregate core; a magma layer surrounding said carbonate layer; and a carbon layer which surrounds said magma layer and has holes perforated from surface part toward core part.
    • 目的:提供道路非冻结路面材料,防止沥青物理性能因温度变化而变质,保持其耐久性和刚性,即使在严寒的情况下也不易冷冻,并可使用轮胎等工业废弃物 的汽车。 构成:道路的非冷冻路面材料包括:集料芯,其通过在搅拌下以一定比例混合和加热污物,石粉,废橡胶材料和废乙烯基材料而制备; 涂覆在所述聚集体芯的外部的碳酸盐层; 围绕所述碳酸盐层的岩浆层; 以及包围所述岩浆层并且具有从表面部朝向芯部穿孔的孔的碳层。