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    • 11. 发明专利
    • Artificial stone material made of steel slag hydrated solidified body used for landfill, riprap or back filling material
    • 用于土地,RIPRAP或背面填充材料的钢渣水泥固化体的人造石材料
    • JP2009114027A
    • 2009-05-28
    • JP2007289468
    • 2007-11-07
    • Jfe Steel CorpJfeスチール株式会社Nippon Steel Corp新日本製鐵株式会社
    • SHINOZAKI HARUHIKONAKAGAWA MASAOTAKANO YOSHIHIROMATSUNAGA HISAHIROTOZAWA KOICHI
    • C04B18/14
    • C04B18/02Y02W30/94C04B18/142C04B20/0076C04B20/026
    • PROBLEM TO BE SOLVED: To provide an artificial stone material made of a steel slag hydrated solidified body produced by crushing a steel slag hydrated solidified body and applied as a landfill for sea port or air port construction, riprap or a back filling material. SOLUTION: The artificial stone material steel slag is produced by crushing a steel slag hydrated solidified body. The grain size of the artificial stone applied for the landfill, the riprap and the back filling material is controlled to satisfy that the artificial stone having ≤0.8 mm particle diameter occupies ≤10 mass% (D 10 ≥0.8 mm) as grain size index; the grain size of the artificial stone applied for the landfill, the riprap and the back filling material is controlled to satisfy that the artificial stone having ≤2.4 mm particle diameter occupies ≤20 mass% (D 20 ≥2.4 mm) as grain size index; and the grain size of the artificial stone applied for the landfill, the riprap and the back filling material is controlled to satisfy that the artificial stone having ≤4.6 mm particle diameter occupies ≤30 mass% (D 30 ≥4.6 mm) as grain size index. COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供一种由钢渣水化凝固体制成的人造石材料,其通过粉碎钢渣水合凝固体并作为海港或空气港口建设的填埋场应用,裂缝或填充填料 。

      解决方案:人造石材料钢渣是通过对钢渣水化凝固体进行破碎而生产的。 控制填埋场,裂缝和填充材料的人造石的晶粒尺寸,使粒径≤0.8mm的人造石的质量≤10质量%(D 10 ≥0.8 mm)作为晶粒尺寸指数; 用于填埋场的人造石的晶粒尺寸,裂缝和填充材料的粒径控制在≤2.4mm粒径的人造石的质量≤20质量%(D 20 ≥2.4 mm)作为晶粒尺寸指数; 将用于填埋场的人造石的晶粒尺寸,裂缝和背面填充材料控制为满足≤6.6mm粒径的人造石≤30质量%(D 30 ≥ 4.6mm)作为晶粒尺寸指数。 版权所有(C)2009,JPO&INPIT

    • 12. 发明专利
    • Determination method of iron and steel slug and method for predicting its solidified state
    • 铁和钢丝绳的测定方法及其固化状态预测方法
    • JP2005351888A
    • 2005-12-22
    • JP2005137570
    • 2005-05-10
    • Nippon Steel Corp新日本製鐵株式会社
    • KAMIMURA RYUSUKESHINOZAKI HARUHIKOSHIMODA KAZUTOSHINAKAGAWA MASAOTSUJII MASATOKISO EIJIYAMADA HIROTERU
    • G01N33/24
    • PROBLEM TO BE SOLVED: To provide a means for determining iron and steel slug to be used according to operating environments and purposes when iron and steel slug is used as a sand covering material or a back-filling material.
      SOLUTION: An arranging location of a sand covering material or a back-filling material is determined (S101). Iron and steel slug to be used is temporarily determined (S102). In the case that the sand covering material or the back-filling material made of temporarily determined iron and steel slug is arranged at the arranging location, the state of solidification is predicted on the basis of at least either the concentration of hydroxyl group ions or the concentration of calcium ions in pore water of the iron and steel slug at the arranging location (S103) to determine whether the predicted state of solidification is in a desired state or not (S104). In the case that it is not in the desired state (No in S105), the evaluation of the temporarily determined iron and steel slug is repeated until the desired state of solidification is achieved.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供一种用于根据操作环境和目的确定使用的钢铁块的方法,当铁和钢块用作砂覆盖材料或填充材料时。 解决方案:确定沙子覆盖材料或填充材料的布置位置(S101)。 临时确定使用的钢铁芯棒(S102)。 在由临时确定的钢铁芯块制成的砂覆盖材料或背面填充材料布置在排列位置的情况下,凝固状态基于羟基离子的浓度或 浓度在配置位置处的铁和钢渣的孔隙水中的钙离子(S103),以确定预测的凝固状态是否处于期望状态(S104)。 在不是期望状态的情况下(S105中为“否”),重复对临时确定的钢铁块的评价,直到达到期望的凝固状态为止。 版权所有(C)2006,JPO&NCIPI
    • 14. 发明专利
    • Network structure with water expansive material for containment of contaminated sediment, lining structure, and method for submerging network structure with water expansive material
    • 用于污染沉积物的含水膨胀材料的网络结构,衬里结构和用水膨胀材料提取网络结构的方法
    • JP2005299201A
    • 2005-10-27
    • JP2004116297
    • 2004-04-12
    • Nippon Steel Corp新日本製鐵株式会社
    • TSUJII MASATOSHINOZAKI HARUHIKONAKAGAWA MASAO
    • E02B3/00C02F11/00
    • PROBLEM TO BE SOLVED: To provide an easily constructible network structure with a water expansive material for containment of contaminated sediment, a lining structure using the network structure with the water expansive material, and a method for submerging the network structure with the water expansive material.
      SOLUTION: The network structure 5 with the water expansive material for containment of the contaminated sediment is formed by covering at least the upper face side of the network structure 2 with the water expansive material 3. Every net material 1 constituting the network structure may be coated with the water expansive material 3. The network structure 5 with the water expansive material is installed to cover the water bottom contaminated sediment. With the expansion of the water expansive material 3, cavities of holes 6 in the network structure with the water expansive material for containment of the contaminated sediment are blocked with the expanded water expansive material, and a shielding membrane formed of a water expansive material layer 4 covering the water bottom contaminated sediment is formed to constitute the lining structure. A guide vertical rod is used as a guide to carry out settlement and installation.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供一种具有用于容纳污染沉积物的水膨胀材料的容易构造的网络结构,使用具有水膨胀材料的网状结构的衬里结构,以及用于将网络结构与水浸没的方法 膨胀材料 解决方案:具有用于容纳污染沉积物的水膨胀材料的网络结构5通过用水膨胀材料3至少覆盖网状结构2的上表面而形成。构成网络结构的每个网材料1 可以用水膨胀材料3涂覆。具有水膨胀材料的网络结构5被安装以覆盖水底污染的沉积物。 随着水膨胀材料3的膨胀,网状结构中的孔6的孔与用于容纳污染的沉积物的水膨胀材料的空腔被膨胀的水膨胀材料堵塞,并且由膨胀材料层4形成的屏蔽膜 覆盖水底污染的沉积物形成构成衬砌结构。 引导垂直杆作为指导,进行沉降安装。 版权所有(C)2006,JPO&NCIPI