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    • 1. 发明专利
    • Burial mould
    • 仿制模具
    • JP2007277912A
    • 2007-10-25
    • JP2006105192
    • 2006-04-06
    • Nippon Oil Corp新日本石油株式会社
    • CHATANI MASAAKIOTA YOSHITAKA
    • E02D27/01E04B2/86
    • PROBLEM TO BE SOLVED: To provide a burial mould having flexural strength and compressive strength superior in durability against erosion and water pressure by water, superior in anti-corrosiveness, capable of thinning the cross-sectional thickness more than a cement concrete burial mould, and particularly effective in a marine or river civil engineering/construction structure. SOLUTION: This burial mould has an inside surface on the side for placing concrete and an outside surface opposed to this inside surface. The burial mould is formed of a modified sulfur solid body on the outside including at least the outside surface, and is characterized in that the solid body includes fine powder having the particle size of 1 mm or less and metallic fiber. COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供一种埋地模具,其抗弯强度和抗压强度优于耐水侵蚀和耐水压力,抗腐蚀性优异,能够使横截面厚度比水泥混凝土埋地更薄 模具,在海洋或河流土木工程/建筑结构中特别有效。 解决方案:该埋置模具在侧面具有用于放置混凝土的内表面和与该内表面相对的外表面。 埋置模具由至少外表面的外部的改性硫固体形成,其特征在于,所述固体包含粒径为1mm以下的细粉末和金属纤维。 版权所有(C)2008,JPO&INPIT
    • 2. 发明专利
    • Method of manufacturing tile panel using sulfur solidified body as base material and tile panel
    • 使用硫化固体作为基材和面板制造板面板的方法
    • JP2006062880A
    • 2006-03-09
    • JP2004243518
    • 2004-08-24
    • Nippon Oil CorpUeda Shokai:Kk新日本石油株式会社株式会社上田商会
    • OTA YOSHITAKASUGANO MITSUO
    • C04B28/36C04B14/02E04F13/08
    • PROBLEM TO BE SOLVED: To provide a method of easily manufacturing a tile panel using a sulfur solidified body having excellent acid resistance, mechanical strength, water blocking property or the like as a base material, having excellent designability and lightweight property and easily used on site and the tile panel obtained by the manufacturing method.
      SOLUTION: The method of manufacturing the tile panel includes a step (A) for placing a plurality of tiles at a prescribed interval in a prescribed shaped formwork, a step (B) for introducing a molten sulfur-containing material into the formwork after the step (A), a step (C) for solidifying the molten sulfur-containing material and a step (D) for removing the formwork. The tile panel is formed so that the plurality of the tiles are integrated to be exposed on the outer surface of the sulfur solidified body in a prescribed interval.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 解决问题的方案:提供一种使用具有优异的耐酸性,机械强度,阻水性等作为基材的硫化固化体容易地制造瓦片的方法,具有优异的设计性和轻质性,并且容易 在现场使用和通过制造方法获得的瓦片面板。 解决方案:制造瓦片面板的方法包括步骤(A),用于以规定的间隔将多个瓦片放置在规定的成形模板中;步骤(B),用于将熔融的含硫材料引入模板 在步骤(A)之后,用于固化熔融含硫材料的步骤(C)和用于除去模板的步骤(D)。 瓦片面板被形成为使得多个瓦片被整合以暴露在硫凝固体的外表面上以规定的间隔。 版权所有(C)2006,JPO&NCIPI
    • 3. 发明专利
    • Spout for molten sulfur material container
    • 润滑硫化物料容器的分配
    • JP2007223635A
    • 2007-09-06
    • JP2006045907
    • 2006-02-22
    • Nippon Oil Corp新日本石油株式会社
    • TSUSHIMA JUNICHICHATANI MASAAKIOTA YOSHITAKA
    • B65D25/48B65D25/42B65D83/00
    • PROBLEM TO BE SOLVED: To enable a cooled and hardened sulfur material adhering to the surface of a spout, which is attached to a part of the opening edge section of a material container for housing the sulfur material being molten by heating inside, and discharging the sulfur material inside by tilting the container in an optional direction, to be easily peeled and removed. SOLUTION: For this spout, a spout (1) member which has heat resistance and flexibility, and is formed of a material having a lower adhesion is attached to a part of the opening edge section 3 of the material container 2 in a manner to protrude outward from the opening edge section 3. In this case, the material container 2 houses the sulfur material 9 which is melted by heating inside, and discharges the sulfur material 9 inside by tilting the container in an arbitrary direction. The cooled and hardened sulfur material 9 which has adhered to the surface of the spout (1) member can be peeled and removed by warping the spout (1) member. Thus, the cooled and hardened sulfur material which has adhered to the surface of the spout member can easily be peeled and removed. COPYRIGHT: (C)2007,JPO&INPIT
    • 待解决的问题:为了使冷却和硬化的硫材料附着在喷口的表面上,该喷嘴附接到材料容器的开口边缘部分的一部分,用于通过在内部加热来容纳熔融的硫材料, 并且通过在任意方向上倾斜容器来将硫材料排出到内部,从而易于剥离和去除。 解决方案:对于该喷口,具有耐热性和柔性的喷嘴(1)构件由具有较低粘合力的材料形成,并且在该材料容器2的开口边缘部分3的一部分上以 在这种情况下,材料容器2容纳通过内部加热而熔化的硫材料9,并且通过使容器在任意方向上倾斜来将硫材料9排出到内部。 已经粘附到喷嘴(1)构件的表面上的冷却和硬化的硫材料9可以通过使喷嘴(1)构件翘曲而被剥离和去除。 因此,已经粘附到喷口部件表面的冷却和硬化的硫材料可以容易地剥离和去除。 版权所有(C)2007,JPO&INPIT
    • 4. 发明专利
    • Composite structure for waterway facility and its manufacturing method
    • 用于水路设施的复合结构及其制造方法
    • JP2007204933A
    • 2007-08-16
    • JP2006021972
    • 2006-01-31
    • Nippon Oil Corp新日本石油株式会社
    • TAKEI YOSHIHISACHATANI MASAAKITSUSHIMA JUNICHIKURAKAKE MINORUOTA YOSHITAKAMORIHIRO TOSHIO
    • E03F3/06C04B14/04C04B28/36E03F5/04E03F5/10
    • PROBLEM TO BE SOLVED: To provide a composite structure for a waterway facility having a two-layer structure of a concrete layer and a modified sulfur including layer, superior in an adhesive property and mechanical strength of the two-layer structure, capable of imparting excellent acid resistance, formable as an undangerous substance, and useful for the waterway facility; and its manufacturing method. SOLUTION: This composite structure for the waterway facility has the two-layer structure of the concrete layer and the modified sulfur including layer of having the modified sulfur including layer including modified sulfur and an aggregate on at least a waterway part surface of a concrete structure for the waterway facility. This manufacturing method includes a process A of preparing the concrete structure for the waterway facility, a process B of arranging an adhesion improving means for improving an adhesive property of the concrete layer and the modified sulfur including layer on a surface S provided with the modified sulfur including layer including at least the waterway part surface of the concrete structure, and a process C of arranging the modified sulfur including layer on the surface S provided with the adhesion improving means by contacting and cooling a molten modified sulfur including material including molten modified sulfur and the aggregate. COPYRIGHT: (C)2007,JPO&INPIT
    • 解决问题的方案为了提供具有混凝土层和改性含硫层的双层结构的水路设备的复合结构,其具有优异的双层结构的粘合性能和机械强度,能够 赋予优异的耐酸性,可形成为无害物质,可用于水路设施; 及其制造方法。 解决方案:该水路设备的复合结构具有混凝土层的二层结构和含改性硫的改性含硫层,其中包含改性硫的层包括改性硫,并且至少在水路部分表面上具有聚集体 水道设施的混凝土结构。 该制造方法包括制备水路设备的混凝土结构的方法A,在设置有改性硫的表面S上配置用于提高混凝土层和改性含硫层的粘合性的粘合改善装置的工序B 包括至少包括混凝土结构的水路部分表面的层,以及通过使包含熔融改性硫的熔融改性硫和包含熔融改性硫的熔融改性硫接触并冷却而将经改性的含硫层布置在具有粘合改善装置的表面S上的工艺C 总计。 版权所有(C)2007,JPO&INPIT
    • 5. 发明专利
    • Manufacturing method of sulfur-containing jointed object and radiation-type heat-melting apparatus
    • 含硫接头对象和辐射型热熔装置的制造方法
    • JP2006159829A
    • 2006-06-22
    • JP2004358050
    • 2004-12-10
    • Nippon Oil Corp新日本石油株式会社
    • OTA YOSHITAKACHATANI MASAAKI
    • B28B11/00B28B23/00C04B28/36
    • PROBLEM TO BE SOLVED: To provide a radiation type heat-melting apparatus capable of easily heat-melting a desired position such as an outer margin of a joint surface of a material or the like in a short time, enabling its re-use, and capable of successively effectively heat-melting modified sulfur or the like corresponding to a shape of the material in a case of jointing the sulfur-containing materials, and to provide a manufacturing method of the sulfur-containing jointed object using the apparatus. SOLUTION: The manufacturing method comprises a process of heat-melting at least a part of the outer margin of tightly contacted joint surfaces of the sulfur-containing materials with a radiation-type heat-melting apparatus having a heating part radiating radiant heat capable of melting the modified sulfur or the like, and a process of cooling and solidifying the molten position. The heat-melting by the apparatus is conducted while the heating part is separated from the heat-melting position. The apparatus of the present invention comprises the heating part radiating the radiant heat, a flexible heat-reflecting plate curved to reflect the heat radiated from the heating part and focus the radiant heat to the heat-melting position, a heat controller controlling the temperature of the heating part, and a grip part capable of holding the heating part and the heat-reflecting plate at a predetermined position. COPYRIGHT: (C)2006,JPO&NCIPI
    • 解决的问题:为了提供能够在短时间内容易地将材料等的接合面的外缘等期望位置热熔化的放射线型热熔融装置, 并且能够在连接含硫材料的情况下依次有效地加热对应于材料形状的改性硫等,并且使用该装置提供含硫接合物的制造方法。 解决方案:该制造方法包括使用具有辐射辐射热的加热部分的辐射式加热熔融装置对含硫材料的紧密接触的接合表面的外边缘的至少一部分进行加热熔融的方法 能够熔融改性硫等,以及冷却和凝固熔融位置的过程。 在加热部分与加热熔融位置分离的同时进行设备的热熔。 本发明的装置包括辐射辐射热的加热部分,弯曲以反射从加热部分辐射的热量并将辐射热聚焦到热熔位置的柔性热反射板,控制温度的热控制器 加热部分和能够将加热部分和热反射板保持在预定位置的把手部分。 版权所有(C)2006,JPO&NCIPI
    • 8. 发明专利
    • Apparatus for spraying sulfur material
    • 喷涂硫磺材料的装置
    • JP2007054783A
    • 2007-03-08
    • JP2005245823
    • 2005-08-26
    • Nippon Oil Corp新日本石油株式会社
    • OTA YOSHITAKATSUSHIMA JUNICHI
    • B05B7/16B05B7/04C04B41/65E04F21/12
    • B05B7/164B05B7/1666B05B7/22B05B7/2424E04F21/12E04G21/246E04G23/0218
    • PROBLEM TO BE SOLVED: To enable a sulfur material that is a solid at an ordinary temperature and melted to a fluid at a temperature higher than a specified temperature to be continuously sprayed to an object surface.
      SOLUTION: An apparatus for spraying the molten sulfur material to an object surface is equipped with a material tank 1 for holding the molten sulfur material as a spraying material, a temperature-controllable heater 2 for keeping the sulfur material melted by heating the outer periphery of the material tank 1 to above the melting point of sulfur and a spray nozzle 3 connected to a material outlet at the bottom of the above material tank 1 for jetting the sulfur material in the material tank 1 together with supplied compressed air.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 待解决的问题:为了使能够在常温下固体熔融并在高于特定温度的温度下熔化成流体的硫材料被连续喷射到物体表面。 解决方案:用于将熔融硫磺材料喷射到物体表面的装置装备有用于保持熔融硫材料作为喷涂材料的材料罐1,用于通过加热来保持硫材料熔化的温度可控的加热器2 材料罐1的外周部到硫的熔点以上,喷射喷嘴3连接到上述材料罐1的底部的材料出口,用于喷射材料罐1中的硫材料以及供应的压缩空气。 版权所有(C)2007,JPO&INPIT
    • 10. 发明专利
    • Civil engineering/construction material or structure
    • 民用工程/建筑材料或结构
    • JP2007290925A
    • 2007-11-08
    • JP2006122480
    • 2006-04-26
    • Nippon Oil Corp新日本石油株式会社
    • OTA YOSHITAKATSUSHIMA JUNICHI
    • C04B28/36C04B14/38C04B16/06C04B18/14C04B20/00
    • C04B28/36Y02W30/94C04B14/02C04B18/144C04B20/0076
    • PROBLEM TO BE SOLVED: To provide a civil engineering/construction material or structure having both excellent acid resistance and wear resistance more superior than cement concrete and capable of being executed under an environment requiring the physical properties. SOLUTION: The civil engineering/construction material or structure contains 20-40 mass% modified sulfur-containing material comprising 100 pts.mass modified sulfur and 20-100 pts.mass inorganic fine powder having ≤1 mm particle diameter and 60-80 mass% ferro nickel slag fine aggregate having ≤5 mm particle diameter, wherein the inorganic fine powder contains at least Si, has the ratio CaO/(SiO 2 +Al 2 O 3 ) of ≤0.2 in the inorganic fine powder by mass expressed in terms of oxide of Ca, Si and Al and has both acid resistance and wear resistance. COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供具有比水泥混凝土更优越的耐酸性和耐磨性优异的土木工程/建筑材料或结构,并且能够在需要物理性能的环境下执行。

      解决方案:土木工程/建筑材料或结构含有20-40质量%的改性含硫材料,包括100质量度改性硫和20-100质量度无机细粉,粒径≤1毫米, 具有≤5mm粒径的80质量%的铁镍矿细骨料,其中无机细粉末至少含有Si,CaO /(SiO 2 + Al 2 O 3 )在无机细粉末中以Ca,Si和Al的氧化物表示的质量,具有耐酸性和耐磨性。 版权所有(C)2008,JPO&INPIT