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    • 1. 发明专利
    • Production method and production device for sulfur solidified body
    • 用于硫化固体的生产方法和生产装置
    • JP2009227551A
    • 2009-10-08
    • JP2008078240
    • 2008-03-25
    • Fuji Concrete Industry Co LtdNippon Oil Corp不二コンクリート工業株式会社新日本石油株式会社
    • KURAKAKE MINORUCHATANI MASAAKITOMINAGA YOSHIBUMIYAMAGUCHI YASUNORI
    • C04B28/36
    • C04B28/36B28B1/54B28B7/42B28B13/0275B28B21/38C04B12/00F04B15/023C04B40/0085
    • PROBLEM TO BE SOLVED: To provide a production method and a production device for a sulfur solidified body where sulfur-containing materials in a molten state are poured into a sealable molding flask heated within a set temperature range under prescribed pressure, and thereafter, the materials are cooled and solidified within the molding flask so as to mold a sulfur solidified body.
      SOLUTION: Sulfur-containing materials in a molten state are stored into a material hopper 1 heated within a set temperature range which is the melting point of sulfur or above, this stored sulfur-containing materials are sucked by pressure generators 2a, 2b, and are pulled out inside cylinders 11a, 11b heated within the above set temperature range, the pulled-out sulfur-containing materials are extruded from the cylinders in such a manner that prescribed pressure is applied by the pressure generators, and are poured from a pouring port 24 into a molding flask 5 having a sealable cavity at the inside and heated within the above set temperature range, the pouring port of the molding flask after the sulfur-containing materials are poured into the cavity to the limit is closed, the heating of the molding flask is stopped, the sulfur-containing materials poured into the cavity are annealed, and the sulfur-containing solidified body molded in such a manner that the sulfur-containing materials in the cavity are cooled and solidified is taken out from the molding flask.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种硫化固化体的制造方法和制造装置,其中将熔融状态的含硫材料注入在规定压力下在规定温度范围内加热的密封型烧瓶中,之后 将材料在烧瓶内冷却固化,从而模制硫化凝固体。 解决方案:将处于熔融状态的含硫材料储存在在硫或以上熔点的设定温度范围内加热的料斗1中,该储存的含硫材料由压力发生器2a,2b吸入 并在被加热到上述设定温度范围内的气缸11a,11b内被拉出,拉出的含硫材料以压力发生器施加规定压力的方式从气缸中挤出,并从 将入口24注入到具有在内部具有可密封空腔并在上述设定温度范围内加热的型砂箱5中,将含硫材料倒入该型腔中的注模口倒入极限之后,加热 ,将注入到空腔中的含硫材料退火,并将硫含量固化体以含硫物料的方式成型 将空腔中的冷却并固化从模型烧瓶中取出。 版权所有(C)2010,JPO&INPIT
    • 3. 发明专利
    • Method of constructing concrete surface layer
    • 构造混凝土表面层的方法
    • JP2008019556A
    • 2008-01-31
    • JP2006189838
    • 2006-07-10
    • Nippon Oil Corp新日本石油株式会社
    • CHATANI MASAAKITSUSHIMA JUNICHIYOSHIDA KOHEI
    • E04G23/02C04B28/36
    • C04B41/5014C04B41/009C04B2111/00577C04B41/4509C04B41/4523C04B28/00
    • PROBLEM TO BE SOLVED: To provide the method for constructing concrete surface layer in which a sulfur composition used as a spray material, kept in a solid at the atmospheric temperature and molten in a fluid state when it is heated within a predetermined temperature range and which prevents the spray material from being peeled off in the boundary surface of the spray.
      SOLUTION: An anchor hole 21 of cylindrical shape or wedge shape in cross section is formed in the surface of a concrete skeleton 20 to a predetermined depth. The molten sulfur composition as a spray material 22 is sprayed toward the surface of the concrete skeleton 20 by a sprayer 23. The sulfur composition is charged into the anchor hole 21, and adhered to the surface of the concrete skeleton 20 with a predetermined thickness to form a surface layer. Since the sulfur composition kept in a solid at the atmospheric temperature and molten in a fluid state when heated within a predetermined temperature range is used as a spray material 22, the spray material can be prevented from being peeled off in the boundary surface of the spray by the presence of the anchor hole 21.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供一种用于构建混合物表面层的方法,其中将用作喷涂材料的硫组合物在大气温度下保持固体并在流体状态下在预定温度下加热时熔化 并且防止喷雾材料在喷雾的边界表面被剥离。 解决方案:在混凝土骨架20的表面形成预定深度的圆柱形或楔形的锚定孔21的横截面。 作为喷射材料22的熔融硫组合物通过喷雾器23朝向混凝土骨架20的表面喷射。硫组合物被填充到锚定孔21中,并以预定厚度附着到混凝土骨架20的表面, 形成表面层。 由于在大气温度下保持固体并且在预定温度范围内加热时以流体状态熔融的硫成分被用作喷射材料22,因此可以防止喷雾材料在喷雾的边界表面被剥离 通过锚孔21的存在。(C)2008,JPO&INPIT
    • 4. 发明专利
    • Sulfur solidified body molding device and method for producing sulfur solidified molded product
    • 硫磺固化体模具装置及其制造硫化固化模制品的方法
    • JP2007320824A
    • 2007-12-13
    • JP2006155006
    • 2006-06-02
    • Nippon Oil CorpPetroleum Energy Center新日本石油株式会社財団法人石油産業活性化センター
    • CHATANI MASAAKITSUSHIMA JUNICHIHORII HIDEYUKIKURAKAKE MINORU
    • C04B40/02C04B28/36
    • C04B40/0263C04B28/36
    • PROBLEM TO BE SOLVED: To produce a sulfur solidified molded product without generating a gap caused by shrinkage and the generation of gas upon the solidification of sulfur materials.
      SOLUTION: The sulfur solidified body molding device 10 comprises: a molding flask 100 at which a cavity C is formed; and a temperature keeping/heating apparatus 200 installed so as to cover the cavity C. The molding flask 100 comprises a bottom plate part and side plate parts in which a fluid chamber is formed at the inside, respectively. By introducing, e.g., pressurized steam into each fluid chamber, the molding flask 100 is heated, and, by introducing a cooling medium, the molding flask 100 is cooled. The temperature keeping/heating apparatus 200 is provided with a heating means, and is installed so as to cover the cavity C during cooling for sulfur materials in a melted state made to flow into the cavity C by the molding flask 100, and heats the upper surfaces of the sulfur materials.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 待解决的问题:为了生产硫固化的模制产品,而不产生由于硫材料凝固而导致的收缩和气体产生的间隙。 硫凝固体成型装置10包括:形成有空腔C的模型烧瓶100; 以及以覆盖空腔C的方式安装的温度保持/加热装置200.模制烧瓶100包括分别在其内部形成流体室的底板部分和侧板部分。 通过将例如加压的蒸汽引入每个流体室中,将模型烧瓶100加热,并且通过引入冷却介质来冷却模型瓶100。 保温加热装置200设置有加热装置,并且在冷却期间安装成在冷却期间通过模型烧瓶100流入空腔C的熔融状态的硫材料覆盖空腔C,并加热上部 表面的硫磺材料。 版权所有(C)2008,JPO&INPIT
    • 5. 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
    • 6. 发明专利
    • Molten sulfur material container
    • MOLTEN SULFUR材料容器
    • JP2007247951A
    • 2007-09-27
    • JP2006070998
    • 2006-03-15
    • Nippon Oil Corp新日本石油株式会社
    • ITO KENJITSUSHIMA JUNICHIYOSHIDA KOHEICHATANI MASAAKI
    • F28D1/06
    • PROBLEM TO BE SOLVED: To perform required construction while preventing a molten sulfur material stored in a bottomed cylindrical body from solidifying.
      SOLUTION: This molten sulfur material container stores the heated and melted sulfur material 8 in the bottomed cylindrical body 1. A bottom wall part 2 and a peripheral wall part 3 of the bottomed cylindrical body 1 have a double structure. A heating medium fluid 4 is enclosed in this double structure to be maintained within a predetermined temperature range. Further, the bottom wall part 2 of the bottomed cylindrical body 1 is heated by an external heating device 5, and the heat medium fluid 4 enclosed inside the double structure is heated to within a predetermined temperature range. Thereby, the molten sulfur material 8 stored inside the bottomed cylindrical body 1 is prevented from solidifying and the required construction can be performed.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:在防止存储在有底圆柱体中的熔融硫化物固化的同时执行所需的结构。 解决方案:该熔融硫化物容器将加热熔融的硫材料8储存在有底圆筒体1中。有底筒体1的底壁部分2和周壁部分3具有双重结构。 加热介质流体4被封闭在该双重结构中以保持在预定的温度范围内。 此外,有底圆柱体1的底壁部分2被外部加热装置5加热,并且封闭在双重结构内的热介质流体4被加热到预定的温度范围内。 由此,能够防止存在于有底筒体1内的熔融硫化物8凝固,能够进行所需的结构。 版权所有(C)2007,JPO&INPIT
    • 8. 发明专利
    • Solidification and construction method for sulfur material
    • 硫化材料的固化和施工方法
    • JP2007204979A
    • 2007-08-16
    • JP2006023355
    • 2006-01-31
    • Nippon Oil Corp新日本石油株式会社
    • CHATANI MASAAKIOTA YOSHITAKA
    • E02B3/12
    • PROBLEM TO BE SOLVED: To enable construction to be easily performed by melting and solidifying a construction material, in which a sulfur-solidified body obtained by solidifying a sulfur material containing a sulfur component is crushed into pieces of a predetermined size, through the use of a simple device.
      SOLUTION: The construction material 1, in which the sulfur-solidified body obtained by solidifying the sulfur material containing the sulfur component is crushed into the pieces of the predetermined size, is precedently laid on a construction surface 2; the construction material 1 is melted by being heated up to a predetermined temperature or higher with the heat of a panel-like heating means 3 arranged above the construction material 1; and the molten construction material 1 is cooled to be solidified on the construction surface 2. Thus, the construction can be easily performed by melting and solidifying the construction material 1, in which the sulfur-solidified body obtained by solidifying the sulfur material containing the sulfur component is crushed into the pieces of the predetermined size, through the use of the simple device.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 待解决的问题:为了使施工材料熔融固化,可以容易地进行施工,其中通过将含有硫成分的硫材料凝固而获得的硫固体被粉碎成规定尺寸的碎块,通过 使用简单的设备。 解决方案:将其中将含有硫成分的硫材料固化而获得的硫固体粉碎成预定尺寸的碎片的构造材料1首先放置在施工表面2上; 通过设置在建筑材料1上方的板状加热装置3的热量将建筑材料1加热至预定温度或更高温度; 熔融结构材料1在施工面2上被冷却固化。因此,通过使构成材料1熔融固化,可以容易地进行施工,其中通过固化含有硫的硫材料获得的硫固化体 通过使用简单的装置将部件压碎成预定尺寸的碎片。 版权所有(C)2007,JPO&INPIT
    • 9. 发明专利
    • Method of manufacturing modified sulfur-containing porous solidified body
    • 制造含硫改性多孔固化体的方法
    • JP2007204287A
    • 2007-08-16
    • JP2006021970
    • 2006-01-31
    • Nippon Oil Corp新日本石油株式会社
    • CHATANI MASAAKITSUSHIMA JUNICHIYOSHIDA KOHEINAKANO YUICHI
    • C04B28/36A01G1/00A01K61/00C04B14/02C04B38/00E02B3/14E04C1/39
    • C04B28/36C04B2111/00758C04B2111/42C04B40/0263
    • PROBLEM TO BE SOLVED: To provide a method of manufacturing a modified sulfur-containing porous solidified body by which a porous body obtained by using modified sulfur and having high porosity is easily and efficiently manufactured.
      SOLUTION: The method of manufacturing the modified sulfur-containing porous solidified body includes a step (A) for preparing a modified sulfur-containing fluid material containing 100 pts.mass fine particle having 1 mm or under particle diameter and 30-400 pts.mass modified sulfur, two kinds or more of amorphous aggregate each having 5 mm or more and different particle diameter and a framework having openings at both ends, the one opening (a) through which the modified sulfur-containing fluid material and the amorphous aggregate can pass and the other opening (b) through which the modified sulfur-containing fluid material passes and the amorphous aggregate does not pass, a step (B) for making a part of the modified sulfur-containing fluid material in a state of contact with the amorphous aggregate flow out from the opening (b) and a step (C) for solidifying the modified sulfur-containing fluid material in the forming frame.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 待解决的问题:提供一种制造改性含硫多孔固化体的方法,通过该方法可以容易且有效地制造通过使用改性硫而获得的具有高孔隙率的多孔体。 解决方案:制造改性含硫多孔质固化体的方法包括:制备含有1mm或以下粒径的100质量微粒的改性含硫流体物质的步骤(A)和30-400 pts.mass改性硫,两种或更多种各自具有5mm或更大和不同粒径的无定形骨料,以及两端具有开口的骨架,一个开口(a),经修饰的含硫流体材料和非晶态 骨料可以通过,另一个开口(b)通过修改的含硫流体材料通过而无定形骨料不通过;步骤(B),用于使部分改性含硫流体材料处于接触状态 所述无定形聚集体从所述开口(b)流出,以及用于在所述成型框架中固化所述经改性的含硫流体材料的步骤(C)。 版权所有(C)2007,JPO&INPIT
    • 10. 发明专利
    • Melting equipment for sulfur material
    • 硫化物料冶炼设备
    • JP2007203539A
    • 2007-08-16
    • JP2006023356
    • 2006-01-31
    • Nippo Mecx KkNippon Oil Corpニッポメックス株式会社新日本石油株式会社
    • CHATANI MASAAKIOTA YOSHITAKATSUSHIMA JUNICHIATOMACHI TOMOHIROKOGURE KAZUOTOMIZAWA SHINJI
    • B28C5/46
    • PROBLEM TO BE SOLVED: To melt in a short time and efficiently by holding a sulfur material for execution, obtained by disintegrating a solid sulfur into a predetermined size, inside a heating oven and melting it by heat.
      SOLUTION: In the inside of the heating oven 1 which has a double structure respecting the bottom wall part and the peripheral wall part and has a heating medium fluid 12 held in the double structure part (11), the sulfur material for execution is held, the one obtained by crushing into a predetermined size the sulfur solidified body obtained by solidifying a sulfur material containing sulfur ingredients. By a heat source 2 arranged to the lower part of the heating oven 1 the heating medium fluid 12 held inside the double structure part is heated within a given temperature, and by an agitating means 3 furnished in the heating oven 1 the sulfur material for execution held in the heating oven 1 is agitated and molten. By a turning means 4 which rotatably supports the heating oven 1 with a horizontal support axis 9 the heating oven 1 is revolved around the support axis 9 and the top part of the heating oven 1 is turned over to the front side and the sulfur material having molten in the inside is discharged.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:通过将固体硫分解成预定尺寸而获得的用于执行的硫物质在加热炉内部并通过加热熔化而在短时间内有效地熔融。 解决方案:在相对于底壁部分和周壁部分具有双重结构且具有保持在双重结构部分(11)中的加热介质流体12的加热炉1的内部,用于执行的硫材料 是将通过固化含有硫成分的硫材料而获得的硫固化体粉碎成规定尺寸而得到的。 通过设置在加热炉1的下部的热源2,将保持在双重结构部分内部的加热介质流体12在给定温度内被加热,并且通过设置在加热炉1中的搅拌装置3来执行硫材料 保持在加热炉1中并搅拌并熔融。 通过转动装置4,其以水平支撑轴线9可旋转地支撑加热炉1,加热炉1围绕支撑轴线9旋转,并且加热炉1的顶部向前侧翻转,并且硫材料具有 在里面熔化的是排出的。 版权所有(C)2007,JPO&INPIT