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    • 2. 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
    • 3. 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
    • 5. 发明专利
    • Manhole inner wall spraying method and spraying device
    • 浴室内壁喷涂方法和喷涂装置
    • JP2008031689A
    • 2008-02-14
    • JP2006204796
    • 2006-07-27
    • Nippon Oil Corp新日本石油株式会社
    • TSUSHIMA JUNICHIYOSHIDA KOHEIHAMA TAKASHI
    • E02D29/12
    • PROBLEM TO BE SOLVED: To prevent separation caused by a secular change by the lapse of time of an inner wall surface such as a manhole, by spraying a sulfur composition being a solid at an ordinary temperature and brought into a fluid state by melting by being heated within a predetermined temperature range. SOLUTION: In a state of threadedly engaging a rotary shaft 26 forming a male screw on an outer peripheral surface, rotating around the axis A of a manhole port 20 and liftably extending in the vertical direction with a baseboard 25 forming a screw hole 29 in a central part, the torque of a rotational driving source 27 is transmitted to the rotary shaft 26 by a rotational lifting mechanism 28 detachably arranged in the manhole port 20, rotating the rotary shaft 26 by the rotational driving source 27 so that a speed can be adjusted and arranged between the rotational driving source 27 and the rotary shaft 26. The melted sulfur composition is sprayed toward an inner wall of the manhole 21 as a spraying material 22 by a spraying machine 23 fixed to the lower end of the rotary shaft 26 by ascending or descending the rotary shaft 26. COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:为了防止由诸如人孔等内壁表面的时间的长期变化引起的分离,通过在常温下喷雾为固体的硫组合物,并通过 通过在预定温度范围内加热而熔化。 解决方案:在螺纹接合在外周面上形成外螺纹的旋转轴26的状态下,围绕人孔20的轴线A旋转,并且在竖直方向上可升高地延伸,基板25形成螺孔 如图29所示,旋转驱动源27的转矩通过可旋转地布置在人孔口20中的旋转提升机构28传递到旋转轴26,由旋转驱动源27使旋转轴26旋转, 可以调节和布置在旋转驱动源27和旋转轴26之间。熔融的硫组合物通过固定到旋转轴的下端的喷射机23作为喷射材料22喷射到人孔21的内壁 (C)2008,JPO&INPIT
    • 6. 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
    • 7. 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
    • 9. 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

    • 10. 发明专利
    • Manufacturing process of high porosity reformed sulfur solidification object and structure for oceans
    • 高孔径改性硫磺固体物质与结构的制造工艺
    • JP2007261178A
    • 2007-10-11
    • JP2006091376
    • 2006-03-29
    • Nippon Oil Corp新日本石油株式会社
    • TSUSHIMA JUNICHIYOSHIDA KOHEI
    • B28B1/54A01K61/00
    • Y02A40/81Y02A40/838
    • PROBLEM TO BE SOLVED: To provide a manufacturing process of a high porosity reformed sulfur solidification object in which a porous body with high porosity using a reforming sulfur and a shoulder bone material can be manufactured easily and efficiently, and a bulk utilization of an abandonment shell is also expectable and to provide a structure for oceans equipped with the solidification object acquired by the manufacturing process. SOLUTION: The manufacturing process of this invention comprises a step (A) of filling up with a shoulder bone material (a) in a receptacle for the bone material to a lower part, etc., having a domain (X) through which melting reforming sulfur middle materials can be passed and through which the shoulder bone material (a) cannot pass, a step (B) of containing and conserving the melting materials in the receptacle for the melting materials that can hold and conserve these melting materials and can be immersed in the receptacle filled up with the bone material (a), a step (C) of immersing the receptacle which held the bone material (a) at the step (A) into these melting materials in the step (B), a step (D) of pulling up the immersed receptacle and ejecting these melting materials of surplus in the receptacle from the domain (X), and a step (E) of cooling and solidifying these melting materials in the receptacle for the bone material after the step (D). COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供一种高孔隙率重整硫固化物的制造方法,其中可以容易且有效地制造使用重整硫和肩骨材料的具有高孔隙率的多孔体,并且大量利用 也可以预期放弃壳,并为配备有通过制造过程获得的凝固物体的海洋提供结构。 解决方案:本发明的制造方法包括将用于骨材料的容器中的肩骨材料(a)填充到具有结构域(X)通过的下部等的步骤(A) 可以使熔融的重整硫中间材料通过并且肩骨材料(a)不能通过的步骤(B),用于容纳和保存可容纳和保存这些熔融材料的熔化材料的容器中的熔化材料的步骤(B) 可以浸渍在填充有骨材料(a)的容器中,步骤(C)将步骤(A)中保持骨材料(a)的容器浸入步骤(B)中的这些熔化材料中, 将所述浸没的容器拉起并从所述区域(X)喷出所述容器中剩余的这些熔融材料的步骤(D);以及在所述骨材料的所述容器的所述容器中冷却和固化所述熔化材料的步骤(E) 步骤(D)。 版权所有(C)2008,JPO&INPIT