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    • 2. 发明专利
    • Joint structure of reinforcing material and construction method of the joint structure
    • 钢筋混凝土结构联合结构与接头结构施工方法
    • JP2011202369A
    • 2011-10-13
    • JP2010068312
    • 2010-03-24
    • Ohbayashi CorpRailway Technical Research Institute公益財団法人鉄道総合技術研究所株式会社大林組
    • TANIMURA YUKIHIROSOGABE MASAMICHIMATSUMOTO MITSUYATODOROKI SHUNTARONOMURA TOSHIOFUKUI MASAOHASHIMOTO MANABUKOMATSU YUICHI
    • E01D22/00
    • PROBLEM TO BE SOLVED: To provide a joint structure for a reinforcing plate and a construction method thereof allowing easy installation of the reinforcing plate to a wall body without using any adhesive and not protruding a projection part such as a bolt to a passage side.SOLUTION: The joint structure 5 for the reinforcing plate 4 includes a sheet-shaped stress transmitting material 6 installed between a balustrade 2 and the reinforcing plate 4, a spacer 7 to decide the installation position of the stress transmitting material 6, a spacer 10 to decide the installation position of the reinforcing plate 4, and a mortar part 8 formed by filling a space between the balustrade 2 and the reinforcing plate 4 with mortar. The stress transmitting materials 6 is arranged in the position ranging over a region between connection side ends of adjacent reinforcing plates 4 (a first reinforcing plate and a second reinforcing plate). The stress transmitting materials 6 is arranged inside the mortar part 8 by a fixing length, which is decided by design and the like, upward and downward from the end face 4a of the reinforcing plate 4.
    • 要解决的问题:提供一种用于加强板的接合结构及其施工方法,其允许在不使用任何粘合剂的情况下将加强板容易地安装到壁体上,并且不将突出部分例如螺栓突出到通道侧。 :用于加强板4的接合结构5包括安装在栏杆2和加强板4之间的片状应力传递材料6,用于决定应力传递材料6的安装位置的间隔件7,用于决定 加强板4的安装位置和通过用砂浆填充栏杆2和加强板4之间的空间形成的砂浆部8。 应力传递材料6布置在相邻加强板4(第一加强板和第二加强板)的连接侧端部之间的区域的范围内。 应力传递材料6通过设计等从加强板4的端面4a向上和向下设置的固定长度布置在砂浆部8的内部。
    • 3. 发明专利
    • Aseismic reinforcement structure for reinforced concrete
    • 加固混凝土的ASEISMIC加固结构
    • JP2014051826A
    • 2014-03-20
    • JP2012197331
    • 2012-09-07
    • Ohbayashi Corp株式会社大林組Railway Technical Research Institute公益財団法人鉄道総合技術研究所
    • TAKEDA ATSUSHITANAKA KOICHIKITA NAOYUKIOKAMOTO MASARUTANIMURA YUKIHIROOKUISHI JUNICHI
    • E04G23/02E01D22/00
    • PROBLEM TO BE SOLVED: To develop a sufficient resisting function against displacement shearing between new and old concretes without giving damage to the reinforcement of an existing RC member.SOLUTION: An aseismic reinforcement structure 1 for a reinforced concrete is constructed by lining an additional reinforced concrete 3 around a bridge pier 2 after previously forming recessed portions 11 in the abutting face of the bridge pier 2 on which the additional reinforced concrete 3 abuts and installing and forming the additional reinforced concrete 3 in such a state to provide protruded portions 12 to be fitted to the recessed portion on the additional reinforced concrete 3, and by lining a steel plate 4 around the additional reinforced concrete. When the bridge pier 2 and the additional reinforced concrete 3 tend to relative deformation in the direction along a boundary surface therebetween resulting from their bending deformation, the steel plate 4 functions as loading means for thrusting the additional reinforced concrete 3 toward the bridge pier 2 to guarantee a shear key function with the protruded portions 12 fitted into the recessed portions 11.
    • 要解决的问题:为了发展新旧混凝土之间的位移剪切的足够的抵抗功能,而不会损害现有RC构件的加固。解决方案:用于钢筋混凝土的抗震加固结构1是通过将另外的钢筋混凝土 在桥墩2的邻接面中预先形成凹部11之后,在附近的钢筋混凝土3邻接并安装和形成附加的钢筋混凝土3以提供待安装的突出部分12的桥墩2周围 到另外的钢筋混凝土3上的凹部,并且通过将钢板4围绕附加的钢筋混凝土衬里。 当桥墩2和附加钢筋混凝土3由于其弯曲变形而沿着其边界面的方向倾向于相对变形时,钢板4用作用于将附加钢筋混凝土3推向桥墩2的装载装置 保证突出部分12装配到凹部11中的剪切键功能。
    • 5. 发明专利
    • Earthquake strengthening structure
    • 地震强化结构
    • JP2014080742A
    • 2014-05-08
    • JP2012227628
    • 2012-10-15
    • Ohbayashi Corp株式会社大林組Railway Technical Research Institute公益財団法人鉄道総合技術研究所
    • TAKEDA ATSUSHITANAKA KOICHIOKAMOTO MASARUTANIMURA YUKIHIROOKUISHI JUNICHI
    • E01D19/02E01D22/00E04G23/02
    • PROBLEM TO BE SOLVED: To provide an earthquake strengthening structure which surely restrains the bulging of a PC column member while allowing the manufacturing, transportation, and assembly to be efficiently performed.SOLUTION: In an inventive earthquake strengthening structure 1: PC steel bars 21 are arranged in an inserted state into a bridge footing 3 so that each of the PC steel bars is clamped between and by mutually adjacent curved plates 8, 8 among the curved plates 8 which are bent and processed into partially cylindrical shapes; a presser plate 22 is attached to an end of each PC steel bar 21 by using a nut 23; and concrete is filled and arranged between the vicinity of a center of the presser plate 22 and the bridge footing 3, between the vicinity of an end of the presser plate 22 and a lateral marginal part 24 of the curved plate 8, and between the lateral marginal part and the bridge footing 3 so that concrete connecting bodies 25 are structured as the whole. A reinforcing-bar 27 with anchors of which ends are widened and formed as anchorage zones is embedded in the concrete connecting bodies 25 so that the reinforcing-bar extends between the marginal parts 24, 24 and the bridge footing 3 from one of the marginal parts to the other thereof.
    • 要解决的问题:提供一种可以有效地抑制PC柱构件的膨胀同时允许有效地进行制造,运输和组装的抗震结构。解决方案:在本发明的地震加固结构1中:PC钢筋21是 以插入状态布置成桥脚3,使得每个PC钢筋被弯曲并加工成部分圆柱形的弯曲板8中的彼此相邻的弯曲板8,8之间夹紧; 通过使用螺母23将压板22安装在每个PC钢棒21的端部上; 并且将混凝土填充并布置在压板22的中心附近和桥基3之间,在压板22的端部附近和弯曲板8的侧边缘部分24之间以及横向 边缘部分和桥脚3,使得混凝土连接体25整体构成。 具有锚固件的加强杆27被加宽并形成为锚固区域,嵌入混凝土连接体25中,使得钢筋从边缘部分24,24和桥基3之间的边缘部分之一延伸 到另一个。
    • 6. 发明专利
    • Earthquake-proof reinforcement panel
    • 地震防护面板
    • JP2014074320A
    • 2014-04-24
    • JP2012223708
    • 2012-10-05
    • Ohbayashi Corp株式会社大林組Railway Technical Research Institute公益財団法人鉄道総合技術研究所
    • TAKEDA ATSUSHITANAKA KOICHIOKAMOTO MASARUTANIMURA YUKIHIROOKUISHI JUNICHI
    • E04G23/02E01D19/02E01D22/00
    • PROBLEM TO BE SOLVED: To certainly restrain swelling of an RC column member while efficiently manufacturing, conveying, and assembling an earthquake-proof reinforcement panel.SOLUTION: An earthquake-proof reinforcement panel 1 comprises a PC steel rod 6 arranged penetrating a bridge pier 3, a load transmission member 7 arranged on a side of the bridge pier 3 while the PC steel rod is inserted therethrough, and a curved-surface plate 8 coupled to a longitudinal edge part of the load transmission member. An insertion hole 21 into which the PC steel rod 6 is inserted is formed in a web 22 of the load transmission member 7, bolt holes 24 are formed in respective flanges 23 respectively, and the curved-surface plate 8 is bolt-joined to the flanges 23 using the bolt holes. Two flanges 23, 23 are configured to increase in mutual separation dimension toward an opening side, but the direction of extension to the web 22 is so determined that the curved-surface plate 8 becomes flat nearby tip edges of the flanges when side edge parts of the curved-surface plate 8 are made to abut.
    • 要解决的问题:在有效地制造,输送和组装防震加强板的同时有效地抑制RC柱构件的膨胀。解决方案:防震加强板1包括穿过桥墩3设置的PC钢杆6 布置在桥墩3的一侧,同时插入PC钢杆的载荷传递部件7以及与载荷传递部件的纵向边缘部分相连的曲面板8。 插入PC钢杆6的插入孔21形成在负载传递构件7的腹板22中,螺栓孔24分别形成在各自的凸缘23中,并且弯曲表面板8螺栓连接到 使用螺栓孔的法兰23。 两个凸缘23,23被构造成朝着开口侧增加相互分离的尺寸,但是如此确定到卷材22的延伸方向,使得弯曲表面板8在边缘的边缘部分附近变得平坦, 使曲面板8抵接。
    • 7. 发明专利
    • Aseismic reinforcement structure for reinforced concrete
    • 加固混凝土的ASEISMIC加固结构
    • JP2014051825A
    • 2014-03-20
    • JP2012197247
    • 2012-09-07
    • Ohbayashi Corp株式会社大林組Railway Technical Research Institute公益財団法人鉄道総合技術研究所
    • TAKEDA ATSUSHITANAKA KOICHIOKAMOTO MASARUTANIMURA YUKIHIROOKUISHI JUNICHI
    • E04G23/02E01D22/00
    • PROBLEM TO BE SOLVED: To impart a sufficient resisting function against displacement shearing between new and old concretes to an anchor bar without giving damage to the reinforcements of an existing RC member.SOLUTION: An aseismic reinforcement structure 1 for a reinforced concrete is constructed by lining an additional reinforced concrete 3 around a bridge pier and lining a steel plate 4 around the reinforced concrete. Near a boundary surface between the bridge pier 2 and the additional reinforced concrete 3, short reinforcements 12 are arranged. The short reinforcements 12 resist as shear keys against displacement shearing as relative deformation along the boundary surface between the bridge pier 2 and the additional reinforced concrete 3. When the bridge pier 2 and the additional reinforced concrete 3 tend to relative deformation in the direction along the boundary surface therebetween resulting from their bending deformation, the steel plate 4 functions as loading means for thrusting the additional reinforced concrete 3 toward the bridge pier 2, using tensile force generated as the reactive force against the expansion deformation of the bridge pier 2 and the additional reinforced concrete 3 in the peripheral direction of the steel plate.
    • 要解决的问题:提供足够的抵抗功能,抵抗新旧混凝土之间的位移剪切与锚杆,而不会损坏现有的RC构件的加强件。解决方案:用于钢筋混凝土的抗震加固结构1由衬 在桥墩附近的另外一个钢筋混凝土3,钢筋混凝土周围钢板4。 在桥墩2和附加钢筋混凝土3之间的边界面附近,布置有短加强件12。 短加强件12作为剪切键抵抗位移剪切,沿着桥墩2和附加钢筋混凝土3之间的边界面的相对变形。当桥墩2和附加钢筋混凝土3沿着沿着方向的相对变形趋于 由于钢板4的弯曲变形而产生的边界面,钢板4作为用于将附加钢筋混凝土3推向桥墩2的装载装置,使用作为抵抗桥墩2的膨胀变形的反作用力产生的张力和附加 钢筋混凝土3在钢板的圆周方向。
    • 9. 发明专利
    • Measurement device and reinforcing bar outer peripheral shape measurement method
    • 测量装置和增强棒外部外形测量方法
    • JP2013164306A
    • 2013-08-22
    • JP2012026806
    • 2012-02-10
    • Railway Technical Research Institute公益財団法人鉄道総合技術研究所
    • TODOROKI SHUNTAROSOGABE MASAMICHITANIMURA YUKIHIRO
    • G01B11/24
    • PROBLEM TO BE SOLVED: To measure a contour of a reinforcing bar buried in an in-service reinforced concrete structure without cutting out it.SOLUTION: A reinforcing bar 4 is exposed by removing concrete of a reinforced concrete construction 2. A measurement device 10 can support a sensor unit 20 equipped with a first laser displacement sensor 26 and a second laser displacement sensor 28 in a different measurement position for the reinforcing bar 4. The first laser displacement sensor 26 measures the upper side partial shape of a half side of the reinforcing bar 4, causes inspection light of the second laser displacement sensor 28 to be reflected by an inspection light catoptrics element 30 and applied to the lower part for measuring the lower side partial shape. The upper and lower parts of a half side of the reinforcing bar 4 are measured in the first measurement, and the upper and lower parts of another half side are measured in the second measurement. Then, a measurement guide 32 compounds the part shape data with clues of measured parts, and the full shape data of the reinforcing bar 4 is compounded.
    • 要解决的问题:测量埋在使用中的钢筋混凝土结构中的钢筋的轮廓而不切割它。解决方案:钢筋4通过去除混凝土结构的混凝土而暴露2.测量装置10可以 支撑传感器单元20,其配备有用于钢筋4的不同测量位置的第一激光位移传感器26和第二激光位移传感器28.第一激光位移传感器26测量加强件的半边的上侧部分形状 条4使得第二激光位移传感器28的检查光被检查光检测元件30反射并施加到下部以测量下侧局部形状。 在第一测量中测量钢筋4的半边的上部和下部,并且在第二测量中测量另一半侧的上部和下部。 然后,测量引导件32利用测量部分的线索来组合部件形状数据,并且加固钢筋4的完整形状数据。