The Experts below are selected from a list of 171 Experts worldwide ranked by ideXlab platform

Si Shangzhuo - One of the best experts on this subject based on the ideXlab platform.

  • parking Connecting structure of suspension type monorail vehicle and suspension type monorail vehicle
    2017
    Co-Authors: Lei Zhangwen, Shang Jiangao, Qu Haiyang, Chen Jingjing, Wang Junmin, Li Liang, Si Shangzhuo
    Abstract:

    The invention discloses a parking Connecting structure of a suspension type monorail vehicle and the suspension type monorail vehicle. The parking Connecting structure of the suspension type monorail vehicle comprises a Connecting rod, a Connecting seat and a Connecting Beam, wherein the Connecting rod is used for transmitting vertical loads, longitudinal traction brake force and transverse swinging force between a suspension type vehicle body and a traveling component, the upper end of the Connecting rod is used for being fixedly connected with the traveling component, the lower end of the Connecting rod is hinged to the Connecting seat, and the Connecting seat is fixedly connected with the Connecting Beam. The parking Connecting structure of the suspension type monorail vehicle realizes non-rigid connection between the suspension type monorail vehicle body and a bogie, and internal stress caused by movement of the suspension type monorail vehicle body is solved.

Mei Chun Zhu - One of the best experts on this subject based on the ideXlab platform.

  • Nonlinear Analysis of a New 3D Skip-Floor Staggered Shear Wall Structure
    Advanced Materials Research, 2013
    Co-Authors: Jian Xin Liu, Hong Nan Wang, Mei Chun Zhu, Zhi Hong Zhang, Ying Wang, Hong Wei Wang
    Abstract:

    The elastoplastic nonlinear analysis is provided by considering both spatial effect and influence of slab and Connecting Beam. The seismic internal force distribution is also studied. It shows that compared with the 2D model and traditional 3D coupled shear wall structure, 3D skip-floor staggered shear wall structure has superiority in many respects, such as initial rigidity, uniformity of force, energy dissipation, etc. Therefore, this new structural system has good economic benefits and wide applications.

  • Experiment Study and Nonlinear Analysis of a New Skip-Floor Staggered Shear Wall Structure for High-Rise Buildings
    Applied Mechanics and Materials, 2013
    Co-Authors: Jian Xin Liu, Hong Nan Wang, Mei Chun Zhu
    Abstract:

    A new tall building structure is presented -- skip-floor staggered shear wall structure. According to the result of nonlinear analysis and experiment study, this new structural system has good economic benefits and better structural behavior. In order to study its spatial nonlinear properties, based on a 3D nonlinear FEM analysis model, the 3D seismic nonlinear analysis is provided by considering both spatial effect and influence of slab and Connecting Beam. It shows, compared with traditional coupled shear wall structure, the skip-floor staggered shear wall structure has superiority in many respects, such as providing bigger space and lateral stiffness, reducing seismic force, etc. Therefore, this new structural system has wide applications.

Jian Xin Liu - One of the best experts on this subject based on the ideXlab platform.

  • Nonlinear Analysis of a New 3D Skip-Floor Staggered Shear Wall Structure
    Advanced Materials Research, 2013
    Co-Authors: Jian Xin Liu, Hong Nan Wang, Mei Chun Zhu, Zhi Hong Zhang, Ying Wang, Hong Wei Wang
    Abstract:

    The elastoplastic nonlinear analysis is provided by considering both spatial effect and influence of slab and Connecting Beam. The seismic internal force distribution is also studied. It shows that compared with the 2D model and traditional 3D coupled shear wall structure, 3D skip-floor staggered shear wall structure has superiority in many respects, such as initial rigidity, uniformity of force, energy dissipation, etc. Therefore, this new structural system has good economic benefits and wide applications.

  • Experiment Study and Nonlinear Analysis of a New Skip-Floor Staggered Shear Wall Structure for High-Rise Buildings
    Applied Mechanics and Materials, 2013
    Co-Authors: Jian Xin Liu, Hong Nan Wang, Mei Chun Zhu
    Abstract:

    A new tall building structure is presented -- skip-floor staggered shear wall structure. According to the result of nonlinear analysis and experiment study, this new structural system has good economic benefits and better structural behavior. In order to study its spatial nonlinear properties, based on a 3D nonlinear FEM analysis model, the 3D seismic nonlinear analysis is provided by considering both spatial effect and influence of slab and Connecting Beam. It shows, compared with traditional coupled shear wall structure, the skip-floor staggered shear wall structure has superiority in many respects, such as providing bigger space and lateral stiffness, reducing seismic force, etc. Therefore, this new structural system has wide applications.

Lei Zhangwen - One of the best experts on this subject based on the ideXlab platform.

  • parking Connecting structure of suspension type monorail vehicle and suspension type monorail vehicle
    2017
    Co-Authors: Lei Zhangwen, Shang Jiangao, Qu Haiyang, Chen Jingjing, Wang Junmin, Li Liang, Si Shangzhuo
    Abstract:

    The invention discloses a parking Connecting structure of a suspension type monorail vehicle and the suspension type monorail vehicle. The parking Connecting structure of the suspension type monorail vehicle comprises a Connecting rod, a Connecting seat and a Connecting Beam, wherein the Connecting rod is used for transmitting vertical loads, longitudinal traction brake force and transverse swinging force between a suspension type vehicle body and a traveling component, the upper end of the Connecting rod is used for being fixedly connected with the traveling component, the lower end of the Connecting rod is hinged to the Connecting seat, and the Connecting seat is fixedly connected with the Connecting Beam. The parking Connecting structure of the suspension type monorail vehicle realizes non-rigid connection between the suspension type monorail vehicle body and a bogie, and internal stress caused by movement of the suspension type monorail vehicle body is solved.

Hong Nan Wang - One of the best experts on this subject based on the ideXlab platform.

  • Nonlinear Analysis of a New 3D Skip-Floor Staggered Shear Wall Structure
    Advanced Materials Research, 2013
    Co-Authors: Jian Xin Liu, Hong Nan Wang, Mei Chun Zhu, Zhi Hong Zhang, Ying Wang, Hong Wei Wang
    Abstract:

    The elastoplastic nonlinear analysis is provided by considering both spatial effect and influence of slab and Connecting Beam. The seismic internal force distribution is also studied. It shows that compared with the 2D model and traditional 3D coupled shear wall structure, 3D skip-floor staggered shear wall structure has superiority in many respects, such as initial rigidity, uniformity of force, energy dissipation, etc. Therefore, this new structural system has good economic benefits and wide applications.

  • Experiment Study and Nonlinear Analysis of a New Skip-Floor Staggered Shear Wall Structure for High-Rise Buildings
    Applied Mechanics and Materials, 2013
    Co-Authors: Jian Xin Liu, Hong Nan Wang, Mei Chun Zhu
    Abstract:

    A new tall building structure is presented -- skip-floor staggered shear wall structure. According to the result of nonlinear analysis and experiment study, this new structural system has good economic benefits and better structural behavior. In order to study its spatial nonlinear properties, based on a 3D nonlinear FEM analysis model, the 3D seismic nonlinear analysis is provided by considering both spatial effect and influence of slab and Connecting Beam. It shows, compared with traditional coupled shear wall structure, the skip-floor staggered shear wall structure has superiority in many respects, such as providing bigger space and lateral stiffness, reducing seismic force, etc. Therefore, this new structural system has wide applications.