The Experts below are selected from a list of 3 Experts worldwide ranked by ideXlab platform

P. R. Nott - One of the best experts on this subject based on the ideXlab platform.

  • Slide Conveying of Granular Materials-Thinking Out of the Glovebox
    2000
    Co-Authors: J. D. Goddard, A. K. Didwania, P. R. Nott
    Abstract:

    The vibratory conveyor, routinely employed for normal-gravity transport of granular materials, usually consists of a continuous open trough vibrated sinusoidally to induce axial movement of a granular material. Motivated in part by a hypothetical application in zero gravity, we propose a novel modification of the vibratory conveyor based on a closed 2d trough operating in a "slide-Conveying" mode, with the granular mass remaining permanently in contact with the trough walls. We present a detailed analysis of the mechanics of transport, based on a rigid-slab model for the granular mass with frictional (Coulomb) slip at the upper and lower walls. The form of the vibration Cycle plays a crucial role, and the optimal Conveying Cycle is not the commonly assumed rectilinear sinusoidal motion. The Conveying efficiency for the novel slide conveyor will be presented for several simple vibration Cycles, including one believed to represent the theoretical optimum.

J. D. Goddard - One of the best experts on this subject based on the ideXlab platform.

  • Slide Conveying of Granular Materials-Thinking Out of the Glovebox
    2000
    Co-Authors: J. D. Goddard, A. K. Didwania, P. R. Nott
    Abstract:

    The vibratory conveyor, routinely employed for normal-gravity transport of granular materials, usually consists of a continuous open trough vibrated sinusoidally to induce axial movement of a granular material. Motivated in part by a hypothetical application in zero gravity, we propose a novel modification of the vibratory conveyor based on a closed 2d trough operating in a "slide-Conveying" mode, with the granular mass remaining permanently in contact with the trough walls. We present a detailed analysis of the mechanics of transport, based on a rigid-slab model for the granular mass with frictional (Coulomb) slip at the upper and lower walls. The form of the vibration Cycle plays a crucial role, and the optimal Conveying Cycle is not the commonly assumed rectilinear sinusoidal motion. The Conveying efficiency for the novel slide conveyor will be presented for several simple vibration Cycles, including one believed to represent the theoretical optimum.

A. K. Didwania - One of the best experts on this subject based on the ideXlab platform.

  • Slide Conveying of Granular Materials-Thinking Out of the Glovebox
    2000
    Co-Authors: J. D. Goddard, A. K. Didwania, P. R. Nott
    Abstract:

    The vibratory conveyor, routinely employed for normal-gravity transport of granular materials, usually consists of a continuous open trough vibrated sinusoidally to induce axial movement of a granular material. Motivated in part by a hypothetical application in zero gravity, we propose a novel modification of the vibratory conveyor based on a closed 2d trough operating in a "slide-Conveying" mode, with the granular mass remaining permanently in contact with the trough walls. We present a detailed analysis of the mechanics of transport, based on a rigid-slab model for the granular mass with frictional (Coulomb) slip at the upper and lower walls. The form of the vibration Cycle plays a crucial role, and the optimal Conveying Cycle is not the commonly assumed rectilinear sinusoidal motion. The Conveying efficiency for the novel slide conveyor will be presented for several simple vibration Cycles, including one believed to represent the theoretical optimum.