All Stories

  1. Analysis of granular damping induced by mechanical stirring
  2. Investigation of dynamic characteristics of rolling particle dampers
  3. Efficiency of vibrational energy dissipation by tuned rolling-cylinder dampers
  4. Analysis of the behaviour of charged particles in electrical relay devices
  5. Large-Scale Simulation for Particle Damping
  6. Particle damper
  7. Development of Electrostatic Separator of Foreign Objects in Dried Foods
  8. Investigation of dynamics simulation of granular particles using spherocylinder model
  9. Collision Analysis between Granular Materials and Elastic Plate
  10. Analysis of Particle Damping with Hollow Steel Particles
  11. Development of Electrostatic Separator Using Cylindrical Electrodes
  12. Energy Dissipation Model of Particle Dampers
  13. Vibro-electrostatic separation of binary ABS/PS granular mixtures
  14. Triboelectric Separation of Three-Component Plastic Mixture
  15. Vibro-Electrostatic Separation of Plastic Mixtures (3rd Report, Effect of Inclination on Separation Efficiency in Inclined Electrodes)
  16. Electrostatic Separation of Chopped Waste Electric Cables
  17. Vibratory Separation of Plastic Mixtures Using Triboelectric Charging
  18. Vibratory Separation of Conductor-insulation Mixtures Using Induction Charging (2nd Report, Effect of Corona or Triboelectric Charging on Separation Efficiency)
  19. Analytical study of multi-particle damping
  20. Vibro-Electrostatic Separation of Plastic Mixtures (2nd Report, Plastic Mixtures of Three Kinds of Components)
  21. Vibratory Separation of Conductor-Insulation Mixtures Using Induction Charging
  22. Development of Electrostatic Separator Equipped with Moving Belt Electrode
  23. IMPACT DAMPING WITH GRANULAR MATERIALS IN A HORIZONTALLY VIBRATING SYSTEM
  24. Damping Effect of Particle Impact Dampers Using a Cylindrical Container.
  25. Vibroz-Electrostatic Separation of Plastic Mixtures.
  26. Response of Impact Dampers with Granular Materials in a Vertically Vibrating System.
  27. Self-excited and Forced Oscillations with Solid Friction. 1st Report. Solutions and Stabilities by Averaging Method in Case of Combined Friction-Velocity Characteristics of Linear and Hyperbolic Curves.
  28. Self-excited and Forced Oscillations with Solid Friction. 2nd Report. Occurrence of Limit Cycles and Evaluation of Solutions in Case of Combined Friction-Velocity Characteristics.
  29. Self-excited and Forced Oscillations with Solid Friction. 3rd Report. Piecewise Linear Approximate Solutions in Case of Combined Friction-Velocity Characteristics.
  30. Analysis of Impact Damper with Granular Materials using Discrete Element Method.
  31. On the Occurrence Conditions of Stick-Slip Phenomena in a Hydraulic Driving System. 1st Report. In Case of Maximum Static Friction Equal to Kinetic Friction without Slipping.
  32. On the Occurrence Conditions of Stick-Slip Phenomena in a Hydraulic Driving System. 2nd Report. In Case of Maximum Static Friction Different from Kinetic Friction with out Slipping.
  33. Study on Confectionery Feeder.
  34. Behaviour of granular materials in the field of vibration
  35. Study on Vibratory Conveyance of Granular Materials.
  36. Vibratory Conveyance of Granular Materials Comprising Elliptic Particles.
  37. On the Occurrence Conditions of Stick-Slip Phenomena.
  38. Simulation of Vibratory Conveyance of Granular Materials Using Discrete Element Method.
  39. Study on Vibration Conveyance of Granular Materials.
  40. Oscillation Caused by Solid Friction in a Hydraulic Driving System : In Consideration of Friction-Velocity Characteristics of Hysteresis Curves for Accelerating and Decelerating Phases
  41. Oscillations Caused by Solid Friction in a Hydraulic Driving System. In Consideration of Friction-Velocity Characteristics of Hysteresis Curves for Increasing and Decreasing Velocity Motions.
  42. Oscillations Caused by Solid Friction in a Hydraulic Driving System (In Consideration of Transitional Friction Characteristic Curves for Increasing and Decreasing Velocity Motions).
  43. Oscillations Caused by Solid Friction in a Hydraulic Driving System. In Consideration of Transitional Friction Characteristic Curves for Increasing and Decreasing Velocity Motions.
  44. Oscillations caused by solid friction in a hydraulic driving system 2nd report, In the case of maximum static friction different from kinetic friction without slipping.
  45. Oscillations gaused by solid friction in a hydraulic driving system. (1st report In the case of maximum static friction equal to kinetic friction without slipping)