MAGNETORHEOLOGICAL FLUID SHOCK ABSORBER
A magnetorheological fluid shock absorber that uses a magnetorheological fluid having a viscosity, includes: a tubular cylinder formed from a non-magnetic material, in which the magnetorheological fluid is sealed; a piston formed from a non-magnetic material and disposed in the cylinder to be free to slide at an interval, through which the magnetorheological fluid can pass, relative to an inner periphery of the cylinder; a piston rod to which the piston is connected; and a magnet portion attached to the cylinder in order to apply a magnetic field to an interior of the cylinder, wherein the magnet portion includes a pair of permanent magnets that are respectively formed in an arc shape having an inner peripheral shape that aligns with an outer periphery of the cylinder, magnetized in a circumferential direction, and disposed so as to face each other about a central axis of the cylinder.
1 . A magnetorheological fluid shock absorber that uses a magnetorheological fluid having a viscosity that is varied by an action of a magnetic field, comprising:
a tubular cylinder formed from a non-magnetic material, in which the magnetorheological fluid is sealed;
a piston formed from a non-magnetic material and disposed in the cylinder to be free to slide at an interval, through which the magnetorheological fluid can pass, relative to an inner periphery of the cylinder;
a piston rod to which the piston is connected; and
a magnet portion attached to the cylinder in order to apply a magnetic field to an interior of the cylinder,
wherein the magnet portion comprises a pair of permanent magnets that are respectively formed in an arc shape having an inner peripheral shape that aligns with an outer periphery of the cylinder, magnetized in a circumferential direction, and disposed so as to face each other about a central axis of the cylinder.
2 . The magnetorheological fluid shock absorber as defined in claim 1 , wherein the magnet portion is disposed to correspond to a position of the piston when the piston rod is furthest advanced into the cylinder.
3 . The magnetorheological fluid shock absorber as defined in claim 1 , wherein the pair of permanent magnets are disposed to have opposite magnetic poles about the central axis of the cylinder.
4 . The magnetorheological fluid shock absorber as defined in claim 1 , wherein the pair of permanent magnets are disposed to have symmetrical magnetic poles about the central axis of the cylinder.
5 . The magnetorheological fluid shock absorber as defined in claim 1 , wherein the magnet portion comprises a ring-shaped ring member formed from a non-magnetic material and fitted around the permanent magnets.