WO2011149230A2 - Amortisseur de fluide mr et son procédé d'assemblage - Google Patents

Amortisseur de fluide mr et son procédé d'assemblage Download PDF

Info

Publication number
WO2011149230A2
WO2011149230A2 PCT/KR2011/003760 KR2011003760W WO2011149230A2 WO 2011149230 A2 WO2011149230 A2 WO 2011149230A2 KR 2011003760 W KR2011003760 W KR 2011003760W WO 2011149230 A2 WO2011149230 A2 WO 2011149230A2
Authority
WO
WIPO (PCT)
Prior art keywords
rod
fluid
coil
ring
yoke
Prior art date
Application number
PCT/KR2011/003760
Other languages
English (en)
Korean (ko)
Other versions
WO2011149230A3 (fr
Inventor
선철곤
Original Assignee
주식회사 썬 프레인 코
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Priority claimed from KR1020100050301A external-priority patent/KR20100065260A/ko
Priority claimed from KR1020100050371A external-priority patent/KR101192158B1/ko
Priority claimed from KR1020100050395A external-priority patent/KR20100065265A/ko
Priority claimed from KR1020100050292A external-priority patent/KR101192156B1/ko
Application filed by 주식회사 썬 프레인 코 filed Critical 주식회사 썬 프레인 코
Publication of WO2011149230A2 publication Critical patent/WO2011149230A2/fr
Publication of WO2011149230A3 publication Critical patent/WO2011149230A3/fr

Links

Images

Classifications

    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06FLAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
    • D06F37/00Details specific to washing machines covered by groups D06F21/00 - D06F25/00
    • D06F37/20Mountings, e.g. resilient mountings, for the rotary receptacle, motor, tub or casing; Preventing or damping vibrations
    • D06F37/22Mountings, e.g. resilient mountings, for the rotary receptacle, motor, tub or casing; Preventing or damping vibrations in machines with a receptacle rotating or oscillating about a horizontal axis
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16FSPRINGS; SHOCK-ABSORBERS; MEANS FOR DAMPING VIBRATION
    • F16F7/00Vibration-dampers; Shock-absorbers
    • F16F7/08Vibration-dampers; Shock-absorbers with friction surfaces rectilinearly movable along each other
    • F16F7/09Vibration-dampers; Shock-absorbers with friction surfaces rectilinearly movable along each other in dampers of the cylinder-and-piston type
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16FSPRINGS; SHOCK-ABSORBERS; MEANS FOR DAMPING VIBRATION
    • F16F9/00Springs, vibration-dampers, shock-absorbers, or similarly-constructed movement-dampers using a fluid or the equivalent as damping medium
    • F16F9/32Details
    • F16F9/53Means for adjusting damping characteristics by varying fluid viscosity, e.g. electromagnetically
    • F16F9/535Magnetorheological [MR] fluid dampers
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16FSPRINGS; SHOCK-ABSORBERS; MEANS FOR DAMPING VIBRATION
    • F16F2226/00Manufacturing; Treatments
    • F16F2226/04Assembly or fixing methods; methods to form or fashion parts

Definitions

  • the present invention relates to a jig-type MR fluid damper, to improve the structure of the damper connected to the tub to absorb the vibration of the washing machine tub generated during operation of the washing machine, it is possible to adjust the damping force according to the situation, the resonance of the washing machine And a jig-type MR fluid damper for reducing noise.
  • the present invention relates to a tube-type MR fluid damper, to improve the structure of the damper connected to the tub to absorb the vibration of the washing machine tub generated during operation of the washing machine, it is possible to adjust the damping force according to the situation,
  • the present invention relates to a tube-type MR fluid damper that reduces the resonance and noise of a washing machine.
  • the present invention relates to a method for assembling a jig-type MR fluid damper, to improve the structure of the damper connected to the tub to absorb the vibration of the washing machine tub generated during operation of the washing machine, it is possible to adjust the damping force according to the situation
  • the present invention relates to a method for assembling a jig-type MR fluid damper to reduce resonance and noise of a washing machine.
  • the present invention relates to a method for assembling an inner tube type MR fluid damper, and improves the structure of the damper connected to the tub to absorb the vibration of the washing machine tub generated during operation of the washing machine, the adjustment of the damping force according to the situation
  • the present invention relates to a method for assembling an inner tube type MR fluid damper capable of reducing resonance and noise of a washing machine.
  • a damper is a device that weakens shock or vibration by using an elastic body such as a spring or rubber, and is applied to various technical fields such as a shock absorber, a braking device, and a washing machine of an automobile.
  • the damper is applied to a conventional drum washing machine, which is installed between a drum support tub and a case bottom provided to support the drum in which the damper rotates in a three-point or two-point manner to absorb vibration and shock during operation of the drum.
  • a conventional drum washing machine which is installed between a drum support tub and a case bottom provided to support the drum in which the damper rotates in a three-point or two-point manner to absorb vibration and shock during operation of the drum.
  • the conventional damper 200 reciprocates a friction pad (not shown) in which the rod 220 elastically supported by the spring 232 is fixed to the inside of the cylinder 210. Or frictionally configured to attenuate the shock or vibration applied to the rod) or hydraulically so that an impact-relaxing action is performed on the rod 220 by damping means such as oil (not shown) injected into the cylinder 210. do.
  • the spring 232 is a structure in which both ends of the spring sheet 231 and the spring washer 233 are supported.
  • the conventional hydraulic damper has a problem that the operation noise occurs due to friction with the rod along with environmental pollution using oil as a damping means, the friction damper also causes the rod to generate operating noise on the friction pad side of the cylinder .
  • the hydraulic damper and the friction damper had a problem in that it is impossible to control the damping force.
  • MR fluid magneto-Rheological is the suspension of micron-sized ferromagnetic particles in a carrier fluid. Flow control with properties similar to automotive lubricants. However, by applying a magnetic field, the fluidity is immediately changed to a state like peanut butter.
  • Patent Publication No. 10-2008-0011952 describes Continuous Damping Control (hereinafter simply referred to as 'CDC') using a highly functional magnetic fluid that responds more quickly to vibrations transmitted from a road surface used in a conventional vehicle.
  • the damper is a synthetic oil containing floating magnetized particles, and the damper using the MR fluid uses a phenomenon in which the apparent viscosity increases when the MR fluid passes through the magnetic field. .
  • the magnetized particles dispersed in the MR fluid are arranged in a chain structure under the influence of the magnetic field, and thus the damping increases as the yield shear stress of the fluid increases. .
  • the damper using the MR fluid can freely control the apparent viscosity and attenuation of the fluid by arbitrarily changing the strength of the magnetic field. Therefore, such a CDC damper using MR fluid can be preferably used in an electronically controlled suspension system.
  • patent application No. 10-2009-76100 which is a prior application of my own, describes a technique for efficiently adjusting the damping force of a damper installed in a washing machine using MR fluid.
  • a general washing machine having a conventional MAL damper includes a case 1 ′ having an accommodating space therein, and is disposed along the front and rear directions inside the case 1 ′ to wash water therein.
  • a tub 2 ' provided to receive the drum, a drum 3' disposed inside the tub 2 ', and a damper 100 for damping vibration and impact on the tub 2'. It is composed.
  • the case (1 ') has a rectangular parallelepiped shape formed with an opening to allow the laundry to enter and exit the front, the door (D) is provided to open and close the opening at one side edge.
  • the drum 3 ' is coupled to be rotatable about a rotation axis formed along the front and rear directions of the case 1', and has a radius to move the laundry upward so that the laundry falls to the bottom.
  • a plurality of lifts are provided which protrude along the direction and extend along the axial direction.
  • the upper side of the tub (2 ') is provided with a detergent supply unit (S) to supply detergent, the water supply pipe (P) having a water supply valve to supply the wash water to one side is connected.
  • a drum driving motor (M) is installed in the rear region of the tub (2 ') so that the drum (3') can be driven to rotate, and a drain flow path (F) for draining the bottom of the tub (2 ').
  • a drain pump DP a drain pump
  • the upper region of the tub 2 ' is provided with a plurality of support springs (not shown), one end of which is fixed to the case 1' so as to support the tub 2 ', and a tub 2' below the tub 2 '.
  • Damper 100 is provided to reduce the vibration or load along the vertical direction of the).
  • the damper 100 has one end fixed to the tub 2 ′ and one side penetrated into the other end of the cylinder 110 to be reciprocated. Installed between the other end of the cylinder 110 and the other end of the rod 120 so that the other end is fixed to the inner surface of the case (1 ') and the other side of the rod (120) The elastic means 130 and a plurality of solenoid coils 140 to attenuate the load or vibration by a variety of magnetic forces combined.
  • the cylinder 110 is connected to the lower side of the tub 2 'by the cap bolt 111, and the rod 120 is connected to the bottom of the inner surface of the case 1' by the end bolt 121. Fixed installation.
  • one end of the rod 120 is mounted by riveting the piston (122) in contact with the inner circumferential surface of the cylinder 110 to improve the operability through the O-ring (122a), a number of one side Inner guides 123 for supporting and guiding the points with the bearings B are arranged to be spaced apart at regular intervals.
  • the piston 122 has a through hole (not shown) in the direction of movement thereof, and transmits the vibration or load acting on the rod 120 while passing air pressure existing inside the cylinder 110 therein and outward. Can be attenuated.
  • a protrusion 124 is provided in the middle of the rod 120 to selectively contact one side surface of the spring seat 131 to be described later to limit the movement of the rod 120 together with the piston 122. Will be.
  • the elastic means 130 is a spring sheet 131, the other end of the cylinder 110 is press-fitted, one side is seated on the spring sheet 131 so as to be equal to the other end of the cylinder 110 elastically compressible coil A spring 132 and a spring washer 133 which is spaced apart from the spring sheet 131 by a predetermined distance to support the other side of the coil spring 132 and support the other side of the rod 120.
  • a non-woven fabric (not shown) is interposed between the spring sheet 131 and the other end of the cylinder 110 to block noise that may occur during vibration, and the other end of the cylinder 110. It is press-fit to the spring sheet 131 in a state of being installed on the circumferential surface.
  • the plurality of solenoid coil 140 is interposed on the outer circumferential surface of the cylinder 110 corresponding to the rod 120, but the terminal for selectively introducing an external power source according to the load or vibration applied to the rod 120
  • the magnetic force is generated by the T and the terminal socket TS, respectively, and the surface thereof is installed as surrounded by the insulator 141 so as to prevent loss of the magnetic force and short circuit.
  • Reference numeral '125' which is not described above, is a rod guide, and '126' is installed between the rod guide 125 and the inner guide 123, and is provided with a pocket for supplying hydraulic oil of the rod 120. It is an oil seal.
  • a sensor that detects vibration or load applied to the damper 100 of the present invention detects this, and according to the detection result, a control signal of a controller not shown. Power supply to the plurality of solenoid coil 140 is controlled by the.
  • the controller preferentially calculates a resistance value capable of attenuating vibration or load applied to the rod 120 in real time through an internal computing device.
  • the control unit selectively controls the power supply to the plurality of solenoid coils 140 according to the operation value, thereby controlling the power supply to the single solenoid coil 140 or the plurality of solenoid coils 140.
  • the damper 100 through the damping force by the respective solenoid coils 140.
  • the damping force can be further increased.
  • the solenoid coil 140 when the solenoid coil 140 having 0.15A and 2.0A is combined, the solenoid coil 140 may have a damping force of 2.15A, and the combination of three solenoid coils 140 may have a maximum damping force of 2.65A. Supply may be made.
  • the damper 100 is primarily damped by the coil spring 132, and is damped by the combined damping force by the plurality of solenoid coils 140 and the residual air pressure inside the cylinder 110. Vibration and shock are reduced during operation.
  • a washing machine having a magnetic damper generates different damping forces according to a combination of magnetic forces, thereby preventing environmental pollution and operation noise caused by a conventional hydraulic or friction damper, and preventing vibration and shock. Effective transmission attenuation can be achieved.
  • the conventional technologies are dampers because the coil of the ML fluid damper and the coil on and off by electricity and the MR fluid which becomes magnetic by the coil are not embedded concentrically about the axis but spaced apart from each other in the axial direction.
  • the assembly was inconvenient, the assembly time is long, the injection of MR fluid is complex and inconvenient, and the effect of reducing the resonance and noise of the device equipped with the damper by adjusting the damping force in accordance with the situation is inferior.
  • a coil that is turned on and off by electricity is installed between the out cylinder 1 of the M fluid damper and the axial radius direction of the rod, and the M fluid that becomes magnetic by the coil is the shaft of the coil and the rod.
  • the built-in radial direction facilitates the assembly of the damper, saves the assembly time compared to the conventional method, facilitates the injection of MR fluids, and enables the adjustment of the damping force according to the situation. And to provide a jig-type MR fluid damper to reduce the noise.
  • the magnetic fluid is magnetic by the coil is the shaft of the coil and the rod.
  • the present invention can effectively inject the MR fluid into the damper, and also by injecting the MD fluid first into the rod integrated type of the damper, and then assembled in the cylinder, and the leader wire of the coil through the hole of the yoke and the out cylinder, It is to provide a method of assembling a jig-type MR fluid damper that can be easily and simply assembled.
  • the present invention can effectively inject the MR fluid into the damper, and also first injects the MD fluid into the rod integral type of the damper and then assembled into the inner tube and the out cylinder, and the leader wire of the coil to the yoke and the inner tube and the out cylinder By deviating through the hole of the, it is to provide a method of assembling the inner tube type MR fluid damper that can be assembled easily and simply the MD fluid damper.
  • the present invention is a rod 12 is installed in the out cylinder (1) of the jig-type MR fluid damper by varying the strength of the magnetic field to adjust the damping force, the out cylinder (1) and the rod (12) Coil 8 is turned on and off between the axial radius direction of the (), and the magnetic fluid magnetized by the coil 8 is between the axial radius direction of the coil (8) and the rod (12) It is characterized in that it is built in.
  • the inner cylinder (2) is installed in the out cylinder (1) of the MR fluid damper by varying the strength of the magnetic field to adjust the damping force
  • the rod (12) is installed in the inner cylinder (2)
  • the present invention relates to a method of assembling a jig-type MR fluid damper, the method of assembling a jig-type MR fluid damper, comprising: a step of assembling the rod 12 and each of the rod parts of the MR fluid damper; Injecting an MR fluid through an injection hole; After injecting the MR fluid and the remaining load parts by assembling the rod integral form and fixed with a jig and nut 19 to finish the AL fluid injection finishing step; 4 steps to securely lock the inlet with a screw bolt to prevent the leakage of the MR fluid; Includes; five steps of final assembly of the rod-integrated type to the cylinder.
  • the present invention relates to a method of assembling an inner tube type MR fluid damper, the method of assembling an inner tube type MR fluid damper, comprising the steps of: assembling the rod 12 and each rod part of the MR fluid damper; Injecting an MR fluid through an injection hole; After injecting the MR fluid and the remaining load parts by assembling the rod integral form and fixed with a jig and nut 19 to finish the AL fluid injection finishing step; 4 steps to securely lock the inlet with a screw bolt to prevent the leakage of the MR fluid; After making the inner tube integrated type in which the rod integrated type is inserted into the inner tube (2), loosen the nut (19) to remove the jig, insert the inner tube integrated type into the out cylinder (1), and then use the conventional rolling operation. It characterized in that it comprises a; five steps to solidify the binding between the parts.
  • a coil that is turned on and off by electricity is installed between the out cylinder 1 of the MR fluid damper and the axial radius direction of the rod, and the MR fluid, which becomes magnetic by the coil, has the radial radius of the coil and the rod.
  • the magnetic fluid is magnetic by the coil is the shaft of the coil and the rod.
  • the present invention can effectively inject the MR fluid into the damper, and also by injecting the MD fluid first into the rod integrated type of the damper, and then assembled in the cylinder, and the leader wire of the coil through the hole of the yoke and the out cylinder, There is a remarkable effect that the jig-type MR fluid damper can be assembled easily and simply.
  • the present invention can effectively inject the MR fluid into the damper, and also first injects the MD fluid into the rod integral type of the damper and then assembled into the inner tube and the out cylinder, and the leader wire of the coil to the yoke and the inner tube and the out cylinder By disengaging through the hole of, there is a remarkable effect that can easily and simply assemble the MD fluid damper.
  • FIG. 1 is a perspective view showing a washing machine damper using a conventional elastic body
  • FIG. 2 is a cross-sectional view of a typical washing machine in which a damper is installed
  • FIG. 3 is an enlarged cross-sectional view of the damper of FIG.
  • Figure 4 is an exploded view of the jig-type MR fluid damper of the present invention
  • Figure 6 is a detailed view of the caulking (caulking) of the jig-type MR fluid damper of the present invention
  • FIG. 8 is a flow diagram of the MR fluid injection of the jig-type MR fluid damper of the present invention.
  • the present invention relates to a jig-type MR fluid damper for changing the strength of the magnetic field to adjust the damping force
  • the rod 12 is installed in the out cylinder (1) of the MR fluid damper, the out cylinder (1) and the rod
  • a coil 8 that is turned on and off by electricity
  • the MR fluid which becomes magnetic by the coil 8 is the shaft radius of the coil 8 and the rod 12
  • It is a jig-type MR fluid damper, characterized in that it is built between the directions.
  • the fourth yoke 3, the bush 4, the oil seal 5, the third yoke 6, the o-ring 7, the coil 8, the o-ring 7, and the second yoke (9), O-ring (7), coil (8), O-ring (7), first yoke (10), oil seal (5), bush (4), friction ring (11), case (13) are sequentially installed, one end of the jig supports the case and the other end of the jig is fixed by a nut.
  • the jig (2) is removed after the rolling operation of the conventional to compress the parts to eliminate the gap between the parts and bind to each other, the coil spring 14, the spring seat 15 and the end bolt 16 is installed on the rod do.
  • a hole is formed in the out cylinder 1, and the lead wire 18 of the coil 8 passes through the grooves of the third and fourth yokes 6, 3, and then the out. It is drawn out through the hole of the cylinder (1).
  • FIG. 1 is a perspective view showing a washing machine damper using a conventional elastic body
  • Figure 2 is a cross-sectional view of a conventional washing machine is installed damper
  • Figure 3 is an enlarged cross-sectional view of the damper of Figure 2
  • Figure 4 is an exploded view of the jig-type MR fluid damper of the present invention
  • 5 is an assembly view of the jig-type MR fluid damper of the present invention.
  • the present invention relates to a jig-type MR fluid damper for changing the strength of the magnetic field to adjust the damping force.
  • a rod is installed in the out cylinder 1 of the MR fluid damper.
  • the out cylinder has a hollow cylindrical shape to accommodate the rod, and is fixed to the lower side of the tub by bolts.
  • a coil that is turned on and off by electricity is installed between the out cylinder 1 and the axial radius direction of the rod, and an MR fluid, which becomes magnetic by the coil, is embedded between the axial radius direction of the coil and the rod.
  • the fourth yoke (3), bush (4), oil seal (5), third yoke (6), O-ring (7), coil (8), O-ring (7) 2 yoke, O-ring 7, coil 8, O-ring 7, the first yoke 10, friction ring 11, the case 15 are sequentially installed in the axial direction, one end of the jig is the case The other end of the jig is fixed by the nut (19).
  • the jig serves to keep the parts of the rod assembly in close contact with each other in the axial horizontal direction so that the MR fluid does not leak out.
  • the oil seal is positioned between the out cylinder 1 and the rod, and is provided with a pocket for supplying hydraulic oil to the circumferential surface of the rod.
  • the friction ring serves to complement the damping force of the MR fluid. When no electricity is applied, the friction ring drives the damping force, and when energizing, the friction ring and the MR fluid combine to adjust the damping force. If necessary, the friction ring is removed, and the damping force can be realized using only the ML fluid.
  • the case is formed of a step diameter consisting of a large diameter and a small diameter like a reducer connecting a large diameter and a small diameter at a pipe joint, and one end of the jig is coupled to the rod by applying a horizontal force in close contact with the small diameter of the case.
  • Each part is in close contact with each other in the axial horizontal direction so that the MR fluid does not leak out.
  • the jig (2) is removed after the rolling operation of the conventional to compress the parts to eliminate the gap between the parts and bind to each other, the coil spring 14, the spring seat 15 and the end bolt 16 are sequentially on the rod Is installed.
  • the yoke, the o-ring 7, the coil 8, the o-ring 7, the first yoke 10, the friction ring 11, and the case 15 are sequentially tightly coupled so that the jig is no longer needed.
  • the coil spring acts as an auxiliary damping together with the MR fluid, and if necessary, the spring is removed and the damping force can be realized using only the MD fluid.
  • a coil is turned on and off by electricity between the out cylinder 1 of the MR fluid damper and the axial radius direction of the rod, and the MR fluid, which becomes magnetic by the coil, is located between the axial radius direction of the coil and the rod.
  • the present invention relates to an inner tube type MR fluid damper that modulates a damping force by varying the strength of a magnetic field.
  • An inner cylinder inner tube, 2) is installed in an out cylinder 1 of the MR fluid damper, and the inner cylinder ( 2)
  • the inner cylinder 2
  • a coil is turned on and off by electricity, the magnetic fluid is magnetic by the coil is the coil It is characterized in that it is embedded between the axial radius direction of the rod.
  • the coil spring 14, the spring seat 15 and the end bolt 16 are sequentially installed in the rod 12 portion exposed to the outside in the axial direction of the inner cylinder (2).
  • a hole is formed in the out cylinder 1, and the lead wire 18 of the coil 8 passes through the grooves of the third and fourth yokes 6, 3, and then the out. It is drawn out through the hole of the cylinder 1.
  • FIG. 1 is a perspective view showing a washing machine damper using a conventional elastic body
  • Figure 2 is a cross-sectional view of a general washing machine is installed damper
  • Figure 3 is an enlarged cross-sectional view of the damper of Figure 2
  • Figure 9 is an exploded view of the tube-type MR fluid damper of the present invention
  • 10 is an assembly view of the tube-type MR fluid damper of the present invention.
  • the present invention relates to a MR fluid damper for changing the strength of the magnetic field to adjust the damping force.
  • the inner cylinder 2 is installed in the out cylinder 1 of the MR fluid damper.
  • the out cylinder has a hollow cylindrical shape to accommodate the inner cylinder and the rod, and is fixed to the lower side of the tub by bolts.
  • a rod 12 is installed in the inner cylinder 2, and a coil that is turned on and off by electricity is installed between the inner cylinder 2 and the axial radius direction of the rod, and the magnet is exhibited by the coil.
  • MR fluid is embedded between the coil and the rod in the axial radius direction.
  • the inner cylinder serves to keep the parts of the rod assembly in close contact with each other in the axial horizontal direction so that the MR fluid does not leak out.
  • the fourth yoke (3), bush (4), oil seal (5), third yoke (6), O-ring (7), coil (8), O-ring (7) 2 yoke (9), o-ring (7), coil (8), o-ring (7), first yoke (10), bush (4), oil seal (5), friction ring (11), case (15) Are installed sequentially in the direction.
  • the oil seal is located between the inner cylinder 2 and the rod, and is provided with a pocket for supplying hydraulic oil to the circumferential surface of the rod.
  • the friction ring serves to complement the damping force of the MR fluid. When no electricity is applied, the friction ring drives the damping force, and when energizing, the friction ring and the MR fluid combine to adjust the damping force. If necessary, the friction ring is removed, and the damping force can be realized using only the ML fluid.
  • the case is formed step by step consisting of large diameter and small diameter.
  • the small diameter side of the case is exposed to the outside of the inner cylinder, and similarly, the coil spring 14 and the spring seat 15 are located on the rod 12 portion exposed to the outside in the axial direction of the inner cylinder 2 without the inner cylinder. And end bolts 16 are sequentially installed.
  • the coil spring acts as an auxiliary damping together with the MR fluid, and if necessary, the spring is removed and the damping force can be realized using only the MD fluid.
  • the present invention relates to a method of assembling a jig-type MR fluid damper, the method of assembling a jig-type MR fluid damper, comprising: a step of assembling the rod 12 and each of the rod parts of the MR fluid damper; Injecting an MR fluid through an injection hole; After injecting the MR fluid and the remaining load parts by assembling the rod integral form and fixed with a jig and nut 19 to finish the AL fluid injection finishing step; 4 steps to securely lock the inlet with a screw bolt to prevent the leakage of the MR fluid; It is characterized in that it comprises a; five steps of the final assembly of the rod integral type in the cylinder.
  • each of the rod parts of the first step is the fourth yoke (3), bush (4), oil seal (5), third yoke (6), O-ring (7), coil (8), O-ring (7), 2 yoke, O-ring 7, coil 8, O-ring 7, the first yoke 10 is characterized in that the installation in the axial direction sequentially.
  • the remaining three-piece rod-integrated parts are characterized in that the oil seal 5, the bush 4, the friction ring 11 and the case 13 are sequentially installed in the axial direction.
  • the fifth step which is the final assembly step, passes the leader wire of the coil 8 through the grooves of the third and fourth yokes 6 and 3, and then passes through the hole of the out cylinder 1. It characterized in that it further comprises a method for leaving through.
  • the spring is inserted into the rod, characterized in that it further comprises a method for fastening the spring sheet so that the spring is not separated.
  • FIG. 1 is a perspective view showing a washing machine damper using a conventional elastic body
  • Figure 2 is a cross-sectional view of a conventional washing machine is installed damper
  • Figure 3 is an enlarged cross-sectional view of the damper of Figure 2
  • Figure 4 is an exploded view of the jig type M fluid damper of the present invention
  • Figure 5 is an assembly view of the jig-type MR fluid damper of the present invention
  • Figure 6 is a detailed view of the caulking (caulking) of the jig-type MR fluid damper of the present invention
  • Figure 7 is an injection opening of the jig-type MR fluid damper of the present invention
  • Figure 8 is a flow diagram of MR fluid injection of the jig-type MR fluid damper of the present invention.
  • the jig-type MR fluid injection method first assembles the rod and each component and then sets the rod direction to be perpendicular.
  • Each part has a fourth yoke (3), bush (4), oil seal (5), third yoke (6), O-ring (7), coil (8), O-ring (7), second yoke, O-ring (7) ,
  • the coil 8, the O-ring 7, and the first yoke 10 are sequentially installed in the axial direction. Thereafter, a syringe containing an MR fluid is inserted through an injection hole in which a thread is formed. And while injecting the MR fluid through the syringe, it is injected until the visual confirmation that the MR fluid leaks through the first yoke (10).
  • the oil seal, the friction ring and the case are sequentially covered to form a rod integrated type.
  • the sealing of the MR fluid is fixed to the rod body with a jig and a nut to finish the AL fluid injection.
  • the case is formed of a step diameter consisting of a large diameter and a small diameter like a reducer connecting a large diameter and a small diameter at a pipe joint, and one end of the jig is coupled to the rod by applying a horizontal force in close contact with the small diameter of the case. Each part is in close contact with each other in the axial horizontal direction so that the MR fluid does not leak out.
  • the leader wire of the coil passes through the ' ⁇ ' shaped grooves of the third and fourth yokes (6) (3), and then is separated through the hole of the out cylinder.
  • the present invention can effectively inject the MR fluid into the damper, and also by injecting the MD fluid into the rod integrated body of the damper first and then assembling it into the out cylinder, by separating the leader wire of the coil through the hole of the yoke and the out cylinder, It is easy and simple to assemble the MD fluid damper.
  • a rod is installed in the out cylinder 1 of the MR fluid damper.
  • the out cylinder has a hollow cylindrical shape to accommodate the rod, and is filled with oil therein, and is fixed to the lower side of the tub by bolts.
  • a coil that is turned on and off by electricity is installed between the out cylinder 1 and the axial radius direction of the rod, and an MR fluid, which becomes magnetic by the coil, is embedded between the axial radius direction of the coil and the rod.
  • MR fluid has a third yoke (6), an O-ring (7), a coil (8), an O-ring (7), a second yoke, an O-ring (7), a coil (8), and an O-ring in the axial radius direction.
  • (7) embedded between the first yoke 10 and the rod 12, in the axial direction the third yoke (6), O-ring (7), coil (8), O-ring (7), second yoke, O-ring (7), coil (8), O-ring (7), the first yoke 10 is to be embedded in the site, the two oil seals (5) respectively installed on both sides in the axial outflow Is blocked.
  • the sealed space in which the MR fluid is stored is the third yoke (6), O-ring (7), coil (8), O-ring (7), second yoke, O-ring (7), coil (8), O-ring (7) ,
  • the space is formed between the first yoke 10 and the rod 12 and the two oil seals (5).
  • two coils are installed as described above, and the number may be one or several according to the design of the damping force.
  • the oil seal seals between the out cylinder 1 and the rod, and is provided with a pocket for supplying hydraulic oil to the circumferential surface of the rod.
  • the friction ring serves to complement the damping force of the MR fluid. When no electricity is applied, the friction ring drives the damping force, and when energizing, the friction ring and the MR fluid combine to adjust the damping force. If necessary, the friction ring is removed, and the damping force can be realized using only the ML fluid.
  • the case is formed of a step diameter consisting of a large diameter and a small diameter like a reducer connecting a large diameter and a small diameter at a pipe joint, and one end of the jig is coupled to the rod by applying a horizontal force in close contact with the small diameter of the case.
  • Each part is in close contact with each other in the axial horizontal direction so that the MR fluid does not leak out.
  • the jig (2) is removed after the rolling operation of the tube to compress the parts to eliminate the gap between the parts and bind to each other, the coil spring 14, the spring seat 15 and the end bolt 16 is installed on the rod do.
  • Fourth yoke (3), bush (4), oil seal (5), third yoke (6), o-ring (7), coil (8), o-ring (7), second through rolling rolling work Yoke, O-ring (7), coil (8), O-ring (7), the first yoke (10), oil seal (5), bush (4), friction ring (11), case (13) is closely coupled in sequence No more jig needed.
  • the nut is removed to remove the jig, and the number of ends of the rod with the jig removed from the female thread formed at one end of the end bolt.
  • the coil spring serves as an auxiliary damping together with the MR fluid, and if necessary, the coil spring can be removed and a damping force can be realized using only the MR fluid.
  • a coil is turned on and off by electricity between the out cylinder 1 of the MR fluid damper and the axial radius direction of the rod, and the MR fluid, which becomes magnetic by the coil, is located between the axial radius direction of the coil and the rod.
  • the present invention relates to a method of assembling an inner tube type MR fluid damper, the method of assembling an inner tube type MR fluid damper, comprising the steps of: assembling the rod 12 and each rod part of the MR fluid damper; Injecting an MR fluid through an injection hole; Injecting the ML fluid and assembling the remaining rod parts to form a rod-integrated type and fixing them with a jig and a nut to finish the ML fluid injection; 4 steps to securely lock the inlet with a screw bolt to prevent the leakage of the MR fluid; After making the inner tube integrated type in which the rod integrated type is inserted into the inner tube (2), remove the jig by unscrewing the nut, insert the inner tube integrated type into the out cylinder (1), and then bond between the parts through the usual rolling operation. 5 steps to solidify; characterized in that it comprises.
  • each of the rod parts of the first step is the fourth yoke (3), bush (4), oil seal (5), third yoke (6), O-ring (7), coil (8), O-ring (7), 2 yoke, O-ring 7, coil 8, O-ring 7, the first yoke 10 is characterized in that the installation in the axial direction sequentially.
  • the remaining three-piece rod-integrated parts are characterized in that the oil chamber 5, the bush 4, the friction ring 11 and the case 13 are sequentially installed in the axial direction.
  • the fifth step which is a final assembly step, passes the leader wire of the coil 8 through the ' ⁇ ' shaped grooves of the third and fourth yokes 6 and 3, and then the inner tube 2 and the out cylinder. It is characterized in that it further comprises a method of detaching through the hole of (1).
  • the rod integral type is inserted into the inner tube 2 to make the inner tube integral type, and then the nut is removed to remove the jig, and the inner tube integrated type is placed inside the out cylinder 1, and then the conventional rolling operation is performed.
  • the end bolt 16 is screwed to one end of the rod 12, the jig is removed, after the caulking operation, the coil spring 14 is inserted into the rod 12, It characterized in that it further comprises a method for fastening the spring sheet 15 so that the coil spring 14 is not separated.
  • FIG. 9 is an exploded view of the inner tube type M fluid damper of the present invention
  • Figure 10 is an assembly view of the inner tube type M fluid damper of the present invention.
  • Inner tube type AL fluid injection method first assembles the rod and each part, and then sets the rod direction to be perpendicular.
  • Each part has a fourth yoke (3), bush (4), oil seal (5), third yoke (6), O-ring (7), coil (8), O-ring (7), second yoke, O-ring (7) ,
  • the coil 8, the O-ring 7, and the first yoke 10 are sequentially installed in the axial direction. Thereafter, a syringe containing an MR fluid is inserted through an injection hole in which a thread is formed. And while injecting the MR fluid through the syringe, it is injected until the visual confirmation that the MR fluid leaks through the first yoke (10).
  • the case is formed of a step diameter consisting of a large diameter and a small diameter like a reducer connecting a large diameter and a small diameter at a pipe joint, and one end of the jig is coupled to the rod by applying a horizontal force in close contact with the small diameter of the case. Each part is in close contact with each other in the axial horizontal direction so that the MR fluid does not leak out. Finally, screw the bolts securely to prevent the leakage of MR fluid through the inlet.
  • the rod integrated type is finally assembled to the inner tube and the out cylinder.
  • the leader wire of the coil passes through the ' ⁇ ' shaped grooves of the third and fourth yokes (6) (3), and then is separated through the holes of the inner tube and the out cylinder.
  • the present invention can effectively inject the MR fluid into the damper, and also injects the MD fluid into the rod body of the damper first and then assembles it into the inner tube and the out cylinder, and the leader wire of the coil of the yoke and the inner tube and the out cylinder. By disengaging through the hole, it is possible to easily and easily assemble the MR fluid damper.
  • An inner tube 2 is installed in the out cylinder 1 of the MR fluid damper.
  • the out cylinder has a hollow cylinder shape to accommodate the inner tube and the rod, and is filled with oil and fixed to the lower side of the tub by bolts.
  • a rod 12 is installed in the inner tube 2, and a coil is turned on and off by electricity between the inner tube 2 and the axial radius direction of the rod.
  • MR fluid is embedded between the coil and the rod in the axial radius direction.
  • MR fluid has a third yoke (6), an O-ring (7), a coil (8), an O-ring (7), a second yoke, an O-ring (7), a coil (8), and an O-ring in the axial radius direction.
  • (7) embedded between the first yoke 10 and the rod 12, in the axial direction the third yoke (6), O-ring (7), coil (8), O-ring (7), second yoke, O-ring (7), coil (8), O-ring (7), the first yoke 10 is to be embedded in the site, the two oil seals (5) respectively installed on both sides in the axial outflow Is blocked.
  • the sealed space in which the MR fluid is stored is the third yoke (6), O-ring (7), coil (8), O-ring (7), second yoke, O-ring (7), coil (8), O-ring (7) ,
  • the space is formed between the first yoke 10 and the rod 12 and the two oil seals (5).
  • two coils are installed as described above, and the number may be one or several according to the design of the damping force.
  • the oil seal seals between the inner tube 2 and the rod, and is provided with a pocket for supplying hydraulic oil to the circumferential surface of the rod.
  • the friction ring serves to complement the damping force of the MR fluid. When no electricity is applied, the friction ring drives the damping force, and when energizing, the friction ring and the MR fluid combine to adjust the damping force. If necessary, the friction ring is removed, and the damping force can be realized using only the ML fluid.
  • the case is composed of a large diameter and a small diameter, and is formed stepwise, and one end of the jig is coupled to the rod by applying a horizontal force in close contact with the small diameter of the case.
  • Each part is in close contact with each other in the axial horizontal direction so that the MR fluid does not leak out.
  • holes are formed in the inner tube 2 and the out cylinder 1, respectively, so that the lead wires 18 of the coils 8 have a ' ⁇ ' shape of the third and fourth yokes 6 and 3. After passing through the groove, it is drawn out through the holes of the inner tube (2) and the out cylinder (1).
  • the lead wire 18 of the coil 8 is drawn out through the hole of the inner tube when the rod integrated type is inserted into the inner tube to make the inner tube integral, and after the jig is removed, the inner tube integrated type is put out of the out cylinder. It is even drawn out through the hole of the cylinder.
  • the small diameter side of the case of the present invention is exposed to the outside of the inner tube and the coil spring 14, the spring sheet ( 15) and end bolts 16 are sequentially installed.
  • the rod integrated type is inserted into the inner tube, and the nut is removed to remove the jig.
  • the inner tube grabs the parts instead of the jig, so you no longer need the jig.
  • the inner tube type with the rod integrated type is inserted into the out cylinder.
  • the caulking operation is performed to squeeze the coupling part to secure the bond, and then the spring is inserted into the rod outer circumference.
  • the spring seat is to be fastened so that it does not deviate.
  • the coil spring serves as an auxiliary damping together with the MR fluid, and if necessary, the coil spring can be removed and the damping force can be realized using only the MR fluid.

Landscapes

  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Textile Engineering (AREA)
  • Mechanical Engineering (AREA)
  • Physics & Mathematics (AREA)
  • Electromagnetism (AREA)
  • Fluid-Damping Devices (AREA)
  • Vibration Prevention Devices (AREA)

Abstract

L'invention concerne un amortisseur de fluide MR comprenant une tige (12) disposée dans un cylindre extérieur (1) qui commande la puissance d'amortissement par modification de la force du champ magnétique. Une bobine (8) pouvant être activée/désactivée sous l'effet de l'électricité est montée entre les directions axiale/radiale du cylindre extérieur (1) et la tige (12), et un fluide MR qui devient magnétique sous l'action de la bobine (8) est contenu entre les directions axiale-radiale de la bobine (8) et la tige (12). En direction axiale sont disposés successivement : un quatrième collier (3), une douille (4), un joint étanche à l'huile (5), un troisième collier (6), un joint torique (7), une bobine (8), un joint torique (7), un deuxième collier (9), un joint torique (7), une bobine (8), un joint torique (7), un premier collier (10), un joint étanche à l'huile (5), une douille (4), une bague de friction (11) et un boîtier (13), de sorte que l'amortisseur de fluide MR selon l'invention puisse être assemblé facilement et plus rapidement que les amortisseurs classiques, que le fluide MR puisse être introduit aisément, que la puissance d'amortissement puisse être mieux ajustée en fonction des différentes situations, et de manière à permettre une réduction du bruit et du phénomène de résonance d'un dispositif équipé de cet amortisseur.
PCT/KR2011/003760 2010-05-28 2011-05-23 Amortisseur de fluide mr et son procédé d'assemblage WO2011149230A2 (fr)

Applications Claiming Priority (12)

Application Number Priority Date Filing Date Title
KR10-2010-0050301 2010-05-28
KR10-2010-0050395 2010-05-28
KR1020100050301A KR20100065260A (ko) 2010-05-28 2010-05-28 내튜브 형 엠알유체댐퍼의 조립방법
KR10-2010-0050371 2010-05-28
KR10-2010-0050292 2010-05-28
KR1020100050371A KR101192158B1 (ko) 2010-05-28 2010-05-28 지그 형 엠알유체댐퍼
KR1020100050395A KR20100065265A (ko) 2010-05-28 2010-05-28 지그형 엠알유체댐퍼의 조립방법
KR1020100050292A KR101192156B1 (ko) 2010-05-28 2010-05-28 내튜브 형 엠알유체댐퍼
KR10-2011-0030960 2011-04-05
KR1020110030960A KR101176854B1 (ko) 2010-05-28 2011-04-05 지그 형 엠알유체댐퍼의 조립방법
KR10-2011-0043582 2011-05-09
KR1020110043582A KR101202310B1 (ko) 2010-05-28 2011-05-09 내튜브 형 엠알유체댐퍼의 조립방법

Publications (2)

Publication Number Publication Date
WO2011149230A2 true WO2011149230A2 (fr) 2011-12-01
WO2011149230A3 WO2011149230A3 (fr) 2012-01-26

Family

ID=45004529

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/KR2011/003760 WO2011149230A2 (fr) 2010-05-28 2011-05-23 Amortisseur de fluide mr et son procédé d'assemblage

Country Status (1)

Country Link
WO (1) WO2011149230A2 (fr)

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20150104123A1 (en) * 2013-10-11 2015-04-16 General Electric Company Journal bearing assemblies and methods of assembling same
CN105823678A (zh) * 2016-06-08 2016-08-03 合肥工业大学 一种霍普金森压杆阻尼器
CN107061586A (zh) * 2017-05-09 2017-08-18 河南大学 基于摩擦电纳米发电机的自供电避震弹簧
WO2018028951A1 (fr) * 2016-08-10 2018-02-15 BSH Hausgeräte GmbH Appareil de traitement de linge

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR19990025886A (ko) * 1997-09-19 1999-04-06 구자홍 드럼세탁기의 진동 제어장치
KR20000009762A (ko) * 1998-07-28 2000-02-15 윤종용 드럼세탁기
KR20070100058A (ko) * 2006-04-06 2007-10-10 엘지전자 주식회사 마찰 댐퍼 및 이를 구비한 세탁기
KR20100050382A (ko) * 2009-08-18 2010-05-13 주식회사 썬 프레인 코 자기식 댐퍼 및 이를 구비한 세탁기

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR19990025886A (ko) * 1997-09-19 1999-04-06 구자홍 드럼세탁기의 진동 제어장치
KR20000009762A (ko) * 1998-07-28 2000-02-15 윤종용 드럼세탁기
KR20070100058A (ko) * 2006-04-06 2007-10-10 엘지전자 주식회사 마찰 댐퍼 및 이를 구비한 세탁기
KR20100050382A (ko) * 2009-08-18 2010-05-13 주식회사 썬 프레인 코 자기식 댐퍼 및 이를 구비한 세탁기

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20150104123A1 (en) * 2013-10-11 2015-04-16 General Electric Company Journal bearing assemblies and methods of assembling same
US9429191B2 (en) * 2013-10-11 2016-08-30 General Electric Company Journal bearing assemblies and methods of assembling same
CN105823678A (zh) * 2016-06-08 2016-08-03 合肥工业大学 一种霍普金森压杆阻尼器
WO2018028951A1 (fr) * 2016-08-10 2018-02-15 BSH Hausgeräte GmbH Appareil de traitement de linge
CN107061586A (zh) * 2017-05-09 2017-08-18 河南大学 基于摩擦电纳米发电机的自供电避震弹簧

Also Published As

Publication number Publication date
WO2011149230A3 (fr) 2012-01-26

Similar Documents

Publication Publication Date Title
WO2011149230A2 (fr) Amortisseur de fluide mr et son procédé d'assemblage
KR101192155B1 (ko) 다이나믹 엠알유체댐퍼
WO2015064994A1 (fr) Appareil de positionnement de joint torique
KR101215239B1 (ko) 드럼식 세탁기와 댐퍼를 갖는 서스펜션의 제조 방법
KR101873363B1 (ko) 대칭적 유압라인의 자장유압 댐퍼를 구비한 케이블 댐퍼 및 이를 이용한 케이블 진동제어 방법
KR101176854B1 (ko) 지그 형 엠알유체댐퍼의 조립방법
EP1255058A3 (fr) Anneau de flux à compensation de température
US20110207567A1 (en) Linearly acting tensioning element
WO2018084481A2 (fr) Moteur pour machine à laver et machine à laver équipée dudit moteur
JP2011240079A (ja) 洗濯機用のダンパ
WO2010137916A2 (fr) Procédé de fabrication d'une machine à laver
KR20100065259A (ko) 내튜브 형 엠알유체댐퍼
WO2014137013A1 (fr) Broyeur du type à cône
KR20100050382A (ko) 자기식 댐퍼 및 이를 구비한 세탁기
US20070057422A1 (en) Device for vibration-damping disposition of a unit, and unit equipped with such devices
WO2021112534A1 (fr) Machine à laver et appareil pour réduire les vibrations de celle-ci
KR101202310B1 (ko) 내튜브 형 엠알유체댐퍼의 조립방법
WO2013065889A1 (fr) Amortisseur magnétique mr à tube à étages multiples
US6290033B1 (en) Magnetorheological damper charging system
WO2016114596A1 (fr) Cylindre de gaz
KR101192158B1 (ko) 지그 형 엠알유체댐퍼
WO2015099393A1 (fr) Moteur linéaire et procédé pour assembler un dispositif de mouvement de ce dernier
KR101302247B1 (ko) 세탁기
KR101266063B1 (ko) 클립이 설치된 엠알유체댐퍼
WO2020246681A1 (fr) Butée de claquement ayant une force de fixation et une propriété d'amortissement

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 11786862

Country of ref document: EP

Kind code of ref document: A2

NENP Non-entry into the national phase

Ref country code: DE

122 Ep: pct application non-entry in european phase

Ref document number: 11786862

Country of ref document: EP

Kind code of ref document: A2