[go: up one dir, main page]

US2544491A - Shock damper for electromagnetic devices - Google Patents

Shock damper for electromagnetic devices Download PDF

Info

Publication number
US2544491A
US2544491A US78392A US7839249A US2544491A US 2544491 A US2544491 A US 2544491A US 78392 A US78392 A US 78392A US 7839249 A US7839249 A US 7839249A US 2544491 A US2544491 A US 2544491A
Authority
US
United States
Prior art keywords
pole piece
armature
base plate
electromagnet
container
Prior art date
Legal status (The legal status 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 status listed.)
Expired - Lifetime
Application number
US78392A
Inventor
Herbert L Davis
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Goodrich Corp
Original Assignee
BF Goodrich Corp
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
Application filed by BF Goodrich Corp filed Critical BF Goodrich Corp
Priority to US78392A priority Critical patent/US2544491A/en
Application granted granted Critical
Publication of US2544491A publication Critical patent/US2544491A/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

Images

Classifications

    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01FMAGNETS; INDUCTANCES; TRANSFORMERS; SELECTION OF MATERIALS FOR THEIR MAGNETIC PROPERTIES
    • H01F7/00Magnets
    • H01F7/06Electromagnets; Actuators including electromagnets
    • H01F7/08Electromagnets; Actuators including electromagnets with armatures
    • H01F7/088Electromagnets; Actuators including electromagnets with armatures provided with means for absorbing shocks
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01HELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
    • H01H50/00Details of electromagnetic relays
    • H01H50/16Magnetic circuit arrangements
    • H01H50/18Movable parts of magnetic circuits, e.g. armature
    • H01H50/30Mechanical arrangements for preventing or damping vibration or shock, e.g. by balancing of armature
    • H01H50/305Mechanical arrangements for preventing or damping vibration or shock, e.g. by balancing of armature damping vibration due to functional movement of armature

Definitions

  • This invention relates to electromagnetic devices such as solenoids and particularly to electromagnetic switches having a damping means for the armature.
  • FIG. l is a plan view of an electromagnetic device embodying this invention
  • Fig. 2 is a side elevation of thesame device with fluid container in' section;
  • Fig. 3 is the same as Fig. 2 except the armature is in the closed position and parts are broken away and in section;
  • Fig. 4 is an end elevation with the container in section.
  • sup ports the four parallel guiderods
  • the rods I2, I2 are threaded and have screwed thereon spaced stop nuts I3, I3, I 4, l4. Between these nuts l3, l3, l4, l4 andslidably engageable with rods
  • Plates I5, l6 are attached to the laminated field piece ll of the electromagnetic switch 20. Plate I5 is attached to the upper part or the laminated field piece and plate
  • 8 are all yieldably mounted on the base plate I I.
  • , 22, 22 are under compression and when no forces except the weight of the field piece and coil are exerted upon the upper plate I 5, the springs are in the position shown in Fig. 2.
  • the movable armature 23 is normally in the open position shown in Fig. 2 and is surrounded at its lower end by the magnetizing coil I8.
  • the apparatus is surrounded on all sides by 7 Claims.
  • Cl. 3308 a thin wall 24 which in conjunction with base ll makes a container which is partly filled with a light oil 25.
  • Parts of coil l8, field piece pole piece 9, and the stem of the armature 23 are submerged in oil.
  • the T-head of the laminated armature 23 has a sheet metal splash shield 26 welded to it to prevent splashing of the oil 25 when the armature moves downward to that portion of the magnetizing coils field having the greatest intensity.
  • the level of the oil or other liquid used to cushion the impact of the armature against the pole piece may vary from just above the top of the pole piece I9 to near the top of the wall 24.
  • the splash shield 26 is needed the most when the fiuid level is high in the container. When the oil level is low, the shield is not necessarily used.
  • An electromagnetic device comprising a base plate, a plurality of parallel rods secured perpendicularly to said base plate, a coiled spring under compression between stops on each of said rods, an electromagnet supported from said springs and slidably mounted on said rods, said electromagnet including a pole piece attached to the lower end thereof, a movable armature normally held in an open position against the force of gravity and movable to engage said pole piece when said electromagnet is energized, a wall secured to said base plate around said electromagnet extending upwardly above the level of the face of said pole piece and forming with said base plate a liquid container, and a damping liquid disposed in said container to a level just above the face of said pole piece.
  • An electromagnetic device comprising a base plate, a plurality or parallel rods secured perpendicularly to said base plate, coiled springs under compression between stops on said rods, an electromagnet including a pole piece supported by a frame slidably mounted on said rods and restrained by said springs, a movable armature, container means associated with said base plate surrounding said pole piece and said armature and extending upwardly above the level of the face of said pole piece, and an oil bath disposed in said container to a level just above the face of said pole piece.
  • An electromagnetic device comprising a base plate, an electromagnet including a pole piece yieldably mounted on said base plate, a movable armature normally held in an open position and movable to engage said pole piece when said electromagnet is energized, container means attached to said base surrounding said pole piece and said armature and extending upwardly above the level of the face of said pole piece, and an oil bath disposed in said container to a level just above the face of said pole piece.
  • An electromagnetic device comprising a base plate, an electromagnet including a pole piece, an armature movable from an open position to a position in contact with said pole piece, said armaturecomprising a T-head and a stem, means for yieldably mounting said electromagnet and pole piece above said base plate, container means associated with said base plate and surrounding said pole piece and said armature and extending upwardly from said base plate above the level of the face of said pole piece, and within said container means a damping liquid which covers said pole piece and the stem only of said armature.
  • An electromagnetic device comprising a base plate, an electromagnet having a laminated pole piece and a coil of wire, a laminated armature movable through said coil and engageable with said pole piece, means for yieldably mounting said electromagnet above said base plate, container means associated with said base plate and surrounding said pole piece and said armature, and within said container means a damping liquid which covers said laminated pole piece and the pole piece engaging portion only of said laminated armature when said armature is in the closed position.
  • an electromagnet having a pole piece, a movable armature comprising a T-head and a stem which engages said pole piece, a means for reducing the shock of impact of the armature with said pole piece comprising a yieldable mount for said electromagnet, an oil bath which covers said pole piece and the stem of said armature when said armature is in the closed position, and container means for said oil bath associated with and surrounding said pole piece and extending above the level of the face of said pole piece.
  • an electromagnet including a pole piece, an armature disposed above and movable into engagement with said pole piece, and means for reducing the shock of the impact of said armature with said pole piece comprising a spring mounting for said electromagnet, container means surrounding said pole piece and said armature and extending above the face of said pole piece, and within said container means an oil bath which covers said pole piece and the pole piece engaging portion only of said armature when the armature is in the closed position.

Landscapes

  • Physics & Mathematics (AREA)
  • Electromagnetism (AREA)
  • Engineering & Computer Science (AREA)
  • Power Engineering (AREA)
  • Electromagnets (AREA)

Description

March 6, 195] DAVls 2,544,491
SHOCK DAMPER FOR ELECTROMAGNETIC DEVICES Filed Feb. 25, 1949 zzus zzimz HEEbEE] L-Davis Ey- 0PM m 7 Patented Mar. 6, 19 51 SHOCK DAMPER FOR ELECTROMAGNETIC DEVICES Herbert L. Davis, Walpole, Mass., assignor to The B. F. Goodrich Company, New York, N. Y., a corporation of New York Application February 25, 1949, Serial No. 78,392
This invention relates to electromagnetic devices such as solenoids and particularly to electromagnetic switches having a damping means for the armature.
It is an object of this invention to increase the useful life of electromagnetic devices. Another object is to decrease the noise of operation of such devices. It is also an object to provide a means of reducing the shock of impact of the armature with the pole piece of an electromagnetic device. Other objects will be apparent from the description which follows.
It has been found that by employing a means for yieldably mounting the electromagnet and pole piece of an electromagnetic device and a means for damping the shock of the impact of the armature with the pole piece which results when the electromagnet is energized, it is possible to achieve the above objects.
One embodiment of the invention is shown in the drawing, in which Fig. l is a plan view of an electromagnetic device embodying this invention;
Fig. 2 is a side elevation of thesame device with fluid container in' section;
Fig. 3 is the same as Fig. 2 except the armature is in the closed position and parts are broken away and in section; and
Fig. 4 is an end elevation with the container in section.
As shown in the drawing, base plate I| sup ports the four parallel guiderods |2, |2 which are secured thereto at their lower ends. The rods I2, I2 are threaded and have screwed thereon spaced stop nuts I3, I3, I 4, l4. Between these nuts l3, l3, l4, l4 andslidably engageable with rods |2, |2 is plate I5 and on either side of the plate I5 are springs 2|, 2|, 22, 22. Plates I5, l6 are attached to the laminated field piece ll of the electromagnetic switch 20. Plate I5 is attached to the upper part or the laminated field piece and plate |6 to the lower part of the laminated field piece, and within the laminated field piece I! is the magnetizing coil l8 and the pole piece l9. Thus the laminated field piece I1, the pole piece I9, and the magnetizing coil |8 are all yieldably mounted on the base plate I I. The springs 2|, 2|, 22, 22 are under compression and when no forces except the weight of the field piece and coil are exerted upon the upper plate I 5, the springs are in the position shown in Fig. 2. The movable armature 23 is normally in the open position shown in Fig. 2 and is surrounded at its lower end by the magnetizing coil I8.
The apparatus is surrounded on all sides by 7 Claims. (Cl. 338) a thin wall 24 which in conjunction with base ll makes a container which is partly filled with a light oil 25. Parts of coil l8, field piece pole piece 9, and the stem of the armature 23 are submerged in oil. The T-head of the laminated armature 23 has a sheet metal splash shield 26 welded to it to prevent splashing of the oil 25 when the armature moves downward to that portion of the magnetizing coils field having the greatest intensity.
When the magnetizing coil I8 is energized, armature 23 is pulled downwardly to the closed position shown in Fig. 3. As the armature moves downward the oil between the armature 23 and pole piece I9 is displaced, thus serving to dampen the movement of the armature and acting as a cushion between the pole piece and armature. When the oil is displaced and the armature strikes the pole piece, the latter, together with the field piece I'I, coil I8 and plates l5, I6 move downward as a unit causing Springs 22, 22 to compress further, and after the assembly recoils, springs 2|, 2| and springs 22, 22, acting against each other bring the assembly to rest by damping the vibration.
When coil I8 is no longer energized the armature 23 is returned to the open position by any suitable means (not shown in the drawings).
The level of the oil or other liquid used to cushion the impact of the armature against the pole piece may vary from just above the top of the pole piece I9 to near the top of the wall 24. The splash shield 26 is needed the most when the fiuid level is high in the container. When the oil level is low, the shield is not necessarily used.
By cushioning the shock of armature against pole piece it is possible to increase greatly the life of these laminated steel members which normally crack and break apart during use. By suspending the coil, field piece, and pole piece by a yieldable means such as coiled springs it is possible to lengthen the life of the unit because the springs will absorb most of the shock and vibrations to which these switches are subjected.
By combining the coiled spring shock mount and the oil bath shock-cushioning means in an electromagnetic device such as an electromagnetic switch the useful life has been greatly increased and in addition the noise of operation; has been diminished to a great extent.
Other obvious variations and modifications may be efiected without departing from the spirit and scope of the invention as defined in the appended claims.
I claim:
1. An electromagnetic device comprising a base plate, a plurality of parallel rods secured perpendicularly to said base plate, a coiled spring under compression between stops on each of said rods, an electromagnet supported from said springs and slidably mounted on said rods, said electromagnet including a pole piece attached to the lower end thereof, a movable armature normally held in an open position against the force of gravity and movable to engage said pole piece when said electromagnet is energized, a wall secured to said base plate around said electromagnet extending upwardly above the level of the face of said pole piece and forming with said base plate a liquid container, and a damping liquid disposed in said container to a level just above the face of said pole piece.
2. An electromagnetic device comprising a base plate, a plurality or parallel rods secured perpendicularly to said base plate, coiled springs under compression between stops on said rods, an electromagnet including a pole piece supported by a frame slidably mounted on said rods and restrained by said springs, a movable armature, container means associated with said base plate surrounding said pole piece and said armature and extending upwardly above the level of the face of said pole piece, and an oil bath disposed in said container to a level just above the face of said pole piece.
3. An electromagnetic device comprising a base plate, an electromagnet including a pole piece yieldably mounted on said base plate, a movable armature normally held in an open position and movable to engage said pole piece when said electromagnet is energized, container means attached to said base surrounding said pole piece and said armature and extending upwardly above the level of the face of said pole piece, and an oil bath disposed in said container to a level just above the face of said pole piece.
4. An electromagnetic device comprising a base plate, an electromagnet including a pole piece, an armature movable from an open position to a position in contact with said pole piece, said armaturecomprising a T-head and a stem, means for yieldably mounting said electromagnet and pole piece above said base plate, container means associated with said base plate and surrounding said pole piece and said armature and extending upwardly from said base plate above the level of the face of said pole piece, and within said container means a damping liquid which covers said pole piece and the stem only of said armature.
5. An electromagnetic device comprising a base plate, an electromagnet having a laminated pole piece and a coil of wire, a laminated armature movable through said coil and engageable with said pole piece, means for yieldably mounting said electromagnet above said base plate, container means associated with said base plate and surrounding said pole piece and said armature, and within said container means a damping liquid which covers said laminated pole piece and the pole piece engaging portion only of said laminated armature when said armature is in the closed position.
6. In an electromagnetic device, the combination of an electromagnet having a pole piece, a movable armature comprising a T-head and a stem which engages said pole piece, a means for reducing the shock of impact of the armature with said pole piece comprising a yieldable mount for said electromagnet, an oil bath which covers said pole piece and the stem of said armature when said armature is in the closed position, and container means for said oil bath associated with and surrounding said pole piece and extending above the level of the face of said pole piece.
'7. In an electromagnetic device, the combination of an electromagnet including a pole piece, an armature disposed above and movable into engagement with said pole piece, and means for reducing the shock of the impact of said armature with said pole piece comprising a spring mounting for said electromagnet, container means surrounding said pole piece and said armature and extending above the face of said pole piece, and within said container means an oil bath which covers said pole piece and the pole piece engaging portion only of said armature when the armature is in the closed position.
HERBERT L. DAVIS REFERENCES CITED The following references are of record in the file of this patent:
UNITED STATES PATENTS Number Name Date 1,011,662 Sundh Dec. 12, 1911 1,230,934 Skinner June 26, 1917 1,552,375 Ainsworth Sept. 1, 1925 FOREIGN PATENTS Number Country Date 218,484 Germany Nov. 24, 1908 587,821 Germany July 21, 1931 437,679 Great Britain Nov. 4, 1935 640,233 France July 9, 1928
US78392A 1949-02-25 1949-02-25 Shock damper for electromagnetic devices Expired - Lifetime US2544491A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
US78392A US2544491A (en) 1949-02-25 1949-02-25 Shock damper for electromagnetic devices

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
US78392A US2544491A (en) 1949-02-25 1949-02-25 Shock damper for electromagnetic devices

Publications (1)

Publication Number Publication Date
US2544491A true US2544491A (en) 1951-03-06

Family

ID=22143759

Family Applications (1)

Application Number Title Priority Date Filing Date
US78392A Expired - Lifetime US2544491A (en) 1949-02-25 1949-02-25 Shock damper for electromagnetic devices

Country Status (1)

Country Link
US (1) US2544491A (en)

Cited By (17)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2652350A (en) * 1948-11-16 1953-09-15 Philip T Dailey Bearing-cleaning device and method
US2671268A (en) * 1949-07-30 1954-03-09 Howard E Crawford Foot control for dental engines
US2726296A (en) * 1953-06-22 1955-12-06 Louis P Hanson Magnetically operated float switch
US2961001A (en) * 1956-07-25 1960-11-22 Double A Products Company Pilot controlled valve
US2975340A (en) * 1956-05-07 1961-03-14 Detroit Coil Co Oil bath solenoid
US2997633A (en) * 1958-05-13 1961-08-22 Westinghouse Electric Corp Electromagnetic actuated devices
US3042842A (en) * 1958-04-14 1962-07-03 Cutler Hammer Inc Electromagnetic device
US3088058A (en) * 1959-10-26 1963-04-30 Siemens Ag Contactor
US3157831A (en) * 1959-03-30 1964-11-17 Indternat Telephone And Telegr Laminated core electromagnet
US3177317A (en) * 1960-07-22 1965-04-06 Mc Graw Edison Co Drop out fuse construction having a fuse tube which is resiliently mounted in an annular support member
US3196231A (en) * 1960-02-12 1965-07-20 Licentia Gmbh Switch which reduces rebounding of its contacts
US3218409A (en) * 1960-11-07 1965-11-16 Jennings Radio Mfg Corp Electromagnetic actuator
US3243545A (en) * 1963-05-24 1966-03-29 Ite Circuit Breaker Ltd Two-way cushion for contactor
US3608585A (en) * 1969-11-12 1971-09-28 Ross Operating Valve Co Solenoid valve
US4862127A (en) * 1988-11-23 1989-08-29 Datacard Corporation Solenoid shock absorbing bumper arrangement and method
US5623239A (en) * 1996-01-17 1997-04-22 Furnas Electric Co. Electrical contactor spring
US20070290779A1 (en) * 2006-06-14 2007-12-20 Datacard Corporation Laminated solenoid plunger for solenoid assembly

Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE218484C (en) *
US1011662A (en) * 1908-05-27 1911-12-12 Otis Elevator Co Switchboard construction for alternating-current controllers.
US1230934A (en) * 1915-01-28 1917-06-26 John T Skinner Alternating-current electromagnetic control-switch.
US1552375A (en) * 1921-01-08 1925-09-01 Condit Electrical Mfg Company Time-limit device
FR640233A (en) * 1927-08-29 1928-07-09 Improvements to electromagnets for alternating currents
DE587821C (en) * 1931-07-21 1933-11-09 Waldemar Rothmann Brake release magnet
GB437679A (en) * 1933-08-19 1935-11-04 Asea Ab Improvements in electro-magnetic contactors

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE218484C (en) *
US1011662A (en) * 1908-05-27 1911-12-12 Otis Elevator Co Switchboard construction for alternating-current controllers.
US1230934A (en) * 1915-01-28 1917-06-26 John T Skinner Alternating-current electromagnetic control-switch.
US1552375A (en) * 1921-01-08 1925-09-01 Condit Electrical Mfg Company Time-limit device
FR640233A (en) * 1927-08-29 1928-07-09 Improvements to electromagnets for alternating currents
DE587821C (en) * 1931-07-21 1933-11-09 Waldemar Rothmann Brake release magnet
GB437679A (en) * 1933-08-19 1935-11-04 Asea Ab Improvements in electro-magnetic contactors

Cited By (18)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2652350A (en) * 1948-11-16 1953-09-15 Philip T Dailey Bearing-cleaning device and method
US2671268A (en) * 1949-07-30 1954-03-09 Howard E Crawford Foot control for dental engines
US2726296A (en) * 1953-06-22 1955-12-06 Louis P Hanson Magnetically operated float switch
US2975340A (en) * 1956-05-07 1961-03-14 Detroit Coil Co Oil bath solenoid
US2961001A (en) * 1956-07-25 1960-11-22 Double A Products Company Pilot controlled valve
US3042842A (en) * 1958-04-14 1962-07-03 Cutler Hammer Inc Electromagnetic device
US2997633A (en) * 1958-05-13 1961-08-22 Westinghouse Electric Corp Electromagnetic actuated devices
US3157831A (en) * 1959-03-30 1964-11-17 Indternat Telephone And Telegr Laminated core electromagnet
US3088058A (en) * 1959-10-26 1963-04-30 Siemens Ag Contactor
US3196231A (en) * 1960-02-12 1965-07-20 Licentia Gmbh Switch which reduces rebounding of its contacts
US3177317A (en) * 1960-07-22 1965-04-06 Mc Graw Edison Co Drop out fuse construction having a fuse tube which is resiliently mounted in an annular support member
US3218409A (en) * 1960-11-07 1965-11-16 Jennings Radio Mfg Corp Electromagnetic actuator
US3243545A (en) * 1963-05-24 1966-03-29 Ite Circuit Breaker Ltd Two-way cushion for contactor
US3608585A (en) * 1969-11-12 1971-09-28 Ross Operating Valve Co Solenoid valve
US4862127A (en) * 1988-11-23 1989-08-29 Datacard Corporation Solenoid shock absorbing bumper arrangement and method
US5623239A (en) * 1996-01-17 1997-04-22 Furnas Electric Co. Electrical contactor spring
US20070290779A1 (en) * 2006-06-14 2007-12-20 Datacard Corporation Laminated solenoid plunger for solenoid assembly
US7414504B2 (en) * 2006-06-14 2008-08-19 Datacard Corporation Laminated solenoid plunger for solenoid assembly

Similar Documents

Publication Publication Date Title
US2544491A (en) Shock damper for electromagnetic devices
US2901677A (en) Solenoid mounting
US2680585A (en) Vibration isolator
CN108916301B (en) An electromagnetic active control shock absorber
KR101518810B1 (en) Switch gear having a earthquake resistant device
DK164424B (en) NOISE ELECTROMAGNET
CN208368302U (en) A kind of buffering antishock device for dry-type transformer
US2687270A (en) Vibration absorption beam mount
US4433570A (en) Mechanical shock machine
CN111810583B (en) Electromechanical device fixing frame and mounting method thereof
US2942834A (en) Vibration absorber
US2678797A (en) Vibration and shock isolator
US2859298A (en) Electromagnetic apparatus
US2810842A (en) Vibration generator
US2714141A (en) Shock and vibration resistant solenoid relay
DE974278C (en) Electromagnetically operated switching device, especially contactor
CN115899151B (en) Impact-resistant bidirectional buffer device for hammer crusher
RU229599U1 (en) Contact block reacting gas relay
RU144843U1 (en) ELECTROMAGNETIC SWITCHING MACHINE
RU2659122C2 (en) Kochetov mesh spring vibration isolator
SU143872A1 (en) Impact Resistant Maximum DC Solenoid Valve Relay
KR101990363B1 (en) Closed Shear Type MRG(Magneto Rheological-Grease Fluid) Damper
RU2597057C2 (en) Kochetov vibration damping spring
US1852677A (en) Vibrating mechanism
US3055250A (en) Electro-magnetic stored energy card punch