USRE28545E - Self-ejecting electric plug - Google Patents

Self-ejecting electric plug Download PDF

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USRE28545E
USRE28545E US39914173A USRE28545E US RE28545 E USRE28545 E US RE28545E US 39914173 A US39914173 A US 39914173A US RE28545 E USRE28545 E US RE28545E
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Prior art keywords
chamber
distensible member
pressure
working medium
fluid chamber
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Priority to US754188A priority Critical patent/US3609635A/en
Priority to US00131511A priority patent/US3784958A/en
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Priority to US39914173 priority patent/USRE28545E/en
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Publication of USRE28545E publication Critical patent/USRE28545E/en
Priority to BE2055184A priority patent/BE844137Q/en
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    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R13/00Details of coupling devices of the kinds covered by groups H01R12/70 or H01R24/00 - H01R33/00
    • H01R13/66Structural association with built-in electrical component
    • H01R13/70Structural association with built-in electrical component with built-in switch
    • H01R13/713Structural association with built-in electrical component with built-in switch the switch being a safety switch
    • H01R13/7132Structural association with built-in electrical component with built-in switch the switch being a safety switch having ejecting mechanisms
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F03MACHINES OR ENGINES FOR LIQUIDS; WIND, SPRING, OR WEIGHT MOTORS; PRODUCING MECHANICAL POWER OR A REACTIVE PROPULSIVE THRUST, NOT OTHERWISE PROVIDED FOR
    • F03GSPRING, WEIGHT, INERTIA OR LIKE MOTORS; MECHANICAL-POWER PRODUCING DEVICES OR MECHANISMS, NOT OTHERWISE PROVIDED FOR OR USING ENERGY SOURCES NOT OTHERWISE PROVIDED FOR
    • F03G7/00Mechanical-power-producing mechanisms, not otherwise provided for or using energy sources not otherwise provided for
    • F03G7/06Mechanical-power-producing mechanisms, not otherwise provided for or using energy sources not otherwise provided for using expansion or contraction of bodies due to heating, cooling, moistening, drying or the like
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R13/00Details of coupling devices of the kinds covered by groups H01R12/70 or H01R24/00 - H01R33/00
    • H01R13/62Means for facilitating engagement or disengagement of coupling parts or for holding them in engagement
    • H01R13/629Additional means for facilitating engagement or disengagement of coupling parts, e.g. aligning or guiding means, levers, gas pressure electrical locking indicators, manufacturing tolerances
    • H01R13/633Additional means for facilitating engagement or disengagement of coupling parts, e.g. aligning or guiding means, levers, gas pressure electrical locking indicators, manufacturing tolerances for disengagement only
    • H01R13/637Additional means for facilitating engagement or disengagement of coupling parts, e.g. aligning or guiding means, levers, gas pressure electrical locking indicators, manufacturing tolerances for disengagement only by fluid pressure, e.g. explosion
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B3/00Ohmic-resistance heating
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R2103/00Two poles
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R24/00Two-part coupling devices, or either of their cooperating parts, characterised by their overall structure
    • H01R24/28Coupling parts carrying pins, blades or analogous contacts and secured only to wire or cable

Definitions

  • the plug includes a plunger normally spring retracted [52] US. Cl 399/45 R; 339/196 R, 60/25 between the prongs and a h b taining ther- [5 Int. expansible material and an electric heater [58] 7 Field of Search 339/45; 2 98 RD; is the plug cord circuit, a remote switch closure ener- 52/1 292/201 144 gizing the heater to expand the material against the R t jt d plunger to drive it outwardly and eject the plug from e erences l e the receptacle.
  • This invention relates to an electric plug which can eject itself from a receptacle for self-disconnect action.
  • Another object is to provide an improved selfejecting plug which is inexpensive to produce and relatively trouble free by virtue of simplicity of its design and operating mode.
  • .4 further object is to provide a thermally actuated device that is rapid and efficient in converting electrical energy to mechanical energy.
  • FIG. 1 is a perspective view of a new self ejecting electric plug in accordance with the present invention
  • FlG. 2 is a longitudinal sectional view of the plug as indicated by the line 2-2 in FIG. 1;
  • FIG. 3 is an electrical schematic of a plug and'appliance combination.
  • the plug comprises first and second 'body parts'l0 and ll,'which are preferably made of rigid plastic.
  • the part 10 is generally annular, thereby defining a bore 12, with a radial stop flange 13 at the outer end of the bore and an annular relief 14 in the inner end face for purposes to be described.
  • the part. l1- is'inthe nature of an end cap having a cylindrical recess 15 onthe same axis as the bore 12 with a slightly *largerinside diameter as shown.
  • the diaphragm preferablyhas'a fold 19 which it norm'allyassumes and which permits ready distension of the diaphragin outwardly into the bore 12.
  • the recess contains a quantity of thermally expansibleand contractable material 20 and a schematically shown electric heating coil H operative when energized to expand such material and thereby exert an outward force at the diaphragm l7.
  • Such force is applied through the diaphragm to' a plunger 21 in the bore 12, also madeof a rigid plastic, having a flange 22 at its inner end.
  • a return spring 23 extends from this plunger flange to the stop flange 13 at the outer end of the bore 12 and serves normally to hold the plunger in the relatively retracted condition shown.
  • Two metal prongs 24, 25 are attached to the outer face-of the bodypart 10 by bolts 26, 27 which extend completely through this part and also through the art-1 1 at'the rear of which they receive electric wire.
  • the bolts serve also to unite the body parts 10 and 1 l and electrically connect the prongs 24, 25 respectively to the terminals 28, 29.
  • the plunger is between the prongs, and two wires 32, 33 extend from the terminals 28, 29.
  • one end of the heating coil H is connected to wire 32, while the other continues as a third wire 34.
  • the plug assembly is encased within an insulative cover 35, for example, of rubber molded thereabout, and the wires 32, 33 and 34 extend through an insulative cord body 36 to the appliance or other device served by the cord.
  • the circle 37 represents an electrical appliance and dashed line 38 the division between the plug circuit, above the line, and the cord and appliance circuit.
  • the latter includes an on-off switch 39 and additionally a pushbutton switch 40 connected between wires 33 and 34, so that the heating coil in the plug can selectively be energized by 'closure of the pushbutton conveniently .at the appliance.
  • the inert, dielectric liquid will vaporize [art] at about 200 F.; and that part of the liquid contacted by and proximate to the heater in the plug can be almost immediately-heated to this temperature sufficiently to develop ejection force with a relatively small resistance element at normal .energization.
  • the circuit for the heater in the same is also automatically disabled along with the appliance or other cord connected device, the expansion material as quickly contracts and the return spring retracts the plunger to its normal nonobstructive position.
  • heating coil hasbeen shown schematically for convenience of illustration, it can in fact be a simplewire coil of sufficient heating capacity relative tovthe fluid or material used to-perform with the desired quick response.
  • plug part of the plug-receptacle combination is preferably the actuated part in the described application, it .will be appreciated generally that such anautomatic disconnect can also be realized comparably by incorporating the ejecting assembly in the receptacle, with the plunger in this case normally retracted between the socket contacts and driven outwardly against the plug to eject the latter.
  • Athermally actuated device for converting electrical energy rapidly to mechanical energy by volume and pressure increase due to a liquid to gas phase change of aworking fluid, comprising body means, a distensible member in sealed engagement with said body means forming a fluid chamber therewith, said distensible member including an annular fold therein projecting into said fluid chamber and adapted for unfolding upon an increase of pressure in said fluid chamber, said distensible member having a central portion supported bysaid annular fold adapted for substantially linear movement away from and toward said body means, an
  • inert dielectric fluorinated hydrocarbon liquid filling said fluid chamber when said distensible member is in a folded condition
  • electrical resistance heating means supported in said body means, being disposed in said fluid chamber and completely submerged in said liquid for heating that portion of said liquid in contact therewith to vaporization temperature, thereby to raise the pressure insaid fluid. chamber and cause movement of said distensible member and further comprising means for confining said distensible member for such substantially linear movement, said confining means being exterionof said body means and rigidly connected,
  • a thermally actuated device as set forth in claim 1 further comprising a plunger supported for linear movement in said confining means, said plunger being in abutment with said central portion of said distensible member, and a spring in en ggement with said plunger for urging s'ame'against said distensible member.
  • thermoly actuated device as set forth in claim 2 wherein said distensible member is a rubber diaphragm adapted for distension without stretching, by rolling along said annular fold therein, thereby providing substantially no resistance to movement of said central portion.
  • a thermally actuated device for converting electrical energy rapidly to mechanical energy by volume and pressure increase due to a gas producing phase change of a working medium comprising a body, extensible means in sealed engagement with said body for forming a variable volume working medium chamber therewith, said means adapted for enlargement of the latter upon an increase of pressure therein, said means being supported for movement away from and toward said body, a thermally expansive working medium substantially filling said chamber when said means is in its non-extended condition relative to said body, electrical resistance heating means within said.
  • a thermally actuated device for converting electrical energy rapidly to mechanical energy by volume and pressure increase due to a liquid to gas phase change of a working fluid comprising a body, extensible means in sealed engagement with said body for forming a variable volume fluid chamber therewith, said means adapted for enlargement of the latter upon an increase of pressure therein, said means being supported for movement away from and toward said body, an inert dielectric fluorinated hydrocarbon liquid substantially filling said fluid chamber when said means is in its non-extended condition relative to said body, electrical resistance heating means within said body, being disposed in said fluid chamber and completely submerged in said liquid for healing that portion of said liquid in contact therewith to vaporization temperature, thereby to raise the pressure in said fluid chamber and cause movement of said extensible means, and furtherrcomprising means for confining said extensible means for such substantially linear movement, said further means being exterior of said body and rigidly con nected thereto 8.
  • a thermally actuated device for converting electrical energy rapidlytto mechanical energy by volume and pressure increase due to a gas producing phase change of a sistance heating means within said body, being disposed in said chamber and completely surrounded by said working medium for heating that portion of said working medium in contact therewith to a temperature at which a gas producing phase change occurs, thereby to raise the pressure in said chamber and cause movement of said distensible member, and further comprising means for confining said distensible member for such substantially linear movement, said means being exterior of said body and rigidly connected thereto.

Abstract

The plug includes a plunger normally spring retracted between the prongs and a chamber containing thermally expansible material and an electric heater which is the plug cord circuit, a remote switch closure energizing the heater to expand the material against the plunger to drive it outwardly and eject the plug from the receptacle.

Description

United States Patent 1 1 1111 E Re. 28,545
Harris Reissued Sept. 2, 1975 [541 SELF-EJECTING ELECTRIC PLUG 2,548,708 4/1951 Dickey 60/25 2,597,890 5/1952 Monk 60/25 [75] Inventor: Lee M. Harris, Amarillo, Tex. 2,612,419 9/l952 Reynolds H 92/94 73 Assigneez Gould, Inc Chicago1 1 2,688,734 9/1954 Welling 339/45 3,084,90l 4/l963 Thorburn 25l/6l.4
[22] Filed: Sept. 20, 1973 3,168,805 2/1965 Fleury 60/25 [21] App]. No.: 399,14l
Related US Patent Documents Primary ExaminerRichard E Moore Attorney, Agent, or Firm-Donhelly, Maky, Renner &
Reissue of: O
. to [64] Patent No.: 3,609,635
' Issued: Sept. 28, 1971 Appl. No.: 754,188 Filed: Aug. 21, 1968 [57] ABSTRACT The plug includes a plunger normally spring retracted [52] US. Cl 399/45 R; 339/196 R, 60/25 between the prongs and a h b taining ther- [5 Int. expansible material and an electric heater [58] 7 Field of Search 339/45; 2 98 RD; is the plug cord circuit, a remote switch closure ener- 52/1 292/201 144 gizing the heater to expand the material against the R t jt d plunger to drive it outwardly and eject the plug from e erences l e the receptacle. UNITED STATES PATENTS 427,390 9/1947 Dear 339/45 R X 8 Claims, 3 Drawing Figures Reissued Sept. '2, 1975 Re. 28,545
28 ll I8 26 IO INVENTOR LEE M. HARRIS ATTORNEYS SELF-EJECTING ELECTRIC PLUG Matter enclosed in heavy brackets I: appears in the original patent but forms no part of this reissue specification; matter printed in italics indicates the additions made by reissue.
This invention relates to an electric plug which can eject itself from a receptacle for self-disconnect action.
The copending applicationof John'T. Venaleck, Ser. No. 689,663, filed Dec. 1], 1967 and now Pat. No. 3,475,715 issued Oct. 28, 1969, discloses a plug assembly on this order in which the ejection is under the control of a solenoid included in the circuit which is energized by connection of the plug in the receptacle. More particularly, this assembly comprises a plunger between the contact prongs which is normally biased outwardly by a spring and mechanically latched within the plug when pushed in by the insertionof the plug in the receptacle. The solenoid, when its circuit is completed by closure of a switch, withdraws the latch, thereby freeing the plunger for outward drive by its spring and hence the ejection of the plug from the receptacle.
One primary area of interest for this plug has been in electric cords for portable appliances used in the home, with the vacuum cleaner being a prime example, and it has been found that the variation in receptacles, especially throughout older homes, is even greater than was expected, with the result that the plug for this application required a fairly heavy'spring force for reliable ejection. Increasing spring force for course requires proportionately more pressure by the housewife in the insertion of the plug in the receptacle, with the latch necessarily stronger, the solenoid larger, and the overall size increased.
It is a principal object of the present invention to provide such a plug with an improved ejector mechanism having appreciably greater capacity without the noted shortcomings of the solenoid plug form.
Another object is to provide an improved selfejecting plug which is inexpensive to produce and relatively trouble free by virtue of simplicity of its design and operating mode.
.4 further object is to provide a thermally actuated device that is rapid and efficient in converting electrical energy to mechanical energy.
Other objects and advantages of the present invention will become apparent as the following description proceeds.
To the accomplishment of the foregoing and related ends the invention, then, comprises the features hereinafter fully described and particularly pointed out in the claims, the following description and the annexed drawing setting forth-in detail a certain illustrative embodiment of the invention, this being indicative, however, of but one of the various ways in which the principle of the invention may be employed.
in said annexed drawing:
FIG. 1 is a perspective view of a new self ejecting electric plug in accordance with the present invention;
FlG. 2 is a longitudinal sectional view of the plug as indicated by the line 2-2 in FIG. 1; and
FIG. 3 is an electrical schematic of a plug and'appliance combination.
Referring now to the drawing in detail, the plug comprises first and second 'body parts'l0 and ll,'which are preferably made of rigid plastic. The part 10 is generally annular, thereby defining a bore 12, with a radial stop flange 13 at the outer end of the bore and an annular relief 14 in the inner end face for purposes to be described. The part. l1-=is'inthe nature of an end cap having a cylindrical recess 15 onthe same axis as the bore 12 with a slightly *largerinside diameter as shown. The outer or open .end of the part'll-abuts the inner end of the part 10, with the two having the same outside diameter, and the end face of the former has a groove 16 opposedto theannular-relief 14 in the end face of the latter; I
- An elastic diaphragm 17, madefor example of rubber,'is arranged as a wall separating the recess 15 from the adjoining bore 12 and'sealing the joint between the parts '10 and 11 by having-a peripheral bead'18'sealingly gripped in the groove 16 and relief 14. The diaphragm preferablyhas'a fold 19 which it norm'allyassumes and which permits ready distension of the diaphragin outwardly into the bore 12.-
The recess contains a quantity of thermally expansibleand contractable material 20 and a schematically shown electric heating coil H operative when energized to expand such material and thereby exert an outward force at the diaphragm l7.
Such force is applied through the diaphragm to' a plunger 21 in the bore 12, also madeof a rigid plastic, having a flange 22 at its inner end. A return spring 23 extends from this plunger flange to the stop flange 13 at the outer end of the bore 12 and serves normally to hold the plunger in the relatively retracted condition shown. Two metal prongs 24, 25 are attached to the outer face-of the bodypart 10 by bolts 26, 27 which extend completely through this part and also through the art-1 1 at'the rear of which they receive electric wire.
terminals 28, 29 and nuts 30, 31. Accordingly, the bolts serve also to unite the body parts 10 and 1 l and electrically connect the prongs 24, 25 respectively to the terminals 28, 29. The plunger is between the prongs, and two wires 32, 33 extend from the terminals 28, 29. As shown in the schematic of FIG. 3, one end of the heating coil H is connected to wire 32, while the other continues as a third wire 34. The plug assembly is encased within an insulative cover 35, for example, of rubber molded thereabout, and the wires 32, 33 and 34 extend through an insulative cord body 36 to the appliance or other device served by the cord.
" In the FIG. 3 schematic, the circle 37 represents an electrical appliance and dashed line 38 the division between the plug circuit, above the line, and the cord and appliance circuit. The latter includes an on-off switch 39 and additionally a pushbutton switch 40 connected between wires 33 and 34, so that the heating coil in the plug can selectively be energized by 'closure of the pushbutton conveniently .at the appliance.
When a housewife operating the appliance" wishes to' disconnect the plug from the circuit, she need only close the heater switch 40, with the resulting heating of the thermally expansive material 20 in the plug almost immediately effective to force the plunger 21 outwardly against the return spring force for automatic ejection of the plug from the receptacle. Such material .is selected to provide quick response within substantially normal plug size and it has been found that Freon, a halogenated hydrocarbon containing a fluorine atom, is verysatisfactory in this respect and also in recycling.
The inert, dielectric liquid will vaporize [art] at about 200 F.; and that part of the liquid contacted by and proximate to the heater in the plug can be almost immediately-heated to this temperature sufficiently to develop ejection force with a relatively small resistance element at normal .energization. For example, a plunger force well over the lbs. which appears reliable'for ejection from household sockets, has been developed in less than l second with a heater of about 470 watts at-l 15 volts.
When the plug is ejected, the circuit for the heater in the same is also automatically disabled along with the appliance or other cord connected device, the expansion material as quickly contracts and the return spring retracts the plunger to its normal nonobstructive position. The power output is substantial and more than adequate readily to effect disconnection of even a tightly held plug.= k
lt willalso be apparent that the number and character of the components permit economic manufacture with high efficiency and reliability. While the heating coil hasbeen shown schematically for convenience of illustration, it can in fact be a simplewire coil of sufficient heating capacity relative tovthe fluid or material used to-perform with the desired quick response.
While the plug part of the plug-receptacle combination is preferably the actuated part in the described application, it .will be appreciated generally that such anautomatic disconnect can also be realized comparably by incorporating the ejecting assembly in the receptacle, with the plunger in this case normally retracted between the socket contacts and driven outwardly against the plug to eject the latter.
Other modes of applying the principle of the invention may be employed, change being made as regards the details described, provided the features stated in any of the following claims or, the equivalents of such be employed. v
I, therefore, particularly point out and distinctly claim as my invention:
1. Athermally actuated device for converting electrical energy rapidly to mechanical energy by volume and pressure increase due to a liquid to gas phase change of aworking fluid, comprising body means, a distensible member in sealed engagement with said body means forming a fluid chamber therewith, said distensible member including an annular fold therein projecting into said fluid chamber and adapted for unfolding upon an increase of pressure in said fluid chamber, said distensible member having a central portion supported bysaid annular fold adapted for substantially linear movement away from and toward said body means, an
inert dielectric fluorinated hydrocarbon liquid filling said fluid chamber when said distensible member is in a folded condition, electrical resistance heating means supported in said body means, being disposed in said fluid chamber and completely submerged in said liquid for heating that portion of said liquid in contact therewith to vaporization temperature, thereby to raise the pressure insaid fluid. chamber and cause movement of said distensible member and further comprising means for confining said distensible member for such substantially linear movement, said confining means being exterionof said body means and rigidly connected,
thereto.
2. A thermally actuated device as set forth in claim 1 further comprising a plunger supported for linear movement in said confining means, said plunger being in abutment with said central portion of said distensible member, and a spring in en ggement with said plunger for urging s'ame'against said distensible member.
I 3 A thermally actuated device as set forth in claim 2 wherein said distensible member is a rubber diaphragm adapted for distension without stretching, by rolling along said annular fold therein, thereby providing substantially no resistance to movement of said central portion. i
4. A thermally actuated device as set forth in claim 3 wherein said body means comprises a rigid cup and said diaphragm: is secured at the mouth of said cup, said annular fold being fully received within said cup and adapted for unfolding exteriorly thereof to provide linear movement of said central portion greater than the depth of said cup. g
5. A thermally actuated device as set forth in claim 4 wherein said confining means comprises a cylindrical member rigidly secured to said cup and adapted for support of said plunger and said spring.
6. A thermally actuated device for converting electrical energy rapidly to mechanical energy by volume and pressure increase due to a gas producing phase change of a working medium, comprising a body, extensible means in sealed engagement with said body for forming a variable volume working medium chamber therewith, said means adapted for enlargement of the latter upon an increase of pressure therein, said means being supported for movement away from and toward said body, a thermally expansive working medium substantially filling said chamber when said means is in its non-extended condition relative to said body, electrical resistance heating means within said. body, being disposed in said chamber and completely surrounded by said working medium for heating that portion of said working medium in contact therewith to a temperature at which a gas producing phase change occurs, thereby to raise the pressure in said chamber and causemovement of said extensible means, and further means for confining said extensible means for substantially linear movement thereof, said further means being exterior of said body and rigidly connected thereto.
7. A thermally actuated device for converting electrical energy rapidly to mechanical energy by volume and pressure increase due to a liquid to gas phase change of a working fluid, comprising a body, extensible means in sealed engagement with said body for forming a variable volume fluid chamber therewith, said means adapted for enlargement of the latter upon an increase of pressure therein, said means being supported for movement away from and toward said body, an inert dielectric fluorinated hydrocarbon liquid substantially filling said fluid chamber when said means is in its non-extended condition relative to said body, electrical resistance heating means within said body, being disposed in said fluid chamber and completely submerged in said liquid for healing that portion of said liquid in contact therewith to vaporization temperature, thereby to raise the pressure in said fluid chamber and cause movement of said extensible means, and furtherrcomprising means for confining said extensible means for such substantially linear movement, said further means being exterior of said body and rigidly con nected thereto 8. A thermally actuated device for converting electrical energy rapidlytto mechanical energy by volume and pressure increase due to a gas. producing phase change of a sistance heating means within said body, being disposed in said chamber and completely surrounded by said working medium for heating that portion of said working medium in contact therewith to a temperature at which a gas producing phase change occurs, thereby to raise the pressure in said chamber and cause movement of said distensible member, and further comprising means for confining said distensible member for such substantially linear movement, said means being exterior of said body and rigidly connected thereto.

Claims (8)

1. A thermally actuated device for converting electrical energy rapidly to mechanical energy by volume and pressure increase due to a liquid to gas phase change of a working fluid, comprising body means, a distensible member in sealed engagement with said body means forming a fluid chamber therewith, said distensible member including an annular fold therein projecting into said fluid chamber and adapted for unfolding upon an increase of pressure in said fluid chamber, said distensible member having a central portion supported by said annular fold adapted for substantially linear movement away from and toward said body means, an inert dielectric fluorinated hydrocarbon liquid filling said fluid chamber when said distensible member is in a folded condition, electrical resistance heating means supported in said body means, being disposed in said fluid chamber and completely submerged in said liquid for heating that portion of said liquid in contact therewith to vaporization temperature, thereby to raise the pressure in said fluid chamber and cause movement of said distensible member and further comprising means for confining said distensible member for such substantially linear movement, said confining means being exterior of said body means and rigidly connected thereto.
2. A thermally actuated device as set forth in claim 1 further comprising a plunger supported for linear movement in said confining means, said plunger being in abutment with said central portion of said distensible member, and a spring in enggement with said plunger for urging same against said distensible member.
3. A thermally actuated device as set forth in claim 2 wherein said distensible member is a rubber diaphragm adapted for distension without stretching, by rolling along said annular fold therein, thereby providing substantially no resistance to movement of said central portion.
4. A thermally actuated device as set forth in claim 3 wherein said body means comprises a rigid cup and said diaphragm is secured at the mouth of said cup, said annular fold being fully received within said cup and adapted for unfolding exteriorly thereof to provide linear movement of said central portion greater than the depth of said cup.
5. A thermally actuated device as set forth in claim 4 wherein said confining means comprises a cylindrical member rigidly secured to said cup and adapted for support of said plunger and said spRing.
6. A thermally actuated device for converting electrical energy rapidly to mechanical energy by volume and pressure increase due to a gas producing phase change of a working medium, comprising a body, extensible means in sealed engagement with said body for forming a variable volume working medium chamber therewith, said means adapted for enlargement of the latter upon an increase of pressure therein, said means being supported for movement away from and toward said body, a thermally expansive working medium substantially filling said chamber when said means is in its non-extended condition relative to said body, electrical resistance heating means within said body, being disposed in said chamber and completely surrounded by said working medium for heating that portion of said working medium in contact therewith to a temperature at which a gas producing phase change occurs, thereby to raise the pressure in said chamber and cause movement of said extensible means, and further means for confining said extensible means for substantially linear movement thereof, said further means being exterior of said body and rigidly connected thereto.
7. A thermally actuated device for converting electrical energy rapidly to mechanical energy by volume and pressure increase due to a liquid to gas phase change of a working fluid, comprising a body, extensible means in sealed engagement with said body for forming a variable volume fluid chamber therewith, said means adapted for enlargement of the latter upon an increase of pressure therein, said means being supported for movement away from and toward said body, an inert dielectric fluorinated hydrocarbon liquid substantially filling said fluid chamber when said means is in its non-extended condition relative to said body, electrical resistance heating means within said body, being disposed in said fluid chamber and completely submerged in said liquid for heating that portion of said liquid in contact therewith to vaporization temperature, thereby to raise the pressure in said fluid chamber and cause movement of said extensible means, and further comprising means for confining said extensible means for such substantially linear movement, said further means being exterior of said body and rigidly connected thereto.
8. A thermally actuated device for converting electrical energy rapidly to mechanical energy by volume and pressure increase due to a gas producing phase change of a working medium, comprising a body, a distensible member in sealed engagement with said body forming a variable volume working medium chamber therewith, said distensible member including an annular fold therein projecting into said chamber and adapted for unfolding upon an increase of pressure therein, said distensible member having a central portion supported by said annular fold adapted for substantially linear movement away from and toward said body, a thermally expansive working medium substantially filling said chamber when said distensible member is in a folded condition, electrical resistance heating means within said body, being disposed in said chamber and completely surrounded by said working medium for heating that portion of said working medium in contact therewith to a temperature at which a gas producing phase change occurs, thereby to raise the pressure in said chamber and cause movement of said distensible member, and further comprising means for confining said distensible member for such substantially linear movement, said means being exterior of said body and rigidly connected thereto.
US39914173 1968-08-21 1973-09-20 Self-ejecting electric plug Expired USRE28545E (en)

Priority Applications (4)

Application Number Priority Date Filing Date Title
US754188A US3609635A (en) 1968-08-21 1968-08-21 Self-ejecting electric plug
US00131511A US3784958A (en) 1968-08-21 1971-04-05 Self-ejecting electric plug
US39914173 USRE28545E (en) 1968-08-21 1973-09-20 Self-ejecting electric plug
BE2055184A BE844137Q (en) 1968-08-21 1976-07-15 TRIGGER AND CONNECTOR

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Application Number Priority Date Filing Date Title
US75418868A 1968-08-21 1968-08-21
US13151171A 1971-04-05 1971-04-05
US39914173 USRE28545E (en) 1968-08-21 1973-09-20 Self-ejecting electric plug

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USRE28545E true USRE28545E (en) 1975-09-02

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US754188A Expired - Lifetime US3609635A (en) 1968-08-21 1968-08-21 Self-ejecting electric plug
US00131511A Expired - Lifetime US3784958A (en) 1968-08-21 1971-04-05 Self-ejecting electric plug
US39914173 Expired USRE28545E (en) 1968-08-21 1973-09-20 Self-ejecting electric plug

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US754188A Expired - Lifetime US3609635A (en) 1968-08-21 1968-08-21 Self-ejecting electric plug
US00131511A Expired - Lifetime US3784958A (en) 1968-08-21 1971-04-05 Self-ejecting electric plug

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US (3) US3609635A (en)
BE (1) BE844137Q (en)

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US5429221A (en) * 1993-06-07 1995-07-04 Ford Motor Company All-wheel drive free-wheel mechanism for a motor vehicle
US5480314A (en) * 1994-09-01 1996-01-02 Campbell; Edward I. Retractable electric plug
US6422883B1 (en) * 1999-10-14 2002-07-23 Piet Leopold Margriet Cools Trigger activated ejecting system for electrical plugs
US6660950B2 (en) 2001-07-24 2003-12-09 Danilo E. Fonseca Data line switch
US20120229246A1 (en) * 2009-11-05 2012-09-13 Phoenix Contact Gmbh & Co. Kg Overvoltage protection element
US20140342590A1 (en) * 2013-05-14 2014-11-20 Kuwait University Electrical outlet safety device
EP2849291A1 (en) * 2013-09-16 2015-03-18 Intercontec Pfeiffer GmbH Plug-in connection system with a socket and a plug

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US4669791A (en) * 1984-09-06 1987-06-02 Integrated Circuit Systems, Ltd. Connector apparatus
US4699235A (en) * 1986-03-24 1987-10-13 General Motors Corporation Linear actuator control system for split axle drive mechanism
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US5266040A (en) * 1992-07-20 1993-11-30 Cleaner Image Associates, Inc. Releasable electric connector assembly
JPH07272794A (en) * 1994-03-31 1995-10-20 Mitsubishi Electric Corp Connector device
FR2758414B1 (en) * 1997-01-10 2000-01-14 Francois Saby EJECTION DEVICE FOR THE MECHANICAL SEPARATION OF TWO CONNECTING ELEMENTS FROM TWO ELECTRIC CIRCUITS TO EACH OTHER AND CONNECTING ELEMENT PROVIDED WITH SUCH A DEVICE
US6540533B1 (en) 1997-08-12 2003-04-01 James W. Schreiber Remote electrical plug ejector
AU8811398A (en) * 1997-08-19 1999-03-08 Francois Saby Device for ejecting the mechanical separation of two elements interconnecting two electric circuits and connecting element equipped therewith
US7435260B2 (en) * 1999-08-13 2008-10-14 Ferree Bret A Use of morphogenetic proteins to treat human disc disease
US6364675B1 (en) 2000-12-06 2002-04-02 Bonnie Brauer Electrical connector with tension disconnect
US9437966B2 (en) * 2014-01-03 2016-09-06 Brainwave Research Corporation Electrical cord plug eject mechanism
US20150364866A1 (en) * 2014-01-03 2015-12-17 Brainwave Research Corporation Electrical cord plug eject mechanism
CN110867707B (en) * 2019-09-23 2021-04-16 德清县诚达金属材料有限公司 Overload protection type socket
CN112054350B (en) * 2020-07-24 2021-03-23 杜驾麟 Novel crystal head type automatic disconnection protection plug for wiring
US11634044B2 (en) 2021-08-25 2023-04-25 Herbert L. Johnson, III Charger plug release system

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US2548708A (en) * 1945-08-02 1951-04-10 Bendix Aviat Corp Electrically heated steam generator and power unit
US2612419A (en) * 1949-03-12 1952-09-30 Noel S Reynolds Piston sealing assembly
US2597890A (en) * 1949-12-20 1952-05-27 Monk Ivan Rotary power unit operable on atmospheric energy
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US3084901A (en) * 1960-11-17 1963-04-09 Powers Regulator Co Pressure compensated valve
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Cited By (10)

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Publication number Priority date Publication date Assignee Title
US5429221A (en) * 1993-06-07 1995-07-04 Ford Motor Company All-wheel drive free-wheel mechanism for a motor vehicle
US5480314A (en) * 1994-09-01 1996-01-02 Campbell; Edward I. Retractable electric plug
US6422883B1 (en) * 1999-10-14 2002-07-23 Piet Leopold Margriet Cools Trigger activated ejecting system for electrical plugs
US6660950B2 (en) 2001-07-24 2003-12-09 Danilo E. Fonseca Data line switch
US20120229246A1 (en) * 2009-11-05 2012-09-13 Phoenix Contact Gmbh & Co. Kg Overvoltage protection element
US9093203B2 (en) * 2009-11-05 2015-07-28 Phoenix Contact Gmbh & Co. Kg Overvoltage protection element
US9748063B2 (en) 2009-11-05 2017-08-29 Phoenix Contact Gmbh & Co. Kg Overvoltage protection element
US20140342590A1 (en) * 2013-05-14 2014-11-20 Kuwait University Electrical outlet safety device
US8956168B2 (en) * 2013-05-14 2015-02-17 Kuwait University Electrical outlet safety device
EP2849291A1 (en) * 2013-09-16 2015-03-18 Intercontec Pfeiffer GmbH Plug-in connection system with a socket and a plug

Also Published As

Publication number Publication date
US3609635A (en) 1971-09-28
BE844137Q (en) 1976-11-03
US3784958A (en) 1974-01-08

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