US3796981A - Fail safe thermostatic switch - Google Patents
Fail safe thermostatic switch Download PDFInfo
- Publication number
- US3796981A US3796981A US00286154A US3796981DA US3796981A US 3796981 A US3796981 A US 3796981A US 00286154 A US00286154 A US 00286154A US 3796981D A US3796981D A US 3796981DA US 3796981 A US3796981 A US 3796981A
- Authority
- US
- United States
- Prior art keywords
- contact
- metal
- temperature
- switch according
- fusible
- 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
Links
Images
Classifications
-
- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01H—ELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
- H01H71/00—Details of the protective switches or relays covered by groups H01H73/00 - H01H83/00
- H01H71/10—Operating or release mechanisms
- H01H71/12—Automatic release mechanisms with or without manual release
- H01H71/14—Electrothermal mechanisms
- H01H71/20—Electrothermal mechanisms with fusible mass
Definitions
- Temperature responsive switches are widely used in electrical temperature control devices of various types. Often control is achieved by utilizing the deformation resulting in a combination of dissimilar metals as temperature changes.
- a well-known type of switch is the tension switch in which the ends of an arcuate element are secured to the ends of a linear element.
- One of the elements is formed of metal with a high coefficient of expansion and the other element is formed of metal with a low coefficient of expansion. Therefore, as the temperature changes the radius of curvature of the arcuate element changes and the central portion thereof moves in a path substantially perpendicular to the linear element.
- a contact mounted on the arcuate member engages and disengages another contact during the reciprocating perpendicular motion and thus provides temperature responsive switching.
- Prior switches of this type are disclosed in US. Pat. Nos. 2,307,867, 2,257,990, and 2,090,407.
- a difficulty encountered in the use of a tension switch is that contact movement is not rapid or great. Short contact travel, coupled with high current requirements can in isolated instances cause arcing and subsequent welding of the contacts in a closed position. In such cases overheating of the controlled apparatus can occur since the welded contacts continue to supply power thereto. Similar problems can result from the inadvertent use of thermostatic switches with operating temperature settings higher than control temperatures desired.
- the object of this invention is to provide a temperature responsive switch with overload protection apparatus that positively opens the switch in the event of overheating caused by failure of the primary contacts to operate properly.
- This invention is characterized by a temperature responsive switch including a pair of electrical contacts that open and close in response to temperature transitions spanning a contact temperature.
- Lead wires running from the contacts connect the switch to the controlled circuit.
- the lead wires are attached to the contacts by a fusible coupling that melts at a preselected fuse temperature that is higher than the contact temperature.
- a bias mechanism urges each lead wire away from the contacts so as to disconnect it therefrom when the fusible coupling melts. In the event of overheating caused by failure of the contacts to open at a desired contact temperature, the fusible coupling melts allowing the bias mechanism to separate the lead wire from the contact and thereby open the circuit.
- a feature of the invention is the utilization of a fusible coupling such as solder to connect the lead wires to the contacts and the inclusion of a spring as a bias apparatus.
- a fusible coupling such as solder
- a spring as a bias apparatus.
- Another feature of the invention is its incorporation into a tension switch wherein the coupling between the arcuate members and the linear member is adjustable thereby permitting adjustment of the preselected contact temperature. Provision for temperature adjustment renders the switch useful for a variety of applications. In any case, however, the fusible coupling selected should have a melting point higher than the preselected contact temperature of the switch.
- FIG. 1 is a sectional view of the subject switch assemy
- FIG. 2 is a sectional view of the switch shown in FIG. 1 taken along the line 22;
- FIG. 3 is a sectional view taken along the line 3-3 showing the switch contacts and fusible couplings in greater detail
- FIG. 4 is a fragmentary, broken away view of the interior of the switch after the fusible coupling has melted.
- FIG. 1 there is shown a temperature responsive switch 21 that is connected to an external circuit by a first lead wire 22 and a second lead wire 23.
- a linear cylindrical casing element 24, a first end cap 25 and a second end cap 26 form a unitary capsule.
- the casing 24 is fabricated from ametal with a relatively high coefficient of expansion as, for example, brass.
- a first switch contact 27 is supported by a first arcuate member 28 and a second metal contact 29 is supported by a second arcuate member 31.
- Each of the arcuate members 28 and 31 is formed of a metal with a low co efficient of expansion as, for example, a nickel-iron alloy so as to function as a temperature responsive actuator for the contacts 27 and 29.
- each of the arcuate members 28 and 31 is anchored in an attachment block 32 that is mounted on a shaft 33 and restrained by a flange 34 thereon.
- the shaft 33 is locked in the end block 25 by a pin 35.
- the opposite end of each of the arcuate members 28 and 31 is clamped in a second attachment block 36, the interior of which is threaded.
- An adjustment screw 37 is received by the threaded interior.
- the smooth shank 38 of the adjustment screw 37 rotates freely in a smooth hole in the end cap 26 and the inward motion of the screw is limited by a head 39.
- the spring action of the arcuate members 28 and 31 draws the attachment blocks 32 and 36 together and thus the head 39 of the attachment screw 37 is held against the end cap 26.
- a screw driver can be inserted in a slot 41 in the attachment screw 37 and rotation thereof adjusts the spacing between the attachment blocks 32 and 36.
- FIG. 2 it is seen that two ribs 45 on the interior of the casing 24 are received by mating slots 46 in the attachment block 36 and thus the block cannot rotate as the attachment screw is turned.
- the contact 27 is supported by a contact mount 51 that is wrapped around the arcuate 3, member 28 but is separated therefrom by an insulator 52.
- the contact 29 is mounted by a contact mount 53 that is separated from the arcuate member 31 by an insulator.
- the conductive portion 55 of the lead wire 22 is connected to the contact mountSl by a fusible coupling 56 such as, for example, solder.
- the coupling 56 melts at a temperature selected to be higher than the highest anticipated operating temperature of the switch 21.
- the conducting portion 57 of the lead wire 23 is connected to the contact mount 53 by a fusible coupling 58.
- Each of the wires 22 and 23 is wrapped around the screw 37 at least one turn to minimize stress exerted on the contact mounts 51 and 53.
- Anchored in theattachment block 36, and urging the wire 22 away from the contact 27 is a bias spring 61.
- mounting and urging the lead wire 23 from the contact 29 is a second bias spring 62.
- a cylindrical insulator 63 covers the interior of the casing 24 in the vicinity of the contacts 27 and 29.
- the various parts are assembled in the absence of the cylindrical casing 24 and the end cap 25.
- the adjusting screw 37 is set so that the attachment block 36 is toward the left end 64 thereof.
- the cylindrical casing 24 is slipped into place and the end cap 25 is placed with the shaft 33 passing therethrough.
- the switch 21 is locked together by insertion of the pin 35.
- the attachment block 36 is near the left end 64 of the adjustment screw 37, the attachment block 32 is located near the center of the shaft 33 rather than against the flange 34.
- positioning of the shaft 33 to receive the pin 35 is simplified.
- Equilibration of the switch 21 at the preselected contact temperature begins calibration.
- the cylindrical casing 24 is at the preselected temperature and thus, at its corresponding preselected critical length.
- the adjustment screw 37 is turned in a clockwise direction to draw the attachment block 36 toward the end .cap 26 and the block 32 toward the flange 34.
- the attachment block 32 reaches the flange 34 and thus can travel no further the contacts 27 and 29 are separated as the attachment blocks 32 and 36 are separated straightening the arcuate members 28 and 31.
- the adjustment screw 37 is rotated until the contacts 27 and 29 just separate as registered by an ohmmeter connected to the lead wires 22 and 23.
- the solder couplings 56 and 58 melt to release the leads 22 and 23.
- Overheating could be caused, for example, by failure of the contacts 27 and 29 to open at a desired control temperature thereby providing a continuous flow of power to a heating unit and a resultant excessive rise in ambient temperature.
- the contact failure could result from an inadvertently high contact temperature setting or from a mechanical failure.
- the bias spring 61 forces the lead wire 22 against the insulation 63 and thereby positively disconnects the leads 22 and 23.
- melting of fusible coupling 58 allows the bias spring 62 to force the wire 23 against the insulation 63.
- the circuit being controlled is automatically opened in response to any inadvertent overheating of the switch 21..
- a thermally responsive switch comprising:
- electrical contact means for opening and closing an electrical circuit
- temperature responsive actuator means for opening and closing said contact means in response to temperature transitions spanning a preselected contact temperature; lead means for connecting said contact means to an electrical circuit; fusible coupling means connecting said lead means to said electrical contact means and exposed to the same ambient temperature therewith, said fusible coupling means adapted to melt at a preselected fuse temperature that is higher than said contact temperature; and separation means for insuring permanent separation of said lead means and said electrical contact means for producing disconnection therebetween when said fusible coupling means fuses.
- a switch according to claim 1 wherein said separation means comprises bias means disposed so as to urge separation of said lead means and said electrical contact means for producing disconnection therebetween when said fusible coupling means fuses.
- a switch according to claim 2 wherein said fusible coupling means is in thermal contact with said contact means and is responsive to the temperature thereof.
- a switch according to claim 4 wherein said bias means comprises a spring for separating said lead wire from said metal contact when said fusible metal melts.
- said actuator means comprises a metal linear actuator with a given coefficient of thermal expansion and further comprises an arcuate metal member with a lower coefficient of thermal expansion that supports said metal contact, the ends of said arcuate member being secured to the ends of said linear actuator by attachment means and said metal contact being mounted on said arcuate member so as to move in a path substantially perpendicular to said linear actuator as the length thereof changes in response to temperature.
- a switch according to claim 6 wherein said contact means comprises a second metal contact disposed to said substantially perpendicular path of said metal contact so as to be connected and disconnected therewith in response to changes in length of said actuator.
- attachment means comprises adjustment means so that said preselected critical length and said preselected contact temperature are adjustable.
- a switch according to claim 7 comprising casing 6 means for enclosing the components thereof.
- a switch according to claim 9 wherein said casing means comprises'said linear actuator means.
- a switch according to claim 11 comprising a second opposing arcuate member that is secured by said attachment means and wherein said second metal contact is mounted on said second arcuate member and travels in said substantially perpendicular path.
Landscapes
- Fuses (AREA)
- Thermally Actuated Switches (AREA)
Abstract
Description
Claims (12)
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
US28615472A | 1972-09-05 | 1972-09-05 |
Publications (1)
Publication Number | Publication Date |
---|---|
US3796981A true US3796981A (en) | 1974-03-12 |
Family
ID=23097331
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
US00286154A Expired - Lifetime US3796981A (en) | 1972-09-05 | 1972-09-05 | Fail safe thermostatic switch |
Country Status (1)
Country | Link |
---|---|
US (1) | US3796981A (en) |
Cited By (6)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US4415796A (en) * | 1981-05-04 | 1983-11-15 | General Electric Company | Electric iron with unitary thermostat and overtemperature control assembly |
US4433231A (en) * | 1981-05-04 | 1984-02-21 | General Electric Company | Electric iron having stacked thermostat assembly with integral overtemperature protection control |
US5394289A (en) * | 1994-05-02 | 1995-02-28 | Rocom Electric Co. Ltd. | Fuse opening linkage apparatus for immersion detection circuit interrupter |
US20050143770A1 (en) * | 2003-07-31 | 2005-06-30 | Carter Matthew P. | Distal wire stop |
US20080117016A1 (en) * | 2006-11-22 | 2008-05-22 | Tsung-Mou Yu | Temperature Fuse Protection Device |
US20110211284A1 (en) * | 2008-04-21 | 2011-09-01 | Sony Chemical & Information Device Corporation | Protective element and method for producing the same |
-
1972
- 1972-09-05 US US00286154A patent/US3796981A/en not_active Expired - Lifetime
Cited By (8)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US4415796A (en) * | 1981-05-04 | 1983-11-15 | General Electric Company | Electric iron with unitary thermostat and overtemperature control assembly |
US4433231A (en) * | 1981-05-04 | 1984-02-21 | General Electric Company | Electric iron having stacked thermostat assembly with integral overtemperature protection control |
US5394289A (en) * | 1994-05-02 | 1995-02-28 | Rocom Electric Co. Ltd. | Fuse opening linkage apparatus for immersion detection circuit interrupter |
US20050143770A1 (en) * | 2003-07-31 | 2005-06-30 | Carter Matthew P. | Distal wire stop |
US20080117016A1 (en) * | 2006-11-22 | 2008-05-22 | Tsung-Mou Yu | Temperature Fuse Protection Device |
US7639114B2 (en) * | 2006-11-22 | 2009-12-29 | Tsung-Mou Yu | Temperature fuse protection device |
US20110211284A1 (en) * | 2008-04-21 | 2011-09-01 | Sony Chemical & Information Device Corporation | Protective element and method for producing the same |
US8767368B2 (en) * | 2008-04-21 | 2014-07-01 | Dexerials Corporation | Protective element and method for producing the same |
Similar Documents
Publication | Publication Date | Title |
---|---|---|
JP3017950B2 (en) | Current / temperature composite fuse | |
JP2820703B2 (en) | Temperature current sensor | |
US8581686B2 (en) | Electrically activated surface mount thermal fuse | |
US4307370A (en) | Heat sensitive circuit breaker employing meltable material | |
JPH10308150A (en) | Motor protector | |
KR100603222B1 (en) | Motor protector apparatus | |
US4876523A (en) | Switch for circuit breaker | |
US3281559A (en) | Thermal fuse having telescopically received contact members | |
US3707694A (en) | Thermally sensitive circuit control apparatus | |
JPH0432489B2 (en) | ||
US3796981A (en) | Fail safe thermostatic switch | |
US4400677A (en) | Fail safe circuit breaker | |
US5107241A (en) | Thermally responsive switch | |
US4319214A (en) | Creepless, snap action thermostat | |
US3706952A (en) | Automatically resettable thermal switch | |
US2342310A (en) | Fusible protective device | |
US4458231A (en) | Protector apparatus for dynamoelectric machines | |
US3740688A (en) | Fusible link assembly | |
US4386335A (en) | Electric plug type fuse | |
US4313047A (en) | Combined thermostatic control and thermal fuse overtemperature protector for electrical heating appliances | |
US4160968A (en) | Normally open, thermal sensitive electrical switching device | |
GB2373926A (en) | Thermal sensor | |
GB1415179A (en) | Electric switches | |
US2683788A (en) | Time lag fuse link | |
US3110788A (en) | Automatic re-set thermostatic circuit breaker |
Legal Events
Date | Code | Title | Description |
---|---|---|---|
AS | Assignment |
Owner name: FENWAL INCORPORATED, A CORP. OF DE, MASSACHUSETTS Free format text: NUNC PRO TUNC ASSIGNMENT;ASSIGNOR:KIDDE, INC.;REEL/FRAME:005004/0713 Effective date: 19880402 Owner name: KIDDE, INC. Free format text: MERGER;ASSIGNORS:HIMP-2 INC.;HIMP-2 INC. (CHANGED TO);REEL/FRAME:005046/0017 Effective date: 19880331 |
|
AS | Assignment |
Owner name: BLOOM-1 INC., A CORP. OF DE Free format text: MERGER;ASSIGNOR:KIDDE INC.;REEL/FRAME:005359/0391 Effective date: 19880331 |