Claims
- 1. An automatic vent damper device for a combustion heating device of the type having a burner disposed in a combustion chamber and an exhaust vent ducting means for exhausting the products of combustion from said combustion chamber, said automatic vent damper device comprising:
- a damper blade movably mounted in said vent ducting and adapted to allow the passage of said combustion gases in an open position and upon moving to a closed position, adapted to substantially close said exhaust vent ducting means;
- a damper blade actuator arrangement comprising an electrically-operated actuator operative when energized to move said damper blade to said closed position;
- bias means urging said damper blade to said open position, said electrically-operated actuator acting to overcome said bias means and move said damper blade to said closed position;
- burner control circuit means energizing said electrically-operated actuator when said burner operation is discontinued;
- a fusible thermal link disposed within said vent ducting means and means locating said fusible link in said duct means so as to come into direct contact with the products of combustion passing through said ducting means with said damper blade in said closed position, said means including a cut-out opening formed in said damper blade extending in from the periphery thereof and wherein said fusible link assembly is mounted in said ducting means so as to lie in said cut-out with said damper blade in said closed position, said fusible link comprising an electrically-conductive element which melts at a predetermined temperature in said vent ducting means corresponding to the operation of said burner with said damper blade in said closed position;
- means for causing deenergization of said electrically-operated actuator upon melting of said fusible thermal link, said means including circuit means placing said fusible link in series with said burner control circuit means energizing said electrically-operated actuator whereby said automatic vent damper is failsafe in that in the event of burner operation with said electrically-operated actuator energized due to system malfunction, said electrically-operated actuator is deenergized by melting of said fusible link and interruption in said power of said electrically-operated actuator, allowing said damper blade to be opened by said bias means.
- 2. The automatic vent damper according to claim 1 wherein said electrically-operated actuator comprises a synchro-motor and wherein said damper blade is pivotally mounted within said vent ducting means and wherein said vent damper actuator further includes means causing rotation of said damper blade to said closed position by energization of said synchromotor.
- 3. The automatic vent damper according to claim 2 wherein said bias means comprises a torsional spring means opposing rotation of said damper blade by said synchro-motor and urging said damper blade to the open position.
- 4. The automatic vent damper according to claim 3 further including stop means positioning said damper blade in said open position and said closed position respectively against the urging force of said torsional spring in said open position and against said rotary force applied by said synchromotor moving said damper blade to said closed position.
- 5. The automatic vent damper according to claim 1 further including means preventing burner operation whenever said electrically-operated actuator has closed said damper blade.
- 6. The automatic vent damper according to claim 5 wherein said means preventing said burner operation includes limit switch means for controlling energization of said burner operation, said limit switch means including means closing said limit switch upon movement of said damper blade to said open position, whereby said furnace operation is precluded until said damper blade has moved to said open position.
- 7. The automatic vent damper according to claim 6 wherein said means drivingly connecting said synchro-motor output and said damper blade includes a drive gear drivingly connected to said damper blade and wherein said drive gear has a stop plate secured thereto so as to rotate together therewith, said stop plate adapted to engage said limit switch means upon rotation of said damper blade to said open position.
- 8. The automatic vent damper according to claim 7 wherein said stop means further is formed on said stop plate and includes a fixed abutment in the open position engaged by said stop means upon movement of said damper blade to said open position.
- 9. The automatic vent damper according to claim 4 wherein said stop means engaging said damper blade in said closed position comprises an abutment engaging said damper blade as said damper blade is rotated to the closed position by said electrically-operated actuator means.
- 10. The automatic vent damper according to claim 1 further including a damper housing adapted to be joined to sections of said vent exhaust ducting means, said damper housing means having said damper blade pivotally mounted therein, and wherein said actuator means includes actuator components mounted to said housing whereby said actuator device and said damper plate are mounted into said exhaust vent ducting means.
- 11. The automatic vent damper according to claim 10 wherein said damper housing is constructed of a cast metal, whereby to define a relatively rigid housing to prevent distortions thereof and which is corrosion-resistant to insure higher reliability of said damper blade movement.
- 12. The automatic vent damper according to claim 1 wherein said means for controlling operation of said electrically-operated actuator comprises a switching means operated by said burner control circuit means to deenergize said actuator whenever said burner is operated.
- 13. The automatic vent damper according to claim 12 wherein said switching means comprises a delay switch means controlling energization of said actuator, wherein said burner control circuit means energizes said delay switch means upon discontinuance of burner operation, and wherein said delay switch means energizes said actuator after a predetermined delay after energization of said delay switch means.
- 14. The automatic vent damper according to claim 12 wherein said switching means comprises a normally closed relay controlling energization of said actuator and wherein said burner control circuit means energize said normally closed relay whenever said burner control circuit means call for burner operation.
- 15. The automatic vent damper according to claim 12 wherein said switching means includes a solid state switching device controlled by said burner control circuit means which controls energization of said electrically-operated actuator device.
- 16. The automatic vent damper according to claim 15 wherein said solid state switching device comprises a blocking triac means connecting said burner control circuit means to said triac means to interrupt energization of said electrically-operated actuator device whenever said burner control circuit means causes operation of said burner.
- 17. The automatic vent damper according to claim 1 wherein said damper blade is formed with a cut-out opening allowing passage of products of combustion from a pilot burner and further including means mounting said fusible link in said opening whereby said fusible link may be mounted at the point within said ducting means whereat said damper blade is located, said damper blade movement in said exhaust duct means moving between said open and closed positions.
- 18. The automatic vent damper according to claim 1 further including a nonconductive spacer formed with a pair of openings extending along the length thereof, and further including conductive elements extending through said openings, said conductive elements extending out of said openings and wherein said fusible link is joined to said conductive element portions extending beyond said openings and further including means mounting said spacer extending with said fusible link into said ducting means.
- 19. The automatic vent damper according to claim 18 wherein said spacer is notched, said notches extending transversely to the axis of said spacer, wherein said means mounting said spacer includes a plate having a corresponding notch adapted to receive said spacer therein with said notches formed on said spacer and received within said slot formed in said plate to provide endwise location of said spacer.
- 20. The automatic vent damper according to claim 1 wherein said fusible link is interposed in said burner control circuit means so that by fusing of said link said burner control circuit means is deenergized whereby control signals calling for burner operation are discontinued.
- 21. The automatic vent damper according to claim 19 wherein said spacer is formed of a ceramic material.
- 22. The automatic vent damper according to claim 1 wherein said electrically-operated actuator includes a rotary electric motor, further including a drive gear driven by means driving said drive gear by said electric motor once the electric motor is energized wherein said biased force means includes a torsional spring and wherein said vent damper further includes means causing said torsional spring to be wound up in response to rotation of said driven gear by said rotary electric motor.
- 23. The automatic vent damper according to claim 22 wherein said damper blade is pivotally mounted within said ducting means and wherein said drive gear is drivingly connected to said damper blade so as to rotate therewith and wherein said torsional spring includes a spring disposed centrally with said axis of rotation of said drive gear and said damper plate.
- 24. The automatic vent damper according to claim 23 wherein said means drivingly connecting said drive gear with said damper blade includes a drive pin fixed to said drive gear and wherein said torsional spring is disposed about said drive pin, further including means connecting one end of said torsional spring to said drive gear and means anchoring said other end of said torsional spring whereby rotation of said drive gear causes wind up of said torsional spring in the direction opposite of said windings of said torsional wind up spring and wherein said direction is corresponding with the direction of rotation required to move said damper blade from said closed position to said open position.
- 25. The automatic vent damper according to claim 1 wherein said vent damper includes a damper housing, means pivotally supporting said damper blade in said damper housing so as to be movable between said open and closed positions and wherein said damper housing is formed with an internal shoulder adapted to engage said damper blade as said damper blade moves to said closed position.
- 26. The automatic vent damper according to claim 23 wherein said damper housing comprises a stepped outside diameter, the smaller of said stepped diameter adapted to mate with ducting of said furnace system with said larger diameter portion being formed with an internal diameter to receive said ducting of the same size as said ducting is received over said smaller diameter shoulder and wherein said inside diameter is formed with a shoulder adapted to located axially a section of ducting disposed therein.
- 27. The automatic vent damper according to claim 1 wherein said fusible link assembly melts at a temperature on the order of 400.degree. F.
CROSS-REFERENCE TO RELATED APPLICATION
This application is a continuation-in-part of application Ser. No. 733,260, filed Oct. 18, 1976, which is now U.S. Pat. No. 4,102,629.
US Referenced Citations (9)
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
733260 |
Oct 1976 |
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