Claims
- 1. A heat responsive releasing device comprising:
- (a) a mounting member;
- (b) a pawl member slidingly engaging said mounting member for sliding movement between at least two positions defined therealong;
- (c) latching means associated with said mounting member for selectively restraining said pawl member relative to said mounting member in at least one of said positions;
- (d) heat responsive means associated with said latching means for causing said latching means to restrain said pawl member in response to a preselected normal ambient temperature and for causing said latching means to release said pawl member in response to at least a preselected increase in said ambient temperature; and
- (e) biasing means connected between said pawl member and said mounting member for generally biasing said pawl member and said mounting member into said at least one of said position.
- 2. The invention of claim 1 wherein said heat responsive means comprises a thermo-electric cylinder.
- 3. The invention of claim 1 wherein said heat responsive means comprises a bimetallic element.
- 4. The invention of claim 1 wherein said pawl member tracks relatively along said mounting member between said at least two portions, which positions are at least restrained and activated positions defined along said mounting member.
- 5. The invention of claim 4 wherein at least one of said mounting member and said pawl member further has said fixedly connected thereto an additional substantially parallel, spaced apart member for defining a channel therebetween for slidingly receiving the other of said members.
- 6. The invention of claim 5 wherein said apparatus further comprises spacing means disposed between said members for at least establishing the distance between said spaced apart members.
- 7. The invention of claim 6 wherein said other of said members further has an aperture defined therein, and wherein said spacing means is disposed substantially within said aperture.
- 8. The invention of claim 7 wherein said device further comprises stop means for preventing sliding movement of said members relatively beyond at least one of said positions.
- 9. The invention of claim 8 wherein said stop means further comprises a portion of said spacing means which is configured to interfere with a portion of said aperture upon movement of said members relatively into said at least one of said positions.
- 10. The invention of claim 9 wherein said stop means further comprises portions of said spacing means configured to engage and interfere with generally opposing portions of said aperture to thereby limit the relative sliding movement of said members beyond said restrained and activated positions.
- 11. The invention of claim 10 wherein said device further comprises tracking means, said tracking means comprising portions of said spacing means disposed to slidingly engage at least an edge of said aperture during the movement of said members relatively between said restrained and activated positions to guide said members during said movement between said positions.
- 12. The invention of claim 11 wherein said aperture comprises a slot defined in one of said members.
- 13. The invention of claim 12 wherein said spacing means, tracking means, and stop means comprise surfaces of an elongate spacing member disposed between said pawl and mounting members, the longitudinal surfaces of which are configured to slidingly engage interior surfaces of said slot defined in said other of said members, and the end surfaces of which are configured to engage interior surfaces of the ends of said slot to interfere with the movement of said pawl and mounting members relative to each other to thereby define said restrained and activated positions.
- 14. The invention of claim 12 wherein said spacing means, track means, and stop means comprise a plurality of spacing members disposed within said aperture.
- 15. The invention of claim 14 wherein said spacing members further comprise bushings disposed within said aperture, generally opposing surfaces of each of said bushings being sized to slidingly engage interior longitudinal surfaces of said slot.
- 16. The invention of claim 15 wherein portions of two of said bushings are disposed generally within said slot to engage interior surfaces of the ends of said slot upon movement of said members between said restrained and activated positions, said engagement creating an interference which prevents said members from being moved relatively beyond said restrained and activated positions.
- 17. The invention of claim 5 wherein said apparatus further comprises force amplification means connected between said latching means and said heat responsive means for amplifying the forces exerted by said heat responsive means upon said latching means.
- 18. The invention of claim 17 wherein said force amplification means further comprises a lever.
- 19. The invention of claim 17 wherein said latching means further comprises a pin associated with said mounting member and an aperture defined in said pawl member for receiving said pin.
- 20. The invention of claim 20 wherein said lever is pivotally mounted to said mounting member and has said pin mounted thereon.
- 21. The invention of claim 19 wherein said heat responsive means engages at least a portion of said lever to release said pawl member in response to said preselected increase in said ambient temperature by displacing at least a portion of said lever engaged thereby to draw said pin from said aperture.
- 22. The invention of claim 21 wherein said force amplification means further comprises spring means for biasing said lever generally towards said heat responsive means and for biasing said pin generally into said aperture.
- 23. The invention of claim 22 wherein said pin has a bevelled surface disposed thereon for, under normal ambient temperature conditions receiving and engaging at least a portion of said pawl member as said pawl and mounting members are moved into their restrained position, and for cooperating with at least a portion of said pawl member for overcoming said biasing of said spring means until said members have reached their restrained position, whereupon said pin is biased into said aperture.
- 24. The invention of claim 22 wherein said pawl means defines a surface which, under normal ambient temperature conditions, receives and engages a portion of said pin to displace said pin as said pawl member and mounting member are moved into said restrained position to thereby overcome the biasing of said spring means at least until said members move into said restrained position, whereupon said pin is biased into said aperture.
- 25. The invention of claim 17 wherein said force amplification means further comprises a guide means mounted on said mounting member and extending through an aperture in said lever for preventing the rotation of said lever about its fulcrum.
- 26. The invention of claim 1 wherein said latching means comprises at least one latching aperture defined in said pawl member, and at least one latching member associated with said mounting member, said latching member being biased by said heat responsive means into said aperture in response to said preselected normal ambient temperature.
- 27. The invention of claim 26 wherein said latching aperture is configured to receive said latching member when said pawl and mounting members are in their restrained positions, and to prevent the reception of said latching member when said members are moved toward said activted position.
- 28. The invention of claim 27 wherein said aperture is configured to receive at least a portion of said heat responsive means during the relative sliding of said pawl and mounting members toward said activated position.
- 29. The invention of claim 1 wherein said biasing means further comprises a negator-type spring.
- 30. The invention of claim 29 wherein said negator spring is connected between portions of said mounting member and said pawl member to exert forces on said members along an axis a path which is substantially parallel to the path of sliding engagement of said mounting and said pawl members.
CROSS-REFERENCE TO RELATED APPLICATIONS
The present application is a continuation-in-part of my prior co-pending patent application Ser. No. 779,044, filed Mar. 18, 1977 entitled, "Telescoping Heat Responsive Releasing Means", now U.S. Pat. No. 4,099,292, dated July 11, 1978, which in turn is a continuation-in-part of my prior co-pending patent application entitled, "An Electrical Pneumatic Heat Actuated Fire Link Apparatus", Ser. No. 676,483, filed Apr. 13, 1976, now U.S. Pat. No. 4,041,570, dated Aug. 16, 1977, as well as a continuation-in-part of my prior co-pending patent application entitled, "Clutch Motor For Use In Resettable Fire Damper", Ser. No. 676,413, filed Apr. 13, 1976, now U.S. Pat. No. 4,040,304, dated Aug. 9, 1977, which applications are incorporated herein by reference as if fully set forth herein.
The present application is also a continuation-in-part of my prior co-pending patent application Ser. No. 764,774, filed Feb. 2, 1977 entitled, "Rotating Blade Fire Damper", which in turn is a continuation of application Ser. No. 689,994, filed May 26, 1976 entitled, "Rotating Blade Fire Damper", now U.S. Pat. No. 4,081,173, dated Mar. 28, 1978, which applications are also incorporated by reference as if fully set forth herein.
The present application is also a continuation-in-part of my prior co-pending patent application entitled, "Electro-Thermal Fire Protection Locking Clip", Ser. No. 896,237, filed Apr. 14, 1978, which application is also specifically incorporated herein by reference.
US Referenced Citations (5)
Continuations (1)
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Continuation in Parts (5)
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