IP Library › Granted Patent US 8,971,695
Granted Patent B2
US 8,971,695 · App. 12/755,746 · Granted Mar 3, 2015

Portable heater

Inventors: Neil R. Tyburk (Canton, OH); Patrick M. Nolan (Canton, OH)
Assignee: Suarez Corporation Industries
F24H3/0417F24H9/0063F24H9/0073F24H9/02
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 8,971,695
App. No.
12/755,746
Granted
Mar 3, 2015
Kind
B2
Abstract

A heater is provided with a heater core having a source of thermal energy in a heat exchange relationship with a heat exchanger. A fan moves air through the heater core from an air inlet to an air outlet. The heater core is thermally insulated by an air jacket from an exterior case.

Claims (46)

1. A heater, comprising:

an exterior case comprising an air inlet and an air outlet;

a heater core within the exterior case and being in communication with the air inlet and the air outlet;

a fan communicating with the air inlet and the air outlet for moving air through the heater core;

said heater core comprising a source of thermal energy and a heat exchanger, the heat exchanger comprising an inner duct and an outer duct, the inner duct being disposed adjacent and surrounding the source of thermal energy and the outer duct surrounding the inner duct to define an intermediate chamber between the inner and outer ducts;

said inner and outer ducts of said heat exchanger each oriented along a longitudinal axis extending between walls of said exterior case wherein said air inlet and air outlet are disposed, and

wherein the heat exchanger is removably coupled to the heater to permit removal of the heat exchanger as a modular unit that comprises all of the outer duct, inner duct, intermediate chamber and the source of thermal energy.

2. The heater of claim 1 , wherein the inner duct is arranged generally concentric with the outer duct.

3. The heater of claim 1 , wherein the source of thermal energy is an infrared emitter.

4. The heater of claim 1 , further comprising a dividing wall separating the heater core into a first portion adjacent the air inlet and a second portion adjacent the air outlet, the dividing wall inhibiting fluid communication between the air inlet and air outlet.

5. The heater of claim 4 , wherein the dividing wall has an opening extending therethrough and the heat exchanger is in fluid communication with the opening, such that air moving through the heater core from the first portion to the second portion is forced to proceed through the heat exchanger.

6. The heater of claim 1 , further comprising an air jacket extending at least partially between the exterior case and the heater core, the air jacket being in fluid communication with the air inlet and air outlet to provide a cooling airflow through the air jacket.

7. The heater of claim 1 , wherein the heat exchanger comprises a bracket adapted to positively couple the source of thermal energy to the heat exchanger, the bracket being at least partially removable from the heat exchanger to permit replacement of the source of thermal energy without removal of the heat exchanger from the heater.

8. The heater of claim 1 , wherein the heat exchanger further comprises a spacing coupler extending between and coupling the inner duct to the outer duct.

9. The heater of claim 1 , wherein at least one of said inner and outer ducts comprises a cylinder.

10. The heater of claim 9 , wherein said at least one of said inner and outer ducts that comprises a cylinder further comprises a circular cross-section.

11. The heater of claim 9 , wherein said inner duct comprises a cylinder and said outer duct comprises a cylinder.

12. The heater of claim 1 , further comprising an air pathway extending through the heater along said longitudinal axis, and wherein the source of thermal energy is mounted within the heater core along an axis generally parallel to said longitudinal axis.

13. The heater of claim 1 , wherein the heat exchanger comprises a mounting plate coupled to the outer duct, the mounting plate being removably coupled to the heater to permit removal of the source of thermal energy.

14. The heater of claim 13 , wherein the heat exchanger is coupled to the heater via a twist-lock arrangement.

15. A heater, comprising:

an exterior case comprising an air inlet and an air outlet;

a heater core within the exterior case and being in communication with the air inlet and the air outlet;

a fan communicating with the air inlet and the air outlet for moving air through the heater core;

said heater core comprising a source of thermal energy and a heat exchanger, the heat exchanger being disposed within the heater core and extending along a longitudinal axis extending between walls of said exterior case wherein said air inlet and air outlet are disposed, the heat exchanger comprising an inner duct surrounding the source of thermal energy and an outer duct surrounding the inner duct; and

an air pathway defining a path of air movement progressing from the air inlet, through the heat exchanger, and out the air outlet,

wherein the heat exchanger comprises a mounting plate coupled to the outer duct, the mounting plate being removably coupled to the heater to permit removal of the heat exchanger as a modular unit that comprises all of the outer duct, inner duct, and the source of thermal energy, and

wherein the mounting plate is coupled to the heater via a twist-lock arrangement.

16. The heater of claim 15 , wherein the air pathway includes a serpentine pathway progressing through the heat exchanger.

17. The heater of claim 15 , further comprising a dividing wall separating the heater core into a first portion adjacent the air inlet and a second portion adjacent the air outlet, the dividing wall inhibiting fluid communication between the air inlet and air outlet, the dividing wall further comprising an opening extending therethrough and the heat exchanger being in fluid communication with the opening, such that air moving through the heater core is forced to proceed through the heat exchanger.

18. The heater of claim 15 , further comprising an air jacket extending at least partially between the exterior case and the heater core, the air jacket being in fluid communication with the air inlet and air outlet to provide a cooling airflow through the air jacket.

19. The heater of claim 15 , wherein at least one of said inner and outer ducts comprises a cylinder.

20. The heater of claim 15 , wherein the air pathway extends along the outer duct of the heat exchanger, then through an intermediate chamber between the inner and outer ducts, and then through the inner duct and along the length of the source of infrared energy, prior to being discharged out the air outlet.

21. A heater, comprising:

an exterior case comprising an air inlet and an air outlet;

a heater core within the exterior case and being in communication with the air inlet and the air outlet;

a dividing wall separating the heater core into a first portion adjacent the air inlet and a second portion adjacent the air outlet, the dividing wall inhibiting fluid communication between the air inlet and air outlet, the dividing wall further comprising an opening extending therethrough;

a fan communicating with the air inlet and the air outlet for moving air through the heater core;

said heater core comprising a source of thermal energy and a heat exchanger, the heat exchanger being disposed within the heater core and comprising an inner duct surrounding said source of thermal energy and an outer duct surrounding the inner duct,

wherein the heat exchanger is in fluid communication with the opening, such that air moving through the heater core from the first portion to the second portion is forced to proceed through the heat exchanger prior to being discharged through said opening and thereafter through the air outlet,

wherein the heat exchanger is removably coupled to the heater to permit removal of the heat exchanger as a modular unit that comprises all of the outer duct, inner duct, and the source of thermal energy.

22. The heater of claim 21 , wherein the inner duct is coupled to the dividing wall about the opening.

23. The heater of claim 21 , wherein the heat exchanger is disposed within the heater core and extends along a longitudinal axis extending between walls of said exterior case wherein said air inlet and air outlet are disposed.

24. The heater of claim 21 , further comprising an air jacket extending at least partially between the exterior case and the heater core, the air jacket being in fluid communication with the air inlet and air outlet to provide a cooling airflow through the air jacket.

25. The heater of claim 21 , wherein at least one of said inner and outer ducts comprises a cylinder.

26. The heater of claim 21 , wherein the heat exchanger further comprises a bracket adapted to positively couple the source of thermal energy to the heat exchanger, the bracket being at least partially removable from the heat exchanger to permit replacement of the source of thermal energy without removal of the heat exchanger from the heater.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 27, 2010
From: TYBURK, NEIL R.; NOLAN, PATRICK M.
To: SUAREZ CORPORATION INDUSTRIES
Reel/Frame 024293/0027 →
Continuity (2)
Provisional Application 61167339 · Apr 7, 2009
Related Publication 20100254686A1 · Oct 7, 2010