Crematory with incinerator
A crematory having a plurality of sides is constructed around a base section. A cremation surface is located at a position within the base section that allows the loading of a body from a loading level, no higher than about a person's waist level above a floor from which loading of the crematory takes place, at least one of the sides of the crematory. A crematory door is mounted to move to closed and open positions. When in the closed position, the crematory door covers at least substantially one side of the crematory above the cremation surface and extends substantially over the cremation surface from about the loading level. When in the open position, the crematory door allows a body to be cremated to be loaded onto the cremation surface from the loading level at least one of the sides of the crematory.
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This application takes priority from U.S. provisional application 60/624,900 filed on Nov. 3, 2004, which is incorporated herein by reference.
BACKGROUNDCrematories are used in a variety of applications where it is desirable to cremate dead bodies, including animal carcasses, the remains of deceased humans, and other organic materials. The initial cremation operation, in which a body is placed into a hearth and then consumed by intense heating, can typically require that the crematory achieve hearth temperatures of up to 1600° F. to 2000° F. or more. Crematories also typically include an incinerator to receive flue products from the crematory hearth. The incinerator burns particles contained in the flue products from the hearth to ensure, for environmental purposes, that all matter coming from the hearth has been totally consumed. The incineration operation can typically require that the incinerator itself achieve temperatures of up to 1825° F. to 2000° F. or more.
In many cremation facilities, especially those employed by animal welfare and control organizations, it is common for bodies to vary greatly in size prior to cremation. Due to such body size variations, it is also common for multiple bodies of different sizes to be loaded (or “charged”) into a crematory at one time so that the multiple bodies can be simultaneously cremated during a single cremation cycle, reducing overall operation times and costs. Thus, an operator will frequently charge a crematory with a small number of larger bodies along with any number of smaller bodies to maximize the amount of biomass that is cremated during a single cremation cycle.
Consequently, even if many small bodies are to be simultaneously cremated during a single cremation cycle, it is also highly likely that an operator will eventually need to charge the crematory with one or more larger bodies. However, the bodies of larger animals can weigh more than a hundred pounds and therefore be extremely difficult to lift for charging. Many previous crematories require that charging be performed from above the crematory apparatus or from other positions that are either highly impractical or inconvenient for charging by hand, requiring the operator to utilize a crane, pallet, or other loading device to complete the charging operation. Some loading devices, such as wood pallets or cardboard liners, may be consumable and require replacement after each cremation cycle, increasing the overall operating cost of a facility. Regardless of the charging method that is used, the crematory design must allow for both hearth accessibility and an ability to withstand high temperatures associated with the cremation and incineration operations.
SUMMARYA crematory having a plurality of sides is constructed around a base section having a hearth with a cremation surface. The cremation surface is located at a position within the base section that allows the loading of a body to be cremated onto the cremation surface from a loading level at least one of the sides of the crematory. The loading level is no higher than about a person's waist level above a floor from which loading of the crematory takes place.
A crematory door is mounted on the crematory to move to closed and open positions. When the crematory door is in the closed position, the crematory door covers at least substantially one side of the crematory above the cremation surface and extends substantially over the cremation surface from about the loading level. When the crematory door is in the open position, the crematory door allows a body to be cremated to be loaded onto the cremation surface from the loading level at least one of the sides of the crematory.
Some embodiments of the invention allow the crematory door to be lifted vertically from the closed position to the open position. In other embodiments, the crematory door is mounted to rotate about a pivot point, from the closed position to the open position and back from the open position to the closed position. The crematory door may have an insulated clamshell type configuration. Many embodiments will also include an actuator to move the crematory door between the closed and open positions. Since the cremation operation can typically occur at temperatures above 1600° F., the insulated crematory door will generally be constructed to withstand such high temperatures for extended periods of time.
Some embodiments of the invention may also include an incinerator for further consuming waste gases and particles that pass out of the hearth during a cremation process before the waste particles and gases exit from the crematory. Such an incinerator can include an additional burner to incinerate effluents as they pass through a fluid path of the incinerator. The fluid path of an incinerator can assume various shapes and often leads to a flue and/or chimney for channeling the waste gases away from the crematory after incineration.
Those skilled in the art will realize that this invention is capable of embodiments that are different from those shown and that details of the structures of the disclosed crematories can be changed in various manners without departing from the scope of this invention. Accordingly, the drawings and descriptions are to be regarded as including such equivalent crematories as do not depart from the spirit and scope of the invention.
BRIEF DESCRIPTION OF THE DRAWINGSFor a more complete understanding and appreciation of this invention, and many of its advantages, reference will be made to the following detailed description taken in conjunction with the accompanying drawings:
Referring to the drawings, similar reference numerals are used to designate the same or corresponding parts throughout the several figures. Specific embodiment variations in corresponding parts are denoted with the addition of lower case letters to reference numerals.
FIGS. 1 though 3 depict side, top, and front cross sectional views of a conceptual crematory 20a of the invention.
The crematory 20a is constructed around an insulated base section 28a that provides the major structural assembly of the crematory 20a. A hearth 30a is located within the base section 28a and includes a cremation surface 32a on which bodies are positioned during the cremation operation. The cremation surface 32a can be constructed of a high temperature withstanding metal, ceramic, or composite material and is slightly contoured to allow for the gathering of fluids, ash, and other combustion products that result during the cremation operation.
As best understood with reference to
The operator 22a charges the crematory 20a from a loading level 36a that is generally defined as being no higher than about a waist level 38a of most operators relative to where loading or “charging” of the crematory 20a is taking place. Thus, in the case of the crematory 20a of
This general positioning of the loading level 36a is also convenient for use with a wheeled cart that may be used by the operator 22a to transport bodies to the location of the crematory 20a. When such a cart is moved to the front side 34a of the crematory 20a, the waist level positioning of the loading level 36a allows the operator 22a to easily charge the crematory 20a by simply moving bodies contained on the cart along a generally horizontal plane on to the cremation surface 32a of the hearth 30a, the cremation surface 32a being located at about or near the loading level 36a. This approximately in-line movement of bodies from the cart to cremation surface 32a at about the loading level 36a/waist level 38a of the operator 22a can often eliminate the need for additional lifting equipment for all but the largest bodies.
Access to the hearth 30a and cremation surface 32a is provided by a crematory door 40a. The crematory door 40a is mounted on a door pivot 42a that is located on a mounting 44a positioned in fixed relation to the base section 28a. The mounting 44a allows the door pivot 42a to be located relative to the base section 28a and thereby allows for the door 40a to be rotatable relative to both the door pivot 42a and base section 28a. Thus, the operator 22 is able to open the crematory door 40a from a closed position, as shown with solid lines in
Referring to
Consider the crematory door 40a in the closed position, as shown with solid lines in
An actuator 56a is connected to the base section 28a via a lower strut section 58a and base pivot 60a, and is further connected to the lever assembly 52a of the crematory door 40a with an upper strut section 62a and lever pivot 64a. It will be appreciated that electrical, mechanical, pneumatic, hydraulic, and other types of drive systems can be implemented with the depicted actuator 56a within the intended scope of the invention.
Consider the crematory 20a prior to charging. The operator 22a raises the crematory door 40a by operating the actuator 56a to pull the lever pivot 64a and lever assembly 52a toward the base pivot 60a and base section 28a, causing the crematory door 40a to rotate around the door pivot 42a and raise the crematory door 40a to the open position as depicted with the broken lines in
After the crematory 20a is charged, the operator 22a then uses the actuator 56a to lower the crematory door 40a prior to initiating the cremation operation. The unobstructed access to the hearth 30a and cremation surface 32a from the loading level 36a when the crematory door 40a is in the open position also facilitates maintenance of the internal components of the crematory 20a.
The cremation operation involves the heating of the hearth 30a with cremation burners 66a. However, before cremation begins, it may be required by applicable laws or regulations to initiate the operation of an incinerator for consuming waste particles and gases passing from the hearth 30a before the waste gases exit from the crematory 20a. As best understood by comparing
It is common in many jurisdictions for the incinerator 68a to be required during such cremations. There is also often an added statutory or regulatory requirement for the incinerator 68a to achieve from 1600° to 1825° F., or in some cases above 2000° F., prior to commencing the cremation operation. Once such incinerator temperatures are achieved, cremation may begin by heating the hearth 30a to 1600° to 1800° F. or higher, with waste particles and gases passing from the hearth 30a to the incinerator 68a where particles and pollutant gases remaining in the waste gases flow through the u-shaped flow path 69a are further consumed prior to the air exiting through the flue 72a. The base section 28a, as well as the face, side, and lever shields 46a, 48a, and 50a of the crematory door 40a must normally be heavily reinforced with ceramic or other appropriate materials to withstand such temperatures.
Both the cremation burners 66a and incinerator burner 70a are typically gas fired devices that rely on appropriate conduits and headers (hereinafter collectively referred to as “conduits”) to provide gas and/or air. In some embodiments of the invention, structural tubing of the base section 28a or of other crematory components may be employed to serve as such air and gas supply conduits to conserve space and improve the overall aesthetic appearance of the crematory 20a. For example, heavy duty 4″ structural square tube can be employed to serve such a dual function for appropriately implemented conduits.
The positioning of conduits and other components of the crematory can vary according to the specific application and available or desired types of energy. For example,
As best understood with a comparison of
As best understood by comparing
As best understood by comparing the rear perspective view of the crematory 20b in
The cremation burner leg 94b includes a cremation manual shutoff valve 98b that allows for manual interruption of gas flow to downstream components along the cremation burner leg 94b. Gas flows from the cremation manual shutoff valve 98b to a cremation automatic controller valve 100b that allows for controlled regulation of gas flow into the cremation burners 66b. Gas flowing through the cremation burner leg 94b again diverges at a burner tee 102b into separate burner conduits 104b, which directly supply gas to the individual cremation burners 66b if multiple cremation burners 66b are employed.
The incinerator burner leg 96b includes an incinerator manual shutoff valve 103b that allows for manual interruption of gas flow to downstream components along the incinerator burner leg 96b. Gas flows from the incinerator manual shutoff valve 103b to an incinerator automatic controller valve 106b that allows for controlled regulation of gas flow into the incinerator burner 70b. Comparing
Air is supplied to the crematory 20b with an air blower 114b which feeds air into a main air conduit 116b, the air conduit 116b having a relatively large size cross sectional diameter to allow for the accommodation of larger volumes of air. The incinerator burner air conduit 112b has a smaller cross sectional diameter and channels air from the main air conduit 116b to the incinerator burner 70b where it mixes with gas from the incinerator burner leg 96b and is consumed in the combustion process of the incinerator burner 70b. An incinerator air control valve 118b is positioned along the incinerator burner air conduit 112b to allow for limiting of air flow to the incinerator burner 70b.
The incinerator automatic controller valve 106b and incinerator air control valve 118b are remotely operated by a controller 142b that monitors incinerator temperatures with an incinerator thermocouple 144b. The controller 142b allows operator adjustment of a desired incinerator set point temperature, and then automatically adjusts the incinerator automatic controller valve 106b to allow an appropriate level of gas flow and adjusts the incinerator air control valve 118b to allow an appropriate level of air flow to cause the incinerator burner 70b to burn and therefore maintain the desired set point temperature.
An air curtain conduit 120b, also having a smaller cross sectional diameter than the main air conduit 116b, channels air from the main air conduit 116b to an air curtain manifold 122b. As best understood by comparing
Referring again to the rear perspective view of the crematory 20b in
Referring now to the front perspective views of the crematory 20b in
Flowing air in the main air conduit 116b that does not enter the incinerator burner air conduit 112b, incinerator chamber air conduit 128b, or air curtain conduit 120b will continue to a reduced diameter portion 158b of the main air conduit 116b. The remaining flowing air is channeled by the main air conduit 116b to an air pressure switch 160b which constantly monitors the presence of air pressure to the air pressure switch 160b. In the event of a sudden loss of flowing air through the main air conduit 116b, the air pressure switch 160b detects the absence of air pressure and shuts down the crematory 20b.
The main air conduit 116b also channels flowing air through a two position air control valve 162b which typically incorporates a two position switch having HIGH and LOW switch settings and corresponding valve settings. The LOW switch and corresponding valve settings are normally used to restrict air flow from the main air conduit 116b through the main air conduit connection 164b and into the hearth 30b when the incinerator 68b is being heated but before a cremation process begins within the hearth 30b. The HIGH switch and corresponding valve settings are normally used to increase air flow from the main air conduit 116b through the main air conduit connection 164b and into the hearth 30b after the cremation burners 66b have been fired and a cremation process is underway.
Air fed into the hearth 30b by the main air conduit 116b provides oxygen that interacts with the heat from the cremation burners 66b and fuel provided by the bodies on the cremation surface 32b of the hearth 30b to cause the combustion of the cremation process. The operator 22b may manually adjust the controller 142b to achieve and maintain a particular set point temperature in the hearth 30b. Accordingly, the controller 142b automatically monitors the cremation temperatures within the hearth 30b with a cremation chamber thermocouple 157b and automatically adjusts the cremation automatic controller valve 100b to allow an appropriate level of gas flow to the cremation burners 66b to cause the cremation process to proceed at the desired set point temperature. As the cremation process continues, this results in waste particles and gases that are generated and that pass over the cremation surface 32b, which are passed to the incinerator 68b for further consumption.
Comparing
During an incineration process, as the controller 142b monitors temperature within the incinerator 68b with the chimney thermocouple 156b, the controller 142b can sense fuel overload conditions within the hearth 30b that could lead to significant temperature jumps or “runaway incinerator” conditions developing within the incinerator 68b. If such temperature jumps or runaway incinerator conditions are determined by the controller 142b to be present, the controller 142b operates the solenoid control 141b to adjust the air control valve 139b to allow additional air flow from the incinerator chamber air conduit 128b to enter the incinerator 68b through the incinerator air inlet 140b. The additional air flow entering the incinerator 68b has the effect of controllably raising the temperature of the incineration process to incinerate more of the waste particles and gases in the incinerator flow 148b and prevent the temperature jumps or “runaway incinerator” conditions from occurring.
The controller 142b itself can be a programmable control system that allows for automatic and/or remote control, recognition, and integration of many crematory components, including but not limited to the air control valve 139b and solenoid control 141b, the dual valve manifold 91b, the cremation automatic controller valve 100b, the incinerator automatic controller valve 106b, the air pressure switch 160b, the two position air control valve 162b, the main gas regulator 89b, the chimney thermocouple 156b, the cremation chamber thermocouple 157b, the incinerator thermocouple 144b and/or the actuator 56b. Suitable controllers can include any of the Series 2300, 2500, 6300, 7000, or 9000 Universal Digital Control Systems (UDC) available from Honeywell, Inc. of Port Washington, Pa. Other suitable controllers include the 350 and 550 Series Systems available from Yokogawa Corp. of America of Newnan, Ga. Frequently, such controllers can be programmed and a crematory configured to entirely automate an operable cycle of incineration and cremation without requiring further operator involvement between stages of the operable cycle. Depending on the specific programming and crematory configuration, this may include automatic movement of the crematory door 40b from open to closed positions at the start of an operable cycle and automatic movement of the crematory door 406 from closed to open positions at the completion of an operable cycle.
As best understood by comparing the rear perspective view of the crematory 20b in
It will be appreciated that other actuators can be incorporated into crematories within the intended scope of the invention. For example,
When the operator activates the fluid cylinder 182f to retract the piston rod 180f into the fluid cylinder 182f, this causes the lever assembly 52f to rotate the crematory door 40f in an upward direction around its door pivot 42f toward the open position, as shown in
It will be appreciated that in some embodiments, such counter weighting of a crematory door may allow for other types of reduced size actuator mechanisms to be used in place of a fluid cylinder. In some embodiments, similar counter weighting may allow for an operator to move a crematory door to open and closed positions by hand.
It will be further appreciated that while the invention has been shown and described as having a crematory door having an insulated clamshell configuration, other types of crematory door configurations are possible and are within the contemplated scope of the invention. For example,
As best understood by comparing
As best understood by comparing
Although the invention has been shown and described as having a loading level and cremation surface that are above a floor level where loading takes place, it will be appreciated that in some contemplated embodiments of the invention, either the loading level, cremation surface or both the loading level and cremation surface may be positioned lower than a floor level from which loading takes place. Such configurations may be appropriately implemented where a surrounding building has been constructed around a crematory of the invention after crematory installation or where the crematory or surrounding floor has been custom installed in the surrounding building to the extent that previous flooring or foundational materials have been removed. Such configurations may also be appropriately implemented where a crematory is oversized, such cremators intended for the cremation of significantly larger animals.
For example,
Although the invention has been shown and described as having an incinerator located within a base section of a crematory, it will be appreciated that other incinerator configurations are also possible and are within the contemplated scope of the invention. For example,
In operation, it is often considered optimal for waste particles and gases from the cremation process to remain within an incinerator for at least a predetermined minimum incineration time. For example, at normal incineration temperatures of from about 1600° F. to 2000° F., an optimal predetermined incineration time for flowing effluents can be approximately one second before being expelled from the incinerator. However, the velocity of effluent flow through the incinerator will depend largely on the available cross sectional area of the incinerator with respect to the volume of waste particle and gas effluents entering the incinerator. Thus, for purposes of comparison, assume that the incinerator 68j of
This invention has been described with reference to several preferred embodiments. Many modifications and alterations will occur to others upon reading and understanding the preceding specification. It is intended that the invention be construed as including all such alterations and modifications in so far as they come within the scope of the appended claims or the equivalents of these claims.
Claims
1. A crematory comprising:
- a base section, said base section having a hearth positioned therein, said crematory having a plurality of sides, said hearth having a cremation surface;
- said cremation surface being located at a position within said base section that allows for the loading of a body onto said cremation surface from at least one of said plurality of sides of said crematory and from a loading level that is no higher than about a person's waist level relative to a floor level where loading of said crematory takes place;
- a crematory door, said crematory door being mounted to move to a closed position and to an open position, said crematory door covering at least substantially one side of said crematory above said cremation surface when said crematory door is in said closed position, said crematory door extending substantially over said cremation surface from about said loading level when said crematory door is in said closed position; said crematory door being positioned to allow a body to be loaded on to said cremation surface from about at least one of said sides of said crematory and from about said loading level when said crematory door is in said open position.
2. The crematory of claim 1, a floor level being at about the level of a floor adjacent said crematory.
3. The crematory of claim 1, said crematory door being mounted to rotate around a door pivot from said closed position to said open position and from said open position to said closed position.
4. The crematory of claim 1 further comprising:
- an insulated crematory door;
- an insulated base section, said insulated base section providing a major structural assembly of said crematory; and
- said hearth being located within said insulated base section.
5. The crematory of claim 1, said cremation surface comprising a high temperature withstanding ceramic material.
6. The crematory of claim 1, said cremation surface comprising a high temperature withstanding metal material.
7. The crematory of claim 1, said cremation surface comprising a high temperature withstanding composite material.
8. The crematory of claim 1, said crematory door having a face shield, side shield, top shield, and lever assembly.
9. The crematory of claim 1, said crematory door having a dome shape.
10. The crematory of claim 1, said crematory having at least one cremation burner for heating said hearth during a cremation process, said at least one cremation burner being gas fired.
11. The crematory of claim 1 further comprising:
- at least one cremation burner for heating said hearth during a cremation process, said cremation burner being gas fired;
- at least one conduit for providing gas to said at least one cremation burner; and
- said base section having structural tubing, said structural tubing serving as at least one of said at least one conduit.
12. The crematory of claim 1 further comprising:
- at least one cremation burner for heating said hearth during a cremation process, said cremation burner being gas fired;
- at least one conduit for providing air to said at least one cremation burner; and
- said base section having structural tubing, said structural tubing serving as at least one of said at least one conduit.
13. The crematory of claim 1 further comprising a flue for allowing waste gases to exit said crematory during a cremation process.
14. The crematory of claim 1 further comprising:
- a flue for allowing waste gases to exit said crematory during a cremation process; and
- a chimney for channeling waste gases that exit said crematory through said flue away from said crematory.
15. The crematory of claim 1, said crematory door being vertically liftable from said closed position to said open position.
16. The crematory of claim 1, said crematory door being vertically liftable from said closed position to said open position and further comprising:
- a plurality of alignment pins positioned on said base section;
- a plurality of alignment holes positioned on said crematory door; and
- said alignment holes positioned to engage said alignment pins and properly align said crematory door with respect to said base section when said crematory door is moved to said closed position.
17. The crematory of claim 1 further comprising an actuator for moving said crematory door to at least one of said closed position and said open position.
18. The crematory of claim 1 further comprising an incinerator for further consuming waste particles and gases passing from said hearth before the waste particles and gases exit from said crematory.
19. A crematory comprising:
- a base section, said base section having a hearth positioned therein, said crematory having a plurality of sides, said hearth having a cremation surface;
- said cremation surface being located at a position within said base section that allows for the loading of a body onto said cremation surface from at least one of said plurality of sides of said crematory and from a loading level that is no higher than about a person's waist level relative to a floor from which loading of said crematory takes place; and
- a crematory door, said crematory door being mounted to rotate around a door pivot to a closed position and to an open position, said crematory door covering at least substantially one side of said crematory above said cremation surface when said crematory door is in said closed position, said crematory door extending substantially over said cremation surface from about said loading level when said crematory door is in said closed position; said crematory door being positioned to allow a body to be loaded onto said cremation surface from about at least one of said sides of said crematory and from about said loading level when said crematory door is in said open position.
20. The crematory of claim 19, a floor level being at about the level of a floor adjacent said crematory.
21. The crematory of claim 19, said crematory door being mounted to rotate around a door pivot from said closed position to said open position and from said open position to said closed position.
22. The crematory of claim 19 further comprising:
- an insulated crematory door;
- an insulated base section, said insulated base section providing a major structural assembly of said crematory; and
- said hearth being located within said insulated base section.
23. The crematory of claim 19, said cremation surface comprising a high temperature withstanding ceramic material.
24. The crematory of claim 19, said cremation surface comprising a high temperature withstanding metal material.
25. The crematory of claim 19, said cremation surface comprising a high temperature withstanding composite material.
26. The crematory of claim 19, said crematory door having a face shield, side shield, top shield, and lever assembly.
27. The crematory of claim 19, said crematory door having a dome shape.
28. The crematory of claim 19, said crematory having at least one cremation burner for heating said hearth during a cremation process, said at least one cremation burner being gas fired.
29. The crematory of claim 19 further comprising:
- at least one cremation burner for heating said hearth during a cremation process, said cremation burner being gas fired;
- at least one conduit for providing gas to said at least one cremation burner; and
- said base section having structural tubing, said structural tubing serving as at least one of said at least one conduit.
30. The crematory of claim 19 further comprising:
- at least one cremation burner for heating said hearth during a cremation process, said cremation burner being gas fired;
- at least one conduit for providing air to said at least one cremation burner; and
- said base section having structural tubing, said structural tubing serving as at least one of said at least one conduit.
31. The crematory of claim 19 further comprising a flue for allowing waste gases to exit said crematory during a cremation process.
32. The crematory of claim 19 further comprising:
- a flue for allowing waste gases to exit said crematory during a cremation process; and
- a chimney for channeling waste gases that exit said crematory through said flue away from said crematory.
33. The crematory of claim 19 further comprising an actuator for rotating said crematory door around said door pivot to thereby move said crematory door to at least one of said closed position and said open position.
34. The crematory of claim 19 further comprising an incinerator for further consuming waste particles and gases passing from said hearth before the waste particles and gases exit from said crematory.
35. A crematory comprising:
- a base section, said base section having a hearth positioned therein, said crematory having a plurality of sides, said hearth having a cremation surface;
- said cremation surface being located at a position within said base section that allows for the loading of a body onto said cremation surface from at least one of said plurality of sides of said crematory and from a loading level that is no higher than about a person's waist level relative to a floor level where loading of said crematory takes place;
- a crematory door, said crematory door being mounted to rotate around a door pivot to a closed position and to an open position, said crematory door covering at least substantially one side of said crematory above said cremation surface when said crematory door is in said closed position, said crematory door extending substantially over said cremation surface from about said loading level when said crematory door is in said closed position; said crematory door being positioned to allow a body to be loaded onto said cremation surface from about said at least one of said sides of said crematory and from about said loading level when said crematory door is in said open position; and
- an actuator for rotating said crematory door relative to said door pivot and to thereby move said crematory door to at least one of said closed position and said open position.
36. The crematory of claim 35 further comprising:
- a lever assembly extending from said crematory door;
- a base pivot, lower strut section, upper strut section, and lever pivot, said upper strut section being connected to said lever assembly at said lever pivot, said lower strut section being connected to said base section at said base pivot, said lower strut section and said upper strut section being connected to said actuator; and
- said actuator being capable of moving said crematory door to said open position by pulling said upper strut section to move said lever pivot and said lever assembly toward said base pivot and said base section to cause said crematory door to rotate around said door pivot and thereby move away from said hearth.
37. The crematory of claim 35 further comprising:
- a lever assembly extending from said crematory door;
- a base pivot, lower strut section, upper strut section, and lever pivot, said upper strut section being connected to said lever assembly at said lever pivot, said lower strut section being connected to said base section at said base pivot, said lower strut section and said upper strut section being connected to said actuator; and
- said actuator being capable of moving said crematory door to said closed position by pushing said upper strut section to move said lever pivot and said lever assembly away from said base pivot and said base section to cause said crematory door to rotate around said door pivot and thereby move toward said hearth.
38. The crematory of claim 35, said actuator being electrically operated.
39. The crematory of claim 35, said actuator being pneumatically operated.
40. The crematory of claim 35, said actuator being hydraulically operated.
41. The crematory of claim 35 further comprising:
- an insulated crematory door;
- an insulated base section, said insulated base section providing a major structural assembly of said crematory; and
- said hearth being located within said insulated base section.
42. The crematory of claim 35, said cremation surface comprising a high temperature withstanding ceramic material.
43. The crematory of claim 35, said cremation surface comprising a high temperature withstanding metal material.
44. The crematory of claim 35, said cremation surface comprising a high temperature withstanding composite material.
45. The crematory of claim 35, said crematory door having a face shield, side shield, top shield, and lever assembly.
46. The crematory of claim 35, said crematory door having a dome shape.
47. The crematory of claim 35, said crematory having at least one cremation burner for heating said hearth during a cremation process, said at least one cremation burner being gas fired.
48. The crematory of claim 35 further comprising:
- at least one cremation burner for heating said hearth during a cremation process, said cremation burner being gas fired;
- at least one conduit for providing gas to said at least one cremation burner; and
- said base section having structural tubing, said structural tubing serving as at least one of said at least one conduit.
49. The crematory of claim 35 further comprising:
- at least one cremation burner for heating said hearth during a cremation process, said cremation burner being gas fired;
- at least one conduit for providing air to said at least one cremation burner; and
- said base section having structural tubing, said structural tubing serving as at least one of said at least one conduit.
50. The crematory of claim 35 further comprising a flue for allowing waste gases to exit said crematory during a cremation process.
51. The crematory of claim 35 further comprising:
- a flue for allowing waste gases to exit said crematory during a cremation process; and
- a chimney for channeling waste gases that exit said crematory through said flue away from said crematory.
52. The crematory of claim 35 further comprising an incinerator for further consuming waste particles and gases passing from said hearth before the waste particles and gases exit from said crematory.
53. A crematory comprising:
- a base section, said base section having a hearth positioned therein, said crematory having a plurality of sides, said hearth having a cremation surface;
- said cremation surface being located at a position within said base section that allows for the loading of a body on to said cremation surface from at least one of said plurality of sides of said crematory and from a loading level that is no higher than about a person's waist level relative to a floor level where loading of said crematory takes place;
- a crematory door, said crematory door being mounted to rotate around a door pivot from a closed position to an open position and from said open position to said closed position, said crematory door covering at least substantially one side of said crematory above said cremation surface when said crematory door is in said closed position, said crematory door extending substantially over said cremation surface from about said loading level when said crematory door is in said closed position, said crematory door being positioned to allow a body to be loaded onto said cremation surface from about said at least one of said sides of said crematory and from about said loading level when said crematory door is in said open position; and
- an incinerator for further consuming waste particles and gases passing from said hearth before the waste particles and gases exit from said crematory.
54. The crematory of claim 53, said incinerator being capable of achieving temperatures of from about 1600° F. to about 2000° F. prior to the commencing of a cremation operation in said hearth.
55. The crematory of claim 53, said incinerator having a unshaped gas flow path.
56. The crematory of claim 53, said incinerator having a linear shaped and vertically extending gas flow path.
57. The crematory of claim 53, said incinerator having a linear shaped and horizontally extending gas flow path.
58. The crematory of claim 53, said incinerator having a gas flow path that is suspended at a position that is substantially higher than said loading level.
59. The crematory of claim 53, said incinerator having a separate incinerator burner.
60. The crematory of claim 53, said incinerator having a separate incinerator burner that is gas fired.
61. The crematory of claim 53 further comprising:
- an insulated crematory door;
- an insulated base section, said insulated base section providing a major structural assembly of said crematory; and
- said hearth being located within said insulated base section.
62. The crematory of claim 53, said cremation surface comprising a high temperature withstanding ceramic material.
63. The crematory of claim 53, said cremation surface comprising a high temperature withstanding metal material.
64. The crematory of claim 53, said cremation surface comprising a high temperature withstanding composite material.
65. The crematory of claim 53, said crematory door having a face shield, side shield, top shield, and lever assembly.
66. The crematory of claim 53, said crematory door having a dome shape.
67. The crematory of claim 53, said crematory having at least one cremation burner for heating said hearth during a cremation process, said at least one cremation burner being gas fired.
68. The crematory of claim 53 further comprising:
- at least one cremation burner for heating said hearth during a cremation process, said cremation burner being gas fired;
- at least one conduit for providing gas to said at least one cremation burner; and
- said base section having structural tubing, said structural tubing serving as at least one of said at least one conduit.
69. The crematory of claim 53 further comprising:
- at least one cremation burner for heating said hearth during a cremation process, said cremation burner being gas fired;
- at least one conduit for providing air to said at least one cremation burner; and
- said base section having structural tubing, said structural tubing serving as at least one of said at least one conduit.
70. The crematory of claim 53 further comprising a flue for allowing waste gases to exit said crematory during a cremation process.
71. The crematory of claim 53 further comprising:
- a flue for allowing waste gases to exit said crematory during a cremation process; and
- a chimney for channeling waste gases that exit said crematory through said flue away from said crematory.
72. The crematory of claim 53 further comprising an actuator for rotating said crematory door around said door pivot to thereby move said crematory door to at least one of said closed position and said open position.
Type: Application
Filed: Nov 2, 2005
Publication Date: May 4, 2006
Applicant:
Inventor: Marvin Puth (New Galilee, PA)
Application Number: 11/265,215
International Classification: F23G 1/00 (20060101); F23M 7/00 (20060101);