Crematory Vacuum Cleaner
20240183528 ยท 2024-06-06
Inventors
Cpc classification
F24B13/006
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F23J2700/003
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F23J1/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F23G1/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
A vacuum cleaner for use in cleaning very hot crematory ovens has a suction head mounted on side wheels, and connected to a central fitting which receives compressed air through a stiff metal air supply pipe. An expansion pipe extends upwardly from the central fitting and is tipped frontwardly. The compressed air passes through the central fitting which incorporates a vacuum eductor which draws air flow in from the vacuum head. The hot air discharges through a filter cap at the upper end of the expansion pipe which retains a filter assembly of multiple screens against the upper end of the expansion pipe. Dust and small particles pass through the filter assembly to be carried away by hot air up the crematory chimney. Larger particles are retained by the filter assembly, and may be discharged downwardly from the vacuum head into a receptacle when the input compressed air is discontinued.
Claims
1. A crematory vacuum device comprising: a rigid tubular handle having a conduit therethrough for connection to a source of pressurized air; a central fitting connected to the rigid tubular handle at an inlet, the central fitting having a plenum connected to the inlet, the plenum carrying pressurized air from the rigid tubular handle to a plurality of openings surrounding a central suction chamber and directed to discharge air away from a suction head connected to the central fitting and extending downwardly therefrom, such that said discharged air draws air from the suction head; an expansion pipe connected to the central fitting above the suction head, the expansion pipe having an internal expansion chamber which increases in diameter as it extends upwardly away from an inlet at the central fitting to an upper outlet; a cap which is connected to overlie the expansion pipe outlet; and a filter assembly engaged with portions of the cap and retained by the cap such that air flow from the expansion pipe passes through the filter assembly and the cap, the filter assembly thereby retaining particles above a selected size while allowing particles below the selected size to pass through, wherein the expansion pipe is tipped away from the rigid tubular handle such that the air flow is discharged through the cap in a direction having a horizontal component away from the rigid tubular handle.
2. The crematory vacuum device of claim 1 further comprising: portions of the suction head which define a lower lip which surrounds a suction head inlet; a first wheel mounted to the suction head on one side of the suction head inlet; and a second wheel mounted to the suction head on an opposite side of the suction head inlet, wherein the first wheel and the section wheel extend downwardly beyond the lower lip of the suction head to thereby space the lower lip above a surface over which the wheels travel to retain a gap between said surface and the lower lip to allow air to be drawn upwardly into the suction head inlet.
3. The crematory vacuum device of claim 1 wherein the suction head extends frontwardly from the central fitting such that the lip is positioned frontwardly of the central fitting on a side of the central fitting away from the rigid tubular handle.
4. The crematory vacuum device of claim 1 wherein the cap has a side wall with at least one opening therein, and wherein a pin extends from the expansion device to engage said at least one opening to selectively retain the cap and the filter assembly connected to the expansion pipe.
5. The crematory vacuum device of claim 1 wherein the expansion pipe internal expansion chamber has an interior wall defining a portion of a cone which extends upwardly from the inlet to the upper outlet.
6. The crematory vacuum device of claim 1 wherein the rigid tubular handle is at least six feet long.
7. The crematory vacuum device of claim 1 wherein portions of the suction head define a lower lip which surrounds a suction head inlet, and wherein an unobstructed passageway is defined running from the suction head inlet, through the central fitting and the expansion chamber to the filter assembly, the unobstructed passageway providing a reversible pathway for particles brought into the device through the suction head inlet, such that when pressurized air is no longer supplied to the central fitting, particles engaged with the filter assembly may drop down through the unobstructed passageway to exit the device at the suction head inlet.
8. The crematory vacuum device of claim 1 wherein the filter assembly comprises a plurality of screens stacked one over the other.
9. A crematory vacuum device comprising: a rigid tubular handle having a conduit therethrough for connection to a source of pressurized air; a central fitting comprising a vacuum eductor and fixed to the rigid tubular handle at an inlet, the central fitting thus receiving pressurized air at the inlet to discharge air away from a suction head connected to the central fitting and extending downwardly therefrom, such that said discharged air draws air from the suction head; an expansion pipe connected to the central fitting above the suction head, the expansion pipe having an internal expansion chamber which increases in diameter as it extends upwardly away from an inlet at the central fitting to an upper outlet; a cap which is connected to overlie the expansion pipe outlet; and a filter assembly engaged with portions of the cap and retained by the cap such that air flow from the expansion pipe passes through the filter assembly and the cap, the filter assembly thereby retaining particles above a selected size while allowing particles below the selected size to pass through, wherein the expansion pipe is tipped away from the rigid tubular handle such that the air flow is discharged through the cap in a direction having a horizontal component away from the rigid tubular handle.
10. The crematory vacuum device of claim 9 further comprising: portions of the suction head which define a lower lip which surrounds a suction head inlet; a first wheel mounted to the suction head on one side of the suction head inlet; and a second wheel mounted to the suction head on an opposite side of the suction head inlet, wherein the first wheel and the section wheel extend downwardly beyond the lower lip of the suction head to thereby space the lower lip above a surface over which the wheels travel to retain a gap between said surface and the lower lip to allow air to be drawn upwardly into the suction head inlet.
11. The crematory vacuum device of claim 9 wherein the suction head extends frontwardly from the central fitting such that the lip is positioned frontwardly of the central fitting on a side of the central fitting away from the rigid tubular handle.
12. The crematory vacuum device of claim 9 wherein the cap has a side wall with at least one opening therein, and wherein a pin extends from the expansion device to engage said at least one opening to selectively retain the cap and the filter assembly connected to the expansion pipe.
13. The crematory vacuum device of claim 9 wherein the expansion pipe internal expansion chamber has an interior wall defining a portion of a cone which extends upwardly from the inlet to the upper outlet.
14. The crematory vacuum device of claim 9 wherein the filter assembly comprises a plurality of overlapping screens.
15. The crematory vacuum device of claim 9 wherein portions of the suction head define a lower lip which surrounds a suction head inlet, and wherein an unobstructed passageway is defined running from the suction head inlet, through the central fitting and the expansion chamber to the filter assembly, the unobstructed passageway providing a reversible pathway for particles brought into the device through the suction head inlet, such that when pressurized air is no longer supplied to the central fitting, particles engaged with the filter assembly may drop down through the unobstructed passageway to exit the device at the suction head inlet.
16. A crematory vacuum device comprising: a rigid tubular handle having a conduit therethrough for connection to a source of pressurized air; a central fitting connected to the rigid tubular handle at an inlet, the central fitting having passageways therein which receive the pressurized air introduced at the inlet and direct it to produce a region of lowered pressure within the central fitting; a suction head connected to the central fitting and extending downwardly therefrom, such that said the region of lowered pressure draws air from the suction head, and wherein the suction head has a lower inlet through which air and particles are drawn into the device; an expansion pipe connected to the central fitting above the suction head, the expansion pipe having an internal expansion chamber which increases in diameter as it extends upwardly away from an inlet at the central fitting to an upper outlet; a filter assembly engaged with the expansion pipe and retained therein, wherein air flow from the expansion pipe passes through the filter assembly and particles above a selected size are retained against the filter assembly, while particles below the selected size may pass through the filter assembly; and wherein an unobstructed passageway is defined running from the suction head inlet, through the central fitting and the expansion chamber to the filter assembly, the unobstructed passageway providing a reversible pathway for particles brought into the device through the suction head inlet, such that when pressurized air is no longer supplied to the central fitting, particles engaged with the filter assembly may drop down through the unobstructed passageway to exit the device at the suction head inlet.
17. The crematory vacuum device of claim 16 further comprising: portions of the suction head which define a lower lip which surrounds a suction head inlet; a first wheel mounted to the suction head on one side of the suction head inlet; and a second wheel mounted to the suction head on an opposite side of the suction head inlet, wherein the first wheel and the section wheel extend downwardly beyond the lower lip of the suction head to thereby space the lower lip above a surface over which the wheels travel to retain a gap between said surface and the lower lip to allow air to be drawn upwardly into the suction head inlet.
18. The crematory vacuum device of claim 16 wherein the suction head extends frontwardly from the central fitting such that the lip is positioned frontwardly of the central fitting on a side of the central fitting away from the rigid tubular handle.
19. The crematory vacuum device of claim 16 wherein the filter assembly comprises a plurality of screens engaged with the expansion pipe and retained therein by a cap which is releasably secured to the expansion pipe.
20. The crematory vacuum device of claim 16 wherein the expansion pipe is tipped away from the rigid tubular handle such that the air flow is discharged through the expansion pipe outlet in a direction having a horizontal component away from the rigid tubular handle.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0015]
[0016]
[0017]
[0018]
[0019]
DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0020] Referring more particularly to
[0021] As shown in
[0022] The suction head 24 has a threaded fitting 50 which is connected to the central fitting 26. The suction head 24, as shown in
[0023] Brackets 64 extend sidewardly from the side walls 56 of the suction head at its lower end, and provide vertical structure to which a first wheel 66 and a second wheel 68 are mounted on opposite sides of the inlet 62. The free-wheeling wheels 66, 68 extend downwardly beyond the lower lip 60 of the suction head to engage the crematory oven floor 58 and to space the lower lip above the floor over which the wheels travel. The wheels 66, 68 function to maintain a gap between the floor 58 and the lower lip to allow air to be drawn upwardly into the suction head inlet 62. The gap is preferably ? to ? inch. As shown in
[0024] The expansion pipe 28 may be mounted to the central fitting 26 by a base section 70 which has a threaded connection, as shown in
[0025] The metal cap 30 is connected to overlie the expansion pipe outlet 84. The cap 30 has a cylindrical skirt 88 which terminates at an upper annular flange 90. The flange 90 extends radially inwardly and defines a circular opening. The cap 30 may be provided with a plurality of screens or grills 92 which are positioned between the cap flange 90 and the are positioned in the space between the flange 90 and the upper flange 78 of the expansion pipe. The grills 92 are fabricated of fire-resistant metal and are oriented so the grill wires crisscross one another. Thus the particles which can fully pass through the filter assembly will be smaller than the screen openings in any single grill. The grills 92 define a filter assembly 32 which is capable of functioning at the very high temperatures experienced within the crematory oven. The filter assembly 32 is selected to allow air and dust particles to pass through, while retaining larger fragments such as bone and metal. The cap 86 is releasably connected to the expansion pipe 28, for example by a bayonet mount having two pins 96 which extend radially outwardly from the upper portion of the expansion pipe 76 and selectively engaged with two inverted L-shaped receptor slots 98 formed in the skirt 88 of the cap 30. The pins 96 may be formed as a single rod which is passed through the upper end of the expansion pipe 28.
[0026] As shown in
[0027] The crematory vacuum 20 is a large tool, because it must be long enough to clean out the entire length of the crematory oven 22, which is large enough to accommodate the full range of decedents. The extension handle 34 being a rigid tube may be supported on hooks alongside the crematory oven. The operation of the device is shown in
[0028] Other vacuum generators that use Venturis may be employed in the central fitting 26 to create the region of low pressure within the central fitting. A Venturi works by accelerating a stream of compressed air through a converging and diverging section so that the accelerated air, using the Bernoulli effect, creates a vacuum which is led to the suction head which draws air into the airstream which is then slowed by passing through the diverging section of the Venturi.
[0029] It is understood that the invention is not limited to the particular construction and arrangement of parts herein illustrated and described, but embraces all such modified forms thereof as come within the scope of the following claims.