US667607A - Grate. - Google Patents

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US667607A
US667607A US3156000A US1900031560A US667607A US 667607 A US667607 A US 667607A US 3156000 A US3156000 A US 3156000A US 1900031560 A US1900031560 A US 1900031560A US 667607 A US667607 A US 667607A
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grate
water
bars
pipes
frame
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John Thurell
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F22STEAM GENERATION
    • F22BMETHODS OF STEAM GENERATION; STEAM BOILERS
    • F22B13/00Steam boilers of fire-box type, i.e. the combustion of fuel being performed in a chamber or fire-box with subsequent flue(s) or fire tube(s), both chamber or fire-box and flues or fire tubes being built-in in the boiler body
    • F22B13/04Steam boilers of fire-box type, i.e. the combustion of fuel being performed in a chamber or fire-box with subsequent flue(s) or fire tube(s), both chamber or fire-box and flues or fire tubes being built-in in the boiler body mounted in fixed position with the boiler body disposed substantially horizontally
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F23COMBUSTION APPARATUS; COMBUSTION PROCESSES
    • F23GCREMATION FURNACES; CONSUMING WASTE PRODUCTS BY COMBUSTION
    • F23G5/00Incineration of waste; Incinerator constructions; Details, accessories or control therefor
    • F23G5/24Incineration of waste; Incinerator constructions; Details, accessories or control therefor having a vertical, substantially cylindrical, combustion chamber
    • F23G5/245Incineration of waste; Incinerator constructions; Details, accessories or control therefor having a vertical, substantially cylindrical, combustion chamber with perforated bottom or grate

Definitions

  • This invention relates to grates, and more especially to grates for furnaces and the like, and has for one object to provide a duplex grate wherein one grate is arranged above the other, the arrangement being such that the unconsumed or partially-consumed particles of fuel in the upper part will be shook down or raked onto the fire on the lower grate and be there completely consumed.
  • the grate-supporting frames and the Water-pipeA connections that the grate-sections may be extended or contracted longitudinally to a limited extent to accurately fit the same to the furnace structure and to adjust the gratebars closer together or farther apart.
  • FIG. 1 is a vertical longitudinal sectional view of my improved grate.
  • Fig. 2 is a transverse sectional view taken on the line 2 2 of Fig. 1.
  • Fig. 3 is a diagrammatic View illustrating the circulation of the water.
  • Fig. 4 is a top plan view of the upper grate.
  • Fig. 5 is a similar View of the lower grate.
  • Fig. G is a detail sectional view illustrating one of the pipe-couplings and its check and packing.
  • FIG. 7 is a similar View showing the manner of securing together the ends or corners of the lower grate-frame.
  • Fig. 8 is a detail sectional view illustrating the manner of supporting the ends of the grate-bars of the upper grate.
  • Fig. 9 is a detail view illustrating one of the side bars of a modified form of grate-frame.
  • the numeral l indicates the furnace structure; 2 and 3, the furnace-doors, giving access, respectively, to the upper and lower grates; 4, the offtakefine, and 5 and 6 respectively the upper and lower grates.
  • grate-supporting bars '7 each comprising a substantially rectangular bar provided on its inner side with ribs or flanges 8, which form supports upon which the upper grate 5 is adapted to rest.
  • the upper grate comprises a rectangular frame formed of pipes or tubings as follows:
  • the numeral 9 indicates a plurality of transverse pipes, each having screwed on its opposite ends Ts 10, and said Ts 10 are joined or connected together by Ts l1 and couplings 12, -a coupling l2 being disposed between the adjacent ends of each pair of Ts 10 and 1l, as most clearly shown in Fig. 4 of the drawings.
  • Each T 11 is provided with a vertical depending branch 13, in the lower end of which is screwed an elbow 14, and in the ends of each two corresponding or pair of elbows 14 is screwed a transverse pipe l5.
  • this manner of connecting the pipes 15 to the sides of the grate-frame causes them to lie in a plane somewhat below that of the said frame, 'as is shown in Figs. l and 8 of the drawings.
  • grate-bars Loosely arranged on the water-pipes 15 are grate-bars, each comprising a longitudinal shell 16, segment-shaped in cross-section and comprising the greater portion of a complete circle. Formed transversely in the upper sides of the shells are segmental slots 17 to permit of the passage of air through the gratebars.
  • the interiors of the shells are preferably provided with a plurality of ribs 18 to aid in holding the fuel in place on the gratebars; but these ribs, if preferred, may be omitted.
  • Formed on the ends of the gratebars are inwardly-projecting flanges 19, that IOO rest on the water-pipes 15.
  • the grate-bars straddle the water-pipes, and the only porA tions thereof that are in contact with said pipes are the anges 19.
  • An unobstructed space sthus formed entirely around the water-pipes, and between the latter and the grate-bars for the circulation of air which escapes up through the slots 17, thereby aiding in protecting the grate and pipes flom the destructive effects of the fire.
  • the numeral 2O indicates rocker arms, there being one for each grate-bar, each of said rocker-arms being forked or bifurcated to form a yoke 21, which is inserted through one of the slots 17 and straddles the waterpipe.
  • Pins 22 are inserted in the yokes below the water-pipes and pass through the sides of the grate-bars and fasten the latter in place on the water-pipes.
  • the pipes I9, intermediate the gratebars serve as stationary grate-bars and, as most clearly shown in Fig. 1, 'lie in the same plane as the grateframe and substantially in the same plane with the upper surfaces of the gratebars.
  • Each of the couplings 12, before referred to, is constructed. substantially as follows:
  • the numeral 23 indicates a nipple enlarged and exteriorly screw-threaded, as at 24, and the numeral 25 indicates a corresponding nipple provided near one end with an annular fiange or collar 26.
  • Arranged on the nipple 25 is a sleeve 27, having an inwardly-projecting annular flange 28, that is adapted to engage the flange 26 on the nipple 25, said sleeve being internally threaded, as at 29, to screw over the threaded end 24 of the nipple 23.
  • a packing comprising a metallic washer 30, that rests on the flange 26, and a packing-ring 31, formed of vulcanized liber or any other material suitable for the purpose and resting on the washer 30.
  • the sleeve 24 is arranged to engage the threaded end of the nipple 23 and draws the two nipples 23 and 25 up together, compressing the packing tightly between the two, thereby making a water-tight joint.
  • the couplings 12 on alternate sides of the grate-frame between the pipes 9 are provided with checks 32, which may conveniently consist of metallic disks of copper or other suitable metal and which are arranged between the ends of the nipples 23 and the packingrings 31, said disks or checks operating to prevent the passage of water through the couplings in which they are placed.
  • a feed-water pipe 33 arranged on one side and at one end of the upper grate, is connected to the corresponding T 1()b at the other end and on the other side of said grate.
  • a connecting-rod35 To each of the rocker-arms 20, before referred to, is connected a connecting-rod35, by means of which all the gratebars may be simultaneously rocked about the pipes l5. This maybe accomplished by hand, and by providing the arrangement shown in Fig. 1 of the drawings it may be accomplished by power.
  • the numeral 3G indicates a pitmau pivotally connected at one end to the rod 35 and at its other end pivotally connected to a crank 37, forming a part of a shaft 38, which is journaled in suitable bearings 39 and provided with a pulley 40, which may be driven by a belt or the like from any suitable driving mechanism.
  • washers 30 and packing-rings 3l of dilferent thicknesses the distance between the gratebars may be varied to a limited extent, either to bring the grate-bars nearer together or to place them farther apart or to expand or contract to a limited extent the lengthwise dimensions of the grate-frame, so as to cause the latter to accurately fit the interior of the furnace structure.
  • the frame comprises two end or cross bars 42, which are rabbeted at their ends, as at 43, (see Fig. 7,) and rest on the brackets 41, and overlapping and resting on said rabbeted ends of the cross-bars 42 are the rabbeted ends 44 of the side bars 45.
  • the side bars 45 are provided with notched or recessed flanges 46, and lugs 47 are formed on the inner sides of the end cross-bars 42,as shown.
  • a bolt-hole 47 is formed in each end of both end cross-bars 42, and a corresponding slot or elongated bolt-hole 48 is formed in each overlapping end of the side bars 45.
  • Bolts 49 are passed through the corresponding bolt-holes 47 and 48 and are tightened up by nuts 50, said bolts operating to hold the side and end bars rigidly together when the nuts are tightened up.
  • Fitted in the slot or elongated bolt-hole 48 on one side of the bolt 49 is a key 50a, which operates to hold the side bar against endwise movement.
  • the lower grate consists of water-pipes 15, grate-bars 16, and Ts 10 11, connected by couplings 12 in substantially the same manner as in the upper grate, excepting that all the grate-bars are rocking bars and the IOO end Ts IOC and (1 extend entirely through the end bars 42 of the grate-frame.
  • the rocker-arms of the lower grate-bars are pivotally connected to a rod or pitman 35, by means of which the grate-bars may be rocked or dumped.
  • the pipe 34 leading from the upper grate, is connected to the nipple 10c on the rear end of the lower grate by a pipe 5l, and the nipple 10d at the front end of the lower grate is connected to a pipe (not shown) that leads to the boiler.
  • the grates may be extended or contracted lengthwise to accurately accommodate them to the furnace, for by using packings 30 and 3l of different thicknesses the grate-bars and water-pipes will manifestly be drawn closer together or moved farther apart.
  • a lso by shifting the keys 50@L to one side or the other of the bolts @t9 the frame of the lower grate will be lengthcned or shortened.
  • the water-pipes and connections may be dispensed with, and in such case the side bars are omitted and in their stead are employed side bars 52, (see Fig. 9,) provided on their inner sides with laterally-projecting cylindrical lugs 53, on which the ends of the grate-bars are directly hung or journaled.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Physics & Mathematics (AREA)
  • Thermal Sciences (AREA)
  • Incineration Of Waste (AREA)

Description

Patented Feb'. 5, |90I. J. THUBELL.
G R AT E (Appuc'aeionmed sept. 29, i900.)
2 Sheete--Sheet l (nu mul.)
.--41| lll..
n lf... I l |.l I l...
@Nimes STATES ATENT FFICE.
JOHN THURELL, OF NORTH ADAMS, MASSACHUSETTS.
GRA'T'.
SPECIFICATION forming part of Letterslatent No. 667,607, dated February 5, 1901.
Application filed September 29. 1900 Serial No. 31,560. (No model.)
To all whom t may concern.-
Be it known that l, JOHN THURELL, a citi- Zen of the United States, residing at North Adams, in the county of Berkshire and State of Massachusetts, have invented new and useful Improvements in Grates, of which the following is a specification.
This invention relates to grates, and more especially to grates for furnaces and the like, and has for one object to provide a duplex grate wherein one grate is arranged above the other, the arrangement being such that the unconsumed or partially-consumed particles of fuel in the upper part will be shook down or raked onto the fire on the lower grate and be there completely consumed.
It also has for its object to combine with a rocking grate a water-circulating system, the arrangement being such as to permit of a free circulation of air between the waterpipes and grate-sections.
It has for another object to so construct the grate-supporting frames and the Water-pipeA connections that the grate-sections may be extended or contracted longitudinally to a limited extent to accurately fit the same to the furnace structure and to adjust the gratebars closer together or farther apart.
Finally, it has for its object to improve and simplify the construction and render more efficient and economical t-he operation of this class of grates generally.
To these ends my invention consists in the features and in the construction, combination, and arrangement of parts hereinafter described, and particularly pointed out in the claims following the description, reference being had to the accompanying drawings, forming a part of this specification, wherein- Figure 1 is a vertical longitudinal sectional view of my improved grate. Fig. 2 is a transverse sectional view taken on the line 2 2 of Fig. 1. Fig. 3 is a diagrammatic View illustrating the circulation of the water. Fig. 4 is a top plan view of the upper grate. Fig. 5 is a similar View of the lower grate. Fig. G is a detail sectional view illustrating one of the pipe-couplings and its check and packing. Fig. 7 is a similar View showing the manner of securing together the ends or corners of the lower grate-frame. Fig. 8 is a detail sectional view illustrating the manner of supporting the ends of the grate-bars of the upper grate. Fig. 9 is a detail view illustrating one of the side bars of a modified form of grate-frame. y
Referring to the drawings, the numeral l indicates the furnace structure; 2 and 3, the furnace-doors, giving access, respectively, to the upper and lower grates; 4, the offtakefine, and 5 and 6 respectively the upper and lower grates. Built in or attached to the inner sides of the furnace are two grate-supporting bars '7, each comprising a substantially rectangular bar provided on its inner side with ribs or flanges 8, which form supports upon which the upper grate 5 is adapted to rest. The upper grate comprises a rectangular frame formed of pipes or tubings as follows:
The numeral 9 indicates a plurality of transverse pipes, each having screwed on its opposite ends Ts 10, and said Ts 10 are joined or connected together by Ts l1 and couplings 12, -a coupling l2 being disposed between the adjacent ends of each pair of Ts 10 and 1l, as most clearly shown in Fig. 4 of the drawings. Each T 11 is provided with a vertical depending branch 13, in the lower end of which is screwed an elbow 14, and in the ends of each two corresponding or pair of elbows 14 is screwed a transverse pipe l5. As shown most clearly in Fig. 1 of the drawings, this manner of connecting the pipes 15 to the sides of the grate-frame causes them to lie in a plane somewhat below that of the said frame, 'as is shown in Figs. l and 8 of the drawings.
Loosely arranged on the water-pipes 15 are grate-bars, each comprising a longitudinal shell 16, segment-shaped in cross-section and comprising the greater portion of a complete circle. Formed transversely in the upper sides of the shells are segmental slots 17 to permit of the passage of air through the gratebars. The interiors of the shells are preferably provided with a plurality of ribs 18 to aid in holding the fuel in place on the gratebars; but these ribs, if preferred, may be omitted. Formed on the ends of the gratebars are inwardly-projecting flanges 19, that IOO rest on the water-pipes 15. The grate-bars straddle the water-pipes, and the only porA tions thereof that are in contact with said pipes are the anges 19. An unobstructed space sthus formed entirely around the water-pipes, and between the latter and the grate-bars for the circulation of air which escapes up through the slots 17, thereby aiding in protecting the grate and pipes flom the destructive effects of the lire.
The numeral 2O indicates rocker arms, there being one for each grate-bar, each of said rocker-arms being forked or bifurcated to form a yoke 21, which is inserted through one of the slots 17 and straddles the waterpipe. Pins 22 are inserted in the yokes below the water-pipes and pass through the sides of the grate-bars and fasten the latter in place on the water-pipes. The pipes I9, intermediate the gratebars, serve as stationary grate-bars and, as most clearly shown in Fig. 1, 'lie in the same plane as the grateframe and substantially in the same plane with the upper surfaces of the gratebars.
Each of the couplings 12, before referred to, is constructed. substantially as follows: The numeral 23 indicates a nipple enlarged and exteriorly screw-threaded, as at 24, and the numeral 25 indicates a corresponding nipple provided near one end with an annular fiange or collar 26. Arranged on the nipple 25 is a sleeve 27, having an inwardly-projecting annular flange 28, that is adapted to engage the flange 26 on the nipple 25, said sleeve being internally threaded, as at 29, to screw over the threaded end 24 of the nipple 23. Arranged on the inner end of the nipple 25 is a packing comprising a metallic washer 30, that rests on the flange 26, and a packing-ring 31, formed of vulcanized liber or any other material suitable for the purpose and resting on the washer 30. The sleeve 24 is arranged to engage the threaded end of the nipple 23 and draws the two nipples 23 and 25 up together, compressing the packing tightly between the two, thereby making a water-tight joint.
The couplings 12 on alternate sides of the grate-frame between the pipes 9 are provided with checks 32, which may conveniently consist of metallic disks of copper or other suitable metal and which are arranged between the ends of the nipples 23 and the packingrings 31, said disks or checks operating to prevent the passage of water through the couplings in which they are placed. To the T 10, arranged on one side and at one end of the upper grate, is connected a feed-water pipe 33, and to the corresponding T 1()b at the other end and on the other side of said grate is connected a water-discharge pipe 34. The
water entering by the pipe 33 passes through the adjacent pipe 9 and thence into the next pipe 15 and successively through the succeeding pipes 9 and 15 and finally out through the discharge-pipe 34. The circulation of water thus maintained through the grate-barsupporting water-pipes and the water-pipes arranged between the grate-bars operates as a cooling medium to preserve the gratebars,
the water pipes, and the grate supporting frame from the destructive effects of the fire, prevents the warping of the parts, and increases the life of the grate. Moreover, it operates to heat the feed-water before it is admitted to the boiler, as will more fully hereinafter appear. To each of the rocker-arms 20, before referred to, is connected a connecting-rod35, by means of which all the gratebars may be simultaneously rocked about the pipes l5. This maybe accomplished by hand, and by providing the arrangement shown in Fig. 1 of the drawings it may be accomplished by power. Referring to said figure, the numeral 3G indicates a pitmau pivotally connected at one end to the rod 35 and at its other end pivotally connected to a crank 37, forming a part of a shaft 38, which is journaled in suitable bearings 39 and provided with a pulley 40, which may be driven by a belt or the like from any suitable driving mechanism. It will be evident that by using washers 30 and packing-rings 3l of dilferent thicknesses the distance between the gratebars may be varied to a limited extent, either to bring the grate-bars nearer together or to place them farther apart or to expand or contract to a limited extent the lengthwise dimensions of the grate-frame, so as to cause the latter to accurately fit the interior of the furnace structure.
Arranged beneath the upper grate above described is the lower grate, which is supported in a rectangular frame resting on brackets or abutments 41, formed on or attached to the furnacewalls, as best shown in Fig. 5 of thc drawings. The frame comprises two end or cross bars 42, which are rabbeted at their ends, as at 43, (see Fig. 7,) and rest on the brackets 41, and overlapping and resting on said rabbeted ends of the cross-bars 42 are the rabbeted ends 44 of the side bars 45. The side bars 45 are provided with notched or recessed flanges 46, and lugs 47 are formed on the inner sides of the end cross-bars 42,as shown. A bolt-hole 47 is formed in each end of both end cross-bars 42, and a corresponding slot or elongated bolt-hole 48 is formed in each overlapping end of the side bars 45. Bolts 49 are passed through the corresponding bolt-holes 47 and 48 and are tightened up by nuts 50, said bolts operating to hold the side and end bars rigidly together when the nuts are tightened up. Fitted in the slot or elongated bolt-hole 48 on one side of the bolt 49 is a key 50a, which operates to hold the side bar against endwise movement. The lower grate consists of water-pipes 15, grate-bars 16, and Ts 10 11, connected by couplings 12 in substantially the same manner as in the upper grate, excepting that all the grate-bars are rocking bars and the IOO end Ts IOC and (1 extend entirely through the end bars 42 of the grate-frame. The rocker-arms of the lower grate-bars are pivotally connected to a rod or pitman 35, by means of which the grate-bars may be rocked or dumped. The pipe 34, leading from the upper grate, is connected to the nipple 10c on the rear end of the lower grate by a pipe 5l, and the nipple 10d at the front end of the lower grate is connected to a pipe (not shown) that leads to the boiler.
In practice a ire is built on both the upper and lower grates, and the particles of fuel that are not consumed or only partially consumed in the upper tire may be shook or raked down through the Lipper grate onto the re on the lower grate and be there thoroughly consu med. Moreover, the smoke and products of combustion drawn through the upper grate are consumed in the combustion-chamber between the two grates and iinally escape through the uptake-flue 4. rThe water enters the pipe 33, passes through the front pipe 9, thence passes successively through the water-pipes and grate-bars of the upper grate alternately in opposite directions, as indicated by the arrows, and thence through the rear cross-bar. From the latter the water passes through the pipe 5l to the lower grate and alternately through the water-pipes of the latter, as before, and out through the nipple 10d to the boiler, the Water in its passage through the grates becoming highly heated and also operating to protect the grates from the destructive effects of the tire. The course of the water in circulating throughthe grates will be readily understood by referring to the diagrammatic view in Fig. 3 of the drawings. Often in taking measurements for grates and in building the furnaces for their reception inaccuracies occur, so that the grates will not properly fit the furnaces. By the improved means above described, however, the grates may be extended or contracted lengthwise to accurately accommodate them to the furnace, for by using packings 30 and 3l of different thicknesses the grate-bars and water-pipes will manifestly be drawn closer together or moved farther apart. A lso by shifting the keys 50@L to one side or the other of the bolts @t9 the frame of the lower grate will be lengthcned or shortened.
In some grates where the water circulation is not desired the water-pipes and connections may be dispensed with, and in such case the side bars are omitted and in their stead are employed side bars 52, (see Fig. 9,) provided on their inner sides with laterally-projecting cylindrical lugs 53, on which the ends of the grate-bars are directly hung or journaled.
I have shown and described my improved grate as being particularly designed for steamboiler furnaces; but it will be apparent that it may be used in connection with heaters of various different descriptions.
Having described my invention, what I claim isl. In a heater, the combination with two independently rocking grates arranged one above the other, of means for circulating water successively through the grate bars of one of the grates and then circulating the entire and same body of water in a similar manner through the other grate, substantially as described.
2. The combination with a grate-frame,'of a plurality of transverse water-pipes supported by said frame and alternately communicating with each other at their ends, gratebars supported on said water pipes, and means for adjusting the water-pipes toward and away from one another, substantially as described.
3. The combination with a grate-frame longitudinally eXtensible and contractible, of a plurality of transverse water-pipes supported on said frame and alternately communicating with each other at their ends, grate-bars supported on said water-pipes, and means for adjusting the water-pipes and the ends of the grateframe toward and away from one another, substantially as described.
4. The combination with a grate-frame, of a plurality of transverse Water-pipes, Ts litted on the opposite ends of each of said water-pipes, couplings adjustably connecting the adjacent ends of the Ts together, and grate-bars supported on the water-pipes, substantially as described.
5. The combination with a rectangular grate-frame comprising side and end bars overlapping one another at the ends, the ends of the side bars being provided with elongated bolt-holes, of bolts fitted in the ends of the end bars and passing through said elongated bolt-holes, keys fitted in the said elongated bolt-holes to one side of said bolts,'and transverse grate-bars ad justably supported on the side bars ofthe grate-frame, substantially as described.
6. The combination with a grate-frame, a plurality ot transverse water-pipes supported on said frame, and means for circulating water through said pipes, of grate-bars supported on the Water-pipes and each comprising a shell segment-shaped in cross-section, said grate-bars loosely straddling the waterpipes and provided with transverse slots in their upper sides, each of said grate-bars being provided with inwardly-projecting iianges at its opposite ends which rest on the waterpipes and hold the grate-bar out of contact with the Water pipe, substantially as described.
7. The combination with a grate-frame, a plurality of transverse water-pi pes supported on said frame, and means for circulating Water through said pipes, of grate bars supported on the water-pipes and each comprising a shell segment-shaped in cross-section, said grate-bars loosely straddling the waterpipes and provided with transverse slots in their upper sides, rocker-bars, one for each grate-bar, forked at their lower ends and in- IOO IIO
serted inone of said transverse slots, pins my hand in presence of two subscribing witpassing th rough the forked ends of the roekernesses.
bars and through the grate-bars beneath the Water-pipes, and a connecting-rod eonneet- JOHN THURELL' 5 ing the ends of said rocker-bars, substantially Witnesses:
as described. ED. JARVIS,
In testimony whereof I have hereunto set W. P. MEADE.
US3156000A 1900-09-26 1900-09-26 Grate. Expired - Lifetime US667607A (en)

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2557013A (en) * 1949-05-03 1951-06-12 Hofft Company Inc Dump grate for refuse burning furnaces
US5899150A (en) * 1996-06-04 1999-05-04 Martin Gmbh Grate element and grate with fluid cooling

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2557013A (en) * 1949-05-03 1951-06-12 Hofft Company Inc Dump grate for refuse burning furnaces
US5899150A (en) * 1996-06-04 1999-05-04 Martin Gmbh Grate element and grate with fluid cooling

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