[0001] This invention relates to a grate and more precisely an adjustable grate for a burning
device.
[0002] A conventional furnace bottom structure may be simply, for example, a bricklaid surface.
This is used, for example, in baking ovens. In such a case, no grate is applied at
all.
[0003] Another typical furnace bottom structure consists of a grate which is normally made
of cast iron in the shape of some kind of a grid and which is placed on the bottom
of a burning device, such as the furnace of a sauna stove. An ash box is normally
provided underneath the grate. The draught and the burning of wood are adjusted by
opening the ash box slightly or possibly by adjusting air holes in the furnace door.
[0004] There is also such grates being made of two perforated plates or grate elements which
are placed on top of each other and which can be rotated or moved in relation to each
other in order to make openings of the grate larger or smaller. Document
GB 2 081 436 A, describes this type of grate. However, nowadays demands for using advanced solid
fuels, such as wood pellets, in fireplaces and furnaces has strongly increased due
to fact that harmful particulate emissions is formed much more during the burning
of chopped wood than during the burning of e.g. wood pellets.
[0005] Advanced solid fuels cannot be burnt on the furnaces having adjustable grate of the
kind disclosed e.g. in the above mentioned document as such but separate solid fuel
burner, such as pellet burner, is required. In many cases, such additional devices
are usually quite space consuming which, among others, changes of the visual effect
of a fire place and leads to reduced amount of wood being possible to burn in one
go in a furnace.
[0006] It is an aim of the present invention to provide an improved grate structure on which
wood pellets or other kind of advanced solid fuels can also be burnt, more in one
go in a furnace and such that visual appearance of a fire place changes less than
when using a separate solid fuel burners with previously known grates due to fact
that so called combustion tube or fire pipe can be used with the grate when such solid
fuels are burnt and by means of which burning can be easily and accurately controlled.
Furthermore, the aim of the present invention is to provide a grate which also gives
some other advantages.
[0007] The above-mentioned and other advantages of the present invention have been provided
according to the characteristics of the appended claims.
[0008] The grate is intended to be used in a burning device which may be, for example, a
burning device according to
EP 1402217 or
EP 1427963. The grate is intended to be used particularly in such a burning device which is
intended for the burning of both chopped firewood and wood pellets. Such a burning
device may be, for example, a heat storing fireplace with a special combustion space
where it is possible to burn both pellets and chopped wood. The combustion space consists
of a vessel whose side wall is perforated for the passage of air. The grate is on
the bottom of the vessel in such a way that the ash space of the fireplace remains
under the grate; in other words, the ashes can fall to the ash space through the openings
of the grate.
[0009] The grate consists of two perforated plates which are placed on top of each other
and which can be rotated in relation to each other. Normally, the plates are circular,
or plates of another shape are chamfered in such a way that rotating is possible.
Normally, the plates are also installed concentrically, wherein they are rotatable
in relation to each other around the centres of the plates. Normally, one of the plates
is stationary and the other plate is rotated with respect to the stationary plate.
By rotating at least one of the plates with respect to the other plate it is possible
to place the plates in such a way with respect to each other that the apertures in
each plate can be used to adjust the size of the openings formed through both of the
plates in a suitable way. The apertures in each plate can be aligned in such a way
that the size of the openings becomes larger, or the apertures are not quite aligned,
in which case the size of the openings becomes smaller.
[0010] The apertures in at least one of the plates are arranged on the periphery of at least
one circle. The apertures arranged on the periphery of the circle are elongated so
that they are longer in the direction of the periphery of the circle than in the radial
direction of the circle. The elongated shape of the apertures and the fact that the
longitudinal direction of the aperture is substantially parallel to the periphery
are important. When pellets are burnt, one should make sure that a sufficient amount
of air flows through the grate but the pellets must not fall through the grate. When
chopped wood is burnt, a sufficient amount of air must be supplied for the combustion
of wood, and thus the same openings that were only partly open during the burning
of pellets, are completely open. The openings may also be completely open when ashes
are removed. As can be seen from the description above, the same grate can be used
in connection with fuel types with relatively different dimensions.
[0011] According to an advantageous embodiment, both of the plates are similar, whereas
the lower plate is perforated in said location, as will be shown in the drawings below.
According to the invention, the upper plate is equipped with a central hole for a
so-called combustion tube or fire tube. It is also possible that the lower plate is
not perforated. This embodiment is particularly advantageous because of its resistance
in practice, since the grate is not warped by the effect of heat and its usable life
is thus long.
[0012] The combustion tube is a tube extending centrally upwards in the combustion space
and having open ends and a perforated side wall. The combustion tube is used together
with holes in the wall of the combustion space to generate, when pellets are burnt,
a flow of combustion gases into the combustion tube, in which the combustion gases
are burnt. The combustion tube can also be used for turning the upper plate of the
grate, for adjusting the openings of the grate. The combustion tube is normally not
used when chopped wood is burnt.
[0013] It is also possible to provide different apertures in the lower plate than in the
upper plate, because the desired function can also be achieved, for example by equipping
the upper plate with elongated apertures arranged on the periphery of a circle, but
the lower plate with apertures whose longitudinal direction is in the radial direction
of the circle; in other words, the single apertures of the lower plate can form openings
extending through the plates with several apertures of the upper plate.
[0014] The grate may also comprise firing tubes for conveying a material for facilitating
the ignition and auxiliary air ducts for conveying air. These tubular parts are particularly
advantageous to use when the burning device is automatically controlled; in other
words, it is possible to perform accurately timed functions when these are needed
for facilitating the ignition or for boosting the combustion.
[0015] The invention will be described in more detail with reference to the appended drawings
which show an embodiment of the invention.
[0016] Thus, Fig. 1 shows a grate according to the invention seen in a slanted view in the
"burning position", and
[0017] Fig. 2, in turn, shows the grate according to the invention in the ash removal position.
[0018] The grates shown in the figures are depicted as plates 2, 3 with a circular form,
but in view of the function of the invention it is insignificant whether the plates
have a circular or different shape. What is essential, however, is that the mutual
position of the plates 2, 3 can be changed by rotating with respect to a given point.
[0019] The grate 1 consists of two substantially plate-like elements 2, 3 placed on top
of each other and connected to each other in a suitable way to form a compact unit.
The grate 1 is mounted or supported to the burning device in any way known as such,
normally at the lower grate element 2. Preferably, a suitable space is left for ash
underneath the grate 1.
[0020] In this embodiment, the upper plate 3 is provided with an octagonal central hole.
This opening is intended to accommodate a "fire tube" according to an embodiment in
use, for rotating the upper grate element. The central part of the lower grate element
2 is equipped with perforations 5 to allow the flow of air from below into the combustion
space. The lower grate element 2 is also equipped with a central hole 9, through which
it is also possible, in some embodiments, to introduce air into the combustion space.
If both of the grate elements 2 and 3 are equipped with corresponding holes, a pin-like
or sleeve-like shaft element can be placed through the holes to keep the elements
2 and 3 together. On the other hand, the hole 9 can also be covered, if necessary.
[0021] Also the tubular parts marked with the reference numeral 4 are intended for conducting
air from below into the combustion space.
[0022] The plate 2 is equipped with a number of circumferentially arranged apertures 6 which
are elongated in this embodiment.
[0023] The upper grate element 3 is, in principle, plate-like and equipped with apertures
6 corresponding to the apertures 6 of the lower grate element 2. In Fig. 2, the apertures
6 are on top of each other, wherein the same reference numeral 6 indicates the apertures
of both grate elements 2 and 3. In this embodiment, the apertures 6 are substantially
identical in both of the grate elements 2, 3. In Fig. 2, the apertures 6 are open
as much as possible. This position could be called the ash removal position, because
the removal of the ash produced by burning is then easy and possible through the apertures
6.
[0024] The upper grate element 3 can be turned to a fixed angle in relation to the grate
element 2 in a rotating manner. As can be easily seen, by turning it is possible to
make the size of the apertures 6 larger and smaller from the small size of Fig. 1
to the large size of Fig. 2 in a stepless manner.
[0025] The pin-like parts indicated with the reference numeral 7 are hollow, and via them
it is possible to facilitate the ignition of the material to be burnt, because any
material to facilitate ignition can be introduced via the tubes 7 into the combustion
space which is placed on top of the grate 1, as is obvious. For example, the tubes
7 can conduct air heated outside to facilitate the ignition.
[0026] Another function of the tubular parts 7 is to facilitate the sticking together of
the grate elements 2 and 3. However, the grate elements 2 and 3 are primarily kept
together, for example, by means of a pin inserted in the central hole in the grate
1 or by providing either one of the grate elements 2, 3 with a collar or the like
that is supported by parts in the other grate element. For their part, the parts 7
are also used as stops for the movement between the grate elements 2, 3.
[0027] The movement between the grate elements 2 and 3 is limited to a suitable range, for
example, by means of a stop pin indicated with the reference numeral 8. The pin 8
is fixed to the upper grate element 3 and it moves in a slot in the lower grate element
2. It is obvious that there are also many other ways of stopping which are known in
abundance from a variety of technical fields. Because the function of the movement
is to open and close the apertures 6, the required movement is relatively small, maybe
in the order of about 15 degrees in the average, wherein the part 8 is suitable for
this purpose.
[0028] For the rotation, the upper grate element 3 can be equipped with a suitable protrusion
not indicated herein. If the structure according to the invention is used in connection
with a generally cylindrical burning device, the protrusion could be a kind of a handle
which is visible at the side and by means of which the burning process can be easily
adjusted by changing the size of the openings 6.
[0029] The material for producing the grate according to the invention is particularly a
plate made of metal, such as cast iron. The material thickness and the size of the
openings and the other details are always selected according to the use. The adjustment
of the combustion is efficient when the grate according to the invention is used.
The adjustment of the air-introducing aperture means pure combustion and also efficient
combustion.
1. A grate (1) for use in a burning device, the grate (1)
- consisting of two plates (2, 3), an upper plate (3) and a lower plate (2) on top
of each other, which are rotatable in relation to each other around a given point,
- both plates comprising apertures (6), the apertures (6) located such that by rotating
the plates (2, 3) in relation to each other, the openings through both plates (2,
3), formed by more or less aligned apertures (6) of both plates (2, 3) are adjustable
larger or smaller,
- at least some of the apertures (6) in at least one of the plates (2, 3) being arranged
on the periphery of a circle, and
- the apertures (6) arranged on the periphery of a circle being elongated so that
they are longer in the direction of the periphery of the circle than in the direction
of the radius of the circle,
characterized in that the upper plate (3) comprises a central hole for a combustion tube or a fire pipe.
2. The grate (1) according to claim 1, characterized in that at least part of the apertures (6) of both plates (2, 3) are arranged on the periphery
of the same circle.
3. The grate (1) according to claim 1 or 2, characterized in that the grate comprises tubular ignition tubes (7) for conveying a material for facilitating
the ignition.
4. The grate (1) according to any of the preceding claims, characterized in that the grate comprises tubular auxiliary air ducts (4) extending from underneath of
the lower plate (2) to the upper surface of it for conveying air.
5. The grate (1) according to any of the preceding claims, characterized in that the apertures (6) of both plates (2, 3) are arranged on the peripheries of at least
two circles being of different size.
6. The grate (1) according to any of the preceding claims, characterized in that the lower plate (2) of the plates (2, 3) placed on top of each other is provided
with air holes (5) in the area between the apertures (6).
7. The grate (1) according to any of the preceding claims, characterized in that the mutual movement is limited by means of a slot and a pin (8) moving therein.
1. Gitter (1) zur Verwendung in einer Verbrennungsvorrichtung, wobei das Gitter (1)
- aus zwei Platten (2, 3), einer oberen Platte (3) und einer unteren Platte (2) besteht,
die übereinander angeordnet und relativ zueinander um einen gegebenen Punkt drehbar
sind,
- wobei beide Platten Öffnungen (6) aufweisen, wobei die Öffnungen (6) so angeordnet
sind, dass durch Drehung der Platten (2, 3) relativ zueinander die Öffnungen durch
beide Platten (2, 3), die durch mehr oder weniger ausgerichtete Öffnungen (6) beider
Platten (2, 3) gebildet werden, größer oder kleiner eingestellt werden können,
- wobei zumindest einige der Öffnungen (6) in mindestens einer der Platten (2, 3)
auf dem Umfang eines Kreises angeordnet sind, und
- wobei die auf dem Umfang eines Kreises angeordneten Öffnungen (6) verlängert sind,
so dass sie in Richtung des Umfangs des Kreises länger sind als in Richtung des Radius
des Kreises,
dadurch gekennzeichnet, dass die obere Platte (3) ein Mittelloch für ein Verbrennungsrohr oder ein Feuerrohr aufweist.
2. Gitter (1) nach Anspruch 1, dadurch gekennzeichnet, dass zumindest ein Teil der Öffnungen (6) beider Platten (2, 3) auf dem Umfang des gleichen
Kreises angeordnet ist.
3. Gitter (1) nach Anspruch 1 oder 2, dadurch gekennzeichnet, dass das Gitter rohrförmige Zündrohre (7) zum Zuführen eines Materials zum leichteren
Zünden aufweist.
4. Gitter (1) nach einem der vorstehenden Ansprüche, dadurch gekennzeichnet, dass das Gitter rohrförmige Zusatzluftleitungen (4) aufweist, die sich zur Zufuhr von
Luft von unterhalb der unteren Platte (2) zu deren oberen Fläche erstrecken.
5. Gitter (1) nach einem der vorstehenden Ansprüche, dadurch gekennzeichnet, dass die Öffnungen (6) beider Platten (2, 3) auf dem Umfang von mindestens zwei Kreisen
unterschiedlicher Größen angeordnet sind.
6. Gitter (1) nach einem der vorstehenden Ansprüche, dadurch gekennzeichnet, dass die untere Platte (2) der übereinander angeordneten Platten (2, 3) in dem Bereich
zwischen den Öffnungen (6) mit Luftlöchern (5) versehen ist.
7. Gitter (1) nach einem der vorstehenden Ansprüche, dadurch gekennzeichnet, dass die gemeinsame Bewegung durch einen Ritz und einen sich darin bewegenden Stift (8)
begrenzt ist.
1. Grille (1) destinée à une utilisation dans un dispositif de combustion, la grille
(1)
- consistant en deux plaques (2, 3), une plaque supérieure (3) et une plaque inférieure
(2), l'un par-dessus l'autre, qui peuvent tourner l'une par rapport à l'autre autour
d'un point donné,
- les deux plaques comprenant des ouvertures (6), les ouvertures (6) situées de telle
manière que, par rotation des plaques (2, 3) l'une par rapport à l'autre, les ouvertures
à travers les deux plaques (2, 3), formées par des ouvertures (6) plus ou moins alignées
des deux plaques (2, 3) sont ajustables plus petites ou plus grandes,
- au moins certaines des ouvertures (6) dans au moins une des plaques (2, 3) étant
agencées sur la périphérie d'un cercle, et
- les ouvertures (6) agencées sur la périphérie d'un cercle étant allongées de telle
sorte qu'elles sont plus longues dans le sens de la périphérie du cercle que dans
le sens du rayon du cercle,
caractérisée en ce que la plaque supérieure (3) comprend un trou central pour un tube de combustion ou un
conduit de fumée.
2. Grille (1) selon la revendication 1, caractérisée en ce qu'au moins une partie des ouvertures (6) des deux plaques (2, 3) sont agencées sur la
périphérie du même cercle.
3. Grille (1) selon la revendication 1 ou 2, caractérisée en ce que la grille comprend des tubes d'allumage (7) tubulaires pour transporter une matière
pour faciliter l'allumage.
4. Grille (1) selon l'une quelconque des revendications précédentes, caractérisée en ce que la grille comprend des conduites d'air auxiliaire (4) tubulaires s'étendant du dessous
de la plaque inférieure (2) jusqu'à la surface supérieure de celle-ci pour transporter
de l'air.
5. Grille (1) selon l'une quelconque des revendications précédentes, caractérisée en ce que les ouvertures (6) des deux plaques (2, 3) sont agencées sur les périphéries d'au
moins deux cercles étant de taille différente.
6. Grille (1) selon l'une quelconque des revendications précédentes, caractérisée en ce que la plaque inférieure (2) des plaques (2, 3) placées l'une par-dessus l'autre est
prévue avec des trous d'évent (5) dans la zone entre les ouvertures (6).
7. Grille (1) selon l'une quelconque des revendications précédentes, caractérisée en ce que le mouvement mutuel est limité au moyen d'une fente et d'une broche (8) se déplaçant
dans celle-ci.