Background of the Invention
1. Field of the Invention:
[0001] The present invention generally relates to a liquid fuel combustion apparatus. Particularly,
it is concerned with a wick assembly for combusting liquid fuel in such an apparatus.
2. Prior Art:
[0002] A liquid fuel combustion apparatus of a type called "wick type" has hitherto been
widely embodied as an oil stove, an oil burner and the like. Such an apparatus is
usually designed to suction the liquid fuel by capillary action of the wick to lift
it up to a.top of the wick (i.e. a fuel vaporization part), the surface of which is
exposed to an atmosphere of a combustion chamber.in the apparatus, wherein the lifted
fuel vaporizes to be burnt.
[0003] In such kind of the liquid fuel combustion apparatus, since its fuel vaporization
part is always exposed to the high temperature atmosphere containing oxygen, a phenomena,
is likely to occur that a part of the fuel contained in the fuel vaporization part
becomes a tar-like substance by being oxidized and polymerized to be piled up in the
fuel vaporization part. Particularly, the formation and piling-up of said tar-like
substance becomes remarkable, if the fuel contains a small amount of high boiling
point fractions (for instance, machine oil, light or salad oil is mixed with kerosene),
and if part of the fuel is deteriorated (for instance, the kerosene has been caused
to contain oxides, peroxides or resinous components as a result of preserving the
kerosene at a high temperature or being exposed to the direct daylight for a long
period of time).
[0004] When the tar-like substance is piled up in the fuel vaporization part, the surface
of that part or the capillary tube inside thereof is choked with the substance to
obstruct the suctioning and vaporization of the fuel. Due to this phenomena, the vaporization
of the fuel is abnormally decreased, to make an air to fuel ratio in the combustion
chamber go wrong and to invite an inconvenience of generating a large amount of carbon
dust or soot and noxious carbon monoxide. Moreover, this phenomena of piling up the
tar-like substance hinders a rapid rise-up of the temperature of the vaporization
part and a rapid increase in the amount of vaporization at start-up time. Thus, it,takes
the apparatus a remarkably long period of time before reaching to a steady-state combustion
and the phenomena increases the undesirable generations of an objectionable odor,
carbon dust and carbon monoxide due to an increased unstable transient-state combustion.
In addition, the tar-like substance might stick to both of the wick and a metal part
of the apparatus supporting the wick to cause them adhered or fixed together, to make
the mechanical movement of the wick relative to the metal guiding pipe impossible
and to invite a dangerous state,wherein the turn-off of the apparatus by lowering
the wick is made impossible due to such sticking.
[0005] As one of the method for solving the abovementioned problems, it has hitherto been
known to be effective to increase the oil retaining ability of the wick top.
[0006] The method can be embodied by the following measure of;
t) shortening the distance between the oil level and the top of the wick,
2) increasing the thickness of the top, and
3) employing a substance having an oil retaining ability as large as possible for
the material of the main wick.
[0007] By taking the abovementioned measure, the deterioration of the fuel vaporization
part can be made hardly to occur even if the deteriorated kerosene or the kerosene
containing a different kind of component is combusted. In such cases of increasing
the oil content in the wick top, the tar-like component generates at the outside of
the wick rather than the inside of the wick. As a result, the fuel-suctioning by the
main wick is effectively prevented from being made insufficient.
[0008] However, when the tar-like substance is formed at the outside of the wick, a fire-spreading
time at the start-up of the apparatus is made longer, because the formed tar-like
substance makes the heat content of the wick top large. If the fire-spreading time
is made longer in such way, the objectionable odor at the time of start-up increases
and the carbon dust increases accordingly. Therefore, unless the fire-spreading time
is shortened, the disadvantages cannot be overcome.
Summary of the Invention
[0009] It is therefore the primary object of the present invention to provide a liquid fuel
combustion apparatus capable of shortening the fire-spread time at the start up of
the apparatus.
[0010] It is another object of the present invention to provide a liquid fuel combustion
apparatus capable of suppressing an objectionable odor and carbon dust to occur.
[0011] According to the present invention there is provided a liquid fuel combustion apparatus
which comprises; a wick assembly of a laminated structure of a main wick, and an auxiliary
wick for fire-spreading and at least one separator means sandwiched between said main
wick and said auxiliary wick so that it at least partly separates the main wick from
the auxiliary wick to prevent permeation of the fuel therethrough.
[0012] Said auxiliary wick for fire spreading may be disposed at one side of the said main
wick or sandwiched between bifurcated upper leaves of the main wick. The top of the
auxiliary wick may preferably be projected upwards from that of the main wick and
the bottom thereof may preferably the lifted up from an oil level during a steady-state
combustion.
[0013] The thickness of auxiliary wick for fire-spreading may preferably be smaller than
that of the main wick and its fuel-suctioning rate may preferably be smaller than
that of the main wick.
Brief Explanation of the Drawings
[0014]
FIG. 1 is a cross sectional view of a liquid- fuel combustion apparatus as an embodiment
of the present invention,
Fig. 2 is a partial enlarged cross-sectional view of a wick assembly used in the embodiment
of the present invention,
FIG. 3 is a partial enlarged cross-sectional views of a wick assembly used in another
embodiment of the present invention,
FIGs. 4 and 5 are partial enlarged cross-sectional views of the wick assembly as shown
in FIG. 3 combined with associated components and parts, indicating positional relation
therebetween, wherein
FIG. 4 represents a condition at ignition and steady-state combustion and FIG. 5 represents
a condition of extinguish operation, and
FIGs. 6(a) to 6(e) are cross-sectional views of various wicks embodying the present
invention as contrasted to those of prior art.
Description of the Preferred Embodiments
[0015] In the following description, the present invention will be elucidated in more detail
by referring to the preferred embodiments shown in the attached drawings.
[0016] FIG. 1 is a general cross-sectional view of a liquid fuel combustion apparatus embodying
the present invention. In FIG. 1, components designated by numerals 100, 101, 102
and 103 represent a wick assembly constituting the essential components of the present
invention, wherein a main wick 100, serves for suctioning liquid. The main wick 100
may be made of a combustible or noninflammable fabric woven or unwoven (held in shape
with a binding agent), and its top forms a fuel combusting part 101. Numeral 102 indicates
an auxiliary wick disposed outside of the main wick 100, 101, for facilitating the
fire-spreading around top thereof.
[0017] Numeral 2 is a wick support, 3 represents a fuel tank or reservoir, 4 is a draft
pipe which also serves to vertically guide sliding of the wick assembly 100 - 103
there along, numeral 5 indicates a wick control unit, i.e., a means for vertically
driving the wick assembly, 6 is a wick guide unit, 7 is a radiation grill, 8 indicates
an inside tube, 9 is a casing, 10 is chimney support, 1.1 represents a coil, and 12
a radiation net.
[0018] FIG. 2 is a partial enlarged cross-sectional view of a wick assembly embodying the
present invention.
[0019] The auxiliary wick 102 is put between two leaves of bifurcated main wick 101, and
may be made of a noninflanmable fabric, woven or unwoven, and is designed to be thinner
than, of less oil-containing ability and more heat-resistant, namely, resistant to
burn- off, than the main wick 101. The bottoms of the two leaves of the main wick
101 are connected to the upper end of a flexible lower part 101' having a large oil-containing
ability.
[0020] The top of this auxiliary wick 102 projects upwards from that of the main wick 101,
and its length may preferably be at least 50 mm. Although it depends on the oil containing
ability and the fuel suctioning rate of the auxiliary wick 102, the bottom may be
at a position so selected that the top thereof is always burnt-off during the steady-state
of combustion. For example, the bottom of the auxiliary wick 102 of FIG. 2 is disposed
with a gap to the upper end of the lower part 101'.
[0021] Numeral 103 indicates separators sandwiched between bifurcating leaves of the main
wick 101 and the auxiliary 102, and is made of a material which is impermeable to
the fuel and heat-resistant to an extent, such as aluminum foil. The top of the separator(.s)
103 is in a region of the fuel vaporization part 104 and its bottom extends downwards
at least beneath that of the auxiliary wick 102.
[0022] FIG. 3 shows another embodiment of the present invention wherein the auxiliary wick
102 for fire-spreading is pdovided outside the main wick 101. The auxiliary wick 102
may alternatively be provided inside the main wick 101.
[0023] In the liquid fuel combustion wick assemblies of the abovementioned drawings, the
main'wick 101 is at least partly separated from the auxiliary wick 102 by a fuel-impermeable
material, and the fuel for the steady-state combustion is suctioned by and ascends
through the main wick 101 while the fuel, used in the fire-spreading at the time of
ignition, is suctioned solely by the auxiliary wick 102 for the fire-spreading. As
a result of such an arrangement, the auxiliary wick for the fire-spreading can be
so designed that its top is always burnt-off during the steady-state combustion to
prevent the formation of the tar-like substance which would otherwise be produced
at the top.
[0024] Accordingly, the material and thickness of the auxiliary wick 102 can be selected
so that it may have a fuel suctioning rate and an oil-containing ability most suited
for a condition of improving the fire-spreading at the time of ignition, without regard
to the fuel-suctioning rate and the oil-containing ability of the main wick 101.
[0025] On the other hand, the material and thickness of the main wick can be selected from
ones of the quality and structure having a high fuel-suctioning rate and a large oil-containing
ability with a view to prevent the lowering of the fule-combusting amount due to the
formation of the tar-like substance, without regard to the fire-spreading.
[0026] Since each of the wicks performs separate functions as illustrated above, the fire-spreading
can be reached to within a short period of time even in the cases wherein the distance
from the oil level to the top of the wick is short and the tar-like substance, which
has a nature of inviting the decrease in the amount of the combustion, is piled up
at the fuel-combustion part of the main wick in large quantity.
[0027] The abovementioned concept has been confirmed by an experiment conducted for comparing
the performances of the wicks of the embodiments of the present invention with that
of conventional ones of glass fibre having tapered tops which had hitherto been widely
used, whose results are summarized in Table 1 below. In the experiment, a portable
oil stove having a wick diameter of 85 mm is used as the combustion apparatus for
the fire-spreading test, and a mixed fuel composed of kerosene 50% and light oil 50%
is burnt.

[0028] As indicated in Table 1, the previously mentioned conventional glass fibre wick of
tapered top (Nos. 1 and 2) shows a fast fire-spreading at first but this fire-spreading
rapidly tends to slow down in a short period of use due to the pile-up of the tar-like
substance on its top.
[0029] A use of an auxiliary wick 102 of thin silica cloth, which has a small oil containing
ability and a small fuel suctioning rate but is heat resistant and durable to burning-off,
laminated with the main wick to form a wick assembly No. 3 as listed in Table 1, will
reduce the piling-up of the tar-like substance around the top of the auxiliary wick
102 to some extent as compared with that of the glass fibre wick. The piling-up of
the tar-like substance will however increase gradually with the lapse of period of
use and slows the fire-spreading, due.to shifting of the suctioned fuel from the main
wick 101 to the auxiliary wick 102 during the combustion.
[0030] In contrast to this, if a separator 103 of oil-impermeable material such as aluminum
foil is sandwiched between the main wick 101 and the auxiliary wick 102 of Nos. 4,
5 and 6 of table and shown in FIGs. 2 and 3, the top of the auxiliary wick 102 is
always kept under a condition of being burnt-off to prevent the piling-up of the tar-like
substance. By the above burning-off the initial speed of the fire-spreading is effectively
maintained, regardless of the time period of use and the distance from the oil-level
to the top of the wick, even in the case wherein a large quantity of the tar-like
substance is piled-up on the fuel vaporization part 104 of the main wick 101.
[0031] In the previously described arrangement of the wick assemblies shown in FIGs. 2 and
3 at least part of the fuel oil is still evaporating from the auxiliary wick 102 for
the fire-spreading during the steady-state combustion. In that state, the main wick
101 is, however, embodied to have a large oil-containing ability and to be able to
hardly form the tar-like substance.
[0032] Although at the top of the auxiliary wick 102 for the fire-spreading the tar-like
substance is hardly formed because the latter is made thin and has a small oil-containing
ability, the tar-like substance is yet likely to be formed in the lower portion of
the auxiliary wick 102. If this is the case, the evaporation of the fuel from the
auxiliary wick for the fire-spreading becomes small to lead a decrease in the amount
of fuel combustion to that extent. The percentage of this decrease is, however, very
small as compared with that of the conventional structure.
[0033] Even in the arrangement of the wick assembly having the auxiliary wick 102 of the
aforementioned structure, if a kerosene containing small amount of high boiling point
fraction or oil of foreign kind, which is essentially very hard to be vaporized at
a temperature to vaporize the kerosene, is combusted, then the fire-spreading is still
unacceptably slow to lead a self extinguish phenomena (fire is going out).
[0034] In order to solve these problems, it is desirable to embody the wick assembly, so
that the bottom of the auxiliary wick 102 is below the oil level at the extinguishing
operation but positions above the oil level during the combustion in the arrangement
essentially the same as described above.
[0035] By so embodying, the auxiliary wick 102 contains oil only at the time of igniting
and is always in the condition of burnt-off during the steady-state of combustion,
and hence no decrease occurs in the amount of the combustion, and no defective ignition
attributable to.the auxiliary wick 102 occurs.
[0036] In the following paragraph, the arrangement will be elucidated in mcre detail by
referring to the attached drawings.
[0037] In FIGs. 4 and 5, a main wick 101 made of combustible or noninflammable fabric is
held in its shape by weaving or by adhering with a binding agent, and comprises a
fuel-vaporization part 104 being above a top of a wick-supporter 2 (a metal pipe)
and a fuel-suctioning part 100 being beneath the top of the wick-supporter 2. The
main wick 101 is made of a material having a large fuel-containing ability and a high
fuel-suctioning rate, in order to suppress the decrease in the amount of the fuel
combustion.
[0038] An auxiliary wick 102 for fire-spreading is made of noninflammable fabric woven or
held in its shape unwoven, having an oil containing ability just sufficient for shifting
the fire to the main wick 101 after the fire-spreading is completed and being of a
heat-resistant durable to the burning-off. It is more effective for the purpose if
the fuel-suctioning rate of the auxiliary wick 102 is made smaller than that of the
main wick 101. Furthermore, the top of the auxiliary wick 102 projects upwards from
that of the main wick 101 and its bottom is designed to be lift up at least 10 mm
above the oil level 13 during the steady-state of the combustion (FIG. 4). A separator
103 sandwiched between the main wick 101 and the auxiliary wick 102 is made of a material
impermeable to the fuel and heat-resistant to some extent such as aluminum foil, and
the top thereof extends at least above the top of the main wick 101 and its bottom
extends downwards beneath the bottom of the auxiliary wick 102.
[0039] FIGs. 4 and 5 show the situation wherein the wick assembly shown by FIG. 3 is installed
in a practical combustion apparatus, and FIG. 4 indicates a mode of the steady-state
combustion and FIG. 5 indicates an extinguishing ( :rning off) mode. As illustrated
in FIG. 4, since the bottom of the auxiliary wick 102 is lifted up from the oil level
13 during the steady-state combustion, no fuel is suctioned.by the auxiliary wick
102, and the auxiliary wick 102 is caused to be soaked in the oil to be impregnated
with oil only in the extinguishing mode.
[0040] In the above indicated embodiment, since the main wick 101 is separated from the
auxiliary wick 102 by the oil-impermeable separator 103, the fuel to be vaporized
is suctioned through the main wick 101 whereas that of an amount as much as necessarily
for the fire-spreading is suctioned through the auxiliary wick 102 and supplied to
its top.
[0041] By adopting the abovementioned configuration, a material and structure having a large
oil-containing ability and a high fuel-suctioning rate can be selected as that for
the main wick 101 in order to suppress the decrease in the amount of combustion, without
taking any regard of the fire-spreading. On the other hand, as the material of the
auxiliary wick 102 and as its top thickness, it is possible to select those having
an oil-containing ability just sufficient for maintaining the fire during its spreading
around the top of the auxiliary wick 102 and to transfer the fire to the main wick,
and being in a state of completely burnt-off in the steady-state combustion and free
from the piling-up of-the tar-like substance can be selected.
[0042] Next, an experiment is conducted in order to compare the wicks (FIGs. 6(c), 6(d)
and 6(e)) of the embodiment of the present invention with the conventional wicks (FIGs.
6(a) and 6(b)) of glass fibre having thinned top, and its results are summarized in
Table 2 below. In the experiment, a portable oil stove having a wick diameter of 85
mm is used as the combustion apparatus for the test, wherein the performance of the
wicks in terms of fire-spreading time, fire-taking and calorific value-maintaining
characteristics are measured . with kerosene containing 0.05% of salad oil which is
intentionally mixed into the fuel in order to make it liable to produce the tar-like
substance during the test. The distance from the oil-level to the top of the wick
is 90 mm and the initial calorific value of the apparatus is set at approximately
2100 kcal.
[0043] The relationship between, the tested wick assemblies of the embodiments and the comparative
wicks, and the oil level is shown in FIG. 6, wherein numeral 101 indicates the main
wick, 102 is the auxiliary wick for the fire-spreading and 103 indicates the separator
103. The oil level during the steady-state combustion is represented by 13b, and that
at the extinguish, when the wick is lowered, is represented by 13a.

[0044] In Table 2 above, it is shown that the wick No. 7 of the compared devices has a good
fire-spreading time as short as 4 seconds, during 20 hrs. of service from the beginning
of the test, but the fire partly goes out at about 20 hrs. from the beginning and
totally fails o ignite the wick by 30 hrs. after the beginning. This phenomenon is
attributable to the fact that, although the fire-spreading at the top of the wick
101 is improved by thinning the top portion, the tar-like substance is piled up on
a thick portion of the wick in a short period of service. Furthermore, since the top
of wick is thin, a deterioration in the calorific value is great and an objectionable
odor becomes strong when the deterioration exceeds 30%.
[0045] On the other hand, since the wick No. 8 of the comparative devices has a large oil-containing
ability even at its top, its deterioration in the calorific value is small as compared
with the wick No. 7, but its fire-spreading time rapidly becomes long. This is also
due to the piling-up of tar-like substance at the top of the wick 101 and when the
fire-spreading time becomes as long as 20 - 50 sec., the carbon dust and the objectionable
odor are generated in a large quantity at the time of fire-setting.
[0046] Since the auxiliary wick 102 for fire-spreading is separated from the main wick 101
by the separator 103 in the structure shown in No. 9 of the embodiments, very good
results in both respect of the calorific value and the fire-spreading time are obtained
with this wick assembly as compared with the wicks No. 7 and No. 8 of the comparative
devices, by virtue of the selective uses of material having a large oil-containing
ability for the main wick 101 and that having a thin top for the auxiliary wick 102.
[0047] The wick assembly of this structure presents only scarce problems even in the test
performed by using kerosene containing components having a slightly larger molecular
weight such as light oil as shown by the wicks 3 - 6 listed in Table 1. However, the
fire-spreading time with the lapse of the service time when it is tested becomes long
when using kerosene containing a component like salad oil which is the most hardly
vaporizable. The wicks shown as Nos. 10 - 13 of the embodiments in Table 2 are embodied
so that the bottom of the auxiliary wick 102 is lifted up from the oil level in the
steady-state combustion, and therefore they do not produce any tar-like substance
which would otherwise be piled up on the auxiliary wick. They always show a good fire-spreading
time as short as in the beginning of the service and produce no objectional odor and
carbon dust at the time of ignition.