Field of the Invention
[0001] The present invention relates to steam stations.
Background to the Invention
[0002] Steam stations are appliances for ironing in which the iron is linked via a flexible
tube to a water reservoir for producing steam which is provided through the flexible
tube to a sole plate of the iron. This has a number of advantages, including that
the iron can be lighter than a normal steam iron, the water reservoir can be larger
and the steam pressure can be higher.
[0003] GB-A-2 456 615 discloses an iron steam generator with opening boiler.
[0004] EP-A-1 612 320 discloses an iron and portable base with a protecting shutter
[0006] Preferred embodiments of the present invention aim to provide an improved steam station.
Summary of the Invention
[0007] According to the present invention there is provided an apparatus and method as set
forth in the appended claims. Other features of the invention will be apparent from
the dependent claims, and the description which follows.
Brief Description of the Drawings
[0008] The present invention will now be described by way of example only, with reference
to the accompanying drawings; in which:
Figure 1 is a perspective view of a steam station according to the present invention.
Figure 2 is a reverse perspective of the steam station shown in Figure 1.
Figure 3 is a rear view of the steam station shown in Figures 1 and 2.
Figure 4 is a cross sectional elevation of the steam station shown in Figure 1-3 through
the line IV-IV in Figure 3.
Figure 5 is a perspective view of the base station of the steam station shown in Figure
1-4.
Figure 6 is a plan view of the base station shown in Figure 5.
Figures 7A and 7B are enlarged perspective views of the iron securing mechanism.
Figure 8 is an enlarged perspective operational view showing the operation of the
locking mechanism of Figures 7A and 7B.
Figure 9 is an enlarged perspective view of a modification of the locking mechanism
shown in Figures 7A, 7B and 8.
Description of the Preferred Embodiments
[0009] With reference to Figures 1-5 of the accompanying drawings, there is shown a steam
station 2 comprising an iron 4 and a base station 6. The base station 6 comprises
a reservoir 8 to store water that is converted by a heater 10 to steam. The base station
6 comprises a steam outlet 12 leading to a steam cord 14 extending to a cord connector
16 on the iron 4 by means of which steam can be provided from the reservoir 8 to the
iron 4.
[0010] With reference to Figure 5 of the accompanying drawings, it can be seen that the
base station 6 comprises a cradle 18 for receiving the iron 4. The iron 4 is shown
in the cradle 18 in Figures 1-4 in a stowed position.
[0011] The base station comprises a port 20 providing access to the reservoir 8 for filling
the reservoir 8 with water. The port 20 comprises an opening inlet 22 and an outlet
24 into the reservoir 8.
[0012] The base station 6 includes an external channel 26 running round the full circumference
of the base station 6. The channel 26 includes a plurality of projections 28. The
projections 28 are located at the external edge of the channel 26 with matching projections
28 at the top and bottom thereof. The channel 26 is dimensioned so that the steam
cord 14 is a push-fit therein, the flexibility of the cord 14 enabling it to be secured
by the projections 28. This provides for convenient stowage of the steam cord 14.
[0013] The iron 4 comprises a handle 30 a body portion 32, a sole plate 34 and a rear portion
36.
[0014] The base station 6 comprises a funnel 38 mounted in the rear portion of the base
station 6, the funnel 38 comprising a funnel inlet 40 leading to a funnel outlet 42.
[0015] The iron 4 includes a sole-plate protrusion 41.
[0016] As an alternative filling option, the water reservoir 8 can be detached from the
base portion 6 and filled separately.
[0017] Base station 6 includes a pivotable door 43 providing a power cord and power plug
(neither shown) storage option.
[0018] The cradle 18 of base station 6 comprises a sole plate receiving portion 44 and a
rear receiving portion 46. Sole plate receiving portion 44 is shaped to receive the
sole plate of the iron 4. It includes three upstanding heat resistant members and
a rim 50 shaped to snugly receive the sole plate therein. The rear receiving portion
46 comprises an iron rear engaging portion 52 projecting therefrom to engage in a
corresponding recess in the rear portion of iron 4.
[0019] The base station 6 comprises a locking mechanism 56 for engaging with the iron 4
positively to secure the iron 4 in position in relation to the base station 6. This
enables the base station 6 to be carried using the iron handle 30. The locking mechanism
56 of the base station 6 engages a middle portion of the iron 4, in particular the
middle of the sole plate 34 of the iron 4.
[0020] As can be seen in Figure 4 of the accompanying drawings, the iron 4 includes a recess
35 above the sole plate 34 providing a gap between sole plate 34 and body portion
32 for the locking mechanism 56 to engage with.
[0021] The locking mechanism 56 is described in more detail in Figures 7a, 7b and 8 of the
accompanying drawings. Referring to Figures 7a and 7b of the accompanying drawings,
the locking mechanism is shown in more detail.
[0022] The locking mechanism 56 comprises a first latch 60 and a second latch 62. The first
latch 60 comprises a locking button 64 connected to a spring biased arm 66 having
at its distal end a pawl 68 engaging a cog 70.
[0023] Second latch 62 comprises corresponding features with the pawl engaging the opposite
side of cog 70.
[0024] First latch 60 additionally includes a pusher rod 62. Referring to Figure 8 it can
be seen that the pusher rod 72 includes a cam surface 74 for inter-engaging with a
locking part 76 which includes a locking protrusion 78. First latch 60 further comprises
an unlocking button 79.
[0025] The operation of the locking mechanism 56 is illustrated in Figure 8 of the accompanying
drawings which is an exploded operational view of the locking mechanism 56.
[0026] Once the iron 4 is located securely on the cradle 18, the iron 4 can be locked in
position by pressing one or both of the locking buttons 64. Normally just one of the
locking buttons 64 is pressed so the operation will be described from this point of
view. Pressing the locking button 64 causes the spring biased arm 66 to be moved linearly
causing the pawl to turn cog 70 generating a corresponding movement in the other spring
biased arm 66 on the other side of the iron 4. The movement of spring biased arm 66
enables locking part 76 to be moved by spring 100 into locking hole 102 holding the
spring biased arms 66 in a locked position. Protrusions 104 of the first and second
latches 62, 64 are secured in a gap provided above the soleplate 34, the sole-plate
protrustion 41 preventing the locking mechanism protrusion 104 from escaping thus
securing the iron 4 in a stowed position.
[0027] To unlock the iron 4, one or both of unlocking buttons 79 is pressed causing rods
72 to move cam surfaces 74 pushing the locking parts 76 out of locking holes 102,
enabling the spring bias of spring biased arms 66 to move the latches 60, 62 to an
unlocked position in which the iron 4 can be removed from the base station 6.
[0028] Figure 9 is an enlarged illustration of an alternative embodiment for the locking
mechanism 56 in which the locking mechanism itself is essentially similar to that
described and shown in relation to Figures 7a, 7b and 8, but with the addition of
a spring biased cord capture mechanism 80 also actuated by the locking mechanism 56.
The cord capture mechanism includes a depending arm on either side of the locking
mechanism (arm 82) with a cord capture puddle 84 configured to descend over the cord
securing channel 26 when the locking mechanism is depressed.
1. Dampfbügelstation (2), umfassend ein Bügeleisen (4) und eine Basisstation (6), wobei
die Basisstation einen Fluidtank (8) und eine Füllöffnung (20), damit Wasser in den
Fluidtank gefüllt werden kann, umfasst, wobei das Bügeleisen einen Fülltrichter mit
einem Trichtereinlass (40) und einem Trichterauslass (42) in Fluidkommunikation mit
der Füllöffnung, wenn das Bügeleisen auf der Basisstation positioniert ist, aufweist.
2. Dampfbügelstation (2) nach Anspruch 1, wobei ein Auslass (42) des Fülltrichters mit
einem Einlass der Füllöffnung in Eingriff kommt oder der Fülltrichter in einem hinteren
Abschnitt der Basisstation (6) angeordnet ist.