[0001] The present invention refers to an automatic warewashing machine for professional,
heavy-duty applications, provided with an improved water supply circuit, in particular
of the type including means for softening the in-flowing supply water and a system
for regenerating the water-softener means themselves.
[0002] Existing automatic warewashing machines for professional applications, i.e. intended
for use in foodservice and mass catering operations, communities and the like, are
largely known in the art to be usually provided of softening means for the inflowing
supply water, in which said water softener means are capable of reducing the presence
in the water of such scale-forming agents as, for example, calcium and magnesium salts,
which could in the long run lead to scale forming in pipes and on the electric heating
elements of the machine, thereby reducing the efficiency thereof. Materials used in
such water softener means are subject to a gradual reduction in the capacity thereof
of removing scale-forming salts from the water, so that they need to periodically
undergo a regeneration process aimed at restoring the function and the efficiency
thereof. The regeneration of water softener means is carried out automatically by
the machine itself through an appropriately provided system which, under the control
of a special programme, provides for a salt solution to be delivered into said water
softener means. The amount of salt that is each time needed to complete a regeneration
cycle is generally stored in a reservoir that the user/operator shall fill up periodically.
Since such a reservoir is involved by a passage of water flowing therethrough during
the regeneration cycle, it will therefore be found to be at least partially filled
with water at the end of the same cycle. As a result, when the user/operator tries
to open the reservoir in view of restoring the amount of salt in the same reservoir,
the water contained therein flows out uncontrolled. In an effort to at least partially
do away with such a problem, some prior-art warewashing machines for professional
applications have the salt reservoir included within the same washing vessel, or tank,
so that the water spilling from the reservoir is eventually collected by the conduit
provided there to discharge washing liquor, detergents and aids used in the washing
cycle. Solutions of this kind, however, have a major drawback in that the fluids and
media put to work and operating in the washing vessel of the machine may then come
into contact with the water supply system and pollute it just through the salt reservoir,
for instance in the case that the latter has not been properly or correctly closed
after a salt-re-filling operation carried out by the user or the operator. In addition,
safety requirements which heavy-duty or professional warewashing machines are required
to comply with in accordance with applying standard regulations as far as also their
operation is concerned, such as those issued by the Water Research Centre in Great
Britain, call for dangerous fluids rated as type-5 fluids in a scale of increasing
dangerousness from 1 to 5, such as for instance the fluids put to work in the washing
vessel, be effectively and by all means prevented from coming into contact with the
fresh water flowing in from the water supply system. As a result, in order to enable
warewashing machines incorporating the salt container in their washing vessel to duly
comply with the applying regulations, the machines themselves must be isolated from
the water supply system through an appropriate air separation chamber, generally known
as "air-gap" or "air-break" in the art.
[0003] Such a chamber enables two or more conduits to be physically separated from each
other, while anyway ensuring fluid transport from the upstream side to the downstream
side of the same chamber. If the warewashing machine must on the one side be necessarily
connected to a separation chamber of the above cited kind for due compliance to the
applying regulations, on the other side such a connection implies the disadvantage
of calling for an additional water pump to be used for installation between the air-gap
and the warewashing machine in view of supplying the latter with water at the correct
pressure value needed for working. The presence of such an additional pump is clearly
disadvantageous, since it causes production costs to undesirably increase.
[0004] Also known in the art there are automatic warewashing machines for professional applications,
which do not integrate in their structure any water softener arrangement and, therefore,
any associated arrangement for the regeneration thereof, but are rather designed for
connection to a separate water softener, which includes its own regeneration arrangement.
This solution, however, has a drawback in that it calls for two distinct pieces of
equipment to be used for the washing operations to be performed effectively, and it
further requires the water softener itself to be selected in an appropriate, specific
manner for the water flow rates requested by the warewashing machine to be duly taken
into account, thereby contributing to a disadvantageous increase in the complexity
of the whole installation, as well as in the purchase and set-up costs of the same.
[0005] It therefore is an object of the present invention to provide an automatic warewashing
machine for professional applications, which does away with the above-described drawbacks
and disadvantages of prior-art automatic warewashing machines of this kind. Within
this general object, it is a purpose of the present invention is to provide an automatic
warewashing machine for professional applications, which does not enable any direct
contact between the fluid used for washing and the water supply system.
[0006] A further purpose of the present invention is to provide an automatic warewashing
machine for professional applications, which is capable of operating with a simple
connection to the water supply system, without requiring any connection to any further
apparatus or piece of equipment.
[0007] Another purpose yet of the present invention is to provide an automatic warewashing
machine for professional applications, which enables the regeneration arrangement
to be restored without causing any water to be uncontrollably spilled.
[0008] According to the present invention, all these aims are reached in an automatic warewashing
machine for professional applications, which incorporates the characteristics and
features as recited in the appended claim 1. Features and advantages of the present
invention will anyway be more readily understood from the description that is given
below by way of non-limiting example with reference to the sole accompanying drawing,
which is a schematical view of the main component parts of the water circuit of the
automatic warewashing machine according to the present invention.
[0009] In the example of embodiment illustrated in the sole accompanying Figure, the warewashing
machine according to the present invention comprises at least a main water inlet fitting
1 for the connection of the machine to the water supply. To this main water inlet
fitting 1 there is connected a water supply circuit 2, which connects in series with
each other an apparatus 3 containing water softening resins, generally referred to
as "water softener", a separation chamber or air-break 4, a pump 6 for delivering
water to a washing vessel 7 accommodating water spray means 8. Preferably, heating
means 5 are provided upstream of the pump 6 for heating up the water. The above-cited
water supply circuit 2 includes at least a valve 9, as well as, preferably, a check
valve 10 adapted to prevent water being conveyed towards the warewashing machine from
being able to flow back towards the water supply system. The water supply circuit
2 is involved in water passing therethrough during the normal operation of the warewashing
machine, i.e. during the washing process taking place inside the washing vessel 7.
[0010] In order to be able to periodically carry out the process aimed at regenerating the
water softener apparatus 3, the automatic warewashing machine for professional uses
according to the present invention is provided with a regeneration water circuit 11
provided with at least a valve 12 that is capable of conveying a maximum flow rate
which is lower than the flow rate of the valve 9 of the main water supply circuit
2. This regeneration water circuit 11 conveys water taken in from the water supply
system towards a reservoir 13 provided for storing the salt intended for the regeneration
of the effectiveness of the resins contained in said water softener apparatus 3. Inside
said reservoir 13, which is separate from the washing vessel 7, the water mixes with
the salt and the thus forming salt solution is conveyed from the portion of regeneration
circuit 11 situated downstream of the reservoir 13 into the portion of main water
supply circuit 2 situated upstream of the water softener apparatus 3. In this manner,
the salt solution flows into the water softener apparatus 3, thereby starting the
regeneration process of the resins. In the regeneration water circuit 11, which fluidly
connects the water softener apparatus 3 with the reservoir 13, there is provided a
first check valve 14 enabling flow to take place solely in the direction towards said
water softener apparatus 3.
[0011] The process of regeneration of the water softener apparatus 3, as on the other hand
the whole operation of the automatic warewashing machine according to the present
invention, is controlled and carried out in a fully automatic manner; however, once
such a process is concluded, the need arises for the user/operator to re-fill salt
in the reservoir 13, so as to restore the necessary amount thereof and prepare the
machine in view of the next regeneration process that it is due to carry out. Since
the reservoir 13 is separate from the washing vessel 7 of the machine, in order to
avoid that, when the reservoir 13 is re-filled with salt, water remaining in said
reservoir after the regeneration process may spill out therefrom in an uncontrolled
manner, the warewashing machine according to the present invention is made and arranged
so that the reservoir 13 is further connected fluidly with means 15 for draining the
same reservoir 13 through a proper emptying circuit 16. The draining operation is
controlled and started automatically by the machine and it is performed prior to a
signal being issued to tell the user/operator to restore the salt content in said
reservoir 13. The above-cited reservoir emptying circuit 16 further connects the reservoir
13 with the separation chamber 4 ,and comprises first valve means 17 to enable or
shut off water flow therethrough. In a preferable manner, said reservoir emptying
circuit 16 is connected to the portion of the regeneration circuit 11 that is situated
downstream of the reservoir 13. The above-cited means 15 for draining the reservoir
13 are preferably constituted by a vibration pump that is capable of drawing in water
in which salt in a solid form is mixed.
[0012] During this draining operation carried out to empty the reservoir 13, the salt being
removed from said reservoir will at least partly settle on the emptying means 15 themselves.
Therefore, in order to be able to remove these deposits, the reservoir emptying circuit
16 is connected to flushing means 20 provided to rinse it. These flushing means 20
are constituted by a conduit conveying water in the chemical-physical conditions as
delivered by said water supply system 4, and this conduit comprises second valve means
21 to start and cut off rinsing of said emptying circuit 16, as well as a valve 22
for adjusting the flow rate, the highest value of which is comprised between the highest
flow-rate values of the valves 12 and 9 provided in the regeneration circuit 11 and
the water supply circuit 2, respectively.
[0013] In order to prevent the reservoir 13 from finding itself operating at some inappropriate
pressure, a pressure compensation circuit 18 connects the separation chamber 4 with
the reservoir 13. A second check valve 19 is installed in said pressure compensation
circuit 18, so as flow is actually allowed to solely take place towards said reservoir
13.
[0014] Fully apparent from the above description is therefore the ability of the present
invention to effectively reach the afore cited aims and advantages: in fact, it provides
an automatic warewashing machine for professional applications which does away with
any possibility for washing liquor to come into contact with the water supply system.
It has been furthermore demonstrated how the automatic warewashing machine according
to the present invention is actually capable of working with a simple connection to
the water supply system, without requiring any further connection to other apparatuses
or devices. It has been finally ascertained that the automatic warewashing machine
according to the present invention enables the water-softener regeneration arrangement
to be restored in its condition without causing water to be spilled in an uncontrolled
manner.
[0015] It should of course be noticed that the materials, as well as the shapes and the
sizing of the individual component parts of the machine according to the present invention
may each time be selected so as to more appropriately meet the particular requirements
or suit the particular application, without departing from the scope of the present
invention.
[0016] It will furthermore be appreciated that the various parts and items constituting
the machine according to the present invention shall not necessarily be embodied in
the sole manner as described above, but can rather be inherently provided in many
other embodiments and variants thereof, again without departing from the scope of
the present invention.
1. Automatic warewashing machine, in particular of the type intended for professional
applications, comprising:
- at least a water inlet fitting (1) for the connection of said warewashing machine
to the water supply,
- a device (3) containing water-softening resins,
- a separation chamber (4),
- a washing vessel (7),
- a reservoir (13) for storing the salt required for regenerating said resins and
restoring the efficiency thereof, said reservoir (13) being fluidly connected to said
water-softener device (3) via a fluid regeneration circuit (11), characterized in that said reservoir (13) is separate from said washing vessel (7), and is further connected
fluidly to means (15) provided to empty it via a fluid emptying circuit (16).
2. Automatic warewashing machine according to claim 1, characterized in that said fluid emptying circuit (16) fluidly connects said reservoir (13) with said separation
chamber (4).
3. Automatic warewashing machine according to claim 1 or 2, characterized in that said fluid emptying circuit (16) comprises first valve means (17) to enable or shut
off fluid flow therethrough.
4. Automatic warewashing machine according to any of the preceding claims or a combination
thereof, characterized in that said reservoir emptying means (15) are constituted by a vibration pump.
5. Automatic warewashing machine according to any of the preceding claims or a combination
thereof, characterized in that said fluid emptying circuit (16) is connected to flushing means (20) for rinsing
it.
6. Automatic warewashing machine according to claim 5, characterized in that said flushing means (20) are constituted by a conduit conveying water in the chemical-physical
conditions as delivered by said water supply system, said conduit comprising second
valve means (21) to start and cut off rinsing of said emptying circuit (16).
7. Automatic warewashing machine according to any of the preceding claims or a combination
thereof, characterized in that in said regeneration circuit (11), between said reservoir (13) and said water softener
(3), there is connected a first check valve (14) enabling flow to take place solely
in the direction towards said water-softener device (3).
8. Automatic warewashing machine according to any of the preceding claims or a combination
thereof, characterized in that said reservoir (13) and said at least a separation chamber (4) are further connected
with each other by a pressure compensation circuit (18).
9. Automatic warewashing machine according to claim 5, characterized in that said pressure compensation circuit (18) comprises a second check valve (19) enabling
flow to solely take place towards said reservoir (13).
10. Automatic warewashing machine according to any of the preceding claims or a combination
thereof, characterized by what has been described and illustrated in and with reference to the accompanying
drawing.