FLUID CIRCULATOR FOR HEATING OR COOLING SYSTEMS
20230228272 · 2023-07-20
Inventors
Cpc classification
F04D13/064
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D13/0693
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/026
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/4286
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
H02K1/146
ELECTRICITY
F04D29/628
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D1/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
A related heating or cooling apparatus, namely a fluid circulator (100) for heating or cooling systems comprising: a body pump (1) having an impeller for moving the fluid; an electric motor (2) for rotating the impeller, the electric motor (2) comprising at least one electrical winding (21); at least one terminal (22) of an electrical power supply wiring of the electric motor (2); at least one electrical connection (5) between the terminal (22) and an end of the at least one electrical winding (21). The at least one electrical winding (21) is made of aluminum or alloys thereof, and the fluid circulator is provided with a protection element configured for sealingly enclosing the at least one electrical connection (5).
Claims
1. A fluid circulator for heating or cooling systems, said fluid circulator comprising: a pump body having an impeller for moving said fluid; an electric motor for rotating said impeller, said electric motor comprising at least one electric winding; at least one terminal of an electric power supply wiring of said electric motor; at least one electric connection between said terminal and an end of said at least one electric winding; wherein said at least one electric winding is made of aluminium or alloys thereof, and further comprising a protection element configured for sealingly enclosing said at least one electric connection.
2. The fluid circulator according to claim 1, wherein said at least one terminal comprises a connecting element made of a material different from said at least one winding.
3. The fluid circulator according to claim 1, wherein said at least one terminal comprises a connecting element made of copper or alloys thereof.
4. The fluid circulator according to claim 3, wherein said connecting element is further coated with tin.
5. The fluid circulator according to claim 2, wherein said connecting element is of the insulator-indentation type.
6. The fluid circulator according to claim 1, wherein said electric connection comprises a mechanical crimping or a welding with a copper cable of said at least one terminal.
7. The fluid circulator according to claim 1, wherein said protection element is configured to prevent an oxidation of said at least one electrical connection.
8. The fluid circulator according to claim 1, wherein said protection element comprises an overmoulding of plastic material applied to said at least one electrical connection, preferably covering said at least one electrical connection and possible interstices thereof.
9. The fluid circulator according to claim 8, wherein said overmoulding is integrally made with a further plastic portion of said electric motor (2).
10. The fluid circulator according to claim 1, wherein said protection element comprises a protective coating applied to an area of said at least one electrical connection.
11. The fluid circulator according to claim 10, wherein said protective coating comprises a resin or a gel or a paint.
12. The fluid circulator according to claim 1, wherein said protection element comprises at least one cap element adapted to respectively seal said at least one electrical connection.
13. The fluid circulator according to claim 1, wherein said at least one electrical winding is of a stator of said electric motor.
14. A heating or cooling apparatus comprising a fluid circulator, said fluid circulator comprising: a pump body having an impeller for moving said fluid; an electric motor for rotating said impeller, said electric motor comprising at least one electrical winding; at least one terminal of an electrical power supply wiring to said electric motor; at least one electrical connection between said terminal and an end of said at least one electrical winding; wherein said at least one electrical winding is made of aluminium or alloys thereof, and further comprising a protection element configured for sealingly enclosing said at least one electrical connection.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0022] The invention is illustrated with reference to the following figures, given by way of non-limiting example, in which:
[0023] i.
[0024]
[0025]
[0026]
[0027]
[0028] In the several figures, analogous elements will be identified by analogous reference numbers.
DETAILED DESCRIPTION
[0029]
[0030] In its general configuration, the circulator 100 comprises a pump body 1 and an electric motor 2, associated with each other to make the fluid handling.
[0031] The pump body 1 comprises an impeller (not visible) therein which is rotated by the electric motor 2. In general, the impeller is housed in a containment volute, which encloses it in the pump body 1 and inside which there is the fluid during the operation of the circulator.
[0032] The pump body 1 comprises an outlet connection la and an inlet connection 1b, for the fluid connection to a piping system, which the fluid circulator 100 is connected to and inside which the fluid to be handled flows. Both at the inlet and at the outlet, the connections 1a and 1b may be of the threaded flange or bayonet/plug type.
[0033] The electric motor 2, preferably of the synchronous type, may be understood essentially from the following components (not visible in
[0034] The impeller, preferably of the centrifugal type, coupled to and rotated by the shaft, is adapted to impart a thrust to the fluid to provide a head or a pressure increase to the same.
[0035] In general, the electric motor 2 and the pump body 1 are separated from each other by a plurality of suitable sealed separating elements, so as to make a waterproof motor body and a watertight volute, thus avoiding fluid leakage.
[0036] The fluid circulator 100 further comprises a terminal box 3 associated with the electric motor 2. Said terminal box 3 is preferably positioned opposite the pump body 1.
[0037] The terminal box 3 comprises a closing and protection cap 31 for a control electronic card (not visible) of the fluid circulator 100.
[0038] The electronic card is arranged to control the operation of the fluid circulator 100, in particular to control the power supply of the electric motor 2.
[0039] The control electronic card is housed in a containment space defined and limited by the cap 31 when it is fitted and mounted on the terminal box 3.
[0040] The circulator 1 further comprises a plurality of connectors 4a and 4b of the electric or electronic type, which are connected to the electronic card contained in the terminal box 3.
[0041]
[0042] The electric motor 2 comprises at least one electric winding 21, which is not represented in its entirety showing each individual coil, for a graphical simplification.
[0043] In this example, the electric winding 21 is the one of the stator of the electric motor. The teachings of the present invention, in a variant, could be adopted in an electric winding of a rotor.
[0044] The fluid circulator 100 further comprises at least one terminal 22 of an electric power supply wiring of the electric motor 2, and at least one electric connection 5 between the terminal 22 and an end of the at least one electric winding 21.
[0045]
[0046] Indeed, the electric winding 21 of the electric motor 2 is made of aluminum or alloys thereof. The adoption of aluminum or alloys thereof for the electric winding 21 is mainly due to a reduction of the costs and/or to having an alternative material to use in case of a copper shortage, which the windings of electric motors are traditionally made of.
[0047] The aluminum, compared to copper, has a lower electrical conductivity therefore, despite the specific weight of aluminum being still lower, the volume required for a winding of the same power is higher. For this reason it is possible, in a non-limiting manner for the present solution, to keep a compact size of the fluid circulator 100 by appropriately limiting the power of the aluminum winding 21 and by filling all of the respective slots available in the electric motor 2. From an effectiveness point of view of the electric motor 2 with winding made of aluminum or alloys thereof, it is comparable with that of an electric motor with copper winding.
[0048] As it will be detailed hereinafter, the important aspect in the fluid circulator 100 is to manage to ensure a contact between aluminum wire and electric terminal that is effective and stable over time.
[0049] To prevent oxidation of the at least one electric connection 5, the fluid circulator 100 comprises a protection element configured to sealingly enclose said at least one electric connection 5. In particular, the terminal 22 comprises a connecting element made of different material than the winding 21 (made of aluminum or alloys thereof), such as a connecting element 22 made of copper or alloys thereof, preferably coated with tin.
[0050] Preferably, the connecting element 22 is of the insulator-indentation type, as it will be further described. An insulator-indentation connector allows indenting the winding insulation and creating an electric contact without any type of welding or crimping of a third component. Preferably, the connecting element 22 is based on a spring principle being it a connector of elastic and resilient material adapted to couple with a respective element (in this case, the wire of the winding 21) and to maintain a stable electric contact exerting a positive mechanical contact force, even on elements of different diameters.
[0051] In an alternative embodiment, preferably usable for larger constructions of fluid circulators, the connecting element could be of the “faston” type. Still alternatively, the electric connection could directly provide for a mechanical crimping or welding, with the copper cable of the at least one terminal, namely without necessarily providing for a connecting element.
[0052]
[0053] With reference to sub-Figure (b), the connecting element 22 comes into contact with the wire of the winding 21 of aluminum or alloys thereof.
[0054] With reference to sub-Figure (c), the connecting element 22 of the insulator-indentation type exerts a positive mechanical contact force thus making the electric connection 5.
[0055] With reference to sub-Figure (d), the protection element 60, which is configured to sealingly enclose the electric connection 5, is made. In this example, the protection element comprises an over-molding 60 of plastic material, already schematized in its entirety in
[0056] In an alternative embodiment, the protection element could comprise a protective coating, such as a resin or a gel (for instance silicone based) or a paint, applied to an area of the at least one electric connection 5. This alternative solution prevents the oxidation of the area.
[0057] Still in an alternative embodiment, the protection element could comprise at least one cap element, adapted to respectively seal the electric connection 5. This alternative solution constitutes a limited protection to the area of the electrical terminal. For instance, the cap element could be fixed by interference or by welding (ultrasonic welding for instance).
[0058] In general, the protection element is adapted to eliminate the exposure of aluminum wire and terminal, e.g., of copper, to oxygen, to limit the oxidation of the pieces, so as to not compromise the reliability of the electrical connection over time.
[0059] Even though not represented in the figures, the present invention also provides for a related heating or cooling apparatus comprising at least one fluid circulator 100. The heating apparatus may be for instance a boiler or a heat pump, or in general a heat generating device for systems. The cooling apparatus may be for instance an underfloor conditioning or cooling system. The heating or cooling apparatus is a technical solution having particular effectiveness of use, incorporating the at least one circulator 100 whose electric connection with the winding of aluminum or alloys thereof is protected by the protection element adopted thanks to the teachings of the present invention.
[0060] Considering the herein reported description, the person skilled in the art may conceive further changes and variants, in order to meet contingent and specific needs.
[0061] The embodiments herein described are therefore to be intended as illustrative and non-limiting examples of the invention.