Further advantages and details result from the dependent claims and an embodiment illustrated in the drawings which will be described in the following. It is shown in:
The pump illustrated in
The interior of the pump is illustrated in section in
The motor is comprised essentially of a stationary stator lamination pack 12 on which coils 13 that are also stationary are provided as well as a rotor 14 which in the illustrated embodiment is advantageously formed as a two-pole permanent magnet. Between rotor 14 and shaft 9 there is a solid, closed iron ring 15 that is fixedly connected to both rotor and shaft and increases the magnetic flux of the motor significantly.
On the back of the motor a circuit board 16 is arranged that comprises the entire control electronics. Finally, the motor has a ground 17 at the stator 12 and a ground plate 18 at the back of the motor housing part 3.
For sealing the housing part 2 through which the water flows relative to the housing part 3 that receives the electric components, the rotor 14 with all movable parts and the stator 12 with all parts through which current flows are separated from one another by a can 19 surrounding the rotor 14. Toward the pump housing part 2 the can 19 widens into a large color-shaped flange 19′ for completely separating the pump housing part 2 and the motor housing part 3. The interior of the entire motor housing part 3 is encapsulated so that all free spaces are filled, for example, with a synthetic resin. The encapsulating compound 20 thus embeds also the entire control electronics 16 so that the latter are not only protected from moisture but also protected mechanically against vibrations. At the same time, the encapsulating compound 20 also supports the can 19 so that it can be manufactured inexpensively of plastic material that is not reinforced externally.
The control electronics 16 may comprise a signal evaluation unit, not illustrated in detail, by which the received signals are used for speed regulation of the pump motor. The control signals can be modulated directly by the mains voltage that is supplied to the motor. In this way, it is not necessary to provide a complex phase cutting control for speed regulation of the pump as it has been used up to now for conventional motors. The operation for speed regulation can be realized in particular by means of an intermediate switch that can be remote-controlled and is arranged between the mains supply and the current supply cable for the pump. This intermediate switch comprises a receiving module that receives the signals emitted by the remote control for changing the motor speed. In the intermediate switch element these signals are modulated onto the mains current and in this way transmitted to the control electronics of the pump. The intermediate switch thus takes on only the task of signal transfer so that no power electronics are required.
In the illustrated embodiment the stator 12 and the correlated coils 13 are preferably configured such that the coils 13 when being mounted can be slipped onto stator poles 22 of the stator 12 from the interior. This and the configuration of the stator 12 with the coils 13 is illustrated in more detail in
The geometric conditions that enable that the coils 13 can be slipped onto the stator poles 22 are illustrated essentially in
The pump according to the invention is optimized in that, on the one hand, its dimensions are to be kept as small as possible and, on the other hand, its efficiency should be as high as possible; this should be achieved while the assembly should be improved. For increasing the efficiency at predetermined maximum dimensions, the geometric conditions must be selected such that the coils 13 on the one hand can still be slipped on and, on the other hand, as many windings as possible can be arranged on the coils 13. For this purpose, an arc length BL of the stator poles 22 must be defined. If in the interior of the stator 12 in which the rotor 14 rotates an imaginary circle of maximum size were positioned that contacts the inner sides 32 of the stator poles precisely, the sum of the arc length BL of all poles 22 could be precisely half of the circumference of the defined circle. For the benefit of the copper quantity to be arranged in the coil windings and for preventing flux scattering, the arc length BL of each stator pole 22 is however reduced preferably by approximately 11 percent to 12 percent relative to the above defined initial length.
Advantageously, an angle a can be defined between two straight lines 50 that extend from the stator center and touch the inner pole edges 42 of the stator poles; the angle is between 0.88 times 360 degrees divided by the number n of the stator poles 22 and approximately 0.89 times 360 degrees divided by the number n of the stator poles 22. For conditions optimized in this way, the coils 13 are inserted into the opening ds illustrated in
The stator 12 of the illustrated embodiment has precisely six stator poles 22. Depending on the requirements, it is also possible to provide the motor with a stator 12 having three, nine, twelve, fifteen stator poles. However, for more than six poles 22 the spacings for the windings of the coils 13 are very narrow so that the mounting expenditure and cost expenditure will be increased. However, a motor that has only three poles has a reduced efficiency.
The pump according to the invention is characterized by high mounting comfort, minimal manufacturing costs, a high efficiency, and an optimized operating comfort. It is not prone to failure and therefore can be used without requiring much maintenance. Because of its high efficiency and the reduced material expenditure, the energy demand of such a pump in regard to manufacture as well as operation is minimized.
The specification incorporates by reference the entire disclosure of German priority application 10 2006 027 001.0 having a filing date of Jun. 8, 2006.
While specific embodiments of the invention have been shown and described in detail to illustrate the inventive principles, it will be understood that the invention may be embodied otherwise without departing from such principles.
Number | Date | Country | Kind |
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10 2006 027 001.0 | Jun 2006 | DE | national |