Method for inserting undulated coil assemblies in slots of cores of dynamoelectric machines
11557946 · 2023-01-17
Assignee
Inventors
- Massimo Ponzio (Tavarnelle Val di Pesa, IT)
- Rubino Corbinelli (Poggibonsi, IT)
- Federico Rossi (Viterbo, IT)
Cpc classification
Y10T29/49073
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
H02K15/066
ELECTRICITY
H02K15/0414
ELECTRICITY
H02K15/0428
ELECTRICITY
Y10T29/53143
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
International classification
Abstract
Embodiments of the currently claimed disclosure are directed to methods for inserting an undulated coil assembly in the slots of a hollow core of a dynamoelectric machine. In some embodiments, the method can include positioning at least a first coil portion of the coil assembly around a support member, aligning a guide device with respect to end faces and the slots of the core, feeding the first coil portion from the drum support member along the guide device to insert adjacent superimposed linear portions (LI) of the coil assembly in the slots, engaging the superimposed linear portions (LI) along at least one guide surface during the feeding, and relatively moving the core with respect to the guide assembly device to position the slots for receiving the superimposed linear portions (LI).
Claims
1. A method for inserting an undulated coil assembly in slots of a hollow core of a dynamoelectric machine, the coil assembly having adjacent superimposed linear portions (LI) extending parallel to each other and a plurality of turn portions (T) connecting the linear portions (LI), the method comprising the steps of: positioning at least a first coil portion of the coil assembly along an outer curved surface of a support member comprising a drum; aligning a guide device with respect to end faces and the slots of the core; feeding the first coil portion from the outer curved surface of the support member along the guide device via rotation to insert the adjacent superimposed linear portions (LI) in the slots towards to the hollow core; radially engaging the superimposed linear portions (LI) along at least one guide surface that forms a passage of the guide device during the feeding along the guide device to change an angular orientation of adjacent superimposed linear portions (LI) with respect to radiuses of the slots during the insertion in the slots; and relatively moving the core with respect to the guide device to position the slots for receiving the superimposed linear portions (LI).
2. The method of claim 1, further comprising: engaging superimposed linear portions (LI) of a tail end of the first coil portion in slots of the support member; engaging superimposed linear portions (LI) of the first coil portion with a feed member located between the support member and the slots; and synchronizing the movement of the support member, the movement of the feeding and the relative movement of the core.
3. The method of claim 1, wherein: the positioning, the aligning, the feeding, and the relative moving of the core are repeated to orient and insert in the slots superimposed linear portions (LI) of at least a second coil portion of the coil assembly; and the second coil portion is provided with a different pitch distance (PT2) for separating the superimposed linear portions with respect to a pitch distance (PT1) for separating superimposed linear portions of the first coil portion.
4. A method for inserting an undulated coil assembly in slots of a hollow core of a dynamoelectric machine, the coil assembly having adjacent superimposed linear portions (LI) extending parallel to each other and a plurality of turn portions (T) connecting the linear portions (LI), the method comprising the steps of: positioning at least a first coil portion of the coil assembly along an outer curved surface of a support member comprising a drum; aligning a guide device with respect to end faces and the slots of the core; feeding the first coil portion from the outer curved surface of the support member along the guide device via rotation to insert the adjacent superimposed linear portions (LI) in the slots towards to the hollow core; engaging the superimposed linear portions (LI) along at least one guide surface that forms a passage of the guide device during the feeding along the guide device to change an angular orientation of adjacent superimposed linear portions (LI) with respect to radiuses of the slots during the insertion in the slots; and relatively moving the core with respect to the guide device to position the slots for receiving the superimposed linear portions (LI).
5. The method of claim 4, further comprising: engaging superimposed linear portions (LI) of a tail end of the first coil portion in slots of the support member; engaging superimposed linear portions (LI) of the first coil portion with a feed member located between the support member and the slots; and synchronizing the movement of the support member, the movement of the feeding and the relative movement of the core.
6. The method of claim 4, wherein: the positioning, the aligning, the feeding, and the relative moving of the core are repeated to orient and insert in the slots superimposed linear portions (LI) of at least a second coil portion of the coil assembly; and the second coil portion is provided with a different pitch distance (PT2) for separating the superimposed linear portions with respect to a pitch distance (PT1) for separating superimposed linear portions of the first coil portion.
7. The method of claim 4, wherein an angle of the angular orientation is reduced during the insertion in the slots.
8. A method for inserting an undulated coil assembly in slots of a hollow core of a dynamoelectric machine, the coil assembly having adjacent superimposed linear portions (LI) extending parallel to each other and a plurality of turn portions (T) connecting the linear portions (LI), the method comprising the steps of: positioning at least a first coil portion of the coil assembly around a support member comprising a drum; aligning a guide device with respect to end faces and the slots of the core; feeding the first coil portion from the support member along the guide device via rotation to radially insert the adjacent superimposed linear portions (LI) in the slots toward the hollow core; radially engaging the superimposed linear portions (LI) along at least one guide surface that forms a passage of the guide device during the feeding along the guide device to change an angular orientation of adjacent superimposed linear portions (LI) with respect to radiuses of the slots during the insertion in a direction of the radiuses of the slots; and relatively moving the core with respect to the guide device to position the slots for receiving the superimposed linear portions (LI).
9. A method for inserting an undulated coil assembly in slots of a hollow core of a dynamoelectric machine, the coil assembly having adjacent superimposed linear portions (LI) extending parallel to each other and a plurality of turn portions (T) connecting the linear portions (LI), the method comprising the steps of: positioning at least a first coil portion of the coil assembly around a side, cylindrical surface of a support member comprising a drum; aligning a guide device with respect to end faces and the slots of the core; feeding the first coil portion from the support member along the guide device via rotation to radially insert the adjacent superimposed linear portions (LI) in the slots toward the hollow core; engaging the superimposed linear portions (LI) along at least one guide surface that forms a passage of the guide device during the feeding along the guide device to change an angular orientation of adjacent superimposed linear portions (LI) with respect to radiuses of the slots during the insertion in a direction of the radiuses of the slots; and relatively moving the core with respect to the guide device to position the slots for receiving the superimposed linear portions (LI).
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The invention will be now shown with the following description of an exemplary embodiment, exemplifying but not limitative, with reference to the attached drawings in which:
(2)
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DETAILED DESCRIPTION OF THE INVENTION
(11) A portion of an undulated woven coil assembly 90 consisting of twelve wire conductors is shown in
(12) A coil assembly according to these characteristics, together with methods and devices for achieving the flat configuration shown in
(13) A stator core 101, which receives the coil assembly of
(14) With reference to
(15)
(16) As shown in the example of
(17) In other words a certain set S1 of linear portions LI will have pitch distance PT1 and a second set S2 of linear portions LI will have pitch distance PT2, depending on the position that the linear portions LI have along the radius of the slots 102, as shown in
(18) Pitch distance PT1 will be larger than pitch distance PT2. This will result in the length of the turns T of the linear portions LI having the pitch distance PT1 longer than the length of the turns of the linear portions having the pitch distance PT2.
(19) In this way, both the turns T of the linear portions will be more accurately positioned and tensioned. Accordingly, the stator core will have less height where the turns T are located, which achieves that the stator core 101 is more compact. Furthermore, there is an optimization of the length of conductor used to wind the coils of the stator core. Also, there is less variance in the electrical resistance of the coils, and the insulation of the conductors forming the coil assemblies is less subject to having areas of breakage.
(20)
(21) Drum 200 is provided with teeth 201 for engaging the tail end of the flat coil. By rotating drum 200 around longitudinal axis 200′ of the drum, coil portion 90′ unwinds from drum 200. In
(22) The leading portion 91 of coil 90 is directed through passage 301 of guide assembly 300. Passage 301 is delimited by guide plates 302, 303, 304.
(23) Engagement wheel 400 is provided with teeth 401 for engaging the spacing SP existing between linear portions LI, as shown in
(24) When engagement wheel 400 is being rotated, also drum 200 will be rotated to feed the leading portion 91 and unwind the rest of the coil portion 90′ from drum 200 without modifying the pitch distance PT existing between the linear portions LI.
(25) At the same time, stator core 101 is indexed by a rotation motion around longitudinal axis 101′, which is the central longitudinal axis of the stator core 101, as shown in
(26) With reference also to
(27)
(28) More particularly, engagement of the linear portions along the sides of the guide passage 301 during the above movements rotates, or orients, the linear portions LI, as has been described with reference to
(29) As shown in
(30) The situation of
(31) To obtain the insertion of a plurality of linear portions in a same slot, like is shown in
(32) With reference to
(33) Structure 305 located in the stator core can be adopted for connecting the guide plates, as shown in
(34) As shown in
(35) A drive unit (not shown) is attached to shaft 402 of engagement wheel 400 for the rotation of guide wheel 400, as shown in
(36) In order to place all the linear portions LI in the slots 102, linear portions LI having different pitch distance PT2, as shown in
(37) This can be achieved by winding a second flat coil to have pitch distance PT2. The second flat coil can be wound around another drum like 200 having teeth at a pitch distance PT2. Also, a second engagement wheel 400 will need to have a pitch distance PT2 between the teeth.
(38) Furthermore, guide plates 302, 303 and 304 will need to form a passage having a configuration that progressively rotates, or orients the linear portions with specific angles for entering the slots and for maintaining pitch distance PT2 constant.
(39) These different devices can be present in a second unit like that of
(40) It will be appreciated that by means of device not shown the relative movement of the stator core 101 with respect to the guide passage 301 can be achieved with motions, which when combined together result in a rotation of the stator core around axis 101′, or in other movements, which achieve the required insertion and final positioning in the slots 102 of the stator core.
(41) It should also be appreciated that the passage 301 can be accomplished by means of a single guide surface along which the linear portions LI are caused to engage and move in order be rotated and inserted in the slots 102 of stator core 101, like occurs on guide surface of plate 303 when guide 304 is removed.
(42) The foregoing description exemplary embodiments of the invention will so fully reveal the invention according to the conceptual point of view, so that others, by applying current knowledge, will be able to modify and/or adapt for various applications such embodiment without further research and without parting from the invention, and, accordingly, it is therefore to be understood that such adaptations and modifications will have to be considered as equivalent to the specific embodiments. The means and the materials to realise the different functions described herein could have a different nature without, for this reason, departing from the field of the invention. It is to be understood that the phraseology or terminology that is employed herein is for the purpose of description and not of limitation.