METHOD AND APPARATUS FOR MANUFACTURING A HOUSING
20220231584 ยท 2022-07-21
Inventors
Cpc classification
H02K11/30
ELECTRICITY
B21D22/26
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A method of and an apparatus for manufacturing a housing is disclosed. The housing to be manufactured has a sleeve-shaped housing wall extending about a longitudinal axis of the housing and a cover disposed inside the housing wall transverse to the longitudinal axis at a predetermined position between longitudinal ends of the housing wall. The method comprises providing a precursor of the housing, in which the cover is formed integrally with the housing wall and is arranged at one of the longitudinal ends of the housing wall, further separating the cover from the housing wall and displacing the cover relative to the housing wall in the direction of the longitudinal axis from the one longitudinal end into the predetermined position.
Claims
1. A method of manufacturing a housing, the housing to be manufactured having a sleeve-shaped housing wall extending about a longitudinal axis of the housing and a cover disposed inside the housing wall transverse to the longitudinal axis at a predetermined position between longitudinal ends of the housing wall, the method comprising: providing a precursor of the housing in which the cover is integrally formed with the housing wall and is arranged at one of the longitudinal ends of the housing wall, separating the cover from the housing wall, and displacing the cover relative to the housing wall in the direction of the longitudinal axis from the one longitudinal end into the predetermined position.
2. The method of claim 1, wherein providing the precursor of the housing comprises jointly integrally forming the housing wall and the cover from a same blank.
3. The method of claim 2, wherein forming of the housing wall and the cover is performed in a same apparatus as the separation and displacement of the cover.
4. The method of claim 1, wherein providing the precursor of the housing comprises forming the cover with a skirt extending in longitudinal direction of the housing wall along a partial length of the housing wall and circumferentially about the longitudinal axis.
5. The method of claim 4, wherein an outer diameter of the skirt corresponds to the inner diameter of the housing wall.
6. The method of claim 4, wherein providing the precursor of the housing comprises perforating the skirt such that the skirt is provided with one or more holes therein.
7. The method of claim 1, further comprising joining the cover to the housing wall in the predetermined position.
8. The method of claim 7, wherein joining the cover to the housing wall comprises at least one of mechanical, thermal, or thermomechanical joining.
9. The method of claim 4, wherein providing the precursor of the housing comprises perforating the skirt, the method further comprising joining the cover to the housing wall, wherein joining the cover to the housing comprises engaging the housing wall with the one or more holes of the skirt of the cover.
10. The method of claim 1, wherein joining the cover to the housing wall is performed in a same apparatus as the separation and displacement of the cover.
11. The method of claim 1, wherein providing the precursor of the housing comprises forming the cover as a bearing flange.
12. An apparatus for performing a method according to claim 1, the apparatus comprising: a separating device for separating the cover from the housing wall, and a positioning device for displacing the cover relative to the housing wall in the direction of the longitudinal axis into the predetermined position.
13. The apparatus of claim 12, further comprising a manufacturing device for manufacturing the precursor of the housing.
14. The apparatus of claim 13, wherein the manufacturing device comprises a forming device for jointly forming the cover and the housing wall in one piece from a same blank in one or more forming stages.
15. The apparatus of claim 12, further comprising a joining device for joining the cover to the housing wall in the predetermined position.
16. The apparatus of claim 12, wherein the separating device comprises a separating plunger onto which the precursor of the housing can be placed, and a separating die.
17. The apparatus of claim 12, wherein the positioning device comprises a pusher designed to displace the cover relative to the housing wall.
18. The apparatus of claim 13, wherein the manufacturing device comprises a perforating device for perforating a skirt of the cover to provide the skirt with one or more holes.
19. The apparatus of claim 18, further comprising a joining device for joining the cover to the housing wall in the predetermined position, wherein the joining device is adapted to engage the housing wall with the holes of the skirt.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0043] Exemplary embodiments of the invention are shown in the drawings and are described in more detail with reference thereto hereinafter. In the drawings:
[0044]
[0045]
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[0050]
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DETAILED DESCRIPTION OF EXEMPLARY EMBODIMENTS
[0059]
[0060] The housing 10 has a sleeve-shaped housing wall 14 extending around the longitudinal axis 12 and a cover 16. The housing 10 is thus formed in multiple parts. In the present case, without limiting generality, the housing 10 is formed from two parts, namely the housing wall 14 and the cover 16. The housing 10 may also have more than two parts. However, as will be described later, the cover 16 and the housing wall 14 have not been manufactured as separate individual parts, but have been monolithically manufactured from one blank.
[0061] The cover 16 is arranged at a predetermined position between a first longitudinal end 18 and a second longitudinal end 16 inside the housing wall 14 and extends transverse to the longitudinal axis 12 of the housing. The predetermined position of the cover 16 is spaced from both longitudinal ends. The cover 16 is joined to the housing wall 14, as will be described later.
[0062] The housing 10 is made overall from sheet metal, for example sheet steel or sheet aluminum. Other materials, for example also hybrid materials of metal and plastic, which can be formed in forming processes, are also possible. The wall thickness of the cover 16 is shown in
[0063] The housing 10 may be, for example, a housing for an electric motor, wherein a first sub-space 22 of the interior of the housing 10 is for receiving a stator of the electric motor and a second sub-space 24 of the interior of the housing 10 is for receiving control electronics for the motor. The cover 16 separates the two compartments 22 and 24. The cover 16 may be configured as a bearing seat as shown, in which case the cover 16 includes a bearing flange 26. The bearing flange 26 may serve to receive a bearing shaft of the motor.
[0064] The cover 16 may also have different geometries in other applications of the housing 10, i.e., the bearing flange may have a different configuration or may be omitted.
[0065] Due to the arrangement of the cover 16 on the inside of the housing wall 14, i.e. in the interior of the housing 10 between the longitudinal ends 18 and 20 of the housing wall 14, the housing 10 can be described as a complex housing. Such a complex housing can be manufactured in one piece, i.e. monolithically, not as a formed part from a single blank.
[0066] With reference to
[0067] Referring to
[0068] Since the cover 16 is arranged at one of the longitudinal ends of the housing wall 14 in the precursor 28, the precursor 28 can be manufactured in one piece, i.e., monolithically, in a conventional forming process by forming the housing wall 14 and the cover 16 together from a same blank.
[0069] As part of the forming of the precursor 28 of the housing 10, the cover 16 is formed with a skirt 30 extending in the longitudinal direction of the housing wall 14 over a partial length of the housing wall 14 and in the circumferential direction about the longitudinal axis 12. The skirt 30 is integrally, i.e. monolithically, connected to the housing wall 14 by a shoulder 32 in the precursor 28. The skirt has an outer diameter D.sub.A which corresponds to the inner diameter D.sub.I of the housing wall 14. The outer diameter D.sub.A of the skirt 30 is thus smaller than the outer diameter of the housing wall 14.
[0070] When forming the precursor 28 of the housing 10 from one and the same blank, the bearing flange 26 is also formed. In order to form the precursor 28 of the housing 10 from the blank 29, the forming operations deep-drawing, reverse drawing, reversing can be applied, as well as the machining operations perforating (for the through-opening of the bearing flange 26) as well as a lancing and a calibrating of the edge of the through-opening can be applied.
[0071] In addition, the skirt 30 may be perforated as part of the fabrication of the precursor 28 of the housing 10. Exemplary holes 34, 36, 38, 40, 42 are shown in
[0072]
[0073] After separating the cover 16 from the housing wall 14, the cover 16 is displaced relative to the housing wall 14 along the longitudinal axis 12 in accordance with an arrow 44 into the predetermined position shown in
[0074] In a next process stage according to
[0075] The engagement of the material of the housing wall 14 with the perforations of the skirt 30 prevents the cover 16 from rotating with respect to the housing wall 14.
[0076] Mechanical joining of the cover 16 to the housing wall 14 can also be done entirely without holes, for example by crimping joints such as toxing, clinching, etc.
[0077] Thermomechanical joining of the cover 16 to the housing wall 14 is also conceivable.
[0078] The above operations of forming the precursor 28 of the housing 10 from the blank 29, separating the cover 16 from the housing wall 14, displacing the cover 16 into the interior space of the housing wall 14, and joining the cover 16 to the housing wall 16 can be carried out altogether in the same apparatus having a corresponding plurality of working stations or stages. This is described in more detail below with reference to
[0079]
[0080] The entire apparatus for manufacturing the housing 10 may further comprise a forming device for forming the cover 16 and the housing wall 14 in one piece from a same blank in one or more forming stages, as well as further working stations (e.g. perforating, calibrating, lancing) to manufacture the precursor 28 of the housing 10 according to
[0081]
[0082] The device 50 further comprises an upper part 70, which is shown in
[0083] The upper part 70 further comprises a pusher or slider 80 fixed to the bridge for displacing the cover 16 relative to the housing wall 14 after the cover 16 has been separated from the housing wall 14. The upper portion 70 further includes gas pressure or hydraulic springs 82, 84 and a spacer 86.
[0084] According to
[0085] According to
[0086] In
[0087]
[0088]
[0089] The cutting die 78 is held in position and the upper gas pressure or hydraulic springs 82, 84 retract.
[0090] According to
[0091] The separating plunger 66 is now in the bottom dead center position, as is the upper part 70 of the device 50. The gas pressure or hydraulic spring 60 is locked in position. The upper part 70 is then moved away from the lower part 52, as shown in
[0092] The upward-mover 68 is then moved upward to remove the housing 10 from the separating plunger 66, as shown in
[0093] However, the joining of the cover 16 to the housing wall 14 can also be performed at the process stage shown in
[0094] The above-described separation of the cover 16 from the housing wall 14 and the displacement of the cover 16 relative to the housing wall 14 into the interior of the housing wall 14 can take place in the press cycle of the device. The separating and positioning process is preceded by the forming operations, also in the press cycle. The separating and positioning operation may be followed, in the same apparatus, by the joining of the cover 16 to the housing wall. In this way, the housing 10 can be produced in the press cycle in a simple manner and with little tooling.