Method of Roll-Forming With Gap Fillers For Solenoid Used for Transmission
20170309399 · 2017-10-26
Inventors
Cpc classification
H01F2007/062
ELECTRICITY
B21B1/08
PERFORMING OPERATIONS; TRANSPORTING
Y10T29/4902
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
B21B23/00
PERFORMING OPERATIONS; TRANSPORTING
International classification
B21B23/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A method of roll-forming with gap fillers for a solenoid used for a transmission includes the steps of providing a can of a solenoid, the can having a discontinuous surface with a gap, providing additional material in the gap, and roll-forming the additional material in the gap simultaneously with roll-forming the can to maintain a smooth path for rollers during roll-forming for the solenoid.
Claims
1. A method for roll-forming with gap fillers for a solenoid used for a transmission, said method comprising the steps of: providing a can of a solenoid, the can having a discontinuous surface with a gap; providing additional material in the gap; and roll-forming the additional material in the gap simultaneously with roll-forming the can to maintain a smooth path for rollers during roll-forming for the solenoid.
2. A method as set forth in claim 1 including the step of providing at least one of a connector, a bobbin, and a sleeve and installing the connector and sleeve in the can from an axial end of the can.
3. A method as set forth in claim 2 wherein the step of adding includes placing additional material in the gap.
4. A method as set forth in claim 3 wherein the step of displacing includes displacing the additional material to maintain a smooth path for the rollers and securing the at least one of the sleeve, the bobbin, and the connector to the can during roll-forming.
5. A method as set forth in claim 1 wherein the additional material is either one of a plastic material and a metal material capable of absorbing a roll-forming load and deforming with a roll-formed surface.
6. A method as set forth in claim 2 wherein the additional material is provided on the sleeve.
7. A method as set forth in claim 2 wherein the additional material is provided on the bobbin.
8. A method for roll-forming with gap fillers for a can of a solenoid used for a transmission, said method comprising the steps of: providing a can of a solenoid, the can having a discontinuous surface with a gap; providing at least one of a bobbin, a connector, and a sleeve; installing the at least one of the bobbin, the connector, and the sleeve in the can from an axial end of the can; providing additional material in the gap; and roll-forming the additional material in the gap while simultaneously roll-forming the can to maintain a smooth path for rollers during roll-forming for the solenoid.
9. A method as set forth in claim 8 wherein the step of displacing includes displacing the additional material to maintain a smooth path for the rollers and securing the at least one of the bobbin, the sleeve, and the connector to the can during roll-forming.
10. A method as set forth in claim 8 wherein the additional material is either one of a plastic material and a metal material capable of absorbing a roll-forming load and deforming with a roll-formed surface.
11. A method as set forth in claim 8 wherein the additional material is provided on the sleeve.
12. A method as set forth in claim 8 wherein the additional material is provided on the bobbin.
13. A method for roll-forming with gap fillers for a can of a solenoid used for a transmission, said method comprising the steps of: providing a can of a solenoid, the can having a discontinuous surface with a gap; providing a bobbin, a connector, and a sleeve; installing the bobbin, the connector, and the sleeve in the can from an axial end of the can; providing additional material to either one of the bobbin and the sleeve in the gap, wherein the additional material is either one of a plastic material and a metal material capable of absorbing a roll-forming load and deforming with a roll-formed surface; and roll-forming the additional material on the sleeve while simultaneously roll-forming the can to maintain a smooth path for the rollers and securing the bobbin, the sleeve, and the connector to the can during roll-forming for the solenoid.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0009] Other objects, features, and advantages of the present invention will be readily appreciated as the same becomes better understood after reading the subsequent description taken in connection with the accompanying drawings wherein:
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DETAILED DESCRIPTION OF THE INVENTION
[0019] Referring now to the figures, where like numerals are used to designate like structure unless otherwise indicated, a solenoid is generally indicated at 10 in
[0020] Referring to
[0021] The connector 18 is generally rectangular in shape, but may be any suitable shape. The connector 18 includes a first flange 19 extending circumferentially therefrom and a second flange 20 extending radially therefrom. The first flange 19 extends over a portion of the can 12 and the second flange 20 extends into the gap 14. The connector 18 extends radially and axially from the sleeve 16. The sleeve 16 may be made of a plastic material or a metal material. It should be appreciated that the sleeve 16 and connector 18 may be integral and one-piece. It should also be appreciated that the sleeve 16 and connector 18 are both installed from the axial end of the can 12 with the gap 14. It should further be appreciated that the solenoid 10 may be of a type employed in a conventional transmission of a powertrain system for a vehicle.
[0022] Referring to
[0023] Referring to
[0024] The flange 26 has a roll-formed surface 34 formed by the roll-forming method. In one embodiment, the sleeve 16 may be a dummy member made of a plastic material. The additional material 22 is made of a plastic material and is part of the sleeve 16. It should be appreciated that the additional material 22 and sleeve 16 are integral, unitary, and formed as one-piece.
[0025] The solenoid 10 includes a pole piece member (not shown) and a bobbin (not shown) disposed about the pole piece member and the can 12 encloses the bobbin. The bobbin has a primary electromagnetic coil (not shown) wound thereon to create a magnetic field when energized. The solenoid 10 also includes the connector 18 for connecting with the electromagnetic coil and to ground (not shown). It should be appreciated that the connector 18 receives a continuous variable, digital control signal from a primary driver (not shown) such as the electronic controller (not shown).
[0026] Referring to
[0027] Referring to
[0028] The bobbin assembly 140 includes additional material 122 extending axially and circumferentially from the bobbin 142. The additional material 122 extends into the gap 114. The additional material 122 may be any material, such as a plastic material or metal material, capable of absorbing a roll-forming load and deforming with a roll-formed surface to be described. It should be appreciated that the purpose of the additional material 122 is to integrate one or more separate components to help fill in the gap 114 so that the rollers see a more continuous surface during roll-forming of the can 112. It should be appreciated that the winding towers 144 of the connector 118 would have to be cut off before roll-forming. It should also be appreciated that the bobbin assembly 140 is installed from the axial end of the can 112 with the gap 114. It should further be appreciated that the additional material 122 is molded into the bobbin 142 to make a path for the rollers between the edges of the opening or gap 114 in the can 112. It should also be appreciated that, when using roll-forming, a continuous surface is strongly preferred because gaps will introduce impact loads/tool chatter that can shorten tool life or damage the finished component.
[0029] Referring to
[0030] Referring to
[0031] Referring to
[0032] Accordingly, the present invention provides a method, according to the present invention, for roll-forming with gap fillers for the can 12, 112 of the solenoid 10, 110 used for a transmission. The method includes the steps of providing the can 12, 112 of the solenoid 10, 110. The can 12, 112 has a discontinuous surface 36, 136 with a gap 14, 114. The method also includes the steps of providing the connector 118, bobbin 142, pole-piece 123, and sleeve 116 and installing the bobbin 142, connector 18, 118, and sleeve 16, 116 in the gap 14, 114 from an axial end of the can 12, 112. The method includes the steps of providing additional material 22, 122 in the gap 14, 114. The additional material 22, 122 is either one of a plastic material and a metal material capable of absorbing a roll-forming load and deforming with a roll-formed surface 34, 134. The method further includes the steps of roll-forming the additional material 22, 122 in the gap 14, 114 simultaneously with roll-forming the can 12, 112 to maintain a smooth path for the rollers and securing the sleeve 16, 116, bobbin 142, and the connector 18, 118 to the can 12, 112 during roll-forming for the solenoid 10, 110.
[0033] The present invention has been described in an illustrative manner. It is to be understood that the terminology which has been used is intended to be in the nature of words of description rather than of limitation.
[0034] Many modifications and variations of the present invention are possible in light of the above teachings. Therefore, within the scope of the appended claims, the invention may be practiced other than as specifically described.