Advantages of the present invention will be readily appreciated as the same becomes better understood by reference to the following detailed description when considered in connection with the accompanying drawings wherein:
Referring to the Figures, wherein like numerals indicate like or corresponding parts throughout the several views, a two-piece flywheel or flexplate, manufactured according to the subject invention is generally shown at 10. Referring initially to
More specifically, the flywheel 10 is mounted to a hub 18 of an engine crankshaft 20 via mounting bolts 22. The flywheel 10 is also mounted to a torque converter 24, which is an input of the transmission, via mounting bolts 26. Rotation of the crankshaft 20 causes the flywheel 10 to rotate which thus causes the torque converter 24 to rotate, all in unison since directly connected. Consequently, the flywheel 10 transmits engine torque to the torque converter 24 which connects, multiplies and interrupts the flow of engine torque to the automatic transmission.
Referring now to
The ring gear 30 of the flywheel 10 includes an inner circumferential surface 42 and an outer circumference 44. The outer circumference 44 includes a plurality of radially-outwardly extending gear teeth 46. The inner circumferential surface 42 of the ring gear 30 is disposed about the annular periphery 32 of the central plate 28 and sized such that it is in press-fit engagement with the flange 34. Additionally, an adhesive 48 is disposed between the inner circumferential surface 42 and the annular periphery 32 fixedly securing the ring gear 30 continuously about 360 degrees to the central plate 28. The adhesive 48 is preferably ND 548 Retaining Compound. The plurality of gear teeth 46 are of a pitch and depth so as to engage with a plurality of mating teeth (not shown in the Figures) on the pinion gear 14 of the electric starter motor 12. The plurality of gear teeth 46 will vary with the type of engine, size of the flywheel 10, and type of pinion gear 14 used with the electric starter motor 12.
A separate reinforcing plate 50, best seen in
The subject invention further includes a method for manufacturing the flywheel 10 including the central plate 28 having the annular periphery 32 defined by the flange 34 surrounded by the ring gear 30 having the inner circumferential surface 42 and the outer circumference 44 with the plurality of radially-outwardly extending gear teeth 46. The method includes an initial step of providing the central plate 28 pre-manufactured to include the annular periphery 32 defined by the flange 34, the plurality of apertures 36, the central opening 38, and the plurality of smaller openings 40, as described above. The central plate 28 may be formed to include a center stepped portion 64 and an outer stepped portion 66, as shown in
The method continues to include the step of providing the ring gear 30 pre-manufactured to include the inner circumferential surface 42 and the outer circumference 44 having the plurality of radially-outwardly extending gear teeth 46. The ring gear 30 is preferably made from material such as S.A.E. 1038 to 1055 steel with carbon, heat-treated to a Rockwell āCā hardness of between 40 and 80.
The method further includes the step of press-fitting the ring gear 30 to the central plate 28 such that the inner circumferential surface 42 is disposed about the flange 34 at the annular periphery 32. Also during the press-fitting operation, the ring gear 30 is located relative to a crank datum surface 68 to establish a gear face height h1 measured from the crank datum surface 68 to a ring gear face 70, also shown in
Prior to the step of press-fitting the ring gear 30 to the central plate 28, the method includes the step of applying the adhesive 48 to the inner circumferential surface 42 of the ring gear 30 and/or the annular periphery 32 of the central plate 28. Alternatively, the adhesive 48 is applied after the step of press-fitting the ring gear 30 to the central plate 28 and the adhesive 48 wicks between the inner circumferential surface 42 and the annular periphery 32 fixedly securing the ring gear 30 continuously about 360 degrees to the central plate 28.
In a second embodiment shown in
Referring to
The subject invention also includes a method for manufacturing the second embodiment of the flywheel 10 including the central plate 28 having the annular periphery 32 defined by the flange 34 with straight knurling 52 disposed therearound surrounded by the ring gear 30 having the inner circumferential surface 42 with straight knurling 56 disposed therearound and the outer circumference 44 with the plurality of radially-outwardly extending gear teeth 46. The method includes the same steps as described above with respect to the preferred embodiment, however, the step of press-fitting the ring gear 30 to the central plate 28 further includes wedging of the knurling 56 of the ring gear 30 between the knurling 52 of the flange 34 to lockingly couple the ring gear 30 and central plate 28 together. It will be appreciated that when the adhesive 48 is applied after the step of press-fitting the ring gear 30 to the central plate 28, the knurling 56 of the ring gear 30 and knurling 52 of the flange 34 provide a path for helping the adhesive 48 wick between the inner circumferential surface 42 and the annular periphery 32 fixedly securing the ring gear 30 continuously about 360 degrees to the central plate 28.
Referring to
A method for manufacturing the third embodiment of the two-piece flywheel 10 including the central plate 28 having the annular periphery 32 defined by the flange 34 with the circumferential rib 62 extending therearound surrounded by the ring gear 30 having the inner circumferential surface 42 with the circumferential groove 60 extending therearound and the outer circumference 44 with the plurality of radially-outwardly extending gear teeth 46 comprises the same steps as described above with respect to the preferred embodiment. The method for manufacturing the third embodiment, however, further includes the step of deforming a portion of the flange 34 to form the rib 62 extending into the groove 60 to lockingly couple the ring gear 30 and central plate 28 together.
Alternatively, the central plate 28 may be pre-manufactured to include the annular periphery 32 defined by the flange 34 with the circumferential rib 62 already extending therearound. In this case the method for manufacturing the third embodiment comprises the same steps as described above with respect to the preferred embodiment, and further includes the step of disposing the rib 62 into the groove 60 to lockingly couple the ring gear 30 and central plate 28 together.
The flywheel 10 of any of the three embodiments now includes the central plate 28 surrounded by the ring gear 30, as described above. The flywheel 10 manufactured according to the subject invention does not necessitate the incorporation of additional steps to visually inspect for and remove weld spatter contaminating the gear teeth 46 because the method does not include a welding step. Finally, the flywheel 10 is balanced by conventional methods of spin balancing with balance correction holes 72 being punched or drilled in the central plate 32 as needed and shown in
The invention has been described in an illustrative manner, and 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. Many modifications and variations of the present invention are possible in light of the above teachings. It is, therefore, to be understood that within the scope of the appended claims, the invention may be practiced other than as specifically described.
Number | Date | Country | |
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60811217 | Jun 2006 | US |