Claims
- 1. A core metal insert for use in a sealing assembly, said core metal insert being manufactured by a process including the steps of:
cutting a plurality of inboard slits in a metal blank so as to create a slitted metal blank, each of said plurality of inboard slits extending continuously from a respective left lateral slit end to a respective right lateral slit end; and coining said slitted metal blank so that said core metal insert is manufactured with (i) a plurality of inboard gaps defined therein which are aligned in a column, and (ii) a coin-formed bridge which is positioned within each inboard gap of said plurality of inboard gaps and which divides each inboard gap of said plurality of inboard gaps into a first inboard subgap and a second inboard subgap, each of said first inboard subgap and said second inboard subgap extends through said core metal insert, wherein said cutting step includes the step of forming at least one linearly aligned column of inboard slits, wherein said coining step includes the step of forming a linear coin swath which traverses each inboard slit of said at least one linearly aligned column of inboard slits, and wherein said linear coin swath is spaced apart from both said respective left lateral slit end and said respective right lateral slit end of each inboard slit of said at least one linearly aligned column of inboard slits during said linear coin swath forming step.
- 2. The core metal insert of claim 1, wherein each inboard gap of said plurality of inboard gaps is defined by a leading leg portion and a trailing leg portion of said core metal insert which collectively define an entire outer boundary of said each inboard gap.
- 3. The core metal insert of claim 2, wherein said coin-formed bridge includes (i) a leading bridge portion which extends into said inboard gap from said leading leg portion, and (ii) a trailing bridge portion which extends into said inboard gap from said trailing leg portion.
- 4. The core metal insert of claim 3, wherein said leading bridge portion contacts said trailing bridge portion so that said coin-formed bridge continuously extends from said leading leg portion to said trailing leg portion.
- 5. The core metal insert of claim 1, wherein:
said linear coin swath is oriented relative to said plurality of inboard gaps such that, when said core metal insert is viewed in a plan view, said linear coin swath forms an intersection with each inboard gap of said plurality of inboard gaps which are aligned in said column.
- 6. The core metal insert of claim 1, wherein:
each of said plurality of inboard slits is oriented in a first direction, said linear coin swath is oriented in a second direction, and said first direction is substantially perpendicular to said second direction.
- 7. The core metal insert of claim 6, wherein:
each of said plurality of inboard slits is oriented in a width-wise direction, and said linear coin swath is oriented in a length-wise direction.
- 8. A core metal insert for use in a sealing assembly, said core metal insert being manufactured by a process including the steps of (i) cutting a plurality of inboard slits in a metal blank so as to create a slitted metal blank, each of said plurality of inboard slits extending continuously from a respective left lateral slit end to a respective right lateral slit end, and (ii) coining a swath in said slitted metal blank so that said slitted metal blank is expanded to create said core metal insert with a plurality of inboard gaps defined therein which are aligned in a column,
wherein said coining step includes the step of displacing a quantity of metal of said slitted metal blank so as to create a coin-formed bridge with said quantity of metal which (i) is positioned within each of said plurality of inboard gaps, and (ii) divides each inboard gap of said plurality of inboard gaps into a first inboard subgap and a second inboard subgap, and wherein each of said first inboard subgap and said second inboard subgap extends through said core metal insert, wherein said cutting step includes the step of forming at least one linearly aligned column of inboard slits, wherein said coining step includes the step of forming a linear coin swath which traverses each inboard slit of said at least one linearly aligned column of inboard slits, and wherein said linear coin swath is spaced apart from both said respective left lateral slit end and said respective right lateral slit end of each inboard slit of said at least one linearly aligned column of inboard slits during said linear coin swath forming step.
- 9. The core metal insert of claim 8, wherein each inboard gap of said plurality of inboard gaps is defined by a leading leg portion and a trailing leg portion of said core metal insert which collectively define an entire outer boundary of said each inboard gap.
- 10. The core metal insert of claim 9, wherein said coin-formed bridge includes (i) a leading bridge portion which extends into said inboard gap from said leading leg portion, and (ii) a trailing bridge portion which extends into said inboard gap from said trailing leg portion.
- 11. The core metal insert of claim 10, wherein said leading bridge portion contacts said trailing bridge portion so that said coin-formed bridge continuously extends from said leading leg portion to said trailing leg portion.
- 12. A core metal insert for use in a sealing assembly, said core metal insert being manufactured by a process including the steps of:
cutting a plurality of left lateral outermost inboard slits and a plurality of right lateral outermost inboard slits in a metal blank so as to create a slitted metal blank, each of said plurality of left lateral outermost inboard slits and each of said plurality of right lateral outermost inboard slits extending continuously from a respective left lateral slit end to a respective right lateral slit end; and coining said slitted metal blank so that said core metal insert is manufactured with (i) a plurality of left lateral outermost inboard gaps defined therein which are aligned in a left lateral column, (ii) a plurality of right lateral outermost inboard gaps defined therein which are aligned in a right lateral column, (iii) a left lateral coin-formed bridge which is positioned within each left lateral outermost inboard gap of said plurality of left lateral outermost inboard gaps and which divides each left lateral outermost inboard gap into a first left lateral outermost inboard subgap and a second left lateral outermost inboard subgap, each of said first left lateral outermost inboard subgap and said second left lateral outermost inboard subgap extends through said core metal insert, and (iv) a right lateral coin-formed bridge which is positioned within each right lateral outermost inboard gap of said plurality of right lateral outermost inboard gaps and which divides each right lateral outermost inboard gap into a first right lateral outermost inboard subgap and a second right lateral outermost inboard subgap, each of said first right lateral outermost inboard subgap and said second right lateral outermost inboard subgap extends through said core metal insert, wherein said cutting step includes the step of forming a first linearly aligned column of inboard slits and a second linearly aligned column of inboard slits, wherein said coining step includes the steps of (i) forming a left lateral linear coin swath which traverses each inboard slit of said first linearly aligned column of inboard slits, and (ii) forming a right lateral linear coin swath which traverses each inboard slit of said second linearly aligned column of inboard slits, wherein said left lateral linear coin swath is spaced apart from both said respective left lateral slit end and said respective right lateral slit end of each inboard slit of said first linearly aligned column of inboard slits during said left lateral linear coin swath forming step, and wherein said right lateral linear coin swath is spaced apart from both said respective left lateral slit end and said respective right lateral slit end of each inboard slit of said second linearly aligned column of inboard slits during said right lateral linear coin swath forming step.
- 13. The core metal insert of claim 12, wherein:
each left lateral outermost inboard gap of said plurality of left lateral outermost inboard gaps is defined by a left lateral leading leg portion and a left lateral trailing leg portion of said core metal insert which collectively define an entire outer boundary of said each left lateral outermost inboard gap, and each right lateral outermost inboard gap of said plurality of right lateral outermost inboard gaps is defined by a right lateral leading leg portion and a right lateral trailing leg portion of said core metal insert which collectively define an entire outer boundary of said each right lateral outermost inboard gap.
- 14. The core metal insert of claim 13, wherein:
said left lateral coin-formed bridge includes (i) a left lateral leading bridge portion which extends into said left lateral outermost inboard gap from said left lateral leading leg portion, and (ii) a left lateral trailing bridge portion which extends into said left lateral outermost inboard gap from said left lateral trailing leg portion, and said right lateral coin-formed bridge includes (i) a right lateral leading bridge portion which extends into said right lateral outermost inboard gap from said right lateral leading leg portion, and (ii) a right lateral trailing bridge portion which extends into said right lateral outermost inboard gap from said right lateral trailing leg portion.
- 15. The core metal insert of claim 14, wherein:
said left lateral leading bridge portion contacts said left lateral trailing bridge portion so that said left lateral coin-formed bridge continuously extends from said left lateral leading leg portion to said left lateral trailing leg portion, and said right lateral leading bridge portion contacts said right lateral trailing bridge portion so that said right lateral coin-formed bridge continuously extends from said right lateral leading leg portion to said right lateral trailing leg portion.
- 16. The core metal insert of claim 12, wherein:
said left lateral linear coin swath is oriented relative to said plurality of left lateral outermost inboard gaps such that, when said core metal insert is viewed in a plan view, said left lateral linear coin swath forms a left lateral intersection with said each left lateral outermost inboard gap of said plurality of left lateral outermost inboard gaps which are aligned in said left lateral column, and said right lateral linear coin swath is oriented relative to said plurality of right lateral outermost inboard gaps such that, when said core metal insert is viewed in said plan view, said right lateral linear coin swath forms a right lateral intersection with said each right lateral outermost inboard gap of said plurality of right lateral outermost inboard gaps which are aligned in said right lateral column.
- 17. A core metal insert for use in a sealing assembly, said core metal insert being manufactured by a process including the steps of:
forming at least one column of inboard slits in a metal blank so as to create a slitted metal blank, each inboard slit of said at least one column of inboard slits extending continuously from a respective left lateral slit end to a respective right lateral slit end; and forming a linear coin swath in said slitted metal blank which traverses each inboard slit of said at least one linearly aligned column of inboard slits so that said slitted metal blank is expanded to create a plurality of inboard gaps defined therein which are aligned in a column, wherein said linear coin swath is spaced apart from both said respective left lateral slit end and said respective right lateral slit end of each inboard slit of said at least one linearly aligned column of inboard slits during said linear coin swath forming step, and wherein said linear coin swath forming step includes the step of displacing a quantity of metal of said slitted metal blank so as to create a coin-formed bridge with said quantity of metal which (i) is positioned within each of said plurality of inboard gaps, and (ii) divides each inboard gap of said plurality of inboard gaps into a first inboard subgap and a second inboard subgap.
- 18. The core metal insert of claim 17, wherein each of said first inboard subgap and said second inboard subgap extends through said core metal insert.
Parent Case Info
[0001] This application is a continuation of co-pending application Ser. No. 09/164,290, filed on Oct. 1, 1998.
Continuations (1)
|
Number |
Date |
Country |
Parent |
09164290 |
Oct 1998 |
US |
Child |
09732284 |
Mar 2001 |
US |