Method for clearance adjusting cover plate closure
View Patent ↗A ball and socket housing incorporating a thick housing wall of deformable material adjacent a central bore opening to provide a closure system utilizing a deformable cover-plate. The deformable cover-plate is formed to a desired configuration within the central bore to achieve a consistent internal socket preload. The cover-plate is deformed into the housing opening beyond an elastic limit to control resiliency or spring-back characteristics, thereby achieving a high-degree of repeatability and precise control of the ball and socket preload during the assembly process. The deformed cover-plate is retained in the socket housing at the cover-plate seat by swaged or rolling the perimeter of the housing to capture the perimeter of the deformed cover plate within the housing central bore opening.
1. A method of forming a socket, the method comprising:
providing a housing having a central bore, the central bore including at least one open end having a counterbore defining a circumferential seat adjacent said open end;
providing one or more joint components, including a stud;
providing a deformable cover-plate, said cover-plate having an outer diameter sized to seat within said counterbore on said circumferential seat;
inserting said stud and joint components into said central bore;
placing said cover-plate over said joint components at said open end of said central bore, said cover-plate seating on said circumferential seat;
applying a controlled load to said cover-plate, said controlled load plastically deforming said cover plate into a desired configuration and engaging said cover-plate into pressed contact with said circumferential seat; and
deforming a circumferential sidewall of said housing adjacent to said counterbore in a radially inward direction, capturing a peripheral edge of said cover-plate;
wherein said stud and joint components are retained within said central bore by said captured and deformed cover-plate.
2. The method of claim 1 for forming a socket wherein said deforming step includes swaging said circumferential perimeter of said counterbore.
3. The method of claim 1 for forming a socket wherein said deforming step includes spin forming said circumferential perimeter of said counterbore.
4. The method of claim 1 for forming a socket where said applying step includes applying sufficient controlled load to said cover-plate to exceed an elastic limit of said cover-plate, whereby said cover-plate exhibits predictable deformation characteristics.
5. The method of claim 1 for forming a socket wherein said cover-plate deformation is controlled to achieve a desired internal clearance for said stud and joint components within said central bore.
6. The method of claim 1 for forming a socket wherein said housing is formed of a material having sufficient flexibility to permit closure of said housing over said cover-plate.
7. A method of forming a socket, the method comprising:
providing a housing having a central bore, the central bore including at least one open end having a counterbore defining a circumferential seat adjacent said open end;
providing one or more joint components, including a stud;
providing a deformable cover-plate, said cover-plate having an outer diameter sized to seat within said counterbore on said circumferential seat;
inserting said stud and joint components into said central bore;
placing said cover-plate over said joint components at said open end of said central bore, said cover-plate seating on said circumferential seat;
deforming a circumferential sidewall of said housing adjacent to said counterbore in a radially inward direction, capturing a peripheral edge of said cover-plate; and
applying a controlled load to said captured cover-plate, said controlled load plastically deforming said captured cover plate into a desired configuration and engaging said captured cover-plate into pressed contact with said circumferential seat;
wherein said stud and joint components are retained within said central bore by said captured and deformed cover-plate.
8. The method of claim 7 for forming a socket wherein said deforming step includes swaging said circumferential perimeter of said counterbore.
9. The method of claim 7 for forming a socket wherein said deforming step includes spin forming said circumferential perimeter of said counterbore.
10. The method of claim 7 for forming a socket where said applying step includes applying sufficient controlled load to said cover-plate to exceed an elastic limit of said cover-plate, whereby said cover-plate exhibits predictable deformation characteristics.
11. The method of claim 7 for forming a socket wherein said cover-plate deformation is controlled to achieve a desired internal clearance for said stud and joint components within said central bore.
12. The method of claim 7 for forming a socket wherein said housing is formed of a material having sufficient flexibility to permit closure of said housing over said cover-plate.