This invention relates to a locator stud or pin for attachment to a panel which may be utilized to accurately attach other elements to the panel and the method of attaching a locator stud to a panel.
Locator studs or pins are now used in mass production applications to accurately locate one component relative to a second component. Generally, the assembly includes a plurality of locator studs attached to a panel, such as a frame member, to accurately locate a component relative to the frame member. As an example, locator studs or pins are utilized for alignment of the control arms to the struts of a vehicle used to mount the ball joints which support the vehicle wheels. There are numerous other examples of the use of locator studs or pins in mass production applications.
As will be understood by those skilled in this art, the locator studs must be accurately positioned on the panel. Locator studs or pins include a shank or pin portion which projects from the panel and are used to locate a second component relative to the panel. The locator studs or pins, therefore, must not only be accurately located on the panel, but the shank portion must project perpendicular to the panel. It would also be desirable to attach the locator pins or studs to the panel in a mass production application without requiring welding, threading or other secondary operations. Finally, the locator stud must be firmly attached to the panel to prevent cocking or movement of the locator stud during final assembly.
The locator stud and method of assembling a locator stud to a panel of this invention achieve the advantages set forth above and the locator stud of this invention may be easily installed in a panel, for example, in a conventional die press or c-frame press. Other advantages and meritorious features of the locator stud and method of attaching the locator stud to a panel of this invention will be more fully understood from the following description of the preferred embodiments, the appended claims and the drawings, a brief description of which follows.
The locator stud of this invention includes a body portion having a radial flange portion including an annular end face and an axial generally conical recess opening through the annular end face having a major diameter at the annular end face. The locator stud further includes a generally cylindrical shank portion integral with and extending axially from the radial flange portion of the body portion coaxially aligned with the generally conical recess preferably having a diameter less than the radial flange of the body portion. In a preferred embodiment, the radial flange portion includes a frustoconical surface extending radially outwardly from the annular end face forming a lead-in during assembly of the locator stud in a panel. Further, a preferred embodiment of the radial flange portion includes a plurality of circumferentially spaced radial projections preventing rotation of the locator stud in a panel. In the disclosed embodiment, the radial flange portion has a polygonal surface adjacent the frustoconical outer surface and the radial projections extend from the corner portions of the polygonal surface.
The method of installing or attaching the locator stud of this invention includes forming a configured opening through the panel. In one preferred embodiment, the configured opening through the panel includes a first cylindrical portion and a second frustoconical portion, wherein the frustoconical portion has a minor diameter at the cylindrical portion and the cylindrical portion has a diameter less than the radial portion of the locator stud. The method of this invention includes aligning the radial flange portion of the locator stud opposite the configured opening through the panel and driving the radial flange portion into the panel opening, wherein the radial projections are driven into the panel and prevent rotation of the locator stud in the panel. Where the configured opening through the panel includes a cylindrical portion, as described, the radial flange portion is driven into the cylindrical opening. Finally, the method of this invention includes driving a die member having a diameter greater than the minor diameter of the generally conical recess into the recess, deforming the end of the locator stud adjacent the annular end face radially outwardly, fully seating the locator stud in the panel. In one preferred embodiment, the die member includes a hemispherical end face forming an interference fit with the generally conical recess.
The locator stud and method of assembly of this invention forms a secure assembly with the shank portion of the locator stud extending perpendicular to the panel and the locator stud is firmly attached to the panel to prevent cocking or movement of the locator stud during assembly of a second component to the panel. Other advantages and meritorious features of this invention will be more fully understood from the following description of the preferred embodiments, the appended claims and the drawings, a brief description of which follows.
As best illustrated in
The first step in one preferred embodiment of the method of attaching a locator stud to a panel of this invention, is forming an opening 48 in the panel configured to receive the radial flange portion 28 of the locator stud 20 as best shown in
The next step in the method of this invention is to locate the radial flange portion 28 in the configured opening 48 through the panel 22 as shown in
The next step in the method of attaching a locator stud in a panel of this invention is driving the radial flange portion 28 into the configured opening 48 in the panel 22 as illustrated in
The final step in the method of attaching the locator stud 20 to a panel 22 is to deform the end portion of the radial flange 28 surrounding the annular end face 30 radially outwardly to fully seat the radial flange portion 28 in the configured opening 48 in the panel 22 as shown in
The final locator stud and panel assembly is illustrated in
As will be understood by those skilled in this art, various modifications may be made to the locator stud and method of attaching a locator stud to a panel of this invention within the purview of the appended claims. For example, the shank portion 24 may have any suitable configuration depending upon the application. The shank portion 24 may also be externally threaded. The polygonal surface 36 may have any number of sides or may be round, wherein the radial projections 40 may be equally circumferentially spaced, rather than extending from the corner portions of the polygonal surface. The conical recess 32 may also be hemispherical, although a generally frustoconical recess is more easily formed. Finally, the shape of the end portion 68 of the die plunger 64 will depend upon the shape of the recess 32, wherein the end of the die plunger forms an interference fit with the recess and deforms the end of the radial flange portion 28 adjacent the annular end face 30 radially outwardly to fully seat the radial flange portion 28 in the frustoconical opening 52 as described above or the end portion 68 may also be integral with die member 56 described above.