Claims
- 1. A method of assembling a joint of an endless track chain for track-type machines to prevent end play in the joint, the joint includes a pair of links and a cylindrical pin, each link includes a laterally outwardly offset outboard end collar having a boss extending outwardly therefrom and a bore therethrough, each boss having a outer side surface, and the pin includes opposite end portions, each end portion being non-rotatably mounted into a respective one of the bores of the outboard end collar, said method comprising the steps of:
forming an annular frustoconical groove about each of the end portions of the pin; placing a swage tool against the outer side surface of the boss in axial alignment with the pin; applying a sufficient force in the axial direction on the swage tool to form at least one mechanically formed nodule protruding from the outer side surface of the boss into a respective one of the frustoconical grooves of the pin, the nodule having a cross-sectional configuration substantially conforming to the frustoconical groove.
- 2. A method of assembling a joint of an endless track chain for track-type machines to prevent end play in the joint, the joint including a pair of links and a cylindrical pin, each link including a laterally outwardly offset outboard end collar having a boss extending outwardly therefrom and a bore therethrough, each boss having a outer side surface, and said pin including opposite end portions, each end portion being pressed and non-rotatably mounted into a respective one of said bores of said outboard end collars, the method comprising the steps of:
forming an annular frustoconical groove about each of the end portions of the pin; placing a swage tool against the outer side surface of the boss in axial alignment with the pin; applying a sufficient force on the swage tool to form at least one mechanically formed nodule extruded from the side surface of the boss into a respective one of the frustoconical grooves, the nodule having a cross-sectional configuration substantially conforming to the frustoconical groove.
- 3. An apparatus for retaining the track joints of an endless track chain for track-type machines to prevent end play in such joints, each joint including first and second pairs of links and a cylindrical pin, each link of the first pair of links having an inboard end collar with a first bore therethrough, and each link of the second pair of links having an outboard end collar with a pin boss extending outwardly therefrom and a second bore therethrough, the boss having a outer side surface, and the pin having opposite end portions, each end portion being pressed and non-rotatably mounted into a respective one of the second bores of the outboard end collars, the apparatus comprising;
an annular frustoconical groove formed in each of the opposite end portions of the pin, each frustoconical groove being disposed within the bore at a location along the pin boss; and at least one mechanically formed nodule protruding from the outer side surface of the boss into respective ones of the pin frustoconical grooves, each nodule having a cross-sectional configuration substantially conforming to its frustoconical groove and being formed from material that has been permanently extruded from the side surface of the pin boss into the frustoconical groove.
- 4. The apparatus of claim 3 wherein the groove is formed from the frustoconical surface and a radius connected to the frustoconical surface.
- 5. The apparatus of claim 4 wherein the frustoconical surface tapers 15 degrees toward the pin end.
- 6. The apparatus of claim 5 wherein the radius is located outwardly of the frustoconical surface.
- 7. An apparatus for mechanically connecting joints of an endless track chain for track-type machines to prevent end play in such joints, each joint including a track link and a cylindrical pin, each link having an inboard end collar with a first bore therethrough and an outboard end collar with a pin boss extending outwardly therefrom and a second bore therethrough. The boss having an outer side surface, the pin having an end portion being pressed and non-rotatably mounted into a respective second bore of the outboard end collar. The apparatus comprising:
an annular frustoconical groove formed in the end portion of the pin, each frustoconical groove being disposed within the base at a location along the pin boss; a swage tool having a plurality of spaced swage segments contacting the outer side surface of the pin boss and being moveable in the axial direction to extrude a nodule from the side surface of the pin boss into the frustoconical groove, the nodule having a cross-sectional configuration conforming to the shape and cross-section of the frustoconical groove.
- 8. The apparatus of claim 7, including an annular thrust ring positioned with the bore of the pin boss around the pin, the thrust ring having a side surface having a predetermined surface area.
- 9. The apparatus of claim 8, wherein each swage segment has a flat side surface, perpendicular to the axial direction and, having a surface area, the surface area being added together to having a total surface area, the total surface area of the swage segments relative to the surface area of the thrust ring in a ratio of less than 1.0.
- 10. The apparatus of claim 9, wherein the side surface of the pin boss has a predetermined height and the swage segments contact the lower half of the predetermined height to extrude material into the frustoconical groove.
- 11. The apparatus of claim 10, wherein the swaged area in the side surface of the pin boss is less than 60% of the circular circumference of the pin.
- 12. The apparatus of claim 7, wherein the frustoconical groove has a taper of less than 15 degrees.
- 13. The apparatus of claim 11, wherein the pin boss overlaps the frustoconical groove a minimum of 0.05 mm and a maximum of 3 mm.
- 14. The apparatus of claim 13, wherein the swage segments have an inner surface having a predetermined diameter.
- 15. The apparatus of claim 14, wherein the pin diameter outwardly of the groove defines a pin land reduced in size relative to the diameter inwardly of the groove, the inner surface diameter of the swage segments and the outer diameter of the pin land has a diametrical clearance in the range of 0 mm to 3 mm.
- 16. The apparatus of claim 15, wherein the swage tool includes a surface between the spaced segments that contact the pin boss to limit axial movement to prevent excessive swaging of the pin boss.
- 17. The apparatus of claim 16, wherein the diameter of the pin land is smaller in size than the inner diameter of the bore of the pin boss to prevent scoring of the pin boss during disassembly.
Parent Case Info
[0001] This application is a continuation-in-part of co-pending aplication Ser. No. 09/458,177, filed Dec. 9, 1999.
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
09458177 |
Dec 1999 |
US |
Child |
09739408 |
Dec 2000 |
US |