Claims
- 1. A honing tool comprising a metal holder of unitary construction having a cavity located in one side thereof, the cavity having one open side of known cross-section, the holder having a bottom surface in the cavity opposite the open side, and a sidewall extending around said cavity between the open side and the bottom surface, the sidewall having at least one recessed portion forming at least one recessed cavity portion in communication with the cavity at a location spaced from the open side, the recessed sidewall portion having a portion that faces at least partially away from the open side of the cavity, and at least one filament of a polymeric material having particles of an abrasive substance dispersed throughout, said at least one filament having an overall cross-section corresponding generally to the cross-section of the open side of the cavity and said at least one filament having one end which extends outwardly from the open side of the cavity and an opposite end located in the cavity, the end of the at least one filament located in the cavity forming a solitary mass that substantially fills said cavity including said at least one recessed cavity portion and intimately engages and conforms to said at least one recessed sidewall portion so as to be retained in the cavity thereby.
- 2. The honing tool according to claim 1 wherein said at least one filament comprises a single filament.
- 3. The honing tool according to claim 2 wherein the end of the filament which extends outwardly from the open side of the cavity is slitted to form a plurality of discrete filament portions.
- 4. The honing tool according to claim 2 wherein the cross-section of the open side of the cavity is elongated, and the single filament has a corresponding elongated longitudinal cross-section and is oriented so as to extend longitudinally in the open side of the cavity.
- 5. The honing tool according to claim 1 wherein the at least one filament comprises a plurality of filaments.
- 6. The honing tool according to claim 1 wherein the sidewall has a single recessed portion extending around the cavity.
- 7. A method for manufacturing a honing tool, the honing tool comprising an integrally formed metal holder having a cavity with an open side of known cross-section formed in one side thereof, the holder having a bottom surface in the cavity opposite the open side and a sidewall extending around the cavity between the open side and the bottom surface, the sidewall including at least one recessed portion at a location spaced from the open side of the cavity defining a cavity portion of larger cross-section than the cross-section of the open side, each recessed sidewall portion including a portion in communication with the larger cross-section cavity portion facing at least partially away from the open side of the cavity, and at least one filament of a polymeric material that melts at a known temperature having particles of an abrasive dispersed throughout, the at least one filament having first and second opposite ends and an overall cross-section corresponding generally to the cross-section of the open side of the cavity, said method comprising the steps of:
- a) heating the holder by induction to at least said known temperature;
- b) holding the first end of the at least one filament and inserting the second end thereof into the cavity of the heated holder such that just said second end is melted by the heated holder into a unitary mass;
- c) pressing the at least one filament deeper into the cavity such that the unitary mass substantially fills the cavity including the larger cross-section cavity portion and intimately engages the portion of the at least one recessed sidewall portion facing away from the open side of the cavity; and
- d) allowing the holder to cool such that the unitary mass is hardened and retained in the cavity by the engagement thereof with the portion of the at least one recessed sidewall portion facing away from the open side of the cavity.
- 8. The method according to claim 7 wherein the known temperature is about 500.degree. F.
- 9. The method according to claim 7 wherein the at least one filament comprises a single filament.
- 10. The method according to claim 9 comprising the further step wherein the first end of the single filament is slitted to form a plurality of discrete filament portions.
- 11. The method according to claim 7 wherein the at least one filament comprises a plurality of filaments.
- 12. The method according to claim 11 wherein the plurality of filaments are bundled together in closely packed relation.
- 13. The method according to claim 7 wherein the holder cavity has a known volume, the at least one filament has a known volume per unit of length, and a length of the at least one filament corresponding to the volume of the cavity is inserted and pressed into the cavity to fill the cavity.
- 14. The method according to claim 7 wherein the at least one recessed sidewall portion includes opposed sidewall portions adjacent opposite sides of the cavity extending convergingly towards the open the side thereof.
- 15. The method according to claim 7 wherein the sidewall forms a step intermediate the open side of the cavity and the larger cross-section cavity portion.
- 16. The method according to claim 7 wherein the holder and the cavity are elongated.
- 17. The method according to claim 7 comprising a plurality of said cavities in spaced relation to one another formed in one side of the holder.
- 18. A method for manufacturing a honing tool for mounting on a honing machine, the honing tool including a unitary metal holder having an open sided cavity formed in one side thereof, a bottom surface in the cavity opposite the open side, and a sidewall extending around the cavity between the open side and the bottom surface, the sidewall having at least one recessed portion spaced from the open side of the cavity forming a recessed cavity portion, each recessed sidewall portion including a portion adjacent the recessed cavity portion formed thereby facing at least partially away from the open side of the cavity, and a plurality of filaments of a polymeric material that melts at a known temperature having particles of an abrasive dispersed throughout, said filaments having first and second opposite ends, said method comprising the steps of:
- a) heating the holder by induction to at least said known temperature;
- b) holding the first ends of the filaments and inserting the second ends of the filaments into the cavity of the heated holder such that just the second ends of the filaments are melted together into a solitary mass in the cavity by the heated holder;
- c) pressing the filaments farther into the cavity to force the solitary mass against the bottom wall such that the mass spreads sidewardly into the at least one recessed cavity portion and substantially fills the cavity and intimately engages the portion of the at least one recessed sidewall portion facing away from the open side of the cavity; and
- d) allowing the holder and the solitary mass to cool such that the solitary mass is hardened and retained in the cavity by the engagement thereof with the portion of the at least one recessed sidewall portion facing away from the open side of the cavity.
- 19. The method according to claim 18 wherein each recessed cavity portion of the holder has a known volume, the plurality of filaments have a known volume per unit of length as measured between the first and second opposite ends thereof, and the filaments are pressed farther into the cavity by a length thereof corresponding to the total recessed cavity portion volume.
- 20. The method according to claim 18 wherein the holder and cavity are elongated and the sidewall includes a continuous recessed portion extending around the cavity.
Parent Case Info
This application is a continuation of U.S. application Ser. No. 08/238,434, filed May 5,1994 which is now abandoned
US Referenced Citations (17)
Continuations (1)
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Number |
Date |
Country |
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238434 |
May 1994 |
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