Claims
- 1. A metallic rule folding apparatus comprising:a transferring unit for transfer of metallic rule through a passage formed by a guide, said passage defining a path of travel of the metallic rule, said guide having an edge defined by two intersecting surfaces; a rotary assembly having first and second rotary bodies spaced to receive metallic rule therebetween, and one or more elongate member mounted for movement between a stowed position where said one or more elongate member is disposed to not cross the path of travel of said metallic rule and a deployed position where said one or more elongate member is disposed to cross the path of travel of said metallic rule; and said rotary assembly configured for arcuate motion relative to said edge of said guide, to concomitantly move the first and second rotary bodies and the deployed one or more elongate member from a first position toward at least one second position to engage a portion of the metallic rule against said edge of said guide, wherein the one or more elongatc member and said edge of said guide cause the folding of the portion of the metallic rule.
- 2. The apparatus as in claim 1, comprising two elongate members.
- 3. The apparatus as in claim 1, wherein the first rotary body and the second rotary body are coupled to the one or more elongate member to move in concert around the guide and cause the folding of a portion of said metallic rule.
- 4. The apparatus as in claim 1, wherein the one or more elongate member, when deployed and moved from the first position toward the second position, includes a first portion coupled to the first rotary body to contact a top portion of the metallic rule and a second portion coupled to the second rotary body to contact a bottom portion of the metallic rule to fold the metallic rule.
- 5. The apparatus as in claim 1, wherein said metallic rule is a cutting blade.
- 6. The apparatus as in claim 1, wherein said one or more elongate member has an edge formed by an intersection of at least two sides for engaging the edge against the metallic rule.
- 7. The apparatus as in claim 1, further including a drive member having a shaft and first and second toothed members coupled to the shaft, said first and second toothed members being connected to the first and second rotary bodies so that rotation of the drive member causes corresponding rotation of the first and second tooth members and the first and second rotary bodies.
- 8. A method of folding metallic rule, comprising the steps of:transferring metallic rule through a passage formed by a guide, said passage defining a longitudinal axis, said guide having an edge defined by two intersecting surfaces; providing a rotary assembly having first and second rotary bodies spaced to receive metallic rule therebetween, and one or more elongate member mounted for movement between a stowed position and a deployed position; and rotating said rotary assembly including said first and second rotary bodies and said one or more elongate member in an arcuate motion relative to and around said edge of said guide from a first position toward at least one second position to engage a portion of the metallic rule with the one or more elongate member in the deployed position, wherein the one or more elongate member and said edge of said guide cause the folding of the portion of the metallic rule.
- 9. The method according to claim 8, wherein said step of rotating said rotary assembly includes rotating two elongate members from the first position on one side of said guide toward the second position on another side opposite said one side of said guide.
- 10. The method according to claim 8, wherein the one or more elongate member is coupled to the first and second rotary bodies to concomitantly rotate with the first and second rotary bodies from a first common position to a second common position to fold the portion of the metallic rule.
- 11. The method according to claim 8, wherein during the step of rotating said rotary assembly and the one or more elongated member being in the deployed position, the first rotary body rotates to effect folding a top portion of the metallic rule and the second rotary body rotates to effect the folding of a bottom portion of said metallic rule.
- 12. The method according to claim 8, wherein an edge portion of said one or more elongate member formed by an intersection of at least two sides engages the metallic rule against the guide to fold the metallic rule.
- 13. A folding apparatus for folding metallic rule, comprising:a guide having a passage for passing metallic rule and an edge portion defined by two intersecting surfaces, said passage defining a longitudinal plane; one or more elongate member mounted for movement between a retracted position and an extended position; and a rotary assembly having first and second rotary bodies spaced to receive metallic rule therebetween, said one or more elongate member being disposed to cross the longitudinal plane and to contact the metallic rule when in the extended position and when said rotary assembly moves in an arcuate motion relative to and around said edge portion of said guide to move said one or more elongate member concomitantly with the first and second rotary bodies from a first position toward at least one second position, wherein the one or more elongate member and said edge of said guide cause the folding of said metallic rule.
- 14. The apparatus as in claim 13, wherein when said one or more elongate member is in a retracted position, said one or more elongate member is disposed clear of the longitudinal plane so that said one or more elongate member cannot contact the metallic rule.
- 15. The apparatus as in claim 13, wherein the one or more elongate member is coupled to the first and second rotary bodies to concomitantly rotate with the first and second rotary bodies from a first common position to a second common position to fold the portion of the metallic rule.
- 16. The apparatus as in claim 13, wherein said one or more elongate member is coupled to the first rotary body and the second rotary body to effect folding of a top portion of said metallic rule when the first rotary body rotates and to effect folding of a bottom portion of said metallic rule when the second rotary body rotates.
- 17. The apparatus as in claim 13, wherein said one or more elongate member has an edge formed by an intersection of at least two sides for engaging the metallic rule against the guide.
- 18. The apparatus as in claim 13, wherein said metallic rule is a cutting blade.
- 19. The apparatus as in claim 13, further including a drive motor coupled to a shaft which in turn is coupled to first and second rotary toothed members, said first and second rotary toothed members being connected to the first and second rotary bodies so that rotation of the drive member causes corresponding rotation of the first and second tooth members and the first and second rotary bodies.
- 20. A folding apparatus for folding metallic rule, comprising:a guide having a passage for passing metallic rule and an edge portion defined by two intersecting surfaces, said passage defining a longitudinal plane; one or more elongate member mounted for movement between a reacted position and an extended position; and a rotary assembly having first and second rotary bodies spaced to receive metallic rule therebetween, said one or more elongate member being coupled to the first rotary body to effect folding of a top portion of the metallic rule proximal to the first rotary body and coupled to the second rotary body to effect folding of a bottom portion of the metallic rule proximal to the second rotary body when said rotary assembly moves in an arcuate motion relative to and around said edge portion of guide to move said one or more elongate member in concert with the first and second rotary bodies from a first position toward at least one second position, wherein the one or more elongate member and said edge of said guide cause the folding of said metallic.
- 21. The folding apparatus as in claim 20, wherein the edge portion of the guide against which the metallic rule contacts when the metallic rule is being folded is shaped to form an angle greater than 90 degrees relative to the longitudinal plane.
- 22. The folding apparatus as in claim 20, wherein the edge portion of the guide against which the metallic rule contacts when the metallic rule is being folded is shaped to produce a V-shaped folded metallic rule.
- 23. The apparatus as in claim 20, further including a drive motor coupled to a shaft which in turn is coupled to first and second rotary toothed members, said first and second rotary toothed members being connected to the first and second rotary bodies so that rotation of the drive member causes corresponding rotation of the first and second tooth members and the first and second rotary bodies.
Priority Claims (1)
Number |
Date |
Country |
Kind |
95-16975 |
Jun 1995 |
KR |
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CROSS-REFERENCE TO RELATED APPLICATIONS
This is a continuation of application Ser. No. 09/247,408 filed Feb. 10, 1999, now Pat. No. 6,128,940, which is a continuation of U.S. application Ser. No. 09/049,391 filed Mar. 27. 1998, now U.S. Pat. No. 5,870,919, which is a continuation of U.S. application Ser. No. 08/668,379 filed Jun. 21, 1996, now U.S. Pat. No. 5,787,750, which claims the benefit of Korean Application No. 1995/16975, filed Jun. 22, 1995.
US Referenced Citations (8)
Foreign Referenced Citations (1)
Number |
Date |
Country |
62-181835 |
Aug 1987 |
JP |
Non-Patent Literature Citations (1)
Entry |
Litigation material from SDS USA, Inc. v. Ken Specialities, Inc. (99-133/WHW), 107 Fed. Supp. 2d 574. |
Continuations (3)
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Number |
Date |
Country |
Parent |
09/247408 |
Feb 1999 |
US |
Child |
09/575095 |
|
US |
Parent |
09/049391 |
Mar 1998 |
US |
Child |
09/247408 |
|
US |
Parent |
08/668379 |
Jun 1996 |
US |
Child |
09/049391 |
|
US |