Claims
- 1. A method of milling a depression into a road surface, the method comprising the steps of;
- a) providing a rotary cutting tool;
- b) positioning the rotary cutting tool over the road surface;
- c) lowering the rotary cutting tool into contact with the road surface;
- d) advancing the rotary cutting tool longitudinally forward while the rotary cutting tool remains in contact with the road surface, while;
- e) simultaneously gradually lowering the rotary cutting tool, then;
- f) gradually raising the rotary cutting tool, while;
- g) simultaneously continuing to advance the rotary cutting tool longitudinally forward while remaining in contact with the road surface;
- h) continuing to raise the rotary cutting tool out of contact with the road surface;
- whereby the rotary cutting tool is advanced while in contact with the road surface during the gradual lowering and advanced while still in contact with the road surface during the gradual raising to form a milled through cut depression.
- 2. The method defined in claim 1 wherein the rotary cutting tool further includes elevational regulatory means to regulate timing of the lowering and raising of the rotary cutting tool during the advance while in contact with the road surface.
- 3. The method defined in claim 2 wherein the elevational regulatory means comprises a cam member, the cam member providing a repetitive cycling of a lowering action and a raising action, the lowering action and the raising action regulated by the advance of the rotary cutting tool.
- 4. The method defined in claim 3 wherein the cam member comprises a cam wheel, the cam wheel in direct contact with the road surface, the cam wheel rotating as a result of the advance of the rotary cutting tool, the cam wheel having at least one camming group, each camming group providing for a transfer of the rotary cutting tool from a beginning elevational height through an elevational cycle and returning to the beginning elevational height, the elevational cycle having a minimum elevational height and a maximum elevation height, the minimum elevational height and the maximum elevational height both relative to the road surface, the minimum elevational height placing the rotary cutting tool in contact with the road surface, the maximum elevational height placing the rotary cutting tool elevated above the road surface the beginning elevational height being the maximum elevation height.
- 5. The method defined in claim 4 wherein the cam wheel provides one elevational cycle per one complete rotation of the cam wheel across the road surface during the advance of the rotary cutting tool, the one complete rotation of the cam wheel causing milling of one depression.
- 6. The method defined in claim 4 wherein the cam wheel provides a plurality of elevational cycles per one complete rotation of the cam wheel across the road surface during the advance of the rotary cutting tool, the one complete rotation of the cam wheel causing milling of a number of depressions equal to the number of elevational cycles per one complete rotation of the cam wheel.
- 7. The method defined in claim 1 further comprising repeating steps c through h in a repetitive manner with the addition of the step of advancing the rotary cutting tool longitudinally a predetermined distance while out of contact with the road surface included between each repetition of steps c through h, whereby a series of milled depressions are formed.
- 8. A method of continuously milling a series of depressions in a surface of a road, the surface of the road having a prevailing plane at a location of placement of each depression within the series of depressions, the method comprising the steps of;
- a) providing a cutting tool, the cutting tool capable of milling the surface of the road, the cutting tool having a lateral width;
- b) advancing the cutting tool continually along a desired path, the desired path along the surface of the road;
- c) providing elevation regulation means, the elevation regulation means to transfer a lowering action and a raising action to the cutting tool in a repetitive cycle, during each of the cycles of the repetitive cycle the cutting tool comes into contact with the surface of the road during the lowering action and the cutting tool comes out of contact with the surface of the road during the raising action, the lowering action having a beginning contact line on the surface of the road, the raising action having an ending contact line on the surface of the road, the distance between the beginning contact line and the ending contact line having a distance measurement, the lowering action placing the cutting tool at a maximum penetration line prior to beginning the raising action, the maximum penetration line having a distance measurement from the prevailing plane of the surface of the road, the distance measurement between the beginning contact line and the ending contact line significantly greater than the distance measurement of the maximum penetration line to the prevailing plane of the surface of the road;
- whereby the cutting tool advances a significantly greater distance longitudinally while in contact with the surface than the distance of penetration of the surface by the cutting tool during forming of each depression within the series.
- 9. The method defined in claim 8 wherein the elevation regulation means comprises a cam wheel, the cam wheel in contact with the surface of the road and rotating based on passage along the surface of the road, the cam wheel capable of transferring to the cutting tool the lowering action and the raising action.
- 10. The method defined in claim 9 wherein the cam wheel provides one elevational cycle per one complete rotation of the cam wheel across the surface of the road during the advance of the cutting tool, the one complete rotation of the cam wheel causing milling of one depression.
- 11. The method defined in claim 9 wherein the cam wheel provides a plurality of elevational cycles per one complete rotation of the cam wheel across the surface of the road during the advance of the cutting tool, the one complete rotation of the cam wheel causing milling of depressions equal to the number of elevational cycles per one complete rotation of the cam wheel.
- 12. A machine to form a series of depressions in a surface of an a road during continuous longitudinal advance of the machine, the depressions longitudinally aligned in the series along a desired path, each depression having a curved base, the curved base having an extended diameter measurement, the machine comprising;
- a) a rotary cutting head, the rotary cutting head capable of milling the surface of the road, the rotary cutting head having a cutting diameter measurement, the cutting diameter measurement being less than the extended diameter measurement of the curved base of the depression;
- b) regulation means, the regulation means to transfer to the rotary cutting head an elevational movement, the elevational movement imparting a lowering action and a raising action to the rotary cutting head, the rotary cutting head coming into contact with the surface of the road during the lowering action, the rotary cutting head penetrating the surface of the road during the lowering action, the rotary cutting head coming out of contact with the surface of the road during the raising action, the rotary cutting head advancing longitudinally while in contact with the surface of the road during both the lowering action and the raising action, the regulation means causing a repetitive transference of the elevational movement to the rotary cutting head to form the series of depressions;
- whereby the regulation means transfers a repetitive transference of elevational movements to the rotary cutting head to cause the lowering action and the raising action to form a depression while the rotary cutting head is in contact with the surface of the road, the rotary cutting head longitudinally advancing while the rotary cutting head is in contact with the surface of the road during forming of each depression within the series of depressions.
- 13. The machine defined in claim 12 wherein the regulation means comprises a cam wheel, the cam wheel in contact with the surface of the road and rotating based on passage along the surface of the road, the cam wheel having at least one camming group, each camming group having a first position during rotation placing the rotary cutting head at a maximum elevational position and a second position during rotation placing the rotary cutting head at a minimum elevational position, the maximum elevational position placing the rotary cutting head out of contact with the surface of the road, the minimum elevational position placing the rotary cutting head penetrating the surface of the road.
- 14. The machine defined in claim 13 further comprising a pivot point and a connection member, the connection member connecting the rotary cutting head, the cam wheel and the pivot point, the pivot point cooperating with the cam wheel to transfer the elevational movement to the rotary cutting head.
- 15. The machine defined in claim 14 further comprising an axle, the axle penetrating the cam wheel, the axle connected to the connection member; and wherein the first position of each camming group placing the axle at a highest elevational position, the second position of each camming group placing the axle at a lowest elevational position; whereby a direct transference of elevational motion is transferred from the cam wheel to the rotary cutting head.
- 16. The machine defined in claim 14 further comprising an axle, the axle penetrating the cam wheel, the axle connected to the connection member; and wherein the first position of each camming group placing the axle at a lowest elevational position, the second position of each camming group placing the axle at a highest elevational position; whereby a reverse transference of elevational motion is transferred from the cam wheel to the rotary cutting head.
- 17. The machine defined in claim 13 further comprising a second cam wheel, the second cam wheel matching the cam wheel, the cam wheel and the second cam wheel linked to rotate side by side, parallel and spaced positioning in a synchronized manner; and wherein the rotary cutting head has a lateral length is carried between the cam wheel and the second cam wheel with opposing lateral ends of the rotary cutting head each adjacent one cam wheel; whereby the rotary cutting head is supported on opposing lateral ends by the cam wheel and the second cam wheel.
CROSS-REFERENCES
This application is a continuation-in-part application of U.S. Ser. No. 08/391,708, filed Feb. 21, 1995, entitled "Continuous Moving Highway Depression Cutting", currently pending; which is a continuation-in-part application of U.S. Pat. No. 5,391,017, Ser. No. 08/118,961, filed Sep. 10, 1993, entitled "Continuous Moving Depression Cutting Tool for Highway Use". This application is related to application Ser. No. 08/179,672 filed Jan. 11, 1994, entitled "Cutting of Repetitive Depressions in Roadway Surface". This application is related to application Ser. No. 08/471,858, filed Jun. 6, 1995, entitled "Impact Formed Depressions and Installation Machine".
US Referenced Citations (20)
Continuation in Parts (2)
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Number |
Date |
Country |
Parent |
391708 |
Feb 1995 |
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Parent |
118961 |
Sep 1993 |
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