Water Jet Unit And Method For Working A Surface
20190003135 ยท 2019-01-03
Assignee
Inventors
Cpc classification
F16H19/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
A surface, e.g., a concrete surface, is worked by guiding a lance (23) which comprises a water jet mouthpiece (27) coupled to the high-pressure water over the surface in a working path and at the same oscillating the lance transversely to the working path. The oscillation is driven by an eccentric mechanism (30, 31) and has a stable eccentric position when the mechanism is rotated in the one direction and a stable eccentric position when it is rotated in the other direction. The two positions have a different eccentricity and impart different widths to the working. The working depth and the working width can be changed by changing the direction of rotation.
Claims
1. Water jet unit for working surfaces, including a concrete surface, comprising: a lance (23) with a mouthpiece (27) arranged for being coupled to a line for high-pressure water, a holder (24, 26) for the lance, an arrangement (13) for guiding the holder in a working path, an eccentric mechanism (30, 31) for the oscillation of the lance in a plane transverse to the working path in order to add width to the working, characterized by that the eccentric mechanism (30, 31) of the unit has a stable eccentric position when it is rotated in the one direction and a stable eccentric position when it is rotated in the other direction, wherein the two positions have a different eccentricity and therefore produce a different width of the working.
2. Water jet unit according to claim 1, characterized by that the eccentric mechanism (30, 31) comprises a crank arm (32) coupled to a link (31) which is coupled to the lance (23) in order to oscillate it, wherein the crank arm is arranged on a crank arm carrier (34, 37) which is rotatably supported and is coupled to a rotary motor (36) and the crank arm carrier comprises an outer part (37), which carries the crank arm and is mounted on another part (34) and can rotate on it between the two stable positions.
3. Water jet unit according to claim 2, characterized by at least one spiral track (39) on one of the two parts (34, 37) of the crank arm carrier and by stop elements (38) on the other part engaging into the spiral track in order to define the two stable eccentric positions.
4. Water jet unit according to claim 1, characterized in that said water jet unit comprises a mobile carrier (11) for a feed beam (12) along which a crab (20), which carries the holder (24, 26), is mounted.
5. Method for working a surface, including a concrete surface, by guiding a lance (23), which comprises a water jet mouthpiece (27) coupled to high pressure water, over the surface in a working path and at the same time oscillating the lance transversely to the working path, characterized by that, during the working, the oscillation angle of the lance (23) is changed when needed in order to adjust the width and/or the depth of the working path.
6. Method according to claim 5, characterized by that an oscillation mechanism (30, 31) is used, which is driven by a rotary motor (36), and has two oscillation angles for the lance, and change between the oscillation angles is carried out by changing the direction of rotation on the motor.
7. Water jet unit according to claim 2, comprising a mobile carrier (11) for a feed beam (12) along which a crab (20), which carries the holder (24, 26), is mounted.
8. Water jet unit according to claim 3, comprising a mobile carrier (11) for a feed beam (12) along which a crab (20), which carries the holder (24, 26), is mounted.
Description
SHORT DESCRIPTION OF THE DRAWINGS, WHICH SHOW AN EXAMPLE OF THE INVENTION
[0009]
[0010]
[0011]
[0012]
[0013]
[0014]
[0015]
DESCRIPTION OF THE ILLUSTRATED EXAMPLE
[0016]
[0017]
[0018]
[0019]
[0020] Given a constant speed of the crab, the width of the working path becomes smaller and the working depth becomes greater at the lesser oscillation angle obtained according to
[0021] The example shows two stable eccentric positions and a person skilled in the art will understand that the eccentric mechanism 31-39 can be modified so that he can obtain two stable positions in another manner than the one shown by changing the direction of rotation of the motor.
[0022] The example shows a feed beam with crab which carries a working unit. A person skilled in the art will understand that the working unit can be carried in another manner. It can be mounted, for example, at the end on a boom which can swing the working unit along an arc-shaped working sweep. This can be suitable for vertical surfaces. A frame with an indexable feed beam which carries the working unit can for example also be mounted on the vertical surface.