Excavating equipment for excavating surfaces, in particular solid surfaces, and operating machine equipped with said excavating equipment
10358792 ยท 2019-07-23
Assignee
Inventors
Cpc classification
E02F3/3414
FIXED CONSTRUCTIONS
E02F3/183
FIXED CONSTRUCTIONS
E02F3/188
FIXED CONSTRUCTIONS
E02F5/14
FIXED CONSTRUCTIONS
International classification
E01C23/09
FIXED CONSTRUCTIONS
E01C23/12
FIXED CONSTRUCTIONS
E02F5/14
FIXED CONSTRUCTIONS
Abstract
Equipment (10) for excavating solid surfaces S such as for example made of asphalt or cement or similar solid material, in particular for obtaining or excavating trenches in said solid surfaces, said equipment (10) comprising working or excavating means (16) rotatably supported by a main frame (11), and a setting frame (30) which defines at least one contact portion (33) substantially flat and adapted to be put into contact with a corresponding portion of the surface S to be worked on, wherein the position of said setting frame (30) with respect to said main supporting frame (11) may be set so as to set the working depth K of said working means (16); wherein the said setting frame (30) is rotatably not constrained to said main supporting frame (11) in such a way that the setting frame, regardless of the particular working conditions, always perfectly lies on the surface to be worked on S.
Claims
1. Equipment for excavating surfaces or solid floorings (S), said equipment comprising rotatable working or excavating means configured to be rotated on an axis of rotation and supported by a main supporting frame, said main supporting frame comprising a coupling for operatively coupling said equipment to a mobile arm or support of a main operating machine, and a setting frame which defines at least one flat contact portion adapted to be put into contact with a corresponding portion of the surface (S) to be worked on, wherein said main supporting frame is housed or received in an internal space defined by said setting frame; wherein said setting frame is fixed to said main supporting frame in such a way that said setting frame can be translated with respect to said main frame on a plane perpendicular to the axis of rotation of said working or excavating means, wherein said main frame and said setting frame can be rotated one with respect to the other on a main rotation axis parallel to the rotation axis of said rotatable working or excavating means, and wherein said equipment comprises guiding means which comprise a proximity portion extending along a direction parallel to said axis of rotation of said working or excavating means, along with a plate shaped end portion extending from said proximity portion perpendicularly to said axis of rotation of said working or excavating means, wherein said proximity portion and said end portion define an engagement space in which there is permanently received in a slidable manner a portion of said setting frame or of said main supporting frame.
2. The equipment according to claim 1, wherein said main supporting frame and said setting frame are mutually coupled by means of a first engagement pin which extends along a direction parallel to said main rotation axis and comprises at least one free end portion, wherein said free end portion of said engagement pin is engaged in a first engagement slot of said setting frame, and wherein said first engagement slot has an arc or semicircular shape, said first engagement pin being thus adapted to be translated along said first engagement slot.
3. The equipment according to claim 2, wherein said main supporting frame and said setting frame are reciprocally or mutually coupled by means of a second guiding pin which extends along a direction parallel to the direction of extension of said first pin and comprises at least a free end portion, wherein said setting frame comprises a second guiding slot in which there is engaged the free end of said second guiding pin, and wherein said second guiding slot has an arc or semicircular shape, said second guiding pin being thus adapted to be translated along said second guiding slot.
4. The equipment according to claim 3, wherein said first and second slot extend along corresponding paths which are not parallel to each other.
5. The equipment according to claim 3, wherein said equipment comprises setting means adapted to allow setting the position of said setting frame with respect to said main supporting frame.
6. The equipment according to claim 2, wherein said equipment comprises setting means adapted to allow setting the position of said setting frame with respect to said main supporting frame.
7. The equipment according to claim 1, wherein the said proximity portion extends outwards from said main supporting frame.
8. The equipment according to claim 1, wherein said equipment comprises setting means adapted to allow setting the position of said setting frame with respect to said main supporting frame.
9. The equipment according to claim 8, wherein said setting means comprise a first coupling arm pivotally coupled on said main supporting frame by means of a pivot, wherein said first pin extends from said first coupling arm, and wherein said setting frame is coupled to said main frame by means of said first coupling arm, in such a way that rotating said first coupling arm around said pivot in two opposite rotation directions results in said setting frame being translated with respect to said main supporting frame respectively in two opposite translation directions.
10. The equipment according to claim 9, wherein said first coupling arm is realized as a first class lever, wherein said first pin is positioned in correspondence or proximity of a first end portion of said coupling arm which comprises the point on which the resistance of said lever is applied.
11. The equipment according to claim 10, wherein a second end portion of said coupling arm opposite to said first end portion and which comprises the point on which power is applied and said first end portion extend along directions which are not parallel and converge in the pivot of said lever.
12. The equipment according to claim 11, wherein an angle defined by said first and second end portion of said coupling arm is less than 180 .
13. The equipment according to claim 10, wherein said equipment comprises actuating means adapted to be extended and retracted and applied on a second end portion of said coupling arm in such a way that the extension of said actuating means results in a rotation of said arm in a rotation direction while the retraction of said actuating means results in a rotation of said arm in the opposite direction.
14. An operating machine for working solid surfaces including excavating trenches in said solid surfaces, wherein said operating machine is equipped with an equipment according to claim 1.
15. The operating machine according to claim 14, wherein said equipment is fixed to said operating machine by means of a hydraulically activated working or supporting arm.
16. The operating machine according to claim 15, wherein an actuating means and/or a working means are respectively of the hydraulic type and hydraulically actuated and are connected to a main hydraulic circuit of said operating machine.
17. The operating machine according to claim 14, wherein said solid surfaces include at least one of asphalt and cement.
Description
BRIEF DESCRIPTION OF THE FIGURES
(1) In the following, the present invention will be clarified through the description of some embodiments thereof represented in the attached drawings. However, it should be noted that the present invention is not limited to the embodiments depicted in the drawings; on the contrary, all variants or modifications of the embodiments represented and described hereinafter deemed clear, obvious and evincible to a man skilled in the art fall within the scope and object of the present invention. In particular, in the attached drawings:
(2) Each of
(3) Each of
(4) Each of
(5)
(6) each of
(7)
(8)
(9)
(10)
DETAILED DESCRIPTION OF THE PRESENT INVENTION
(11) The present invention particularly and effectively applies to trench excavation equipments; thus, this is the reason why the present invention will be described hereinafter with particular reference to its application in the case of a trench excavation equipment or trench excavator.
(12) However, the possible applications of the present invention are not limited to the case of trench excavation equipment and/or trench excavators; on the contrary, the present invention effectively and conveniently applies to different equipments such as for example grinding equipments for grinding surfaces or for working and/or demolishing surfaces, in particular solid surfaces.
(13) In
(14) Now, with reference to
(15) In the light of the description above, in particular it is thus to be observed that the fixing or coupling arm or element 12 is realised as a first class lever, in particular in which the resistance (constituted by the setting frame 30) is applied to an end of the lever or arm (to the pins 19), the power (generated by the actuating means 18) is applied to the opposite end of the lever or arm 12 (to the axle 21), while the pivot of the lever (constituted by the pivoting pins 17) is arranged in an intermediate position between the points of application, respectively the resistance and power application points.
(16) Obviously, alternative solutions with respect to the one described above in which the engagement slots 31 are provided not already in the setting frame 30 but in the arm 12 (each in one of the two parallel plates of the arm 12) fall within the scope of the present invention, wherein in this case the two settings pins each extend from one plate of the setting frame 30 inwards and each are engaged in a corresponding slot 31.
(17) Solutions for setting the working and/or excavation depths different from the one described above which essentially comprises the arm or pivot 12 and the hydraulic piston 18 also fall within the scope of the present invention; for example, solutions similar to those represented in
(18) Still with reference to
(19) Two additional engagement pins 20 further extend outwards, each respectively from one of the two parallel plates of the main supporting frame 11, wherein each of the engagement pins 20 is engaged in a further engagement slot 32, each of the two further engagement slots 32 being formed in one of the two parallel plates of the fixing and/or setting frame 30, the engagement slots 32 also having an arc or semicircular extension essentially centred on the rotation axis of the excavation wheel 16, the extension of the slots 32 however not being parallel to that of the slots 31.
(20) In addition, further guiding means 14 are provided on each of the opposite sides of the main supporting frame 11, wherein as represented in
(21) Obviously, even in this case, alternative solutions fall within the scope of the present invention, in which for example the two further engagement pins 20 extend inwards respectively into the two parallel plates of the setting frame 30 wherein each of the engagement pins 20 are engaged in a further engagement slot 32, the two further engagement slots 32 being formed in one of the two parallel plates of the main supporting frame 11 in this case.
(22) In the same way, the further guiding means 14 may be provided on each of the opposite sides of the setting frame 30, wherein in this case, each of the means 14 comprises a proximity portion 14p extending inwards from the setting frame 30, and an end portion 14e substantially parallel to the respective plate of the setting frame 30, in such a way that the proximity 14p and end 14e portions define an interior space 14s in which a portion of the main supporting frame 11 is housed.
(23) In addition, in the scope of the present invention, the guiding means 14 may be substituted by a system with engagement slots and pins, while the slots 32 and the respective engagement pins 20 may be substituted by the guiding means 14.
(24) The function of the slots 31 and 32 and the respective engagement pins 19 and 20 is represented in
(25) Each of
(26) What changes in
(27) To each of the different coupling heights 13 with respect to the surface S there corresponds a respectively different angle of the coupling 13 with respect to the vertical, the coupling being more inclined anticlockwise in the condition of
(28) In other words, assumingfor the sake of description clarityto start from the operating condition represented in
(29) The description above is particularly observable directly with reference to
(30) When performing the excavations, with the excavation wheel 16 driven in rotation through the power source 15, the operating machine 100 advances or recedes in one of the directions indicated by the two arrows in
(31)
(32)
(33) Thus, it has been shown by means of the previous detailed description of the embodiments of the present invention represented in the drawings, that the present invention allows attaining the preset objects and/or overcoming or at least minimising the drawbacks typical of the prior art solutions.
(34) In particular, according to the present invention, the main frame and the setting frame are not constrained in rotation, thus, even in case of inadvertent or unintentional rotation of the support framework, the setting frame remains in the desired position, i.e. with the supporting surfaces always perfectly lying on the surface to be worked on, thus avoiding accumulation of the excavated material under the supporting surfaces, thus allowing maintaining the working depth constant.
(35) In addition, the equipment according to the present invention allows an accurate and reliable setting of the mutual position of the setting frame and the supporting frame and thus the excavation depth.
(36) Though the present invention has been clarified through the detailed description of its embodiments represented in the drawings, the present invention is obviously not limited to the embodiments described previously and represented in the drawings; on the contrary, all variant embodiments with respect to those described and represented which are deemed to be obvious and evincible to a man skilled in the art fall within the scope of the present invention. For example, according to an alternative embodiment, the guiding means 14 may be replaced by a further pair of guides or slots, each formed in a lateral wall of the guide frame or main frame, and in which there is engaged an engagement or guide pin extending outwards from the main supporting frame or respectively inwards from the guide frame 30. Likewise, the slots 32 and the respective pins 20 may be replaced by guiding means 14 of the previously described type (
(37) In addition, the hydraulic piston 18 may be replaced for example by a manually settable jack. Furthermore, the possible applications of the present invention are not limited to trench excavation equipments or trench excavators of the wheel and/or chain type, but they can also be applied to any equipment requiring setting the working depth, for example demolition equipment, grinding equipment or the like.
(38) The object or scope of the present invention is thus defined by the claims.