[0001] The present invention relates to a bucket for earth moving machines.
[0002] In particular, the present invention relates to a bucket for motor vehicles, such
as vehicles for digging or loading material, suitable for transporting and mixing
earth, sand, gravel or mortar.
[0003] As is well known, there exist mixing buckets consisting of a box-like body for collecting
and containing the material, generally supported by a mechanical arm of the machine.
The arm is moved from the driving cab of the machine so as to be able to orient and
move the bucket during the manoeuvres of digging and collecting the material.
[0004] Inside the box-like body there is provided a mixing member consisting of a motorised
auger rotating about an axis that is generally horizontal relative to the ground.
In this manner, during rotation of the auger, the respective helical blade mixes the
material contained within the body itself, thus obtaining the desired mixing.
[0005] The auger is driven by a respective motor mounted on a lateral wall of the box-like
body and has a continuous helical blade extending along the entire longitudinal development
of the box-like body. The movement of the blade results in the formation of a flow
of material to be mixed which extends along the longitudinal development of the blade
and is directed towards a lateral wall of the box-like body, provided with an opening
for unloading the material.
[0006] The unloading hole, once freed by a respective shutter member, allows the material
to flow out from a lateral area of the bucket.
[0007] However, said mixing bucket presents some major operative limits, given the positioning
of the hole for unloading the material. In fact, use of such a bucket is precluded
for particular applications in which the outflow of the material from a central area
of the bucket is required.
[0008] Moreover, in order to position the hole of the bucket in an area for unloading the
material, it is necessary to laterally position the entire machine in order to align
the lateral part of the bucket (in which the hole is obtained) relative to said area.
[0009] There are also known buckets provided with a central hole formed on a lower wall
of the box-like body. In this case the auger consists of two mutually coaxial helical
blades disposed at the sides of the same motorised shaft. The two blades are separated
from each other so as to give rise to opposing flows of material, both directed toward
the centre of the box-like body. In this manner, the material coming from both flows
is conveyed toward the central hole, which, once freed by a respective shutter element,
allows the material to exit from a central, lower area of the bucket.
[0010] However, this type of bucket, too, presents a major limitation.
[0011] In fact, the two opposing flows of material tend to cause the material to accumulate
at the centre, thus creating a disuniform distribution of the material.
[0012] Moreover, in this case excessive stresses are generated by the opposition of the
two flows converging toward the centre of the bucket.
[0013] It is also known document
FR 2893517 disclosing a bucket having two holes obtained in two opposite lateral walls of the
box-like body for unloading the material.
[0014] In this context, the technical task at the basis of the present invention is to propose
a bucket for earth moving machines which overcomes the limitations of the above-mentioned
prior art.
[0015] In particular, it is an object of the present invention to provide a bucket for earth
moving machines that is versatile and capable of being used for any type of application.
[0016] A further object of the present invention is to propose a bucket for earth moving
machines that is structurally simple and capable of mixing the material in a homogeneous
manner.
[0017] The defined technical task and the specified objects hereof are substantially achieved
by a bucket for earth moving machines which comprises the technical characteristics
described in one or more of the appended claims.
[0018] Further characteristics and advantages of the present invention will become more
apparent from the following approximate, and hence non-restrictive, description of
a preferred, but not exclusive, embodiment of a bucket for earth moving machines as
illustrated in the appended drawings, in which:
- figure 1 illustrates a schematic view of an earth moving machine equipped with a bucket
according to the present invention;
- figures 2a and 2b respectively illustrate perspective views from two opposite sides
of the bucket according to the present invention;
- figure 3 is a rear elevation view of the bucket of figures 2a and 2b;
- figure 4 is a front elevation view of the bucket of figures 2a and 2b;
- figure 5 is a bottom elevation view of the bucket of figures 2a and 2b;
- figure 6 is a side elevation view of the bucket of figures 2a and 2b; and
- figure 7 shows a construction detail of the bucket illustrated in figure 6, in a respective
operative condition.
[0019] With reference to the appended figures, 1 indicates a bucket per earth moving machines
2, of the type illustrated by way of example in figure 1.
[0020] In particular, the machine 2 is equipped with an articulated arm 2a, at the end of
which is mounted the bucket 1 of the present invention.
[0021] With particular reference to figures 2a and 2b, the bucket 1 presents a containment
body 3 defining a compartment 5 for housing a material to be mixed, such as earth,
gravel or mortar.
[0022] The body 3 presents at least one bottom wall 4 having a substantially "C"-shaped
cross section. The bottom wall 4 defines a lower segment 4a and an upper segment 4b,
both provided with mutually opposite end edges 5a, 5b defining an opening 6 for accessing
said compartment 5.
[0023] The body 3 moreover presents a first and a second lateral wall 6a, 6b, mutually opposite
and positioned at the sides of the bottom wall 4 so as to define the substantially
box-like structure of the bucket 1.
[0024] Inside the containment compartment 5 there are provided mixing means 7, suitable
for mixing the material inside the compartment 5 itself.
[0025] The mixing means 7 advantageously consist of a rotating shaft 8 presenting a helical
blade 9 mounted on the outer surface of the shaft 8 and extending along the entire
longitudinal development of the shaft 8 itself.
[0026] Preferably, the shaft 8 presents a first end 8a pivotally associated to the first
wall 6a, and a second end 8b able to rotate in the second lateral wall 6b and operatively
engaged to a motor 10.
[0027] As is better illustrated in figures 2a and 4, the motor 10, not further described
or illustrated, being of a known type, is positioned on the second lateral wall 6b
externally to the containment compartment 5.
[0028] Advantageously, the rotation of the shaft 8 imposed by the motor 10 causes the blade
9 to move around the longitudinal axis of the shaft 8. In this manner, the material
in the compartment 5 is mixed and conveyed in a first flow A developing along the
shaft 8 and directed from the second lateral wall 6b to the first wall 6a.
[0029] The helical blade 9 further presents a plurality of mixing blades 11, associated
to a peripheral edge of the helical blade 9 and appropriately distanced. The mixing
blades 11 consist of a series of segments projecting from the helical blade 9 and
oriented so as to define, during rotation of the shaft 8, a second flow B of material.
[0030] As is better illustrated in figure 4, the second flow B develops around the first
flow in a peripheral area of the compartment 5. In other words, the second flow B
flows along an internal surface of the bottom wall 4 and in an opposite direction
to the first flow A of material.
[0031] Advantageously, this creates a recirculation of material which, during the mixing
thereof, is first conveyed into a central area along the first flow A toward the first
lateral wall 6a and subsequently along a peripheral area along the flow B toward the
second lateral wall 6b.
[0032] The bucket 1 further presents a first and a second opening 12, 13 (figures 5, 6 and
7) for unloading the material, obtained in the containment body 3 and such as to make
the mixed material flow out of the compartment 5.
[0033] Said openings 12, 13 are both provided with respective actuator members 14, 15, better
described further below, and suitable for selectively occluding or freeing the first
and/or second opening 12, 13.
[0034] In particular, the first opening 12 is obtained in the first lateral wall 6a, whereas
the second opening 13 is obtained on the bottom wall 4 in said lower segment 4a.
[0035] It should be noted in particular that the second opening 13 is obtained in a median
area of the lower segment 4a interposed between the first and the second wall 6a,
6b (figures 3 and 5).
[0036] Advantageously, each opening 12 and 13 is housed in a respective position corresponding
to a particular condition of unloading of the mixed material. In other words, according
to operating needs, the operator can open the first and/or second opening 12, 13.
[0037] Moreover, the second opening 13 can be provided with a tubular discharge conduit
16 extending outside the compartment 5 and suitable for facilitating and directing
the material flowing out of the compartment 5.
[0038] As described above, the first opening 12 is provided with a first shutter member
14 able to switch between a first position in which it occludes the opening 12 itself
(figure 6) to prevent the material from flowing out and a second position in which
it allows the first flow A of mixed material to pass outwards (figure 7). The first
shutter member 14 can be actuated by means of a manual or pneumatic actuator. According
to the preferred embodiment illustrated in the appended figures, the first actuator
member 14 consists of a plate 14a able to slide at the first opening 12. Said plate
14a can be constrained to the first lateral wall 6a by means of a bolt 14b insertable
in respective bushings as is better illustrated in the detailed view of figure 7.
[0039] With particular reference to figures 3 and 5, the second shutter member 15 presents
a sliding plate 15a pneumatically actuated by a respective pneumatic cylinder 15b.
In this manner, the actuator member 15 is able to be switched between a first position
in which it occludes the opening 13 to prevent the material from flowing out and a
second position in which it allows the second flow B of mixed material to pass outwards.
[0040] Advantageously, the bucket 1 is versatile, given the possibility of using the two
openings 12, 13 for unloading the material. The openings 12, 13 can be opened individually
or simultaneously to adapt the function of unloading the material to the various application
requirements.
[0041] It should be noted, moreover, that each opening 12, 13 is intended to unload a respective
flow A, B of material. In fact, the first flow A is directed toward the first lateral
wall 6a provided with said first opening 12, whereas the second flow B is directed
towards the second lateral wall 6b so as to be intercepted by the second opening 13
obtained on the bottom wall 4.
[0042] Advantageously, the bucket 1 is able to mix the material homogeneously by causing
the formation of two opposing flows.
1. Bucket (1) for earth moving machines (2) comprising:
a containment body (3) presenting at least one bottom wall (4), a first and a second
lateral wall (6a, 6b) mutually opposite and defining a compartment (5) for housing
a material to be mixed;
mixing means (7), positioned in said housing compartment (5) to mix said material;
a first opening (12) for unloading said material, obtained in the containment body
(3) to make the mixed material flow out of said compartment (5);
a second unloading opening (13) also obtained in said containment body (3) to make
the mixed material flow out of said compartment (5),
characterised in that said first opening (12) is obtained in the first lateral wall (6a) and said second
opening (13) is obtained on the bottom wall (4).
2. Bucket (1) as claimed in claim 1, characterised in that each opening (12, 13) is housed in a respective position corresponding to a particular
condition of unloading of the mixed material.
3. Bucket as claimed in any of the previous claims, characterised in that said mixing means (7) comprise: a rotating shaft (8) presenting a helical blade (9)
mounted on the outer surface of the shaft (8) and extending along the entire longitudinal
development of the shaft (8); and a motor (10) positioned externally to said containment
compartment (5) and operatively associated to said shaft (8) to rotate the blade (9)
around the longitudinal axis of the shaft (8); said blade (9), during the rotation
defining at least a first flow (A) of material directed towards said first unloading
opening (12).
4. Bucket (1) as claimed in the claim 3, characterised in that said shaft (8) has a first end (8a) pivotally associated to the first wall (6a) and
a second end (8b) operatively engaged to said motor (10) and able to rotate in said
second wall (6b); said first flow (A) developing along the shaft (8) from said second
wall (6b) to said first wall (6a).
5. Bucket (1) as claimed in claim 3 or 4, characterised in that it further comprises a plurality of mixing blades (11), associated to a peripheral
edge of the helical blade (9) and appropriately distanced to define at least a second
flow (B) of material developing around the first flow (A) and directed from said first
wall (6a) towards the second wall (6b).
6. Bucket (1) as claimed in claim 5, characterised in that said second flow (B) is able to slide along an inner surface of the bottom wall (4)
to slide at the second unloading opening (13).
7. Bucket (1) as claimed in any of the previous claims, characterised in that the second opening (13) is obtained in a median area of said bottom wall (4) interposed
between the first and the second lateral wall (6a, 6b).
8. Bucket (1) as claimed in any of the previous claims, characterised in that said bottom wall (4) is substantially "C" shaped and presents mutually opposite end
edges (5a, 5b) defining an opening (6) for accessing said compartment (5), said second
opening (13) being obtained in a lower segment (4a) of the bottom wall (4).
9. Bucket as claimed in any of the claims 3 to 8, characterised in that said first opening (12) presents a first shutter member (14) able to switch between
a first position in which it occludes the opening (12) to prevent the material from
flowing out and a second position in which it allows the first flow (A) of mixed material
to pass outwards; said shutter member (14) being a manual or pneumatic shutter.
10. Bucket as claimed in any of the claims 5 to 9, characterised in that said second opening (13) presents a second shutter member (15) able to switch between
a first position in which it occludes the opening (13) to prevent the material from
flowing out and a second position in which it allows the second flow (B) of mixed
material to pass outwards; said second shutter member (15) being able to be actuated
by a pneumatic cylinder.