ROD FOR HANDLING A TOOL PROVIDED WITH A DEVICE FOR ADJUSTING ITS LENGTH
20200086473 ยท 2020-03-19
Inventors
Cpc classification
B25G1/04
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A Manoeuvring rod comprising a first elongated portion tubular-shaped and provided with a handle portion configured to be grasped by a user, and a second elongated portion engaged to the working tool). The elongated portions are mutually telescopically engaged in such a way to be able to freely slide one with respect to the other. A blocking/unblocking device is then provided arranged to move from a blocking configuration, in which impedes the above disclosed free sliding, to an unblocking configuration, in which, instead, allows the above disclosed free sliding. The above mentioned movement of the blocking/unblocking device from the blocking configuration to the unblocking configuration, or vice versa, is directly actuated by the user by acting on a control member positioned at the handle portion.
Claims
1. A telescopic manoeuvring rod comprising: a first elongated portion having a tubular shape and provided with a handle portion at which a user grasps said telescopic manoeuvring rod; a second elongated portion telescopically engaged with said first elongated portion at a first end and configured to freely slide with respect to the first elongated portion, said second elongated portion being, furthermore, engaged to a working tool at a second end ; a blocking/unblocking device arranged to move between a blocking configuration in which the blocking/unblocking device impedes said second elongated portion to freely slide with respect to said first elongated portion, and an unblocking configuration in which said blocking/unblocking device allows said second elongated portion to freely slide with respect to said first elongated portion; said telescopic manoeuvring rod wherein it furthermore provides: a control member configured to be hand-operated by a user to cause said blocking/unblocking device to move from said blocking configuration to said unblocking configuration, and vice versa, said control member being positioned at said handle portion, whereby said user is able to operate the control member substantially without changing the grasp on the handle portion with respect to the normal working position.
2. The telescopic manoeuvring rod according to claim 1, wherein said blocking/unblocking device comprises: a blocking member configured to move from a blocking position of said second elongated portion in which blocking member impedes said second elongated portion to freely slide with respect to said first elongated portion, and an unblocking position in which blocking member allows said second elongated portion to freely slide with respect to said first elongated portion; an actuation member configured to actuate said blocking member to move from said blocking position a said unblocking position, said actuation member being operatively connected to said blocking member and to said control member.
3. The telescopic manoeuvring rod according to claim 2, wherein said blocking member is a clamping cable that is wound about said second elongated portion, in such a way to form at least a turn of coil, and wherein said actuation member is configured to move between an actuation position, in which is arranged to generate a predetermined tensile force on said clamping cable and, therefore, to tighten said second elongated portion of said manoeuvring rod at said, or each, turn of coil, thus impeding said free sliding, and a release position, in which said clamping cable is not subjected to said predetermined tensile force and, therefore, said, or each, turn of coil is slack about said second elongated portion and allows said free sliding.
4. The telescopic manoeuvring rod according to claim 2, wherein said blocking member provides at least an annular element positioned about said second elongated portion, said actuation member configured to cause said, or each, annular element to move between said unblocking position in which is arranged substantially coaxial to said second elongated portion, and, therefore, allows said free sliding, and said blocking position, in which said, or each, annular element is positioned oblique with respect to said second elongated portion and, therefore, impedes said free sliding.
5. The telescopic manoeuvring rod according to claim 4, wherein said actuation member provides a first and a second actuation tooth arranged at opposite sides of said, or each, annular element, said actuation teeth configured to cause said, or each annular element to move from said blocking position, to said unblocking position, or vice versa.
6. The telescopic manoeuvring rod according to claim 4, wherein said abutment surface is configured in such a way to cause said, or each, annular element to position in said oblique position at said blocking position.
7. The telescopic manoeuvring rod, according to claim 2, wherein said actuation member is configured to rotate in a first direction of rotation in order to move from said actuation position to said release position, and in a second direction of rotation opposite to the first, in order to move from said release position to said actuation position.
8. The telescopic manoeuvring rod, according to claim 2, wherein said actuation member is configured to translate in a first direction in order to move from said actuation position to said release position, and in a second direction opposite to the first, in order to move from said release position to said actuation position, and wherein a first and a second abutment surface are provided arranged at opposite sides of said, or each, turn of coil, said first and said second abutment surface configured in such a way that, when said actuation member is moved in said actuation position, said, or each, turn of coil is forced to move in an oblique position about said second elongated portion firmly tighten the same, and impeding said second elongated portion to freely slide with respect to said first elongated portion.
9. The telescopic manoeuvring rod, according to claim 2, wherein said control member is configured to translate along a first, or a second direction, opposite to the first, or to rotate in a first direction of rotation, or in a second direction of rotation, opposite to the first, or to make a first series of movements comprising at least a rotation and at least a translation, or a second series of movements comprising at least a rotation and at least a translation, in order to cause said actuation member to move from said actuation position to said release position, or vice versa.
10. The telescopic manoeuvring rod, according to claim 2, wherein said actuation member is an actuation bar having a control portion operatively connected to said control member, and an actuation portion operatively connected to said clamping cable.
11. The telescopic manoeuvring rod, according to claim 2, wherein said first elongated portion provides a first longitudinal cavity in which, in use, said second elongated portion is telescopically engaged to said first elongated portion, and a second longitudinal cavity eccentrically arranged with respect to said first longitudinal cavity and arranged to house, in use, said actuation member.
12. The telescopic manoeuvring rod according to claim 11, wherein said actuation portion is configured to protrude by a predetermined length from said second longitudinal cavity of said first elongated portion.
13. The telescopic manoeuvring rod according to claim 11, wherein a protective bushing is, furthermore, provided configured to cover, in use, said actuation portion and said, or each, turn of coil of said clamping cable, said protective bushing providing an abutment surface configured to axially housed said, or each, turn of coil.
14. The telescopic manoeuvring rod, according to claim 11, wherein an anti-rotational member is, furthermore, provided arranged to impede said second elongated portion to rotate with respect to said first portion, said anti-rotational member being an element protruding from the external surface of said second elongated portion at the end and positioned, in use, at a groove provided between said first and said second longitudinal cavity.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0016] The invention will now be shown with the following description of its exemplary embodiments, exemplifying but not !imitative, with reference to the attached drawings in which:
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DESCRIZIONE DETTAGLIATA DI ALCUNE FORME REALIZZATIVE
[0027] As diagrammatically shown in
[0028] According to the present invention, a control member 55 is furthermore provided configured to be hand-operated by a user in such a way to cause the blocking/unblocking device 30 to move from the above mentioned blocking configuration to the above mentioned unblocking configuration, or vice versa. More precisely, the control member 55 can be configured to rotate in a first and in a second opposite directions of rotation, or alternatively to translate in a first, or in a second opposite directions, or to make a first series of movements comprising at least a rotation and at least a translation, and at least a second series of movements also these comprising at least a rotation and at least a translation.
[0029] In particular, as shown in the
[0030] As shown in the
[0031] More precisely, the blocking member 35 is configured to move from a blocking position of the second elongated portion 20, in which the blocking member impedes the second portion to freely slide with respect to the first elongated portion 10, and an unblocking position in which, instead, the blocking member does not impede the second portion to freely slide. In particular, an actuation member 40 is provided, for example an actuation bar, that is operatively connected to the control member 55 and to the blocking member 35, for example at a control portion 41, and at an actuation portion 42, respectively. The actuation member 40 is, advantageously, configured to actuate the above disclosed movement of the blocking member 35 from the blocking position to the unblocking position, and vice versa.
[0032] In particular, as illustrated in the exemplary embodiments of
[0033] The above disclosed technical characteristic of the present invention, therefore, allows, on the one hand, to assure that the second elongated portion 20 is firmly engaged to the first portion 10 in the working configurations of the manoeuvring rod 1, i.e. once the desired total length is set, on the other hand, to easily and quickly unblock the device, which firmly engages the two portions 10 and 20 of the manoeuvring rod 1 in order to adjust its length as desired. More in detail, the control member 55 is configured in such a way that, when the user manually acts on it, he can actuate it in such for causing the actuation member 40 to move from the actuation position to the release position, or vice versa.
[0034] In an exemplary is configured in such a way to move from the actuation position to the release position, or vice versa, through a rotation. In this case, see
[0035] In an exemplary embodiment of the invention alternative to the previous one and diagrammatically shown in the figures from 5 to 6B, the actuation member 40 is configured in such a way to move from an actuation position to the release position through a translation in a first direction 141, and from the release position to the actuation position through a translation in a second direction 142, opposite to the first. In particular, the clamping cable 35 has a predetermined fixed length such that it is lightly slack about the second elongated portion 20, leaving, therefore, the latter in the unblocking position, completely free to slide (
[0036] It is also to be noted that the blocking action that is shown in
[0037] With reference to the exemplary embodiments shown in the
[0038] Obviously, in all the embodiments, in order to obtain the return of sliding portion, without laying on the ground the end holding the tool, it will be sufficient to steer the telescopic manoeuvring rod 1 upward because in the unblocking position is the weight of the sliding portion to cause its return.
[0039] According to the invention, depending on the constructive solution that is adopted, both the above disclosed rotation and the above disclosed translation of the actuation member 40 can be caused by the user by acting accordingly on the control member 55. For example, again depending on the constructive solution that is adopted, the user can actuate the control member 55 in order to cause it to translate, in particular to translate longitudinally to the first portion 10 (
[0040] As shown in the embodiment of
[0041] In particular, the actuation bar 40 is mounted within the second longitudinal cavity 12 in such a way to be able to rotate about the rotation axis 140, in a first direction of rotation, or in a second direction of rotation, opposite to the first, when the user manually actuates the control member 55 in one of the manner above disclosed. More in particular, the rotation of the actuation bar 40 in the first direction of rotation produces a tensile force on the clamping cable 35 and, therefore, causes the second elongated portion 20 of the manoeuvring rod to be tightened by the cable, and, therefore, to block the second elongated portion in a determined position with respect to the first portion 10. Instead, when the user acts on the control member 55 in one of the manner above described, in order to cause the actuation bar 40 to rotate in the second direction of rotation, opposite to the first, the cable 35 is not subjected to the above disclosed tensile force and, therefore, the second elongated portion 20 of manoeuvring rod 1 is substantially disengaged thus resulting to be free to slide with respect to the first portion 10.
[0042] As diagrammatically shown in
[0043] As shown in detail in the
[0044] As shown in the embodiment of
[0045] It is appropriate to specify that, even though not shown in the figures from 1 to 8, the manoeuvring rod 1, according to the invention, depending on the tool 50 of which is provided with, can be equipped with members of electrical and/or mechanical transmission, or of other kind, necessary to move the tool 50. In particular, the manoeuvring rod 1 can contain within itself at least an extensible, preferably spiral, electric cable, arranged to transmit, starting from the handle portion 15, the electric power that is necessary to supply the tool 50 and to actuate the same. Likewise, if the tool 50 is of pneumatic type, the manoeuvring rod 1 can contain within itself an extensible, preferably spiral, tube arranged to transport, starting from the handle portion 15, the compressed air necessary to supply and actuate the tool 50.
[0046] The foregoing description exemplary embodiments of the invention will so fully reveal the invention according to the conceptual point of view, so that others, by applying current knowledge, will be able to modify and/or adapt for various applications such embodiment without further research and without parting from the invention, and, accordingly, it is therefore to be understood that such adaptations and modifications will have to be considered as equivalent to the specific embodiments. The means and the materials to realize the different functions described herein could have a different nature without, for this reason, departing from the field of the invention. It is to be understood that the phraseology or terminology that is employed herein is for the purpose of description and not of limitation.