The present application claims the priority benefits of German Application No. 10 2020 131 218.0, filed on Nov. 25, 2020.
The invention relates to a telescoping jib system of a mobile crane having a basic telescoping jib and an additional telescoping jib which can be retracted and extended via a telescoping cylinder with a securing and locking unit. The invention also relates to a method for lengthening a basic telescoping jib of a mobile crane by means of an additional telescoping jib to form a telescoping jib system.
In general, the total weight of a mobile crane having a telescoping jib which is authorized for traveling on public roads is determined by the permissible axle load, which is, for example, 12 t in Germany, and the number of axles. It results therefrom that parts of the mobile crane, such as e.g. a counterweight, a telescoping jib and a main jib extension, are often transported separately from the mobile crane which can travel on roads, in order to remain within the permissible axle loads. The length of the telescoping jib which typically consists of bending-resistant sheet metal boxes also contributes to the total permissible weight of the mobile crane.
A telescoping jib of a mobile crane is already known from the German utility model DE 20 2008 016 604 U1. The telescoping jib consists of a basic box in which a plurality of inner boxes are guided such that they can be retracted and extended in a coaxial manner. A further inner box can be inserted into the receiving innermost inner box in order to lengthen the telescoping jib. The further inner box is typically provided with locking bolts on its rear end. In order to facilitate the lengthening of the telescoping jib, the receiving inner box is provided with opposing bolting brackets, open at the front, on its head and inner sides. The locking bolts of the further inner box are introduced into these bolting brackets in order to position the receiving inner box and the further inner box with respect to each other. Then, a complete securing and locking unit of the telescoping jib is retracted into the further inner box, coupled to the further inner box via driving bolts, the locking bolts of the further inner box are unlocked from the bolting brackets by means of the securing and locking unit and then the further inner box is retracted into the receiving inner box and coupled at that location at a desired locking position.
A further telescoping jib of a mobile crane is also described in German patent document DE 10 2007 052 954 B3, the extension length of which can be doubled by inserting an additional telescoping jib. Typically, this telescoping jib comprises a telescoping system, wherein a first inner and a second outer securing and locking unit, which are both complete, are arranged on the extendible and retractable parts of the telescoping system. The outer securing and locking unit supports a guide profile head which, in conjunction with the insertion of the additional telescoping jib, is spaced apart from the outer securing and locking unit via a guide frame which can be installed therebetween.
Furthermore, German patent document DE 10 2013 011 173 B4 discloses a further method for assembling a mobile crane with a telescoping jib which comprises a linking section in which a telescoping cylinder and at least one retractable and extendible telescoping section are mounted. A telescoping section assembly can be transported separately from the linking section and only assembled at the place of usage. For this assembly, the telescoping section assembly is brought to an assembly position by means of an auxiliary crane, the telescoping section assembly protruding slightly into the linking section in the assembly position. Then, an auxiliary assembly head arranged on the telescoping cylinder moves into the linking section where it is detached via driving bolts with the telescoping section assembly and the locking bolts on the telescoping section assembly. Then, the telescoping section assembly is slowly retracted by the auxiliary assembly head. The auxiliary assembly head thus represents a fully-fledged securing and locking unit.
Furthermore, there is known from German laid-open document DE 10 2008 062 648 A1 a further telescopic crane jib having a basic jib which has a collar at the upper end. The basic jib consists of an outer telescoping section and at least one inner telescopic telescoping section. Connecting points are arranged on the collar in order to bolt-on either a roller head or a telescoping guide of a telescoping extension.
The present invention provides an improved telescoping jib system of a mobile crane and a method for lengthening a basic telescoping jib of a mobile crane by means of an additional telescoping jib to form a telescoping jib system.
In accordance with an aspect of the present invention, in the case of a telescoping jib system of a mobile crane having a basic telescoping jib and an additional telescoping jib that can be retracted and extended via a telescoping cylinder with a securing and locking unit, an improvement is achieved by virtue of the fact that a securing unit is arranged on a tip of the telescoping cylinder, the securing unit comprises exclusively at least one driving bolt, via which an additional telescoping jib separate from the basic telescoping jib can be retracted into the basic telescoping jib. In this way, simple and secure rigging in terms of lengthening basic telescoping jibs with additional telescoping jibs is achieved. After rigging, the provided telescoping cylinder can be operated as a quite normal full-stroke telescoping cylinder for inserting and pushing out the inner boxes or additional inner boxes. The normal telescoping process is not impaired. The feature “exclusively at least one driving bolt” of the securing unit in accordance with the invention is to be understood in the sense that only at least one driving bolt is provided in order to connect the securing unit with the additional telescoping jib. The securing unit in accordance with the invention does not comprise a locking unit in order to lock and unlock locking bolts between adjacent telescoping boxes. The locking bolts can be used to connect the telescoping boxes together in a desired extension position. The securing unit in accordance with the invention is thus not a fully-fledged securing and locking unit but has exclusively only the function of the securing unit in relation to the at least one driving bolt. Bolting of the additional telescoping jib is effected manually. This is effected either via a spring bias allocated to the locking bolts or via a latching mechanism in the locking bolts, which can be actuated externally.
In a particular embodiment, provision is made that the basic telescoping jib and the additional telescoping jib can be retracted and extended after rigging via the securing unit via a common telescoping cylinder with a single securing and locking unit. This is achieved via the additional securing unit in accordance with the invention. Therefore, it is not required to arrange a second complete securing and locking unit on the telescoping cylinder. Such a second complete securing and locking unit is on the one hand very expensive and complex and on the other hand the telescoping cylinder is then designed so short that an inner box or the additional inner box is firstly partially pushed out by the first securing and locking unit and then completely pushed out by the second securing and locking unit. As a result, additional bolting holes are needed on the basic box, the inner boxes or the additional inner boxes. The telescoping time is also increased because each box has to be received twice.
From a constructional point of view, provision is made that the securing unit is releasably fastened to the tip of the telescoping cylinder or to the tip of a cylinder housing of the telescoping cylinder. It is hereby possible to attach the securing unit to the telescoping device only as required.
In a particular embodiment, provision is made that the securing unit can be extended forwards out of a head end of the basic telescoping jib to a transfer position by means of the telescoping cylinder. The securing unit can thus be retracted into the additional telescoping jib arranged in its transfer position.
From a constructional point of view, provision is also made that the at least one driving bolt of the securing unit can be coupled to a foot end of the additional telescoping jib for retracting the additional telescoping jib into the basic telescoping jib having a recess.
In accordance with a further aspect of the invention at least one sensor is arranged on the securing unit, via which the alignment of the at least one driving bolt with the recess can be detected.
Provision is further made that the basic telescoping jib consists of one basic box and a plurality of inner boxes and the additional telescoping jib consists of one or more additional inner boxes.
In accordance with a further aspect of the invention, a method for lengthening a basic telescoping jib of a mobile crane by means of an additional telescoping jib to form a telescoping jib system, wherein the basic telescoping jib and the additional telescoping jib are retracted and extended via a telescoping cylinder with a securing and locking unit, becomes simpler and more secure by virtue of the fact that the telescoping cylinder is extended, prior to aligning the additional telescoping jib with the basic telescoping jib, so far that its tip protrudes slightly forwards out of the head end of the basic telescoping jib, in particular of the third inner box, and the securing unit is then fastened to the tip, and the additional telescoping jib is thereby aligned with the basic telescoping jib such that a first additional inner box of the additional telescoping jib extends with its longitudinal direction coaxial to a longitudinal direction of the basic telescoping jib and the foot end of the first additional inner box adjoins a head end of the third inner box or the foot end of the first additional inner box is retracted into the head end of the third inner box, then a securing unit fastened to a tip of the telescoping cylinder is retracted into the first additional inner box so far until at least one sensor arranged on the securing unit confirms—with the securing unit comprising exclusively at least one driving bolt—that a coupling position of at least one driving bolt of the securing unit to a recess of the first additional inner box is reached, then the at least one driving bolt is retracted into the recess in order to couple the securing unit to the additional telescoping jib, then the additional telescoping jib is retracted into the basic telescoping jib by the securing unit, then the additional telescoping jib is bolted in the basic telescoping jib and then the at least one driving bolt is withdrawn from the recess. The securing unit can thus be fastened to the telescoping device only as required.
In conjunction with the present invention, the feature that in the transfer position the foot end of the first additional inner box adjoins a head end of the third inner box or the foot end of the first additional inner box is retracted or inserted into the head end of the third inner box is understood to mean that in the transfer position a distance of 300 mm to −500 mm is produced between the foot end of the first additional inner box and the head end of the third inner box, as seen in the longitudinal direction of the telescoping jib system. The negative sign shows that the additional inner box is retracted or inserted. With reference to the adjoining, a distance of 50 mm to −50 mm which is as small as possible is preferred in terms of a gap. The greater the distance, the more complex the aligning operation has to be. For the retracted or inserted state, a distance in the range of −150 mm to −300 mm is preferred. In this context, it proves to be advantageous that, prior to aligning the additional telescoping jib with the basic telescoping jib, an inner box of the basic telescoping jib is at least partially pushed out by the telescoping device by means of the telescoping cylinder and is locked. It is thus achieved that during rigging the additional telescoping jib can be retracted sufficiently far into the basic telescoping jib for bolting.
The invention will be explained in more detail hereinafter with the aid of an exemplified embodiment illustrated in the drawings.
For reasons of space in
In
The basic box 21, all the inner boxes 22, 23, 24 and all the additional inner boxes 31, 32, 33 are typically formed as box-like hollow profiles made of steel sheet having a rectangular cross-section with rounded corners and have at their respective foot ends locking bolts and recesses for driving bolts of a typical securing and locking unit 6 (see
The telescoping jib system 1 is part of a mobile crane, not illustrated, which can travel on public roads and typically consists of a lower carriage with rubber-tired wheels and a superstructure which can be pivoted thereon about a vertical axis. The basic telescoping jib 2 or the telescoping jib system 1 is then articulated to the superstructure and opposite a counterweight so that it can be luffed about a horizontal axis. This articulation is effected via a foot connection, not illustrated in
Typically, in order to change the length of the telescoping jib system 1, the inner boxes 22, 23, 24 and also the additional inner boxes 31, 32, 33 are linearly retracted and extended individually and successively from the basic box 21 or the next outer inner box 22, 23, 24 or additional inner box 31, 32 by means of a telescoping device, not illustrated for reasons of clarity. The telescoping device consists substantially of a hydraulic telescoping cylinder 4 (see
For reasons of clarity, the telescoping device, the telescoping cylinder, the securing and locking unit 6, the driving bolts and the recesses for the driving bolts are not shown in
In
By means of the securing unit 5, the first additional inner box 31 of the additional telescoping jib 3 can be received and retracted in the receiving third inner box 24 at a bolting point. The securing unit 5 is basically formed like a securing and locking unit known from the prior art, but is limited to the two driving bolts 51 which can be extended laterally and in opposite directions and does not have an actuation mechanism for the locking bolts on the inner boxes 22, 23, 24 and additional inner boxes 31, 32, 33. The driving bolts 51 are linearly displaceable via a common hydraulic cylinder from an unlocking position to a locking position against the force of a spring element. The movement direction of the driving bolts 51 thus extends transversely to the longitudinal direction L of the additional telescoping jib 3 and horizontally in the event that the additional telescoping jib 3 is oriented with its longitudinal direction L horizontally. In
For better understanding of the invention, a rigging process for inserting the additional telescoping jib 3 into the basic telescoping jib 2 to form the telescoping jib system 1 in accordance with the invention will be described hereinafter using
Typically, the additional telescoping jib 3 is transported separately to a place of usage of the mobile crane. The mobile crane can carry the basic telescoping jib 2 or this can also be transported separately therefrom. Depending upon the design of the basic telescoping jib 2, it may be necessary that in a first step of the rigging process the innermost inner box—in the present case a fourth inner box, not illustrated, having a fixedly mounted roller head—has to be removed from the basic telescoping jib 2. It may also be the case that a removed inner box having a roller head is replaced by an inner box open at the front without a roller head. In the present case of the previously described, third inner box 24 open at the front with a head adapter 29 lying on the outside, it may be necessary to detach a roller head connection element from the head adapter 29. In a second step, the third inner box 24 of the basic telescoping jib 2 is then raised to its 45% extension position by the telescoping device and is locked there. In this way, the telescoping cylinder 4 can then be retracted in the subsequent rigging process far enough into the third inner box 24 in order for the first additional inner box 31 to reach the third bolting hole 28 of the third inner box 24 and for the first additional inner box 31 to be locked there. In a third step, the driving bolts 51 of the securing and locking unit 6 are detached from the third inner box 24 and the telescoping cylinder 4 is extended so far that its tip 41 protrudes slightly forwards out of the head end 25 of the third inner box 24. In a fourth step, the additional securing unit 5 in accordance with the invention is now flange-mounted on the tip 41 of the cylinder housing 42 and is hydraulically connected, if it is not yet assembled. In a fifth step, the securing unit 5 is then retracted into the third inner box 24. Then, in a sixth step an auxiliary crane or a trailer or semi-trailer is used to align the additional telescoping jib 3 with the basic telescoping jib 2 such that the first additional inner box 31 extends with its longitudinal direction L coaxial to the longitudinal direction L of the basic telescoping jib 2, and then the first additional inner box 31 is inserted with its foot end 35 into the head end 25 of the third inner box 24. Then, in a seventh step the securing unit 5 is retracted so far into the first additional inner box 31 until the at least one sensor 47 confirms that the coupling position of the driving bolts 51 with the recesses 43 of the first additional inner box 31 is reached. As required, the first additional inner box 31 is aligned by the guide plate 46 in the vertical direction and by the base plate 45 transversely to the longitudinal direction L. Then, in an eighth step the driving bolts 51 are laterally extended and retracted into the recesses 43 in order to couple the securing unit 5 to the additional telescoping jib 3. In a ninth step, the locking bolts of the first additional inner box 31 are brought manually to their unlocking position. A tenth step is used to retract the additional telescoping jib 3 into the third inner box 24 to the third bolting hole 28 of the 100% extension position by means of the securing unit 5 or the telescoping cylinder 4. The first additional inner box 31 is guided with its lower sliding elements in the radii of a front bearing of the third inner box 24. At that location, in the third inner box 24 the additional telescoping jib 3 or the first additional inner box 31 is manually bolted to the third inner box 24. Bolting of the additional telescoping jib is effected manually. This is effected either via a spring bias allocated to the locking bolts or via a latching mechanism in the locking bolts, which can be actuated externally. In an eleventh step, the securing unit 5 is then detached from the first additional inner box 31 by withdrawing the driving bolts 51. The rigging process is thus completed. The additional telescoping jib 3 is disassembled from the basic telescoping jib 2 in the reverse sequence.
In
The above exemplified embodiment is directed to a basic telescoping jib 2 having one basic box 21 and three inner boxes 22, 23, 24 and to an additional telescoping jib 3 having three additional inner boxes 31, 32, 33. Of course, different numbers of inner boxes 22, 23, 24 or additional inner boxes 31, 32, 33 can also be provided. An individual additional inner box 31 is also feasible.
Changes and modifications in the specifically described embodiments can be carried out without departing from the principles of the present invention which is intended to be limited only by the scope of the appended claims, as interpreted according to the principles of patent law including the doctrine of equivalents
Number | Date | Country | Kind |
---|---|---|---|
102020131218.0 | Nov 2020 | DE | national |
Number | Name | Date | Kind |
---|---|---|---|
3945333 | Fritsch | Mar 1976 | A |
10640339 | Martin et al. | May 2020 | B2 |
10640340 | Kuhn et al. | May 2020 | B2 |
10647553 | Martin et al. | May 2020 | B2 |
10781083 | Kuhn et al. | Sep 2020 | B2 |
20210139296 | Heintz | May 2021 | A1 |
Number | Date | Country |
---|---|---|
10164600 | Jul 2003 | DE |
202008016604 | Mar 2009 | DE |
202008016604 | Apr 2009 | DE |
102007052954 | Jul 2009 | DE |
102008062648 | Jan 2010 | DE |
202018100059 | Feb 2018 | DE |
102013011173 | May 2019 | DE |
102020129454 | May 2022 | DE |
102021203701 | Sep 2022 | DE |
2011046496 | Mar 2011 | JP |
WO-2018134249 | Jul 2018 | WO |
Entry |
---|
Co-pending and commonly owned U.S. Appl. No. 17/523,063, filed Nov. 10, 2021. |
Number | Date | Country | |
---|---|---|---|
20220162046 A1 | May 2022 | US |