The invention relates to a boom for a working machine, in particular a concrete distributing boom for guiding a concrete delivery line, comprising a plurality of boom arms, which are movable into a working position and which are composed at least partially, as a box construction, of a plurality of side walls delimiting a cavity region, and further comprising a sealing partition arrangement for sealing a cross section of the cavity region. The invention further relates to a method for producing such a boom.
On boom arms of concrete distributing booms, the respective pivot drive is connected in the articulation region. On the other hand, the arms must be interconnected. Both the one and the other require, in some cases, the opening of the box section support. In order to prevent water from penetrating into the cavity region of the arm, the openings are in practice closed off again with welded-in sealing partitions. In this construction, the regions to be sealed must be sufficiently accessible that the necessary weld seams can be made. Moreover, such weld seams can lead to undesirable notch effect in the components.
Based on the above, this disclosure further improves the boom arms and boom production methods known in the prior art and provides, even in poorly accessible regions, a sealing which is simple and reliable from a production engineering aspect, and thus optimizes the boom design.
This disclosure is based on the notion of using, instead of an integrally bonded sealing by weld seams, a sealing profile. Accordingly, it is proposed according to this disclosure that the sealing partition arrangement has a partition wall, which is provided on its peripheral side with an at least partially, and preferably fully circumferential sealing groove, and that in the sealing groove is arranged an elastic seal, which bears in a sealtight manner against the inside of the adjacent side walls. By means of such a profiled seal extending in a groove-shaped seat, regions can also be sealed in which no welding can be carried out due to lack of space and/or because of the notching effect. The arm profile can thus be of more filigree design and does not for accessibility reasons have to be built larger, and thus heavier, than is actually necessary. Moreover, through the avoidance of adverse notch effect, the arm constructions, in which thicker plates or doublers were hitherto necessary, can be built lighter.
One advantageous embodiment provides that the seal is formed by a formless sealing compound, which has been introduced into the sealing groove and preferably consists of a polyurethane sealant. In this way, the seal is not damaged during welding works in the prefabrication, and a precise contour matching, with the compensation of tolerances, is enabled.
In order to integrate such a seal in a simple manner from a production engineering aspect, it is of advantage to provide a feed channel for the introduction of sealing compound into the sealing groove, which feed channel extends in a side wall, formed preferably by a chord, or in the partition wall.
Advantageously, the partition wall positioned in the cross section to be sealed is pre-fixed to at least one side wall, in a desired position, by an integrally bonded, positive or non-positive connection.
It is also favorable if the junction between the partition wall and a side wall (preferably a web) of the box section is arranged centrally in the side wall in the region of the neutral axis.
Advantageously, the partition wall is formed as an, in particular, quadrangular metal plate matched to the cross-sectional contour to be sealed. The use of plastics moldings as the partition wall is also conceivable.
In order to realize a circumferential groove in a simple manner, it is possible for the partition wall to be of multilayered construction, wherein the lateral outer layers form the groove flanks of the sealing groove.
From a production engineering aspect, it is of advantage if the box section is formed of two mutually opposing webs, and two chords resting externally on the longitudinal edges of the webs. In such a design, hitherto welded-in partitions are provided in the articulation region, which partitions can be replaced in a notch-free manner by the solution according to this disclosure.
A particularly advantageous use is obtained by virtue of the fact that the sealing partition arrangement seals a hinge joint on the end portion of a boom arm against ingress of corrosive media.
The subject of this disclosure is a method for producing a boom for a working machine, in particular a concrete distributing boom for guiding a concrete delivery line, in which a plurality of boom arms are preferably articulately connected to one another, wherein the boom arms are composed at least partially, as a box section, of a plurality of side walls delimiting a cavity region, and in which a sealing partition arrangement is inserted into a cross section of the cavity region. In this context, it is proposed that a partition wall is provided on its peripheral side with an at least partially circumferential sealing groove, and that in the sealing groove is arranged a seal, which bears in a sealtight manner against the inside of the adjacent side walls. In terms of the method, the above described effects advantages of the analogous device features are achieved in the same way.
A preferred measure provides that the partition wall is pre-fixed in the cross section to be sealed, by welding or tacking, clamping, screwing, stops or grooves. Furthermore, it is advantageous if a formless sealing compound is introduced into the sealing groove and is cured therein with the formation of the seal. In this context, it is also favorable if the sealing groove is filled with a sealing compound via a feed channel in a side wall or in the partition wall, which feed channel is accessible from outside the boom arm.
The above-mentioned aspects of exemplary embodiments will become more apparent and will be better understood by reference to the following description of the embodiments taken in conjunction with the accompanying drawings, wherein:
The embodiments described below are not intended to be exhaustive or to limit the invention to the precise forms disclosed in the following detailed description. Rather, the embodiments are chosen and described so that others skilled in the art may appreciate and understand the principles and practices of this disclosure.
The truck-mounted concrete pump 10 shown in
As a result of the inward displacement of the pressure rods 30 into the U-shaped clearance, the concrete delivery line 22 can be guided relatively closely past the boom arm 16′ and the arm profile can be kept narrower in total, so that the two boom arms 16, 16′ can be guided or deposited side by side at a short distance apart.
In order to prevent the penetration of corrosive media, in particular water, into the cavity region 34, a sealing partition arrangement 38, comprising two partition walls or partition plates 40, is provided, as this is described in greater detail further below.
As can be seen also from
At the forked end of the boom arm 16′, the double-webbed members 46, in the region of the hinge joint 18, are recessed on their chords 42, so that the web extensions of the other boom arm 16 can engage there. The recessed regions are shielded inwardly in the direction of the second hinge joint 36 by the rectangular-flat partition walls 40, which, on their peripheral sides (periphery) or outer edges, are provided with a circumferential (peripheral) elastic seal 48.
In the production of a boom arm 16, in the course of the welding together of the chords 42 and webs 44, the partition wall 40 pre-fixes a further seal 48 in the cross section to be sealed. This can be realized by spot welding, wherein the weld 52 should preferably lie in the central region close to the neutral axis of the relevant side wall (for example web 44).
Furthermore, the seal 48 is formed by a formless sealing compound, which has been introduced into the sealing groove 50 and may be curable polyurethane sealant. For this purpose, in a side wall (here shown: web 44), a bore 54 is provided as a feed channel for the sealing compound. After the crosslinking, the polyurethane sealant forms a permanently elastic seal 48, which reliably seals the gap between partition wall 40 and side walls 42, 44.
In summary, the following can be stated: This disclosure relates to a boom for a working machine, in particular a concrete distributing boom 14 for guiding a concrete delivery line 22, comprising a plurality of boom arms 16, which are movable into a working position and which are composed at least partially, as a box construction, of a plurality of side walls 42, 44 delimiting a cavity region 34, and further comprising a sealing partition arrangement 38 for sealing a cross section of the cavity region 34, wherein the sealing partition arrangement 38 has a partition wall 40 peripherally provided with an at least partially circumferential sealing groove 50, and that in the sealing groove 50 is arranged an elastic seal 48, which on the inside bears in a sealtight manner against the adjacent side walls 42, 44.
While exemplary embodiments have been disclosed hereinabove, the present invention is not limited to the disclosed embodiments. Instead, this application is intended to cover any variations, uses, or adaptations of this disclosure using its general principles. Further, this application is intended to cover such departures from the present disclosure as come within known or customary practice in the art to which this invention pertains and which fall within the limits of the appended claims.
Number | Date | Country | Kind |
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10 2014 224 462.5 | Nov 2014 | DE | national |
This application is a continuation of PCT/EP2015/077764, filed Nov. 26, 2015, which claims priority to DE 10 2014 224 462.5, filed Nov. 28, 2014, both of which are hereby incorporated herein by reference in their entireties.
Number | Date | Country | |
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Parent | PCT/EP2015/077764 | Nov 2015 | US |
Child | 15605726 | US |