EXCAVATOR ARM
20200392694 ยท 2020-12-17
Inventors
Cpc classification
E02F3/30
FIXED CONSTRUCTIONS
E02F3/38
FIXED CONSTRUCTIONS
International classification
Abstract
An excavator arm for an excavator as a link between excavator boom and attachment, wherein the excavator arm substantially is formed by a box-like sheet metal construction, and wherein at least one bearing plate is applied onto an end plate of the sheet metal construction.
Claims
1. An excavator arm for an excavator as a link between excavator boom and tool, wherein the excavator arm is formed by a box sheet metal construction, wherein at least one bearing plate is mounted on an outside of an end plate of the box sheet metal construction by forming a boom bearing for connecting the excavator arm to an excavator boom.
2. The excavator arm according to claim 1, wherein there is provided a bearing plate which includes bearing reinforcements.
3. The excavator arm according to claim 1, wherein two symmetrical bearing plates preferably are aligned parallel to each other, which include bearing reinforcements.
4. The excavator arm according to claim 2, wherein the bearing reinforcements are castings or plates.
5. The excavator arm according to claim 1, wherein the boom bearing is welded to the bearing plates and/or to the end plate via a fillet weld or is bonded to the bearing plates.
6. The excavator arm according to claim 3, wherein the bearing plates are shaped identically.
7. The excavator arm according to claim 4, wherein the casting is covered towards the outside by means of a cover incorporated between the bearing plates, wherein the cover is a sheet-metal part that is connected to the bearing plates and the bent end plate of the box sheet metal construction.
8. The excavator arm according to claim 1, wherein on the outside in a vicinity of the boom bearing at least one reinforcing plate, casting or machined part is applied onto at least one of the bearing plates.
9. The excavator arm according to claim 3, wherein the bearing plates include at least one further bearing for mounting a cylinder.
10. The excavator arm according to claim 6, wherein in a vicinity of the at least one further bearing a reinforcing plate, casting, or machined part is applied onto the inside of at least one bearing plate.
11. A construction machine, in particular excavator, comprising an excavator boom and an attachment which is connected to the boom by means of an excavator arm, wherein the excavator arm substantially is formed by a box sheet metal construction, wherein at least one bearing plate is mounted on an outside of an end plate of the box sheet metal construction by forming a boom bearing for connecting the excavator arm to an excavator boom.
12. The excavator arm according to claim 3, wherein the bearing plates extend onto a planar surface of the formed upper chord of the excavator arm, exhibit a curved course in a direction of a lateral edge of the excavator arm and only end on a lateral extension of the upper chord.
13. The excavator arm according to claim 8, wherein the reinforcing plate is an annular reinforcing plate.
14. The excavator arm of claim 9, wherein the cylinder is at least one bucket and/or excavator arm cylinder.
15. The excavator arm of claim 10, wherein the reinforcing plate is an annular reinforcing plate.
Description
BRIEF DESCRIPTION OF FIGURES
[0018] Further advantages and properties will be explained in detail below with reference to an exemplary embodiment illustrated in the Figures, in which:
[0019]
[0020]
[0021]
[0022]
[0023]
DETAILED DESCRIPTION
[0024]
[0025] The bearing point 10 for mounting the excavator arm on an excavator boom is formed by at least one casting inserted between the bearing plates 2. Bores of the bearing plates 2 form the opening of the bearing point 10. Annular reinforcing plates 1 as shown in
[0026] The incorporated casting is connected to the two bearing plates 2 by means of a fillet weld. Besides the boom bearing, the two bearing plates 2 provide further bearing points, such as the bearing 12 for accommodating the excavator arm cylinder. Another bearing point 11 is provided in the vicinity of the upper chord 13 of the bearing plates 2. The same serves to fasten the cylinder for actuating the attachment, such as a bucket cylinder. The bearing plates 2 also are provided with a plurality of cutouts to save weight.
[0027] The distance of the two bearing plates 2 to each other can be varied flexibly and is not necessarily specified by the width of the boom bearing point 10 or the remaining bearing points 11, 12. This is made possible by the fact that at the bearing point 10 the bearing width of the boom bearing point 10 can be increased by the attachment of the annular reinforcing plates 1, in particular by a suitable choice of the thickness of the reinforcing plates 1. A similar procedure is used for the remaining bearing points 11, 12. As for mounting the corresponding cylinders, a smaller bearing width is required, and corresponding annular reinforcing plates 4 are not arranged on the outside of the bearing plates 2 at the bearing points 11, 12, but instead on their inside. The distance of the bearing plates thereby is reduced and the resulting bearing width is narrowed.
[0028]