HIGH-SPEED GANTRY SYSTEM HAVING A LINEAR DRIVE
20180207792 · 2018-07-26
Inventors
Cpc classification
Y10S901/16
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
B25J9/0012
PERFORMING OPERATIONS; TRANSPORTING
International classification
B25J9/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A cross carriage for a gantry system for moving workpieces, loads and the like, formed of several construction plates arranged in adjacent parallel planes. Longitudinally and/or transversely extending hollow profiled elements are arranged between at least two of the construction plates and several or all of the construction plates and/or hollow profiled elements are predominantly formed of a plastic material, preferably a carbon fiber-reinforced plastic material.
Claims
1. A cross carriage for a gantry system for moving workpieces, loads and the like, of the cross carriage comprising a. a plurality of construction plates arranged in adjacent parallel planes, wherein b. longitudinally and/or transversely extending hollow profiled elements are arranged between at least two of the construction plates and c. wherein at least one of the construction plates and/or hollow profiled elements are predominantly formed of a plastic material, preferably a carbon fiber-reinforced material.
2. The cross carriage according to claim 1, wherein the construction plates consist almost entirely of a plastic material, preferably a fiber-reinforced plastic material.
3. The cross carriage according to claim 1, wherein two or more of the construction plates arranged in parallel planes are mechanically connected to one another using of spacer sleeves.
4. The cross carriage according to claim 3, wherein the spacer sleeves are designed for connecting construction plates arranged in parallel planes to plate holding means or spacer means.
5. The cross carriage according to claim 1, wherein at least two of the construction plates arranged in each case in parallel planes have an approximately identical length L in a direction of a first, preferably horizontal movement axis of the gantry system and moreover preferably an approximately identical height H in a direction of a second vertical movement axis of the gantry system.
6. The cross carriage according to claim 1, wherein one or more protruding shock absorbers are arranged along vertically and/or horizontally extending front sides of the construction plates.
7. The cross carriage according to claim 1, wherein the cross carriage furthermore comprises a vertically oriented adapter plate attached substantially over a height of the cross carriage, for mounting a linear drive in a direction of a preferably vertical movement axis of the gantry system.
8. The cross carriage according to claim 1, wherein the cross carriage furthermore comprises an adapter plate attached horizontally substantially over a length of the cross carriage, for mounting a linear drive in a direction of a preferably horizontal movement axis of the gantry system.
9. The cross carriage according to claim 1, wherein the cross carriage is formed with an active cooling device.
10. The cross carriage according to claim 1, wherein one or more air supply channels are provided for cooling of linear drives mounted on the cross carriage, the supply channels comprising, on a first channel end, at least one air injection opening which is oriented in or opposite the horizontal direction of the cross carriage and of which a second channel end is directed towards a position on the cross carriage that is designed as intended for mounting a linear drive part.
11. The gantry system with the cross carriage according to claim 1, comprising a column system on which a longitudinal profiled guide element is fastened, which forms a horizontal movement axis along which the cross carriage can be moved back and forth.
12. The gantry system according to claim 11, wherein the gantry system is designed for moving the cross carriage by means of at least one linear drive, for each movement direction.
Description
DRAWINGS
[0027]
[0028]
[0029]
[0030]
[0031]
[0032]
[0033]
[0034]
DESCRIPTION
[0035] Below, the disclosure is explained in further detail in reference to
[0036] In
[0037] On a vertically extending profile wall of the profiled guide element 53, the connection 53.2 for the column 51.1 is shown. Furthermore, steps 53.3 (respectively at the top and at the bottom) are provided at the connection 53.2 of the profiled guide element 53. Respectively on the upper and the lower side of the profiled guide element, milled grooves 53.1 are located, for guiding the cross carriage 1 to be described later. On the front side of the profiled guide element 53 opposite the connection 53.2, a milled groove 53.4 for a secondary portion of the linear motor 43 mounted along the x axis of the gantry system 50, is located.
[0038] Furthermore, one can see in
[0039] Furthermore, as an example, in
[0040] In
[0041] The construction plates 10, 11, 12 form in each case front side edges 10.1, 11.1, 12.1 on the outer periphery of the cross carriage 1, which are partially closed with a side wall 4.
[0042] The front external construction plate 10 shown in
[0043] In each case hollow profiled elements 30, 31 extending longitudinally and transversely in the interstices are arranged between the construction plates 10 and 11 and between the construction plates 11 and 12. To make the hollow profiled elements 30, 31 visible, the cross carriage 1 is shown in a partially transparent representation in
[0044] As can also be seen in
[0045] The spacer sleeves 32, 33 or bushings are used for fixing the position of the construction plates 10, 11, 12 in the parallel planes by means of the plate holding means 32.1 which are here formed as grooves and steps or supports and collars, as also shown diagrammatically in
[0046] Furthermore, adapter sleeves 34 for fastening add-on parts to the cross carriage 1 are provided.
[0047] In the present embodiment example, the rear construction plate 12 in
[0048] Another aspect of the present disclosure concerns, in addition to the passive cooling by the adapter plates 40, an active cooling with a cooling device 14.
[0049] In the present embodiment, the cooling device 14 is formed by air supply channels 14.1, 14.2 which are arranged on respective opposite outer sides of the cross carriage 1 and are associated with the respective direct drive 43 arranged there. For each channel 14.1 and 14.2, an air inlet opening 14.3 is provided. The air inlet opening 14.3 is provided by an air connector 14.5. In the present embodiment, in each case two air supply channels 14.1 and 14.2 are connected to a common air connector 14.5, wherein the air connector in each case comprises a left-side and a right-side air inlet opening 14.3 and thus acts like a Y distributor. For each air inlet opening 14.3, an air stream is guided towards the open channel end 14.4 in each case via the associated air supply channel 14.1 or 14.2. The open channel end 14.4 is oriented in a position on the cross carriage 1 in the direction of the linear drive 43 provided there.
[0050] As one can also see clearly in
[0051]
[0052] In the x direction, in each case on the left and on the right of the front side edges of the cross carriage 1, three shock absorbers 13 are arranged, while in the z direction in each case a upward and downward oriented shock absorber 13 is provided. As can also be seen, behind the fastening points 13.3 of the shock absorber 13, in each case horizontally arranged hollow profiled elements 30 are located, which, together with the construction plates 10, 11, 12, determine the strength and stiffness of the cross carriage 1.
[0053] In
[0054] In
[0055] The plastic bushing 32.2 comprises a lower abutment 32.1, against which the lower construction plate 12 can be braced. The central construction plate 11 engages in groove-shaped recesses 32.1 of the surrounding plastic bushing 32.2. The plastic bushing 32.2 can advantageously be designed as a bushing with anti-rotation means 32.3. As anti-rotation means 32.3, a hexagonal design is provided here, which engages in corresponding recesses in at least one construction plate 10, 11, 12.
[0056] The disclosure, in terms of its design, is not limited to the above-indicated preferred embodiment examples. Instead, a number of variants are conceivable, which make use of the represented solution, even in designs of fundamentally different type.