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A workpiece processing plant comprises several machine tools which are arranged in opposite rows. The rows define a free space between each other. A loading and unloading device is provided which comprises a girder above the machine tools and above the free space. Rails are provided on the upper side of the girder. A loading and unloading unit configured as a multiple-axis robot is displaceable along the rails, the loading and unloading unit comprising several arms which are articulated to one another.
Moshe Israel Meidar - New York NY, US Wolfgang Horn - Goeppingen, DE Gerhard Hommel - Geislingen, DE Markus Gunzenhauser - Boehmenkirch, DE
Assignee:
Ex-Cell-O GmbH - Eislingen/Fils
International Classification:
B23Q 11/08
US Classification:
409134, 409137, 409235, 451451, 74608
Abstract:
A machine tool is provided. The machine tool can comprise a machine frame, at least one tool holder device which is held for movement on the machine frame, a work space in which workpieces are machinable, a work space cladding, at least one workpiece carriage which is displaceable on a path guiding device relative to the machine frame, the path guiding device being arranged alongside the work space, and at least one sliding door for access to the work space. The sliding door particularly can be arranged on the path guiding device of the at least one workpiece carriage.
Wolfgang Horn - Goppingen, DE Moshe Israel Meidar - New York NY, US Waldemar Haus - Winnenden, DE
Assignee:
MAG IAS GmbH - Goppingen
International Classification:
B23Q 1/66 B23Q 7/14
US Classification:
1983462, 41422212
Abstract:
A feed and removal system for a machine tool has a supply device and a removal device for workpieces. Arranged at the front side of the machine tool are loading arms and unloading arms, which are pivotable about vertical pivot axes and, at their free ends, carry workpiece carrying devices.
Moshe Israel Meidar - New York NY, US Wolfgang Horn - Göppingen, DE Bernhard Pause - Mosbach, DE Waldemar Haus - Winnenden, DE Joachim Krischke - Mosbach, DE Heiner Lang - Pforzheim, DE
A machine tool for achieving a high degree of flexibility during workpiece processing comprises a machine bed with side walls arranged thereon, which respectively comprise a basic body with a front overhanging projection arranged thereon. On the side walls a tool spindle is arranged to be linearly movable by means of slides. Underneath the front overhanging projections a processing space is formed for the workpiece processing, in which a workpiece positioning unit is arranged. The processing space underneath the front overhanging projections is freely accessible, whereby depending on the processing task different workpiece positioning units can be arranged therein.
Method For Testing The Fit Or For Testing The Imbalance Of A Tool
Moshe Israel Meidar - New York NY, US Wolfgang Horn - Goeppingen, DE Thomas Bayha - Markgroeningen, DE Ralph Davis - Eislingen, DE
International Classification:
G06F 19/00 B23Q 17/00
US Classification:
700175, 409131, 2940705
Abstract:
A method is provided for testing the fit or for testing the imbalance of a tool exchangeably accommodated in a tool spindle which is mounted for rotation about a central longitudinal axis and is rotationally driven by a spindle drive motor, including: inserting the tool on the tool spindle; making the tool spindle rotate with a specific rotational frequency fabout the central longitudinal axis by means of the spindle drive motor; analyzing an actual value of a controlled drive current of the spindle drive motor with respect to a frequency component with the rotational frequency f; and determining whether the frequency component with the rotational frequency flies within a threshold value range.
Markus Stanik - Albershausen, DE Werner Harscher - Heiningen, DE Moshe Israel Meidar - New York NY, US
International Classification:
B21D 39/03
US Classification:
29428
Abstract:
A method for manufacturing a ball cage of a joint, comprising an inner side, an outer side and windows between the inner side and the outer side, is provided, wherein a blank is clamped on a workpiece fixture of a machine tool, with a clamping area of the blank lying outside of a machining area, and wherein the inner side, the outer side and the windows are machined by the same machine tool without reclamping the workpiece.
Process For Fabricating A Composite Underbody Panel
MAG INDUSTRIAL AUTOMATION SYSTEMS, LLC - Sterling Heights MI
International Classification:
G02B 6/36
US Classification:
385 76
Abstract:
A process for fabricating a fiber composite underbody panel for a vehicle begins by laying-up a first fiber composite sheet on a suitable form or tool. Current carrying wiring that is normally carried by the floor is laid in place on the first sheet, with the ends of the wires extending beyond the edges of the sheet. The wires are shielded to prevent the radiation of fields therefrom into the interior of the vehicle. Fiber optic cable is used to carry signals. A second fiber composite sheet is then laid-up on the first sheet. The two sheets with the embedded wires are placed in a heated mold to form the sheets into the desired finished shape and configuration. The ends of the copper wires and the fiber optic cables are then terminated by connectors so that they may be later coupled to the circuitry of the vehicle.
Machine Tool Device, Machine Tool And Method Of Manufacturing A Machine Tool Device
Moshe Israel Meidar - New York NY, US Wolfgang Horn - Goeppingen, DE Markus Gunzenhauser - Boehmenkirch, DE Mathias Wagner - Ditzingen, DE
International Classification:
B23Q 11/00 B23Q 1/01 B23P 11/00
US Classification:
409137, 408 56, 29 57, 29428
Abstract:
In order to improve a machine tool device, comprising a machine bed with at least one receiving area for receiving chips produced during the machining of a workpiece, and at least one discharging device for discharging the chips from the receiving area, so that it is usable with flexibility, it is proposed that the at least one discharging device comprise at least one conveying device for conveying the chips from the receiving area and/or at least one flushing device for flushing the chips out of the receiving area and/or at least one suction device for evacuating the chips from the receiving area by suction, and that the machine bed comprise at least one first machine bed section for the arrangement of the conveying device, at least one second machine bed section for the arrangement of the flushing device and at least one third machine bed section for the arrangement of the suction device, so that the machine bed is adapted for selective equipment with the conveying device and/or the flushing device and/or the suction device.
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