The present invention relates to a device for deburring end portions of tubes.
As is known, cut or milled tubes or pipes present, upon cutting or milling, residual machining burrs at their end portions, which residual burrs may cause problems related to an even storing of the tubes; moreover, said residual burrs may injure an operator performing thereon subsequent manual processing or machining operations.
Thus, it is increasingly required to perfectly deburr the end portions of tubes or pipes cut to any desired length and facilitate further processing operations, to be performed after having cut the tubes, such as collection or measurement and bending operations, thereby preventing said residual burrs from hindering them.
Prior deburring machines performing said deburring operations by manually pressing the workpiece to be deburred against a static drum brush and then by manually rotatively driving the thus pressed workpiece.
In other prior deburring devices, the tube to be brushed is manually pressed by an operator, to provide a satisfactory brushing or deburring of said tube, against a rotary drum brush. Such a manual intervention is also necessary in other prior deburring machines, for example those including two counter-rotating brushes designed for brushing the two end portions of the tube.
In addition to requiring the presence of an operator, all the above prior deburring machines have the further drawback that their deburring brushes wear in a very uneven manner, depending on the diameter of the tube workpiece to be deburred.
Accordingly, the aim of the present invention is to provide a novel and improved device for automatically deburring or brushing end portions of tubes or pipes, which overcomes the above mentioned drawbacks of the prior art.
The above aim is achieved by a device for deburring end portions of tubes, arranged in a horizontal plane, said device including a support body rotatively driven about a pivot axis, said support body supporting pairs of drum brushes in turn rotatively driven about a drum brush pivot axis (X), perpendicular to the pivot axis (X) of said support body, said support body and drum brushes being controllably translated in a plane coinciding with an end portion of a tube to be deburred.
Further advantages of the invention will become more apparent from the following disclosure, accompanying drawings and dependent claims.
The subject matter according to the present invention will be disclosed in a more detailed manner hereinafter, with reference to the accompanying drawings, where:
As shown in
Said deburring device 3 comprises a support body 4 rotatively driven (arrow f) about a horizontal pivot axis X perpendicular to the drawing sheet plane.
At both sides of the rotary supporting body 4 are arranged a pair of drum brushes 5 and 5′, supported by a supporting shaft 6 rotatively driving said drum brushes 5 and 5′ in the direction shown by the arrows (i).
A further shaft 8 supports, at end portions thereof, another pair of rotary brushes 7, 7′.
In particular, the rotatively driven support body 4 supports drum brushes 7, 7′ having a pivot axis parallel to the shaft or axis 6, and adapted to be rotatively driven in the direction of the arrows (m).
The thus designed brushing or deburring device 3 can be generally driven parallel to the drawing sheet, to respectively move toward/away from the tube 1, as shown in
In particular, upon a continued raising movement (arrow K), as shown in
Thus, due to the raising movement K of the supporting body 4 and also due to said rotary movement (f) of said supporting body 4 about its pivot axis X, the brushing trajectory or direction of the rotary drum brushes 5, 5′, 7, 7′ with respect to the end portion of the tube 1 will be continuously changed thereby providing an improved deburring or brushing effect on the end portion of the tube 1.
Moreover, said brushes 5, 5′ and 7. 7′ will wear in a gradual and even manner, thereby preventing any deformations of said brushes.
Advantageously, the movements K, e and f being performed with a rate which can be easily adjusted depending on the shape and material of the tube 1.
Number | Date | Country | Kind |
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MI2007A-000939 | May 2007 | IT | national |