1. Field of the Invention
The present invention relates to a device for the attachment of a scale element, such as a scale or a scale support or a scale guide device, of a linear measuring system to an attachment face of a first body. It further relates to an associated scale element, such as a scale or scale support or scale guide device, of a linear measuring system, to a protective tape for a scale or a scale support or a scale guide device of a linear measuring system, and to a method for the attachment of a scale element, such as a scale or a scale support or a scale guide device, of a linear measuring system to an attachment face of a first body.
2. Discussion of Related Art
Such scales can be attached to machine tools or coordinate-measuring machines. The machines have at least two elements, which can be moved with respect to each other. The scale is affixed to one of the two elements and is then used, together with a scanning head located at the other of the two elements, for measuring the relative movement of the two elements.
Often, very long scales are needed for such position measurements at machine tools or coordinate-measuring machines. The scales must be fastened, aligned parallel with the measuring direction, wherein the measuring direction is predetermined by the guide devices of the machine tool or measuring machine.
Various steps have already been proposed for the attachment of scales.
In accordance with EP 0 388 453 131, a self-adhesive tape scale is glued on by an adjustment device and is aligned in the direction of the guide sequence of a carriage of a machine tool or measuring machine. This type of fastening offers a good allocation of the tape scale to the scanning head, but can only be employed for highly elastic scales in tape form. The adjustment device is always attached to the carriage in place of the scanning head, so that the scanning head must be removed for aligning the tape scale, the adjustment device must be attached, then removed again after alignment, and the scanning head must be attached again. As a whole, this is very cumbersome.
It is alternatively possible, such as described in DE 197 00 367 A1, to provide lateral contact elements for aligning a scale, against which the measuring tape is placed.
An also widely used fastening method for thin scales consists in introducing the scale into a groove of a scale support. This is described on pages 58 and 59 of the company publication “NC Längenmeβsysteme” [NC Linear Measuring Systems] of the firm Dr. Johannes Heidenhain GmbH of September 1998. In this case, scale supports made of extruded aluminum are affixed to a fastening surface with an adhesive tape with glue on both sides, and thereafter a scale is pushed into the receiving groove of the profile. Here, too, the problem of aligning the scale support exactly parallel with the measuring direction also exists.
Alternatively there is the option of initially attaching a scale guide device aligned with the installation face, on which it is then possible in turn to align the scale itself.
Adjusting devices are always provided in connection with the attachment methods for scales, scale guide devices and scale supports so far known, which are attached for this purpose to the machine tool or coordinate-measuring machine, and then must be removed again from the machine after the scale or the scale support have been attached.
An object of the present invention is based on providing a less cumbersome device, by which scale elements, such as scales, scale supports or scale guide devices, can be aligned in a simple manner during their attachment to a machine tool or a coordinate-measuring machine.
This object is attained on the one hand by a device for the directional attachment of a scale element of a linear position measuring system to an installation face of a first body. The device includes a first body, a second body comprising a scanning head, which is movable in a measuring direction in relation to said first body, and a scale element is aligned parallel with respect to the measuring direction and a profiled alignment device is provided on the second body, which works together with a complementary tape profile on the scale element for aligning the scale element.
With this device for the directional attachment of a scale element, such as a scale or a scale support or a scale guide device, of a linear position measuring system to an installation face of a first body, wherein a second body, which is movable in a measuring direction in relation to the first body is provided, and wherein the scale or the scale support or the scale guide device can be aligned parallel with this measuring direction, wherein the second body has a scanning head, a profiled alignment device is provided on the second body which, for the alignment of the scale or the scale support or the scale guide device, works together with a complementary tape profile on the scale or the scale support or the scale guide device.
In accordance with the present invention the second body is directly employed for aligning the scale, without it being necessary for an adjustment device to be attached to the second body, which would have to be removed again from the second body after the alignment. In that case the second body can be either the machine bed or a movable carriage of the machine. The alignment is performed by the profiled alignment device on the second body and of the tape profile at the scale or the scale support. In the course of the alignment, the scanning head is already located on the second body and need to be removed and thereafter again attached for the alignment.
The tape profile is preferably attached to a protective tape applied to the scale or the scale support of the scale guide device. Such a protective tape is normally provided in the form of a self-adhesive foil for protecting the scale, in particular the graduation provided thereon, against damage during the alignment and attachment. The protective tape in accordance with the present invention now has the tape profile, which works together with the profiled alignment device on the second body of the machine for aligning the scale or the scale support or the scale guide device. Following the alignment, the profiled protective tape is pulled off the scale or the scale support or the scale guide device, in the course of which the spacing for scanning required for the measurement is created.
The profiled alignment device is provided on a scanning head which is a part of the second body. In that case the profiled protective tape can simultaneously be used for setting the spacing for scanning in the course of the assembly of the scanning head on a machine element, i.e. the second body. To this end it is necessary to select the thickness of the protective tape in accordance with the desired spacing for scanning.
The profiled alignment device can be provided in the form of at least one recess and/or at least one protrusion. The device furthermore can have a pusher device for pressing the scale or the scale support or the scale guide device against the installation face of the machine.
The object is furthermore attained by a method for the directional attachment of a scale element of a linear position measuring system to an installation face of a first body. The method includes providing a second body having a scanning head, which is movable in a measuring direction in relation to a first body, and aligning a scale element parallel with respect to the measuring direction. Providing a profiled alignment device on the second body, which works together with a complementary tape profile on the scale element for aligning the scale element.
The present invention will be explained in greater detail in what follows by the drawings.
a–3d represents four different embodiments of profiled alignment devices and tape profiles in accordance with the present invention for aligning the scale of the coordinate-measuring machine of
A preferred embodiment of the device in accordance with the present invention will now be described in greater detail, making reference to the drawings.
A coordinate-measuring machine, having a machine base 1 and a carriage 2, is represented in
In the example represented in
So that in the course of the movement of the carriage 2 in relation to the bed 1 the scanning head 5 can continuously scan the graduation 4.1 of scale 4 in a contactless manner, the scale 4 must be fastened on the bed 1 parallel with the displacement direction X of the scanning head 5, and therefore of the carriage 2.
In accordance with the present invention, a profiled alignment device 11, 11′, 11″, 11′″ provided on the scanning head 5, as well as a complementary tape profile on the scale 4 to be aligned. The tape profile is located on a profiled protective tape 9, by which the scale 4 is covered during alignment. Such a protective tape 9 is simultaneously used for protecting the graduation of the scale 4 against damage during the alignment, in order to prevent later measurement errors because of scratches etc. on the graduation.
In the course of the alignment of the scale 4, the profiled alignment device 11 on the scanning head 5 and the tape profile on the protective tape 9 work together. As stated, the scale 4 is provided with an adhesive foil 8 on its underside. In the course of the alignment process, this adhesive foil 8 is slowly pulled off the underside of the scale 4, and the aligned areas of the scale 4 are pushed onto the bed 1 and fixedly glued to the bed 1 by the adhesive foil 8. Pushing the scale 4 down can be performed manually or by a pusher device, for example by the pusher arrangement described with respect to
Following the alignment and gluing of the scale 4, the profiled protective tape 9 is pulled off the scale 4, in the course of which the spacing h for scanning (see
a to 3d shows four different possibilities for designing the profiled alignment device 11, 11′, 11″, or 11′″, as well as of the complementary tape profile at the protective tape 9 for aligning a scale 4. Other combinations of recesses and protrusions are of course also conceivable, as long as the profiled alignment device 11 and the tape profile of the protective tape 9 match in such a way that the scale 4 is aligned during a movement of the scanning head 5 in the measuring direction by the cooperating profiled elements.
Further exemplary embodiments exist within the scope of the present invention besides the described examples.
Number | Date | Country | Kind |
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102 29 888 | Jul 2002 | DE | national |
This application is a divisional patent application of application Ser. No. 10/612,721, filed Jul. 2, 2003, now U.S. Pat. No. 6,865,820, the entire contents of which are incorporated herein by reference.
Number | Name | Date | Kind |
---|---|---|---|
2742705 | Gelardi | Apr 1956 | A |
3678563 | Maxey | Jul 1972 | A |
4173065 | Tsuda | Nov 1979 | A |
4835830 | Miller | Jun 1989 | A |
4843706 | Luther et al. | Jul 1989 | A |
4936023 | Pechak | Jun 1990 | A |
5016359 | Nagaoka et al. | May 1991 | A |
5063685 | Morrison et al. | Nov 1991 | A |
5485680 | Nelle | Jan 1996 | A |
5774988 | Hattori | Jul 1998 | A |
6049992 | Freitag et al. | Apr 2000 | A |
6105271 | Freitag et al. | Aug 2000 | A |
6349481 | Nelle | Feb 2002 | B1 |
6374479 | Sasaki et al. | Apr 2002 | B1 |
6769195 | Huber et al. | Aug 2004 | B2 |
6865820 | Burgschat et al. | Mar 2005 | B2 |
6904696 | Boge et al. | Jun 2005 | B2 |
20040045182 | Freitag et al. | Mar 2004 | A1 |
20050108888 | Burgschat et al. | May 2005 | A1 |
Number | Date | Country |
---|---|---|
197 00 367 | Jul 1999 | DE |
10056947 | May 2002 | DE |
10240611 | Aug 2003 | DE |
0 388 453 | Jun 1993 | EP |
Number | Date | Country | |
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20050108888 A1 | May 2005 | US |
Number | Date | Country | |
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Parent | 10612721 | Jul 2003 | US |
Child | 10966121 | US |