CARRIER BODY FOR A GRINDING OR A CUTTING TOOL
20180264628 ยท 2018-09-20
Inventors
Cpc classification
B23D61/026
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
Carrier body (1) for a grinding or a cutting tool (2), comprising a central coupling area (3) for connecting the grinding or cutting tool (2) to a rotary drive for rotating the grinding or cutting tool (2) about an axis of rotation (4) passing through the coupling area (3), a carrier structure (6) adjacent thereto in the radial direction (5), wherein the carrier structure (6) has recesses (7, 8) separate from the coupling area (3), and two substantially annular side surfaces (9, 10) which are spaced apart from each other in the axial direction (11) across the carrier structure (6), wherein at least some, preferably all, of the recesses (7, 8) are open only to one of the side surfaces (9, 10) of the carrier body (1).
Claims
1. Carrier body (1) for a grinding or a cutting tool (2), comprising a central coupling area (3) for connecting the grinding or cutting tool (2) to a rotary drive for rotating the grinding or cutting tool (2) about an axis of rotation (4) passing through the coupling area (3), a carrier structure (6) adjacent thereto in the radial direction (5), wherein the carrier structure (6) has recesses (7, 8) separate from the coupling area (3), and two substantially annular side surfaces (9, 10) which are spaced apart from each other in the axial direction (11) across the carrier structure (6), characterized in that at least some, preferably all, of the recesses (7, 8) are open only to one of the side surfaces (9, 10) of the carrier body (1).
2. Carrier body (1) according to claim 1, wherein the recesses (7, 8) are open to the same side surface (9) of the carrier body (1).
3. Carrier body (1) according to claim 1, wherein the recesses (7, 8) are sealed on the side surface (10) which is opposite the side surface (9), to which the recesses (7, 8) are open, by a side wall (12) which is connected to the carrier structure (6) in one piece.
4. Carrier body (1) according to claim 3, wherein, in the axial direction (11), the side wall (12) has a thickness (13) of from 0.3% to 15%, preferably approx. 10%, of the thickness (14) of the carrier body (1).
5. Carrier body (1) according to claim 1, wherein the recesses (7, 8) are covered on the side surface (9), to which the recesses (7, 8) are open, by a common, preferably annular, cover (15).
6. Carrier body (1) according to claim 5, wherein the cover (15) occupies a larger portion of the side surface (9) than the recesses (7, 8), and/or the cover (15) is bonded to the side surface (9), to which the recesses (7, 8) are open, preferably wherein there is a bonding at every point at which the cover (15) contacts the side surface (9).
7. Carrier body (1) according to claim 5, wherein the side surface (9), to which the recesses (7, 8) are open, has a cut-out (16), which has a shape corresponding to the cover (15), and the cover (15) is inserted into the cut-out (16) substantially without gaps.
8. Carrier body (1) according to claim 5, wherein, in the axial direction (11), the cover (15) has a thickness (17) of from 0.3% to 15%, preferably approx. 10%, of the thickness (14) of the carrier body (1).
9. Carrier body (1) according to claim 1, wherein the recesses (7, 8) are filled, at least in areas, preferably completely, with a filler material (18), preferably synthetic resin.
10. Carrier body (1) according to claim 1, wherein the recesses (7, 8) have a circular or slotted hole-shaped cross section in a cross-sectional plane (19) normal to the axis of rotation (4).
11. Carrier body (1) according to claim 1, wherein the recesses (7, 8) on the side surface (9), to which the recesses (7, 8) are open, occupy a total area of from 50% to 90%, preferably approx. 75%, of the side surface (9).
12. Carrier body (1) according to claim 1, wherein the coupling area (3) has a central lead-through (20), and preferably means (21, 22) for the torque-proof connection of the grinding or cutting tool (2) to the rotary drive, wherein the means (21, 22) for the torque-proof connection are arranged neighbouring the lead-through (20).
13. Carrier body (1) according to claim 1, wherein the carrier body (1) has a diameter (23) of from 250 mm to 700 mm, preferably approx. 400 mm, and/or a thickness (14) in the axial direction (11) of from 20 mm to 300 mm, preferably approx. 30 mm.
14. Carrier body (1) according to claim 1, wherein the carrier body (1) is formed asymmetrically relative to a centre plane (26) normal to the axis of rotation (4).
15. Grinding or cutting tool (2) with a carrier body (1) according to claim 1 and an abrasive material (24) arranged in or on the carrier body (1), preferably wherein the carrier body (1) has a peripheral surface (25) and the abrasive material (24) is arranged in the form of an abrasive layer on the peripheral surface (25) of the carrier body (1).
Description
[0018] Further details and advantages of the invention are explained in more detail in the following by means of the description of the figures with reference to the drawings. There are shown in:
[0019]
[0020]
[0021]
[0022]
[0023]
[0024]
[0025] The carrier body 1 for a grinding or a cutting tool represented in
[0026] In the radial direction 5, a carrier structure 6 is adjacent to the coupling area 3. The carrier structure 6 has recesses 7, 8 separate from the coupling area 3. The recesses 7, 8 can have quite different cross-sectional shapes. In the case of the carrier body 1 represented in
[0027] The carrier body 1 furthermore comprises two substantially annular side surfaces 9, 10, which are spaced apart from each other in the axial direction 11 across the support structure 6. If the carrier body 1 is regarded as a circular cylinder with two cylinder end surfaces and a lateral surface, the side surfaces 9, 10 are therefore part of the cylinder end surfaces.
[0028] The recesses 7, 8 are open only to one of the side surfaces 9, 10 of the carrier body 1. More precisely, the recesses 7, 8 are open to the same side surface, namely the side surface provided with the reference number 9, of the carrier body 1.
[0029] On the side surface 10 which is opposite the side surface 9, to which the recesses 7, 8 are open, the recesses 7, 8 are sealed by a side wall 12, which is connected to the carrier structure 6 in one piece. This means that, in the case of a top view onto the side surface 10 of the carrier body 1, it is only possible to see through the lead-throughs 20, 21, 22. Apart from that, the carrier body 1 presents itself as a substantially closed surface.
[0030] It has proven advantageous that, in the axial direction 11, the side wall 12 has a thickness 13 of from 0.3% to 15% of the thickness 14 of the carrier body 1. In the case represented, the side wall 12 has a thickness 13 in the axial direction 11 of approx. 10% of the thickness 14 of the carrier body 1.
[0031] In order to keep the weight of the carrier body 1 as low as possible and at the same time to achieve sufficient stability, it is possible for the recesses 7, 8 on the side surface 9, to which the recesses 7, 8 are open, to occupy a total area of from 50% to 90%. In the case represented, the recesses 7, 8 on this side surface 9 occupy a total area of approx. 75% of the side surface 9.
[0032] The carrier body 1 is formed asymmetrically relative to the centre plane 26 normal to the axis of rotation 4. This fundamentally differentiates it from the carrier bodies known from the state of the art.
[0033] The advantages of the structure according to the invention of the carrier body 1 are particularly evident in the case of carrier bodies with a comparatively large diameter of from 250 mm to 700 mm. In the case represented, the carrier body 1 has a diameter 23 of approx. 400 mm.
[0034] The thickness 14 of the carrier body 1 in the axial direction 11 can be, for example, from 20 mm to 300 mm. In the case represented, the carrier body 1 has a thickness 14 in the axial direction 11 of approx. 30 mm.
[0035] The embodiment example according to
[0036] The cover 15 is bonded to the side surface 9, to which the recesses 7, 8 are open. In comparison with the state of the art, there is a bonding at every point at which the cover 15 contacts the side surface 9. In this way, the recesses 7, 8 can be reliably covered.
[0037] The side surface 9, to which the recesses 7, 8 are open, has a cut-out 16 which has a shape corresponding to the cover 15. This means that the cut-out 16 in the case represented is also annular.
[0038] The cover 15 is inserted in this cut-out 16 substantially without gaps. This fact also represents a difference from the state of the art, where there was still a preconception that a gap had to be left to the casing body in order to guarantee the radial elasticity of the carrier body 1.
[0039] In the axial direction 11, the cover 15 can have a thickness 17 of from 0.3% to 15% of the thickness 14 of the carrier body 1. In the case specifically represented, in the axial direction 11, the cover 15 has a thickness 17 of approx. 10% of the thickness 14 of the carrier body 1.
[0040] The embodiment example represented in
[0041]
[0042] In principle, it should also be pointed out that the features of the cut-out 16, the cover 15 and the filler material 18 can be combined with each other as desired.