ADAPTER FOR HOLDING A TOOL IN A COLLET CHUCK
20190070672 ยท 2019-03-07
Assignee
Inventors
Cpc classification
B23B2231/24
PERFORMING OPERATIONS; TRANSPORTING
B23B31/102
PERFORMING OPERATIONS; TRANSPORTING
B23B31/06
PERFORMING OPERATIONS; TRANSPORTING
B23B2231/2024
PERFORMING OPERATIONS; TRANSPORTING
B23B2231/02
PERFORMING OPERATIONS; TRANSPORTING
B23B31/11
PERFORMING OPERATIONS; TRANSPORTING
International classification
B23B31/10
PERFORMING OPERATIONS; TRANSPORTING
B23B31/20
PERFORMING OPERATIONS; TRANSPORTING
Abstract
An adapter for holding a tool in a collet chuck, the adapter containing an external taper to accommodate the adapter in the collet chuck. The adapter has a thread for fastening of the tool, and several shape-mated elements are arranged on an outer surface of the external taper for non-rotational holding of the receptacle body during fastening of the tool.
Claims
1. An adapter for holding a tool in a collet chuck, the adapter having an external taper to accommodate the adapter in the collet chuck, wherein the adapter has a thread for fastening of the tool and wherein a plurality of shape-mated elements for non-rotational holding of the receptacle body during fastening of the tool is arranged on an outer surface of the external taper.
2. The adapter of claim 1, wherein the shape-mated elements are arranged in the center of the external taper.
3. The adapter of claim 1, wherein the shape-mated elements are designed as key surfaces distributed over the periphery of the external taper.
4. The adapter of claim 3, wherein the key surfaces have a length of to the length of the external taper when viewed in an axial direction of the adapter.
5. The adapter of claim 3, wherein a radial passage opening is provided on at least one key surface that discharges into an entry on the insertion end of the external taper.
6. The adapter of claim 5, wherein at least one feed channel is arranged in the receptacle body for supplying a coolant or lubricant fed via entry in at least one passage opening to a face of the adapter on the tool side.
7. The adapter of claim 6, wherein at least one feed channel runs obliquely to the central axis of the adapter.
8. The adapter of claim 6, wherein at least one feed channel contains an entry arranged in the center and in the axial direction on the end of the key surfaces on the tool side.
9. The adapter of claim 6, wherein at least one feed channel has an exit on an annular surface of the receptacle body recessed relative to the face on the tool side.
10. The adapter of claim 3, wherein a distribution channel running at the level of the key surfaces is arranged on the outer surface of the external taper.
11. A collet chuck with a chuck body and the adapter of claim 1 arranged in an internal taper of the chuck body.
12. The collet chuck of claim 11, wherein the shape-mated elements delimit a reservoir space with the internal taper of the chuck body.
13. A holding device for non-rotational holding of the adapter of claim 1, wherein a carrier having at least one opening and holding surfaces arranged on the inside of the opening designed for shape-mated engagement with the shape-mated elements of the adapter.
14. The holding device of claim 13, wherein the holding surfaces are arched inward.
15. The holding device of claim 13, wherein the holding surfaces are arranged on several holding pins distributed uniformly over the periphery of the opening.
16. The holding device of claim 15, wherein the holding pins are distributed over the periphery of the opening so that the holding pins are arranged in the center of the key surfaces when the adapter is inserted.
17. A system for the adapter of claim 1 and a holding device for non-rotational holding of the adapter, wherein a carrier having at least one opening and holding surfaces arranged on the inside of the opening designed for shape-mated engagement with the shape-mated elements of the adapter.
18. The system of claim 17, wherein a radial gap between the holding surfaces and the shape-mated elements is smaller than 0.3 mm.
19. The system of claim 18, wherein the radial gap between the holding surfaces and the shape-mated element is smaller than 0.1 mm.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Additional details and advantages of the disclosure are apparent from the following description of a preferred practical example with reference to the drawings. In the drawings:
[0018]
[0019]
[0020]
[0021]
[0022]
[0023]
DETAILED DESCRIPTION
[0024] An adapter 1 for clamping a tool provided with a fastening thread in a collet receptacle is depicted in
[0025] As follows from
[0026] Between a front face 8 of the adapter 1 on the tool side and the internal thread 7, the receptacle opening 6 has a first contact area 9 with a first conical contact surface 10 and a second conical contact surface 11 for abutment of corresponding guide surfaces on the tool. The contact surfaces 10 and 11 are directly adjacent to each other and have different taper angles. On the internal end of thread 7 a second contact area 12 is connected with several radially inward protruding web-like contact elements 13 spaced from one another in the peripheral direction. Through these contact elements 13 the tool is additionally centered and radially dampened within the receptacle opening 6.
[0027] It is apparent from
[0028] Placing the key surfaces 15 in the center of the external taper 3 has the advantage that conical outer surfaces running above and beneath the key surfaces 15 are still left for contact on a corresponding internal taper in the chuck body of the collet chuck. Guiding and centering of the adapter within the chuck body can be achieved on this account. However, the preferably six key surfaces 15 spaced at equal angles in the peripheral direction can also be arranged in the front or rear of the external taper 3. In an advantageous embodiment, the key surfaces 15 have a length of to the length of the external taper 3 when viewed in the axial direction of the receptacle body 1.
[0029] The receptacle opening 6 in the adapter 1 in the depicted embodiment is designed as a through-hole with a central entry 17 widened in diameter on the insertion end 4 of the external taper 3. Radial passage openings 18 that discharge into the entry 17 of the receptacle opening 6 are arranged in the adapter 1 in the area of the key surfaces 15. A passage opening 18 connected to the entry 17 can expediently be provided on every second key surface 15.
[0030] A collet chuck having a chuck body 19 and a cap nut 20 that can be screwed to the chuck body 19 is depicted in
[0031] In order to produce a connection between adjacent key surfaces 15, a distribution channel 24 running at the level of the key surfaces 15 can be arranged according to
[0032] It is apparent in
[0033] All radial holes 18 and all feed channels 21 are connected to one another through the continuous distribution channel 24 on the outside periphery of the external taper 3. The number of holes 18 relative to the key surfaces 15 can therefore be arbitrary. Preferably every second key surface 15 is provided with a radial hole 18 and every key surface 15 lying in between is provided with a feed channel 26. In this way the receptacle body 1 of the adapter is least weakened.
[0034] In a particularly preferred embodiment, the feed channels 26 have an entry 27 arranged in the center and in the axial direction on the end of the key surfaces 15 on the tool side and an exit 28 on an annular surface 29 of the adapter 1 recessed relative to the face 8 on the tool side.
[0035] In another embodiment, there is no continuous reservoir or distribution channel. A radial hole 18 must then discharge on at least one key surface 15 and a feed channel 26 must begin.
[0036] From mounting of a tool provided with a thread in the adapter 1 just described, the adapter 1 can be inserted into the holding device 30 depicted in
[0037] As is apparent from
[0038] According to
LIST OF REFERENCE NUMBERS
[0039] 1 Adapter [0040] 2 Receptacle area [0041] 3 External taper [0042] 4 Insertion end [0043] 5 Conical outside surface [0044] 6 Receptacle opening [0045] 7 Internal thread [0046] 8 Face on tool side [0047] 9 First contact area [0048] 10 First contact surface [0049] 11 Second contact surface [0050] 12 Second contact area [0051] 13 Contact element [0052] 14 Shape-mated element [0053] 15 Key surface [0054] 16 Front end [0055] 17 Entry [0056] 18 Hole [0057] 19 Chuck body [0058] 20 Cap nut [0059] 21 Internal taper [0060] 22 Tool [0061] 23 Reservoir space [0062] 24 Distribution channel [0063] 25 Central axis [0064] 26 Feed channel [0065] 27 Entry [0066] 28 Exit [0067] 29 Annular surface [0068] 30 Holding device [0069] 31 Carrier [0070] 32 Opening [0071] 33 Holding surface [0072] 34 Holding pin [0073] 35 Inside wall [0074] 36 Hole