MACHINE TOOL
20180369974 · 2018-12-27
Assignee
Inventors
Cpc classification
Y10T279/19
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
B23Q3/12
PERFORMING OPERATIONS; TRANSPORTING
Y10T279/21
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
B23Q1/70
PERFORMING OPERATIONS; TRANSPORTING
B23Q1/0009
PERFORMING OPERATIONS; TRANSPORTING
International classification
B23Q1/70
PERFORMING OPERATIONS; TRANSPORTING
B23Q3/12
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The invention relates to a machine tool apparatus having a spindle (2), with a base flange (4) provided for attachment to the spindle (2) as part of a clamping tool quick-change tooling system (1), which further comprises an exchangeable flange (5), which is connectable to the chucking tool (3). Line sections (46) for data and/or energy transfer are arranged in the spindle (2), the base flange (4), the exchangeable flange (5) and the chucking tool (6), whereby coupling members (47) for connecting the line sections (46) to form a single line (FIG. 11) are provided on adjacent components in the transfer chain.
Claims
1. A machine tool apparatus having a spindle (2), with a base flange (2) provided for attachment to the spindle (4) as part of a quick-change tooling system (1), which further comprises an exchangeable flange (5) connectable to a chucking tool (3), configured with line sections (46, 45, 54, 55) for data and/or energy transfer are arranged in the spindle (2), a base flange (4), an exchangeable flange (5) and a workpiece chucking tool (6), and a coupling member (47) for connecting said line sections (45, 46) to form a single line are provided on adjacent components in the transfer chain.
2. A machine tool apparatus according to claim 1, wherein said base flange (2) has at least two jaws (9), which are adjustable radially relative to the spindle axis, with a radially formed groove (28), as well as a drive ring (10) provided for adjusting one or more jaws (9), whereby said exchangeable flange (5) has a neck (42) with a radially projecting collar (43), and in that the contacting walls of the groove (28) and the collar (43) are formed inclined in order to produce a pull-down effect.
3. A machine tool apparatus according to claim 1, wherein at least two adjacent coupling members (47) are designed as a plug-socket connection (48).
4. A machine tool apparatus according to claim 1, wherein at least two adjacent coupling members (47) are designed as an inductive coupler (49).
5. A machine tool apparatus according to claim 1, wherein one of at least two adjacent coupling members (47) is formed as a plurality of contact points (50) and the other as corresponding resilient pins (51).
6. A machine tool apparatus according to claim 1, wherein one of at least two adjacent coupling members (50) is formed as a circuit board with at least one contact loop (53), and the other as at least one resilient pin (51).
7. A machine tool apparatus according to claim 1, wherein the contact points (50) of all adjacent components in the transfer chain are arranged linearly and coaxially relative to the spindle axis.
8. A machine tool apparatus according to claim 1, wherein the contact points (50) are sealed by gaskets or O-rings relative to the environment.
9. An exchangeable flange for a quick-change tooling system, wherein a line section (45) extending continuously from top to bottom is provided for data and/or energy transfer, and which has terminal coupling members (47) for contacting coupling members (47) of the line sections (46) in the base flange (4) and the chucking tool (6).
Description
[0014] The invention will be explained in more detail below with reference to the embodiments shown in the drawing:
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[0054] The design of the chucking tool change system 1 with the integration of the energy sections 45, 46 and the coupling members 47 will be explained in the following.
[0055]
[0056] As can be seen, in particular in
[0057] Drive teeth 16 are formed on the drive ring 10 on the side facing spindle 2, and with which the drive wheel 12 engages, thus forming a restoring cam 17 on the side of the drive ring 10 with the drive teeth 16, whereby the jaw 9 with control member 18 (
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[0060] Line sections 45, 46 for data and/or energy transfer are arranged in the spindle 2, the base flange 4, the exchangeable flange 5 and the chucking tool 6, whereby coupling members 47 for connecting the line sections 45, 46 to form a single line (
[0061] Preferably, the contact points 50 of all adjacent components in the transfer chain are linearly and coaxially arranged relative to the spindle axis and sealed by gaskets or 0-rings relative to the environment.
[0062] The jaws of the workpiece chucking tool 6 are adjusted in a conventional manner by means of the drawtube associated with the machine tool, such that when applying the chucking tool 3 as a base flange 4, a drawtube adapter 30, which is at least limitedly rotatable, is associated with the chucking tool 3, and whose rotation by means of at least one coupling member 31 may be derived from the rotation of the drive ring 10. For this purpose, at least one axially extending adapter groove 30 is formed on the drawtube adapter 32 (
[0063] The embodiment, shown in
[0064] Mutually spaced apart locking cams 39 are formed on the drawtube adapter 30 in the circumferential direction, while opposing cams 41, which are likewise spaced in the circumferential direction, are formed on a coupling sleeve 40 associated with the exchangeable flange 5. Here, the distance is dimensioned such that when an approach movement of the exchangeable flange 5 with the coupling sleeve 40 takes place in the axial direction, the locking cams 39 of the base flange 4 are able to pass between the opposing cam 41, such that when the drawtube adapter 30 is rotated, the opposing cam 40 will embrace the locking cam 39.
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[0066] The operating principle of the invention will be explained in the following.
[0067] Thus, as a substitute for a conventional chuck, it is possible to connect the chucking tool body 8 once to the spindle 2 of the machine tool, using the screws provided for this purpose. The chucking tool 3 thus connected to the spindle 2 is already suitable for clamping workpieces or tools, which is why it is also possible to clamp an exchangeable flange 5. To perform clamping, first the drive wheel 12 is actuated and the drive ring 10 rotated such that the jaws 9 are in the open position, i.e., the radial cam 15 will not interact with the end face 25 of contact pin 24 of the jaws 9. At the same time, the coupling member 31 ensures that the support ring 33 turns the drawtube adapter 30 into the open position via the slot nut 34. In this position, the exchangeable flange 5 with its coupling sleeve 40 may be mounted axially on the base flange 4, such that the opposing cams 41 of the coupling sleeve 40 are guided past the locking cam 39 of the drawtube adapter 30. When reaching this constellation, the drive wheel 12 is rotated such that the drive ring 10 is rotated from the open position to the clamping position, while the radial cam 15 adjusts the jaws 9 radially outward, such that these embrace the collar 43 formed on the neck 42 of the exchangeable flange 5 with the groove 28. This radial adjustment of the jaws 9 creates a pull-down effect due to the inclination of the walls of the groove 28 and the collar 43, which gives rise to a defined axial position of the exchangeable flange 5 relative to the base flange 4. In this position, a secure contact of the coupling members 47 for connecting the components adjacent to the line sections 45, 46 is present.
[0068] It should be noted that when clamping the exchangeable flange 5, rotation of the carrier ring 33 is already achieved via the coupling member 31, such that the locking cams 39 arranged staggered and axially relative to the opposing cams 41 are turned with the drawtube adapter 30, thereby causing the opposing cam 41 and locking cam 39 to overlap in the manner of a bayonet closure. Thus, the connection of the base flange 4 and the exchangeable flange 5 is completed, and the coupling sleeve 40 may be axially adjusted by operating the drawtube of the machine tool via the drawtube adapter 30, e.g., in order to adjust the jaws of a chuck 6 mounted on the exchangeable flange 5.
[0069] To release the connection of the exchangeable flange 5 and the base flange 4, only the drive wheel 12 will have to be rotated in the opposite direction, such that the drive ring 10 is rotated from the clamping position to the open position. This causes the drawtube adapter 30 to rotate, such that the locking cams 39 and the opposing cams 41 no longer overlap. Simultaneously, the jaws 9 are displaced radially inward by the control member 18 adjacent to the restoring cam 17, such that the groove 28 of the jaw 9 disengages the collar 43 of the exchangeable flange 5, with the result that the exchangeable flange 5 may be removed axially from the base flange 4. Subsequently, another exchangeable flange 5 with a chuck 6 of different characteristics may be attached to the base flange 4 and thus the machine tool, which [exchangeable flange] may be recognized individually due to the contacting of coupling members 47 thus occurring, while forming a closed line from the machine tool.
REFERENCE NUMERAL LIST
[0070] 1 Quick-change system [0071] 2 Spindle [0072] 3 Chucking tool [0073] 4 Base flange [0074] 5 Exchangeable flange [0075] 6 Workpiece chucking tool [0076] 7 Receptacle [0077] 8 Chucking tool body [0078] 9 Jaws [0079] 10 Drive ring [0080] 11 Drive [0081] 12 Drive wheel [0082] 13 Spindle drive [0083] 14 Radial cam [0084] 15 Radial cam [0085] 16 Drive teeth [0086] 17 Restoring cam [0087] 18 Control member [0088] 19 Indicator cam [0089] 20 indicator pin [0090] 21 Base leg [0091] 22 Second leg [0092] 23 Pin receptacle [0093] 24 Contact pin [0094] 25 End face [0095] 26 Pin base [0096] 27 Retaining ring [0097] 28 Groove [0098] 29 Walls [0099] 30 Long-tube adapter [0100] 31 Coupling member [0101] 32 Adapter groove [0102] 33 Support ring [0103] 34 Slot nut [0104] 35 Drive part [0105] 36 Strut [0106] 37 Lever [0107] 38 Fork cam [0108] 39 Locking cam [0109] 40 Coupling sleeve [0110] 41 Opposing cam [0111] 42 Neck [0112] 43 Collar [0113] 44 Eccentric [0114] 45 Line section [0115] 46 Line section [0116] 47 Coupling members [0117] 48 Plug-to-socket connection [0118] 49 Inductive coupler [0119] 50 Contact point [0120] 51 Pin [0121] 52 Circuit board [0122] 53 Contact loop