Reel for winding metal strip
09873144 ยท 2018-01-23
Assignee
Inventors
Cpc classification
B65H18/10
PERFORMING OPERATIONS; TRANSPORTING
B21B1/22
PERFORMING OPERATIONS; TRANSPORTING
International classification
B65H18/10
PERFORMING OPERATIONS; TRANSPORTING
B21B1/22
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A reel for winding metal strip, in particular rolled hot strip, having a mandrel shaft (2), which has a first shaft end piece (18), which is rotably mounted by means of at least one bearing (4) provided in the machine frame (3) of the reel, a clamping device (5) arranged between the at least one bearing (4) and the mandrel shaft (2), such that, in a clamped operating state, a frictional connection can be produced between the at least one bearing (4) and the mandrel shaft (2).
Claims
1. A reel for winding metal strip and hot-rolled strip comprising: a machine frame; at least one bearing in the machine frame; a mandrel shaft having a first shaft end piece which is rotatably mounted by the at least one bearing in the machine frame; and a clamping device disposed between the at least one bearing and the mandrel shaft, the clamping device being configured and operable such that in a clamped operating state thereof, the clamping device produces a tangential frictional connection between the at least one bearing and the mandrel shaft, wherein the clamping device is configured to be actuated hydraulically to produce the tangential frictional connection between the at least one bearing and the mandrel shaft.
2. The reel as claimed in claim 1, further comprising the clamping device has a hydraulically actuated clamping sleeve which is configured to apply radially directed force toward the mandrel shaft when the clamping sleeve is hydraulically activated.
3. The reel as claimed in claim 2, further comprising the hydraulically actuated clamping sleeve has a hollow cylinder in the clamping sleeve for receiving a hydraulic medium to hydraulically activate the clamping device.
4. The reel as claimed in claim 3, further comprising the hollow cylinder is configured to be accessible from outside the clamping device via a channel for conducting the hydraulic medium into the hollow cylinder.
5. The reel as claimed in claim 4, further comprising: the channel is configured to be closed from outside the clamping device; and a closure at the channel and configured for closing the channel.
6. The reel as claimed in claim 3, wherein the hollow cylinder has an axial extent that is wider than the axial width of the associated bearing.
7. The reel as claimed in claim 2, further comprising the hydraulically actuated clamping sleeve has a hollow cylinder in the clamping sleeve for receiving a hydraulic medium to hydraulically activate the clamping device.
8. The reel as claimed in claim 1, further comprising the shaft end piece is mounted in two of the bearings which are spaced apart along the mandrel shaft.
9. The reel as claimed in claim 1, further comprising a rotation drive for rotating the mandrel shaft.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) For a further explanation of the invention, reference is made to the drawings in the following part of the description, further advantageous embodiments, details and developments of the invention being able to be derived therefrom, with reference to non-limiting exemplary embodiments, in which:
(2)
(3)
(4)
(5)
(6)
DESCRIPTION OF EMBODIMENTS OF THE INVENTION
(7)
(8) The part of the mandrel shaft 2 on the operating side, which protrudes from the machine frame 3 on the left-hand side in
(9) The mandrel shaft 2 is driven by a drive, not shown in more detail, via the drive part 16 which is connected to the mandrel shaft 2 by means of a coupling, for example a releasable, positive connection, for example in the form of a toothing 9. The positive connection may also be designed differently, for example an interlocking spline-shaft-spline-hub profile. The torque required for the winding process, therefore, is substantially transmitted via this coupling.
(10) According to the invention, the connection between the mandrel shaft 2 and the inner race of each respective bearing 4 is a releasable connection which is produced by a clamping device 5. The clamping device 5 is constructed such that, in a clamped state, a mandrel shaft 2 inserted into the bearing 4 may be fixed by a tangential direction frictional connection described below. To this end, radial widening is produced in the region of the bearing seat by the clamping device 5, until it is ensured that the mandrel shaft 2 and the inner race of the bearing 4 do not slip relative to one another.
(11) Embodiments of mechanically actuated clamping devices 5 are illustrated in
(12) A bush 11 at the radially inward side of each bearing 4 is supported by the bearing in the axial position of the bush along the shaft 2.
(13) Each bush 11 includes a collar 23 at one end of the bush that engages the bearing cover 13. A shaft nut 8 is threaded on the other end region of the bush and when tightened on the bush, the nut 8 and the collar 23 prevents the bearing 4 from moving axially with respect to the bush, and vice versa. Since the bearing outer race is fastened in the machine frame, the bush is also prevented by the bearing and the frame from moving axially.
(14) A respective mechanical clamping sleeve or conical seat 7 is located at and radially inward of each bush 11 and of each of the two bearings 4 and is in contact with the exterior of the mandrel shaft 2. Each sleeve or seat 7 has an outward facing, conically inclined surface 20 which contacts a complementary inward facing, conically inclined surface 21 of the respective axially stationary bush 11 which is at the inward side of each bearing 4. The conical inclined surfaces are inclined in a direction along the axis of the shaft. The inclined surfaces are preferably both axially and radially complementary. Because of the complementary conical inclines of the surfaces 20 and 21, the conically inclined surface of each seat and of the respective bush at each bearing 4 engage, and the inclines cause application or release of a radially directed force applied radially inwardly by both of the bush 11 and the seat 7 against the mandrel shaft 2 as the axial positions of the conical seats 7, are adjusted axially with respect to the non-moving bushes 11 and their bearings 4.
(15) Only the sleeve or seat 7 is movable axially and not the bush or bearing. In
(16) In the exemplary embodiment in
(17) Described below are the releasable shaft-hub frictional connections of
(18) The actuation of the clamping device 5 may be effected in different ways. The actuation may take place, for example, hydraulically or mechanically.
(19)
(20) In
(21)
(22)
(23) In the upper partial section, of
(24) In the embodiment at the lower partial section of
(25) It is common to the two embodiments of
(26) An essential advantage of the invention is that by means of the clamping device a mandrel shaft 2 may be rapidly and easily mounted in and/or dismantled from a machine frame 3 of a reel 1. The time required to change a reel mandrel for a hot-rolled strip, which in known reels often requires the production time to be interrupted for six to eight hours, may be considerably reduced.
(27) Although the invention has been illustrated and described in more detail by the preferred exemplary embodiments shown above, the invention is not limited by the examples disclosed and other variants may be derived therefrom by the person skilled in the art without departing from the scope of the invention.
LIST OF REFERENCE NUMERALS USED
(28) 1 Reel
(29) 2 Mandrel shaft
(30) 3 Machine frame
(31) 4 Bearing
(32) 5 Clamping device
(33) 6 Coil, hot-rolled coil
(34) 7 Mechanical clamping sleeve, conical seat
(35) 8 Shaft nut for bearing
(36) 9 Toothing
(37) 10 Direction of extraction
(38) 11 Bush
(39) 12 Hollow space
(40) 13 Bearing cover
(41) 14 Bearing half-shell
(42) 15 Closure
(43) 16 Drive piece
(44) 17 Hydraulic clamping sleeve
(45) 18 Shaft end piece
(46) 19 Support bearing
(47) 20 Surface of seat
(48) 21 Surface of bush
(49) 22 Shaft nut for bush and bearing
(50) 23 Collar on bush
(51) 24 Hydraulic clamping sleeve