This application claims priority from German Patent Application No. 10 2007 020 448.7 dated Apr. 27, 2007, the entire disclosure of which is incorporated herein by reference.
The invention relates to a device on a spinning preparation machine, for example a draw frame, carding machine, combing machine or the like, having a drafting system for drafting at least one fibre sliver. Typically, a drafting system has drafting system rollers forming drafting roller pairs, having power transmission means for driving the drafting system rollers and having a drive motor, the drive of the drafting system rollers being effected from different sides.
In a known device (WO 91/05893 A, corresponding to U.S. Pat. No. 5,313,689; referring to
It is an aim of the invention to provide a device of the kind described at the beginning which avoids or mitigates the mentioned disadvantages, which, in particular, involves use of a relatively small number of drive components and the efficiency of which is substantially improved.
The invention provides an apparatus on a drafting system of a spinning preparation machine with drafting system rollers forming drafting roller pairs, having a drive motor and transmission devices for driving the drafting system rollers, wherein the drive motor has first and second rotating drive elements, and the arrangement is such that the drive of at least a first roller pair is effected from one side by the first drive element and the drive of at least one further roller pair is effected from the other side by the second drive element.
According to the invention, the number of elements of the drive means of the drafting system rollers can be reduced so that a considerable economic advantage is obtained. The drive elements are so arranged relative to one another that there are almost no branches, so that mechanical losses are avoided. A particular advantage is obtained because the driving power of the motor can be conducted to the drafting system rollers directly or via only one gear. As a result, it is possible to achieve high performance at high rotational speed and accordingly to effect a substantial improvement in the efficiency of the drive means.
Advantageously, the drive elements are rotatable elements extending from opposed sides of the drive motor. For example, the drive elements may be outgoing shaft ends of the drive motor. Advantageously, drive pulleys are mounted on the shaft ends.
In another, advantageous embodiment, the drive elements may be rotating outer wall faces of the drive motor.
The apparatus may, in certain embodiments, include one or more drive trains. Advantageously, there is a gear at least in one drive train. Advantageously, the gear is arranged between the drive motor and at least one driven roller pair. Advantageously, a mechanical gear is present. Advantageously, the gear has a transmission stage. Preferably, the gear is driven by the drive motor.
The apparatus may include any suitable transmission arrangement or arrangements. By way of example, the drive of the drafting rollers and/or of the gear may be effected by way of belts, for example, one or more belts selected from flat belts and toothed belts. Advantageously, the belts are associated with belt-tensioning pulleys.
In certain preferred embodiments, there is a plurality of drive pulleys for driving machine elements, especially drafting system rollers. Advantageously, there is at least one transmission element, especially a belt, in each case passing around at least two drive pulleys. It is preferred that the drive pulleys, or at least some of the drive pulleys, have different diameters.
Advantageously, the drive of the output roller pair of the drafting system is effected by the first drive element. It is further advantageous in that case that the drive of the input and middle roller pairs of the drafting system is effected by the second drive element. Advantageously, the driving drive pulley of the first drive element has a larger diameter than the driven drive pulley for the output roller pair. Advantageously, the driving drive pulley of the second drive element has a smaller diameter than the driven drive pulley at the input of the gear. Advantageously, the driving drive pulley at the output of the gear has a smaller diameter than the driven drive pulleys for the input and middle roller pairs. Advantageously, the driving drive pulley of the second drive element and the driven drive pulley at the input of the gear are constructed as stepped pulleys. Advantageously, drafting system rollers forming preliminary drafting and main drafting roller pairs are present. If desired, a said drive element may be used to drive one or more machine components in addition to one or more drafting roller pairs. For example, the drive of the calender rollers may be derived from the first drive element and/or the drive of the rotary plate may be derived from the first drive element.
The apparatus may be used in a variety of drawing systems. It is preferred that, at the output, a lower roller co-operates with two upper rollers.
In one variant of the invention, the input roller pair has a driven drive pulley on one side and a driving drive pulley on the other side and the driving drive pulley is used for driving the middle roller pair.
In a further embodiment of the invention, the middle roller pair has a driven drive pulley on one side and a driving drive pulley on the other side and the driving drive pulley is used for driving the input roller pair.
It is preferred that the belt for driving the input and middle roller pairs is associated with at least one guide pulley and/or with at least one tensioning pulley.
The invention also provides an apparatus on a spinning preparation machine, for example a draw frame, carding machine, combing machine or the like, having a drafting system for drafting at least one fibre sliver with drafting system rollers forming drafting roller pairs, having power transmission means for driving the drafting system rollers and having a drive motor, the drive of the drafting system rollers being effected from different sides, wherein the drive motor has two rotating drive elements, the drive of at least one roller pair being effected from one side by the first drive element and the drive of at least one other roller pair being effected from the other side by the second drive element.
Certain illustrative embodiments of the invention are described in greater detail below with reference to the accompanying drawings, in which:
a is a diagrammatic plan view of the gearing layout of a draw frame having a first embodiment of the drive according to the invention;
b is a first side view of the drive apparatus according to
c is a second side view of the drive apparatus according to
In the first embodiment of the invention, the gearing layout of a drafting system for a draw frame, for example a draw frame known as TD 02 draw frame made by Trützschler GmbH & Co. KG of Mönchengladbach, Germany, may be arranged according to
The motor 1 has a rotating drive shaft which, projecting beyond the two end faces, forms two shaft journals 2a, 2b (shaft ends). Driving drive pulleys 3 and 4 are mounted on the journals 2a and 2b, respectively, so as to rotate therewith. The shaft journal 2a and the drive pulley 3 form a first drive element 5 and the shaft journal 2b and the drive pulley 4 form a second drive element 6.
The drive pulley 3 driven by the motor 1 is connected to the driven drive pulley 8 of a gear 10 by means of an endlessly circulating toothed belt 7. The gear 10 has, in addition, a driving drive pulley 9 which is arranged coaxially to the driven drive pulley 8. Driven drive pulleys 14 and 15 are mounted on the journals 11 and 12 (i.e. the drive shafts) of the lower rollers III and II, respectively, so as to rotate therewith. The driving drive pulley 9 of the gear 10 is connected to the driven drive pulleys 14 and 15 by means of an endlessly circulating toothed belt 16 which passes around them. Reference letter A denotes the working direction.
The following have proved advantageous: rotational speed of shaft journals 2a, 2b e.g. 3000
drive pulley 3 diameter from 65 to 75 mm, diameter of drive pulley 8 from 115 to 125 mm, diameter of drive pulley 9 from 40 to 50 mm, rotational speed of drive pulleys 8 and 9 from 1500 to 2000
drive pulley 14 (diameter from 40 to 50 mm, rotational speed from 1500 to 2000
), drive pulley 15 (diameter from 25 to 35 mm, rotational speed from 2400 to 2600
).
In that way, the drive of the input roller pair and the middle roller pair (see
A driven drive pulley 17 is mounted on the journal 13 (or a drive shaft) of the lower roller I so as to rotate therewith. The drive pulley 4, which is driven by the motor 1, is connected to the driven drive pulley 17 by means of an endlessly circulating toothed belt 18 which passes around them.
The following have proved advantageous: drive pulley 4 diameter from 130 to 150 mm, drive pulley 17 diameter from 40 to 50 mm, rotational speed of drive pulley 17 from 9000 to 9600
In that way, the drive of the output rollers (see
In the embodiment of
In the embodiment of
The delivery rollers 34 and 35 are connected coaxially to driven drive pulleys 38 and 39 by way of shafts 36 and 37, respectively. A toothed belt 40 passes around the drive pulleys 32, 38, 39 and a further drive pulley 41.
The drive pulley 29 is connected coaxially to a drive pulley 43 by way of a shaft 42. The drive pulley 43 drives the coiler plate 45 for the drafted fibre sliver by way of a toothed belt 44, the toothed belt 44 being in engagement with a tensioning pulley 46 by way of two guide pulleys 47, 48.
The drive for input and middle lower rollers I and II is as shown in
Different transmission ratios can also be implemented in the arrangement according to
The gear 2a is a draft-altering gear. By changing the drive pulleys 3, 8, 9, 14 and/or 15, alterations in the rotational speed of the drafting system rollers II and III can be implemented.
The invention has been explained using the example of a drafting system 50 in which the drive of at least one first roller pair 60/III and/or 59/II is effected from one side by the first drive element 5; 2a, 3 and the drive of at least one other roller pair 57, 58/I is effected from the other side by the second drive element 6; 2b, 4. The invention includes in the same way a drafting system 52 in which the drive of the at least other roller pair 57, 58/I is effected from one side by the first drive element 5; 2a, 3 and the drive of the at least first roller pair 60/III and/or 59/II is effected from the other side by the second drive element 6; 2b, 4. The same applies to the drive of the calender rollers 34, 35 and of the coiler plate 45.
The drafting system 50 can draft a plurality of fibre slivers 53, for example in the case of a draw frame. The drafting system 50 can also draft only one fibre sliver, for example at the outlet of a carding machine (Integrated Draw Frame).
Illustrative of draw frames suitable for use with a device according to the invention are breaker frames. They are used in practice predominantly as preliminary draw frames, which are generally without levelling. Especially in the case of a preliminary draw frame without levelling, a relatively high degree of variability of drafting is not required by the customer and far exceeds the requirements. The customer will at this point, in accordance with his spin plan, generally have fixed doublings and drafts which are extremely rarely altered and any such alteration will be made exclusively by fixed amounts. The device according to the invention has a gear construction having a main transmission corresponding to the draft. The invention provides an optimum gearing solution with a drive means and a change-over point as main drafting transmission. As a result of the mechanical gear coupling of the draft to the motor control means, the requirements in terms of apparatus can be made substantially less. The entire gear is driven by one motor 1. The draft has been fixed mechanically by a main transmission step in the gear 10.
The device according to the invention allows transmitter-free, lower-precision drive control. This has the result in the mechanical motor construction that both sides of the motor 1 are provided with drive means and the gear 10 acquires an extremely simple form that makes optimum use of space. Such a construction, in particular, saves on at least one intermediate shaft joining the two drive sides. In addition, the overall belt guidance and belt tensioning has been extremely simplified. Although the foregoing invention has been described in detail by way of illustration and example for purposes of understanding, it will be obvious that changes and modifications may be practised within the scope of the appended claims.
Number | Date | Country | Kind |
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10 2007 020 448.7 | Apr 2007 | DE | national |