DRAFTING SYSTEM UNIT AND DRAFTING SYSTEM FOR A SPINNING MACHINE
20200040486 · 2020-02-06
Inventors
- Chandrassekaran SESHAYER (Herzogenrath, DE)
- Michael Korn (Stuttgart, DE)
- Philipp Schiffers (Erkelenz, DE)
- Ralf Siewert (Schwalmtal, DE)
- Heinz-Josef PEUKER (Wegberg, DE)
- Karoline GUENTHER (Mönchengladbach, DE)
Cpc classification
D01H5/86
TEXTILES; PAPER
International classification
Abstract
A drafting system unit for a drafting system of a spinning machine. In a fiber band transport direction (R), the drafting system unit has a first top roller and a second top roller spaced apart therefrom, which are provided for drafting a fiber band, transported from the first to the second top roller, in cooperation with accordingly assigned bottom rollers, the respective axes of rotation of the first and second top roller extending transversely to the fiber band transport direction. The drafting system unit is characterized in that an apron cage to which negative pressure can be applied is arranged between the first top roller and the second top roller for guiding an air-permeable apron in circulation jointly around the apron cage and an apron top roller, the apron top roller being formed by the first top roller or by a third top roller that is assigned to the apron cage and arranged on the same side as the first and second top roller in relation to the fiber band being transported. The apron cage has at least one through-opening, to which negative pressure can be applied, for applying suction air to the fiber band running between the first and second top roller, through the air-permeable apron.
Claims
1. A drafting system unit for a drafting system of a spinning machine, the drafting system unit having, in a fiber band transport direction (R), a first top roller and a second top roller spaced apart therefrom, which are provided for drafting a fiber band, transported from the first to the second top roller, in cooperation with accordingly assigned bottom rollers, the respective axes of rotation of the first and second top roller extending transversely to the fiber band transport direction (R), characterized in that an apron cage to which negative pressure can be applied is arranged between the first top roller and the second top roller for guiding an air-permeable apron in circulation jointly around the apron cage and an apron top roller, the apron top roller being formed by the first top roller or by a third top roller that is assigned to the apron cage and arranged on the same side as the first and second top roller in relation to the fiber band being transported, and the apron cage having at least one through-opening, to which negative pressure can be applied, for applying suction air to the fiber band running between the first and second top roller, through the air-permeable apron.
2. The drafting system unit according to claim 1, characterized in that, in the fiber band transport direction (R), the through-opening is at a smaller distance from the second top roller than from the apron top roller.
3. The drafting system unit according to claim 1, characterized in that the through-opening is formed at an opposite end of the apron cage to the second top roller.
4. The drafting system unit according to claim 1, characterized in that the through-opening is formed as a slot extending transversely to the fiber band transport direction (R).
5. The drafting system unit according claim 1, characterized in that the through-opening is arranged so as to face the fiber band between the side edges thereof.
6. The drafting system unit according to claim 1, characterized in that the second top roller forms an output top roller for the drafting system comprising the drafting system unit.
7. A drafting system for a spinning machine, having a first roller pair, which comprises a first top roller and a first bottom roller, and a second roller pair, which is formed by a second top roller and a second bottom roller, the first and second roller pair being spaced apart from one another in a fiber band transport direction (R) and being provided for drafting a fiber band transported from the first to the second roller pair, the respective axes of rotation of the first and second roller pair extending transversely to the fiber band transport direction (R), characterized in that an apron cage to which negative pressure can be applied is arranged between the first roller pair and the second roller pair for guiding an air-permeable apron in circulation jointly around the apron cage and an apron top roller, the apron top roller being formed by the first top roller of the first roller pair arranged upstream in the fiber band transport direction, or by a third top roller that is assigned to the apron cage and arranged on the same side as the first and second top roller in relation to the fiber band being transported, and the apron cage having at least one through-opening, to which negative pressure can be applied, for applying suction air to the fiber band running between the first roller pair and the second roller pair, through the air-permeable apron.
8. The drafting system for a spinning machine according to claim 7, characterized in that the apron top roller, the first and second top roller, and the apron cage form a drafting system unit having, in a fiber band transport direction (R), a first top roller and a second top roller spaced apart therefrom, which are provided for drafting a fiber band, transported from the first to the second top roller, in cooperation with accordingly assigned bottom rollers, the respective axes of rotation of the first and second top roller extending transversely to the fiber band transport direction (R), wherein an apron cage to which negative pressure can be applied is arranged between the first top roller and the second top roller for guiding an air-permeable apron in circulation jointly around the apron cage and an apron top roller, the apron top roller being formed by the first top roller or by a third top roller that is assigned to the apron cage and arranged on the same side as the first and second top roller in relation to the fiber band being transported, and the apron cage having at least one through-opening, to which negative pressure can be applied, for applying suction air to the fiber band running between the first and second top roller, through the air-permeable apron.
9. A method of using a fiber band compression device for compressing, within a drafting system, a drafted fiber band passing through an output top roller of a drafting system, the fiber band compression device having an apron cage, to which negative pressure can be applied, for guiding an air-permeable apron in circulation around an apron top roller and the apron cage, which has at least one through-opening to which negative pressure can be applied, characterized in that the fiber band compression device is arranged between a first roller pair and a second roller pair of the drafting system such that the apron cage guides the air-permeable apron jointly around the apron top roller and the apron cage, the apron top roller being formed by the first top roller of the first roller pair arranged upstream in the fiber transport direction, or by a third top roller that is assigned to the apron cage and arranged on the same side as the top rollers of the first and second roller pair in relation to the fiber band being transported, and the through-opening is arranged to apply suction air to the fiber band running between the spaced-apart roller pairs, through the air-permeable apron.
10. The method of using a fiber band compression device according to claim 9, characterized in that the apron top roller, the first and second top roller, and the apron cage form a drafting system unit of a spinning machine, the drafting system unit having, in a fiber band transport direction (R), a first top roller and a second top roller spaced apart therefrom, which are provided for drafting a fiber band, transported from the first to the second top roller, in cooperation with accordingly assigned bottom rollers, the respective axes of rotation of the first and second top roller extending transversely to the fiber band transport direction (R), characterized in that an apron cage to which negative pressure can be applied is arranged between the first top roller and the second top roller for guiding an air-permeable apron in circulation jointly around the apron cage and an apron top roller, the apron top roller being formed by the first top roller or by a third top roller that is assigned to the apron cage and arranged on the same side as the first and second top roller in relation to the fiber band being transported, and the apron cage having at least one through-opening, to which negative pressure can be applied, for applying suction air to the fiber band running between the first and second top roller, through the air-permeable apron.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0029] The invention will be explained in greater detail below on the basis of embodiment examples shown in the drawings.
[0030]
[0031]
[0032]
[0033] In the following description of embodiment examples, the same or similar reference signs are used for the elements shown in the various figures and those having a similar action, in which case the descriptions of these elements are not repeated.
DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0034] The following description of the embodiments of the present invention is merely exemplary in nature and is in no way intended to limit the invention, its application, or uses. The following description is provided herein solely by way of example for purposes of providing an enabling disclosure of the invention, but does not limit the scope or substance of the invention.
[0035]
[0036] Between the first top roller 2 and the second top roller 4, an apron cage 8, to which negative pressure can be applied, is arranged for guiding an air-permeable apron 10 in circulation jointly around the apron cage 8 and an apron top roller 6, which is formed by a third top roller 6 that is assigned to the apron cage 8 and arranged in the apron cage 8 according to this embodiment example. In relation to the fiber band being transported in the fiber band transport direction, the apron top roller 6 is arranged on the same side as the first 2 and second 4 top roller. Alternatively, according to one embodiment example, the apron top roller can be formed by the first top roller 2, in which case the air-permeable apron 10 thus runs around the first top roller 2.
[0037] The apron cage 8 has at least one through-opening 12, to which negative pressure can be applied, for applying suction air to the fiber band running between the first 2 and second 4 top roller, through the air-permeable apron 10. The through-opening 12 is arranged on the apron cage 8 facing the fiber band, and is connected to a negative pressure source (not shown) either indirectly by means of the apron cage 8 or directly. For this purpose, the through-opening 12 can be coupled to negative pressure conduit formed together with the apron cage 8, or to an external negative pressure conduit leading to the through-opening 12. The through-opening 12 can have a shape selected as required for applying the suction air to the fiber band by means of the air-permeable apron 10.
[0038]
[0039] The drafting system 20 has a first roller pair 2, 3, which is formed by the first top roller 2 and a first bottom roller 3 interacting therewith. The first top roller 2 and the first bottom roller 3 are arranged such that a clamping line is formed in between them for clamping the fiber band being guided between the first top roller 2 and the first bottom roller 3. During drafting system 20 operation, the first roller pair 2, 3 rotates at a defined first rotational speed in such a manner as to transport the fiber band in the fiber band transport direction R.
[0040] In addition, a second roller pair 4, 5 is provided, which is formed by the second top roller 4 and a second bottom roller 5 interacting therewith, in a manner equivalent to the first roller pair 2, 3. During drafting system 20 operation, the second roller pair 4, 5 rotates at a higher speed than the first roller pair 2, 3. In this embodiment example, the second roller pair 4, 5 forms the output roller pair of the drafting system 20. Due to the different rotational speeds between the first 2, 3 and second 4, 5 roller pairs, the fiber band being transported in a clamped manner from the first roller pair 2, 3 to the second roller pair 4, 5 is drawn. In this embodiment example, the region formed between the clamping lines of the first 2, 3 and second 4, 5 roller pairs forms a main drawing field HZ. The first 2, 3 and second 4, 5 roller pairs can be driven in the normal manner, for example by means of a single drive of the associated top or bottom roller or by means of a common drive driving a plurality of bottom rollers or one joint bottom roller of drafting systems arranged in the machine longitudinal direction.
[0041] The drafting system 20 further has a third roller pair 14, 15, which is formed, in an equivalent manner to the first 2, 3 and second 4, 5 roller pairs, by a fourth top roller 14 and a fourth bottom roller 15 interacting therewith. In this embodiment example, the third roller pair 14, 15 forms the input roller pair for the drafting system 20, the fiber band being introduced into the drafting system 20 by means of said input roller pair. During drafting system 20 operation, the third roller pair 14, 15 rotates at a lower speed than the first, roller pair 2, 3. As a result, an additional drafting region, a pre-drawing field, is formed between the first roller pair 2, 3 and the input roller pair 14, 15, the fiber band undergoing initial drafting to a lesser extent in said pre-drawing field than in the main drawing field.
[0042] According to this embodiment example, an apron cage 8 having an apron top roller 6 and an air-permeable apron 10 circulating jointly around the apron cage 8 and the apron top roller 6 is arranged in each case in both the pre-drawing field VZ and the main drawing field HZ. The apron cage 8 is connected to a negative pressure source (not shown) and has a negative pressure conduit leading to a through-opening 12. In each apron cage 8, the through-opening 12 is provided facing the fiber band being transported, close to the first 2, 3 or second 4, 5 roller pair arranged downstream in the fiber band direction R, so as to apply suction air to the fiber band through the air-permeable apron 10. Advantageously, the through-opening 12 can be formed at the opposite edge of the apron cage 8 to the downstream first 2, 3 or second 4, 5 roller pair so as to ensure the suction air is applied to the fiber band through the air-permeable apron 10 either as close as possible to or in the nip region of the corresponding downstream first 2, 3 or second 4, 5 roller pair.
[0043] The described embodiment examples shown in the figures are only selected by way of example. Different embodiment examples can be combined with one another completely or with regard to individual features. Also, an embodiment example can be supplemented by features of a further embodiment example.
[0044] If an embodiment example has an and/or link between a first feature and a second feature, this should be understood to mean that the embodiment example according to one embodiment comprises both the first feature and the second feature and, according to a further embodiment, comprises either only the first feature or only the second feature.
LIST OF REFERENCE SIGNS
[0045] 1 Drafting system unit
[0046] 2 First top roller
[0047] 2R Axis of rotation of the first top roller
[0048] 3 First bottom roller
[0049] 4 Second top roller
[0050] 4R Axis of rotation of the second top roller
[0051] 5 Second bottom roller
[0052] 6 Third top roller
[0053] 7 Third bottom roller
[0054] 8 Apron cage
[0055] 10 Air-permeable apron
[0056] 12 Through-opening
[0057] 20 Drafting system
[0058] HS Outward flow
[0059] OR Top roller direction of rotation
[0060] R Fiber band transport direction
[0061] S Drag flow
[0062] UR Bottom roller direction of rotation
[0063] VS Pre-drawing field
[0064] HZ Main drawing field
[0065] It will therefore be readily understood by those persons skilled in the art that the present invention is susceptible of broad utility and application. Many embodiments and adaptations of the present invention other than those herein described, as well as many variations, modifications and equivalent arrangements, will be apparent from or reasonably suggested by the present invention and the foregoing description thereof, without departing from the substance or scope of the present invention. Accordingly, while the present invention has been described herein in detail in relation to its preferred embodiment, it is to be understood that this disclosure is only illustrative and exemplary of the present invention and is made merely for purposes of providing a full and enabling disclosure of the invention. The foregoing disclosure is not intended or to be construed to limit the present invention or otherwise to exclude any such other embodiments, adaptations, variations, modifications and equivalent arrangements.