Compacting Device for a Spinning Machine
20200216985 · 2020-07-09
Inventors
Cpc classification
D01H1/025
TEXTILES; PAPER
International classification
Abstract
The invention relates to a compacting device, comprising two suction drums (17), wherein a suction drum (17) in each case is associatable with a pair of delivery rollers (7, 8) of drafting unit (2) of a spinning machine, wherein the pair of delivery rollers (7, 8) is made up of a bottom delivery roller (7) and a top delivery roller (8); wherein the suction drums (17) are rotatably supported, via a bearing, on a shaft that is fastened to a carrier element (41); wherein a suction channel (31) extends within the carrier element (41), and wherein the suction drums (17) each have a drive element (40) which in the operating position forms a drive connection with the bottom delivery roller (7). The invention is characterized in that a protective shield (42) for preventing lap formation is situated on the axle (19) of the clamping rollers (18). The invention further relates to a protective shield (42) and a corresponding textile machine.
Claims
1. A compacting device, comprising two suction drums (17), wherein a suction drum (17) in each case is associatable with a pair of delivery rollers (7, 8) of a drafting unit (2) of a spinning machine, wherein the pair of delivery rollers (7, 8) is made up of a bottom delivery roller (7) and a top delivery roller (8); wherein the suction drums (17) are rotatably supported, via a bearing, on a shaft that is fastened to a carrier element (41); wherein a suction channel (31) extends within the carrier element (41), wherein the suction drums (17) each have a drive element (40) which in the operating position forms a drive connection with the bottom delivery roller (7), and wherein on the carrier element (41) two clamping rollers (18) are rotatably supported centrally in a bearing (20) on a shared axle (19), wherein for forming a clamping line, each of the clamping rollers (18) rests on the outer circumference of one of the two suction drums (17) under the action of a spring load, characterized in that a protective shield (42) for preventing lap formation is situated on the axle (19) of the clamping rollers (18).
2-15. (canceled)
Description
BRIEF DESCRIPTION OF THE FIGURES
[0016] The invention is explained in greater detail with reference to the appended figures, in which:
[0017]
[0018]
[0019]
[0020] Only those features that are essential to the invention are illustrated. Identical features are denoted by the same reference numerals in the various figures.
APPROACHES FOR CARRYING OUT THE INVENTION
[0021]
[0022] The drafted fiber material 11 delivered by the particular pair of delivery rollers 7, 8 is deflected downwardly and passes into the area of a suction zone 16 of a subsequent suction drum 17, which is part of the compacting device according to the invention. The particular suction drum 17 is provided with perforations or openings 39 extending on its periphery. Following the suction zone 16, for each of the suction drums 17 a clamping roller 18 is provided which rests on the respective suction drum 17 via a pressure load and which with this suction drum forms a clamping line. The particular clamping roller 18 is rotatably supported on an axle 19 which is held in a guide slot 20 of a U-shaped receptacle in a pressure arm 21. The axle 19 is displaceably supported within the guide slot 20, transversely with respect to its longitudinal axis. A tappet that rests on the outer circumference of the axle 19 and is acted on by a schematically indicated compression spring 22 protrudes into the guide slot 20 through an opening in the pressure arm 21. The opening is provided approximately centrally at the end of the guide slot 20, and opens into an essentially closed cavity in the pressure arm 21 in which the compression spring 22 is situated. The compression spring is supported on the closed end of the cavity, and with its opposite end rests on a head of the tappet.
[0023] The pressure arm 21 is supported so as to be pivotable about an axis in a bearing element that is mounted on the end of the pressure arm. In this pivot position, the axes are held at the end of particular guide via a stop edge, schematically shown in
[0024] The pressure lever 10 is subsequently pivoted about its swivel axis 15 from an upper position, indicated by dashed lines, into a lower position in which a pressure force is exerted on the compacting device in the direction of the roller 7 via a leaf spring 24, fastened to the pressure lever 10 by means of screws 23, and the web 25 that is fastened to the leaf spring. The suction drum 17 thus connected is driven by the roller 7 by means of friction via a drive element 40, described below.
[0025] In this operating position, the warped fiber material 11 that is delivered by the drafting system 2 is supplied to the subsequent suction zone 16 of the particular suction drum 17, and compacted in a known manner under the influence of the generated suction air flow. A deflection shield situated at a distance, as illustrated and described in DE 4426249, for example, may be mounted above the suction zone 16. The cited publication also describes the process for compacting the fiber material.
[0026] For generating the required negative pressure in the area of the suction zone 16, a negative pressure source 26 is provided which is connected to a central suction channel 27. The suction channel 27 is connected via a line 28 and a flexible coupling element 29 to the respective end of the suction channel 31 of the compacting device that protrudes in the direction of the suction channel 27. The pivotability of the compacting device about an axis 30 is facilitated by the flexibility of the coupling element 29. The schematically shown coupling element 29 may be designed on its outer circumference in such a way that when two half-shells are joined together, the coupling element is connected in a form-fit manner to a formed suction channel 31, with tight sealing with respect to the outside. The design and composition of the half-shells in such a carrier element are known from WO 2012/068692 A1. The spinning machine may be advantageously retrofitted with the compacting device.
[0027] At the same time, the clamping line created by the clamping roller 18 forms a so-called twist stop gap from which the fiber material 11, in the form of a compressed yarn 32, is fed in the conveying direction to a schematically shown ring spinning device. The ring spinning device is provided with a ring 33 and a traveler 34, the yarn being wound onto a bobbin 35 to form a spool 36 (cop). A thread guide 37 is situated between the clamping line and the traveler 34. The ring 33 is fastened to a ring frame 38 that undergoes an up-and-down motion during the spinning process.
[0028]
LIST OF REFERENCE NUMERALS
[0029] 1 spinning station [0030] 2 drafting unit [0031] 3 bottom feed roller [0032] 4 top feed roller [0033] 4a axle [0034] 5 bottom middle roller [0035] 6 top middle roller [0036] 6a axle [0037] 7 bottom delivery roller [0038] 7a axle [0039] 8 top delivery roller [0040] 8a axle [0041] 9 spring element [0042] 10 pressure arm [0043] 11 fiber sliver [0044] 12 apron [0045] 13 apron [0046] 14 suction zone [0047] 15 axle [0048] 16 suction zone [0049] 17 suction drum [0050] 18 clamping roller [0051] 19 axle of the clamping rollers 19 [sic; 18] [0052] 20 guide slot/bearing [0053] 21 pressure arm [0054] 22 compression spring [0055] 23 screws [0056] 24 leaf spring [0057] 25 web [0058] 26 negative pressure source [0059] 27 suction channel [0060] 28 line [0061] 29 coupling element [0062] 30 axis [0063] 31 suction channel [0064] 32 yarn [0065] 33 ring [0066] 34 ring traveler [0067] 35 cops [0068] 36 spool [0069] 37 thread guide [0070] 38 ring frame [0071] 39 openings [0072] 40 friction wheel, drive wheel [0073] 41 carrier element [0074] 42 protective shield [0075] 43 protective element of the protective shield 42 [0076] 44 web between the protective elements 43