COMBING DEVICE FOR COMBING A FIBER MATERIAL
20230123666 · 2023-04-20
Inventors
Cpc classification
D01G19/10
TEXTILES; PAPER
D01G31/006
TEXTILES; PAPER
International classification
Abstract
A combing machine includes a machine frame, drive unit, gearing mechanism, operating device, and nipper unit pivotably mounted in the machine frame and having a lower nipper plate with a nipper lip and an upper nipper plate. The combing machine also includes a pair of detaching rollers forming a clamping line, wherein a drive arm of the nipper unit is connected to an intermittently-driven nipper shaft in a rotationally-fixed manner. The nipper shaft is driven by means of a coupling element, which is connected to a driven gearing element. An adjusting device connected to the nipper shaft is provided for adjusting a distance between the nipper lip and the clamping line. The gearing mechanism also includes a fixation in a basic position with a mechanical blocking, and a sensor for measuring the distance or a variable proportional to the distance, and a display of the distance on the operating device.
Claims
1-11. (canceled)
12. A combing machine, comprising: a machine frame; a plurality of combing heads arranged in the machine frame; a drive unit, the combing heads connected to the dive unit; a gearing mechanism arranged in the drive unit; an operating device to use in inputting and displaying values; a pair of detaching rollers forming a clamping line therebetween at each of the combing heads; a nipper unit pivotably mounted in the machine frame at each of the combing heads, the nipper unit comprising: a lower nipper plate with a nipper lip and an upper nipper plate; a drive arm connected to an intermittently-driven nipper shaft in a rotationally-fixed manner; the nipper shaft driven by a nipper auxiliary shaft connected to a coupling element that is connected to a driven gearing element; an adjusting device connected to the nipper shaft to adjust a distance (d) between the nipper lip of the lower nipper plate and the clamping line; a mechanical blocking configured to fix the gearing mechanism in a basic position during adjustment of the distance (d) by the adjusting device; and a sensor disposed to measure the distance (d) or a variable proportional to the distance (d), wherein the distance (d) is displayed on the operating device.
13. The combing machine according to claim 12, wherein the basic position corresponds to a position of the gearing mechanism in which the distance (d) is smallest.
14. The combing machine according to claim 12, wherein the coupling element comprises: a cam disk attached in a rotationally-fixed manner to the nipper auxiliary shaft; a cam roller resting against the cam disk; and a cam roller lever held in a rotationally-fixed manner on the nipper shaft and in which the cam roller is rotatably mounted, wherein the mechanical blocking is disposed to engage and block the cam disk.
15. The combing machine according to claim 12, wherein the mechanical blocking comprises a latching lever.
16. The combing machine according to claim 12, wherein the adjusting device is mounted behind a protection device that also covers the coupling element.
17. The combing machine according to claim 12, wherein a size of the display of the distance (d) on the operating device is adjustable.
18. The combing machine according to claim 12, wherein the operating device comprises an additional display at a region of the adjusting device.
19. The combing machine according to claim 18, wherein one or both of the operating device and the additional display are rotatable or displaceable relative to the combing machine.
20. A method for adjusting a combing machine, comprising: transferring a gearing mechanism of the combing machine into a basic position; fixing the gearing mechanism in the basic position with a mechanical blocking; switching an operating device of the combing machine to display a distance (d) between a nipper lip of a lower nipper plate and a clamping line defined by a pair of detaching rollers at a combing head of the combing machine; releasing a connection between a coupling element and a nipper shaft, the nipper shaft driven by a nipper auxiliary shaft connected to the coupling element and the coupling element connected to a driven gearing element; adjusting the distance (d) with an adjusting device; securing the connection between the coupling element and the nipper shaft; and releasing the mechanical blocking of the gearing mechanism.
21. The method according to claim 20, wherein a display of the operating device automatically switches to a measurement value display of the distance (d) when a protection device over the adjusting device is opened and the connection between the coupling element and the nipper shaft is released.
22. The method according to claim 21, when when the protection device is closed, the display of the operating device automatically switches back to a state before the adjustment.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0029] The invention is shown and explained in more detail with reference to an exemplary embodiment below. In the drawings:
[0030]
[0031]
[0032]
[0033]
[0034]
[0035]
DETAILED DESCRIPTION
[0036] Reference will now be made to embodiments of the invention, one or more examples of which are shown in the drawings. Each embodiment is provided by way of explanation of the invention, and not as a limitation of the invention. For example features illustrated or described as part of one embodiment can be combined with another embodiment to yield still another embodiment. It is intended that the present invention include these and other modifications and variations to the embodiments described herein.
[0037]
[0038]
[0039] In order to carry out the reciprocating pivoting movement of the nipper unit 16, the latter is supported in its front region on both sides on pivot arms 30, which are rotatably mounted on the lower nipper plate 17 and on a stationary circular comb axis 22. In the rear region of the nipper unit 16, the latter is supported via drive arms 32 which are arranged in parallel to one another and are mounted rotatably on the axis 31 of the nipper unit 16. On their opposite end, the drive arms 32 are connected in a rotationally-fixed manner to a stationarily-mounted nipper shaft 33. This rotationally-fixed connection takes place via the clamping force of the schematically indicated screws 35, which clamp the schematically indicated half-shells 34 of the working arm 32 against the nipper shaft 33. The nipper movement is driven via a discontinuous movement of the nipper shaft 32, which is described in more detail below.
[0040] The nipper unit 16 in the position shown in
[0041]
[0042] During normal operation of the combing machine, the nipper shaft 33 performs a reciprocating movement (arrow 56). This reciprocating movement takes place in a specific range of the ecartement “d” known to the control unit. By the measurement of the distance sensor 38, the control unit can monitor whether the movement 54 of the nipper shaft 33 moves in this predetermined range or deviates therefrom. In the case of a deviation, there is a risk of collision, and the combing machine can be switched off by the control unit or a warning can be output to the operator.
[0043]
[0044] In the region of the cam disk, a blocking 43 for the gearing mechanism is provided by way of example. With the blocking, the cam disk 47 and thus also the nipper auxiliary shaft 39, as well as the drive wheel 41 and the gearing element 42, as well as further gear parts connected to the gearing element 42, are blocked in a predetermined position. An adjusting device 44 is shown schematically in simplified form on the nipper shaft axis 34. The adjusting device 44 is connected to the coupling element 46 and extends up to an outer side of the drive unit 2. The adjusting device 44 is used to adjust the ecartement when the nipper auxiliary shaft 39 is blocked. In this case, the radial position of the nipper shaft 33 relative to the coupling element 46 is changed.
[0045] Attached on the outer side of the drive unit 2 is a protective device 45 which protects the blocking 43 and the adjusting device 44 from external influences and also undesired access. The protective device 45 may correspond to the gearing mechanism cover or be designed as a separate, detachable or pivotably-attached cover.
[0046]
[0047] The present invention is not limited to the embodiments shown and described. Modifications and a combination of the features within the scope of the claims are likewise possible, even if they are shown and described in different exemplary embodiments.
LEGEND
[0048] 1 Machine frame [0049] 2 Drive unit [0050] 3 Conveyor belt [0051] 4 Combing head [0052] 5 Drive shaft [0053] 6 Gearing mechanism [0054] 7 Batting roll [0055] 8 Fiber strip [0056] 9 Conveyor table [0057] 10 Stretching unit [0058] 11 Calender rollers [0059] 12 Turntable [0060] 13 Canister [0061] 14 Operating device [0062] 15 Display [0063] 16 Nipper unit [0064] 17 Lower nipper plate [0065] 18 Nipper lip [0066] 19 Upper nipper plate [0067] 20 Feed cylinder [0068] 21 Circular comb [0069] 22 Circular comb axis [0070] 23 Circular comb segment [0071] 24 Pair of detaching rollers [0072] 25 Clamping line [0073] 26 Top comb [0074] 27 Batting [0075] 28 Fiber tuft [0076] 29 Nonwoven [0077] 30 Front pivot arm [0078] 31 Nipper axis [0079] 32 Drive arm [0080] 33 Nipper shaft [0081] 34 Nipper shaft axis [0082] 35 Half-shell [0083] 36 Screw [0084] 37 Eccentric [0085] 38 Distance sensor [0086] 39 Nipper auxiliary shaft [0087] 40 Nipper auxiliary shaft axis [0088] 41 Drive wheel of nipper auxiliary shaft [0089] 42 Gearing element [0090] 43 Blocking [0091] 44 Adjusting device [0092] 45 Protection device [0093] 46 Coupling element [0094] 47 Cam disk [0095] 48 Cam roller [0096] 49 Cam roller lever [0097] 50 Latching lever [0098] 51 Transverse pin [0099] 52 Flange [0100] 53 Slit [0101] 54 Additional display [0102] 55 Movement of the nipper auxiliary shaft [0103] 56 Movement of the nipper shaft [0104] d Ecartement