This application claims priority from German Patent Application No. 103 49 101.5, filed Oct. 17, 2003, the entire disclosure of which is incorporated herein by reference.
The invention relates to an arrangement at a draw frame comprising a suction device for removing dust, fibre dust and the like, in which a sliver funnel and a pair of draw-off rollers are present at the outlet of the draw frame after the drawing system.
In a known draw frame, open suction sites are arranged in the vicinity of the draw-off rollers and the sliver funnel in order to remove fibre dust that has been released. As a result of the intensive emergence of fibre and dust particles having considerable dynamic energy at locations where the fibre sliver is being compressed, the open suction sites are not able to prevent contamination of the environment sufficiently. Some of the waste particles having impetus in different directions fly past the suction sites.
It is an aim of the invention to provide an arrangement of the type described at the beginning that avoids or mitigates the mentioned disadvantages and in particular effectively catches and removes the waste that is released.
The invention provides a fibre transport assembly for use in a draw frame comprising:
As a result of the measures according to the invention, it is possible to enclose the sources of waste in such a manner that the streams of dust and fibre are specifically directed and conveyed to the suction sites provided for their removal. The integration of positioning elements into the geometry of the suction removal channels creates construction elements having a twofold function. In that manner, it is possible for the region between the drawing system and the draw-off rollers to be kept clean by suction removal. At the same time, accessibility for maintenance and servicing is improved considerably.
Advantageously, the flow channel is arranged or constructed to overlap the intake region of the funnel and the nip between the draw-off rollers. Advantageously, the flow channel is able to catch the dust, short fibres and the like emerging from the intake and from the outlet of the funnel. Advantageously, a cover element is present on the suction removal device, which cover element partially covers the flow channel. Advantageously, the cover element is in the form of a roof or the like. Advantageously, the cover element is constructed to overlap the intake region of the funnel and the nip between the draw-off rollers. The flow channel (viewed in the direction of fibre feed), is advantageously arranged upstream of the intake region of the funnel. Advantageously, the flow channel has suction openings which (viewed in the direction of fibre feed) are arranged upstream of the nip between the draw-off rollers. Advantageously, the cover element is constructed in two parts. Advantageously, the cover element surrounds a transfer pipe associated with the funnel. Advantageously, the transfer pipe passes through the flow channel. Advantageously, the two parts of the cover element can separated from one another. Advantageously, a web-guiding element and the transfer pipe are positioned on the fixed-position part of the cover element. Advantageously, the cover element comprises a fixed-position part and a movable part. Advantageously, the flow channel is a cast piece, e.g. cast from aluminium. Advantageously, the flow channel has at least one opening. Advantageously, a said opening faces the nip between the draw-off rollers. Advantageously, the flow channel faces the intake region of the funnel. Advantageously, the flow channel encompasses (encapsulates) the intake region of the sliver funnel and the nip between the draw-off rollers. Advantageously, a suction pipe of the suction removal device is connected to a pneumatic suction source, e.g. mechanical suction. Advantageously, the suction pipe and the movable part are mounted to pivot on a pivot bearing. Advantageously, the suction pipe and the movable part are mounted on the pivotable drawing system hood. Advantageously, the flow channel and the funnel form a constructional unit. Advantageously, the flow channel is integrated into the inlet of the funnel (funnel flap). Advantageously, a fixed-position part of the cover element and a web-guiding-positioning element form a functional unit. Moreover, the invention provides a fibre transport assembly for use in a draw frame, comprising:
a shows a suction removal device according to the invention in the operating position;
b
b shows the device of
With reference to
According to
In the embodiment of
As shown in
Air flows C and D enter the flow channel 15 directly and air flows E and F enter the flow channel 15 through the suction openings 151 and 152. The air flows C, D, E and F are removed by suction as air flow G by way of the suction pipe 14a through the flow channel 15 having the cover element 14b.
In the embodiment of
According to
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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103 49 101 | Oct 2003 | DE | national |
10 2004 037 957 | Aug 2004 | DE | national |
Number | Name | Date | Kind |
---|---|---|---|
4630336 | Schopwinkel et al. | Dec 1986 | A |
4922580 | Bothner et al. | May 1990 | A |
5305498 | Lang | Apr 1994 | A |
6052984 | Summerer | Apr 2000 | A |
6209303 | Stahlecker | Apr 2001 | B1 |
6604261 | Stoll et al. | Aug 2003 | B2 |
6988355 | Stahlecker et al. | Jan 2006 | B2 |
20010020357 | Dinkelmann et al. | Sep 2001 | A1 |
20060143872 | Cherif | Jul 2006 | A1 |
Number | Date | Country |
---|---|---|
36 30 941 | Mar 1988 | DE |
85 14 152.6 | Apr 1988 | DE |
Number | Date | Country | |
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20050081336 A1 | Apr 2005 | US |