METHOD FOR PRODUCING A LINER HOSE FOR LINING PIPES AND APPARATUS FOR CARRYING OUT THE METHOD
20170136684 · 2017-05-18
Inventors
Cpc classification
B29C63/024
PERFORMING OPERATIONS; TRANSPORTING
B29C66/80
PERFORMING OPERATIONS; TRANSPORTING
B29C66/532
PERFORMING OPERATIONS; TRANSPORTING
F16L11/24
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B29C53/566
PERFORMING OPERATIONS; TRANSPORTING
B29C53/60
PERFORMING OPERATIONS; TRANSPORTING
B29C63/0004
PERFORMING OPERATIONS; TRANSPORTING
F16L11/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B29C63/34
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A method for producing a liner hose (2) for lining pipelines, comprising the method steps of moving a circumferentially closed inner film hose (4) over a winding mandrel (6) of a winding apparatus (8) and wrapping the inner film hose (4), which is guided on the winding mandrel (6) by means of a guide mechanism (18), with a fibrous strip (12) which has been impregnated with curable reaction resin, is characterized in that the inner film hose (4) is guided via endless pulling means (14) that circulate without a drive, and in that the inner film hose (4) that has been wrapped with the fibrous strip (12) is moved off of the winding mandrel (6) solely by a pull-off mechanism (16) which acts from the outside on the fibrous strip (12). The invention further relates to a device for carrying out the method.
Claims
1. A method for producing a liner hose (2) for lining pipelines, comprising the following method steps: moving a circumferentially closed inner film hose (4) over a winding mandrel (6) of a winding apparatus (8), wrapping the inner film hose (4), which is guided on the winding mandrel (6) by means of a guide mechanism (18), with a fibrous strip (12) that has been impregnated with curable reaction resin, wherein the inner film hose (4) is guided via endless pulling means (14) that circulate without a drive, and in that the inner film hose (4) that has been wrapped with the fibrous strip (12) is moved off of the winding mandrel (6) solely by a pull-off mechanism (16) which acts from the outside on the fibrous strip (12).
2. The method according to claim 1, wherein the guide element (10) is acted upon by a counter force which is directed counter to the pull-off force exerted on the liner hose (2) by the pull-off mechanism (16).
3. The method according to claim 2, characterized in that the counter force is adjustable.
4. The method according to claim 1, wherein the pull-off mechanism (16) comprises at least one driven roller or at least one driven circulating belt, which can be placed against the exterior of the liner hose (2) for the purpose of generating a pull-off force outside of the area of circulation in which the fibrous strip (12) is guided around the inner film hose by the winding apparatus (8) in the area of an endlessly circulating pulling means (14).
5. An apparatus for producing a liner hose (2) for lining pipelines, which comprises a circumferentially closed inner film hose (4) and at least one fibrous strip (12) which is wound onto the inner film hose (4) and is impregnated with a curable reaction resin, said apparatus having a winding mandrel (6) on which a guide mechanism (18) is arranged, over which the inner film hose (4) is moved by a pull-off mechanism (16), wherein the guide mechanism comprises an endlessly circulating pulling means (14) which is movable substantially parallel to the surface of the winding mandrel (6), and which is moved over at least two free-running, non-driven guide rollers (20) held on the winding mandrel (6).
6. The apparatus according to claim 5, wherein the pulling means is a chain or a belt (14) having a mushroom cap-like cross-section.
7. The apparatus according to claim 6, wherein the belt (14) has chain link-like reinforcing elements (22) on its underside.
8. The apparatus according to claim 6 or 7, wherein the belt (14) has a central fixed member (24) on its underside, and is mounted on ball bearings (26) on both sides of the central fixed member.
9. The apparatus according to claim 8, wherein a braking element is assigned to at least one guide roller (20).
10. The apparatus according to claim 9, wherein an adjustment device (40) for adjusting the diameter of the winding mandrel (6) is assigned to the guide mechanism.
11. The apparatus according to claim 10, wherein the pull-off mechanism (16) comprises at least one driven roller or at least one driven circulating belt, which circulates outside of the circulating area of the winding apparatus (8), in the area of an endlessly circulating pulling means (14), and can be placed against the exterior of the liner hose (2).
12. The apparatus according to claim 11, wherein the guide mechanism (18) is held on the winding mandrel (6) such that it is movable in the radial direction, and is acted on by resiliently elastic means (28) with a substantially constant resiliently elastic force in the radial direction.
13. The apparatus according to claim 12, wherein the resiliently elastic means (28) comprise a pneumatic spring element (30) that can be connected to a compressed air source.
Description
IN THE DRAWINGS
[0036]
[0037]
[0038]
[0039]
[0040]
[0041] As is shown in the diagram of
[0042] Guide mechanism 18 has an endlessly circulating pulling means which is movable substantially parallel to the surface of winding mandrel 6, and which is preferably embodied as a circulating belt 14, over which inner film hose 4 is pulled by a pull-off mechanism 16 containing two pulling rollers. Although the endlessly circulating pulling means may also be embodied as a chain with separate chain links, on each of which a contact surface, e.g. provided with a rubber-like coating, is formed, in the interest of clarity the invention will be described below in the context of the example of a circulating belt 14.
[0043] As is further clear from the diagram of
[0044] In the following, the method for producing a liner hose 2 for lining pipes will be described with reference to
[0045] Pull-off mechanism 16 thus moves inner film hose 4, which enters pull-off mechanism 16 in the form of liner hose 2 wrapped with fibrous strip 12 following several revolutions of winding apparatus 8, beyond winding mandrel 6 at a speed which is synchronized with the rotational movement of winding apparatus 8. Inner film hose 4 is guided in a manner according to the invention solely via the drivelessly circulating endless belt 14 of the respective guide mechanisms 18, of which with small diameters at least 2, and with large diameters four, six or even up to eight guide mechanisms may be provided on winding mandrel 6. During production according to the invention, inner film hose 4 wrapped with fibrous strip 12 is advanced over winding mandrel 6 solely by pull-off mechanism 16 acting on the exterior of fibrous strip 12.
[0046] According to an alternative embodiment of apparatus 1 according to the invention that is not illustrated in the drawings, pull-off mechanism 16 may also comprise, in addition or alternatively to the two pull-off rollers 16 shown in
[0047]
[0048] Guide mechanisms 18 can further be movably held via guides (not shown), for example linear guides having an end stop, on winding mandrel 6, the position of a guide mechanism 18 which is held resiliently on the winding mandrel preferably being adjusted such that during the production process, the guide mechanism is preferably deflected only up to one-half of the maximum movement path.
[0049]
[0050]
[0051] Finally,
LIST OF REFERENCE SIGNS
[0052] 1 apparatus according to the invention [0053] 2 liner hose [0054] 4 inner film hose [0055] 6 winding mandrel [0056] 8 winding apparatus [0057] 12 fibrous strip [0058] 14 circulating pulling means/belt [0059] 16 pull-off mechanism [0060] 18 guide mechanism [0061] 20 guide roller [0062] 22 chain link-like reinforcing elements [0063] 24 central fixed member [0064] 26 ball bearing [0065] 28 resiliently elastic means [0066] 30 spring element [0067] 31 damping element [0068] 32 support tube [0069] 34 pin [0070] 36 round gear rack [0071] 38 central shaft [0072] 40 adjustment device