The invention concerns a suspended control device, which is suspended from a unit being controlled via a control line, especially a control switch or a suspended pushbutton switch for controlling a hoisting machine, according to the preamble of Claim 1.
Suspended control devices in the form of a suspended pushbutton switch are known, for example, from EP 0 592 795 A1 and DE-OS 26 03 409, which serve to control the upward and downward movement of a hoisting machine situated above an operator person. The suspended pushbutton switches have a housing, on which a row of pushbuttons are arranged. The switch housing is connected at its upper end via a connection cable to the hoisting machine. The connection cable has a sheath, in which are arranged the electrical control line for transmission of control signals and a traction relief in the form of a steel cable or a metal cable. The traction relief serves to absorb gravity and traction forces and is fastened above to the hoisting machine. Traction forces arise in particular when the operator person pulls transversely on the switch housing in order to move the hoisting machine, which can travel on a beam. For this, a corresponding handle can be provided on the switch housing. On the other hand, the sheath itself can also consist of a solid plastic, so that it can serve additionally as a grip element for the operator.
The drawback of the known suspended control devices consists in that they generally cannot be lengthened. It is only possible to shorten the cable, which furthermore is very time-consuming. Once the length of the connection cable is chosen, one often has to make do with it, despite the poor serviceability.
The purpose of the invention is to indicate a suspended control device in which the control line can be changed in its length with little expenditure.
The purpose is achieved by the features of Claims 1, 14, 1921 and 26. The subsidiary claims contain advantageous configurations of the suspended control device.
A first solution provides a storage for the electrical lines to take up and pay out a predetermined line length, being located after the support point of the traction relief, looking in the direction from the suspended control device to the unit.
Furthermore, it is provided that the traction relief be formed from a flat foldable hose in the manner of a textile hose and the electrical lines travel through the inside of the hose and the hose can be folded up and stored along with the electrical lines in the storage. The use of such a “textile” hose now makes it possible to economically store the portion of the control line not needed for the required length, together with the electrical lines, without having to sacrifice an effective traction relief and an easy gripping of the control line, especially for pulling the unit being controlled. When the hose can be folded up and stored together with the electrical lines in the storage, i.e., folded in the lengthwise and transverse volume, the result is a smaller storage volume.
The gripping of the control line is improved by filling the hose with an elastic material, at least in the area of the gripping of the operator.
It is structurally simple to form the elastic material by a lengthwise slit hollow cylinder, through whose cavity travel the electrical lines or the cable, if they form a cable.
As an alternative, it is also possible to lead the hose through a hollow cylinder made from an elastic material in the gripping region of the operator.
An economical solution calls for the elastic material to be formed from a foam plastic.
In order to assure a long life to the hose, it is proposed that the hose be supported on the unit via a supporting device, which uniformly distributes the gravity and traction forces over the periphery of the hose.
A simple and effective supporting device is formed from a truncated cone, arranged inside the hose, with a continuous opening for the electrical lines and an inner funnel arranged outside the hose and supported against the unit, corresponding to the external shape of the truncated cone, the truncated cone being pulled by the gravity and traction forces into the funnel and thus axially securing the hose against the unit.
As an alternative, it is advantageous for at least part of the funnel to be part of the unit.
For easy assembly, it is proposed that the truncated cone and the funnel each be divided lengthwise and formed from two mating halves.
To allow for loosening the fastening of the hose to the unit, it is proposed that the support device have an element by which the truncated cone can be pushed upward by pressing on the hose from the outside, for which the element is provided with inwardly directed lugs which engage the truncated cone.
Advisedly, the funnel has a lengthwise guide for the outward movable element.
In order to take up the unneeded control line, it is proposed to provide a storage for the electrical lines above the supporting device.
A second solution provides a storage for the electrical lines to take up and pay out a predetermined line length, situated between the suspended control device and the unit, being configured in that the cablelike traction relief and the electrical lines are led downward, at a lower turnaround point back up again at least once, and there again downward via a turnaround element to the suspended control device and are connected to it, and the cablelike traction relief and the electrical lines are clamped together at the lower turnaround point by means of a clamp which can be loosened.
A third solution calls for configuring the cablelike traction relief and the electrical lines as a common cable, which is detachably fastened at a support element arranged on the unit, in that the support element has two neighboring continuous openings with a land element situated in between, in order to lead the cable through the two continuous openings for self-clamping fixation.
A fourth solution provides a storage for the electrical lines to take up and pay out a predetermined line length, located between the suspended control device and the unit, being configured such that the electrical lines are led inside an essentially vertical tube fastened to the unit, having a telescopic extending inner tube, to which the suspended control device is fastened, and both bendable tubes are made of plastic.
A fifth solution calls for the cablelike traction relief and the electrical lines to be fashioned as a common flat cable, and a storage for the cable for taking up and paying out a predetermined line length is located between the suspended control device and the unit, configured such that the cable is wound around a carrying element in the form of a winding frame.
A sample embodiment of the invention shall now be described by means of a drawing. This shows:
The control line 1 has electrical lines 2 in the form of a cable 3, at each of whose ends electrical connectors 4, 5 are secured. The electrical lines 2 in the form of a cable 3 serve to transmit control signals from the suspended control device 20 to the unit 21 being controlled, i.e., the hoisting machine in this case. Of the cable 3 with the electrical lines 2, only the lower portion is shown in
The entire traction relief to absorb the gravity and traction forces which occur is provided solely via the hose 6.
As an alternative, the hose 6 with the cable 3 running on the inside can also itself travel through a hollow cylinder made from an elastic material, which can thus also enclose the hose 6 on the outside.
Furthermore,
The truncated cone 8 is provided with a continuous opening 16, through which travels loosely the cable 3 with the electrical lines 2. If the element 10 is pushed upward, it carries along the truncated cone 8 through the hose 6, so that the connection between truncated cone 8 and funnel 9 is again loosened. It is then possible to ease off the tube 6 with the cable 3 from the storage 14 at the top and, with the truncated cone 8 pushed up, to pull it downward through the supporting device 7, enabling an easy lengthening of the control cable 1.
Vice versa, the control cable 1 can also be shortened in this way.
In the suspended control device 20 of
As
Another suspended control device 20 is shown schematically in
Alternatively, as
A modification of the suspended control device 20 of
An enlarged view of the carrier element 33 in the manner of a winding frame is shown in
In the suspended control device 20 of
The carrier element 33 is configured as a cable clamp 34 in the manner of a film joint 34, as shown in
Number | Date | Country | Kind |
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102 31 798 | Jul 2002 | DE | national |
202 16 079 U | Oct 2002 | DE | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/EP03/06923 | 6/30/2003 | WO | 00 | 8/18/2005 |
Publishing Document | Publishing Date | Country | Kind |
---|---|---|---|
WO2004/007334 | 1/22/2004 | WO | A |
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Number | Date | Country |
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1819497 | Jul 1960 | DE |
Number | Date | Country | |
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20060180562 A1 | Aug 2006 | US |