The present invention relates to a device for wetting cable-ends consisting of a conveying unit arranged on a stand and a bath-container with a wetting agent, the conveyer unit conveying the wetting agent stored in the bath-container to the cable-end.
German patent application DE 28 44 236 shows a tin-bath with solder-wave overflow with stripped ends of conductors being tinned in the overflowing solder-wave. By means of a pump, liquid tin is pushed upwards in a column to above the surface of the bath. At the end of the column a nozzle is arranged through which the tin overflows and creates the solder wave. The overflowing tin returns to the bath. Grasped by means of grippers, stripped cable-ends are dipped into the solder-wave, the strands of the cable are heated by the tin, and the tin wets the cable-strands and permeates the cable-strands.
A disadvantage of this known device is that the column is immovably fastened to the bath-container. This hinders cleaning of the surface of the tin-bath, or surface of the bath.
The present invention concerns a device for wetting cable-ends of cables comprising: a conveyor unit mounted on a stand; and a bath-container for retaining a bath of a wetting agent, the conveyer unit extending into the bath-container for conveying the wetting agent stored in the bath-container to a cable-end, whereby the conveyor unit is removably mounted for installation in and removal from the bath-container without the use of tools. The conveyor unit is mounted on at least one support arranged on the stand and on a rest arranged on a front wall of the bath-container, the conveyor unit having at least one supporting pin engaging an opening of the at least one support. The conveyor unit includes a drive, a pump unit operated by the drive, a conveyor pipe connected to an outlet of the pump unit and a nozzle connected to an outlet of the conveyor pipe, whereby when the wetting agent is stored in the bath-container, the drive operates the pump unit to cause the wetting agent to flow from the bath-container through the conveyor pipe and out the nozzle.
The pump unit has a pump-screw for conveying the wetting agent from the bath-container through the conveyor pipe to the nozzle. The nozzle has an exchangeable throttle with an aperture forming a free jet of the wetting agent of predetermined size and shape and at least one lateral drain for draining off a surplus of the wetting agent. The bath-container has at least one downward sloping heatable wall for contacting the wetting agent.
The advantages achieved by the present invention are mainly to be seen in that the parts which are needed to convey the agent for wetting the cable-ends are easy to install and remove. Conveyer pipe, pump, nozzle, and drive form one unit which can be installed in, and removed from, the bath-container without tools. Moreover, the surplus wetting agent is drained off to the side of the nozzle and led back into the bath. The nozzle can therefore be arranged nearer to the front wall of the bath-container with the result that shorter lengths of cable can be subjected to the wetting process. To heat the bath and maintain the temperature of the bath, the bath-container is usually provided with heating from underneath. The bath is heated from the bottom upwards, in consequence of which explosion-like bubbling can occur on the surface of the bath. With the device according to the present invention, the unpredictably occurring bubbles can be avoided. For this purpose the bath-container has at least one sloping heatable wall which rises up from the bottom of the container.
The above, as well as other advantages of the present invention, will become readily apparent to those skilled in the art from the following detailed description of a preferred embodiment when considered in the light of the accompanying drawings in which:
The pump unit 12 is provided with an inlet 12.1 through which the wetting agent reaches an internal pump-screw 12.2. The pump-screw 12.2 is driven by means of a shaft 12.3 which is connected to, and thermally isolated (connector 12.4) from, a drive motor 11.1. The pump-screw 12.2 conveys the wetting agent through the conveyor pipe 13 to the nozzle 14, the wetting agent flowing through drilled holes 14.1 to the exchangeable throttle 15 which determines the form and size of the free jet of the wetting agent. A stripped cable-end 2.1 is brought into the free jet of the wetting agent, the cable conductor or cable strands being heated by the wetting agent, and the wetting agent wetting the cable conductor or cable strands and/or permeating the cable strands. If soldering tin is used as wetting agent, the cable conductor consisting of, for example, copper, is, or the strands consisting of, for example, copper are, tinned. The surplus wetting agent flows down at the side of the nozzle 14 and back into the bath-container 5. Feeding of the stripped cable-ends 2.1 can take place manually or automatically by means of grippers (not shown).
In accordance with the provisions of the patent statutes, the present invention has been described in what is considered to represent its preferred embodiment. However, it should be noted that the invention can be practiced otherwise than as specifically illustrated and described without departing from its spirit or scope.
Number | Date | Country | Kind |
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03405496 | Jul 2003 | EP | regional |
Number | Name | Date | Kind |
---|---|---|---|
2625720 | Ross | Jan 1953 | A |
2742203 | Ethier | Apr 1956 | A |
2864652 | O'Brien et al. | Dec 1958 | A |
3765591 | Cook | Oct 1973 | A |
3896763 | Lau et al. | Jul 1975 | A |
4011980 | Dvorak et al. | Mar 1977 | A |
4071179 | Antonevich | Jan 1978 | A |
4375674 | Thornton | Mar 1983 | A |
4873938 | Ciniglio | Oct 1989 | A |
4975184 | McEwen | Dec 1990 | A |
5030346 | McEwen | Jul 1991 | A |
5135364 | McEwen | Aug 1992 | A |
6134940 | Banks et al. | Oct 2000 | A |
6695923 | Schultz et al. | Feb 2004 | B1 |
6911142 | Pahl et al. | Jun 2005 | B2 |
Number | Date | Country |
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28 44 236 | Aug 1979 | DE |
Number | Date | Country | |
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20050000421 A1 | Jan 2005 | US |