The present invention relates to plug connectors of the so-called push-pull locking mechanism type. The plug connectors are preferably then used if the intention is to plug and unplug the plug connector in a simple manner.
DE 101 17 738 C1, DE 10 2012 100 615 A1 and U.S. Pat. No. 4,902,045 A disclose a so-called push-pull plug connector having plug positioning means that are formed on the housing body.
CN 2 03 386 951 U and DE 10 2014 105 144 A1 disclose push-pull plug connectors having separate plug positioning means.
WO 2015 007 268 A1 discloses a plug connector that comprises a push-pull locking mechanism. In the case of plug connectors of this type it is also possible for plugging connections to be performed incorrectly. The type of locking mechanism does not protect against the plug connector being plugged by way of example into a device socket having a screw connection. The latching arms of the push-pull locking mechanism can grip around an unsuitable cylindrical device socket having an inner thread and can even provide a false impression that the locking connection has been performed correctly.
The object of the invention is to propose a plug connector having a simplified push-pull locking mechanism with which it is possible to avoid plugging connections being performed incorrectly plugging.
The plug connector in accordance with the invention is embodied essentially from a cylindrical housing body. The housing body comprises at least one step that forms two different regions having different housing diameters. The region having the smaller diameter defines the so-called plugging region. The plugging region is a region that is plugged into a socket or a mounting flange of a device. The region having the larger diameter forms a so-called base region. By way of example, the locking device of the plug connector is fixed to the base region.
The plug connector comprises a locking means that is connected in a loss-proof manner to the housing body. Moreover, the plug connector comprises an actuating means that is operatively connected to the locking means. The term “operatively connected” in this case is understood to mean that the locking means can be mechanically moved by means of actuating the actuating means so that by way of example the plug connector is unlocked from a mounting flange and the plug connector can be pulled out.
The plug connector comprises a plug positioning means that at least in part comprises the above-mentioned plugging region of the housing body. The plug positioning means ensures a plug connection that protects against media such as dust and water. Moreover, the plug positioning means prevents the plug connector from being plugged in incorrectly. The function of the plug positioning means is explained more precisely below.
It is preferred that the locking means is fixed to the base region of the housing body with the aid of a resilient ring.
In an advantageous embodiment of the invention, the plug positioning means comprises two circumferential grooves, wherein one groove is oriented inwards, in other words towards the plugging region, and one groove is oriented outwards. In each case a sealing ring is arranged in the grooves. The plug connector ensures in the plugged state a particularly effective sealing arrangement with respect to media by virtue of this combination of circumferential grooves and sealing rings that are located in said grooves.
In an advantageous embodiment of the invention, the plug positioning means comprises three circumferential grooves, wherein two grooves are oriented inwards, in other words towards the plugging region, and one groove is oriented outwards. In each case a sealing ring is arranged in the grooves. The plug connector ensures in the plugged state a particularly effective sealing arrangement with respect to media by virtue of this combination of circumferential grooves and sealing rings that are located in said grooves.
The locking means advantageously comprises at least one locking arm that is oriented parallel with respect to the plugging region. However, the locking arm does not make physical contact with the connecting region. A latching hook is formed on the end of the at least one locking arm, said latching hook being used so as to reversibly contact the plug connector to a mounting flange and/or a mating plug connector.
The plug connector preferably comprises multiple locking arms that are oriented in a circumferential manner and parallel with respect to the plugging region.
In a particularly preferred embodiment, the plug positioning means is arranged between the locking means and the plugging region.
The mounting flange in accordance with the invention comprises a hollow cylinder. The inner region of the hollow cylinder comprises at least one step that forms two different regions having different inner diameters. The region having the larger diameter forms the so-called insertion region. The insertion region is configured as threadless. You could also say that the inner region of the hollow cylinder when viewed opposite the plugging direction is configured as threadless until the step. As a consequence, it is possible to rapidly and in a simple manner insert a plug connector.
An exemplary embodiment of the invention is illustrated in the drawings and is further explained hereinunder. In the drawings:
The figures include partially simplified, schematic illustrations. In part identical reference numerals are used for identical elements, but where appropriate also for non-identical elements. Various views of the same elements could be scaled differently.
The plug connector 1 comprises a locking means 3 that is fastened by way of a resilient ring 4 on the housing body 5 of the plug connector 1. Moreover, the plug connector 1 comprises a plug positioning means 6 that is arranged between the housing body 5 and the locking means 3.
The plug positioning means 6 includes three circumferential grooves, wherein two grooves 7, 8 are arranged on the interior or are oriented inwards and one groove 9 is oriented outwards. Sealing rings 10 are arranged in the respective grooves. The sealing rings 10 in the inner grooves 7, 8 seal the plug connector 1 itself. The sealing ring 10 that is located in the outer groove 9 seals the system of mounting flange 2 and plug connector 1 in the plugged state.
The diameter of the plugging region 11 of the housing body 5 is enlarged using the plug positioning means 6 in such a manner that it is no longer possible to plug the plug connector 1 incorrectly into a mounting flange having an insertion region having an inner thread.
The region having the smaller diameter forms the plugging region 11. The plugging region 11 is at least partially inserted so as to plug into the mounting flange 2. The region having the larger diameter is referred to as the base region 12. The base region 12 comprises a circumferential groove 13 and the resilient ring 4 for fixing the locking means 3 is embedded in said circumferential groove. By way of example, electrical contact elements (not illustrated) are arranged in the housing body 5 and said electrical contact elements are connected to individual conductors (not illustrated) of a multicore cable (not illustrated).
The invention relates to a plug connector (1) that is embodied from a cylindrical housing body (5) that comprises at least one step that forms two different regions (11, 12) having different housing diameters, wherein the region having the smaller diameter is configured as a plugging region (11) and the region having the larger diameter is configured as a base region (12), wherein the plug connector (1) comprises a locking means (3) that is connected in a loss-proof manner to the housing body (5), wherein the plug connector (1) comprises an actuating means (16) that is operatively connected to the locking means (3), wherein the plug connector (1) comprises a plug positioning means (6) that at least in part comprises the plugging region (11).
The invention likewise relates to a mounting flange that matches the plug connector, said mounting flange comprising an insertion region (20) that is configured as a hollow cylinder, wherein the inner region of the hollow cylinder comprises at least one step that forms two different regions having different inner diameters, wherein the inner region of the insertion region (20) is configured as threadless.
Number | Date | Country | Kind |
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10 2015 103 135 | Mar 2015 | DE | national |
Filing Document | Filing Date | Country | Kind |
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PCT/DE2016/100040 | 2/1/2016 | WO | 00 |
Publishing Document | Publishing Date | Country | Kind |
---|---|---|---|
WO2016/138890 | 9/9/2016 | WO | A |
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Number | Date | Country |
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203386951 | Jan 2014 | CN |
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Entry |
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German Office Action issued in corresponding German Application Serial No. 102015103135.3 dated Oct. 28, 2015 (6 pages). |
International Search Report issued in corresponding PCT Application Serial No. PCT/DE2016/100040 dated May 12, 2016 with English translation (5 pages). |
Written Opinion of the International Search Authority issued in corresponding PCT Application Serial No. PCT/DE2016/100040 (7 pages). |
Number | Date | Country | |
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20170358889 A1 | Dec 2017 | US |