Split connector with circular dove tail
10135158 ยท 2018-11-20
Assignee
Inventors
Cpc classification
International classification
Abstract
An electrical connector is disclosed. The electrical connector has a first body and a second body. The second body is mechanically coupled to the first body in a coupling state and enters the coupling state through a lateral side of the first body.
Claims
1. An electrical connector, comprising: a first body having a cavity with a lateral opening and a threaded passageway; a second body mechanically coupled to the first body in a coupling state, the second body having a coupler entering the cavity in a lateral direction orthogonal to a longitudinal direction of the first body through the lateral opening of the first body; a clamping bolt received in the threaded passageway of the first body; and a coupling bolt smaller in diameter and different in shape than the clamping bolt extending through a coupling threaded passageway positioned above the cavity, abutting the coupler inside the cavity, and fixing the first body to the second body in the coupling state, the coupling bolt having a tip with a flat base and a pair of inclined edges, the flat base engaging an inner region of the coupler and the pair of inclined edges engaging a pair of conical shapes of the coupler disposed on opposite sides of the inner region.
2. The electrical connector of claim 1, wherein a front end of the first body is mechanically coupled to a front end of the second body in the coupling state.
3. The electrical connector of claim 1, wherein the coupler abuts the cavity in the coupling state.
4. The electrical connector of claim 1, wherein the cavity has a frontal opening receiving the coupler in the longitudinal direction.
5. The electrical connector of claim 1, wherein the coupler is a protrusion extending from a front end of the second body along a central axis of the second body, the coupler having a shape with cylindrical symmetry about the central axis.
6. The electrical connector of claim 5, wherein the coupler has a circular, dovetail profile.
7. The electrical connector of claim 6, wherein the cavity has an inner profile matching at least a part of the shape of the coupler.
8. The electrical connector of claim 6, wherein the inner profile of the cavity has one or more recesses engaging the coupler.
9. The electrical connector of claim 6, wherein the tip of the coupling bolt has a shape that matches an outer shape of the coupler.
10. The electrical connector of claim 9, wherein the tip has a conical shape matching the dovetail profile of the coupler.
11. The electrical connector of claim 10, wherein the tip moves the coupler into the cavity when the coupling bolt is tightened against the coupler.
12. The electrical connector of claim 1, further comprising an electrical contact element disposed on a front end of the second body and electrically connected with a border on a front end of the first body.
13. The electrical connector of claim 12, wherein the electrical contact element is a disc of electrically conductive material, the electrical contact element pressed against the border when the first body is coupled to the second body.
14. The electrical connector of claim 1, wherein the first body and the second body have a plurality of clamping threaded passageways receiving a plurality of clamping bolts clamping cables to the first body and the second body.
15. The electrical connector of claim 14, wherein the plurality of clamping threaded passageways are disposed on an upper side of the first body and the second body with a non-zero displacement angle with respect to each other.
16. The electrical connector of claim 1, wherein the connector is a split connector.
17. The electrical connector of claim 1, wherein the coupler has a circular profile and the second body can be coupled to the first body in any rotation position.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The invention will now be described by way of example with reference to the accompanying figures, of which:
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DETAILED DESCRIPTION OF THE EMBODIMENT(S)
(11) The invention is explained in greater detail below with reference to embodiments of a connector. This invention may, however, be embodied in many different forms and should not be construed as limited to the embodiments set forth herein; rather, these embodiments are provided so that this disclosure will be thorough and complete and still fully convey the scope of the invention to those skilled in the art.
(12) A connector 1 according to the invention is shown generally in
(13) The first and second bodies 10, 20, as shown in
(14) The first body 10 is shown in
(15) The second body 20 is shown in
(16) In other embodiments, the first structured surface 16 and the second structured surface 26 may extend over different areas or over the whole surface of the inner side of, respectively, the first passageway 21 and the second passageway 22 depending on the application. The first and second structured surfaces 16, 26 may also be divided into more than one structured area.
(17) The coupler 40, as shown in
(18) The cavity 50, as shown in
(19) The first body 10 and the second body 20 are configured to be mechanically coupled together; the connector 1 is a split connector formed by connecting two halves that correspond to the first and second bodies 10, 20. However, the principles of the present invention may also be applied to other types of mechanical connectors formed by more than two connecting parts.
(20) The connector 1 is shown in a decoupled state in
(21) The cylindrical symmetry of the coupler 40 permits the coupler 40 to be inserted inside the coupling cavity 50 with any orientation and to be freely rotated by 360 about the longitudinal axis AA. Moreover, the coupling cavity 50 is also provided with an inner profile that matches at least a part of the shape of the coupler 40 and permits the free rotation of the coupler 40. Thus, since the connection between the two connecting parts 10, 20 has a free rotation of 360, each of the connecting parts 10, 20 can be oriented in line with a sector shape of the first and second electrical cables.
(22) The first and second bodies 10, 20 are fixed together in the coupling state shown in
(23) The coupling bolt 34 contacts the annular groove 29, and consequently, the coupling bolt 34 can clamp the coupler 40 against a side of the cavity 50 irrespectively of the orientation of the coupler 40 inside the cavity 50. The first and second bodies 10, 20 can be clamped in any rotation position with respect to each other. The coupling bolt 34, as shown in
(24) In order to establish a good electrical connection between the first and second bodies 10, 20 in the coupled state, an electrical contact element 28, as shown in
(25) When the coupling bolt 34 is tightened against the coupler 40 located inside the cavity 50, the force applied by the inclined edges of the tip 35 against the inclined edges of the groove 29 forces the coupler 40 to move fully into the cavity 50, thereby bringing the first and second bodies 10, 20 together and efficiently securing the coupler 40 inside the cavity 50. The tightening of the coupling bolt 34 also forces the edges of the coupler 40 to enter into the recesses 56, the recesses 56 engaging the coupler 40 and locking the coupler 40 into the coupling position. At the same time, since the electrical contact element 27 is also pressed against the border 18 at the front edge of the first body 10 when the coupling bolt 34 is tightened, a good and stable electrical coupling between the first and second connecting parts 10, 20 can be ensured.
(26) Although the above embodiments of the connector 1 were described in view of the application of the connector 1 to connect electrical power supply cables, the principles of the present invention can also be advantageously applied to any mechanical connector and/or for other applications.
(27) Advantageously, in the connector 1 according to the invention, the connector 1 is a split connector formed by connecting two halves that correspond to the first and second bodies 10, 20; this has the advantage that the connector 1 has a compact design and is easy to install. Furthermore, due to the relative angular displacement among the threaded passageways 13, 14, 15, 24, and 25, the plurality of clamping bolts 30, 32, 36, and 38 and the coupling bolt 34 can be located closer to each other, further reducing the size of the connector 1. Additionally, by establishing the electrical coupling between the first and second bodies 10, 20 via electrical contact elements as described above, the electrical contact is no longer done by the coupler 40 but by the larger flat surface of the electrical contact element itself, leading to a better electrical connection.