Device for interconnecting cables
11394137 ยท 2022-07-19
Assignee
Inventors
Cpc classification
H01R4/5025
ELECTRICITY
International classification
Abstract
A device is provided for interconnecting cables having a core strand and at least one layer of strands coaxially surrounding the core strand comprises a central tightening member; first and second cylindrical segments having an opening for insertion of an end of a cable and being tightenably connected to the tightening member. An inner conical member is arranged within each cylindrical segment, having a central bore arranged for insertion of an end of the core strand and further having an outer sloping surface on which a layer of strands coaxially surrounding the core strand may be positioned. A cylindrical end piece is arranged within each cylindrical segment, having a central bore arranged for insertion of the cable and further having an inner sloping surface on which a layer of strands coaxially surrounding the core strand may be positioned.
Claims
1. A device for interconnecting cables of the type having a core strand and at least one layer of strands coaxially surrounding the core strand, the device comprising: a solid central tightening member having entirely flat surfaces at its axial ends that span the entire width of said device; first and second cylindrical segments, each cylindrical segment having an opening for insertion of an end of a cable at its distal end and being tightenably connected to the solid central tightening member at its central end; an inner conical member arranged within each cylindrical segment, the inner conical member having a central bore arranged for insertion of an end of the core strand of the cable, the inner conical member further having an outer sloping surface on which a layer of strands coaxially surrounding the core strand of the cable may be positioned, the inner conical member further having a flat contact surface, opposite said outer sloping surface, said flat contact surface being the entire dimension of said inner conical member and for contacting said flat surfaces at said axial ends of said solid central tightening member; a cylindrical end piece arranged within each cylindrical segment, the end piece having a central bore arranged for insertion of the cable, the end piece further having an inner sloping surface on which a layer of strands coaxially surrounding the core strand of the cable may be positioned; wherein axial tightening of the solid central tightening member causes the inner conical member and the end piece to be axially pressed together with the layer of strands coaxially surrounding the core strand sandwiched between them, resulting in a stable interconnection of the cables' ends.
2. The device according to claim 1, wherein the solid central tightening member is provided with threads, and the first and second cylindrical segments are provided with corresponding threads that are mateable with the threads of the solid central tightening member, the axial tightening of the solid central tightening member being achieved by relative rotation between the solid central tightening member and the first and second cylindrical segments.
3. The device according to claim 2, wherein the solid central tightening member is provided with external threads and the first and second cylindrical segments are provided with internal threads.
4. The device according to claim 1, wherein an intermediate conical member is arranged within each cylindrical segment, the intermediate conical member having a central bore arranged for insertion of the core strand and an intermediate layer of surrounding strands of the cable, the intermediate conical member further having an inner sloping surface on which an intermediate layer of strands coaxially surrounding the core strand of the cable may be positioned, and an outer sloping surface on which an outermost layer of strands coaxially surrounding the core strand of the cable may be positioned.
5. The device according to claim 4, further comprising additional conical members arranged within each cylindrical segment, each additional conical member corresponding to an additional layer of surrounding strands of the cable.
6. The device according to claim 1, wherein the conical members have essentially the same slope on their outer surfaces.
7. The device according to claim 6, wherein the conical members have rear conical openings with an inner slope arranged to accept the forward conical portion of an adjacent conical member.
8. The device according to claim 1, wherein the solid central tightening member and the first and second cylindrical segments include engagement means for engagement with corresponding tightening tools.
9. The device according to claim 8, wherein the engagement means includes collars provided are faceted outer surfaces of the solid central tightening member and the first and second cylindrical segments.
10. A spliced cable, including two cables of the type having a core strand and at least one layer of strands coaxially surrounding the core strand, and a device as set forth in claim 1 for interconnecting the cables.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The features and advantages of the invention will be apparent from the following detailed description of exemplary embodiments, with reference to the attached drawings, wherein:
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DETAILED DESCRIPTION OF THE INVENTION
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(12) As illustrated in
(13) The cable 100 may serve as a wire, with the purpose of bearing mechanical loads or tension, or it may serve as an electrical conductor, in particular for transferring electric power. An outer sheath 140 may in some cases be arranged outside the outermost layer of strands. If the cable is an electric power cable, the outer sheath 140 may typically be an insulation sheath, made of an electrically insulating material.
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(15) The device 200 is for interconnecting cables of the type shown in
(16) Also shown in
(17) When used with the device 200, the strands of the cables 100 are advantageously cut to same length before the strands are inserted into the device.
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(19) Corresponding to what is shown in
(20) An inner conical member 310 is arranged within each cylindrical segment 340. The inner conical member 310 has a central bore arranged for insertion of an end of the core strand 110 of the cable 100. The inner conical member 310 further has an outer sloping surface on which the first layer of strands 120 coaxially surrounding the core strand 110 of the cable may be positioned when the device is used to interconnect the two cable segments 100.
(21) Further, a cylindrical end piece 350 is arranged within each cylindrical segment 340. The end piece 350 is arranged within the distal end of the cylindrical segment, and may typically rest against an internal flange, ridge or rim arranged at the distal end of the cylindrical segment 340. The end piece 350 may be a separate part mounted within the cylindrical segment 340, or it may be an integrated portion of the cylindrical segment 340. In any case, the end piece 350 has a central bore arranged for insertion of the cable, corresponding to the opening 360 in the cylindrical segment 340. Further, the end piece 350 further has an inner sloping or inner conical surface. One of the layers of strands coaxially surrounding the core strand 110 of the cable may be positioned on the inner sloping surface of the end piece 350.
(22) In the embodiment shown in
(23) If the cables used with the device 200 includes additional layers of coaxially arranged strands, the device 200 may further include additional conical members arranged within each cylindrical segment 340. In this case, each additional conical member may correspond to an additional layer of surrounding strands of the cable. The additional conical member may have the same shape and construction as the conical member 320.
(24) Advantageously, all the conical members have essentially the same slope on their outer surfaces. Also, the conical members advantageously have rear conical openings with an inner slope arranged to accept the forward conical portion of an adjacent conical member.
(25) The central tightening member 330 and the cylindrical segments may be axially tightened in such a way that the inner conical member 310 and the end piece 350 will be axially pressed together with the layer of strands 120 coaxially surrounding the core strand 110 sandwiched between them, resulting in a stable interconnection of the cables' ends.
(26) In order to obtain the axial tightening, the central tightening member 330 may suitably be provided with threads, and the first and second cylindrical segments 340 are provided with corresponding threads that are mateable with the threads of the central tightening member 330. The axial tightening of the central tightening member 330 is in this case achieved by relative rotation between the central tightening member 330 and the first and second cylindrical segments 340. Typically, the central tightening member 330 may be provided with external threads and the first and second cylindrical segments 340 may be provided with internal threads. In order to provide a beneficial tightening function, the central tightening member 330 advantageously has flat surfaces at its axial ends, as shown in
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(32) The device 200 and its components, i.e. the central tightening member 330, the first and second cylindrical segments 340, the inner conical member 310, the cylindrical end piece 350 and any further conical members such as the intermediate conical member 230, may be made of suitable materials according to use requirements, including hardness, tensile strength, etc. In many applications, various steel materials, e.g. stainless steel, may be applicable for the device 200 and its components.
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(35) As shown in
(36) The present specification also discloses a device 200 as described above, used to interconnect two cables. This results in a spliced cable, including two cables of the type having a core strand 110 and at least one layer of strands 120 coaxially surrounding the core strand 110 and a device as disclosed on the above specification for interconnecting the cables.