ASSEMBLY OF AN ELECTRIC CABLE WITH A CABLE TERMINAL
20220190491 · 2022-06-16
Inventors
Cpc classification
H01R13/5205
ELECTRICITY
International classification
Abstract
Method for crimping a cable terminal onto an electric cable includes providing an electric cable having an outer insulation sheath and at least one conductive strand with a sheathed portion, and providing a terminal having shrink wings and provide a gasket having a sealing portion and a shrink portion. The method also includes stripping the electrical cable so that a stripped portion is formed, positioning the shrinkage portion of the joint so that it directly overlaps the stripped portion of the cable without the shrinkage portion overlapping the sheathed portion of the cable, and fully crimping the shrink wings onto the shrink portion of the joint without the shrink wings covering the sheathed portion of the cable.
Claims
1. An assembly of an electric cable and a cable terminal, comprising: the cable being provided with an outer insulation sheath and at least one conductive strand, and having a sheathed portion and a stripped portion, the assembly further having a gasket with a sealing portion and a shrinkage portion, the terminal having cargo wings, and wherein the sealing portion of the gasket is assembled on the sheathed portion of the cable, the shrinking portion of the joint is assembled directly onto the stripped portion of the cable, and the shrinkage wings are fully assembled on the shrinkage portion of the joint.
2. The assembly according to claim 1, wherein the shrink wings do not overlap when crimped onto the shrink portion of the joint.
3. The assembly according to claim 1, wherein the shrink portion has a shoulder arranged to abut the sheathed portion of the rope.
4. The assembly according to claim 1, wherein the terminal has one of a distal male part or a distal female part.
5. A method for crimping a cable terminal onto an electric cable, comprising: providing an electrical cable having an outer insulation sheath and at least one conductive strand, with a sheathed portion, providing a terminal having shrink wings and provide a gasket having a sealing portion and a shrink portion, stripping the electrical cable so that a stripped portion is formed, positioning the shrinkage portion of the joint so that it directly overlaps the stripped portion of the cable, without the shrinkage portion overlapping the sheathed portion of the cable, and fully crimping the shrink wings onto the shrink portion of the joint without the shrink wings covering the sheathed portion of the cable.
6. The method according to claim 5, comprising positioning the sealing portion of the gasket at the sheathed portion of the cable without the sealing portion of the gasket covering the stripped portion of the cable.
7. The method according to claim 5, comprising completely crimping the crimping wings onto the crimping portion of the joint without overlapping the crimping wings.
8. The method according to claim 5, wherein the step of stripping the electrical cable so as to form a stripped portion, is replaced by the step of supplying the electrical cable with the stripped portion.
9. The method according to claim 5, comprising abutting a shoulder of the crimping portion of the joint on the sheathed portion of the cable.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0021] Other characteristics and advantages of the present description will become clearer when reading the following detailed description of a given mode of realization as a non-limitative example and illustrated by the annexed drawings, in which :
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DETAILED DESCRIPTION
[0029]
[0030] The assembly of power cable 1 with a power cable terminal 10 is shown. Terminal 10 has shrink wings 15. The assembly further has a joint 11 having a sealing portion 14 and a shrinkage portion 12, wherein the sealing portion 14 of joint 11 is assembled on the sheathed portion 1g of wire 1, and the shrinkage portion 12 of joint 11 is assembled directly on the stripped portion 1d of wire 1. The shrink wings 15 are fully assembled on the shrink portion 12 of joint 11. Joint 11 is rotationally symmetrical and can easily be manufactured using a two-component molding process.
[0031] In an example design, seal 11 is made of a plastic material, in particular silicone. The sealing portion 14 has waves on its outer diameter, which vary between 4.25 mm and 7.2 mm. Sealing portion 12 has a smaller diameter than sealing portion 14. Shrinkage portion 12 may have a diameter of 2.3 mm (or between 2 and 3 mm). Shrink portion 12 can be 3.2 mm long and the sealing portion can be 4.3 mm long.
[0032] The shrink wings 15 are made of metal, for example, steel, and are connected to a second shrink portion 16 directly crimped or pinched on the conductive strands 2. The second binding portion 16 is connected to a distal part 17, which can be male or female, so as to connect terminal 10 to another compatible distal part 17 of another terminal 10. The second clamping portion 16 and the distal part 17 are made of a conductive material, for example, steel. The second binding portion 16, when crimped onto the conductive strands 2, leaves a short end 2a of the conductive strands 2. Thus, an electrical current can flow from the conductive strands 2 of cable 1 to the distal part 17.
[0033] The crimping portion 12 of joint 11 is positioned on the stripped portion 1d of cable 1, so that it is in direct contact with the conducting wires 2. The shrinkage wings 15 are then clamped onto the shrinkage portion 12 of joint 11, and closed on shrinkage portion 12, without the shrinkage wings 15 touching each other. The example two 15-strand wings will then fully contact the 12-strand portion of joint 11, but will not be placed next to each other. A gap of 0.2 mm may thus be present between the wings of lamination 15 at their distal end, when closed.
[0034] In one example, joint 11 has an internal shoulder 18 (shown schematically in
[0035] The shoulder 18 is made at the diameter change between the shrinkage portion 12 and the sealing portion 14 of seal 11, so that it faces the sheathed portion 1g when inserting seal 11 into cable 1 from the stripped portion 1d along the longitudinal axis XX′. Thus, shoulder 18 abuts the sheathed portion 1g at the YY′ axis. Seal 11 also has a collar 19, so that it guides the shrink-fit wings 15, especially during crimping and after crimping.
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[0039] The process may have the additional step of abutting the shoulder 18 of the shrink portion 12 of seal 11 on the sheathed portion 1g of cable 1g at the YY′ axis. This ensures the correct positioning of joint 11 of terminal 10.
[0040]
[0041] The next step is to completely crimp the shrink wings 15 onto the shrink portion 12 of joint 11 without the shrink wings 15 covering the sheathed portion 1g of wire 1. This ensures that the shrinkage portion 12 is not injured during crimping.
[0042] In addition, the entire crimping of the crimp wings 15 to the crimp portion 12 of joint 11 is carried out without the crimp wings 15 overlapping. The crimping step of the second crimping portion 16 on the conductive strands 2 is also performed.
[0043] It is possible to supply power cable 1 directly with the increased stripped portion 1d, i.e. the step of stripping power cable 1 is carried out directly with the correct rib. In other words, the stripped portion 1d is directly with the correct stripped dimension.
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[0046] It should also be understood that although a particular component arrangement is disclosed in the illustrated embodiment, other arrangements will benefit herefrom. Although particular step sequences are shown, described, and claimed, it should be understood that steps may be performed in any order, separated or combined unless otherwise indicated and will still benefit from the present invention.
[0047] It is understandable that various modifications and/or improvements obvious to the skilled craftsman can be made to the different methods described in this description. In particular, reference is made to the reversal of steps provided this is not incompatible. It is also possible to provide neutral distal parts that can be coupled regardless of the corresponding distal part to be coupled.
[0048] Although the different examples have specific components shown in the illustrations, embodiments of this invention are not limited to those particular combinations. It is possible to use some of the components or features from one of the examples in combination with features or components from another one of the examples.
[0049] Although an example embodiment has been disclosed, a worker of ordinary skill in this art would recognize that certain modifications would come within the scope of the claims. For that reason, the following claims should be studied to determine their true scope and content.