Recyclable pole of an electric apparatus
09691567 ยท 2017-06-27
Assignee
Inventors
Cpc classification
H01H2009/0077
ELECTRICITY
H01H33/66207
ELECTRICITY
International classification
Abstract
An electrical equipment includes easily separable components, where, in particular, the electrical connections are immobilized by screws in a body, and can be extracted by a simple translational movement when the screws have been removed. The active part can also easily extractable. When combined with the fabrication of an outer body made of thermoplastic material, these features, allowing for easy disassembly, make it possible to easily recycle the equipment, which may be a circuit breaker, a switch, etc.
Claims
1. An electrical switchgear pole, comprising: an outer body, an active part retained in a housing of the body, and connections passing through first and second openings in a wall of the body and extending outside the body and inside the housing, wherein the connections include portions having constant cross-sections or tapering towards the housing, and are secured in the first and second openings by at least one detachable blocking device that is perpendicular or oblique to the first and second openings, and wherein the body has at least one third opening formed therein, said at least one third opening being separate from said first and second openings, and the at least one detachable blocking device is accessible through the at least one third opening.
2. The electrical switchgear pole according to claim 1, wherein the body is made of recyclable material.
3. The electrical switchgear pole according to claim 1, wherein the at least one blocking device includes screws.
4. The electrical switchgear pole according to claim 1, wherein at least one part of the at least one blocking device occupies one of the at least one third opening.
5. The electrical switchgear pole according to claim 1, wherein the body is overmoulded on the connections.
6. The electrical switchgear pole according to claim 1, wherein the housing of the body comprises an opening for the active part and has a regular cross-section or widening toward the opening.
7. The electrical switchgear pole according to claim 6, wherein the active part is equipped with sliding collars in the housing.
8. The electrical switchgear pole according to claim 1, wherein the at least one blocking device secures the connections to the active part.
9. The electrical switchgear pole according to claim 1, wherein the connections comprise cylindrical outer portions, and inner portions with irregular cross-section, having imbrications in the first and second openings.
10. An electrical switchgear pole, comprising: an outer body, an active part retained in a housing of the body, and connections passing through openings in a wall of the body and extending outside the body and inside the housing, wherein the connections include portions having constant cross-sections or tapering towards the housing, and are secured in the openings by at least one detachable blocking device, wherein the connections comprise cylindrical outer portions and inner portions with irregular cross-section, having imbrications in the openings, and wherein the inner portions comprise grooves extending in an axial direction from the openings, the grooves being filled by the material of the body.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The invention is described more fully in its various aspects, features and advantages in connection with the following Figures, which illustrate a non-exclusive embodiment:
(2)
(3)
(4) and
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENT
(5)
(6) The upper connection 3 comprises (
(7) The lower connection 4 also comprises an outer cylindrical portion 12, advantageously of revolution, and an inner portion 9, in the shape of a flat tab and whose thickness face features a groove 10; the inner portion 9 preferably has the same or smaller cross-section than the outer portion 8 so to further facilitate the extraction. The end of the tab features a fixing hole 11 and an inner portion 13 of smaller cross-section, and which is provided with a longitudinal groove 14 and a threaded hole 15 in the radial direction. The inner portion 13 preferably has the same or smaller cross-section than the outer portion 12 so to further facilitate the extraction. The switchgear further comprises an upper screw 16 for fixing the upper connection 3 and the active part 2, the head of which is created in a seat 17 recessed at the top of the body 1 and the rod of which passes through the upper part of the body 1, the fixing hole 11, and is screwed into an internal thread created at the top of the active part 2. When the upper screw 16 is in place, it thus prevents the active part 2 from falling to the bottom of the housing 5 and to exit the body 1, and it also prevents the upper connection 3 from being extracted out of the upper opening 6. A lower screw 18 is engaged in the threaded hole 15. The screws 16 and 18 are advantageously perpendicular to the openings 6 and 7, and therefore to the connections 3 and 4, without it being necessary.
(8) The active part 2 includes a cylindrical housing 19, provided with two collars 20 in the form of projecting strips, which are in sliding abutment on the inner face of the body 1. The active part 2 shown here is a vacuum bottle. An internal control mechanism 21, housed at the bottom of the body 1, can be seen which will be actuated by a separate element, not shown, outside the pole. A lower cover 22 is screwed to the bottom of the body 1 of an opening 26 of the housing to close the housing 5; alternatively, a membrane may be used to close the housing. Another element of the active part 2 is a movable contact 27. The lower screw 18 passes through a hole in the movable contact 27 and thus connects it to the lower connection 4. It is internal to the housing 5, but accessible from the outside its head, through which it can be removed, being directed towards the opening 26, and situated in a widening 28 of the housing 5, which allows a tool to be inserted through the opening 26.
(9) The features of the invention relate mainly to the possibility of easily separating its components for recycling purposes. This can be done easily by removing the screws 16 and 18. The connections 3 and 4, being composed of portions whose cross-section is constant or tapering towards the interior of the openings 6 and 7 can then be extracted, without effort or with minimal effort, from the body 1, and the active part 2 can be easily extracted through the opening 26 once the lower cover 22 has been removed, by pulling it downward, thanks to the reduced friction that it exerts against the body 1 by the collars 20 of small size. There is no danger of tearing or destruction of material, which guarantees perfect separation of the various materials once the components have been dismantled. This design is compatible with good dielectric strength, as significant relief is avoided, since the electrical connections 3 and 4 and the screw 16 are contained in the openings and the bores of the body 1 are nearly flush with its surface. The screw 18 is inside the body 1. Good mechanical cohesion is guaranteed despite the ease with which the various elements are separated, since the active part 2 remains firmly held in the body 1 and that the interlocking (clearly shown in
(10) The manufacture can be accomplished by overmoulding the body 1 onto the connections 3 and 4: the thermoplastic material of the body 1 thus enters the grooves 10 and 14, forming tabs 23 and 24, shown in
(11) The electrical switchgear may notably be low, medium or high voltage switchgear, such as a circuit breaker, a switch, a recloser, contactor, disconnector, or other element. Certain thermoplastic materials that are suitable for constructing the body 1 are polyethylene, high density polyethylene, polyethylene terephthalate, polypropylene, polystyrene, aliphatic or semi-aromatic polyamide, polyphthalamide, polyarilamide, or any other injectable thermoplastics or TPE (thermoplastic elastomers).
(12) Many other embodiments are of course possible. In this manner, numerous types of blocking means are possible. Several screws 16 or 18 may be provided to retain the connections 3 and 4 and the active part 2 with greater force. The blocking means, such as screws 16 and 18 can pass through the wall of the body 1 perpendicularly or obliquely, or, if they are internal such as the screw 18, they may be oblique or perpendicular to the connections 3 and 4. There is obviously a large choice of cross-sectional shapes for the inner portions 9 and 13, in order to prevent the connections 3 and 4 from pivoting, such as flats, dovetails, etc., and in general all cross-sections of irregular shape.
(13) Once the active part 2 and the connections 3 and 4 have been removed from the body 1, the hence unusable components can then be recycled directly, and the others reused without precautions, since they were not damaged during removal, and notably no part of the constituents were torn and remain on a neighbouring component, which could require extra sorting work. The guarantee of not damaging the still usable components and therefore being able to reuse them is an important advantage of the invention.