High Voltage Disconnection Telescopic Switch Insulated by Air With a Moving Contact with Pressure Supply
20170263396 · 2017-09-14
Inventors
Cpc classification
H01R13/53
ELECTRICITY
H01H1/50
ELECTRICITY
H01R13/629
ELECTRICITY
International classification
Abstract
This invention makes reference to interrupter high voltage air-insulated telescopic disconnection switch with moving contact for supplying pressure, consisting of: a first male conductor comprising a first guide-positioner means internally coupled with such first male conductor via an intermediate section, a plurality of double-sided contact plates peripherally coupled with the intermediate section border; a second female conductor coaxially separated from the first male conductor comprising a second guide-positioner means internally coupled with such second female conductor by an intermediate section; a plurality of double-sided contact plates peripherally coupled with the intermediate section border; a moving conductor consisting of guide means internally coupled with such moving conductor by an intermediate support, being such conductor mobile and coaxially coupled with the interior of the first male conductor, where it moves to an open position, and is separated from the first male conductor and to a close position where such moving conductor causes a contact between the first male conductor and the second female conductor, by interacting among themselves to the first guide-positioner means of the first male conductor, the second guide-positioner means of the second female conductor and the guide means of the moving conductor; a plurality of contact plates peripherally coupled with the intermediate support border of the moving conductor, each of such contact plates having contact means for supplying pressure.
Claims
1. A high voltage disconnection telescopic switch insulated by air with moving contact with pressure supply, which comprises: a main male conductor (1) consisting of a first guide-positioner (4) internally coupled to that main male conductor (1) by an intermediate plate (1a), a plurality of plates of double-sided contact (1b) peripherically coupled to the intermediate plate border (1a); a second female conductor (2) coaxially separated from the first male conductor (1) comprising a second guide-positioner means (5) internally coupled to such second female conductor (2) by an intermediate section (6), a plurality of plates of double-sided contact (1b) peripherically coupled to the intermediate section border (6); a mobile conductor (3) consisting of guide means (31, 33a, 33b) internally coupled with that conductor (3) by an intermediate support (30), said mobile conductor (3) being coaxially copied to the interior of the first male conductor (1); where such mobile conductor (3) moves between an open position, where such mobile conductor (3) is separated from the first male conductor (1), and a closed position where such mobile conductor (3) causes a contact between the first male conductor (1) and the second female conductor (2), by means of interacting among them from the first guide-positioner means (4) of the first male conductor (1), the second guide-positioner means (5) of the second female conductor (2) and the guide means (31, 33a, 33b) of the mobile conductor (3); and a plurality of contact plates (35) peripherically coupled to the intermediate support border (30) of the moving conductor (3), each of the contact plates (35) having means for supplying pressure (35a, 35b).
2. A high voltage disconnection telescopic switch insulated by air with moving contact with pressure supply according to claim 1, characterized by pressure supply means in concordance with a plurality of contact fingers (35a, 35b).
3. A high voltage disconnection telescopic switch insulated by air with moving contact with pressure supply according to claim 1, characterized in that each of the plurality of the contact plates (35), which comprises a transverse groove (35e) arranged at the bottom of the plate, likewise, in the top surface of such plate and at the same height a plurality of coupling bores (35f).
4. A high voltage disconnection telescopic switch insulated by air with moving contact with pressure supply according to claim 2, characterized in that the contact fingers (35a, 35b) of reduced aluminum section cause the required elastic deformation for the given current.
5. A high voltage disconnection telescopic switch insulated by air with moving contact with pressure supply according to claim 2, characterized in that the contact fingers (35a) from the back of the plate consist of an aluminum reduced section (35c). Likewise, the contact fingers (35b) of the front of the plate comprise a reduced section (35d).
6. A high voltage disconnection telescopic switch insulated by air with moving contact with pressure supply according to claim 2, characterized in that the contact fingers (35a, 35b) are independent.
7. A high voltage disconnection telescopic switch insulated by air with moving contact with pressure supply according to claim 2, characterized in that the contact fingers (35a, 35b) of the moving contact for supplying pressure have two ball elevations (35a′, 35b′), one front lower elevation (35b′) which is designed to physically interact with the modular female contact (2), a higher back elevation (35a′) aimed to physically interact with the surfaces of the modular male conductor (1).
8. A high voltage disconnection telescopic switch insulated by air with moving contact with pressure supply according to claim 1, characterized in that the modular assembly of the female conductor, the male conductor and the moving contact allow the replacement of any part that may be subject to a catastrophic failure, without the removal of the isolated-phase bus switch.
9. A high voltage disconnection telescopic switch insulated by air with moving contact with pressure supply according to claim 2, characterized in that the contact fingers (35a, 35b) have structural features that may increase the number of individual contact fingers, reducing the width of the independent section of each finger; and which allows a high current adjustment that changes the dimension of such contact fingers (35a, 35b) for supplying pressure.
10. An air-insulated telescopic disconnection switch with moving contact for supplying pressure according to claim 2, characterized in that a convection cooling of moving contacts for supplying pressure and contact plates of multiple double-sided aluminum section is achieved, by the circulation of air through the spaces between the contact fingers and the contact plates.
11. An air-insulated telescopic disconnection switch with moving contact for supplying pressure according to claim 1, characterized in that the guide-positioner system (4) is made of at least two guides supporting the moving contacts (3) during sliding and mounted on the intermediate removable plate (1a).
12. An air-insulated telescopic disconnection switch with moving contact for supplying pressure according to claim 1, characterized in that the intermediate guide-positioner of the (4) male conductor (1) and the intermediate guide positioner (5) of the female conductor (2) have also the function of being sliding limiting systems, which are in accordance with stainless steel guide axes and bronze inserts orbitally arranged inside the male conductor (1) and the female conductor (2).
13. An air-insulated telescopic disconnection switch with moving contact for supplying pressure according to claim 1, characterized in that the contact plates (1b, 2b) of double-sided aluminum section have a rigidity enough to support the contact pressure generated from the moving contact fingers for the provision of pressure (35a, 35b) of the moving connector (3), since each of those contact plates (1b, 2b) of double-sided aluminum section includes two contact plates (2b1, 2b2) coupled in only one piece, where the junction of those plates in just one piece is done through a longitudinal nerve (2b3) which has in one end an edge coinciding with the two plates and such longitudinal nerve (2b3) has in its other end a notch (2b4) placed near to the edges of the other two plates (2b1, 2b2).
14. A high voltage air-insulated telescopic disconnection switch with moving contact for supplying pressure according to claim 11, characterized in that the layout of the notch (2b4) is arranged in such a way that it is adjacent to the contact surfaces of each of the contact plates (1b, 2b), when they make contact with moving contacts for supplying pressure (35a, 35b).
15. A high voltage air-insulated telescopic disconnection switch with moving contact for supplying pressure according to claim 1, characterized in that it comprises a mechanical system (40) arranged within the main male conductor (1) and coupled with the back part of the internal removable intermediate plate (1a) of such first male conductor (1), where such mechanical system (40) consists of a ball screw (41) comprising a first end arranged in a ball bearing (42a) mounted on a first rolling central bore (21) of the internal removable plate (1a); the ball screw (41) with a length that can lead and coaxially move the modular moving contact (3).
Description
BRIEF DESCRIPTION OF THE FIGURES
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DETAILED DESCRIPTION OF THE INVENTION
[0045] This invention refers to the construction of disconnection telescopic switches, to its maintenance, to its integration within the isolated phase busbars, to its weight, to the number of moving contacts and to the total number of electrical contacts.
[0046] The moving contact systems of this invention are designed to supply a connection mechanism with to contact interfaces, a low resistance force and of operation precisely calculated. The moving contact of this invention is designed to be of a modular, polygonal construction with contact plates for the supply of independent forces. This invention provides a disconnection telescopic switch with sliding contacts, planes between the contact fingers and the moving contact. All of the contact assembly elements are designed to be manufactured by machining, extrusion or stamping and to supply a constructive assemblage solderless. The disconnection telescopic switch of this invention consists of a modular, polygonal female lead connector, a modular polygonal male lead connector, a moving contact for the provision of modular pressure and a mechanical system, as illustrated in
[0047] The modular female lead connector (2) consists of multiple contact plates (2b) of double-sided aluminum section, a removable intermediate plate (6) and a guide-positioning system (5). The contact plates (2b) of double-sided aluminum section are designed to be installed on a removable intermediate plate (6) with a shape of a regular polygon. The electrical contact is located at the front of the contact plate (2b) of double-sided aluminum section and it is designed in order not to present displacement, as illustrated in
[0048] The guide-positioning system (5) consists of at least two guides (5a, 5b) which limit the displacement of a moving lead connector (3) and places such moving lead connector (3) in the middle of the female lead connector (2).
[0049] The guide-positioning system (5) is also installed on the removable intermediate plate (6), as illustrated in
[0050] The male lead connector (1) consists of multiple contact plates (1b) of double-sided aluminum section, a removable intermediate inner plate (1a) and a guide-positioning system (4). The contact plates (1b) of double-sided aluminum section are designed to be installed on a removable intermediate plate (1a) with a shape of a regular polygon, as illustrated in
[0051] The moving connector (3) for the provision of pressure consists of contact fingers of reduced aluminum section formed in a contact plate (35) and of an intermediate support (30), such moving connector (3) for the provision of pressure also includes a sliding system as illustrated in
[0052] The intermediate support (30) has the shape of a regular polygon and has a number of sides consistent with those of the male lead connector (1) and of the female lead connector (2); likewise, the consistent sides have peripheral edges (30a) which, in turn, have coupling bores; such intermediate support (30) has at least two hubs (31a, 31b) designed to interact with the guide-positioning system (5) of the modular female lead connector (2) to place the moving connector (3) and to limit its displacement.
[0053] The intermediate support (30) binds itself coaxially and separately from a medium support (33) through the first longitudinal and hollow crossbar (32a), having each of those first (32b) and second (32b) longitudinal crossbars, a first end that has a top step that comes upon and constrains the coupling with the intermediate support (30), going through part of such first end the thickness of the already mentioned intermediate support (30), a second end that has a top step that comes upon and constrains the coupling with the medium support (33), going through part of the aforementioned second end the thickness of such medium support (33). The first end of each of the first (32a) and second (32b) longitudinal and hollow crossbars include in their final part a portion of junction through which a guiding support attaches (31), with such junction being either threaded or pressed; the second end of each of the first (32a) and second (32b) longitudinal and hollow crossbar include in their final part an extended portion for guide and joint, inside that extended portion for guide and joint there are sliding hubs (33a, 33b) which lead both guides (4a, 4b) that support the moving connector (3).
[0054] By means of which a guiding support attaches (31); likewise, the second first end includes, in its final part, a portion of the joint through which a guiding support is attached (31) (30). The intermediate support (30).
[0055] The medium support (33) includes a ball screw nut (33c) which is provided in the center of that medium support (33), as illustrated in
[0056] The contact plates (1b, 2b) of double-sided aluminum section have a rigidity enough to support the contact pressure generated from the moving contact fingers for the provision of pressure (35a, 35b) of the moving connector (3), since each of those contact plates (1b, 2b) of double-sided aluminum section includes two contact plates (2b1, 2b2) coupled in only one piece, where the junction of those plates in just one piece is done through a longitudinal nerve (2b3) which has in one end an edge coinciding with the two plates and such longitudinal nerve (2b3) has in its other end a notch (2b4) placed near to the edges of the other two plates (2b1, 2b2). More specifically, the layout of the notch (2b4) is such that it is adjacent to the contact surfaces of each of the contact (1b, 2b) when they make contact with the moving contact fingers that provides pressure (35a, 35b).
[0057] The guide-positioning system (4) of the male lead connector (1) and the guide-positioning system (5) of the female lead connector (2) also function as systems for the delimitation of the displacement which consist of guide shafts made of stainless steel and are inserted with bronze placed orbitally within the male deal connector (1) and within the male deal connector (2).
[0058] The contact fingers (35a, 35b) of the moving connector (3) for the provision of pressure have two ball elevations, one front elevation (35b′) which is not as taller and designed to physically interact with the modular female lead connector (2), a rear elevation (35a′) which is taller that the front elevation (35b′) and it is designed to physically interact with the surfaces of the modular male lead connector (1). The elevations can be placed with the aim of starting the contact between the different pairs of the modular female (2) and male (1) lead connectors double-sided to reproduce the peak mechanical charges. The moving connector (3) for the provision of pressure and the contact plates (35) are designed to receive a silver plating.
[0059] In order to perform the movement of the modular moving contact (3) from a closed position to an opened position, the telescopic switch of this invention includes a mechanical system (40) placed within the first male deal connector (1) and coupled with a rear part of the inner removable intermediate plate (1a) from the aforementioned first male lead connector (1). The mechanical system (40) consists of a ball screw (41) consisting of a first end placed in a ball bearing (42a) mounted over the first bearing central bore (21) of the removable inner intermediate plate (1a); the ball screw (41) has such a length that it can take and move itself coaxially to the moving modular contact (3). The ending of the ball screw end (41) includes a first bevel gear (43) which mechanically attaches itself to a second bevel gear (44). One main shaft (45) is mounted on the bearings (42b, 42c), being those bearings coupled (42b, 42c) inside the first male lead connector (1) and in an inner surface of two of the double-sided plates (1b) by means of a main bore (1b5); such main shaft (45) is the one that transmits movement to the first bevel gear (43) of the ball screw (41) by means of a second bevel gear (44). The rotation of the main shaft (45) rotates the ball bearing (42a) and, therefore, displaces the moving connector (3), as illustrated in
[0060] With the structural features of the switch from this invention, a convective cooling is achieved for the moving contacts for the provision of pressure and for the multiple contact plates of double-sided aluminum section, by the circulation of air through the spaces between the contact fingers and the contact plates.
[0061] The distance between the contact plates of the double-sided aluminum section is smaller than the distance between the contact surfaces of the moving connector (3) for the provision of pressure; the movement of the moving connector (3) will displace the contact finger to the requested distance and the loss of shape of the aluminum will provide the disconnection telescopic switch with the necessary contact force. The same thing applies to the finger of back contact of the modular male lead connector (1) in the movement end, the tallest section of the fixed contacts will displace the contact fingers and the electrical contact will take place.