Field of the invention:
[0001] More specifically, the invention refers to a pre-mounted tightening elements of the
kind that are placed inside an opening or hole placed crosswise in a connector, said
connector consisting of a connecting element especially designed for tightening element
one or more electrical wires that are entered lengthwise into it by way of one or
more tightening elements.
State of the art:
[0002] Connectors that allow splices, shunts, or terminations, preferably of metal, with
a body that is tubular, generally cylindrical, are well-known. Usually they have one
or more holes or bores that cross through the wall of said body in order to hold one
or more electrical wires of the same or different diameters running lengthwise inside
the connector still in the interior of the connector by way of their respective tightening
elements.
[0003] On the market there are a wide variety of mechanical screwing connectors that have
a wide variety of types of screws to tightening element onto the wiring, entered into
one or both ends of the electrical connector, among these, for example, Spanish patents
200502821,
200600568,
200600954, and
200602698, held by the same owner.
[0004] In general, the tightening elements are intended to maintain a certain torque on
the exterior part of the electrical wire in order to make an electrical connection
with said wire. In order to achieve the function of electrically connecting the tightening
elements with the wire, the tightening elements are designed so that when the foreseen
torque is surpassed, they end up breaking, as there is a choking area, which is preferably
ring-shaped, inside them that determines the torque force to be applied to the wire
in the interior of the connector, where part of the element breaks.
[0005] There are also some tightening elements configured with the additional function of
ensuring a degree of waterproofing that is suitable for keeping fluids, such as water,
from getting into the connector. This double function of the Tightening elements currently
presents technical difficulties, as known tightening elements are made up of a waterproof
tightening screw held into the element like an 0-ring, so that when the tightening
screw is screwed into the transverse opening of a connector to make an electrical
contact with the electrical wire, the waterproofing rubs against the inner walls of
the transverse opening and this rubbing force means that when one tries to maximise
the waterproofing, the axial pressure on the electrical wiring decreases, so that
the electrical contact with said wire is made under conditions of less-than-normal
torque transmission.
[0006] EP 1 918 595 A1 discloses a controlled shear bolt assembly (1), comprising: a bolt body (10) having,
at a free end, a threaded portion from which protrudes a central shank; a head (30)
designed to be able to cooperate with a rotary drive tool so that rotary motion is
transmitted to the bolt body shank and, consequently, to the threaded portion; and
a ring (20) designed to be disposed on the central shank and suitable for ensuring
continuity of the male thread with the threaded portion once disposed on the shank;
wherein the bolt body presents a single controlled shear zone ensuring the junction
of the shank and the threaded portion, with rotation locking means being provided
on each ring and the threaded portion to ensure rotation locking of each ring in relation
to the threaded portion of the bolt body.
[0007] EP 2 375 502 A1 refers to a clamping device with divisible head for an electric connection sleeve.
The device (4) has a socket (3) opened at two ends and provided with an external thread
and an internal thread, and a screw (2) including a body with a partially threaded
lower portion to connect with the internal thread of the socket. The screw body comprises
a divisible ring (28) defining an external shoulder and a divisible area (26) separating
a body of a screw head. The shoulder is connected with the socket to allow screwing
of the socket by an action on the screw head.
[0008] US 4 734 061 A deals with a telecommunications terminal block, that provides service wire terminations
within cells that are electrically and physically isolated from other cells in the
block, and from the environment, thereby effectively preventing corrosion and shorting
by eliminating electrical bridging between tip and ring service wire circuits.
[0009] EP 1833 117 A2 discloses a screw for electric connectors, the screw being fit to be threadingly
engaged into a radial bore of the connector in order to thus clamp and fasten the
cable being arranged in the connector, between the head and the threaded portion said
screw having an intermediary portion and being thereat provided with an annular necked-down
portion and stop next to the head and with an annular necked-down portion next to
the threaded portion, said necked-down portions being designed for a clamping torque
being predetermined in correspondence with the diameter of the lead for the breakage
of the screw in the bore of the connector. The screw has another annular stop next
to the necked-down portion being adjacent to the threaded portion, and the screw being
provided with two necked-down portion and annular stop pairs incorporates in combination
with it an internally and externally threaded bushing, the bushing being thus in a
position to have its external thread screwed into the bore of the connector, and the
screw being thus in a position to be screwed into the inside of the bushing.
[0010] However, none of the documents alone or in combination describes a tightening element
having the mentioned double function under optimal conditions.
Aim of the invention:
[0011] The main aim of the present invention is to design a tightening element adapted to
be mounted inside a opening or hole placed transverse in a connector, within which
one or more electrical wires are placed, which on one hand makes optimal electrical
contact between the tightening element and the electrical wire, and on the other hand,
allows optimal waterproof tightening of the tightening element in the connector.
[0012] Another aim of the present invention is to design a tightening elements element that
can easily be mass produced with low manufacturing costs, so that later the system
can be pre-mounted in a connector.
[0013] Another aim of the present invention is to design a pre-mounted tightening element
that can easily be assembled by a factory worker inside the transverse opening of
a connector.
Description of the invention:
[0014] The present invention consists of a pre-mounted tightening element of the kind placed
inside of an opening placed transverse in a connector, as described in claim 1, inside
of which one or more electrical wire(s) are placed, this opening having a threaded
part at the bottom for the threading to hold the tightening elements still.
[0015] The pre-mounted tightening element of the invention is made up of an assembly that
comprises:
A means of tightening that is assembly up in such a way that when you act on it, it
exercises a torque that is transmitted axially, and when this assembly comes up against
the electrical wiring at its lower end, the torque applied, "PI," achieves an optimal
electrical contact with said electrical wire; and
[0016] Other tightening means that are arranged in such a way that, once this optimal electrical
contact is made, when they are acted upon, a torque is transmitted in a radial direction
against the lower walls of the opening, and said "P2" torque is suitable for achieving
optimal waterproofing of the tightening elements in said opening of the connector.
[0017] This particular configuration of the tightening element means that once it is pre-mounted,
it can be placed in the opening of a connector by way of two simple, consecutive actions,
so that two different functions are fulfilled at the same time: on one hand there
is an optimal electrical contact with the electrical wire, and on the other hand,
there is optimal waterproof closing of the tightening elements in the opening.
[0018] Preferably the transmission of the radial torque of the assembly is made by way of
a waterproof joint.
[0019] According to a preferred practical version of the present invention, the pre-mounted
tightening assembly comprises:
- a tightening element made up of a tightening screw with a head adapted to be screwed
into the interior of the opening until its lower end goes all the way against the
electrical wire that runs through the interior of the connector and manages to exercise
a certain axial torque, "P1," to make optimal electrical contact with the wire, and
said tightening screw has a tightening nut; and
- other means of tightening made up of a tightening nut with a head adapted to be screwed
onto a waterproof joint until this waterproof joint generates a radial pressure, "p2"
that is suitable for making a waterproof closure against the inside walls of the upper
part of the opening.
[0020] The axial pressure, "p1" of the tightening screw against the electrical wire is achieved
by applying a "P1" torque on the head of the tightening screw in a first screwing
operation.
[0021] The "p2" radial pressure of the waterproofing joint against the inner walls of the
opening is achieved by applying a "P2" torque on the head of the tightening nut in
a second screwing operation that is transmitted to the waterproofing joint, the lower
part of which rests on the connector, so that said torque contracts the waterproof
joint axially and thus generates a radial force "P2" against the inner walls of the
opening, making a waterproof seal.
[0022] The means of holding the tightening nut on the tightening screw can be a threaded
part foreseen on the exterior surface of the tightening screw and the corresponding
coaxial threaded part of the interior surface of the nut.
[0023] Both the tightening screw and the tightening nut include a means of weakening between
their respective bodies and heads, so that when the aforementioned heads are screwed
all the way in, they break by way of said weakening mechanism.
[0024] Optionally, the pre-mounted assembly can include two tightening washers placed above
and below the waterproofing joint, made to press on the joint above and below said
joint, respectively.
[0025] The lower part of the pre-mounted assembly may optionally include an end piece attached
to the tightening screw and adapted to make an electrical contact with the wire, this
piece being adapted to the material and/or type of each conductor so as to make an
optimal electrical contact of metal against metal, due to the great variety of materials
(for example, aluminium or copper) and types of wires (solid, flexible, etc.).
[0026] The pre-mounted assembly may optionally include an 0-ring in the tightening nut,
in order to improve the waterproofing of the tightening assembly.
[0027] Other details and features will be shown in the course of the description provided,
referring to the drawings that accompany this report, which show the invention, although
it is not limited to them, keeping in mind that the versions of the invention can
be made in any material, in reference to the composition, as well as the non-critical
outside configuration.
Description of the figures:
[0028] Below is a list of the different parts of the invention which are found on the diagrams
and which can be located using the following numbers; (10, 10', 10'') tightening element,
(11) connector, (12) opening of the connector, (13) electrical wire, (14) known tightening
element, (15) threaded part of the opening, (16) inner walls of the opening, (17)
tightening screw, (18) head of the tightening screw, (19) tightening nut, (20) head
of the tightening nut, (21) waterproofing joint, (22) tightening washers, (23) end
piece, (24) O-ring, (25) upper, outer threaded part of the tightening screw, (26)
inner threaded part of the nut, (27) lower, outer threaded part of the tightening
screw, (28) inner threaded part of the end piece, (29) outer threaded part of the
end piece, (30) through-hole of the tightening nut, (31) through-hole of the washer,
(32) through-hole of the waterproofing joint, (33) blind hole of the end piece, (35)
lower base of the end piece, (36) butting surface of the opening, (37) lower base
of the lower washer, (38) O-ring, (39) inner walls of the opening, (39) narrowing
in the tightening screw, (40) narrowing in the tightening nut.
[0029] In the figures:
Figure no. 1 shows a frontal view of a conventional tightening element mounted crosswise
in a connector, specifically screwed into one of its openings to make an electrical
contact with an electrical wire.
Figure no. 2 shows a side view of the tightening element (10) of the invention.
Figure no. 3 shows a sectioned side view of A-A' of the Tightening elements (10) of
the invention.
Figure no. 4 shows a view of the tightening element (10) of the invention as seen
from above.
Figure no. 5 shows a view of the tightening element (10) of the invention from below.
Figure no. 6 shows a frontal view of the tightening element (10) of the invention.
Figure no. 7 shows the same side view of the tightening element (10) of the invention
as figure no. 2, but with the parts separated.
Figure no. 8 shows the same sectioned side view of the tightening element (10) of
the invention as figure no. 3, but with the parts separated.
Figure no. 9 shows the same frontal view of the tightening element (10) of the invention
as figure no. 6, but with the parts separated.
Figure no. 10 shows a side view of the two tightening elements (10) which are starting
to be mounted crosswise in the respective openings (12) of a connector (11).
Figure no. 11 shows a sectioned frontal view of C-C' of the two tightening elements
(10) of figure no. 10.
Figure no. 12 shows a frontal view of the two tightening elements (10) of figure no.
10.
Figures no. 13 to 15 show sectioned raised frontal views of the various consecutive
positions of the assembly of a tightening element (10, 10', 10'') in the opening (12)
of a connector (11).
Description of a preferred form of the invention:
[0030] Figure no. 1 shows a known tightening element with an 0-ring (38) mounted on the
outer surface, so that when the tightening element is screwed into the opening (12)
of a connector (11) to make an electrical contact with one or more electrical wires
(13), this 0-ring (38) rubs against the inner walls (16) of said opening (12), thus
making the electrical contact with said wire (13) faulty.
[0031] In one of the preferred versions of the invention, and as can be seen in the attached
figures no. 2 to 9, the tightening element (10) is made up of a pre-mounted assembly
comprising a tightening screw (17) mounted inside a tightening nut (19), a waterproofing
joint (21) mounted in the lower part of the tightening nut (19), and two washers (22)
mounted above and below the aforementioned waterproofing joint (21).
[0032] The tightening screw (17) has a head (18) for the screwing of the same inside the
opening by the threaded part (15) until its lower base (35) butts up against an electrical
wire(13), having a narrowing (39) between the body and the head (18) as a weakening
surface (see figures no. 3 and 8), so that when this head (18) is screwed all the
way in, it breaks at this point, as can be seen in figure no. 14. On the other hand,
the tightening screw (17) has a screwing part (25) on the outer surface of its body
intended to be screwed into the corresponding threaded part (26) of the inside surface
of the tightening nut (19), thus joining the tightening nut (19) to the tightening
screw (17).
[0033] On its part, the tightening nut (19) has a head (20) to screw it against the waterproofing
joint (21) placed under the lower base of the nut (19). The waterproofing joint (21),
along with both washers (22), mounted above and underneath said waterproofing joint
(21), all have an upper diameter that is greater than the diameter of the lower part
of the tightening screw (17), so that in the second operation of tightening of the
head (20) of the tightening nut (19), the lower washer (20) has its lower base (37)
resting on a butting surface (36) of the opening (12) of the connector (11). Therefore,
the torque "P2" applied to the head (20) deforms the waterproofing joint (21) (making
its height decrease from "e1" to "e2") when it butts against said surface (36), and
it necessarily contracts axially and consequently generates a radial force "p2" against
the inner walls of the opening, thus achieving a waterproof seal against the outside
surface of the body of the tightening screw (17), see figure no. 15.
[0034] It can optionally have a end piece (23) attached below to the tightening screw (17)
by way of a threaded portion (27) on the lower part of the tightening screw (17) that
screws into a corresponding interior threaded portion of the end piece (23), the end
piece (23) having the function of making an electrical contact with the wire (13),
see figures no. 2 to 9. The end piece (23) has outside threading (29) for screwing
in (15).
[0035] There can also be an O-ring (24) in the tightening nut (19) to improve the waterproofing
of the tightening element (10), see figures no. 2 to 9.
[0036] In order to allow the body of the tightening screw (17) to pass through, the tightening
nut (19), the waterproofing joint (21), the washers (22) and the end piece (23) have
their respective through-holes (30, 31, 32, 33) in an axial direction, (30, 31, 32),
except hole (33), which is blind, see figure no. 9.
[0037] Figures no. 10 to 12 show a possible version of a connector (11) with two openings
(12) in which the respective tightening elements (10) are starting to be mounted.
[0038] Figure no. 13 shows the position of the introduction of the tightening element (10)
into a opening (12) of a connector (11) in the first assembly operation, figure no.
14 shows the maximum screwing-in position of the tightening element (10) inside the
opening (12) of the connector (11) at the end of the first assembly operation in which
an optimal axial force is applied downwards, "p1" causing the breaking of the head
(18) of the tightening screw, and, lastly, figure no. 15 shows the maximum screwing-in
position of the tightening nut (19) on the waterproofing joint (21) in the second
assembly operation, causing the breaking of the head (20) of the tightening nut (19)
and the generation of an optimal radial force, "p2" in the two directions that makes
the closure totally waterproof.
1. Tightening element (10, 10' 10'') intended to hold one or more electrical wire(s) (13) for making an
electrical connection with said wire(s) (13), the tightening element being mounted
inside of a transverse opening (12) placed in a connector (11), the connector (11)
also having a longitudinal opening inside of which at least one electrical wire (13)
is disposed lengthwise, the transverse opening (12) has a threaded inside part (16)
to screw in the tightening element (10, 10' 10''), the tightening element (10, 10'
10'') is made up of a pre-mounted assembly comprising:
- a tightening screw (17) having a head (18) for screwing the tightening screw (17)
and a body and comprising a weakening area between its body and its head (18), and
the body of said tightening screw (17) comprising a threaded part (25) to hold outwardly
a tightening nut (19), the head (18) is broken in the area of weakening when it is
screwed in a first screwing operation in the interior of the transverse opening (12),
until the lower end abuts against the electrical wire;
characterized by:
- the tightening nut (19) having a head (20) for screwing the tightening nut (19)
and comprising a weakening area (40) between its body and its head (20), the head
(20) is broken in the area of weakening when it is screwed in a second screwing operation
on a waterproofing joint (21) until the lower part of the joint (21) abuts against
an inside wall of the transverse opening (12) and the tightening nut (19) having a
threaded part (26) provided on its inner surface; and
- the waterproofing joint (21) for, once deformed, making a waterproof seal against
the inner walls of the opening (12), the waterproofing joint (21) is mounted in the
lower part of the tightening nut (19) and is axially contracted when a torque is applied
to the head (20) of the tightening nut (19).
2. Tightening element according to the first claim, characterised in that it has an end piece (23) in the lower part attached below to the tightening screw
(17) and establishing an electrical contact with the electrical wire.
3. Tightening element according to any of the previous claims, characterised in that it comprises two tightening washers (22) placed above and below the waterproofing
joint (21) .
4. Tightening element according to any of the previous claims, characterised in that it comprises in the tightening nut (19) an O-ring (24).
5. Tightening element according to the third claim, characterised in that the waterproofing joint (21) and both tightening washers (22) have an upper diameter
greater than the diameter of the lower part of the tightening screw (17).
1. Spannelement (10, 10', 10"), das dafür vorgesehen ist, einen elektrischen Draht oder
mehrere elektrische Drähte (13) zum Herstellen einer elektrischen Verbindung mit dem
Draht bzw. den Drähten (13) zu halten, wobei das Spannelement im Inneren einer Queröffnung
(12) angebracht ist, die in einem Verbinder (11) angeordnet ist, wobei der Verbinder
(11) außerdem eine Längsöffnung aufweist, in deren Innerem mindestens ein elektrischer
Draht (13) der Länge nach angeordnet ist, wobei die Queröffnung (12) einen Gewindeinnenabschnitt
(16) zum Schrauben in das Spannelement (10, 10', 10") aufweist, wobei das Spannelement
(10, 10', 10") aus einer vormontierten Baugruppe aufgebaut ist, die umfasst:
- eine Spannschraube (17), die einen Kopf (18) zum Schrauben der Spannschraube (17)
und einen Körper aufweist und einen Schwächungsbereich zwischen ihrem Körper und ihrem
Kopf (18) umfasst und wobei der Körper der Spannschraube (17) einen Gewindeabschnitt
(25), um eine Spannmutter (19) außen zu halten, umfasst, wobei der Kopf (18) in dem
Bereich der Schwächung gebrochen wird, wenn er bei einem ersten Schraubvorgang im
Innenraum der Queröffnung (12) geschraubt wird, bis das untere Ende gegen den elektrischen
Draht stößt;
dadurch gekennzeichnet, dass:
- die Spannmutter (19) einen Kopf (20) zum Schrauben der Spannmutter (19) aufweist
und einen Schwächungsbereich (40) zwischen ihrem Körper und ihrem Kopf (20) umfasst,
wobei der Kopf (20) in dem Bereich der Schwächung gebrochen wird, wenn er bei einem
zweiten Schraubvorgang auf einer gegen Wasser abdichtenden Verbindung (21) geschraubt
wird, bis der untere Abschnitt der Verbindung (21) gegen eine Innenwand der Queröffnung
(12) stößt, und die Spannmutter (19) einen Gewindeabschnitt (26) aufweist, der auf
ihrer Innenfläche vorgesehen ist; und
- die gegen Wasser abdichtende Verbindung (21) eine wasserdichte Dichtung gegen die
Innenwände der Öffnung (12) erzeugt, sobald sie verformt worden ist, wobei die gegen
Wasser abdichtende Verbindung (21) im unteren Abschnitt der Spannmutter (19) angebracht
ist und axial zusammengezogen wird, wenn ein Drehmoment auf den Kopf (20) der Spannmutter
(19) aufgebracht wird.
2. Spannelement nach Anspruch 1, dadurch gekennzeichnet, dass es im unteren Abschnitt ein Endstück (23) aufweist, das unterhalb der Spannschraube
(17) befestigt ist und einen elektrischen Kontakt mit dem elektrischen Draht einrichtet.
3. Spannelement nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass es zwei Spannscheiben (22), die oberhalb und unterhalb der gegen Wasser abdichtenden
Verbindung (21) angeordnet sind, umfasst.
4. Spannelement nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass es in der Spannmutter (19) einen O-Ring (24) umfasst.
5. Spannelement nach Anspruch 3, dadurch gekennzeichnet, dass die gegen Wasser abdichtende Verbindung (21) und beide Spannscheiben (22) einen oberen
Durchmesser aufweisen, der größer als der Durchmesser des unteren Abschnitts der Spannschraube
(17) ist.
1. Élément de serrage (10, 10' 10") destiné à tenir un ou plusieurs câbles électriques
(13) afin de réaliser une connexion électrique avec lesdits câbles (13), l'élément
de serrage étant monté à l'intérieur d'une ouverture transversale (12) placée dans
un connecteur (11), le connecteur (11) présentant également une ouverture longitudinale
à l'intérieur de laquelle un câble électrique (13) au moins est disposé dans le sens
de la longueur, l'ouverture transversale (12) présente une partie intérieure filetée
(16) destinée à être vissée dans l'élément de serrage (10, 10' 10"), l'élément de
serrage (10, 10' 10") se compose d'un ensemble préalablement monté comprenant :
- une vis de serrage (17) présentant une tête (18) destinée à visser la vis de serrage
(17) et un corps, et comprenant une zone d'affaiblissement entre son corps et sa tête
(18), et le corps de ladite vis de serrage (17) comprenant une partie filetée (25)
destinée à tenir à l'extérieur un écrou de serrage (19), la tête (18) est brisée dans
la zone d'affaiblissement quand elle est vissée au cours d'une première opération
de vissage à l'intérieur de l'ouverture transversale (12), jusqu'à ce que l'extrémité
inférieure vienne en butée contre le câble électrique ;
caractérisé en ce que :
- l'écrou de serrage (19) présentant une tête (20) destinée à visser l'écrou de serrage
(19), et comprenant une zone d'affaiblissement (40) entre son corps et sa tête (20),
la tête (20) est brisée dans la zone d'affaiblissement quand elle est vissée au cours
d'une seconde opération de vissage sur un joint d'étanchéité (21) jusqu'à ce que la
partie inférieure du joint (21) vienne en butée contre une paroi intérieure de l'ouverture
transversale (12), et l'écrou de serrage (19) présentant une partie filetée (26) disposée
sur sa surface intérieure ; et
- le joint d'étanchéité (21) étant destiné, une fois déformé, à réaliser un joint
d'étanchéité contre les parois intérieures de l'ouverture (12), le joint d'étanchéité
(21) est monté dans la partie inférieure de l'écrou de serrage (19), et est contracté
axialement quand un couple est appliqué à la tête (20) de l'écrou de serrage (19).
2. Élément de serrage selon la revendication 1, caractérisé en ce qu'il présente une partie extrémité (23) dans la partie inférieure, fixée sous la vis
de serrage (17), et établissant un contact électrique avec le câble électrique.
3. Élément de serrage selon l'une quelconque des revendications précédentes, caractérisé en ce qu'il comprend deux rondelles de serrage (22) placés au-dessus et au-dessous du joint
d'étanchéité (21).
4. Élément de serrage selon l'une quelconque des revendications précédentes, caractérisé en ce qu'il comprend un joint torique (24) dans l'écrou de serrage (19).
5. Élément de serrage selon la revendication 3, caractérisé en ce que le joint d'étanchéité (21) et les deux rondelles de serrage (22) présentent un diamètre
supérieur plus grand que le diamètre de la partie inférieure de la vis de serrage
(17).