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(11) |
EP 0 476 848 B1 |
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EUROPEAN PATENT SPECIFICATION |
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Mention of the grant of the patent: |
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13.12.1995 Bulletin 1995/50 |
| (22) |
Date of filing: 22.08.1991 |
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International Patent Classification (IPC)6: H01R 13/187 |
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Closed entry socket contact assembly
Zusammensetzung einer Steckdosekontakt mit enger Zugang
Montage de contact à fiches avec embouchure étranglée
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Designated Contracting States: |
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DE FR GB IT NL SE |
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Priority: |
07.09.1990 US 578981
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Date of publication of application: |
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25.03.1992 Bulletin 1992/13 |
| (73) |
Proprietor: ITT INDUSTRIES, INC.
(a Delaware corporation) |
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New York, NY 10019-5490 (US) |
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| (72) |
Inventors: |
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- Welsh, David Edward
Tustin,
California 92680 (US)
- Rofer, David
Fountain Valley,
California 92708 (US)
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| (74) |
Representative: Vaufrouard, John Charles |
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Elkington and Fife
Prospect House
8 Pembroke Road Sevenoaks, Kent TN13 1XR Sevenoaks, Kent TN13 1XR (GB) |
| (56) |
References cited: :
EP-A- 0 188 751
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US-A- 3 922 057
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| Note: Within nine months from the publication of the mention of the grant of the European
patent, any person may give notice to the European Patent Office of opposition to
the European patent
granted. Notice of opposition shall be filed in a written reasoned statement. It shall
not be deemed to
have been filed until the opposition fee has been paid. (Art. 99(1) European Patent
Convention).
|
[0001] This invention relates to socket contact assemblies and relates more specifically
to so-called closed entry socket contact assemblies and methods of constructing such
assemblies.
[0002] High reliability connectors, such as those used in defence applications, generally
use socket contact assemblies with seamless exteriors. A common type of socket assembly,
such as shown in Figure 1 of the accompanying drawings, includes a solid body with
a cavity formed by machining or impact extrusion to form a solid body with a tubular
front. Slots are machined in the tubular front to form forwardly extending tines which
are crimped (permanently bent) so that their front ends engage a pin contact entering
the cavity. A hood is installed around the body to protect the tines and to form a
closed entry region that limits the size of pin contacts that can enter between the
tines. While such a closed entry socket assembly is reliable, it is expensive to manufacture.
[0003] Another known type of seamless socket as shown in Figure 2 of the accompanying drawings,
includes solid body with a cylindrical cavity, and a clip formed of rolled sheet metal
installed in the cavity. The clip has rearwardly extending tines, and the front of
the clip forms a closed entry region. While this closed entry socket assembly can
be manufactured at low cost, it has the disadvantage that there is a long distance
(Y) between the initial and final points of contact of the tines with a pin contact.
Connectors used in defence applications generally must has a short distance between
the initial and final points of contact.
[0004] It should be noted that there are many types of very low cost socket contacts formed
entirely of rolled or folded pieces of sheet metal without any seamless tube around
them. However, such metal contacts are subject to damage during handling, between
the time they are initially manufactured and the time they are shipped to a customer
and installed by the customer in a connector housing. A socket contact assembly having
a seamless exterior, a protected spring clip therein with initial and final points
of contact that are close together, a closed entry region at the opening to the cavity
and capable of being constructed at low cost would be of considerable value.
[0005] According to the present invention there is provided a socket contact assembly comprising
an electrically conductive seamless barrel having an axis, a rear end termination
portion and a front portion having a wall forming a substantially cylindrical cavity
centred on the axis, characterised in that the assembly comprises a clip formed of
a piece of sheet metal rolled into a tube and having forward, rearward and middle
portions, the clip lying in the barrel cavity and having an axis coaxial with the
barrel axis, in that the clip middle portion has a plurality of tines, with each tine
having a free forward end ending in a free tip, in that each of the tines has a middle
part extending in a radially inward-forward direction and has a forward part extending
in a radially outward-forward direction, in that the tine tips have a radially inner
and outer edges, with the tip inner edges lying on an imaginary circle of a first
diameter and with the radially inner diameter of the forward clip portion being smaller
than the first diameter.
[0006] Preferably, the piece of sheet metal has a reduced thickness at the tines and most
of the clip forward portion has a greater thickness than the tines. The clip middle
portion may have a plurality of slots extending primarily parallel to the axis with
at least one of the tines formed between a pair of the slots.
[0007] In one embodiment of the invention the piece of sheet metal has outer and inner faces
which respectively form the radially outer and inner surfaces of the clip and in that
the tines have rear ends with outer surfaces that are flush with the outer surface
of the rearward clip portion and with inner surfaces that are recessed from the inner
surface of the rearward clip portion.
[0008] In one clip construction, the front portion of the clip has a flared forward part,
with the flare extending to a smaller diameter than the rest of the clip. In another
clip construction, a thick piece of sheet metal from which the clip is formed, has
a reduced thickness at the tines, so the thick front portion of the clip can be substantially
cylindrical and still have a small inside diameter forming a closed entry region.
[0009] By way of example the present invention will now be described with reference to the
accompanying drawings, in which:
Figure 1 is a sectional side view of a socket contact assembly constructed in accordance
with the prior art;
Figure 2 is a partial sectional view of another socket contact assembly constructed
in accordance with the prior art;
Figure 3 is a partial sectional view of a contact assembly constructed in accordance
with the present invention, and showing a square ended pin contact partially installed
therein;
Figure 4 is a sectional side view of the clip of the socket contact assembly of Figure
3;
Figure 5 is a front elevation view taken on the line 5-5 of Figure 4;
Figure 6 is a rear elevation view taken on the line 6-6 of Figure 4;
Figure 7 is a partial sectional view of a connector which holds socket contact assemblies
of the the shown in Figure 3;
Figure 8 is a plan view of a piece of sheet metal from which the clip of Figure 4
is formed;
Figure 9 is a partial sectional view of a socket contact assembly constructed in accordance
with another embodiment of the invention;
Figure 10 is a plan view of a piece of sheet metal from which the clip of the socket
contact assembly of Figure 9 is formed;
Figure 11 is a front elevation view of the socket contact assembly of Figure 9; and
Figure 12 is an enlarged sectional view of a portion of the socket contact assembly
of Figure 9.
[0010] Referring to the drawings, Figure 1 illustrates a prior art high reliability socket
contact assembly A which includes a socket body B having a rearward portion C with
a hole that receives a conductor D of a wire and is crimped at E to hold the conductor
in place. The front portion F of the body has a cylindrical cavity G and has slots
H that divide the front portion into individual tines J. The tines are crimped or
permanently bent so that their front ends are closer together than their rear ends
in order to firmly engage a pin contact K. A protective hood L press-fitted on to
the front portion of the socket body, has a flare or chamfer M which forms a restricted
entry region to prevent the entry of large diameter pin contacts which could press
against the tips N of the tines and damage them. When a test pin contact with a square
end indicated at O is inserted, it engages the tines at an initial point of contact
P. Further insertion of the imaginary square-ended pin contact K results in outward
deflection of the contacts and engagement of the pin at a point Q. The initial and
final engagement points P, Q are closely spaced, which is highly desirable. The length
of the pin contacts is preferably as short as possible to avoid damage to them. However,
a considerable length of contact is required because the depth of pin insertion varies
with many factors such as how tight a coupling nut connecting two connectors together
is turned. As a result, it is important that the points P, Q lie close together. While
the socket assembly A is highly reliable, it is expensive to manufacture because of
the cost of cutting the slots H, heat treating the front portion F of the body B for
springiness of the tines and annealing the rearward portion C to permit crimping thereof
to a wire, and forming a hood L with a seamless exterior. Both the hood and socket
body B must be seamless to avoid damage to them during handling, between the time
of manufacturer and the time when a customer installs the contact assembly in a connector
housing.
[0011] Figure 2 of the drawings illustrates another prior art socket contact assembly R,
which also includes a seamless socket body S that holds a spring clip T. The spring
clip is formed of a rolled piece of sheet metal with slots U forming tines extending
in a rearward direction. The forward end W of the clip serves as a closed entry region
that limits the size of contact pins that can be inserted. An important disadvantage
of this type of assembly is that the initial point of contact X with a square ended
pin O, is spaced a considerable distance Y from the final point of contact Z, which
makes this assembly unacceptable in many applications. Otherwise, this assembly has
many advantages, because the socket body with a simple cylindrical cavity can be constructed
at low cost, and because the rolled sheet metal clip T can also be constructed and
installed at low cost.
[0012] Referring now to Figure 3 of the drawings, this illustrates a portion of a socket
contact assembly 10 of the present invention. The assembly includes a seamless body
or barrel 12 having a forward portion 14 with a largely cylindrical cavity 16 open
to the front end 18 of the barrel. The assembly also includes a spring clip 20 installed
in the cavity of the barrel, and designed to make contact with a pin contact 22 of
a typical type having a well rounded end, or even a test contact with a square end
indicated at 24. The barrel 12 is similar to those of the prior art, in that it is
formed of solid metal stock such as a metal rod, with the cavity 16 formed by machining
or impact extrusion to form a sturdy seamless barrel that can be handled without damaging
the spring clip. It is noted that the barrel has a wire terminating rear portion 26
which may be similar to those of the prior art, such as shown at C in Figure 1, for
receiving and crimping around a wire conductor or which may be of another type.
[0013] The barrel 12 and spring clip 20 are coaxial at an axis 30. The clip has a rearward
portion 32 which presses firmly against the walls of the barrel cavity 16 (at its
dimples 102), a middle portion 34 that extends forwardly in the direction of arrow
F from the rearward portion, and a forward portion 36 that also presses firmly against
the inside of the cavity. The middle portion 34 of the clip has a plurality of slots
40 that divide it into four tines 42a-42d.
[0014] Each tine has a rear part 50 supported on the rearward portion 32 of the clip. Each
tine also has a middle part 52 that has been bent or crimped to extend at a forward-inward
incline, that is with a radially inward (toward axis 30)-forward directional component,
so that progressively forward locations are progressively closer to the axis 30. Each
tine also has a forward part 54 extending at a forward-outward incline, that is, with
a radially outward-forward directional component, and ending in a tip 56. The tip
56 has radially inner and outer edges 60,62.
[0015] The point 64 where the radially inner surface of the middle and forward parts 52,54
meet, is the point where the tine engages the fully inserted pin contact 22. A point
66 along the forward part 54 of the tine, is the point where a square end 24 of a
test contact will initially engage the tine. The distance 70 between the initial and
final points of engagement, is relatively small, such as less than 1/4th the diameter
of the pin contact 22, and therefore meets the requirements for such distance as previously
discussed.
[0016] The forward portion 36 of the clip forms a closed entry region 72 that limits the
size (diameter) of pin contact 22 that can be inserted into the socket assembly. The
closed entry region lies on an imaginary circle of a diameter 74, which prevents the
passage of pin contacts of a diameter greater than the diameter 74. If the reduced
diameter closed entry region 74 were not provided, then a pin contact with a substantially
square end and of a relatively large diameter could be inserted into the assembly
and engage the inner edges 60 of the tines. Then, instead of deflecting the tines
outwardly, the pin contact would crumple the tines in a column-like collapse, and
thereby damage the contact assembly. The radially inner edges 60 of the tips 56 lie
on an imaginary circle of a diameter 76. The diameter 74 of the closed entry region
72 should be as small as, and preferably smaller than the diameter 76 of a circle
on which the tip inner edges 60 lie, to protect the tines.
[0017] The forward portion 36 of the clip includes a flared front part 80 with radially
inner and outer surfaces 82, 84 that are both tapered at a forward-outward incline
(i.e. in a radially inward-rearward direction). Both inner and outer surfaces 82,84
are tapered due to the fact that the clip is formed from sheet metal so its opposite
faces are parallel. The rear end of the flared front part 80 forms the closed entry
region 72. The clip forward portion also includes a middle part 86 extending rearwardly
from the region 72 and tapered at a forward-inward incline (i.e. in a radially outward-rearward
direction) at both its inner and outer surfaces 90,92. The forward portion also includes
a rear part 94 which is substantially cylindrical and which presses firmly against
the inner walls of the barrel cavity 16.
[0018] The flared front part 80 provides a good guide surface for guiding a pin contact
through the closed entry regions 72. The change in diameter along the flare is a plurality
of times greater than the thickness of the sheet metal. The closed entry region 72
smoothly guides the contacts into the rest of the clip, because it has a smoothly
rounded surface (with a radius of curvature greater than the thickness of the sheet
metal) where the front and middle parts 80,86 meet. It is noted that the outside surface
of the clip at the point 96 directly outside the closed entry region 72, has a smaller
diameter than most of the rest of the clip and of the walls of the cavity 16. The
front of the barrel has a tapered surface 100 that matches the taper of the clip flared
front part 80 to securely back it up.
[0019] The rearward portion 32 of the clip has four dimples 102 that project radially outwardly
from surrounding areas of the rearward portion, and which press firmly against the
walls of the cavity. The clip is held in place in the cavity at its rearward portion
by the four dimples 102, and at its forward portion 36 by the rear part 94 thereof
which presses firmly against the walls of the cavity. Additional holding power can
be provided by radially inwardly deforming the barrel at the location 110, to form
an inward projection 112 of the cavity walls. The projection 112 lies around the inwardly
projecting bump or closed end region 72 of the clip where the outer surface 96 has
a smaller diameter than that of the walls of the cavity without the projection 112.
The projection 112 can be in the form of a plurality of depressions, or alternately
can be in the form of a continual ring-shaped depression around the circumference
of the barrel.
[0020] Figure 8 illustrates a flat piece of sheet metal 114 which can be rolled up to form
the clip 20 of Figures 3 and 4. The flat piece of sheet metal has a largely constant
width along the rearward and middle portions 32,34, but the forward portion 36 has
a greater width, at least along the flared front part 80 where the sheet has a progressively
greater width at progressively more forward locations in the direction F. The sheet
metal is initially cut from a larger sheet. The slots 40 are cut in the sheet metal
to extend in forward and rearward directions F and R, and lancing cuts 116 are formed
at the forward end of locations between adjacent pairs of slots, to form the tines
42a-42d. Also, depressions are formed to leave the dimples 102. Then the piece of
sheet metal is rolled to form a clip. As shown in Figure 6, before the clip is installed,
there is a gap 118 at the opposite sides of the rolled sheet metal. However, the width
of the sheet metal is closely controlled with respect to the diameter of the barrel
cavity so that as the clip is inserted into the cavity the gap 116 is closed at least
at the rear part 94 of the front portion. As a result, the rear part 94 presses firmly
against the walls of the cavity to hold the clip in place (in addition to the pressure
of the dimples against the cavity walls).
[0021] After the clips are installed in the barrels, the resulting socket contact assemblies
are placed in a container and shipped to a customer. The customer then loads the contact
assemblies into an insulative housing such as shown at 120 in Figure 7. Where the
wire termination rearward portions 26 of the barrels are to be crimped to conductors
as in Figure 1, the conductors will be first inserted and crimped in place before
the contact assemblies are inserted into holes 121 of the housing 120 of a connector
122. The contact assemblies can encounter considerable handling when they are removed
from a shipping container, loaded in apparatus for terminating their rearward portions,
and inserted into the connector housing. The fact that the barrel is seamless and
has thick walls, and completely surrounds the clip 20, results in high reliability
that the installed contact assembly will function well if it has been initially manufactured
without defects.
[0022] In one specific contact assembly of the type illustrated in Figure 3 that has been
designed, the barrel has an outer diameter of 1.93 mm (0.076 inch), the clip is designed
to accept pin contacts of a diameter of 1.02 mm (0.040 inch), and the distance 70
between the initial and final points of contact is 0.15 mm (0.006 inch). The clip
is heavily gold plated, while the barrel is only thinly gold plated. The gold plating
of the barrel makes it difficult to inwardly deform the front end of the barrel to
use that as a closed entry region, as such deformation of a small diameter barrel
could crack the plating.
[0023] While the contact assembly of Figure 3 is of relatively simple design, and can be
manufactured at low cost once tooling is made, it tends to require relatively costly
tooling to roll the piece of sheet metal 114 because of the fact that its front part
is of tapered width. Figures 9-11 illustrate another socket contact assembly constructed
in accordance with the invention which can be constructed with lower cost tooling.
[0024] The contact assembly 130 of Figure 9 has a seamless barrel 132 formed by machining
or impact extrusion of solid metal stock, and has a clip 134 lying in a cavity 136
formed in the forward portion 138 of the barrel. The clip is formed of a piece of
sheet metal, but the tines 140 are of a smaller thickness 142 than the rest of the
sheet metal and specifically are less than the thickness 144 of a forward portion
146 of the clip. The greater thickness 144 of the forward portion, results in the
radially inner surface 150 (radially means with respect to the axis 152 of the barrel
and clip) having a diameter 153 equal to or (preferably) smaller than an imaginary
circle on which lie the radially inner edges 154 of the tine tips 156. The rearward
parts 160 of the tines have the same radially outer diameter as the adjacent rearward
portion 162 and of the forward portion 146. However, the tine rearward parts 160 have
inner surfaces 164 of greater diameter than the clip rearward portion 162. This results
in the tines extending at a greater angle or incline from the axis 152 for a contact
point 166 of given initial inside diameter (before a pin is inserted). The middle
and forward parts 170, 172 of the tines are similar to those of the clip of Figure
3. The extreme front end of the clip at 174 is preferably bevelled. Although the bevelled
portion 174 is not bevelled over as great a difference in diameter as the clip of
Figure 3, the clip 134 of Figure 9 can be constructed with simpler tooling.
[0025] Figure 10 illustrates a piece of flat sheet material 180 from which the clip of Figure
9 can be constructed. The piece of sheet metal can be cut as a rectangle from a larger
sheet. Then slots 182 are formed in the sheet, with slot-like indentations 184 at
the opposite sides of the sheet. A next step is to apply a punch having the shape
indicated at 186, to areas that include the tines 140a-140d. The punch is pressed
with sufficient force to reduce the thickness of a corresponding area 190 of the sheet,
with most of the area to form a tine. An initially thick sheet such as of 0.15 mm
(0.006 inch) may be used, with the punch decreasing the thickness to perhaps 0.10
mm (0.004 inch). After the punch has been applied, areas such as 192 on either side
of the tine, which have been extended by the punching operation, are trimmed away.
The next step is to lance cut the sheet at the locations 194 to form the tine ends.
The next step is to bend or crimp the tines such as 140a to the configurations shown
in Figure 9. Then, the piece of sheet metal 180 is rolled into a tubular shape.
[0026] The rolling of the piece of sheet metal 180 (i.e. bending substantially all portions
about an axis, as opposed to making a few sharp 90 bends into a square cross-section)
can be relatively easily accomplished because its forward and rearward ends are of
substantially the same width. After rolling, the clip is installed in the cavity of
the barrel 132. The width of the piece of sheet metal is closely controlled so when
rolled and inserted, the rearward portion 162 and forward portion 146 of the clip
press firmly against the walls of the barrel cavity to hold the clip in place. As
shown in Figure 11, the opposite sides of the sheet metal abut one another at the
location 196.
[0027] Figure 12 illustrates a portion of the spring clip of Figure 9. The clip may be formed
of sheet metal most of which has a thickness 200 of 0.15 mm (0.006 inch), and with
tines 140 of a thickness 202 of 0.10 mm (0.004 inch). The radially inner edge 154
of the tine tip lies radially outward of the inner face 150 of the thick forward clip
portion 146, by a distance 204 which is a minimum of .025 mm (0.001 inch) (at least
2% of the inside diameter 153 of the closed entry region). The outer edge 206 of the
tine tip can deflect outwardly by a distance 210 of 0.10 mm (0.004 inch). The contact
point 166 can be deflected outwardly by up to 0.127 mm (0.005 inch) (0.027 mm (0.001
inch) more than distance 210) before the tine is permanently set. The clip is designed
to receive pin contacts of a nominal diameter of 1.02 mm (0.040 inch), and a maximum
diameter of 1.041 mm (0.041 inch). The closed entry region (150 in Figure 9) has a
diameter 152 of 1.12 mm (0.044 inch) with a tolerance of .025 mm (0.001 inch).
1. A socket contact assembly (10,130) comprising an electrically conductive seamless
barrel (12,132) having an axis (30,152) a rear end termination portion (26) and a
front portion (14,138) having a wall forming a substantially cylindrical cavity centred
on the axis, characterised in that the assembly comprises a clip (20,134) formed of
a piece of sheet metal (114,180) rolled into a tube and having forward (36,146), rearward
(32, 162) and middle (34,170) portions, the clip lying in the barrel cavity (16,136)
and having an axis (30,152) coaxial with the barrel axis, in that the clip middle
portion has a plurality of tines (42,140), with each tine (42,140) having a free forward
end (54,172) ending in a free tip (56,156), in that each of the tines has a middle
part (52,170) extending in a radially inward-forward direction and has a forward part
(54,172) extending in a radially outward-forward direction, in that the tine tips
(56,156) have a radially inner (60,154) and outer (62,206) edges, with the tip inner
edges (60,154) lying on an imaginary circle of a first diameter and with the radially
inner diameter (150) of the forward clip portion (36,146) being smaller than the first
diameter.
2. A socket contact assembly as claimed in claim 1, characterised in that the piece of
sheet metal (180) has a reduced thickness (202) at the tines (140).
3. A socket contact assembly as claimed in claim 2, characterised in that most of the
clip forward portion (146) has a greater thickness than the tines (140).
4. A socket contact assembly as claimed in any one of claims 1 to 3, characterised in
that the clip middle portion has a plurality of slots (182) extending primarily parallel
to the axis (152) with at least one of the tines (42,140) formed between a pair of
the slots.
5. A contact assembly as claimed in any one of claims 1 to 4, characterised in that the
piece of sheet metal (114) has outer and inner faces which respectively form the radially
outer and inner surfaces of the clip (134) and in that the tines (140) have rear ends
(160) with outer surfaces that are flush with the outer surface of the rearward clip
portion (162), and with inner surfaces (164) that are recessed from the inner surface
of the rearward clip portion.
6. A socket contact assembly as claimed in claim 1, characterised in that the wall (16)
of the barrel cavity lies closely around the clip forward portion (36) to prevents
its expansion and to protect the clip (20) during handling of the contact assembly,
and the clip forward portion (36) presses against the cavity walls (16) to securely
hold the clip (20) in the cavity, the clip forward portion (36) forming a closed entry
region that has an inside diameter at least as small as the first imaginary circle
on which the tip inner edges (60) lie as the clip forward portion (36) presses against
said barrel cavity walls (16), the sheet metal clip forward portion includes a flared
front part (80) with radially inner (82) and outer (92) surfaces that are both tapered
in a radially inward-rearward direction, and the flared front part has a rear end
with a smaller inside diameter than the diameter of the first imaginary circle which
lies on the tip inner edges, the clip forward portion also includes a middle part
(86) extending rearwardly from the rear end of the flared front part with this middle
part having radially inner (90) and outer (96) surfaces that are both tapered in a
radially inward-rearward direction, the inner surface of the forward portion forming
the closed entry region at an intersection between the flared front part and the tapered
middle part.
7. A contact assembly as claimed in claim 6, characterised in that the flared front part
(80) of the clip (20) has a front end of greater diameter than any other part of the
clip, and the barrel front portion has a tapered front part (100) that matches and
abuts the radially outer surface (84) of the clip flared front part (80).
8. A contact assembly as claimed in claim 6 or 7, characterised in that the clip forward
portion (36) includes a cylindrical part extending rearward of the middle part (86)
and forward of the tine forward parts (54) and pressing firmly against the walls of
the cavity (16).
9. A socket contact assembly as claimed in claim 1, characterised in that the cavity
(16) has a front end (18) which is tapered in a radially outwardly-forward direction
and wherein the clip forward portion (36) presses radially outwardly against the barrel,
and the clip forward portion has a front part (80) flared in a radially outward-forward
direction and abutting the barrel tapered front end, the middle part extending from
the rear end of the flared front part in a radially outward-rearward direction, and
a close entry region is formed at the intersection of the front and middle parts which
closed entry region has an inside diameter that is less than said first diameter.
10. A contact assembly as claimed in claim 9, characterised in that the clip forward portion
(36) has a substantially cylindrical rear part (94) extending forward of the tines
and pressing firmly against the wall of the cavity (16).
11. A socket contact assembly as claimed in any one of claims 1,6,7,8,9 or 10, characterised
in that the clip (20) is rolled from a sheet of metal (114) which when lying flat
before it is rolled, has a substantially constant width except at a front part (80)
of the forward portion where the sheet has a progressively greater width at progressively
more forward locations.
1. Eine Buchsenkontaktgruppe (10,130), die einen elektrisch leitfähigen nahtlosen Körper
(12,132) umfaßt, welcher eine Achse (30,152), einen Anschlußbereich am hinteren Ende
(26) und einen vorderen Bereich (14,138) mit einer Wand besitzt, die einen im wesentlichen
zylindrischen Hohlraum bildet, der um die Achse zentriert ist, dadurch gekennzeichnet,
daß die Baugruppe einen Clips (20,134), der aus einem Stück röhrenförmig gewalzten
Blechs (114,180) besteht, und vordere (36,146), hintere (32,162) und mittlere (34,170)
Teilbereiche umfaßt, wobei der Clips im Hohlraum (16,136) des Körpers liegt und eine
Achse (30,152) besitzt, die koaxial mit der Achse des Körpers verläuft, wobei der
mittlere Teilbereich des Clipses mehrere Zinken (42,140) hat, wobei jeder Zinken (42,140)
ein freies vorderes Ende (54,172) besitzt, das als freie Spitze (56,156) endet, wobei
jeder Zinken ein Mittelteil (52,170), das sich in einer radial nach innen und vom
verlaufende Richtung erstreckt, und ein Vorderteil (54,172), das sich in eine radial
nach außen und vom verlaufende Richtung erstreckt, hat, wobei die Spitzen (56,156)
der Zinken radial verlaufende Innen- (60,154) und Außenkanten (62,206) haben, wobei
die Innenkanten (60,154) auf einem imaginären Kreis mit einem ersten Durchmesser liegen,
wobei der radial verlaufende Innendurchmesser (150) des vorderen Bereiches (36,146)
des Clipses kleiner als der erste Durchmesser ist.
2. Eine Buchsenkontaktgruppe nach Anspruch 1, dadurch gekennzeichnet,
daß das Blechstück (180) an den Zinken (140) eine verringerte Stärke (202) hat.
3. Eine Buchsenkontaktgruppe nach Anspruch 2, dadurch gekennzeichnet,
daß der Großteil des vorderen Bereiches (146) eine größere Stärke als die Zinken (140)
hat.
4. Eine Buchsenkontaktgruppe nach einem der Ansprüche 1 bis 3, dadurch gekennzeichnet,
daß der Mittelbereich des Clipses mehrere Schlitze (182) hat, die sich hauptsächlich
parallel zur Achse (152) erstrecken, wobei mindestens ein Zinken (142,140) zwischen
jeweils zwei Schlitzen ausgebildet ist.
5. Eine Kontaktgruppe nach einem der Ansprüche 1 bis 4, dadurch gekennzeichnet,
daß das Blechstück (114) Außen- und Innenflächen hat, die jeweils die radial verlaufenden
Außen- und Innenflächen des Clipses (134) bilden, und daß die Zinken 140 hintere Enden
(160) mit Außenflächen haben, welche mit der Außenfläche des rückwärtigen Clipsbereiches
(162) und mit Innenflächen (164), die von der Innenfläche des rückwärtigen Clipsbereiches
ausgespart sind, bündig sind.
6. Eine Buchsenkontaktgruppe nach Anspruch 1, dadurch gekennzeichnet,
daß die Wand (16) des Körperhohlraums eng am vorderen Bereich (36) des Clips liegt,
um seine Ausdehnung zu verhindem und um den Clips (20) während der Handhabung der
Kontaktbaugruppe zu schützen, und der vordere Bereich (36) des Clipses drückt gegen
die Wände (16) des Hohlraums, um den Clips (20) sicher im Hohlraum festzuhalten, wobei
der vordere Bereich (36) des Clipses eine geschlossene Eintrittsregion bildet, die
einen Innendurchmesser hat, der mindestens so klein wie der erste imaginäre Kreis
ist, auf dem die Innenkanten (60) der Spitze liegen, wenn der vordere Clipsbereich
(36) gegen die Wände (16) des Körpemohlraums drückt, der vordere Bereich des Blechclipses
hat ein aufgeweitetes vorderes Teil (80) mit radial verlaufenden Innen- (82) und Außenflächen
(92), die beide mit einer radial nach innen hinten verlaufenden Richtung konisch zulaufen,
und das aufgeweitete Vorderteil hat ein hinteres Ende mit einem kleineren Innendurchmesser
als der Durchmesser des ersten imaginären Kreises, der auf den Innenkanten der Spitze
liegt, der vordere Bereich des Clipses hat auch ein mittleres Teil (86), das sich
vom hinteren Ende des aufgeweiteten Teils erstreckt, wobei dieses mittlere Teil radial
verlaufende Innen- (90) und Außenflächen (96) hat, die beide in einer radial nach
hinten außen verlaufenden Richtung konisch zulaufen, die Innenfläche des vorderen
Bereiches bildet die geschlossene Eintrittsregion bei einem Schnittpunkt zwischen
dem aufgeweiteten Vorderteil und dem konischen mittleren Teil.
7. Eine Kontaktgruppe nach Anspruch 6, dadurch gekennzeichnet,
daß das aufgeweitete Vorderteil (80) des Clipses (20) ein vorderes Ende hat, dessen
Durchmesser größer als jedes andere Clipsteil ist, und daß der vordere Bereich des
Körpers ein konisch zulaufendes vorderes Teil (100) hat, das zu der radial verlaufenden
Außenfläche (84) des aufgeweiteten Clipsvorderteils (80) paßt und gegen sie stößt.
8. Eine Kontaktgruppe nach Anspruch 6 oder 7, dadurch gekennzeichnet,
daß der vordere Bereich (36) des Clipses ein zylindrisches Teil besitzt, das nach
sich hinter das mittlere Teil (86) und vor die vorderen Teile (54) der Zinken erstreckt
und fest gegen die Wände des Hohlraums (16) drückt.
9. Eine Buchsenkontaktgruppe nach Anspruch 1, dadurch gekennzeichnet,
daß der Hohlraum (16) ein vorderes Ende (18) hat, das in einer radial nach außen und
vom verlaufenden Richtung konisch zuläuft, wobei der vordere Bereich (36) des Clipses
radial nach außen gegen den Körper drückt und der vordere Clipsbereich ein vorderes
Teil (80) hat, das in einer radial nach außen und vom verlaufenden Richtung aufgeweitet
ist und gegen das konisch zulaufende vordere Ende des Körpers stößt, wobei das mittlere
Teil sich vom hinteren Ende des aufgeweiteten Vorderteils in einer radial nach außen
und hinten verlaufenden Richtung erstreckt, und es wird eine geschlossene Eintrittsregion
am Schnittpunkt des vorderen und des mittleren Endes gebildet, die einen Innendurchmesser
hat, der kleiner als der genannte erste Durchmesser ist.
10. Eine Kontaktgruppe nach Anspruch 9, dadurch gekennzeichnet,
daß der vordere Bereich (36) des Clipses ein im wesentlichen zylindrisches hinteres
Teil (94) hat, das sich vor den Zinken erstreckt und fest gegen die Wand des Hohlraums
(16) drückt.
11. Eine Buchsenkontaktgruppe nach einem der Ansprüche 1, 6, 7, 8, 9 oder 10, dadurch gekennzeichnet,
daß der Clips (20) durch Walzen eines Bleches (114) gebildet wird, das, wenn es vor
dem Walzen flach liegt, eine im wesentlichen konstante Breite hat, ausgenommen am
vorderen Teil (80) des vorderen Bereiches, wo das Blech umso breiter wird, je weiter
nach vom die Stellen liegen.
1. Ensemble de contact (10, 130) de prise femelle comprenant un cylindre sans soudure
(12, 132) conducteur de l'électricité ayant un axe (30, 152), une partie terminale
(26) à l'extrémité arrière et une partie frontale (14, 138)ayant une paroi qui forme
une cavité sensiblement cylindrique centrée sur l'axe, caractérisé en ce que l'ensemble
comprend une pince (20, 134) formée d'une pièce de métal en feuille (114, 180) enroulée
sous forme de tube et présentant des parties avant (36, 146), arrière (32, 162) et
centrale (34, 170), la pince reposant dans la cavité (16, 136) du cylindre et ayant
un axe (30, 152) coaxial avec l'axe du cylindre, en ce que la partie centrale de la
pince présente une série de dents (42, 140), chaque dent (42, 140) ayant une extrémité
avant libre (54, 172) se terminant par une pointe libre (56, 156), en ce que chacune
des dents a une partie centrale (52, 170) qui s'étend vers l'avant et vers l'intérieur
radialement et a une partie avant (54, 172) s'étendant vers l'avant et vers l'extérieur
radialement, en ce que les pointes (56, 156) des dents ont des bords internes (60,
154) et externes (62, 206) radialement, les bords internes (60, 154) des pointes se
trouvant sur un cercle imaginaire d'un premier diamètre et le diamètre interne (150)
radialement de la partie avant (36, 146) de la pince étant plus petit que le premier
diamètre.
2. Ensemble de contact de prise femelle selon la revendication 1, caractérisé en ce que
la pièce de métal en feuille (180) a une épaisseur réduite (202) au niveau des dents
(140).
3. Ensemble de contact de prise femelle selon la revendication 2, caractérisé en ce que
la majeure partie de la partie avant (146) de la pince a une épaisseur supérieure
à celle des dents (140).
4. Ensemble de contact de prise femelle selon l'une quelconque des revendications 1 à
3, caractérisé en ce que la partie centrale de la pince a une série de fentes (182)
s'étendant principalement en parallèle avec l'axe (152), au moins une des dents (42,
140) étant formée entre deux fentes.
5. Ensemble de contact de prise femelle selon l'une quelconque des revendications 1 à
4, caractérisé en ce que la pièce de métal en feuille (114) a des faces externe et
interne qui forment respectivement les surfaces externe et interne radialement de
la pince (134) et en ce que les dents (140) ont des extrémités arrière (160) avec
des surfaces externes qui sont de niveau avec la surface externe de la partie arrière
(162) de la pince, et avec des surfaces internes (164) qui sont encastrées dans la
surface interne de la partie arrière de la pince.
6. Ensemble de contact de prise femelle selon la revendication 1, caractérisé en ce que
la paroi (16) de la cavité du cylindre se resserre étroitement autour de la partie
avant (36) de la pince pour empêcher son expansion et protéger la pince (20) au cours
de la manipulation de l'ensemble de contact, et la partie avant (36) de la pince se
presse contre les parois (16) de la cavité pour supporter solidement la pince (20)
dans la cavité, la partie avant (36) de la pince formant une région d'embouchure étranglée
qui a un diamètre interne au moins aussi faible que celui du premier cercle imaginaire
sur lequel les bords internes (60) des pointes se situent lorsque la partie avant
(36) de la pince se presse contre ladite paroi (16) de la cavité du cylindre, la partie
avant de la pince de métal en feuille comprend une partie frontale évasée (80) avec
des surfaces interne (82) et externe (92) radialement qui sont toutes deux en forme
de cône vers l'arrière et vers l'intérieur radialement, et la partie frontale évasée
a une extrémité arrière avec un diamètre interne plus faible que le diamètre du premier
cercle imaginaire qui se situe sur les bords internes des pointes, la partie avant
de la pince comprend également une partie centrale (86) s'étendant vers l'arrière
depuis l'extrémité arrière de la partie frontale évasée, cette partie centrale ayant
des surfaces interne (90) et externe (96) radialement qui sont toutes deux en forme
de cône vers l'arrière et vers l'intérieur radialement, la surface interne de la partie
avant formant la région d'embouchure étranglée au niveau d'une intersection entre
la partie frontale évasée et la partie centrale en forme de cône.
7. Ensemble de contact de prise femelle selon la revendication 6, caractérisé en ce que
la partie frontale évasée (80) de la pince (20) a une extrémité frontale de plus grand
diamètre que toute autre partie de la pince, et la partie frontale du cylindre a une
partie frontale en cône (100) qui correspond et s'appuie sur la surface externe radialement
(84) de la partie frontale évasée (80) de la pince.
8. Ensemble de contact de prise femelle selon la revendication 6 ou 7, caractérisé en
ce que la partie avant (36) de la pince comprend une partie cylindrique s'étendant
vers l'arrière de la partie centrale (86) vers l'avant des parties avant (54) des
dents et se pressant solidement contre les parois de la cavité (16).
9. Ensemble de contact de prise femelle selon la revendication 1, caractérisé en ce que
la cavité (16) a une extrémité frontale (18) qui est en forme de cône vers l'avant
et vers l'extérieur radialement et dans laquelle la partie frontale (36) de la pince
se presse radialement vers l'extérieur contre le cylindre, et la partie avant de la
pince à une partie frontale (80) évasée vers l'avant et vers l'extérieur radialement
et s'appuyant sur l'extrémité avant en cône du cylindre, la partie centrale s'étendant
de l'extrémité arrière de la partie frontale évasée vers l'arrière et vers l'extérieur
radialement, et une région d'embouchure étranglée est formée à l'intersection des
parties avant et centrale, ladite région ayant un diamètre inférieur audit premier
diamètre.
10. Ensemble de contact de prise femelle selon la revendication 9, caractérisé en ce que
la partie avant (36) de la pince a une partie arrière sensiblement cylindrique (94)
s'étendant vers l'avant des dents et se pressant solidement contre la paroi de la
cavité (16).
11. Ensemble de contact de prise femelle selon l'une quelconque des revendications 1,
6, 7, 8, 9 ou 10, caractérisé en ce que la pince (20) est enroulée dans une feuille
de métal (114) qui, lorsqu'elle est à plat avant d'être enroulée, a une largeur sensiblement
constante excepté dans la partie avant (80) de la partie avant où la feuille a une
largeur qui augmente progressivement au fur et à mesure que les emplacements s'échelonnent
vers l'avant.