[0001] The present invention relates to a reflector for vehicles.
[0002] In particular, the present invention relates to a reflector for vehicles, of the
type comprising a forwardly open reflecting body having a rear axial hole, a lamp
mounted in the axial hole and having an intermediate flange, an annular socket connected
to the rear end of the reflecting body and comprising a collar co-axial with the axial
hole and co-operating with the said flange, and resilient fixing means associated
with the collar and cooperating with the flange to fix the lamp axially, in a releasable
manner, with respect to the reflecting body, the resilient fixing means including
resilient thrust means co-operating with the said flange and means for engaging the
resilient thrust means to the collar.
[0003] In general, in known reflectors of the type described above, two different types
of resilient thrust means are utilised.
[0004] The first known type of resilient thrust means comprise a leaf spring pivoted at
one of its ends on to the said collar and rotatable with respect to the collar itself
between an open position and a closed operative position. When disposed in its closed
operative position the leaf spring is engaged in a releasable manner at its second
end, to related engagement means associated with a portion of the collar diametrically
opposite that hingedly coupled to the first end of the spring itself.
[0005] The second known type of said resilient thrust means comprise a resilient ring deformable
in an axial sense which is inserted into the interior of the collar and in contact
with the flange of the lamp, which has radial projections which, by means of rotation
of the ring itself, engage in bayonet fashion with respective engagement means associated
with the collar thereby axially fixing the lamp on to the rear socket of the reflector.
[0006] The two different types of known resilient thrust means described above obviously
require the associated engagement means and the collar of the related reflector to
have a precise shape and are not interchangeable with one another.
[0007] Consequently, it is necessary for headlamp manufacturers to adopt the expensive solution
of producing, for the same headlamp, a multiplicity of mouldings for the formation
of different collars adapted to permit the utilisation of one or the other of the
two different types of resilient thrust means previously described.
[0008] The object of the present invention is that of eliminating the disadvantage described
above by providing a reflector on which the axial fixing of the lamp can be effected
equally well by utilising one or the other of the two different known types of resilient
thrust means described.
[0009] According to the present invention there is provided a reflector for vehicles, of
the type comprising a forwardly open reflecting body and having a rear hole, a lamp
mounted in the said hole and having an intermediate flange, an annular socket connected
to the rear end of the reflecting body and including a collar co-axial with the said
hole and co-operating with the said flange, and resilient fixing means associated
with the collar and co- operating with the flange to fix the lamp axially, in a releasable
manner, with respect to the reflecting body, the resilient fixing means, including
resilient thrust means co-operating with the said flange and means for engaging the
said resilient thrust means to the collar, characterised by the fact that the said
engagement means comprise a pair of identical engagement brackets coupled to diametrically
opposite portions of the collar; each bracket extending in a direction substantially
parallel to an axis of the said hole, and having at least one associated lateral slot
extending transversely of the said axis; each slot communicating with the outside
through a respective opening formed in the said collar and including an inlet portion
and a terminal portion for form engagement of the said resilient thrust means; and
the first of the said brackets defining, with the said collar, a cavity substantially
parallel to the associated said slot.
[0010] Preferably, the said resilient thrust means comprise a leaf spring in turn comprising
at least one curved arm a first end section of which engages rotatably in the said
cavity to provide the hinged coupling between the leaf spring itself and the collar,
and a second end section of which is coupled in a releasable manner to the second
of the said brackets and engages the said hollow terminal portion of the associated
said slot.
[0011] Alternatively, the said resilient thrust means are coupled to the said collar by
means of a bayonet coupling, and comprise an annular body resiliently deformable in
an axial sense and disposed within the said collar and in contact with a rear surface
of the said flange, and two projections extending radially out from the annular body
and through an associated said slot; each projection being coupled to the associated
slot by means of a respective said bayonet coupling.
[0012] The invention will now be described with reference to the attached drawings which
illustrate two non-limitative embodiments, in which:
Figure 1 is a rear view of a first preferred embodiment of the reflector according
to the present invention;
Figure 2 is a rear view of a second preferred embodiment of the reflector according
to the present invention;
Figure 3 is an artificial exploded rear view of the embodiments of Figures 1 and 2;
Figure 4 is an exploded, partially sectioned side view taken on the line IV-IV of
Figure 3 illustrating the embodiments of Figures 1 and 2;
Figure 5 is a section taken on the line V-V of Figure 3;
Figure 6 is a front view of the reflector of Figure 1 or Figure 2, with parts removed
for clarity;
Figure 7 illustrates a detail of Figure 1 on an enlarged scale, and partly in section;
Figure 8 illustrates a detail of Figure 2 on an enlarged scale and partly in section;
and
Figure 9 illustrates a detail of Figure 2 in side elevation.
[0013] In the attached Figures and, in particular, in Figures 3 and 4, the reference numeral
1 indicates a reflector for vehicles, comprising a reflecting body 2 of generally
parabolic form which has an optical axis 3, and is provided with a rear axial hole
4 to allow passage for a lamp 5 disposed on the optical axis 3 and having an intermediate
flange 6 for coupling to the reflecting body 2.
[0014] The reflector 1 further includes an annular rear socket 7 which is preferably made
of moulded plastics material and comprises, in turn, an annular plate 8 limited at
the front by a parabolic surface 9, which is coupled to a portion of the reflecting
body 2 surrounding the hole 4. The socket 7 further includes a generally cylindrical
collar 10 co-axial with the axis 3. The collar 10 projects rearwardly from a rear
surface of the plate 8 and has at its front end an internal flange 11. The collar
10 is rearwardly limited by an edge 12 having a plurality of axial reference cavities
13 for receiving projections 14 extending radially outwardly from the flange 6, and
four further axial recesses 15 defining, on the collar 10, two diametrically opposed
projections 16.
[0015] Each projection 16 is engaged by a respective substantially U-shape bracket 17 which
is preferably made of punched and folded sheet metal, and is force fitted on to the
projection 16 itself. The brackets 17 extend in a direction substantially parallel
to the optical axis 3, are identical to one another, and each comprises two arms 18
and 19 parallel to one another, the first extending inwardly and the second outwardly
of the associated projection 16 parallel to the optical axis 3, and a cross piece
20 for connecting and joining the rear ends of the arms 18 and 19. Each of the arms
18 and 19 has, in plan, a substantially T-shape form and comprises a crosspiece 21
adjacent to the crosspiece 20, and a stem 22 extending from an intermediate portion
of the associated crosspiece 21 and of width at least equal to the width of the associated
projection 16.
[0016] As illustrated, in particular in Figures 7 and 8, the outer shape of each stem 22
(only one of which is illustrated) merges with the outer profile of the associated
crosspiece 21 forming two semi-circular seats 23. Moreover, each stem 22 of each arm
18 carries, connected to its free end, an intermediate portion of a further crosspiece
24, a portion of which is clenched to the flange 11 to prevent accidental separation
of the associated bracket 17 from the associated projection 16. The crosspiece 24
defines, together with the crosspiece 21, two slots 25 and 26 extending transversely
of the optical axis 3. The slots 25 and 26 are disposed on opposite sides of the stem
22 and define an entrance, through the respective recesses 15, to the associated seats
23 each of which constitutes a terminal portion of the associated slot 25, 26.
[0017] From a free end of the crosspiece 21 of each arm 18 extends a projection 27 which
is substantially parallel to and faces the associated crosspiece 24, and is limited
on the side facing the crosspiece 24 itself, by a cam face 18 having an intermediate
cusp facing towards the crosspiece 24 and constituting a rear edge of an entrance
portion 28a of the associated slot 25.
[0018] The brackets 17 constitute a part of a fixing device 29 which further includes a
first or second resiliently deformable element, respectively indicated 30 and 31,
each of which is coupled to the brackets 17 alternatively to the other to fix the
flange 6 of the lamp 5 with the associated projections 14 in contact with the bottom
of the associated recess 13.
[0019] With reference to Figures 3 and 4, the element 30 is constituted by a double leaf
spring preferably made of metal wire bent in such a way as to define two curved arms
32 substantially parallel to one another, one end of each of which is fixedly connected
to a corresponding end of the other arm 32 by means of a crosspiece 33, and an opposite
end section which is folded to form a loop 34. The crosspiece 33 is fitted in a rotatable
manner, through a cavity 35 (Figure 4) defined between the crosspiece 20 of a first
of the brackets 17 and the edge 12 of the collar 10, in such a way as to form a hinge
35a coupling the element 30 to the said first bracket 17 and, therefore, to the collar
10, and to permit the element 30 itself to rotate about the axis of the crosspiece
33 between an open position (illustrated in broken outline in Figure 1) and an operative
closed position, to reach which a portion of each loop 34 is inserted, by resilient
deformation of the associated arm 32, into contact with the flange 6 of the lamp 5
within the slot 25 or 26 of the second of the brackets 17, and laterally displaced
until it snap-engages with the associated seat 23.
[0020] With reference to Figures 3, 4 and 9, the resilient element 31 comprises an annular
body 36 defined by two diametrically opposite annular portions 37 (Figure 9) joined
together by two further offset annular portions 38 disposed in contact with an upper
surface of the flange 6 of the lamp 5. Each portion 37 has an associated axial projection
39 and an associated projection 40 extending radially outwardly. The dimensions of
the annular body 36 and the projections 40 are such that the annular body 36 can be
fitted axially within the collar 10 carrying the projections 40 so that each engages
a respective recess 15 communicating with an associated slot 25. By means of axial
resilient deformation of the portions 37, and subsequent rotation of the annular body
36 imparted by acting on the projections 39, it is possible to cause sliding of each
projection 40 along the entrance portion 28a of the associated slot 25, and to contact
the rear cam edge 28 of the slot 25 itself, and subsequently to cause snap-engagement
of this projection 40 beyond the cusp of the said edge 28 and into substantial coupling
with the associated seat 23 to define, with the associated bracket 17, a bayonet coupling
41.
[0021] From the preceding description it is possible to note that by means of the use of
the two brackets 17, which can be completely identical to one another for economies
of scale, it is possible to form on the same reflector 1 fixings for the lamp 5 in
two different modes chosen by the user.
1. A reflector for vehicles, of the type comprising a forwardly open reflecting body
(2) having a rear hole (4), a lamp (5) mounted in the said hole (4) and having an
intermediate flange (6), an annular socket (7) connected to the rear end of the reflecting
body (2) and including a collar (10) co-axial with the said hole (4) and co-operating
with the said flange (6), and resilient fixing means (17,30;17,31) associated with
the collar (10) and cooperating with the flange (6) to fix the lamp (5) axially in
a releasable manner with respect to the reflecting body (2), the resilient fixing
means (17,30;17,31) comprising resilient thrust means (30;31) cooperating with the
said flange (6) and engagement means (17) for engaging the resilient thrust means
(30;31) to the collar (10), characterised by the fact that the said engagement means
comprise a pair of connector brackets (17) identical with one another and coupled
with diametrically opposite portions (16) of the collar (10); each bracket (17) extending
in a direction substantially parallel to an axis (3) of the said hole (4), and having
at least one respective lateral slot (25) extending transversely of the said axis
(3); each slot (25) communicating with the outside through a respective cavity (15)
formed in the said collar (10), and including an entrance portion (28a) and a terminal
hollow portion (23) for the said resilient thrust means (30;31); and a first of the
said brackets (17) defining, with the said collar (10), a cavity (35) substantially
parallel to the associated said slot (25).
2. A reflector according to claim 1, characterised by the fact that the said entrance
portion (28a) comprises a rear cam edge (28) having a cusp facing towards the facing
body (2).
3. A reflector according to Claim 1 or Claim 2, characterised by the fact that each
said bracket (17) is substantially U-shape and is fitted onto the associated portion
(16) of the collar (10); The said cavity (35) being defined between an intermediate
portion (20) of the first bracket (17) and a rear portion (12) of the said collar
(10).
4. A reflector according to any of Claims 1 to 3, characterised by the fact that the
said resilient thrust means comprise a leaf spring (30) in turn comprising at least
one curved arm (32), a first end section (33) of which engages rotatably in the said
recess (35) to form a hinged coupling (35a) between the leaf spring (30) and the collar
(10), and a second end section (34) of which is coupled in a releasable manner to
the second of the said brackets (17) and engaging the said terminal hollow portion
(23) of the associated said slot (25).
5. A reflector according to any of Claims from 1 to 3, characterised by the fact that
the said resilient thrust means (31) are coupled to the said collar by means of a
bayonet coupling (41
6. A reflector according to Claim 5, characterised by the fact that the said resilient
thrust means (31) comprise an axially resiliently deformable annular body (36) disposed
within the said collar (10) and in contact with a rear surface of the said flange
(6), and two projections (40) extending radially outwardly from the annular body (36)
and through an associated said slot (25); each projection (40) being coupled to the
associated slot (25) by means of a respective said bayonet coupling (41).