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EP 0 859 560 B1 |
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EUROPEAN PATENT SPECIFICATION |
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Mention of the grant of the patent: |
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15.01.2003 Bulletin 2003/03 |
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Date of filing: 23.09.1996 |
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International Patent Classification (IPC)7: A42B 3/04 |
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International application number: |
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PCT/GB9602/349 |
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International publication number: |
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WO 9701/0731 (27.03.1997 Gazette 1997/14) |
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AN ARTICLE OF HEADGEAR
KOPFBEDECKUNG
ARTICLE DE PROTECTION POUR LA TETE
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Designated Contracting States: |
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DE ES FR GB IT NL SE |
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Priority: |
22.09.1995 GB 9519377
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Date of publication of application: |
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26.08.1998 Bulletin 1998/35 |
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Proprietor: Reevu Limited |
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Wolsingham, Co. Durham DH14 2HE (GB) |
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Inventor: |
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- STEELE, Graham
Newcastle-upon-Tyne NE3 2EN (GB)
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Representative: Croston, David et al |
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Withers & Rogers,
Goldings House,
2 Hays Lane London SE1 2HW London SE1 2HW (GB) |
| (56) |
References cited: :
EP-A- 0 007 432 BE-A- 864 521 DE-A- 2 730 635 FR-A- 2 631 789
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WO-A-94/22336 BE-A- 888 108 FR-A- 1 291 711 US-A- 3 059 519
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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] The invention relates to an article of headgear.
[0002] It is known from US 3,978,526 to provide an accessory for a motorcycle helmet in
the form of a channel which is affixed to the top of the motorcycle helmet longitudinally
in the position of a crest. The channel mounts three planar mirrors on its inner surface
which are arranged so that the wearer of the helmet can look into the channel and
via the mirrors see behind him. The mirrors are separately affixed to the interior
surface of the channel. Other rear view helmets are known from FR 2,631,789 ; FR 1,291,711
and WO 94/22336.
[0003] According to the invention there is provided a helmet having a protective shell and
padding inside the shell, the padding having a channel formed therethrough, the channel
having a base, side walls and an open top, and a separate one piece mounting inside
the shell, the mounting carrying or comprising a plurality of mirrors, the mounting
being arranged to be located across the open top of the channel so as to be carried
by the padding on either side of the channel with the mirrors facing from the mounting
into the channel, the mirrors and channel thus defining or forming part of a system
enabling a person wearing the article to see rearwards through the channel.
[0004] The fact that the viewing system is provided within rather than outside the shell
of the helmet greatly improves the safety of the helmet. The fact that the mirror
or mirrors are carried by or formed on a one piece mounting, simplifies manufacture
of the mounting and also enables the mounting together with the mirrors to be easily
assembled within the helmet. The fact that the mounting is provided within the helmet
also means that it can be made lightweight and the helmet of the invention can be
very significantly lighter than the prior known helmet.
[0005] At least a portion of the mounting may extend from one side of the inner surface
of the shell to the other, in a direction transverse to the fore and aft direction
of the helmet. In this way, the mounting is readily located for fixing and can, if
desired reinforce the strength of the shell. Sideways locating means may be provided
between the shell and the mounting. The sideways locating means may comprise a rib
on one of the shell and the mounting and means defining a groove to receive the rib
on the other of the shell and the mounting.
[0006] There are a plurality of mirrors. The use of an odd number of mirrors results in
an image which is the correct way around.
[0007] The mounting may include portions which engage in rebates at the top of the walls
of the channel.
[0008] The upper surface of the mounting preferably follows the general contour of the shell.
The mounting can thus be fitted closely and snugly against the inside of the shell.
The lower surface of the mounting which faces into the channel preferably follows
the general contour of the shell. The mounting will also in this way follow the contour
of a wearer's head to improve safety. The channel may be open at either or both ends
but preferably the shell includes a transparent window element opposite the end of
the channel. The transparent window element may be a separate part or alternatively
may be integral with the shell. The mounting may be substantially constant thickness.
This reduces the material required and hence the weight of the mounting while making
moulding from plastics easier. The mounting may conveniently comprise a plurality
of substantially planar sections. The channel is defined in a padding material such
as foam within the helmet and the padding material may have increased resilience locally
alongside the channel.
[0009] Each mirror may take any suitable form and may be electrodeposited onto a surface
of the mounting. The mounting may suitably be made of plastics material such as ABS
or an alloy of ABS and polycarbonate while the electrodeposited material may be metal
and may for example be chromium.
[0010] The channel may be divided at least at the front of the article by further padding
material. This provides greater energy absorption. An aperture may be provided in
the padding material adjacent at least one mirror such as to allow pressurized air
to be directed against the mirror to clean it.
[0011] The optical elements constituted by the mirrors may be of any desired shape but preferably
at least one of the optical elements constituted by the mirrors is parabolically curved.
The mirror into which a wearer will look is preferably parabolically concave.
[0012] Preferably the first optical element into which a wearer looks, in use, is parabolically
concave and focused at the wearer's eye. This will reduce the spread of rays in the
light path and hence enable the channel to be reduced in size. The final optical element
may be a parabolically convex mirror. This will increase the spread of rays to compensate
for a parabolically concave first mirror and/or to increase the field of view.
[0013] Embodiments of the invention will now be described by way of example and with reference
to the accompanying drawings, in which:
Fig. 1 is a side elevation in cross-section of a helmet according to the first embodiment
of the invention;
Fig. 2 is a fragmentary detail rear elevation of the helmet of Fig. 1;
Fig. 3 is a side elevation in cross-section of a helmet according to the second embodiment
of the invention: and
Fig. 4 is an exploded perspective view of the helmet of Fig. 3.
[0014] The helmet 10 of the embodiment comprises an outer shell 12 made of strong plastics
material and a soft inner foam layer 14 within the shell 12. A liner 16 which may
be made of cloth is shown over the inner surface of the foam 14. A one piece mounting
18 is provided in the roof of the shell 12 and may be made of ABS or a plastics alloy
of ABS and polycarbonate. The mounting 18 comprises four planar sections and one slightly
convex section serially connected edge to edge. The first planar section 20 lies flat
against a planar extension 21 of the outer shell 12 which extends into the upper field
of view of the wearer. The inwardly facing surface of the first section 20 is electrodeposited
with chromium to form a mirror surface 23. The second planar section 22 extends across
the curved part of the shell 12 and is connected at its edge to a third planar section
24, the lower surface of which is metallised with electrodeposited chromium to form
a mirror surface 26. A rib 28 extends upwardly to the shell 12 from the junction between
the third planar section 24 and the fourth planar section 30 which is relatively short
and a further rib 32 extends from the other edge of the fourth planar section 30 where
it is connected to the convex section 34 which leads to the rear of the helmet. A
single lateral rib 36 parallel to the ribs 28 and 32 extends centrally from the convex
section 34. The convex section 34 is also metallised on its lower surface to provide
a mirror surface 40. A flange 42 extends from the inner surface of the helmet 12 and
the rear edge of the convex section 34 lies against the lower surface of the flange
42. The extension 21 and flange 42 assist in locating the mounting 18 longitudinally
in the shell 12.
[0015] Behind the rib 36 are provided three further ribs 44,46 which lie in a longitudinal
plane, as shown in Fig. 2. The central rib 44 extends to the inner surface of the
shell 12 while the two outer ribs 46 extend from bosses 48 provided on the convex
section 34 and are received in grooves 50 defined in bosses 52 depending from the
inner surface of the shell 12. A rectangular cross-section channel 54 is defined between
the mounting 18 and the foam 14 and leads to a transparent window section 56 of the
shell 12.
[0016] As the window 56 may constitute a point of weakness, a further flange 58 is provided
from the shell 12 extending over the floor of the channel 54 to a position on a radial
plane of the helmet 10 intersecting the upper edge of the window 56.
[0017] In use, a wearer, by looking at the mirrored surfaces 23,26,40 can see outwardly
to the rear of the helmet through the window 56 in the shell 12. The mounting 18 can
be injection moulded and the electrodeposited areas can be connected by thin lines
so that all three mirror surfaces 23,26,40 can be electrodeposited together for ease
of manufacture. In assembly, the mounting 18 complete with mirrored surfaces is simply
slid into the channel until the first section 20 lies against the extension 21 of
the helmet shell 12 and the convex section 34 of the mounting 18 lies against the
flange 42 with the ribs 44,46 in the boss grooves 50 for sideways location and can
be glued into place.
[0018] The mounting 18 as shown is very lightweight. Alternatively the mounting 18 can be
strengthened e.g. of greater thickness or stronger material to reinforce the helmet.
Clearly compromises between strength and weight can be struck as desired.
[0019] The flange 58 of the foam 14 adjacent the channel 56 may have additional resilience
to compensate for the gap constituted by the channel.
[0020] In a further embodiment, the ribs 28,32,36 are not provided.
[0021] In a still further embodiment, the channel 54 is sealed and may be filled with dry
gas or may be evacuated in order to protect the mirror surfaces 23,26,40. In this
case, the foam 14 at the floor of the channel 54 would be covered and the front of
the channel 54 would be sealed with a further transparent window 56.
[0022] In a further embodiment the one-piece mounting 18 provides a fourth mirror surface
and a fifth mirror surface is provided at the base of the rear of the helmet 10 on
the floor of the channel 54 which will extend over the entire longitudinal circumference
of the helmet so that the final mirror surface faces outwardly under the lower edge
of the shell 12.
[0023] In another embodiment a screen such as an LCD screen may be provided in the channel
54 to provide information to the wearer.
[0024] The second embodiment shown in Figs. 3 and 4 is similar to the first embodiment and
the same reference numerals will be used for equivalent features. Only the differences
from the first embodiment will be described.
[0025] The mounting 18 of the second embodiment comprises five sections 20,22,24,30,34 like
the mounting 18 of the first embodiment, but the first section 20 is a separate part
which includes outwardly extending hemispherical projections 60 which are snap-fitted
into hemispherical recesses 62 in two arms 64 which depend from the front edge of
the second section 22. In this way, the angle of the first section 20 can be adjusted
by pivoting it, the friction between the parts 20,64 holding the first section 20
at the desired angle after adjustment. The mirror surface 23 of the first section
20 is in the shape of the surface of a paraboloid and is concave.
[0026] The mirror surface 26 on the third section 24 is planar. The mirror surface 40 on
the fifth section 34 is in the shape of a surface of a paraboloid, this time being
convex.
[0027] The mounting ribs 28,32,36,42,44,46 and bosses 48,52 are not provided so that the
entire mounting 18 is substantially circumferential to a wearer's head. In the second
embodiment, because of the shapes of the mirror surfaces 23.26,40, the channel 54
can be much smaller both in depth and width. The mounting 18 is wider than the channel
54 and is received in rebates 66 in the upper edges of the channel 54 and then taped
onto the foam 14 with adhesive tape (not shown). An addition is the use of a black
cloth lining 68 for the channel 54 to reduce extraneous reflections.
[0028] The window 56 is made of a very strong transparent material such as polycarbonate
and includes a wide mounting flange 70 all around it which overlaps the inner surface
of the shell 12 enabling the window 56 to be glued to the shell 12. The window 56
may be made from about 3mm thick polycarbonate.
[0029] In use. as before. a person wearing the helmet 10 can look into the first mirror
surface 23 and reflections from the first, second and third mirror surfaces 26,40
enable the wearer to see what is behind him. The angle of the first section 20 which
bears the first mirror surface 23 can be adjusted manually to suit the eye position
of different wearers and also to suit different riding stances.
[0030] The fact that the first and last mirror surfaces 23,40 are parabolically curved means
that the size of the channel 54 and also the size of the window 56 can be reduced
significantly in comparison with arrangements using planar mirrors. Indeed, it has
been calculated that, for the same field of view, the width of the final mirror surface
40 and the window 56 can be reduced by 29% using the parabolic mirrors of the invention.
This large improvement has a correspondingly large improvement in safety as a greater
thickness of foam can be used inside a helmet of the same outer dimensions resulting
in better energy absorption. There are also cosmetic advantages in that the size of
the helmet can be made closer to that of a normal helmet i.e. one without a rear viewing
system.
[0031] The method of mounting the mounting 18 is very simple and as the mounting 18 only
comprises two pans, which comprise plate-like sections in series. They can be very
readily manufactured for example by injection moulding from a suitable plastics material
such as ABS, a combination of ABS and polycarbonate, or a composite material such
as glass reinforced plastic, in particular, glass filled reinforced nylon.
[0032] In an alternative embodiment. the entire outer shell 12 may be made from transparent
polycarbonate. This does away with the need for affixing the window 56 which would
then merely be an integral part of the transparent shell 12. The shell 12 could be
left transparent, or could be painted except for the area for the window 56.
[0033] The light paths to each eye of the wearer will overlap with one another part way
through the channel 54. In order to provide additional strength, the channel 54 may
not be a single open channel at the front of the helmet, but instead the foam 14 may
extend up to the mounting 18 to form a dividing wall at the front of the channel 54.
This will not affect the view for the wearer as it will not impinge upon the light
paths. The dividing wall may be triangular being wider at the front to provide optimum
strength by maximum size of the dividing wall. The central dividing wall may have
a different density foam to increase strength and/or absorption of energy upon impact
in that region.
[0034] Apertures may be provided through the foam 14 and the lining cloth into the channel
54 opposite each of the mirror surfaces 23, 26, 40. This enables the mirrors to be
cleaned by using an aerosol can of compressed air. The air is directed onto each mirror
in turn through its respective aperture.
[0035] The adjustable mirror of the second embodiment could be replaced by a fixed mirror
as in the first embodiment, if desired.
[0036] The position of the mirrors could be varied to provide dedicated helmets for different
types of riding style. Thus, a helmet is envisaged with a mirror position specifically
for riders of racing style motorcycles who lean forwards in prone position. Helmets
could also be produced dedicated to the riders of custom motorcycles who lie recumbent.
[0037] In a further alternative embodiment, the mounting 18 may be movable within the helmet
to allow for rider position changes.
[0038] Air vents may be provided in the foam leading to the channel 54 to provide cooling
air to the head, or alternatively to provide de-misting for the mirror surfaces 23,
26, 40 to eliminate condensation.
[0039] While the helmets are described as intended for use by motorcyclists, the same helmet
or helmets with the same viewing system could be used as cyclist's helmets, driving
helmets, motor racing helmets, police helmets, fireman's helmets, military helmets,
pilot's helmets, space helmets, safety helmets or security guard helmets, amongst
others.
1. A helmet (10) having a protective shell (12) and padding (14) inside the shell (12),
the padding (14) having a channel (54) formed therethrough, the channel (54) having
a base, side walls and an open top, and a separate one piece mounting (18) inside
the shell (12), the mounting (18) carrying or comprising a plurality of mirrors (23,
26, 40), the mounting (18) being arranged to be located across the open top of the
channel (54) so as to be carried by the padding (14) on either side of the channel
(54) with the mirrors (23, 26, 40) facing from the mounting (18) into the channel
(54), the mirrors (23, 26, 40) and channel (54) thus defining or forming part of a
system enabling a person wearing the article to see rearwards through the channel
(54).
2. A helmet as claimed in claim 1 wherein the mounting (18) includes portions which engage
in rebates (66) at the top of the walls of the channel.
3. A helmet according to claim 1 wherein the one piece mounting (18) is mounted to the
shell (12).
4. A helmet as claimed in claim 3, wherein at least a portion of the mounting (18) extends
from one side of the inner surface of the shell to the other, in a direction transverse
to the fore and aft direction of the helmet.
5. A helmet as claimed in claim 3 or claim 4 wherein sideways locating means (44, 46)
is provided between the shell (12) and the mounting (18).
6. A helmet as claimed in claim 5 wherein the sideways locating means (44, 46) comprises
a rib (44, 46) on one of the shell (12) and the mounting (18) and means defining a
groove (50) to receive the rib (44, 46) on the other of the shell (12) and the mounting
(18).
7. A helmet as claimed in any preceding claim wherein the surface of the mounting which
faces into the channel follows the general contour of the shell (12).
8. A helmet as claimed in any preceding claim wherein the shell (12) includes a transparent
window element (56) opposite the end of the channel (54) adjacent the rear of the
helmet.
9. A helmet as claimed in claim 8 wherein the transparent window element (56) is integral
with the shell.
10. A helmet as claimed in any preceding claim, wherein the mounting (18) is of substantially
constant thickness.
11. A helmet as claimed in any preceding claim wherein the mounting (18) comprises a plurality
of substantially planar sections (20, 22, 24, 30).
12. A helmet as claimed in any preceding claim wherein the or each mirror (23, 26, 40)
is electrodeposited onto a surface of the mounting.
13. A helmet as claimed in any preceding claim, wherein the mounting (18) is made of plastics
material.
14. A helmet as claimed in any preceding claim wherein the padding material (14) has increased
resilience locally alongside the channel.
15. A helmet as claimed in any preceding claim wherein the channel (54) is divided at
least at the front of the helmet by further padding material.
16. A helmet as claimed in any preceding claim wherein an aperture is provided in the
padding material adjacent at least one mirror such as to allow pressurised air to
be directed against the mirror to clean it.
17. A helmet as claimed in any preceding claim wherein at least one of the optical elements
constituted by the mirrors is parabolically curved.
18. A helmet as claimed in claim 17 wherein the mirror (23) into which a wearer will look
is parabolically concave.
1. Helm (10) mit einer Schutzschale (12) und einer Polsterung (14) innerhalb der Schale
(12), wobei die Polsterung (14) einen dadurch hindurch verlaufend ausgebildeten Kanal
(54) aufweist, wobei der Kanal eine Basis, Seitenwände und eine offene Oberseite aufweist,
und einem getrennten einstückigen Befestigungselement (18) innerhalb der Schale (12),
wobei das Befestigungselement (18) eine Vielzahl von Spiegeln (23, 26, 40) hält bzw.
umfaßt, wobei das Befestigungselement (18) derart angeordnet ist, daß dieses über
der offenen Oberseite des Kanals (54) geeignet angeordnet ist, um durch die Polsterung
(14) auf jeder Seite des Kanals (54) gehalten zu werden, wobei die Spiegel (23, 26,
40) von der Befestigungsvorrichtung (18) in den Kanal (54) weisen, so daß die Spiegel
(23, 26, 40) und der Kanal (54) somit einen Teil eines Systems definieren bzw. bilden,
welches einen Träger des Gegenstands in die Lage versetzt, durch den Kanal (54) nach
hinten zu sehen.
2. Helm nach Anspruch 1, wobei das Befestigungselement (18) Abschnitte umfaßt, welche
sich in Eingriff mit Falzen (66) an der Oberseite der Wände des Kanals befinden.
3. Helm nach Anspruch 1, wobei das einstückige Befestigungselement (18) an der Schale
(12) angebracht ist.
4. Helm nach Anspruch 3, wobei mindestens ein Abschnitt des Befestigungselements (18)
in einer Querrichtung zu der nach vorne und hinten verlaufenden Richtung von einer
Seite der Innenfläche des Helms zu der anderen verläuft.
5. Helm nach Anspruch 3 oder Anspruch 4, wobei eine quer verlaufende Anordnungseinrichtung
(44, 46) zwischen der Schale (12) und dem Befestigungselement (18) vorgesehen ist.
6. Helm nach Anspruch 5, wobei die quer verlaufende Anordnungseinrichtung (44, 46) eine
Rippe (44, 46) entweder an der Schale (12) oder dem Befestigungselement (18) sowie
eine Einrichtung, welche eine Vertiefung (50) zum Aufnehmen der Rippe (44, 46) an
dem jeweils anderen Element aus der Gruppe der Schale (12) und des Befestigungselements
(18) definiert, umfaßt.
7. Helm nach einem beliebigen vorangehenden Anspruch, wobei die Fläche des Befestigungselements,
welche in den Kanal weist, dem generellen Umriß der Schale (12) folgt.
8. Helm nach einem beliebigen vorangehenden Anspruch, wobei die Schale (12) ein transparentes
Fensterelement (56) gegenüber dem Ende des Kanals (54) nahe bei der Hinterseite des
Helms umfaßt.
9. Helm nach Anspruch 8, wobei das transparente Fensterelement (56) in der Schale eingebaut
ist.
10. Helm nach einem beliebigen vorangehenden Anspruch, wobei das Befestigungselement (18)
im wesentlichen eine konstante Dicke aufweist.
11. Helm nach einem beliebigen vorangehenden Anspruch, wobei das Befestigungselement (18)
eine Vielzahl im wesentlichen ebener Abschnitte (20, 22, 24, 30) aufweist.
12. Helm nach einem beliebigen vorangehenden Anspruch, wobei der bzw. jeder Spiegel (23,
26, 40) durch Galvanisierung auf einer Fläche des Befestigungselements ausgebildet
ist.
13. Helm nach einem beliebigen vorangehenden Anspruch, wobei das Befestigungselement (18)
aus einem Kunststoffmaterial hergestellt ist.
14. Helm nach einem beliebigen vorangehenden Anspruch, wobei das Polsterungsmaterial (14)
entlang des Kanals örtlich eine erhöhte Elastizität aufweist.
15. Helm nach einem beliebigen vorangehenden Anspruch, wobei der Kanal (54) mindestens
an der Vorderseite des Helms durch weiteres Polsterungsmaterial geteilt ist.
16. Helm nach einem beliebigen vorangehenden Anspruch, wobei eine Öffnung in dem Polsterungsmaterial
bei dem mindestens einen Spiegel vorgesehen ist, um es zu ermöglichen, daß Druckluft
auf den Spiegel gerichtet wird, um diesen zu reinigen.
17. Helm nach einem beliebigen vorangehenden Anspruch, wobei mindestens eines der optischen
Elemente, welche durch die Spiegel gebildet werden, parabolisch gekrümmt ist.
18. Helm nach Anspruch (17), wobei der Spiegel (23), in welchen ein Träger blickt, parabolisch
konkav ist.
1. Casque (10) comprenant une coque protectrice (12) et un rembourrage (14) à l'intérieur
de la coque (12), le rembourrage (14) présentant un canal (54) le traversant, le canal
(54) comportant une base, des parois latérales et une partie supérieure ouverte, et
un support (18) distinct situé à l'intérieur de la coque (12), le support (18) supportant
ou comportant une pluralité de miroirs (23, 26, 40), le support (18) étant agencé
pour être positionné à travers la partie supérieure ouverte du canal (54) de manière
à être porté par le rembourrage (14) sur l'un ou l'autre côté du canal (54), les miroirs
(23, 26, 40) regardant depuis le support (18) à l'intérieur du canal (54), les miroirs
(23, 26, 40) et le canal (54) délimitant ou formant ainsi une partie d'un système
permettant à une personne portant l'article de regarder en arrière par le canal (54).
2. Casque selon la revendication 1, dans lequel le support (18) comporte des parties
qui s'engagent dans les contre-feuillures (66) en partie supérieure des parois du
canal.
3. Casque selon la revendication 1, dans lequel le support (18) d'une seule pièce est
monté sur la coque (12).
4. Casque selon la revendication 3, dans lequel au moins une partie du support (18) s'étend
d'un côté de la surface interne de la coque jusqu'à l'autre, selon une direction transversale
à la direction avant et arrière du casque.
5. Casque selon la revendication 3 ou 4, dans lequel des moyens de positionnement latéral
(44, 46) sont prévus entre la coque (12) et le support (18).
6. Casque selon la revendication 5, dans lequel les moyens de positionnement latéral
(44, 46) présentent une nervure (44, 46) sur un des moyens de positionnement de la
coque (12) et du support (18) et dans lequel les moyens définissent une gorge (50)
destinée à recevoir la nervure (44, 46) sur l'autre moyen de positionnement de la
coque (12) et du support (18).
7. Casque selon l'une quelconque des revendications précédentes, dans lequel la surface
du support (18) qui regarde à l'intérieur du canal suit le contour général de la coque
(12).
8. Casque selon l'une quelconque des revendications précédentes, dans lequel la coque
(12) comporte une ouverture transparente (56) opposé à l'extrémité du canal (54) adjacent
à l'arrière du casque.
9. Casque selon la revendication 8, dans lequel l'ouverture transparente (56) est d'une
seule pièce avec la coque.
10. Casque selon l'une quelconque des revendications précédentes, dans lequel le support
(18) présente une épaisseur sensiblement constante.
11. Casque selon l'une quelconque des revendications précédentes, dans lequel le support
(18) comporte une pluralité de zones (20, 22, 24, 30) sensiblement planes.
12. Casque selon l'une quelconque des revendications précédentes, dans lequel le ou chaque
miroir (23, 26, 40) est formé par électrodéposition sur la surface de support.
13. Casque selon l'une quelconque des revendications précédentes, dans lequel le support
(18) est réalisé en matière plastique.
14. Casque selon l'une quelconque des revendications précédentes, dans lequel la matière
de rembourrage (14) présente une élasticité accrue localement le long du canal.
15. Casque selon l'une quelconque des revendications précédentes, dans lequel le canal
(54) est divisé au moins à l'avant du casque par de la matière de rembourrage supplémentaire.
16. Casque selon l'une quelconque des revendications précédentes, dans lequel une ouverture
est prévue dans la matière de rembourrage adjacente à au moins un miroir de manière
à permettre à l'air sous pression d'être dirigée contre le miroir pour le nettoyer.
17. Casque selon l'une quelconque des revendications précédentes, dans lequel au moins
un des éléments optiques constitués par les miroirs est incurvé de façon parabolique.
18. Casque selon la revendication 17, dans lequel le miroir (23) dans lequel regarde l'usager
est parabolique et concave.