The state of the art
[0001] The invention relates to a marking device in the form of a light-emitting and/or
reflecting fitting for mounting on a road surface.
[0002] For the marking and striping of road surfaces, reflecting marking coatings are normally
used, designed such that the material can reflect the driving light emitted by the
vehicle. This may take place in the form of a so-called passive marking which is completely
dependent on driving light and thereby the light conditions, the direction of the
vehicle in relation to the coating, etc.
[0003] Where the marking stripe is covered by water or snow, the reflecting properties are
reduced to a degree which is serious to the traffic safety.
[0004] To this should be added that the marking coating is worn by being run over, so that
the reflection is reduced as the reflecting properties are worn off.
[0005] To remedy this, it is known to use a so-called active marking in the form of a light-emitting
fitting. Examples of this are known e.g. from
WO 99106636 and
WO 03/027397, which describe light-emitting fittings having a light generator provided therein
in the form of an LED chip which emits light via the light guides across the roadway.
[0006] These fittings are configured such that they are embedded in the road surface and
have an external power supply via a buried cable.
[0007] This means that a both cumbersome and expensive mounting operation has to be carried
out in order for the necessary number of fittings and their connections to be established.
[0008] It is moreover difficult to exchange any damaged fittings because of the embedded
mounting.
[0009] US patent no. 4 925 335 describes a prefabricated road marking tape, which includes retro-reflective components
as well as light components, comprising LED's. solar cells and storage batteries.
[0010] This tape is easy to mount, as it is placed at the surface of the road. The light
components are placed inside a brick made of hard plastic with a wall thickness of
e.g. 5 mm. The whole brick has a height of about 2,5 cm.
[0011] A brick with this height is uncomfortable to pass in a normal vehicle and there is
a risk of breaking the walls of the brick or to tear the whole brick from the tape,
e. g. during a breaking action of a heavy vehicle.
[0012] US patent no. 5 984 570 describes a similar road marking device comprising a housing made of plastic which
contains the elements of the light-arrangement. The house is filled with a solid and
stiff potting material so as sand or silicate, bonded with epoxy.
The object of the invention
[0013] The object of the invention is to provide a road marking of the above mentioned kind
with a thickness of max 5 mm, which is simple to mount and which has sufficient strength
to withstand any loadings from the passing vehicles.
[0014] This is achieved according to the invention by a road marking fitting according to
claim 1.
[0015] The marking device will appear as a thin, flexible fitting, which can be placed directly
on the road surface without any changes of the road surface and be secured, attached
to it. It may also be placed in a road stripe, where the reflecting faces on the fitting
with the light emissions protrude above the surface of the stripe.
[0016] Since the light emission is thus positioned close to the road surface, it will especially
be optimum relative to the road-users, without the fitting tab generally interfering
with the traffic - on the contrary, when driving over it, one will be made aware of
a possible crossing of a stripe corresponding to the running over of point-shaped
road stripes.
[0017] As stated in claim 2, the components of the light-emitting device are configured
as flat flexible elements arranged in the same plane. This enables the fitting to
be as flat as possible and the components to yield to case of outer loads without
breaking or the like.
[0018] As stated in claim 3, the light-emitting diode is arranged inside the moulding mass,
and wherein the lightguide extend from the light-emitting diode and terminate in the
inclined face. As stated in claim 4, one or more lenses are provided in the inclined
face in front of the ends of the lightguides. This increases the operational safety
and enables the fitting to meet the requirements for the emitted light.
[0019] As stated in claim 5, the protective shell consists of an upper shell and a lower
shell, and wherein the surface of the shell is provided with one or more lenses above
the solar cells. This enables the solar cells to receive more incoming light, thus
the recharging of the battery is enhanced as an obvious result thereof.
[0020] The protective exterior shell is, as stated in claim 6, made of an impact-resistant
material such as polycarbonate. The moulding mass is, as stated in claim 7, made of
silicone. This enables the fitting not to interfere with the traffic while at the
same time allowing the components to yield to case of outer loads and the moulding
mass to absorb and distribute outer impacts.
[0021] The fitting, as stated in claim 8, further comprises a light sensor, a temperature
sensor, and/or a remote control to signal traffic conditions. This enables the fitting
to regulate the emitted light and to signal different traffic conditions to the road
users.
The drawing
[0022] An embodiment of a fitting according to the invention will be described more fully
below with reference to the drawing, in which
- Fig. 1
- shows a fitting seen from above and embedded in a stripe on the road surface,
- Fig. 2
- shows a sectional view of the tab seen in the direction II-II in fig. 1, and
- Fig. 3
- shows the constituent parts of a tab prior to assembly.
Description of an exemplary embodiment
[0023] The fitting according to the invention, as shown in the drawing, comprises a shell
consisting of an upper shell 2 which is configured to form the upper side of the fitting
with inclined faces 4, which are disposed on both sides of en elevated central part
9 in the example shown. The fitting may hereby be used with light emission through
the faces 4 in two oppositely directed directions, as indicated in fig. 2.
[0024] Lenses 5 are provided in these inclined faces 4, as will be explained later.
[0025] The upper shell 2 fits with a lower shell 2a such that in the assembled state the
shells 2, 2a form an inner cavity 3 in which the electrical components may be embedded.
[0026] The components embedded in the fitting for light emission and control are indicated
in fig. 3. The entire construction of the fitting has been done with a view to achieving
a fitting as flat as possible. Therefore, the individual components have been selected
with a view to the lowest possible height and extent, so that the components may be
positioned in a "flat" order.
[0027] A plurality of solar cells 12 are provided for charging the battery 13, and these
solar cells must not be overshadowed, of course, and they are therefore arranged openly
upwards.
[0028] The battery 13 is arranged at the side of the solar cells 12. The battery is of the
generally known flat type, which is connected via flat wires and various printed circuit
boards 14 to a light-emitting diode 10 arranged centrally in the fitting.
[0029] The device may include a light sensor and optionally a temperature sensor.
[0030] These electrical components are all configured as flat flexible elements so as to
enable them to yield in case of outer loads on the fitting, without being destroyed
by breaking or the like.
[0031] A soft moulding mass 3, such as silicone or the like, is used for embedding the electrical
components in the shells 2, 2a, such that the moulding mass may absorb and distribute
the outer impacts to which the fitting is subjected.
[0032] The shells 2, 2a are preferably made of polycarbonate or another hard and impact-resistant
material.
[0033] The shell constitutes the entire exterior of the fitting and protects the components
in such a manner as to allow it to be mounted on a road surface, as indicated in fig.
2. The maximum height of the finished fitting is 1 to 5 mm, which does not differ
significantly from the height of known marking coatings.
[0034] Thus, it will not interfere with the traffic and is positioned so suitably close
to the road surface that it cannot be tom off, e.g. by snow ploughs, sweepers or the
like.
[0035] The surface of the shell 2 is preferably fluted or rough to achieve the best possible
skid resistance for the road-users. Optionally, the surface 8 above the solar cells
12 may be provided with one or more lenses to enhance the incident light on the solar
cells 12.
[0036] The light emission takes place from a light-emitting diode 10, which, as indicated
in fig. 2, is embedded in the moulding mass 3. The light-emitting diode 10 is positioned
inside the fitting itself, and, via a connector and lightguides 11 extending towards
the inclined side edges 4 of the fitting, the light 6 is emitted via these lightguides
11, as indicated in fig. 2.
[0037] A lens 5 may be provided in front of the lightguide ends, and, as will appear from
the dashed line in fig. 2, it is expedient that the light emission takes place at
an angle 7 of about 3° relative to the horizontal plane of the fitting. This meets
the requirements with respect to light which must be visible to a driver at a distance
of 30 metres.
[0038] The advantage of using lightguides 11 is partly to utilize the light from just one
diode 10 and also to improve the operational safety partly by the protected arrangement
of the diode and partly in that the lightguide ends can operate even though the ends
are worn.
[0039] A considerable degree of software may be used for regulation and control of the fitting
according to the invention.
[0040] A light sensor may thus be used for example for turning the light-emitting diode
on and off, just as it may regulate the light intensity/colour according to the external
light conditions and needs.
[0041] A temperature sensor may also be included and registers low temperatures involving
the risk of slippery roads, thus providing the possibility of changing the colour
of the diode to e.g. red and optionally again changing the light to e.g. flashing
light emission.
[0042] Many forms of optional remote control may be incorporated so as to allow signalling,
e.g. by means of an external sensor, of traffic conditions which are to be signalled
from one or more fittings, whereby the traffic safety may be improved.
[0043] Since the fitting according to the invention is an independent unit, it will operate
entirely without any need of service. It is sturdy, impact-resistant, and, as mentioned,
so flat that it cannot be either damaged or constitute a risk to the road-users.
[0044] The fitting may have all possible forms and sizes, so that it may also form part
of the general traffic marking, such as signs and instructions of various types.
[0045] The colour of the light depends on the diode/lens, and it may therefore be designed
in any desired colour scale as needed.
1. A marking device in the form of a light-emitting and/or reflecting fitting for mounting
on a road surface, wherein the fitting is configured as a tab (1) with a height of
max. 5mm and with at least one inclined face (4) facing towards the approaching vehicles
through which the light emission (6) takes place, wherein the fitting (1) comprises
a protective exterior shell (2, 2a), which contains a light-emitting device comprising
solar cells (12), a battery (13), a light-emitting diode (10), and lightguides (11),
which are embedded in a soft moulding mass (3).
2. A marking device according to claim 1, characterized in that the components of the light-emitting device (10, 12, 13) are configured as flat flexible
elements arranged in the same plane.
3. A marking device according to any one of claims 1 - 2. characterized in that the light-emitting diode (10) is arranged inside the moulding mass (3), and wherein
the lightguides (11) extend from the light-emitting diode and terminate in the inclined
face (4).
4. A marking device according to claim 3, characterized in that one or more lenses (5) are provided in the inclined face (4) in front of the ends
of the lightguides (11).
5. A marking device according to any one of claims 1 - 4, characterized in that the protective shell consists of an upper shell (2) and a lower shell (2a), and wherein
the surface (8) of the upper shell (2) is provided with one or more lenses above the
solar cells (12).
6. A marking device according to any one of the claims 1 - 5, characterized in that the protective exterior shell (2, 2a) is made of a impact-resistant material such
as polycarbonate.
7. A marking device according to any one of claims 1 - 6, characterized in that the soft moulding mass (3) is made of silicone.
8. A marking device according to any one of claims 1 - 7, characterized in that the fitting (1) further comprises a light sensor, a temperature sensor, and/or a
remote control to signal traffic conditions.
1. Markierungsvorrichtung in der Form eines lichtaussendenden und/oder -reflektierenden
Befestigungsstücks zum Anbringen auf einer Straßenoberfläche, wobei das Befestigungsstück
als Streifen (1) mit einer Höhe von maximal 5 mm und mit zumindest einer geneigten
Seitenfläche (4), die den sich nähernden Fahrzeugen zugekehrt ist und über die die
Lichtaussendung (6) stattfindet, konfiguriert ist, wobei das Befestigungsstück (1)
eine äußere Schutzschale (2, 2a) umfasst, die eine Lichtaussendevorrichtung mit Solarzellen
(12), einer Batterie (13), einer Leuchtdiode (10) und Lichtwellenleitern (11), die
in einer weichen Formmasse (3) eingelassen sind, enthält.
2. Markierungsvorrichtung nach Anspruch 1, dadurch gekennzeichnet, dass die Bauteile der Lichtaussendevorrichtung (10, 12, 13) als flache Elemente, die in
derselben Ebene angeordnet sind, konfiguriert sind.
3. Markierungsvorrichtung nach einem der Ansprüche 1 bis 2, dadurch gekennzeichnet, dass die Leuchtdiode (10) innerhalb der Formmasse (3) angeordnet ist, und wobei die Lichtwellenleiter
(11) von der Leuchtdiode her verlaufen und in der geneigten Seitenfläche (4) enden.
4. Markierungsvorrichtung nach Anspruch 3, dadurch gekennzeichnet, dass eine oder mehr Linsen (5) in der geneigten Seitenfläche (4) vor den Enden der Lichtwellenleiter
(11) vorgesehen sind.
5. Markierungsvorrichtung nach einem der Ansprüche 1 bis 5, dadurch gekennzeichnet, dass die Schutzschale aus einer oberen Schale (2) und einer unteren Schale (2a) besteht,
und wobei die Oberfläche (8) der oberen Schale (2) mit einer oder mehr Linsen über
den Solarzellen (12) versehen ist.
6. Markierungsvorrichtung nach einem der Ansprüche 1 bis 5, dadurch gekennzeichnet, dass die äußere Schutzschale (2, 2a) aus einem schlagzähen Material wie etwa Polycarbonat
hergestellt ist.
7. Markierungsvorrichtung nach einem der Ansprüche 1 bis 6, dadurch gekennzeichnet, dass die weiche Formmasse (3) aus Silikon hergestellt ist.
8. Markierungsvorrichtung nach einem der Ansprüche 1 bis 7, dadurch gekennzeichnet, dass das Befestigungsteil (1) ferner einen Lichtsensor, einen Temperatursensor und/oder
eine Fernsteuerung zum Signalisieren von Verkehrsbedingungen umfasst.
1. Dispositif de balisage sous la forme d'un plot d'émission et/ou de réflexion de lumière
à monter sur une surface de route, dans lequel le plot est configuré en tant qu'élément
plat (1) et avec au moins une face inclinée (4) tournée vers les véhicules qui approchent
grâce à quoi l'émission de lumière (6) a lieu, dans lequel le plot (1) avec une hauteur
d'un maximum de 5 mm comprend une coque de protection extérieure (2, 2a), laquelle
contient un dispositif d'émission de lumière comprenant des cellules solaires (12),
un accumulateur (13), une diode d'émission de lumière (10) et des guides de lumière
(11), qui sont noyés dans une masse de moulage molle (3).
2. Dispositif de balisage selon la revendication 1, caractérisé en ce que les composants du dispositif d'émission de lumière (10, 12, 13) sont configurés en
tant qu'éléments plats flexibles disposés dans le même plan.
3. Dispositif de balisage selon l'une quelconque des revendications 1 - 2, caractérisé en ce que la diode d'émission de lumière (10) est disposée à l'intérieur de la masse de moulage
(3), et dans lequel les guides de lumière (11) s'étendent à partir de la diode d'émission
de lumière et se terminent dans la face inclinée (4).
4. Dispositif de balisage selon la revendication 3, caractérisé en ce que une ou plusieurs lentilles (5) sont fournies dans la face inclinée (4) devant les
extrémités des guides de lumière (11).
5. Dispositif de balisage selon l'une quelconque des revendications 1 - 4, caractérisé en ce que la coque de protection est formée par une coque supérieure (2) et une coque inférieure
(2a), et dans lequel la surface (8) de la coque supérieure (2) est garnie avec une
ou plusieurs lentilles au-dessus des cellules solaires (12).
6. Dispositif de balisage selon l'une quelconque des revendications 1 - 5, caractérisé en ce que la coque de protection extérieure (2, 2a) est formée par un matériau résistant aux
impacts tel du polycarbonate.
7. Dispositif de balisage selon l'une quelconque des revendications 1 - 6, caractérisé en ce que la masse de moulage molle (3) se compose de silicone.
8. Dispositif de balisage selon l'une quelconque des revendications 1 - 7, caractérisé en ce que le plot (1) comprend en outre un capteur de lumière, un capteur de température et/ou
une commande à distance afin de signaler les conditions de circulation.