[0001] The object of the invention is a composite lighting column, which can be used in
places that do not require intensive light. The column can be used as a powerline
pole, a catenary pole, a lighting mast, a building support structure, a bearing structure
of footbridges and bridges, as well as a roofing structure. The solution implemented
according to the invention will also be used for determination of waterways or other,
difficult to maintain, transport routes. The designed column may be used both outdoors
and indoors, as well as in functional interiors, such as shopping centers or single-family
houses.
[0002] A Polish description of an utility model number
W. 110939 provides information about a solution called: "Stup, zwtaszcza reklamowy" [
Column, mainly for advertising purposes] (publication of the Patent Office Bulletin (BUP) 23/2001 of 2001-11-05). The column,
mainly for advertising purposes is characterized by its advantageous form of a pipe,
made of a glass mat composite and polyester resins fitted with linestopping and a
foundation flange, which inside contains stays mounted to the supports located on
the inner surface of the linestopping and on the foundation flange.
[0003] Another Polish description of an application of invention number
404396 presents a solution entitled: "Sposób

czenia kompozytowych kszta

towników tworz

cych wysi

gnik stupa oświetleniowego oraz kompozytowy wysi

gnik wytwarzany tym sposobem" [
The method of connecting composite sections that constitute a lighting column jib
as well as a composite jib produced in this way] (publication of the Patent Office Bulletin (BUP) 01/2015 of 2015-01-05). The object
of this solution is a method of connecting composite sections that constitute a lighting
column jib, characterized by the fact that in order to connect two consecutive composite
sections a connector in the form of an elbow with an appropriate bending angle is
used, which joins the above-mentioned sections using a polymer binder with a filler
in the form of pellets with wear-resistant properties and high level of hardness.
The invention also concerns a composite lighting column jib, in which the above-mentioned
method of composite sections connection is used.
[0004] Another known composite column is the column presented by "ALUMAST" sp. z o.o. in
2008 at the Polish trade shows Energetab in Bielsko-Biata and in 2010 during Infrastruktura
Trade Show in Warsaw.
[0005] Document
DE 100 53 255 A1 discloses a composite lighting column according to the preamble of claim 1.
[0006] The purpose of the designed invention is creation of a new type of a composite column
structure, which, in the basic scope, will illuminate the surrounding area without
the need for providing electric power supply. It will be relatively sufficient to
supply electric power only to a minimum extent.
[0007] The essence of the composite lighting column, whose main structural element is the
body in the shape of a pipe and which is made of a composite mainly of polyester and
glass resin, usually chemically bonded and glass fibers, is that its body is covered
with an external coating made of gelcoat and is in a colorless or colored version,
or with a fully or partially printed coating, whereas, to the gelcoat mixture made
of composites, a luminophore is added, which constitutes from 2% to 8% of column structure
mass, wherein, most favourably, the composite mass contains at least 3% of filler
with flare effects, while favourably, as luminescent materials are used powders with
filler grain size of 10 - 40 micrometers.
[0008] The developed composite lighting column allows for easy illumination of the area
in places that do not require intensive light. Installation of the designed column
is not complicated, since there is no need to supply it with electric power. The designed
structure allows for visual tracking of a path or road at night, which improves safety
of persons who walk along them after dark. The invention allows for reducing the light
infrastructure and lighting costs. Moreover, the developed column may be used in areas
exposed to seismic activity and in other places with a power outage risk. The invention
provides for a possibility of blending it with the landscape, as the developed composite
lighting column can be decorated with graphics that matches the preferences of the
user, printed over the column or embedded in its structure.
[0009] The solution submitted for patent protection also shows all benefits of the already
revealed designed column made of polyester and glass mass and glass fibers. Thanks
to that, the designed column is light, its transportation is not complicated, its
installation is easy and there are no costs of hoop iron, operating costs are low,
as it does not degrade, corrode or change color, and finally preservation of the column
with the use of paint is not necessary. Thanks to the fact that composite access panels
do not have a scrap value, they are not exposed to the risk of damage. The column
does not require periodic testing of its insulating power. It shows high mechanical
resistance and for example, absorbs part of the energy in the case of a collision.
It is also UV resistant, and its smooth surface allows for easy soil removal. The
composite column does not disrupt radio waves, radar microwaves - which is crucial
in the case of using it in airport infrastructure.
[0010] The designed composite lighting column may be successfully used in housing estates,
parks, bike paths, parking lots, pedestrian crossings, etc.
[0011] The object of the invention has been presented in more detail in the drawings, where:
fig. 1 - presents an axonometric view of a composite lighting column, while fig. 2
- presents a cross-section of a composite lighting column.
[0012] As shown in the drawings, the main component of the composite lighting column is
body 1, which is in the shape of a pipe, constituting the main structural element
of the column. Body 1 is made of polyester and glass resin, usually chemically bonded
as well as glass fibers, however, the composite contains a luminophore, i.e. a chemical
substance which displays luminescent properties, which constitutes from 3% up to 7%
of the column mass. The applied resin does not block excitation bandwidths or emission
of applied fillers. The most advantageous dependency between the level of filling
and light emission intensity is obtained in the case of composites with the minimum
mass content of 3% of filler that has flare effects.
[0013] Powders in which the most favorable filler grain size is between 10 and 40 micrometers
and depends on the type of applied substance have been used as luminescent materials.
[0014] Body 1 is covered by an external coating 2, which is made of gelcoat. The external
coating 2 has a colorless or colored version and a printed coating. To the gelcoat
mixture, made of composites, also a luminophore is added, which in a similar way,
when e.g. exposed to light coming from the louver fitting 3 or headlamps of a passing
car, is excited and emits a flare visible to the human eye still after 2 hours from
the 15-minute excitation.
[0015] In order to trigger the described luminescence - a luminophore does not have to be
permanently exposed to light. Its excitation follows after attacking the surface of
the designed column also with ultraviolet light. A light wave of this length is included,
e.g. in white LED or headlamps light. To trigger the phenomenon we can also use a
light source, which will generate only a beam of ultraviolet light. In such a case,
bursts of the luminophore-exciting light will not be visible to the human eye and
no-one observing the column will notice them, and what is more, they will not be dazzled.
[0016] A luminophore can be added both to the external coating 2 and to the body 1. The
designed solution allows for temporary excitation of a luminophore so that the time
of a created flare lasts as long as possible.
[0017] The invention provides for a possibility of installing an optional light source 4
placed inside a body pipe 1, which can be, for example, an LED, emitting visible white
light with low power, i.e. from 1 to 5 Watt [W]. If a lighting column is lit only
with the louver fitting 3 and headlamps, the luminophore is blended with the mixture
that constitutes the external coating 2.
[0018] The structure of the described invention also includes installation of the motion
detector 5, which is an element of the column or which is placed nearby. The motion
detector 5 reacts to movements within its reach, activating the louver fitting 3 or
an optional light source 4, which send a beam of light, containing an ultraviolet
light spectrum, stimulating, in this way, the luminophore contained in a composite
lighting column. A luminophore excited in this way emits a flare visible to the human
eye that illuminates the area around the designed composite lighting column. Thanks
to the use of the motion detector 5 for activating the described phenomena - it is
possible to turn on the louver fitting 3 only in the case of someone's movement, and
thereby, someone's presence when a real need for illuminating a given area arises.
At the same time, a luminophore is excited and therefore it is not necessary to excite
it periodically. Operation of a composite lighting column with the described structure
allows to save both energy and structure.
List of elements
[0019]
- 1.
- body;
- 2.
- external coating;
- 3.
- louver fitting;
- 4.
- light source;
- 5.
- motion detector.
1. The composite lighting column with a louver fitting, whose main structural element
is the body in the shape of a pipe and which is mainly made of a composite of polyester
and glass resin, usually chemically bonded as well as glass fibers, characterized in that the composite contains a luminophore, which constitutes from 2% up to 8% of the column
structure mass and its body (1) is covered with an external coating (2) made of gelcoat
and is in a colorless or colored version, or with a fully or partially printed coating,
however, to the gelcoat mixture made of composites, a luminophore is added, which
constitutes from 2% to 8% of column structure mass, whereas, in the most advantageous
version, the composite mass contains at least 3% of a filler with flare effects, while
in an advantageous version, powders with filler grain size of 10 - 40 micrometers
are used as luminescent materials.
1. Zusammengesetzte Lichtsäule, die mit einem Rastergehäuse ausgestattet ist, deren Hauptbauteil
eine rohrförmige Schaft bildet, der aus Verbundwerkstoff im wesentlichen aus einem
Polyester-Glas-Harz in der Regel aus chemisch gehärtetem Harz und Glasfasern hergestellt
wird, gekennzeichnet dadurch, dass der Verbundwerkstoff einen Leuchtstoff enthält, der 2% bis 8% des Gesamtvolumens
der Säule bildet, und der Schaft (1) von einer Außenhülle (2) umgeben ist, die aus
Gelcoat ausgeführt wird, die farblos oder bunt oder beziehungsweise ganz oder teilweise
bedruckt sein kann, wobei zur Gelcoat-Mischung, die aus Verbundwerkstoffen entsteht,
ein Leuchtstoff zugegeben wird, der 2% bis 8% der Masse der Säulenkonstruktion bildet,
vorzugsweise beinhaltet der Verbundwerkstoff Minimum 3 Gew. % des Füllstoffes, der
einen Leuchteffekt aufweist bevorzugt werden als lumineszierende Materialien Pulver
verwendet, in denen Korngröße der Füllung zwischen 10-40 Mikrometer liegt.
1. La colonne d'éclairage composite à trame dont l'élément structurel fondamental est
le corps en forme de tuyau, fait d'un composite en résine polyester et verre, généralement
durcie chimiquement, ainsi que de fibres de verre, caractérisé en ce que le composite contient un luminophore constituant de 2% à 8% de la masse de la structure
de la colonne, et son corps (1) est recouvert d'un revêtement extérieur (2) en gelcoat
dans une version incolore ou colorée, ou avec un revêtement entièrement ou partiellement
imprimé, dans lequel, au mélange de gelcoat fait de composites, un luminophore est
ajouté, constituant de 2% à 8 % de la masse de la construction de la colonne, le plus
favorablement le composite contient au moins 3% du poids de la charge présentant un
effet lumineux, tandis que les matériaux luminescents ce sont, favorablement, des
poudres dont la taille des grains de charge est comprise entre 10 et 40 micromètres.