[0001] The present invention relates to an energy saving blind, comprising a tube being
at its ends mounted in bearings, as well as a blind material having one of its ends
fastened to this tube and being rollable around the tube, which blind material is
intended in its unrolled state to cover the window to which the blind has been installed.
[0002] From the prior art conventional roller-blinds are known which are installed in bearings
and fastened either to a wall above a window or to the inner surface of the frame
of the inner window. The roller-blind of such kind certainly enables to prevent bright
sunshine from entering a room and to provide a visual obstruction from the outside
to the inside during the dark time but the roller-blind installed in this matter is
not able to provide remarkable energy saving.
[0003] Likewise, solutions in which a roller-blind is installed to the front of a window
outside a building are known. Such solutions certainly enable to prevent the sunshine
and thus excess heat from entering the inside of a building, but such solutions are
not suitable to hard weather conditions in the Nordic countries when the whole building
is exposed to rain, wind, snow, freezing and air moisture. Furthermore, a roller-blind
installed in said matter changes the facade of the building.
[0004] The object of the present invention is to provide such a roller-blind structure which,
in addition to good properties of a conventional roller-blind, effectively prevents
excess heat from entering the inside of a building in the summer as well as prevents
heat from escaping from the building in the winter. This is achieved by means of an
energy saving blind according to the invention, which is characterized in that bearings
are fastened to the outer side of the inner frame of a conventional window openable
to the inside so that said energy saving blind is located in the space between two
separately openable frames of the window.
[0005] Being installed in this matter, the energy saving blind is in its uprolled state
nearly invisible and forms in an unrolled state an effective shelter from the sunbeams
already before their penetration through the glasses of the inner frame. At the same
time it prevents the heat from escaping through the window in the winter. The energy
saving blind according to the invention is well suitable to be installed to a window
openable to the inside, having two frames and three glasses, the inner frame comprising
a sealed glass element with a double glass, i.e. a so-called MSE-type window.
[0006] As a blind material darkening fabrics or micro perforated fabrics may be used. A
further useful blind material is a so-called cellular fabric which as such has good
thermal insulation properties.
[0007] The best thermal insulation property is achieved when the tube is mounted in the
bearings so that the blind material is unrolled so close to the inner frame of the
window as possible. With respect to the sunbeams a good thermal insulation property
is also achieved when the tube is mounted in bearings so that the blind material is
unrolled as close to the outer frame of the window as possible.
[0008] According to a preferred embodiment, two parallel tubes are mounted in bearings,
one of which locating close to the inner frame of the window, whereas the other is
locating close to the outer frame of the window. Both tubes may have a similar blind
material or different blind materials so that the outer blind material is primarily
intended to prevent the bright light from entering the inside of a building, while
the inner blind material is primarily designed to insulate heat and light. This solution
enables to remarkably improve a heat transfer coefficient of the window when both
blind materials have been drawn to the front of the window to protect from the sun
and the coldness.
[0009] Depending on the control mechanism of the energy saving blind, its bearings may be
mounted either close to the upper edge or the lower edge of the inner frame of the
window or possibly close to one vertical side edge of the inner frame.
[0010] The energy saving blind may be either manually operated or motor-operated. When being
manually operated, a coiler is stationary mounted to one end of the tube, to which
coiler a lifting string is fastened to be rolled around the coiler, when the energy
saving blind mounted to the upper part of the window is lowered down, whereby the
blind material may be rolled again onto the tube by drawing the string. Preferably,
the drawstring is then conducted out from the window structure to the room through
a hole made in the inner frame.
[0011] According to another alternative, the position of the energy saving blind is controllable
by means of a ball chain which is left between the windows so that the inner window
has to be opened to be able to change the position of the energy saving blind.
[0012] According to a third alternative the energy saving blind is spring-actuated. In this
solution a tube around which a blind material is rolled, is spring-actuated so that
the spring tightens when the blind material is drawn down to cover the window by means
of a drawstring fastened to the end of the blind material and preferably conducted
to the room through a hole made in the opposite end of the inner frame. The blind
can be held in its uprolled position, for instance by winding the drawstring around
a knob arranged near to the hole. When the drawstring is released, the blind material
will be rolled back around the tube by the force of the spring.
[0013] In a motor-operated energy saving blind, an electric motor is mounted inside the
tube. The motor is either provided with its own power source or electric current is
conducted to it from the outside. According to an embodiment a motor is electrically
driven by a solar cell connected thereto. Preferably, the electric motor is controllable
by a remote control, in which case no draught causing holes have to be made in the
inner frame. In addition to a motor drive the tube may also be spring-loaded, the
spring supporting the motor to roll the blind material back around the tube.
[0014] To further improve the insulation or darkening properties of the energy saving blind,
lateral guide bars may be mounted for the blind material at both sides of the inner
frame. The edges of the blind material may also be provided with bristle bands.
[0015] In the following the invention is described with reference to an accompanying drawing
wherein
figure 1 shows a schematic cross section of an example of an energy saving blind according
to the invention, installed close to the glass surface of the inner frame of a so-called
MSE-type window, and
figure 2 shows an example wherein the energy saving blind is installed close to the
outer window.
[0016] The energy saving blind 1 shown in the figures is installed to a nowadays generally
used MSE-type window which is a window openable to the inside and having two frames
and three glasses, the inner frame 2 of which having a sealed double glazing glass
element 3. The energy saving blind 1 comprises a tube 5 mounted with its ends in bearings
4 as well as a blind material 6, one end of which being fastened to this tube 5 and
rollable around the tube, whereby the blind material covers in its unrolled state
the whole window, to which said energy saving blind 1 has been installed. The bearings
4 of the energy saving blind according to the invention are fastened to the outer
side of the inner frame 2 of the window so the energy saving blind is located in the
space between two separately openable frames 2 and 7 of the window. In the figures
the bearings 4 are fastened to the upper part of the inner frame 2 openable to the
inside. Preferably, the tube 5 is mounted in bearings 4 so that the blind material
6 is unrolled as close to the inner frame 2 of the window as possible, as shown in
figure 1, or close to the outer frame 7, as shown in figure 2.
[0017] In the figure 2 the bearings 4 are extended so that the tube 5 with the blind material
to be unrolled is located so close to the outer frame 7 as possible. Thereby the blind
material 6 is rolled onto the tube 5 so that it will be unrolled from that side of
the tube 5 facing the outer frame 7.
[0018] To control the energy saving blind, an electric motor 8 is mounted to one end of
the tube 5, the motor being provided with its own power source and preferably controllable
with a remote control. In this installation, it is not necessary to make any holes
leading through the inner frame which effectively prevents to avoid any draught.
1. An energy saving blind (1), comprising a tube (5) being at its ends mounted in bearings
(4), as well as a blind material (6) having one of its ends fastened to this tube
and being rollable around the tube (5), which blind material, when being in an unrolled
state, covers the whole window, to which the energy saving blind (1) is installed,
characterized in that the bearings (4) are fastened to the outer side of the inner frame (2) of a conventional
window openable to the inside so that the energy saving blind (1) is located in the
space between two separately openable frames (2, 7) of the window.
2. The energy saving blind (1) according to claim 1, characterized in that the tube (5) is mounted in the bearings (4) so that the blind material (6) will be
unrolled so close to the inner frame (2) of the window as possible.
3. The energy saving blind (1) according to claim 1, characterized in that the tube (5) is mounted in the bearings (4) so that the blind material (6) will be
unrolled so close to the outer frame (7) of the window as possible.
4. The energy saving blind (1) according to claim 1, characterized in that two parallel tubes (5) are mounted in the bearings (4), one of which locating close
to the inner frame (2) of the window and the other one close to the outer frame (7)
of the window.
5. The energy saving blind (1) according to one of the preceding claims, characterized in that for rolling the blind material (6) the tube (5) is either manually operated or motor-operated.
6. The energy saving blind (1) according to claim 5, characterized in that a motor (8) being provided with its own power source and controllable by means of
a remote control is arranged in one end of the tube (5).
7. The energy saving blind (1) according to any of the preceding claims, characterized in that the bearings (4) are fastened to the upper portion of the inner frame (2).
8. The energy saving blind (1) according to any of the claims 1 to 6, characterized in that the bearings (4) are fastened to the lower portion of the inner frame (2).
9. The energy saving blind (1) according to claim 4, characterized in that the tubes (5) are provided with different blind materials (6).
10. The energy saving blind (1) according to any of the preceding claims, characterized in that side guide bars for the blind material (6) are mounted at the inner frame (2) and
the edges of the blind material (6) are provided with bristle bands.