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EP 2 412 982 B1 |
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EUROPEAN PATENT SPECIFICATION |
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Mention of the grant of the patent: |
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28.06.2017 Bulletin 2017/26 |
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Date of filing: 29.07.2010 |
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International Patent Classification (IPC):
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An air-conditioning fan with embedded swinging functions
Klimaanlagenlüfter mit eingebetteten Schwingfunktionen
Ventilateur de climatisation d'air avec fonctions oscillantes intégrées
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Designated Contracting States: |
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AL AT BE BG CH CY CZ DE DK EE ES FI FR GB GR HR HU IE IS IT LI LT LU LV MC MK MT NL
NO PL PT RO SE SI SK SM TR |
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Date of publication of application: |
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01.02.2012 Bulletin 2012/05 |
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Proprietor: King Jih Enterprise Corp. |
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Tamtzu Hsiang
T'ai chung (TW) |
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Inventor: |
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- Fu, Chiao
Taichung County (TW)
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Representative: Zeitler Volpert Kandlbinder
Patent- und Rechtsanwälte Partnerschaft mbB |
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Herrnstrasse 44 80539 München 80539 München (DE) |
| (56) |
References cited: :
US-A- 3 160 020 US-A1- 2008 304 969
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US-A- 5 743 709 US-B1- 6 171 057
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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).
|
BACKGROUND OF INVENTION
1. Field of the Invention
[0001] The present invention relates generally to an air-conditioning fan with embedded
swinging functions, and more particularly to an innovative one which is designed with
a rotary vane fitted with an embedded swinging device.
2. Description of Related Art
[0002] The air-conditioning fan of the present invention refers to a fan that supplies air
through the rotation of rotary vane.
[0003] The currently available rotary-vane fan comprises structurally oscillating and cover-rotating
types in view of the wind direction; while the rotary vane of said oscillating fan
is rotated, the headstock is driven to generate oscillating motion for changing automatically
the wind direction; however, as the oscillating rotary-vane fan shifts reciprocally
along a path of fixed height, the wind outlet cannot be expanded upwards and downwards,
making it unsuitable for some operating environments; on the other hand, as the pivot
of the oscillating rotary-vane fan is located at lower rear of the headstock, when
the headstock swings, the outer casing of the rotary vane will swing greatly by focusing
on the aforementioned pivot, leading to an increase of volume of the rotary-vane fan
requiring for a larger space.
[0004] As for the cover-rotating rotary-vane fan, the fan casing is designed to be pivoted
onto a diversion frame, such that the wind direction can be changed with the rotation
of the diversion frame; yet, as the diversion frame of the cover-rotating rotary-vane
fan could realize the wind diversion effect via several inclined plates, the inclined
structure of the inclined plate impedes air current to some extent, resulting in remarkable
reduction of air supply performance of the rotary-vane fan; and depressed aperture
of these plates brings about inconvenient cleaning by the users.
[0005] As for the big-sized industrial rotary-vane fan, the rotary vane is generally made
of metal sheets to generate strong wind, and the framework is positioned by a robust
support; since certain industrial rotary-vane fans eliminate the swinging functions
for the intended robustness, the wind outlet will be reduced to cut down its applicability,
thus increasing the probability of removing manually the rotary-vane fan by the user;
in this process, the hands are possibly hurt by the sharp rotary vane (especially
in the operating conditions), causing the safety hazards.
[0006] US 2008/0304969 A1 discloses a built-in swing mechanism of rotary fan. The mechanism includes a ball-and-socket
support frame, arranged onto front wall of the main casing corresponding to the axle
center of a drive motor and provided with a spherical supporting surface and a through-hole.
A spherical abut seat is fastened at a front end of the drive motor is provided with
a spherical abut surface that couples with the spherical supporting surface. A punch
hole is placed at the center of spherical abut surface for the penetration of the
axle center. A crank linkage element is assembled between rear end of the drive motor
and the rear wall of the main casing. The first end of the crank linkage element can
be driven to enable the oscillation of the second end. The second end is assembled
at a rotary pivot corresponding to the main casing.
[0007] Thus, to overcome the aforementioned problems of the prior art, it would be an advancement
if the art to provide an improved structure that can significantly improve the efficacy.
[0008] Therefore, the inventor has provided the present invention of practicability after
deliberate design and evaluation based on years of experience in the production, development
and design of related products.
SUMMARY OF THE INVENTION
[0009]
- 1. As the drive motor and the rotary vane can swing in an axial tilt state to change
automatically the wind outlet direction, and the wind outlet direction of the rotary
vane varies uniquely along a circular path, it is possible to increase the multi-directional
wind outlet with better efficiency and applicability.
- 2. When the drive motor and the rotating shaft swing circularly in an axial tilt state,
the front end of the drive motor can be abutted onto the movable motor rack of the
support casing with the help of spherical abutting seat, so as to realize a stable
and universal support on the spherical surface, and achieve a reliable, low-noise
and high-performance swinging.
- 3. Based on the structural design that said half-guard net is directly assembled onto
the assembly surface of the foundation, and both the half-guard net and the embedded
rotary fan assembly are positioned onto the foundation of stronger rigidity, it is
possible to achieve excellent structural robustness, lower vibration and noise for
more stable and smooth swinging of the rotary vane, thereby improving the quality
and applicability of the air-conditioning fan with embedded swinging functions.
- 4. Based on the structural design that a lateral wind inlet is arranged onto periphery
of the support casing, and the lateral wind inlet is elongated, the air inlet effect
could be further improved.
[0010] Although the invention has been explained in relation to its preferred embodiment,
it is to be understood that many other possible modifications and variations can be
made without departing from the spirit and scope of the invention as hereinafter claimed.
BRIEF DESCRIPTION OF THE DRAWINGS
[0011]
FIG. 1 shows an assembled perspective view of the preferred embodiment of the present
invention.
FIG. 2 shows an exploded perspective view of the preferred embodiment of the present
invention.
FIG. 3 shows a partially exploded perspective view of the preferred embodiment of
the present invention.
FIG. 4 shows an assembled sectional view of the preferred embodiment of the present
invention.
FIG. 5 shows an application view that the present invention is assembled under the
ceiling.
FIG. 6 shows an application view of the present invention that the depth of the lateral
wind inlet is increased.
FIG. 7 shows an outside view of the air-conditioning fan of the present invention.
FIG. 8 shows another outside view of the air-conditioning fan of the present invention.
FIG. 9 shows an assembled plain view showing the other preferred embodiment of the
air-conditioning fan of the present invention.
FIG. 10 shows an assembled schematic view showing the other preferred embodiment of
the air-conditioning fan of the present invention that the half-guard net is provided
with a removable portion.
FIG. 11 shows a partially assembled sectional view showing the other preferred embodiment
of the air-conditioning fan of the present invention.
FIG. 12 shows an enlarged view of position B in FIG. 11.
FIG. 13 shows another application view of the rotary motor of the present invention.
DETAILED DESCRIPTION OF THE INVENTION
[0012] FIGS. 1∼3 depict preferred embodiments of an air-conditioning fan of the present
invention with embedded swinging functions, which, however, are provided for only
explanatory objective for patent claims; said air-conditioning fan A comprising:
a foundation 10, consisting of a support 11 and an assembly surface 12;
a holding portion 13, arranged depressedly at central section of the assembly surface
12 of the foundation 10;
a guard net assembly portion 14, arranged around the assembly surface 12 of the foundation
10;
a support casing 20, protruded into a hollow casing, assembled at the central section
of the assembly surface 12 of the foundation 10 correspondingly to the holding portion
13; the protruding end of the support casing 20 is provided with a movable motor rack
21, which is designed into a spherical pattern;
a half-guard net 30, with a protruded and half-guard pattern; the half-guard net 30
consists of a assembly end 31 and an open side 32, of which the open side 32 is assembled
at the guard net assembly portion 14 of the foundation 10; a spacing between the assembly
end 31 and the support casing 20 is used to form a holding space of rotary vane 33;
an embedded rotary fan assembly 40, consisting of a drive motor 41, a rotary vane
42, a crank linkage 43 and a rotary motor 44; of which the drive motor 41 is assembled
into the support casing 20; after penetrating a spherical abutting seat 411, the rotating
shaft 412 of the drive motor 41 is universally pivoted and abutted onto the movable
motor rack 21 via the spherical abutting seat 411; then the rotary vane 42 is mounted
at the end of the rotating shaft 412, and located in its holding space 33; the rotary
motor 44 is accommodated into the holding portion 13 on the assembly surface 12 of
the foundation 10; the crank linkage 43 consists of the first linkage end 431 and
the second linkage end 432, of which the first linkage end 431 is linked to the drive
shaft of the rotary motor 44, and the second linkage end 432 linked to the rear end
of the drive motor 41; referring also to FIGS. 3, 6, bulges 413 and grooves 210 are
arranged at interval between the periphery of the spherical abutting seat 411 and
the spherical movable motor rack 21; the bulges 413 are mated with the grooves 210;
moreover, the width of said bulge 413 is smaller than that of said groove 210, so
the spherical abutting seat 411 can swing universally in the spherical movable motor
rack 21, and can also be limited properly with the mating of the bulge 413 and the
groove 210 (note: as the vibration caused by the rotation of the axle center 412 may
drive the displacement of the drive motor 41, so limitation is required from the mating
of the bulge 413 and the groove 210);
of which, the second linkage end 432 of the crank linkage 43 is designed in an axial
tilt state, so an included angle X is formed axially between the second linkage end
432 and the first linkage end 431 (marked in FIG. 4).
of which, a hollow holding space 15 is placed peripherally within the foundation 10,
and a lighting 50 is assembled within the hollow holding space 15; a transparent frame
16 is arranged at periphery of the foundation 10, so that the ray from the energized
lighting 50 can be transmitted from the transparent frame 16;
of which, said lighting 50 consists of an annular lamp and at least mood lamp 51,
of which said mood lamp 51 is either a small lamp or an LED, which is used for illumination,
decoration and projection for improving the indoor mood via the lighting 50;
of which, the support 11 of the foundation 10 is designed into a wall-abutted surface,
so that the air-conditioning fan can be wall-mounted or hung vertically under the
ceiling (i.e.: a ceiling fan), as shown in FIG.5.
[0013] Referring to FIGS. 7, 8, the support 11 B of the foundation 10 is designed into a
rack, so that the air-conditioning fan A can be placed stably on the ground or table.
[0014] Of which, the guard net assembly portion 14 of the foundation 10 is designed into
an annular grooved pattern, and the open side of the half-guard net 30 is provided
with an annular embedded flange 34, allowing to be positioned onto the guard net assembly
portion 14 of annular grooved pattern for stable positioning purpose.
[0015] Of which, a lateral wind inlet 22 is arranged at periphery of the support casing
20; said lateral wind inlet 22 is designed with varying length, as disclosed in FIG.
6, the lateral wind inlet 22 is elongated to increase the air inlet.
[0016] Based on above-specified structural design, the present invention is operated as
follows:
[0017] Referring to FIGS. 4, 5, when the rotary motor 44 of the embedded rotary fan assembly
40 is activated to rotate the drive shaft, the crank linkage 43 will be driven for
rotation, so the second linkage end 432 of the crank linkage 43 will rotate circumferentially,
and then the drive motor 41 along with the rotating shaft 412 will swing circularly
in an axial tilt state; hence, even when the foundation 10 of said air-conditioning
fan A is not displaced, the rotary vane 42 can swing circularly in an axial tilt state
to change automatically wind outlet direction; moreover, the wind outlet direction
of the rotary vane 42 varies uniquely along a circular path, enabling to increase
the multi-directional wind outlet with better efficiency; on the other hand, when
the drive motor 41 along with the rotating shaft 412 swings circularly in an axial
tilt state, the front end of the drive motor 41 can be abutted onto the movable motor
rack 21 of the support casing 20 with the help of spherical abutting seat 411, so
as to realize a stable and universal support on the spherical surface.
[0018] Referring also to FIGS. 9, 10, 11--another preferred embodiment of said air-conditioning
fan A, the first difference lies in that, a removable portion 35 is arranged at central
section of the half-guard net 30B, so that the half-guard net 30B is divided into
a locating frame 36 and a removable shield 37; said removable portion 35 is located
by a snapper, enabling the user to remove easily and quickly the removable shield
37 (shown in FIG. 10) for cleaning or maintenance of the rotary vane 42; the second
difference lies in the assembly pattern of the half-guard net 30B, support casing
20 and the guard net assembly portion 14 of the foundation 10; as shown in FIGS. 11,
12, an inward flange 38 is formed onto the open side 32 of the half-guard net 30B,
and the assembly end of the support casing 20 is fitted with an outward flange 23
to limit said inward flange 38; additionally, a limiting frame 60 is set to limit
simultaneously the outward flange 23 and inward flange 38 onto the guard net assembly
portion 14 of the foundation 10, and then bolted by a bolt 61; the outward flange
23 is locked into the screw hole 140 preset on the guard net assembly portion 14,
so that the half-guard net 30B and support casing 20 are positioned simultaneously.
[0019] Referring also to FIG. 13, the holding portion 13 is also provided with a holder
131, so that the rotary motor 44 is arranged at rear end of the drive motor 41; the
second linkage end 432 of the crank linkage 43 is linked to the drive shaft of the
rotary motor 44, while the first linkage end 431 of the crank linkage 43 is pivoted
onto the holder 131 of the holding portion 13.
1. An air-conditioning fan (A) with embedded swinging functions, of which the air-conditioning
fan (A) comprising:
a foundation (10), consisting of a support (11) and an assembly surface (12);
a holding portion (13), arranged depressedly at central section of the assembly surface
(12) of the foundation (10);
a guard net assembly portion (14), arranged around the assembly surface (12) of the
foundation (10);
a support casing (20), protruded into a hollow casing, assembled at the central section
of the assembly surface (12) of the foundation (10) correspondingly to the holding
portion (13); the protruding end of the support casing (20) is provided with a movable
motor rack (21), which is designed into a spherical pattern;
a half-guard net (30), with a protruded and half-guard pattern; the half-guard net
(30) consists of a assembly end (31) and an open side (32), of which the open side
(32) is assembled at the guard net assembly portion (14) of the foundation (10); a
spacing between the assembly end (31) and the support casing (20) is used to form
a holding space of rotary vane (33);
an embedded rotary fan assembly (40), consisting of a drive motor (41), a rotary vane
(42), a crank linkage (43) and a rotary motor (44); of which the drive motor (41)
is assembled into the support casing (20); after penetrating a spherical abutting
seat (411), the rotating shaft (412) of the drive motor (41) is universally pivoted
and abutted onto the movable motor rack (21) via the spherical abutting seat (411);
then the rotary vane (42) is mounted at the end of the rotating shaft (412), and located
in its holding space (33); the rotary motor (44) is accommodated into the holding
portion (13) on the assembly surface (12) of the foundation (10); the crank linkage
(43) consists of the first and second linkage ends, of which the first linkage end
(431) is linked to the drive shaft of the rotary motor (44), and the second linkage
end (432) linked to the rear end of the drive motor (41);
of which, the second linkage end (432) of the crank linkage (43) is designed in an
axial tilt state, so an included angle X is formed axially between the first and second
linkage ends.
2. The structure defined in Claim 1, wherein a hollow holding space (15) is placed peripherally
within the foundation (10), and a lighting is assembled within the hollow holding
space (15); a transparent frame (16) is arranged at periphery of the foundation (10),
so that the ray from the energized lighting (50) can be transmitted from the transparent
frame (16).
3. The structure defined in Claim 2, wherein said lighting (50) consists of an annular
lamp.
4. The structure defined in Claim 2, wherein said lighting (50) consists of at least
mood lamp (51), of which said mood lamp (51) is either a small lamp or an LED.
5. The structure defined in Claim 1, wherein the support (11 B) of the foundation (10)
is designed into a wall-abutted surface, so that the air-conditioning fan (A) can
be wall-mounted or hung vertically.
6. The structure defined in Claim 1, wherein the support (11B) of the foundation (10)
is designed into a rack, so that the air-conditioning fan (A) can be placed stably.
7. The structure defined in Claim 1, wherein the guard net assembly portion (14) of the
foundation (10) is designed into an annular grooved pattern, and the open side (32)
of the half-guard net (30) is provided with an annular embedded flange, allowing to
be positioned onto the guard net assembly portion (14) of annular grooved pattern.
8. The structure defined in Claim 1, wherein a lateral wind inlet (22) is arranged at
periphery of the support casing (20).
9. The structure defined in Claim 1, wherein a removable portion (35) is arranged at
central section of the half-guard net (30), so that the half-guard net (30) is divided
into a locating frame and a removable shield (37); said removable portion can be removed
easily and quickly by means of snapping.
10. The structure defined in Claim 1, wherein an inward flange (38) is formed onto the
open side (32) of the half-guard net (30B), and the assembly end of the support casing
(20) is fitted with an outward flange (23) to limit said inward flange (38); a limiting
frame is set to limit simultaneously the outward flange(23) and inward flange (38)
onto the guard net assembly portion (14) of the foundation (10), and then bolted by
a bolt (61); the outward flange (23) is locked into the screw hole (140) preset on
the guard net assembly portion (14), so that the half-guard net (30B) and support
casing (20) are positioned simultaneously.
11. The structure defined in Claim 1, wherein bulges (413) and grooves (210) are arranged
at interval between the periphery of the spherical abutting seat (411) and the spherical
movable motor rack (21).
12. The structure defined in Claim 1, wherein the holding portion (13) is provided with
a holder, so that the rotary motor (44) is arranged at rear end of the drive motor
(41); the second linkage end (432) of the crank linkage (43) is linked to the drive
shaft of the rotary motor (44), while the first linkage end (431) of the crank linkage
(43) is pivoted onto the holder of the holding portion (13).
1. Ein Klimaventilator (A) mit integrierter Schwenkfunktion, wobei der Klimaventilator
(A) Folgendes umfasst:
eine Basis (10), die aus einer Stütze (11) und einer Montagefläche (12) besteht;
einen Halteabschnitt (13), der im mittleren Abschnitt der Montagefläche (12) der Basis
(10) vertieft angeordnet ist;
einen Schutzgittermontageabschnitt (14), der um die Montagefläche (12) der Basis (10)
herum angeordnet ist;
ein Traggehäuse (20), das in ein im mittleren Abschnitt der Montagefläche (12) der
Basis (10) korrespondierend mit dem Halteabschnitt (13) montiertes Hohlgehäuse ragt;
wobei das vorstehende Ende des Traggehäuses (20) mit einem beweglichen Motorgestell
(21) versehen ist, das in einer Kugelform ausgebildet ist;
ein Halbform-Schutzgitter (30) mit einer vorstehenden Halbform-Schutzstruktur, wobei
das Halbform-Schutzgitter (30) aus einem Montageende (31) und einer offenen Seite
(32) besteht, von denen die offene Seite (32) am Schutzgittermontageabschnitt (14)
der Basis (10) montiert ist; wobei ein Zwischenraum zwischen dem Montageende (31)
und dem Traggehäuse (20) zur Bildung eines Halteraums der Rotationsblätter (33) dient;
eine integrierte Drehventilatorbaugruppe (40), die aus einem Antriebsmotor (41), Rotationsblättern
(42), einem Kurbelgestänge (43) und einem Rotationsmotor (44) besteht; von denen der
Antriebsmotor (41) in das Traggehäuse (20) montiert ist; wobei die Drehwelle (412)
des Antriebsmotors (41) nach Durchdringen eines kugelförmigen Anlagesitzes (411) allseitig
geschwenkt wird und über den kugelförmigen Anlagesitz (411) am beweglichen Motorgestell
(21) anliegt; anschließend werden die Rotationsblätter (42) am Ende der Drehwelle
(412) angebracht und sind in ihrem Halteraum (33) angeordnet; wobei der Rotationsmotor
(44) im Halteabschnitt (13) auf der Montagefläche (12) der Basis (10) untergebracht
ist; wobei das Kurbelgestänge (43) aus dem ersten und zweiten Gestängeende besteht,
von denen das erste Gestängeende (431) mit der Antriebswelle des Rotationsmotors (44)
gekoppelt ist und das zweite Gestängeende (432) mit dem hinteren Ende des Antriebsmotors
(41) gekoppelt ist;
wobei das zweite Gestängeende (432) des Kurbelgestänges (43) in einem axialen Neigungszustand
ausgebildet ist, wodurch ein eingeschlossener Winkel X axial zwischen dem ersten und
dem zweiten Gestängeende gebildet ist.
2. Der Aufbau nach Anspruch 1, wobei ein hohler Halteraum (15) peripher innerhalb der
Basis (10) untergebracht und eine Beleuchtung im hohlen Halteraum (15) montiert ist;
wobei ein transparenter Rahmen (16) am Umfang der Basis (10) angeordnet ist, sodass
der Lichtstrahl von der mit Strom versorgten Beleuchtung (50) vom transparenten Rahmen
(16) ausgestrahlt werden kann.
3. Der Aufbau nach Anspruch 2, wobei die besagte Beleuchtung (50) aus einer ringförmigen
Lampe besteht.
4. Der Aufbau nach Anspruch 2, wobei die besagte Beleuchtung (50) aus mindestens einer
Stimmungslampe (51) besteht, wobei besagte Stimmungslampe (51) entweder eine kleine
Lampe oder eine LED ist.
5. Der Aufbau nach Anspruch 1, wobei die Stütze (11B) der Basis (10) als eine Wandanschlagfläche
gestaltet ist, sodass der Klimaventilator (A) an der Wand montiert oder vertikal angehängt
werden kann.
6. Der Aufbau nach Anspruch 1, wobei die Stütze (11B) der Basis (10) als ein Gestell
ausgebildet ist, sodass der Klimaventilator (A) stabil platziert werden kann.
7. Der Aufbau nach Anspruch 1, wobei der Schutzgittermontageabschnitt (14) der Basis
(10) als ringförmige Rillenstruktur ausgebildet ist und die offene Seite (32) des
Halbform-Schutzgitters (30) mit einem ringförmigen integrierten Flansch versehen ist,
was ermöglicht, dass dieser auf dem Schutzgittermontageabschnitt (14) der ringförmigen
Rillenstruktur positioniert werden kann.
8. Der Aufbau nach Anspruch 1, wobei ein seitlicher Windeinlass (22) am Umfang des Traggehäuses
(20) angeordnet ist.
9. Der Aufbau nach Anspruch 1, wobei der abnehmbare Abschnitt (35) im mittleren Abschnitt
des Halbform-Schutzgitters (30) angeordnet ist, sodass das Halbform-Schutzgitter (30)
in einen Einstellrahmen und einen abnehmbaren Schirm (37) unterteilt ist; wobei der
besagte abnehmbare Abschnitt durch Ausrasten einfach und schnell entfernt werden kann.
10. Der Aufbau nach Anspruch 1, wobei ein nach innen gerichteter Flansch (38) auf der
offenen Seite (32) des Halbform-Schutzgitters (30B) ausgebildet ist, wobei das Montageende
des Traggehäuses (20) mit einem nach außen gerichteten Flansch (23) versehen ist,
um den besagten nach innen gerichteten Flansch (38) zu begrenzen; wobei ein Begrenzungsrahmen
so festgelegt ist, dass er gleichzeitig den nach außen gerichteten Flansch (23) und
den nach innen gerichteten Flansch (38) auf dem Schutzgittermontageabschnitt (14)
der Basis (10) begrenzt und anschließend mittels eines Bolzens verschraubt wird; wobei
der nach außen gerichtete Flansch (23) im auf dem Schutzgittermontageabschnitt (14)
vorgegebenen Schraubenloch (140) verriegelt wird, sodass das Halbform-Schutzgitter
(30B) und das Traggehäuse (20) gleichzeitig positioniert werden.
11. Der Aufbau nach Anspruch 1, wobei Ausbuchtungen (413) und Nuten (210) beabstandet
im Zwischenraum zwischen dem Umfang des kugelförmigen Anlagesitzes (411) und dem kugelförmigen,
beweglichen Motorgestell (21) angeordnet sind.
12. Der Aufbau nach Anspruch 1, wobei der Halteabschnitt (13) mit einem Halter versehen
ist, sodass der Rotationsmotor (44) am hinteren Ende des Antriebsmotors (41) angeordnet
ist; wobei das zweite Gestängeende (432) des Kurbelgestänges (43) mit der Antriebswelle
des Rotationsmotors (44) gekoppelt ist, während das erste Gestängeende (431) des Kurbelgestänges
(43) auf dem Halter des Halteabschnittes (13) geschwenkt wird.
1. Un ventilateur de climatisation (A) avec des fonctions de basculement intégrées, le
ventilateur de climatisation (A) comprenant :
une embase (10), constituée par un support (11) et une surface d'assemblage (12) ;
une partie de maintien (13), aménagée en renfoncement en une portion centrale de la
surface d'assemblage (12) de l'embase (10) ;
une partie (14) formant un ensemble ajouré de protection, agencée autour de la surface
d'assemblage (12) de l'embase (10) ;
un boîtier de support (20), faisant saillie de façon à former un boîtier creux, assemblé
à la portion centrale de la surface d'assemblage (12) de l'embase (10) de manière
à correspondre à la partie de maintien (13) ; l'extrémité en saillie du boîtier de
support (20) est pourvue d'un support de moteur (21) mobile qui est conçu selon une
forme sphérique ;
une demi-cage de protection (30), ayant une structure en saillie et en demi-garde
; la demi-cage de protection (30) se compose d'une extrémité d'assemblage (31) et
d'un côté ouvert (32), ce côté ouvert (32) étant assemblé à la partie formant un ensemble
ajouré de protection (14) de l'embase (10); un espacement entre l'extrémité d'assemblage
(31) et le boîtier de support (20) est utilisé pour former un espace (33) de maintien
de l'hélice rotative ;
un ensemble (40) formant un ventilateur rotatif intégré, constitué par un moteur d'entraînement
(41), une hélice rotative (42), une pièce de transmission (43) formant manivelle et
un moteur rotatif (44) ; le moteur d'entraînement (41) est assemblé dans le boîtier
de support (20) ; après avoir pénétré dans un siège de butée sphérique (411), l'arbre
rotatif (412) du moteur d'entraînement (41) est monté de façon universellement pivotante
et vient en butée sur le support de moteur (21) mobile par l'intermédiaire du siège
de butée sphérique (411); l'hélice rotative (42) est alors montée à l'extrémité de
l'arbre rotatif (412) et est située dans son espace de maintien (33) ; le moteur rotatif
(44) est logé dans la partie de maintien (13) sur la surface d'assemblage (12) de
l'embase (10) ; la pièce de transmission (43) formant manivelle est constituée de
première et deuxième extrémités de liaison, dont la première extrémité de liaison
(431) est reliée à l'arbre d'entraînement du moteur rotatif (44) et dont la deuxième
extrémité de liaison (432) est reliée à l'extrémité arrière du moteur d'entraînement
(41) ;
la deuxième extrémité de liaison (432) de la pièce de transmission (43) formant manivelle
est conçue selon un état d'inclinaison axiale, de sorte qu'un angle inclus X est formé
axialement entre les première et deuxième extrémités de liaison.
2. La structure définie dans la revendication 1, dans laquelle un espace de maintien
(15) creux est placé de façon périphérique dans l'embase (10), et un éclairage est
assemblé dans l'espace de maintien (15) creux; une structure transparente (16) est
agencée à la périphérie de l'embase (10), de sorte que le rayon provenant de l'éclairage
(50) sous tension peut être transmis depuis la structure transparente (16).
3. La structure définie dans la revendication 2, dans laquelle ledit éclairage (50) est
constitué par une lampe annulaire.
4. La structure définie dans la revendication 2, dans laquelle ledit éclairage (50) consiste
en au moins une lampe d'ambiance (51), cette lampe d'ambiance (51) étant soit une
petite lampe, soit une DEL.
5. La structure définie dans la revendication 1, dans laquelle le support (11 B) de l'embase
(10) est conçu sous la forme d'une surface de butée de paroi, de sorte que le ventilateur
de climatisation (A) peut être monté sur le mur ou accroché verticalement.
6. La structure définie dans la revendication 1, dans laquelle le support (11 B) de l'embase
(10) est conçu sous la forme d'une monture, de sorte que le ventilateur de climatisation
(A) puisse être placé de manière stable.
7. La structure définie dans la revendication 1, dans laquelle la partie formant ensemble
ajouré de protection (14) de l'embase (10) est conçue selon une forme rainurée annulaire,
et le côté ouvert (32) de la demi-cage de protection (30) est prévu avec une bride
annulaire intégrée, permettant d'être positionné sur la partie formant ensemble ajouré
de protection (14) en forme de rainure annulaire.
8. La structure définie dans la revendication 1, dans laquelle une entrée de ventilation
latérale (22) est aménagée à la périphérie du boîtier de support (20).
9. La structure définie dans la revendication 1, dans laquelle une partie amovible (35)
est agencée au niveau de la portion centrale de la demi-cage de protection (30), de
sorte que la demi-cage de protection (30) est divisée en une structure de positionnement
et un élément formant bouclier (37) amovible ; ladite partie amovible peut être retirée
facilement et rapidement au moyen d'un encliquetage.
10. La structure définie dans la revendication 1, dans laquelle une bride (38) dirigée
vers l'intérieur est formée sur le côté ouvert (32) de la demi-cage de protection
(30B), et l'extrémité d'assemblage du boîtier de support (20) est équipée d'une bride
extérieure (23) pour limiter ladite bride (38) dirigée vers l'intérieur ; une structure
de limitation est configurée de façon à limiter simultanément la bride extérieure
(23) et la bride intérieure (38) sur la partie formant un ensemble ajouré de protection
(14) de l'embase (10), puis est boulonnée par un boulon (61) ; la bride extérieure
(23) est bloquée dans le trou de vis (140) prédéfini sur la partie formant un ensemble
ajouré de protection (14), de sorte que la demi-cage de protection (30B) et le boîtier
de support (20) sont positionnés simultanément.
11. La structure définie dans la revendication 1, dans laquelle des renflements (413)
et des rainures (210) sont agencés selon des intervalles entre la périphérie du siège
de butée sphérique (411) et le support de moteur (21) mobile sphérique.
12. La structure définie dans la revendication 1, dans laquelle la partie de maintien
(13) est pourvue d'un support, de sorte que le moteur rotatif (44) est aménagé à l'extrémité
arrière du moteur d'entraînement (41) ; la deuxième extrémité de liaison (432) de
la pièce de transmission (43) formant manivelle est reliée à l'arbre d'entraînement
du moteur rotatif (44), tandis que la première extrémité de liaison (431) de la pièce
de transmission (43) formant manivelle est montée pivotante sur le support de la partie
de maintien (13).
REFERENCES CITED IN THE DESCRIPTION
This list of references cited by the applicant is for the reader's convenience only.
It does not form part of the European patent document. Even though great care has
been taken in compiling the references, errors or omissions cannot be excluded and
the EPO disclaims all liability in this regard.
Patent documents cited in the description