专利摘要:
The invention relates to a room ventilator for enriching the air with aromatic substances of pine wood, the RaumIüfter having a body with preferably a base part (2) and a detachably mounted on the base part (2) fuselage part (3) which encloses an inner space (13) , wherein in the interior (13) a receiving chamber for a pine wood filling (10) and an air movement means (6) are arranged, and wherein in the interior (13) below the receiving chamber preferably a moisture and / or oil reservoir is arranged.
公开号:AT15892U1
申请号:TGM100/2016U
申请日:2016-05-03
公开日:2018-08-15
发明作者:Simbruner Carl;Stieldorf Nikolaus;Handler Benedikt
申请人:Zirb Gmbh;
IPC主号:
专利说明:

Description: The invention relates to a room ventilator for enriching the room air with aromatic substances of pinewood.
The heartwood of, inter alia, in the Alpine region Swiss stone pine, the so-called pine wood, is known and appreciated for its fragrance. Various studies also suggest a relaxing and health-promoting effect. For example, it was found in one experiment that subjects' heart rate during sleep, when sleeping in pine logs, was lower than when sleeping in chipboard beds.
Against this background, pinewood has been used in the past for the production of beds and other furniture. Furthermore, pine cushions with shavings of Swiss stone pine wood are known as filling material in the Alpine region.
Also room ventilator for spreading the pine wood scent and the essential oils of pine wood in rooms are known.
The object of the present invention is to provide a generic room fan, which is characterized by a particularly simple design and ease of use.
To solve this problem, the invention provides a room fan for enriching the air with aromatic substances of pine wood ready. The room fan has a body that encloses an interior. In the interior, a receiving chamber for a stone pine wood filling and an air moving means are arranged.
In one embodiment, a humidity and / or oil reservoir is further arranged in the interior.
In one embodiment, the body has the shape of a prism. The prism is preferably a straight prism. It may for example have a square base. At the bottom of the body leveling feet or similar means may be arranged to allow installation of the room fan.
The room ventilator and the air movement means are preferably designed so that air is sucked into the interior, then loaded on the basis of the moisture and / or oil reservoir with moisture or Ölschwebeteilchen, then passes through the receiving chamber and is finally discharged again from the interior ,
In one embodiment, the receiving chamber is disposed above the moisture and / or oil reservoir. Thus, evaporated water from the moisture reservoir or oil floating particles can be withdrawn from the oil reservoir upwards and directed into the receiving chamber.
In one embodiment, the uppermost portion of the interior forms the receiving chamber.
In one embodiment, the moisture and / or oil reservoir is disposed in the lowermost portion of the interior.
In one embodiment, the air movement means between the receiving chamber and the moisture and / or oil reservoir is arranged so that the moisture and / or oil reservoir on the suction side and the receiving chamber are on the pressure side of the air movement means. Thus, a high efficiency in the movement of the air can be achieved.
In one embodiment, at least one body wall in the region between the moisture and / or oil reservoir and the air movement means has at least one suction port. For example, a plurality of openings within the same body wall can be arranged side by side at the same height. This can be achieved that air is sucked efficiently in the right place. It results in a good flow behavior.
In one embodiment, the body has no top surface and / or the interior or the receiving chamber is open at the top. Thus, a simple loading of the receiving chamber with the Zirbenholzfüllung and a simple removal of Zirbenholzfüllung from the receiving chamber are possible. This is particularly advantageous for a periodic replacement of the filling.
It is conceivable to provide a lid which covers the body above. The lid may for example be designed so that it is removed without tools from the body. For example, the peripheral edge of the lid may be provided with a stepped profile, a web or a groove. Furthermore, the provision of vertical guide rails in the corners of the lid is conceivable. The lid may be, for example, a glass plate, or the lid may comprise a glass plate.
In one embodiment, the body comprises a base part and a body part detachably mounted on the base part. For example, it can be provided that the body part is attached to the base part. This facilitates the filling of the moisture and / or oil reservoir and the maintenance of the air movement means. The body part can preferably be removed without tools from the base part. For example, at least one of the parts is provided with a stepped profile, a web or a groove. Furthermore, the provision of vertical guide strips in the corners of the body part and / or the base part is conceivable.
In one embodiment, the moisture and / or oil reservoir is arranged in the interior of the base part. Preferably, only the moisture and / or oil reservoir is arranged in the interior of the base part. In this embodiment, the user receives with removed fuselage part direct access to the moisture and / or oil reservoir.
In one embodiment, the receiving chamber and / or the air moving means are arranged in the body part. In this embodiment, the user receives with removed fuselage part direct access to the bottom of the Rupfteil arranged air moving means.
In one embodiment, the body part of several, for example, two or three stacked and preferably superimposed fuselage section parts. Each fuselage section part may be designed individually like a fuselage part, that is to say, each having, for example, its own fan and its own receiving chamber. In one embodiment, all fuselage sections are identical or identical except for individual features. For example, it can be provided that only the lowest fuselage section part has suction openings and / or that the height of the fuselage section parts is different.
If a plurality of fuselage section parts are provided, it can be provided that fuselage section parts arranged one above the other have corresponding electrical contacts, by means of which the air movement means of the individual fuselage sections are electrically connected in series and connected to a power supply, for example in the base.
In one embodiment, the moisture reservoir is formed by a water bowl, which is arranged in the interior. Preferably, the water bowl is dimensioned so that it extends over the entire base surface of the interior. So the water surface and therefore the evaporation can be maximized. The water bowl can preferably be removed from the interior. This makes refilling easier. In the operating state of the room fan, the water bowl is filled with water.
In one embodiment, the oil reservoir is formed by an open oil container, which is arranged in the interior. This may be, for example, an oil pan or a bottle. Preferably, the oil container is dimensioned so that it does not extend over the entire base of the interior and occupies, for example, less than half or less than a quarter of the base area. This way, excessive oil consumption can be avoided. Preferably, a fastening means, such as a recess or a
Sliding seat present, by means of which the oil container can be releasably secured in a predetermined position in the interior. In the operating state of the room fan, the oil container is filled with an aromatic oil, preferably with pine oil. Swiss stone pine oil is an essential oil, which is extracted from components of the Swiss stone pine. For example, the oil can be recovered by steam distillation of the pine branches, pine pines, pine needles and / or pine wood.
In one embodiment, the body part is placed directly on the base part or on the upper edge of the reservoir, possibly a circumferential flange.
In another embodiment, it may be provided that the body part stands on its own legs. It can be provided that between the body part and the base part, a gap may be provided which increases the intake cross-section for air.
In one embodiment, the air moving means is an electrically operated fan, for example an axial fan, which rotates about a vertical axis. The fan and its control electronics are preferably designed so that the fan has an operating noise of less than 20 and preferably less than 10 dB. Thus, the operation of the fan in a room is hardly perceived or not at all.
To power the fan, the room fan has an interface for connection to a household power supply and / or a battery. Such an interface or a power cable connection can be located on the base part or on the body part. Suitable variants include male or female (micro-) USB ports. Furthermore, it is conceivable that the room fan has one or more solar cells in order to supply the fan with electricity. It can be provided an electronic control unit, which is designed so that a switching on and off of the fan is done on user command. For example, the control unit is a simple switch. It is also conceivable that the control unit comprises a receiving unit and / or a computing unit and is designed so that the fan is controlled remotely or based on an algorithm stored in the arithmetic unit, for example a timer. Alternatively it can be provided that the operation of the fan always takes place when the room fan is connected to a power supply.
The receiving chamber is preferably formed in a simple manner by the uppermost portion of the interior. The bottom of the receiving chamber may be formed, for example, by a partition wall with passage openings or a separating grid. In one embodiment, the air moving means is mounted to the bottom of the receiving chamber to achieve a space saving construction.
The receiving chamber can occupy more than half or even more than two-thirds of the total volume of the interior. Accordingly, it may be provided that the vertical extension of the body part is greater than the vertical extent of the base part, for example more than twice as large.
In one embodiment, the receiving chamber with a bed of stone pine chips, in particular filled with curved wood shavings. Such a bed of curved shavings has a loose structure, which can be well ventilated and yet has a large wood surface for dispensing fragrances. Furthermore, wood shavings can be easily and inexpensively produced by the processing of waste.
The body of the room ventilator is preferably made of pine wood. This complements the pine wood filling visually to a good overall concept. The wood is relatively soft and can be worked well, for example, it is nail and screw resistant.
In the application of the room ventilator of the present invention, it may be provided that the stone pine wood fill is periodically exchanged on pine wood chips, i.e. taken out of the receiving chamber and replaced with a new filling. The lifetime of the filling can be set to, for example, less than six or even less than three months. This ensures that the room ventilator always emits a sufficient amount of aromatic substances even after a long period of time.
Further details and advantages of the invention will become apparent from the illustrated with reference to FIGS embodiment. The figures show: [0034] FIG. 1: a perspective view of an embodiment of a room ventilator according to the invention; FIG. 2 shows an exploded view of the embodiment of the invention shown in FIG
Room fan; FIG. 3 shows a front view of the body part of the embodiment of the room ventilator shown in FIG. 1; FIG. 4 shows a plan view of the body part of the embodiment of the room ventilator shown in FIG. 1; FIG. 5 shows a perspective view of the base part of the embodiment shown in FIG. 1 of the room ventilator; FIG. 6 shows a front view of the base part of the embodiment of the room ventilator shown in FIG. 1; FIG. 7 shows a plan view of the base part of the embodiment of the room ventilator shown in FIG. 1; FIG. 8 shows a perspective view of the water dish of the one shown in FIG
Embodiment of the room ventilator; FIG. 9: a perspective view of the axial fan of the embodiment shown in FIG. 1 of the room ventilator; FIG. 10 shows a perspective view of a further embodiment of a room ventilator according to the invention; and [0044] FIG. 11: a perspective view of the base part of the room ventilator according to FIG. 10.
In the figures 1 to 9, an embodiment of a room ventilator according to the invention is shown.
The room ventilator has a body, which is identified by the reference numeral 1. The body is constructed in two parts and comprises a base part 2 and a body part 3. The base part 2 is substantially smaller than the body part 3, so that the body part 3 makes up the majority of the vertical extent of the body.
The body part 3 is placed on the base part 2, wherein the body part 3 at the bottom as shown in Figure 3 recognizable on each of the side surfaces webs 11 which extend in the central region over a large part of the horizontal dimensions of the body part and from the Protruding underside of the body part. As can be seen from FIG. 7, guide strips 12 are incorporated in the corners of the base part 2, which occupy the region of the horizontal dimensions of the body part or base part which is not covered by the webs 11. On the basis of these means 11 and 12, the body part 3 is attached to the base part 2, wherein the webs 11 are guided and received on the inside of the side surfaces of the base part 2 between the guide rails 12. Thus, an attachment of the body part 3 in a predetermined position - namely in a position aligned with the base part - allows - and prevents slipping of the body part 3 from the base part 2.
The body 1 as a whole has the shape of a square prism, and also the base part 2 and the body part 3 taken by themselves have the shape of a straight prism with a square base. Both the base part 2 and the body part 3 are made entirely of pine wood.
As can be seen in Figures 4 and 7, both the base part 2 and the body part 3 are made so that four wood panels are connected to each other at the side edges. The connection is preferably by gluing.
Within the body 1, an interior space 13 is formed, which is bounded by the body walls and accommodates different functional components of the room ventilator according to the invention.
The bottom of the body, corresponding to the bottom of the base part 2 is closed. In the embodiment shown in the figures, leveling feet in the form of small cotton pads, not shown in the figures, are provided on this floor in order to prevent damage to the base at the place of installation.
At the top, the body is open, so that the interior 13 and the uppermost portion of the interior 13 is accessible from the outside and can be viewed. As can be seen from FIG. 4, an aperture is provided on the upper edge of the fuselage part 3, which in the exemplary embodiment shown is composed of four horizontally arranged strips and forms an opening in the middle through which the inner space 13 is accessible from above.
In a side wall of the body part 3, three intake openings for air are incorporated in the embodiment shown side by side at the same height.
Through these openings, air is sucked into the interior 13 of the body 1 in the operating state of the room ventilator. After passing through the interior 13, this air is returned through the opening at the upper end of the body.
The base part 2 is open at the top and the body part 3 is open at the bottom, so that the interiors of these two parts communicate with each other and form a single interior space 13.
In that portion 14 of the inner space 13, which is formed by the base part 2, a water bowl 5 is accommodated. The water tray 5 also has a square base, which is dimensioned so that the entire base of the inner space 13 is covered by the water bowl. The depth of the water bowl is chosen so that the entire base part 2 is filled by the water bowl 5. This achieves maximum water capacity. The water bowl is made of plastic in the illustrated embodiment.
Above the water bowl 5, an air movement means 6 is arranged in the interior 13 of the body 1, which comprises an axial fan 7 with a vertical axis of rotation and an electric drive motor for this fan. The axial fan 7 and the motor 8 are installed in a fan housing 9, which in turn is connected to the body 1 of the room fan. The air movement means 6 is preferably mounted above the suction openings 4 in the body part 3 of the room ventilator.
In the height of the air movement means 6 is in a side wall of the body part 3, an opening 16 for a not-shown in the figure power cable, which serves to provide the air movement means 6 with electricity.
Above the air movement means 6 is located in the interior 13 of the room ventilator not shown intermediate floor, which may be, for example, a grid. Above this intermediate floor, the interior 13 of the body part 3 forms a receiving chamber for a stone pine filling up to its upper end.
As can be seen in FIG. 4, protrusions 15 are provided on the four side walls of the body part 3, which projections serve for fastening an intermediate floor and / or for fastening the air movement means 6. The projections 15 may be made of pine wood, for example. They may for example be incorporated in the side walls so that they are inserted into recesses on the inside of the side walls.
The Zirbenholzfüllung is shown schematically in Figure 2 and provided with the reference numeral 10.
This filling is preferably wood shavings of pine wood, which may have an average length of several centimeters, for example of more than 2 cm and which preferably have a curvature that is strong enough that a significant proportion of the chips, preferably at least 50% of the chips are curved by 360 ° or more and so form small rollers. Such a filling material can form a loose structure of the pine wood filling and be well ventilated, at the same time a large wood surface for dispensing aromatic casings and the like is present.
The room ventilator shown is characterized by a simple design and ease of use.
FIGS. 10 and 11 show a further embodiment of a room ventilator according to the invention. Corresponding parts are provided with identical reference numerals.
In contrast to the embodiment according to FIGS. 1 to 9, in the present embodiment, the body part 3 comprises three body portion parts 3a-c, which are put over one another. The lower body portion part 3a is put on the base part 2, the middle body portion part 3b is put on the lower body portion part 3a, and the upper body part part 3c is put on the middle body part part 3b. All trunk section parts 3a-c comprise webs on the underside on each of the side surfaces, as explained in connection with the body part 3 of FIGS. 1 to 9.
Each of the fuselage section parts 3a-c has its own fan and its own receiving chamber. The fuselage sections 3a-c have corresponding electrical contacts, by means of which the fans are electrically connected in series and connected to a power supply located in the base. Except for the fact that only the lower fuselage section 3a has suction openings 4 and the upper fuselage section 3c has no electrical contacts on the upper side, all fuselage sections 3a-c are constructed identically.
The fuselage part 3 or, more specifically, the lowermost fuselage section part 3a stands on legs 20 anchored separately in the base part 2 in order to form an approximately 2 cm wide gap 21 between the fuselage part 3 and the base part 2, which increases the air intake cross section.
By this arrangement it is achieved that the fan can be built larger and at the same time easy to handle and is well traversed with air. REFERENCE LIST: 1 ... carcass 2 ... base part 3 ... fuselage part 3a ... lower fuselage part part 3b ... middle fuselage part part 3c ... upper fuselage part part 4 ... suction holes 5 ... water shell 6 ... air moving means 7 ... Axial fan 8 ... Motor 9 ... Fan housing 10 ... Zirbenholzfüllung 11 ... Webs 12 ... Guide rails 13 ... Interior 14 ... Section 14 of the interior 13, through the base part 2 is formed 15 ... projections 16 ... breakthrough
权利要求:
Claims (15)
[1]
claims
1. room ventilator for enriching the air with aromatic substances of pine wood, the room ventilator having a body (1) which encloses an interior space (13), wherein in the interior (13) a receiving chamber for a pine wood filling (10) and an air movement means (6 ) are arranged.
[2]
2. room ventilator according to claim 1, characterized in that in the interior (13) further comprises a moisture and / or oil reservoir is arranged.
[3]
3. room ventilator according to claim 2, characterized in that the receiving chamber is disposed above the moisture and / or oil reservoir.
[4]
4. room ventilator according to claim 2 or 3, characterized in that the receiving chamber is formed by the uppermost portion of the interior (13) and / or the moisture and / or oil reservoir in the lowermost portion of the interior (13) is arranged.
[5]
5. room ventilator according to one of claims 2 to 4, characterized in that the air movement means (6) between the receiving chamber and the moisture and / or oil reservoir is arranged so that the moisture and / or oil reservoir on the suction side and the receiving chamber on the Pressure side of the air moving means (6) lie.
[6]
6. Room fan according to one of the preceding claims 2 to 5, characterized in that at least one body wall in the region between the moisture and / or oil reservoir and the air movement means (6) has at least one suction opening (4).
[7]
7. room ventilator according to one of the preceding claims, characterized in that the receiving chamber is open at the top.
[8]
8. room ventilator according to one of the preceding claims, characterized in that the body (1) comprises a base part (2) and a detachably mounted on the base part (2) fuselage part (3), wherein it is preferably provided that the fuselage part (3) is attached to the base part (2).
[9]
9. room ventilator according to claim 8, characterized in that in that portion (14) of the interior (13) which is formed by the base part (2), only the moisture and / or oil reservoir (5) is arranged.
[10]
10. room ventilator according to claim 8 or 9, characterized in that the receiving chamber and / or the air movement means (6) in the body part (3) are arranged.
[11]
11. Room ventilator according to one of claims 2 to 10, characterized in that the moisture reservoir is formed by a water bowl (5), which is arranged in the interior (13) and is preferably dimensioned so that it extends over the entire base surface of the interior ( 13).
[12]
12. Room ventilator according to one of the preceding claims, characterized in that the receiving chamber is filled with a stone pine filling (10) serving bed of stone pine wood chips, in particular of curved wood shavings.
[13]
13. Room ventilator according to one of claims 8 to 10, characterized in that the body part (3) consists of several, for example two or three stacked and preferably superimposed hull section parts (3a-c) consists.
[14]
14. room ventilator according to claim 13, characterized in that each body section portion (3a-c) has its own fan and / or its own receiving chamber.
[15]
15. Room ventilator according to claim 13 or 14, characterized in that superimposed fuselage section parts (3a-c) have corresponding electrical contacts, by means of which the air movement means (6) of the individual fuselage sections (3a-c) in series electrically connected and / or to a Power supply connected. For this 11 sheets of drawings
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引用文献:
公开号 | 申请日 | 公开日 | 申请人 | 专利标题
AT11435U2|2010-04-07|2010-10-15|Naturprodukte Handels Gmbh|CIRCLES CLIMATE BOY|
KR20120135612A|2011-06-07|2012-12-17|이병수|A diffusion device of perfume|
US20150108240A1|2013-10-18|2015-04-23|SimpleScents Brands LLC|Decorative Fragrance Dispensing System|
CN106839236B|2017-02-09|2020-06-05|广东格迩斯环保科技有限公司|Air humidifying device capable of automatically sucking essential oil|
DE202020003829U1|2020-09-09|2020-11-06|Erhard Seiler|Air purifier made of stone pine|
法律状态:
2021-01-15| MM01| Lapse because of not paying annual fees|Effective date: 20200531 |
优先权:
申请号 | 申请日 | 专利标题
DE202015003372|2015-05-07|
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