The present invention relates to a vacuum cleaner hose adapter for connecting to a vacuum cleaner hose of a wet and dry vacuum cleaner, wherein the vacuum cleaner hose has an inner lumen extending in the longitudinal direction.
Vacuum cleaner hose adapters of the type stated at the outset are known in principle from the prior art, e.g. in the form of connection adapters, by means of which a vacuum cleaner hose can be connected to a wet and dry vacuum cleaner. However, the present invention provides a new type of vacuum cleaner hose adapter.
It is an object of the present invention to provide a vacuum cleaner hose adapter which at least promotes an increase in an overall efficiency of a wet and dry vacuum cleaner.
The present invention provides a flow guiding geometry formed within the vacuum cleaner hose adapter, by means of which a suction flow occurring during the operation of the wet and dry vacuum cleaner can be influenced.
The invention incorporates the insight a vacuum cleaner hose, particularly in the form of a spiral hose, causes relatively high pressure and flow losses owing to its geometry. These losses are primarily caused by high wall friction and edge swirling transversely to the hose axis. These losses impair the overall efficiency of a wet and dry vacuum cleaner considerably.
By means of the invention, a vacuum cleaner hose adapter is now created which can preferably be inserted between two vacuum cleaner hose sections, which, by virtue of its flow guiding geometry, promotes a longitudinal vortex form and centering of the suction flow and thus allows relatively low-loss media transfer. It is advantageously possible to incorporate a plurality of vacuum cleaner hose adapters into a vacuum cleaner hose in order to locally refresh any attenuated longitudinal swirling.
It has proven advantageous if the flow guiding geometry has a central guiding body. The central guiding body can be arranged coaxially with the longitudinal direction of the vacuum cleaner hose adapter.
It has proven advantageous if the central guiding body is designed as a solid body. As an alternative, the central guiding body, for its part, can have a flow channel. A flow channel of this kind is preferably arranged coaxially with the central guiding body and thus coaxially with the longitudinal direction of the vacuum cleaner hose adapter.
In a particularly preferred embodiment, the flow guiding geometry has a plurality of spokes, which preferably extend inward in the radial direction.
It has proven advantageous if the flow guiding geometry extends over the total length of the vacuum cleaner hose adapter.
The flow guiding geometry can have a cross section in the form of a sun wheel or a four-way lug wrench.
In one particularly preferred embodiment, the vacuum cleaner hose adapter is designed as an intermediate adapter. In other words, a respective vacuum cleaner hose section can be connected on each of the two sides of the vacuum cleaner hose adapter. A cascade of a plurality of vacuum cleaner hose adapters, preferably spaced apart from one another, is thus also possible within one and the same vacuum cleaner hose.
As an alternative to the embodiment as an intermediate adapter, the vacuum cleaner hose adapter can be designed as an end-located adapter. In this case, an embodiment as a nozzle is possible, for example.
In another preferred embodiment, the vacuum cleaner hose adapter has a retention element. The retention element is preferably in the form of a flexible retention ring. A vacuum cleaner hose adapter designed as an intermediate adapter can have two opposite retention elements. If the vacuum cleaner hose adapter is designed as an end-located adapter, just one retention element in the form of a flexible retention ring is preferably provided.
In one particularly preferred embodiment, the vacuum cleaner hose adapter is of double-shell design. This allows particularly easy cleaning of a hose system with a vacuum cleaner hose and a vacuum cleaner hose adapter.
The vacuum cleaner hose adapter is preferably manufactured from plastic.
The present invention also provides a vacuum cleaner hose for connection to a wet and dry vacuum cleaner, wherein at least one vacuum cleaner hose adapter as described above is arranged or can be arranged on the vacuum cleaner hose.
The vacuum cleaner hose adapter or adapters can be secured permanently on the vacuum cleaner hose.
The vacuum cleaner hose is preferably designed as a spiral hose.
The present invention also provides a vacuum cleaner hose having one or more vacuum cleaner hose adapters of the type described above.
Further advantages will become apparent from the following description of the figures. Various exemplary embodiments of the present invention are illustrated in the figures. The figures, the description and the claims contain numerous features in combination. A person skilled in the art will expediently also consider the features individually and combine them to form expedient further combinations.
In the figures, identical components and components of identical type are designated by the same reference signs. In the figures:
A preferred exemplary embodiment of a device 10 according to the invention is illustrated in
A vacuum cleaner hose adapter 20 for connecting to a vacuum cleaner hose 10 of a wet and dry vacuum cleaner 100 is illustrated in
According to the invention, a flow guiding geometry 2 is formed within the vacuum cleaner hose adapter 20, by means of which a suction flow S occurring within the vacuum cleaner hose 10 during the operation of the wet and dry vacuum cleaner 100 can be influenced with flow proceeding from the right to the left in
First of all, it should be mentioned that the vacuum cleaner hose adapter 20 is designed as an intermediate adapter, that is to say that a respective section of the vacuum cleaner hose 10 is connected on each side of the vacuum cleaner hose adapter 20 (on the left and right in
A suction flow S prevailing on the right-hand side of the vacuum cleaner hose adapter 20 is subject to relatively strong turbulence, that is to say, in particular, there is intense edge swirling transversely to the longitudinal direction L of the vacuum cleaner hose 10. This leads to a negative influence on the overall efficiency of the wet and dry vacuum cleaner 100. By virtue of the vacuum cleaner hose adapter 20, which, in this case, is fitted with a central guiding body 3 for example, swirling transversely to the hose axis is significantly reduced and converted into a preferred longitudinal vortex form which allows a lower loss of media transfer.
This advantageous longitudinal vortex form continues on the left-hand side of the vacuum cleaner hose adapter 20. In order to avoid any reoccurrence of transverse swirling downstream, a further vacuum cleaner hose adapter can be incorporated into the vacuum cleaner hose 10.
The vacuum cleaner hose adapter 20 designed as an intermediate adapter has two retention elements in the form of flexible retention rings 7, 7′, which are fitted over a respective outside diameter AD of the vacuum cleaner hose 10.
In
With reference to
Insertion of the respective sections of the vacuum cleaner hose 10 into the vacuum cleaner hose adapter 20, this being illustrated in
As an alternative or in addition, an outer sleeve (not illustrated) can be provided for each of the retention rings 7, 7′ or, alternatively, for the vacuum cleaner hose adapter 20 as a whole, said sleeve being pushed over the vacuum cleaner hose adapter 20 after the attachment of the latter in order to prevent expansion of the retention rings 7, 7′.
In the case of the preferred exemplary embodiment in
As can be seen from
It can clearly be seen that the spokes 4 are provided merely to support the guiding body 3 and do not extend over the total length GL of the vacuum cleaner hose adapter 20.
In a version that is not illustrated here, the spokes 4 can extend over the total length GL of the vacuum cleaner hose adapter 20. By means of the central guiding body 3 and the plurality of spokes 4, the inner lumen 1 is then divided into four discrete bypass channels 6, which each extend over the total length GL of the vacuum cleaner hose adapter 20.
It can clearly be seen in
Another preferred exemplary embodiment of a vacuum cleaner hose adapter 20 according to the invention is illustrated in
As can be seen from
Although this is not visible from
1 Inner lumen
2 Flow guiding geometry
3 Central guiding body
5, 5′ Flow channel
6 Bypass channel
7, 7′ Retention ring
10 Vacuum cleaner hose
20 Vacuum cleaner hose adapter
100 Wet and dry vacuum cleaner
AD Outside diameter
AS Hose outside
GL Total length
ID Inside diameter
L Longitudinal direction
M Central point
R Radial direction
S Suction flow
Number | Date | Country | Kind |
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18163242.3 | Mar 2018 | EP | regional |
Filing Document | Filing Date | Country | Kind |
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PCT/EP2019/056426 | 3/14/2019 | WO | 00 |