The present invention relates to an apparatus for transmitting ultrasound. Such apparatus are generally known from the prior art and serve, among other things, for amplitude transformation or amplitude amplification of the ultrasonic oscillations transmitted from a converter to a sonotrode.
It is the object of the present invention to provide an apparatus for transmitting ultrasound that enables a compact design in tight or complex space conditions.
This object is satisfied by the features of claim 1 and in particular in that the apparatus has a curved oscillating body having a coupling surface provided at one end for coupling a converter, wherein the oscillating body is in particular curved in the shape of a U, of an S, or of a J. Furthermore, the oscillating body has at least one recess between the coupling surface and the end opposite thereto, said recess extending over the periphery of the oscillating body. With an oscillating body of such a design, very good results can be achieved despite the curved design due to the recess extending over the periphery of the oscillating body, wherein an assembly of the total arrangement can also take place without problem in very complex or tight space conditions due to the curved design of the oscillating body.
Advantageous embodiments of the invention are described in the description, in the drawing and in the dependent claims.
In accordance with a first advantageous embodiment, the oscillating body can have a substantially constant cross-sectional shape apart from the recess. This means that the oscillating body is formed uniformly over its essential extent and has the same cross-sectional shape apart from the recess or from a base for coupling surfaces.
In accordance with a further advantageous embodiment, the oscillating body can have part sections of quadrant shape at both sides of the recess so that a deflection by 90° in the same plane or in different planes is achieved by each part section. Such a design of part sections of quadrant shape, between which a recess is located, has achieved good results in tests.
In accordance with a further advantageous embodiment, the recess can be curved in cross-section, for example, as a peripheral annular groove.
In accordance with a further advantageous embodiment, a further coupling surface for a sonotrode can be provided at the end disposed opposite the coupling surface. In this way, the oscillating body can be equipped with different sonotrodes and converters due to a modular design.
In accordance with a further advantageous embodiment, a sonotrode can be molded in one piece to the end disposed opposite the coupling surface. With a component of such a very compact design, complicated installation situations can be managed and losses can be minimized due to an interruption-free material transition between the sonotrode and the oscillating body.
Furthermore, it can be advantageous if a recess is likewise provided between the sonotrode and the oscillating body in the above-described embodiment since the oscillation behavior of the total apparatus can hereby be improved.
In accordance with a further advantageous embodiment, the oscillating body can have a rectangular cross-section or a square cross-section. In contrast to other cross-sections or even to asymmetrical cross-sections, a particularly uniform oscillation behavior can hereby be achieved.
A similar advantage can be achieved if the oscillating body has a constant radius of curvature at both sides of the recess.
Furthermore, good results were able to be achieved with an oscillating body whose curvature has at least one inflection point and in particular exactly one inflection point.
It may be advantageous for complex shapes of the oscillating body if the oscillating body is formed in multiple parts.
The oscillating body can generally be curved in any desired planes, which can be of advantage in complex installation situations. However, it may also be advantageous to form the oscillating body as curved within only one plane. A further advantageous embodiment can be formed in that the oscillating body is curved in two planes extending at right angles to one another.
The present invention will be described in the following purely by way of example with reference to advantageous embodiments and to the enclosed drawings.
There are shown:
A recess 24 extending over the periphery of the oscillating body is provided at the center between the two ends 12 and 16, i.e. between the coupling surface 14 and the coupling surface 18, and divides the oscillating body into two sections A and B of quadrant shape.
As
The oscillating body 40 shown in
Number | Date | Country | Kind |
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102019123071 .3 | Aug 2019 | DE | national |