This application claims the priority of the German patent application DE 10 2022 128 208.2, filed on Oct. 25, 2022 with the German Patent and Trademark Office, which is hereby incorporated in its entirety by reference.
The present invention relates to an assembly arrangement for assembling a component on an environment, comprising the following features: an abutment portion at the component end; an abutment portion at the environment end; a damping portion between the abutment portion at the component end and the abutment portion at the environment end, wherein the damping portion exhibits a shape which at least approximates a periodic function, wherein bearing surfaces which form the abutment portions are formed in the region of the maximum amplitudes of the at least approximately periodic function. Such an assembly arrangement is in particular suitable for assembling a component on a vehicle frame in a vibration-damping way.
Assembly arrangements have been disclosed by the prior art in which abutting regions which are offset over the circumference are fixed to the component to be assembled on the one hand and to the assembly environment on the other. These regions function like a disk spring due to the damping characteristic of the plastic and/or the material from which such assembly arrangements are molded. The abutting regions which are offset over the circumference can compensate for a thrust load, wherein low spring rates are achieved, with acceptable aging characteristics. For good damping characteristics, it is preferable for such an assembly arrangement to have as large a working region as possible, wherein the assembly arrangement which is in principle designed as a disk spring is functionally sub-divided into a working region and a propagation region. The working region should be as large as possible in order to achieve natural resonances of the assembly arrangement which are as low as possible. Using the principles of a disk spring allows an acceptable working region and therefore acceptable damping characteristics, with equally acceptable aging.
JP 6895141 B discloses an assembly arrangement which comprises two abutment portions which are connected to each other by stays. In this case, the damping characteristic is likewise achieved in principle using the principle of a disk spring.
It is the object of the present invention to provide an assembly arrangement which can exhibit better damping characteristics and better aging characteristics, with substantially the same space requirements and substantially the same materials.
In accordance with the invention, the assembly arrangement for assembling a component on an environment is formed to comprise an abutment portion at the component end, an abutment portion at the environment end and a damping portion between the abutment portion at the component end and the abutment portion at the environment end, wherein the material of the damping portion exhibits a shape which resembles an at least approximately periodic function, wherein bearing surfaces to be assigned to the abutment portions are formed in the region of the maximum amplitudes of the at least approximately periodic function. In the simplest case, the damping portion exhibits a wave spring-like design, wherein it can also as applicable be essential for said assembly arrangement in accordance with the invention to preferably be able to be formed in one piece from at least one and preferably one plastic material.
The bearing surfaces can advantageously be flattened, i.e. the regions of the maximum amplitudes of the shape of the damping portion can be flattened. They can also be embodied as bearing surfaces and/or abutment portions beyond the maximum amplitudes.
It is then essential for the shape of the damping portion, which advantageously encircles the entire circumference of the assembly arrangement which is preferably shaped so as to exhibit cylindrical symmetry, to extend substantially constantly.
The periodic function can be a sine function or a cosine function, wherein substantial deviations should hardly need to be taken into account due to the continuity in the shape of the damping portion over the circumference of the damping portion.
The periodic function should advantageously be dimensioned such that it provides at least two, preferably at least three, amplitudes over the circumference of the damping portion, wherein said amplitudes can provide bearing surfaces and therefore abutment portions, preferably in the positive and negative amplitude propagation direction.
As already indicated, it is advantageous for the assembly arrangement in accordance with the invention to be configured to be at least approximately cylindrical, wherein a hollow-cylindrical, continuous cavity is provided, via which the assembly arrangement can be fixed to the assembly environment.
In order to be able to advantageously fix the assembly arrangement and therefore a component, an additional contact ring can be provided which is likewise formed so as to exhibit cylindrical symmetry and which can be inserted into the hollow-cylindrical, continuous cavity via a pipe socket-like and/or cylindrical appendage, wherein the geometries of the assembly arrangement and the pipe socket-like appendage are mutually adjusted, such that the desired damping characteristic and/or wave spring characteristic is not impaired in a circumferential contact region between the assembly arrangement and the pipe socket-like appendage which is likewise formed so as to exhibit cylindrical symmetry, i.e. the contact surface of the contact ring in relation to the bearing surfaces and/or abutment portions.
Preferably, the contact ring and its cylindrical and/or pipe socket-like appendage likewise comprise a cylindrical hollow space which is continuous and through which a screw bolt or the like can be guided in order to be fixed to the assembly environment, wherein the screw bolt or the like extends from the upper end of the assembly arrangement as far as the assembly environment, such that in this way the component which is to be fixed can be fixed to the assembly environment, such as a vehicle portion, vehicle frame or the like.
Since the damping characteristics of the assembly arrangement can also be influenced by the material, the material for the damping portion is advantageously selected such that a vibration spectrum of the component which is to be damped is preferably absorbed, wherein a size and/or geometry of the bearing surfaces and therefore the abutment portion could in particular likewise be adapted.
The damping portion is advantageously formed in one piece with at least one and preferably both abutment portions, but can also be embodied as a separate portion, wherein this incurs a greater assembly expenditure on the one hand, but on the other enables a possibly more favorable material selection to be made in relation to the different portions of the assembly arrangement in accordance with the invention.
The portions of the assembly arrangement are in particular formed to be substantially cylindrical and preferably formed integrally, wherein they provide a cylindrical, continuous hollow space along a cylinder axis of the assembly arrangement when held together.
In order to advantageously facilitate centering during assembly in the assembly environment, for example a circular or substantially circular hole in a vehicle frame, the assembly arrangement in accordance with the invention can comprise one or preferably three circumferential arc-shaped contact surfaces, radially on the outer circumference, which center the assembly arrangement in the assembly environment when held together and/or as an integrally formed arrangement. It is of course also possible to form two, four or more such contact devices.
The present invention is described in more detail below on the basis of example embodiments with reference to the attached figures, wherein identical reference signs denote identical components, such that the constituent parts in the figures need not all be described repeatedly.
The embodiment of an assembly arrangement in accordance with the invention in accordance with
The assembly arrangement 10 comprises an abutting region 12 featuring a counter bearing region 12a which is designed to be moved into contact with a component to be assembled or with a support of said component. The abutting region 12 exhibits a central opening 22 through which a connecting device, such as a screw bolt, can be inserted in the assembly situation. Centering contact surfaces 20 are provided in the cylinder region 26 in order to center the assembly arrangement in the component and/or in an opening, for example a circular opening, in a support for the component. The upper abutting region 12 can be connected to a damping portion 17 in accordance with the invention by a connecting device 28, such as a latch 28, wherein the component or the support at the component end can be fixed to the assembly arrangement. A screw connection or the like could also be considered in this case.
The damping portion 17 is embodied as an at least approximately periodic function and accordingly exhibits an upper waveform 15 at the component end and a lower waveform 14 at the environment end. Maximum amplitudes of this periodic waveform or function are characterized by bearing surfaces 16 and 16a which form an abutment portion 16 at the environment end and an abutment portion 16a at the component end.
In other words, the approximately periodic function, the shape of which corresponds to the damping portion 17, forms a sort of wave spring in which the maximum amplitudes 16a at the component end form the abutment portion 16a at the component end. The abutment portion 16 at the environment end is formed by the maximum negative amplitudes which correspond to the bearing surfaces 16 and/or abutment portion 16, wherein the assembly arrangement 10 can be formed from a polymeric material, such as a plastic from the group containing PE, PP, PVC, PS, PMMA, etc. The constituent parts can be manufactured by injection molding, casting or the like. Metals can also be used in part, if for instance certain damping characteristics and/or spring characteristics are required. Injection molding the damping portion 17 from aluminum can also then be considered. Other materials, such as for example sheet steel, can also be considered, in particular for specific applications.
The cylindrically formed hollow space 22 is in particular revealed in
Discontinuities can of course also be provided, i.e. a step can be provided between the side 17a and the side 17b of the damping portion 17 in accordance with
This enables an axial spring rate to be set substantially by the shape of the damping portion 17, an at least approximately periodic function, while a radial spring rate can be provided by the geometry and thickness of the contact ring 30 and its pipe socket-like extension 32.
A diagram in accordance with
The larger working region which results in accordance with
It should also be stated in relation to the assembly arrangement in accordance with the invention that higher spring rates can be achieved for the bearing surfaces, i.e. the abutment portions 16, 16a, due to their larger areas, wherein the weight of a component to be assembled also needs to be taken into account. If the unit to be assembled is larger, the amplitude of the damping portion 17 also needs to be increased in order to increase the spring rate. This can also be accompanied by an increase in the bearing surface in the region of the amplitude.
The bearing surfaces can be formed in one piece with the damping portion 17 or can also be integrally molded from a different material, i.e. a polymeric material such as has already been described in the present disclosure can be used to form both component parts. Elastomers such as for example silicone or natural rubber can however also be used.
In this formula and/or equation, the height amplitude H corresponds to the contour profile of the damping portion 17. G≤150 represents the weight in kg of the entire decoupled system. N≥3 is the number of mounting positions of the system, i.e. in particular the number of bearing surfaces and/or abutment portions 16 and/or 16a, for example three or more on the side of the abutment portion 16a at the component end and three or more on the side of the abutment portion 16 at the environment end. The number N can also be different between the two abutment portions, wherein the given formula would then need to be correspondingly adapted. 30≤S≤70 is the average hardness in Sh(A) of all the elastomers in the mounting system. Also, 0.2≤a≤0.3, b=38.7±1, 0.2≤c≤0.5 and 1.1≤d≤1.5 are the mounting and system parameters. Deviations from the cited values are of course tolerable if they do not reduce the desired damping characteristic too significantly. A finite element method was used for development.
Although the invention has been shown and described with respect to one or more particular preferred embodiments, it is clear that equivalent amendments or modifications will occur to the person skilled in the art when reading and interpreting the text and enclosed drawing(s) of this specification. In particular with regard to the various functions performed by the elements (components, assemblies, devices, compositions, etc.) described above, the terms used to describe such elements (including any reference to a “means”) are intended, unless expressly indicated otherwise, to correspond to any element which performs the specified function of the element described, i.e. which is functionally equivalent to it, even if it is not structurally equivalent to the disclosed structure which performs the function in the example embodiment(s) illustrated here. Moreover, while a particular feature of the invention may have been described above with respect to only one or some of the embodiments illustrated, such a feature may also be combined with one or more other features of the other embodiments, in any way such as may be desirable or advantageous for any given application of the invention.
Number | Date | Country | Kind |
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102022128208.2 | Oct 2022 | DE | national |
Number | Date | Country | |
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20240133445 A1 | Apr 2024 | US |