The disclosure relates to an Oldham coupling, for example, for compensating an axial offset between two parallel shafts.
DE 10 2007 049 072 A1 discloses an Oldham coupling in which the central disk, also referred to as an Oldham disk, is composed of plastic. This may be advantageous for reasons connected with weight and for improving the mass moment of inertia.
In general, plastic has a low hardness, and therefore plastic generally wears more quickly than metal. The term “wear” is understood to mean a loss of mass from a surface of a material owing to scraping, rolling, impacting, chemical and thermal stresses and typically represents an unwanted change in the surface. Wear occurs in interaction between at least two components and is dependent on the material, shape and surface thereof.
One object of the present disclosure is to develop an Oldham coupling in such a way that the wear on the central disk is minimized.
To achieve this object, several embodiments of the Oldham coupling are disclosed.
In principle, an Oldham coupling has two outer rotatable parts, which may be referred to as connecting disks. However, the rotatable parts can be embodied in any way and do not necessarily have to be designed as disks. The Oldham coupling comprises two outer connecting disks having axes of rotation extending parallel and a central connecting disk. One of the two outer connecting disks may be coupled to the central connecting disk by means of a plurality of connecting elements, such as bolts or pins, wherein each of the connecting elements is movably guided in the central connecting disk in a through-bore. The disclosed Oldham coupling may include a sleeve arranged in each of the through-bores as a wear insert. Accordingly, the inserted sleeve may counteract the wear of the central connecting disk. The through-bores may be designed as slotted holes. The term slotted hole may be used to denote an elongate bore, the narrow sides of which are closed by two identical semicircles, wherein the diameter of the semicircles corresponds to the width of the slotted hole, and the long sides of which extend parallel to one another.
The sleeve may have a through-slot. This may allow the sleeve to be produced from strip material.
The sleeve may have a spacer or a flange at one end. The spacer and the flange may be provided to ensure that, when a pin is used as a connecting element, the head of the pin does not rest directly on the central connecting disk and hence no wear can occur on the face of the central connecting disk. Moreover, the flange may form a stop, thereby making the assembly and exact positioning of the sleeve easier.
The sleeve may have a greater hardness than the material used for the central connecting disk. The sleeve may be composed of metal. The central connecting disk may be composed of plastic or of steel.
The sleeve may be pressed or fitted into the through-bore of the central connecting disk. However, it is quite possible for the sleeve to be secured by adhesive bonding in the central connecting disk. Thus, non-positive and/or positive connections between the central connecting disk and the sleeve are conceivable. Another possibility is to design the connection between the sleeve and the central connecting disk as a clearance fit, likewise giving rise to a secure connection by virtue of the different heat expansion coefficients.
Further details, features, combinations of features and effects based on the disclosure will become apparent from the following description of preferred illustrative embodiments of the disclosure and from the drawings, in which:
The central connecting disk 1 of the Oldham coupling 2 has two slotted through-holes 4 and two recesses 18. The slotted holes 4 and the recesses 18 may be arranged alternately at an angle of 90° in each case in the circumferential direction. The recesses 18 may be provided for the purpose of receiving one of the two outer connecting disks, which may also referred to as a driving element. The term “slotted holes” 4 may be understood to mean elongate bores, having a rectangular shape 5 of which ends with semicircles 6 on two opposite sides. The diameter D of the semicircles 6 may correspond to the width B of the slotted hole 4. A sleeve 3 may be fitted into each slotted hole 4. The sleeves 3 may have a slotted-hole contour 7 that is the same or similar to the slotted hole 4. In
1 central connecting disk
2 Oldham coupling
3 sleeve
4 slotted hole
5 rectangle
6 semicircle
7 slotted-hole contour
8 outer connecting disk
9 rolling element race
10 through-bore
11 pin
12 pinhead
13 spacer
14 raised portion
15 short parallel side of the trapezoidal raised portion
16 slot
17 flange
18 recess
D diameter of the semicircle
B width of the slotted hole
L length of the rectangle of the slotted-hole contour
Number | Date | Country | Kind |
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10 2015 206 411.5 | Apr 2015 | DE | national |
This application is the U.S. National Phase of PCT Appin. No. PCT/DE2016/200161 filed Mar. 24, 2016, which claims priority to DE 102015206411.5 filed Apr. 10, 2015, the entire disclosures of which are incorporated by reference herein.
Filing Document | Filing Date | Country | Kind |
---|---|---|---|
PCT/DE2016/200161 | 3/24/2016 | WO | 00 |