ECCENTRIC SCREW PUMP
20250012276 · 2025-01-09
Inventors
- Philipp Nübl (Gras Bahnhof, DE)
- Dominik Sinseder (Dorfen, DE)
- Michael Mittermaier (Unterreit, DE)
- Daniel Bürger (Dorfen, DE)
- Stefan Weigl (Mühldrof, DE)
Cpc classification
F04C15/0065
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04C2/1073
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04C15/0061
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04C2240/80
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F04C15/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
Eccentric screw pump with a rotor of a drive shaft circulating essentially about a fixed axis in relation to the stator in a bearing block, a power train and a screw conveyor, which revolves in a rotating-oscillating manner in a screw flight of the stator, wherein the power train provides the screw conveyor with its drive torque and the power train adjusts the differences of the motion sequences of the screw conveyor and of the drive shaft, wherein the power train consists essentially of a one-piece rotational body, which has multiple weakening recesses, which interrupt its outer circumferential jacket surface more than only insignificantly and which provide it with that reversible elasticity, which it requires in order to rotate about an axis of rotation, which curves in a periodically recurring manner at least in sections.
Claims
1. An eccentric screw pump with a rotor of a drive shaft circulating essentially about a fixed axis in relation to the stator in a bearing block, a power train and a screw conveyor, which revolves in a rotating-oscillating manner in a screw flight of the stator, wherein the power train provides the screw conveyor with its drive torque and the power train adjusts the differences of the motion sequences of the screw conveyor and of the drive shaft, characterized in that the power train consists essentially of a one-piece rotational body, which has multiple weakening recesses, which interrupt its outer circumferential jacket surface more than only insignificantly and which provide it with that reversible elasticity, which it requires in order to rotate about an axis of rotation, which curves in a periodically recurring manner at least in sections.
2. The eccentric screw pump according to claim 1, characterized in that the rotational body forming the power train consists essentially of a polymer materialpreferably molded in one pieceand ideally polyamide or of a metal materialpreferably molded in one piece.
3. The eccentric screw pump according to claim 1, characterized in that the power train on average has a structure of particles, which are merged with one another not completely seamlessly.
4. The eccentric screw pump according to claim 1, characterized in that the rotational body forming the power train consists of several disks, directly adjacent disks of which are connected to one another via a strip, which is elastic in such a way that adjacent disks can carry out a rocking movement in relation to one another about the strip during each circulation, wherein directly adjacent strips are arranged in positions rotated in relation to one another.
5. The eccentric screw pump according to claim 1, characterized in that, on its side facing away from the screw conveyor, the rotational body forming the power train has a connecting member, which can be connected in a rotationally fixed manner to a positive locking member of the drive shaft.
6. The eccentric screw pump according to claim 1, characterized in that, on its side facing the screw conveyor, the rotational body forming the power train has an opening or a tubular appendage, which is of such a nature that the end of the screw conveyor can be held firmly therein in a positively locking-rotationally fixed manner due to its screw shape.
7. The eccentric screw pump according to claim 6, characterized in that on the side facing the screw conveyor, the opening or the tubular appendage has at least one threaded bore, preferably for receiving a grub screw.
8. A power train of an eccentric screw pump, characterized in that the power train consists essentially of a one-piece rotational body, which has multiple weakening recesses, which interrupt its outer circumferential jacket surface more than only insignificantly, and which provide it with that reversible elasticity, which it requires in order to rotate about an axis of rotation, which curves in a periodically recurring manner at least in sections.
9. The power train according to claim 8, characterized in that the rotational body forming the power train consists essentially of a polymer materialpreferably molded in one pieceand ideally polyamide or of a metal materialpreferably molded in one piece.
10. A use of a plastic or metal material preferably molded of the powdery phase as power train by means of 3D printing for the torque-transmitting connection of two components, which carry out rotational movements about different axes.
11. The eccentric screw pump according to claim 2, characterized in that the rotational body forming the power train consists of several disks, directly adjacent disks of which are connected to one another via a strip, which is elastic in such a way that adjacent disks can carry out a rocking movement in relation to one another about the strip during each circulation, wherein directly adjacent strips are arranged in positions rotated in relation to one another.
12. The eccentric screw pump according to claim 2, characterized in that, on its side facing away from the screw conveyor, the rotational body forming the power train has a connecting member, which can be connected in a rotationally fixed manner to a positive locking member of the drive shaft.
13. The eccentric screw pump according to claim 2, characterized in that, on its side facing the screw conveyor, the rotational body forming the power train has an opening or a tubular appendage, which is of such a nature that the end of the screw conveyor can be held firmly therein in a positively locking-rotationally fixed manner due to its screw shape.
Description
BRIEF DESCRIPTION OF DRAWINGS
[0027]
[0028]
[0029]
[0030]
[0031]
[0032]
DETAILED DESCRIPTION
[0033]
[0034] A first exemplary embodiment of this power train 3 is shown in more detail in Figures
[0035] It is preferred that the outermost disk, thus that one of the disks 8, which lies closest to the drive shaft 2, and/or that one of the disks 8, which lies closest to the screw conveyor 4, in each case has a shape, which deviates from the other disks 8. These outermost disks 8 are preferably thicker than the other disks 8.
[0036] The connecting member 10, which can be connected to a positive locking member of the drive shaft 2 in a rotationally fixed manner, is preferably located directly adjacent to the outermost disk 8, which lies closest to the drive shaft 2.
[0037] An opening oras in the shown exemplary embodimenta tubular appendage 11, as can be seen well in
[0038]
[0039]
[0040]
[0041]