DISPLACEMENT METERING PUMP AND USE OF THE DISPLACEMENT METERING PUMP
20210246888 · 2021-08-12
Inventors
Cpc classification
F04B15/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B13/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F04B15/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
A21C9/06
HUMAN NECESSITIES
Abstract
In a displacement metering pump, comprising a cylinder housing, which has a product inlet and a product outlet and in which a sealed displacement piston can be moved back and forth, wherein the cylinder housing, with a piston rod seal fixedly installed therein for the displacement piston forming a piston rod and with the placement of the product inlet and the product outlet, has no dead space and is self-emptying, i.e. can be flawlessly cleaned with respect to CIP hygiene.
Claims
1. A displacement metering pump, for a discontinuous volumetric metering of liquid to pasty products that are partially loaded with solid matter, comprising a cylinder housing, which has a product inlet and a product outlet, is installed in an essentially vertical operating position, and in which a sealed displacement piston can be moved back and forth, wherein the cylinder housing, with a piston rod seal fixedly installed therein for the displacement piston formed as a piston rod and with selected placements of the product inlet and the product outlet, has no dead space and is self-emptying.
2. The displacement metering pump according to claim 1, wherein in the operating position, the product inlet is placed at the top and the product outlet at the bottom of the cylinder housing, such that at least the cylinder housing and the displacement piston immersing into the cylinder housing from above can be flawlessly cleaned with respect to CIP hygiene via the product inlet and the product outlet.
3. The displacement metering pump according to claim 1, wherein the product inlet is arranged laterally at an upper end of the cylinder housing directly adjacent to the piston rod seal, and that the product outlet forms a lower end of the cylinder housing.
4. The displacement metering pump according to claim 3, wherein a cylinder axis of the cylinder housing is inclined with respect to a vertical line in the operating position, such that a highest point of the product inlet is essentially in or at the highest point of the interior of the cylinder housing.
5. The displacement metering pump according to claim 1, wherein the cylinder housing is divided, by a sealed flange joint, into a head part comprising the piston rod seal and the product inlet, and a coaxial bottom part with a cylinder section and a terminal outlet funnel opening into the product outlet.
6. The displacement metering pump according to claim 1, wherein a diameter of the displacement piston is smaller than an internal diameter of the cylinder housing, at least in the head part of the cylinder housing.
7. The displacement metering pump according to at least one of the preceding claim 1, wherein the piston rod seal is a slide bush fixed in a seat in the head part of the cylinder housing, and wherein a cylindrical displacement piston projects, in its upper stroke stop position, with its lower end slightly beyond the piston rod seal into an interior of the cylinder housing, or is flush with the piston rod seal.
8. The displacement metering pump according to claim 5, wherein the bottom part is longer than the head part.
9. The displacement metering pump according to claim 5, wherein the internal diameter of the head part gradually decreases in a region of the opening of the product inlet towards the piston rod seal, intersected with the opening of the product inlet, that a rounded swelling is provided adjacent to the seat of the piston rod seal in an intersection of the product inlet with the shoulder (24), and that in the operating position of the cylinder housing, an inner end of the piston rod seal is approximately at the level of or slightly below the contour of the swelling.
10. The displacement metering pump according to claim 1, wherein the product inlet attached to the head part, which is integrally formed, is a connecting pipe having a starting part which is approximately vertical in the operating position, with a connecting flange (10) for an inlet valve, and an end part angled with respect to the starting part, wherein the axis of the end part opening into the head part from above, forms an acute angle (β) with the cylinder axis.
11. The displacement metering pump according to claim 5, wherein the product outlet leads to an outlet valve.
12. The displacement metering pump according to claim 5, wherein a seal installed in the flange joint is approximately flush with the internal diameter of the cylinder housing.
13. Use of the displacement metering pump according to at least one of the preceding claim 2 for hot metering or cold metering.
14. The displacement metering pump according to claim 10, wherein the acute angle is about 45°.
Description
[0017] With reference to the drawing, one embodiment of the subject matter of the invention will be illustrated. In the drawing:
[0018]
[0019]
[0020] A displacement metering pump P, shown in each of
[0021] The displacement metering pump P includes, as main components, a tubular cylinder housing 1 as well as a displacement piston K movable within the cylinder housing 1 in the direction of the double arrow 2. The displacement piston K is embodied in its operating area as a circular cylinder and like a piston rod whose end 4 located within the cylinder housing 1 may be planar and essentially perpendicular to the cylinder axis X. The cylinder housing 1 is divided into a head part 1a and a bottom part 1b via a flange joint 8 having a seal 9, here e. g. the bottom part 1b being longer than the head part 1a. In the head part 1a, a piston rod seal 5 is fixedly installed, and a product inlet 6 opens laterally and directly adjacent to the piston rod seal 5 into the head part 1a. The bottom part 1b comprises a cylinder section 26 adjacent to the flange joint 8 which is followed by an outlet funnel 27 towards the lower end of the bottom part 1b leading to an outlet valve 14. Adjacent to the piston rod seal 5, a rounded swelling 25 is provided at the side of the head part 1a at the product inlet 6. The product inlet 6 comprises a flange 10 for connecting an inlet valve 13 which is installed, for example, in an at least essentially vertical position. The angle α at which the cylinder housing 1 is inclined with respect to the vertical line may be about 30°. This angle α is not to be interpreted as limiting, but may also be larger or smaller than 30°.
[0022]
[0023] The piston rod seal 5 is e.g. a slide bush that is fixedly installed in a fold-like inner seat 18 of the head part 1a, wherein the seat 18 may comprise a shoulder 21 for positioning the piston rod seal 5. In the interior 23 of the head part 1a, the internal diameter d of the head part 1a decreases towards the piston rod seal 5 across a rounded shoulder 24 that passes over into the shoulder 21. On the right side, where the product inlet 6 opens into the head part 1, a rounded swelling 25 is locally provided where the opening 12 of the product inlet 6 is intersected with the head part 1a at its highest point. The product inlet 6 is suitably integrally formed at the head part 1a and has the shape of a connecting pipe with an approximately vertical starting part 28 with the flange 10 (the vertical line is indicated by a dash-dot line Y), and an end part 29 that is angled with respect to the starting part 28 and includes an angle β with the cylinder axis X which may be, in the shown embodiment, about 45° without being limited thereto. The swelling 25 is arranged such that the end 22 of the piston rod seal 5 located there (internal diameter di) is at least approximately located at the level of the lowest point of the contour of the swelling 25. The displacement piston K is, for example, driven by a tappet 17 screwed thereto.
[0024] The seal 9 in the flange joint 8 can be placed, as shown, (CIP cleanably) as close as possible to the internal diameter d or be flush therewith, or even project since the diameter DK of the displacement piston K is smaller than the diameter d in the head part 1a and the cylinder housing 1, such that the displacement piston K may easily traverse the flange joint 8.
[0025] If, for example, after a predetermined period of use of the displacement metering pump P or for a product change, a cleaning cycle has to be performed (CIP cleaning), the cleaning medium is conveyed under pressure from the product inlet 6 down to and through the product outlet 7. All surfaces in the displacement metering pump P contacted by the product may be hygienically flawlessly cleaned corresponding to the strict stipulations for food machines since the displacement metering pump P has no dead space and is self-emptying. Everything will drain with the cleaning medium in a clean manner and without any residues.
[0026] An essential advantage of this concept of the displacement metering pump is, from the user's point of view, that it may not only be used for hot metering, but surprisingly also for cold metering.
[0027] Metering accuracy remains high since there are no dead spaces retaining an air cushion.