FILTER ASSEMBLY
20200277973 · 2020-09-03
Inventors
Cpc classification
G01N1/2035
PHYSICS
F15B21/041
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F15B21/041
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A filter assembly, in particular used as a portable service unit for hydraulic applications, at least consisting of a motor-pump unit (8), one outlet (14) of which is connected to a filter element (18) in the main flow and the other outlet (26) of which is connected to a device for measuring particles in the fluid in the bypass flow having a particle sensor (36), wherein as a component of the device for measuring particles there is a fluid line (38) of predeterminable length as a stilling section on the inflow side of the particle sensor (36) in such a way that gases carried along in the fluid re-dissolve in the fluid, is characterized in that the fluid line (38) of predeterminable length is accommodated in a housing part (52) of the assembly, combined to form at least one winding.
Claims
1. A filter assembly, in particular used as a portable service unit for hydraulic applications, at least consisting of a motor-pump unit (8), one outlet (14) of which is connected to a filter element (18) in the main flow and the other outlet (26) of which is connected to a device for measuring particles in the fluid in the bypass flow having a particle sensor (36), wherein as a component of the device for measuring particles there is a fluid line (38) of predeterminable length as a stilling section on the inflow side of the particle sensor (36) in such a way that gases carried along in the fluid re-dissolve in the fluid, characterized in that the fluid line (38) of predeterminable length is accommodated in a housing part (52) of the assembly, combined to form at least one winding.
2. The filter assembly according to claim 1, characterized in that the respective winding is formed by a helix (38) inside the housing part (52).
3. The filter assembly according to claim 1, characterized in that there are two helices (38) in the housing part (52), which are separated from a housing wall (46) in a sealing manner except for a common fluid connection point (78), wherein the flow is routed through both helices (38) in sequence.
4. The filter assembly according to claim 1, characterized in that in the housing part (52), one helix (38) faces the particle sensor (36) and the other is facing away from it, and that the particle sensor (36) is mounted on the housing part (52).
5. The filter assembly according to claim 1, characterized in that the helix (38) facing away from the particle sensor (36) is routed from the outside to the inside to one end (74) of the helix (38), wherein at a point of passage (76) in the sealing housing wall (46) this end merges into one end of the other helix (38) facing the particle sensor (36), which, the flow therethrough being routed from the inside to the outside, passes the fluid from the stilling section (32) to the particle sensor (36).
6. The filter assembly according to claim 1, characterized in that a further filter element (34) is installed between the output of the stilling section (32) and the input of the particle sensor (36).
7. The filter assembly according to claim 1, characterized in that a counterbalance valve (40) is installed downstream of the particle sensor (36) for pressurizing the stilling section (32).
8. The filter assembly according to claim 1, characterized in that the motor-pump unit (8) has two hydraulic pumps (10, 12), which safeguard the fluid supply in the main flow and in the bypass flow.
9. The filter assembly according to claim 1, characterized in that a pressure relief valve (30) is installed in a secondary branch downstream of the outlet of the bypass hydraulic pump (12).
10. The filter assembly according to claim 1, characterized in that the outlet (14) of the main-flow hydraulic pump (10) is protected by a counterbalance valve (24) in the bypass.
11. The filter assembly according to claim 1, characterized in that, viewed in the direction of the fluid flow, a fluid connection (44) downstream of the filter element (18) located in the main flow (16), the fluid connection (44) preferably provided with a throttle or orifice (42), is routed to the inlet side (6) of the main hydraulic pump (10), serving as a dry-run protection.
12. The filter assembly according to claim 1, characterized in that the main-flow (10) and the bypass hydraulic pump (12) are implemented using a single vane pump.
Description
[0018] In the Figures:
[0019]
[0020]
[0021]
[0022] In
[0023] It has a main flow hydraulic pump 10 and a bypass hydraulic pump 12, each formed by a vane pump. This example is a dual pump of a known type consisting of fixed displacement pumps driven by an electric motor and having a joint shaft, each having different delivery volumes per revolution. Such pumps are commercially available under the name PVF101 (see the applicant's pump product overview D2.902.5/11.14). A main flow line 16 connected to the outlet 14 of the main flow pump 10 is routed to the assembly outlet connection 20 via a filter element 18 forming a particle filter. A pressure gauge 22 as a contamination indicator is connected to the main flow line 16 upstream of the inlet of the filter element 18. Furthermore, the main flow line 16 is protected towards the inlet side 6 by a spring-loaded non-return valve 24 acting as a pressure relief valve. A bypass line 28 is connected to the outlet 26 of the bypass pump 12, which, like the main flow line 16, is protected against overpressure towards the inlet side 6, wherein a pressure relief valve 30 is provided for the bypass line 28, which limits the pressure of the bypass line 28 to a range of approx. 3 bar. Via a stilling section 32 and a second filter element 34, the bypass line 28 is routed to the particle sensor in the form of a particle counter 36, which operates based on the opacity principle. The stilling section 32 is formed by two line helices 38, as explained in more detail below with reference to
[0024] In
[0025] The stilling section 32 is formed by two helices 38, of which the one helix 38 visible in
[0026] During operation, the flow is routed through the two helices 38 in sequence. The flow path runs from the outer end of the helix 38 located in the cover part 52, marked 72 in
[0027] The outlet 14 of the lower vane pump 10 forming the main flow pump is routed to the housing 60 of the filter element 18, whose clean-side outlet is routed to the outlet connection 20 via a fluid guide forming the main flow line 16 in the cover part 52. As shown, the filter housing 60 forms a type of cartridge filter of the bolted type. The protective line designated by 44 in