FILTER DEVICE
20220258077 · 2022-08-18
Inventors
Cpc classification
B01D2201/0423
PERFORMING OPERATIONS; TRANSPORTING
B01D35/153
PERFORMING OPERATIONS; TRANSPORTING
B01D2201/4084
PERFORMING OPERATIONS; TRANSPORTING
B01D2201/305
PERFORMING OPERATIONS; TRANSPORTING
F02M37/42
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B01D35/0276
PERFORMING OPERATIONS; TRANSPORTING
F02M37/36
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01M11/03
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02M37/22
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B01D2201/309
PERFORMING OPERATIONS; TRANSPORTING
B01D29/232
PERFORMING OPERATIONS; TRANSPORTING
B01D2201/0446
PERFORMING OPERATIONS; TRANSPORTING
B01D2201/301
PERFORMING OPERATIONS; TRANSPORTING
F02M37/50
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B01D2201/4007
PERFORMING OPERATIONS; TRANSPORTING
B01D2201/295
PERFORMING OPERATIONS; TRANSPORTING
International classification
B01D29/60
PERFORMING OPERATIONS; TRANSPORTING
B01D29/23
PERFORMING OPERATIONS; TRANSPORTING
B01D35/027
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A filter device having a filter housing (14), consisting of a housing pot (12), which accommodates a replaceable filter element (16) and is closed by a removable lid part (32), wherein the element material (20) of the filter element (16) separates an unfiltrate chamber (22) from a filtrate chamber (18, 43), and having a measurement sensing device (108) for sensing pressure values from at least one of the chambers (18, 22, 43) is disclosed, which is characterized in that the measurement sensing device (108) is disposed on a lid inner side (45) of the lid part (32) and at least partially guided therein, projects into the filter housing (14) and in that at least parts of a measurement value evaluator (78) connected to the measurement sensing device (108) are disposed on the opposite lid outer side (42) facing the environment.
Claims
1. A filter device having a filter housing (14), consisting of a housing pot (12), which accommodates a replaceable filter element (16) and is closed by a removable lid part (32), wherein the element material (20) of the filter element (16) separates an unfiltrate chamber (22) from a filtrate chamber (18, 43), and having a measurement sensing device (108) for sensing pressure values from at least one of the chambers (18, 22, 43), characterized in that the measurement sensing device (108) is disposed on a lid inner side (45) of the lid part (32) and at least partially guided therein, projects into the filter housing (14), and in that at least parts of a measured value evaluator (78) connected to the measurement sensing device (108) are disposed on the opposite lid outer side (42) facing the environment.
2. The filter device according to claim 1, characterized in that the measurement sensing device (108) has a sensor channel (104) which is at least partially encompassed by a sensor tube (114), which, running coaxially with respect to the longitudinal axis of the filter element (16), connects one of the spaces (22) of the filter element (16) on the lid inner side (45) to a receiving space (80) on the lid outer side (42) in a fluid-conveying manner, wherein said receiving space (80) is part of the measured value evaluator (78).
3. The filter device according to claim 1 or 2, characterized in that the longitudinal axis of the receiving space (80) extends transverse to the longitudinal axis of the filter element (16) on the lid outer side (42) and is used for receiving a pressure sensor (82) or a connecting piece (84) for a pressure sensor (82) located outside of the receiving space (80); each as parts of the measured value evaluator (78).
4. The filter device according to claim 1, characterized in that the sensor tube (114) passes through a bypass valve (58) connecting the unfiltrate side (26) to the filtrate side (28) when the element material (20) of the filter element (16) is blocked, and whose valve spring (116) extends between the lid inner side (45) and a valve member (56), which, in the unblocked state, closes a frontal opening (52) of the filter element (16).
5. The filter device according to claim 1, characterized in that the respective parts of the measured value evaluator (78) used in the receiving space (80) are designed as screw-in cartridges.
6. The filter device according to claim 1, characterized in that the receiving space (80) has a channel section (100) in parallel to its longitudinal axis, into which the one free end of the sensor channel (104) opens and which establishes a permanent connection to an evaluation channel (118, 144) of the pressure sensor (82).
7. The filter device according to claim 1, characterized in that in the lid part (32) a further sensor channel (134) is guided, which is routed in a fluid-conveying manner to the outer side of the filter element (16) to one of the two chambers (18, 43) and which can be closed if necessary.
8. The filter device according to claim 1, characterized in that the lid-side end of the further sensor channel (134) opens out into the receiving space (80) in the lid part (32), into which the front end (146) of the pressure sensor (82) engages.
9. The filter device according to claim 1, characterized in that the pressure sensor (82) is a dynamic pressure sensor (140) or a differential pressure sensor (86).
10. The filter device according to claim 1, characterized in that the dynamic pressure sensor (140) exclusively measures the pressure values from the sensor channel (104) on the unfiltrate side (26) and the differential pressure sensor (86) measures the pressure values from both sensor channels (104, 134), in that the further sensor channel (134) is permanently connected to the filtrate side (28) in a fluid-conveying manner.
Description
[0016] The invention is explained in detail below with reference to exemplary embodiments shown in the drawing. In the Figures:
[0017]
[0018]
[0019]
[0020]
[0021] With reference to the attached drawings, the invention is explained based on examples of a so-called in-tank filter device. For installation in a fluid container or tank not shown in the figures, such devices have a mounting flange, by means of which they can be attached to a wall opening on the top wall of the corresponding tank such that an outflow pipe or housing pot extends vertically into the interior of the tank. The design and function of such an in-tank filter device is described in DE 10 2015 003 604 A1, which is known from the prior art.
[0022] In
[0023] At the top surface, the filter housing 14 is closed by a lid part 32, which in the variant shown in
[0024] In the exemplary embodiments of
[0025] The lid part 32, which in conjunction with the housing pot 12 forms the overall filter housing 14, has an, in particular slightly, convexly shaped outer surface 42 and co-delimits an interior space 43, the trough-shaped ceiling 44 of which has a convex curvature on the inner side of the lid 45 matching the curvature of the outer side. In
[0026] The upper end cap 24 of the filter element 16, which in the usual manner forms an enclosure for the upper end of the filter material 20 and the upper end of a support tube 50, that in the form of a grid-like support structure contacts the outer side of the filter material 20, has a central opening 52 on its planar top surface. At the bottom, the opening 52 is encompassed by a connector 54 protruding into the inner filter cavity 22 of the filter element 16. The rim of the central opening 52 forms the sealing seat for a closing body 56 of a bypass valve 58, wherein said closing body 56 closes the passage formed at the connector 54, between the inner filter cavity 22 and the inner cavity 43 co-delimited by the lid part 32. At its top surface, the end cap 24 has a locating device 60 that interacts with a holding device 62 of the lid part 32 for positionally holding the filter element 16 in the installed position, wherein the holding device 62 extends through the interior 43 of the lid part 32 away from the lid part 32. The locating device 60 has three locating bars 64 projecting upwards from the top side of the end cap 24, wherein said locating bars 64 being 120° offset from each other near the circumference of the top side, and two of the locating bars 64 are visible in
[0027] The exemplary embodiment of
[0028] The receiving space 80 is in the form of a channel having a longitudinal axis extending radially perpendicular to the longitudinal axis of the device, and having a closed end 90 radially offset from the longitudinal axis of the lid part 32 or the filter element 16, and an open end 92, through which the sensor housing 88 or the connecting piece 84 can be inserted into the receiving space 80. Near the closed end 90 of the channel, the receiving space 80 has a female threaded section 94 into which the male threaded section 96 of the sensor housing 88 or the connecting piece 84 can be screwed, wherein a sealing ring 98 seals the sensor housing 88 or the connecting piece 84 from the receiving space 80. To the female threaded section 94 of the receiving space 80 a connecting channel section 100 adjoins, in which the pressure value of the unfiltrate pressure is transmitted to the sensor 32. To form the corresponding fluid connection through the connecting channel section 100, the receiving space 80 has a wall recess that forms a transverse channel 102 extending along the inner wall of the receiving space 80.
[0029] For the transmission of pressure values to the connecting channel section 100, a sensor channel 104 opens out into the transverse channel 102, wherein said sensor channel 104, starting from a drilled hole 106 centrally located in the lid part 32, as part of a measurement sensing device 108, extends coaxially to the longitudinal axis of the device and passes through the valve member 56 of the bypass valve 58 and is in that way directly connected to the cavity 22 of the filter element 16 containing unfiltered matter. Starting from the drilled hole 106, the sensor channel 104 is formed by a sensor tube 114, also as part of the measurement sensing device 108, in the form of a guide sleeve, on which the valve member 56 of the bypass valve 58 is guided in an axially movable manner. The valve member 56 in the form of the plate-shaped closing body is pre-loaded into the closed position sealing at the rim of the opening 52 of the end cap 24, by a valve spring in the form of a compression spring 116 encompassing the sensor tube 114, such that an front opening of the filter element 16 is closed in the unblocked state of the filter element 16. The compression spring 116, in particular a helical compression spring, is clamped between the valve member 56 and the ceiling 44 of the lid part 32. When the element material 20 of the filter element 16 is blocked, the valve member 56 is lifted against the spring force of the compression spring 116 from the valve seat, namely from the rim of the opening 52 of the upper end cap 24, by the fluid pressure on the unfiltrate side 26, whereby the bypass valve 58 connects the unfiltrate side 26 to the filtrate side 28.
[0030] In the exemplary embodiment of
[0031] The exemplary embodiment of
[0032] The exemplary embodiment of