Filter cartridge, filter device, and methods

The integration of helical strands and centering surfaces on the cartridge support addresses alignment and flow issues in filter cartridges, enhancing fluid distribution and filtration efficiency by maintaining central positioning and minimizing membrane masking.

JP2025172773APending Publication Date: 2025-11-26ENTEGRIS INC
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Patent Information

Application Number
JP2025135120
Authority / Receiving Office
JP · JP
Patent Type
Applications
Current Assignee / Owner
Priority Date
2021-04-30
Filing Date
2025-08-14
Publication Date
2025-11-26

AI Technical Summary

Technical Problem

Existing filter cartridge designs face challenges in maximizing flow rate and centering within filter housings, leading to issues such as slow or dead flow points and misalignment, which affect fluid distribution and filtration efficiency.

Method used

Incorporation of helical strands and centering surfaces on the cartridge support to maintain the filter cartridge's position within the housing, minimizing membrane masking and enhancing fluid flow by aligning the central longitudinal axes of the cartridge and housing.

Benefits of technology

The solution improves fluid flow distribution and maintains the filter cartridge's central position, reducing masking and enhancing filtration efficiency by ensuring uniform fluid flow across the filtration membrane.

✦ Generated by Eureka AI based on patent content.

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Abstract

To provide a filter cartridge useful for improving flow and capable of being positioned at the center of a filter housing, a filter device and related methods.SOLUTION: A filter cartridge includes: a filtration membrane; a cartridge support having helical strands; a distal end and a proximal end of the cartridge. The cartridge support extends between the distal end and the proximal end of the filter cartridge. The filtration membrane is received and held by the cartridge support, which is adapted to receive and support the filtration membrane. The helical strand includes: a length extending along the helical path of the helical strand; a radial thickness; a width perpendicular to the length and the thickness; and a width-to-thickness ratio in the range of 1:3 to 3:1. The helical strand has a variable thickness extending in the radial direction between an outer surface and an inner surface, and the thickness of the helical strand varies along the length of the helical strand.SELECTED DRAWING: Figure 4
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Description

[Technical Field]

[0001] FIELD OF THE DISCLOSURE The present disclosure relates to filter cartridges, filter apparatus, and related methods that involve a filter cartridge that includes a cartridge support that includes a centering surface, a helical strand, or both. [Background technology]

[0002] Liquid and gas filtration systems enable the preparation and control of purified fluid flows. These systems have a wide range of applications, including use in chemical processing and manufacturing, for example, pharmaceuticals, food processing and packaging, industrial and commercial chemicals and chemical products, and processing fluids used in semiconductor and microelectronic device manufacturing. In the case of semiconductor and microelectronic device processing, liquid filtration systems are used to filter liquids used to manufacture solar panels, flat panel displays, microprocessors, memory products, hard disk drive components, and other semiconductor and microelectronic devices. Liquids can be used in processes such as photolithography, bulk chemical delivery, chemical mechanical polishing (CMP), wet etching, or cleaning, among other types of processes.

[0003] Various designs of filter assemblies used to prepare (filter) liquids include a filter housing defining a cylindrical interior containing a filtration membrane that removes impurities from the liquid passing through the membrane. During use, the liquid is flowed through the interior in a flow path that includes flow through the filtration membrane. The filtration membrane may be a component of a replaceable filter cartridge that can be removed from the housing and cleaned or replaced after a period of use. In other products, the filtration membrane is a component of a disposable filter cartridge.

[0004] One typical installation configuration for this type of filter device is a system that includes a replaceable filter cartridge housed for use within a two-piece housing. The housing includes a housing manifold coupled to a removable "bowl" that houses the replaceable cartridge. The manifold is coupled to an input conduit and an output conduit. The input conduit is coupled to the manifold inlet, which directs the incoming flow of unfiltered liquid into the housing. The output conduit is coupled to the manifold outlet for receiving the flow of fluid (i.e., "filtrate") that exits the assembly through the manifold output after passing through the filtration membrane. During use, fluid enters the input through the filter housed within the bowl and then exits the filter housing through the outlet. After a certain amount of use, the bowl can be separated from the manifold, and the filter can be removed and replaced with a new filter or a previously used filter that has been treated with a cleaning process.

[0005]

[0004] A different exemplary mounting configuration comprises a disposable filter assembly including a non-replaceable filter cartridge housed within a disposable filter housing. The housing has an inlet at one end and an outlet at the opposite end of the housing. An input conduit is coupled to the inlet and an output conduit is coupled to the outlet. Fluid flows into the inlet, passes through the assembly, including through a filtration membrane, and then exits the disposable housing through the outlet.

[0006] In these filter systems, the design of the filter cartridge must maximize flow rate. This can be achieved by centering the filter cartridge within the filter housing during use, substantially aligning the central longitudinal axis of the filter cartridge (and associated filtration membrane) with the central longitudinal axis of the filter housing (e.g., a two-piece manifold and bowl housing, or a disposable cylindrical housing), and / or by designing the shape of the cartridge support to minimize masking of the filtration membrane. In some embodiments, the cartridge location should be central (i.e., centered) within the filter housing, with the outer surface of the filtration membrane appropriately spaced from the interior surface of the housing to allow for a designed fluid level between the membrane and the interior surface of the filter housing. For example, fluid flow should be uniform throughout this space at all locations around the filter cartridge and filtration membrane. In some embodiments, the shape of the cartridge support minimizes masking (the surface area of ​​the membrane covered by the cartridge support), thereby improving flow distribution to avoid slow or dead flow points within the filter cartridge.

[0007] Various structures and techniques have been used to center a filter cartridge within a filter housing. Exemplary structures have involved associated structure located on the end of the filter cartridge, such as a surface designed to engage an opposing surface of a manifold or an adjacent surface of a cylindrical housing. These structures generally engage the housing at one or both ends of the filter cartridge, thereby maintaining the position of the filter cartridge relative to the interior surface of the housing. However, continued design improvements are needed to improve both centering and flow. Summary of the Invention

[0008] New filter cartridge constructions are described that include helical strands that may be useful for reducing masking and improving flow, centering surfaces at the periphery of the cartridge that may be useful for centering the filter cartridge within the interior volume of the filter housing, or cartridge supports that have both helical strands and centering surfaces.

[0009] The cartridge supports herein may include centering surfaces that may be useful for influencing and maintaining the position of the filter cartridge and associated filtration membrane within the interior volume of the bowl of the filter housing, including maintaining the position of the filter cartridge in a central position relative to the interior surface of the bowl that surrounds the filtration membrane of the filter cartridge. These centering surfaces may be located on the outer (peripheral) surface of the cartridge support in a region of greatest (outermost) radial distance from the longitudinal axis of the cartridge to the surface of the cartridge outer support.

[0010] The centering surface may be formed at a peripheral location of the cartridge support. In some embodiments, the cartridge support may be an outer cartridge support disposed between the filter housing and the membrane. In other embodiments, the cartridge support may be an inner cartridge support (or core) around which the membrane is disposed. The centering surface may be any size and shape, but generally has a small surface area relative to the area of ​​the filtration membrane so that the centering surface does not impede fluid flow through the filtration membrane.

[0011] In certain non-limiting examples, the centering surface may be formed as part of the cartridge support by adjusting the thickness of the cartridge support along its length or by adjusting the width of the cartridge support along its length. Examples of structures that include a centering surface include longitudinal structures (strands, rods, which may be helical or non-helical) that have a thickness that varies along the length of the structure. Other examples include three-dimensional elongated structures on the outer surface of the cartridge support, with exemplary structures including three-dimensional bumps, ridges, pyramids, or other protrusions that include an outermost surface that functions as a centering surface.

[0012] The cartridge support including the centering surface can provide good fluid flow, e.g., liquid fluid, through the housing space on the housing side of the filter cartridge. The support structure, which can include longitudinal structures such as rods or spiral strands, can be used to form a cartridge support that exhibits low membrane coverage or masking, e.g., a large open space through which fluid can flow.

[0013] In one aspect, the present disclosure relates to a filter cartridge. The filter cartridge includes a cartridge distal end and a cartridge proximal end, and a cartridge support extending between the cartridge distal end and the cartridge proximal end and including a helical strand. The helical strand has a length extending along the helical path of the helical strand, a radial thickness, and a width perpendicular to the length and thickness, with the thickness varying along the length. In another aspect, the present disclosure relates to a filter cartridge. The filter cartridge includes a cartridge distal end and a cartridge proximal end, and a cartridge outer support extending between the cartridge distal end and the cartridge proximal end and including a helical strand. The helical strand has a length extending along the helical path of the helical strand, a radial thickness, and a width perpendicular to the length and thickness. The helical strand has a width-to-thickness ratio ranging from 1:3 to 3:1.

[0014] In another aspect, the present disclosure relates to a filtering apparatus including a filter housing having a cylindrical interior defined by a cylindrical sidewall and a filter cartridge disposed within the cylindrical interior, the filter cartridge including a cartridge distal end, a cartridge proximal end, and a cylindrical cartridge support extending between the cartridge distal end and the cartridge proximal end, the cartridge outer support having a surface located no more than 6 millimeters from the cylindrical sidewall. [Brief explanation of the drawings]

[0015] [Figure 1A-C] 1A-C show perspective (A), top (B) and close-up (C) views of an exemplary cartridge support and centering surface. [Figure 2A] 1 illustrates an exemplary cartridge support. [Figure 2B-D] 1 illustrates an exemplary cartridge support and method herein. [Figure 3A] 1 is a schematic diagram of a filter device and filter cartridge as described. [Figure 3B] 1 is a schematic diagram of a filter device and filter cartridge as described. [Figure 4] FIG. 2 is a side view of a cartridge support of the present specification. [Figure 5] FIG. 2 is a side view of a cartridge support of the present specification. [Figure 6] FIG. 2 is a side view of a cartridge support of the present specification. DETAILED DESCRIPTION OF THE INVENTION

[0016] The drawings are schematic and are not necessarily drawn to scale.

[0017] The following description relates to novel and inventive filter cartridges, filter devices including filter cartridges, and methods of making and using the filter cartridges and filter devices. The filter cartridge includes a cartridge support. In certain examples, the filter cartridge of the present invention includes a surface, referred to as a "centering surface," located on an outer region of the cartridge support to maintain the position of the filter cartridge in a centered location relative to the interior volume of the filter housing. In other examples, the cartridge support includes a helical strand.

[0018] The described filter device is of the type that includes a housing (sometimes referred to as a "filter housing") that contains a filter cartridge, the filter cartridge containing a filtration membrane inside the housing. The housing also includes an inlet and an outlet, and is designed so that fluid flow entering the inlet flows through the membrane and then exits the housing through the outlet.

[0019] One example of a useful filter device includes a cylindrical housing with a cylindrical interior, an inlet at one end, and an outlet at the other (opposite) end. This type of device is often disposable, designed for a period of use to filter fluids, and is not designed for regeneration or replacement of the filter cartridge or filtration membrane within the housing. The ends of the device are typically not removable, and the filter cartridge is not otherwise removable or replaceable from within the housing. The housing may include a cylindrical, hollow "sleeve" portion with an interior space that accommodates the filter cartridge. The housing also includes two ends, one at each end of the sleeve, each of which closes one of the two ends of the sleeve. The housing includes an inlet at one end and an outlet at the opposite end, designed so that fluid flow entering the inlet flows through the membrane and then exits the housing through the outlet.

[0020] One example of a different type of filter device includes a housing that can be opened and closed to allow a filter cartridge to be removed and replaced after a period of use. A specific design can include a two-part structure including a "manifold" and a "bowl," where the manifold and bowl are separate structures that can be assembled together to accommodate a filter cartridge. The bowl has an open end and a distal end opposite the open end. The sidewall includes an interior sidewall surface that extends from the open end to the distal end and defines an interior volume extending between the open end and the distal end. The "open" end refers to the end that includes an opening through which a filter cartridge can pass when the bowl is separated from the manifold, allowing the filter cartridge to be placed or removed therefrom.

[0021] The distal end is substantially closed, but may optionally include one or more optional ventilation passages therethrough, allowing the distal end to be selectively open, for example, to the exterior.

[0022] The filter housing also includes a manifold that faces and engages the open end of the bowl to form a fluid-tight seal between the open end of the bowl and the manifold. The engagement can include threads, gaskets, clamps, or any other mechanical fastening device that provides a fluid-tight seal between the manifold and the open end of the bowl, which seal is referred to herein as a "manifold-bowl seal."

[0023] When the manifold engages with the open end of the bowl while the bowl houses the filter cartridge, it covers the open end of the bowl, blocking and closing the opening and enclosing the interior of the bowl. The bowl communicates with the exterior space through openings or passages in the manifold in the form of inlets and outlets, each of which is part of the manifold structure. The manifold inlets allow fluid (e.g., unfiltered or pre-filtered liquid) to flow from an external source through the manifold and into the interior space of the housing. The interior space of the housing can be either an "interior volume" located inside the filtration membrane and filter cartridge, or a "housing volume" located outside the filtration membrane between the outer surface of the membrane and the bowl. The manifold outlets allow liquid to exit the housing either from the interior volume to a location outside the housing, or from the housing volume to a location outside the housing.

[0024] The housing interior is configured to accommodate a filter cartridge containing a filtration membrane through which unfiltered liquid entering the housing through the inlet flows during passage through the filter device. The filtration membrane may be any of the general classes of filtration membranes designed to fit within the described bowl-type filter device within the bowl of the housing that engages with a manifold, the manifold having a single inlet and a single outlet arranged to force fluid entering the inlet through the filtration membrane before passing through the outlet.

[0025] These types of filter devices can be configured for use in a "bowl-up" or "bowl-down" configuration, as desired. In the bowl-up configuration, the bowl is located above the manifold. In the bowl-down configuration, the bowl is located below the manifold.

[0026] Filtration membranes useful in these types of devices are generally cylindrical in shape (tubular, pleated tubular, wound) with a cylindrical outer surface, a cylindrical inner surface, and an interior space ("internal volume") extending along the length of the membrane between the two ends of the cylindrical membrane. The membrane may also be a sheet formed into a pleated, folded, or wound configuration to create a hollow cylinder. Filtration membranes can comprise polymeric or non-polymeric (e.g., fibrous) materials that are sufficiently porous to allow fluids (especially liquids) to pass through the filtration membrane. As the fluid passes through the membrane, particles or contaminants contained in the fluid can remain within the filter, thereby removing the particles or contaminants from the fluid.

[0027] The described filter cartridges can include a filtration membrane housed and held by a support structure configured to house and support the filtration membrane so that the filter cartridge can be installed within the filter housing in a position and manner that allows fluid flow through the filter housing between the inlet and outlet of the filter housing to pass through the filtration membrane. The filter cartridge houses a cartridge outer support on the cylindrical outer surface of the filtration membrane, which includes an inner surface that faces, and optionally contacts, the outer surface of the filtration membrane. The filter cartridge can also include a cartridge inner support (sometimes referred to as a "core") disposed in an interior space defined by and facing the cylindrical inner surface of the filtration membrane. The filter cartridge can also include supports in the form of "ends" or "end caps" at two opposing ends of the filter cartridge, including a proximal end (or "filter cartridge proximal end") and a distal end (or "filter cartridge distal end").

[0028] A filter cartridge can be considered to include a central longitudinal axis extending along the length of the filter cartridge, along a center or intermediate location, between two opposing ends of the filter cartridge. The filter cartridge defines an "internal volume" within the central interior of the annular or cylindrical filter cartridge on the core side of the membrane. The internal volume extends between the two opposing ends of the filter cartridge, inside the cylindrical membrane, and includes the membrane's longitudinal axis.

[0029] The filter cartridge includes a second side, sometimes referred to as the "housing side," opposite the core side and facing the exterior surface of the membrane and filter cartridge. The housing side of the filter cartridge also faces the interior surface of the bowl of the filter housing when the filter cartridge is installed in the assembled filter housing. The filter cartridge and housing assembly together define a second open space and volume within the assembled housing on the housing side of the membrane, which is referred to as the "housing volume." The housing volume is disposed between the interior surface of the housing bowl and the housing side of the filter cartridge and is coupled to one of the housing inlet or housing outlet (typically the inlet).

[0030] The filter cartridge proximal end is configured to engage with the manifold and create a fluid-tight seal, or "filter cartridge manifold seal," between the manifold and the filter cartridge proximal end. The filter cartridge manifold seal provides a fluid-tight flow path between the interior volume and the manifold, allowing fluid (e.g., liquid) to flow between the interior volume and the manifold through the housing inlet or the housing outlet. The filter cartridge manifold seal may be of any useful design that provides a sealed flow path between the manifold and the filter cartridge proximal end. Examples include threaded engagements, snap-fit ​​engagements, and press-fit engagements.

[0031] The distal end of the filter cartridge is configured to engage the interior surface of the bowl at the distal end of the bowl to create a fluid-tight seal between the bowl and the distal end of the filter cartridge, i.e., a "filter cartridge bowl seal." The filter cartridge bowl seal is disposed between the distal end of the bowl and the distal end of the cartridge and forms a seal in the distal region of the housing volume. The filter cartridge bowl seal may be of any useful design that provides a fluid-tight seal with the surfaces of the distal end of the housing volume, the distal end of the bowl, and the distal end of the filter cartridge. Examples include opposing threaded engagements, snap-fit ​​engagements, and press-fit engagements.

[0032] The cartridge support is made of a rigid material that is substantially immovable relative to the fluid passing through the filter housing and the filtration membrane during use. The cartridge support is self-supporting, meaning that when separated from the filtration membrane or before engaging with the filtration membrane, the cartridge support has sufficient rigidity and strength to support the weight of the cartridge outer support and substantially maintain its shape. The cartridge support can be considered to have a length in the longitudinal direction between two opposing ends, as well as radii and diameters perpendicular to the length and longitudinal axis. See Figures 1A and 2A.

[0033] In some embodiments, the cartridge support is a cartridge outer support (sometimes referred to as a "cage") positioned at a position outside the filtration membrane. The cartridge outer support includes an inner surface that faces radially inward toward the longitudinal axis and that optionally and preferably contacts the outer surface of the filtration membrane when the filtration membrane is placed within the cartridge outer support. Examples of useful or preferred cartridge outer supports may be flexible and compressible along the longitudinal axis, in a direction along the length of the cartridge outer support. In these example embodiments, the compressible cartridge outer support can be compressed longitudinally, thereby increasing the diameter of the cartridge outer support. See Figures 2A and 2B.

[0034] The cartridge support herein may optionally include centering surfaces that can be useful for influencing and maintaining the position of the filter cartridge and associated filtration membrane within the interior volume of the filter housing, including maintaining the position of the filter cartridge in a central position relative to the interior surface of the filter housing. These "centering surfaces" are located on the outer (circumferential) surface of the cartridge outer support in an area of ​​the greatest (outermost) radial distance of the surface from the longitudinal axis. The term "centering surface" refers to a (cylindrical) surface of the cartridge outer support that has a two-dimensional area based on the perimeter length and width of the cylindrical cartridge outer support (either or both of which may be curved, since it is on the surface of a cylinder). As used herein, "centering surface" may also refer to one or more point or line structures located on the perimeter surface at the greatest radial distance from the longitudinal axis, which theoretically do not have an area based on width and length, but which, alone or in combination, can function as a centering surface to maintain the position of the filter cartridge relative to the interior surface of the filter housing.

[0035] The centering surfaces may be formed at peripheral locations on the cartridge support (either the outer cartridge support or the inner cartridge support) in any form, shape, or size.

[0036] In certain examples, the centering surface is formed by adjusting the thickness of the cartridge support along its length, width, or both. In certain examples, the thickness may vary gradually over a long length of the outer support portion, or alternatively, may vary abruptly over a short length of the cartridge support. An exemplary centering surface may be a structure having a thickness that varies over the length of a strand (e.g., a helical strand) of the outer support portion that extends substantially the length of the cartridge support. For example, the thickness may vary from a maximum thickness (at the centering surface) to a minimum thickness over a length of 1 centimeter, or over a length of 1 to 2, 3, or 4 centimeters. A "strand" is a portion of the cartridge outer support that has a substantially small width relative to its much longer length, as indicated by a length-to-width ratio of at least 5:1, e.g., at least 10:1. A "strand" may be in the form of an elongated helical strand, or an elongated "rod" or other elongated structure of the cartridge outer support that has a significantly longer length relative to its width. In some embodiments, the helical strand has a trapezoidal, triangular, circular, square, or rectangular cross-section at each point along its length.

[0037] Other exemplary centering surfaces may be located on the outer surface of the strand, but need not vary the thickness or width of the strand. The strand may be uniform in thickness and width along the entire length of the strand. The strand may be helical or non-helical.

[0038] Other exemplary centering surfaces may be disposed on the surface of a plurality of separate, individual, three-dimensional elongated structures extending through the thickness of a portion of the cartridge support having varying, discrete thin thicknesses, such as a rod or strand having an elongated, flat outer surface. Such three-dimensional elongated structures may be in the form of a plurality of protrusions, bumps, longitudinally extending ridges or teeth, or other three-dimensional structures extending from the otherwise flat surface of the cartridge outer support. The three-dimensional structures may include points, lines, or surfaces that function as centering surfaces.

[0039] When assembled for use, the filter cartridge is preferably centered within the interior space of the filter housing (e.g., bowl or sleeve), meaning that the central longitudinal axis of the filter cartridge (and associated filtration membrane) is (substantially) aligned with the central longitudinal axis of the housing bowl or housing sleeve. Various structures and techniques have been used to center a filter cartridge within the interior volume of a filter housing. These structures may be located on the opposing surface of a manifold, the end of the housing, or on the end of the filter cartridge where it engages with the interior surface of the housing. Exemplary centering structures are located on the inner (radial) portion of the filter cartridge or at peripheral locations such as spacers positioned between the end cap of the filter cartridge and the interior surface of the filter housing. These types of centering mechanisms maintain the position of the filter cartridge relative to the manifold, bowl, end cap, or sleeve of the housing, typically at the end of the filter cartridge, by contact between the cartridge end and the surface of the housing.

[0040] According to this specification, the centering mechanism that maintains the position of the filter cartridge at a central location within the filter housing is based on "centering surfaces" located around the peripheral region of the cartridge outer support, e.g., at multiple locations around the circumference of the cartridge outer support and at multiple locations along the length of the cartridge support (between the proximal and distal ends).

[0041] The centering surfaces generally can maintain the position of the filter cartridge within the interior volume of a cylindrical filter housing relative to the interior surface of the filter housing to align the longitudinal axis of the filter housing with the longitudinal axis of the filter cartridge, i.e., to "center" the filter cartridge within the interior volume of the filter housing. When the filter cartridge is placed within the filter housing, the centering surfaces of the cartridge outer support are positioned near, but optionally preferably without contacting, the interior surface of the filter housing. The centering surfaces are positioned at multiple locations along the length of the cartridge outer support and at multiple locations around the circumference of the cartridge support, typically continuously or regularly (e.g., evenly spaced) along a substantial portion of the length of the filter cartridge in combination with contact between the centering surfaces and the interior surface at multiple (e.g., evenly spaced) circumferential portions of the filter cartridge in a dispersed, regular, non-random pattern or arrangement designed to allow useful fluid flow through the housing volume.

[0042] In an exemplary filter assembly, when the filter cartridge is positioned and centered within the interior space of the bowl or sleeve of the filter housing, the distance between some or all of the centering surfaces and adjacent interior surfaces of the filter housing can be small without the centering surfaces contacting the interior surfaces. Some or all of the centering surfaces may be positioned less than 6 millimeters from the interior surfaces, such as in the range of 0.5 to 5 millimeters, e.g., 1 to 4 millimeters.

[0043] The centering surface can have any useful size, shape, and configuration relative to the cartridge support. Exemplary centering surfaces can be flat (with a length and width defined relative to a cylindrical surface), linear (including spiral), such as a line formed along the length of the centering surface, or pointed, such as the apex of a pyramid, bump, cone, ridge, protrusion, or other three-dimensional structure extending radially from the surface of the cartridge outer support. The centering surface can be continuous along the entire length of the cartridge support surface, e.g., along the entire length of the outer surface of a strand or another structure; e.g., the thickness of the strand can be uniform along its entire length and along the entire length of the outer support surface, with the outer surface of the strand functioning as the centering surface. Alternatively, the centering surfaces can be intermittently and optionally regularly and evenly spaced along the length of the outer support surface (e.g., strand), and can be the result of a variation in strand thickness along its length, a variation in strand thickness along its width, or both.

[0044] One characteristic of the centering surface of the cartridge support is the total surface area of ​​the centering surface, which means the total surface area of ​​the centering surface when viewed from the outside perpendicularly from the side toward the outward-facing surface of the cartridge support over the entire area defined by the circumference and length of the cartridge support.

[0045] The surface area of ​​the centering surface can be measured relative to the total surface area of ​​an imaginary cylinder ("centering surface cylinder") defined by the centering surfaces of the cartridge support. As used herein, the total amount of surface area occupied by the centering surfaces is given as a percentage calculated as the total area of ​​the centering surfaces of the cartridge outer support divided by the total area of ​​an imaginary cylinder (called the "centering surface cylinder") that intersects with the outermost surface of the cartridge outer support (the most distal surface based on radial distance from the longitudinal axis - also meaning the centering surface).

[0046] An example of a cartridge support including a centering surface and a centering surface cylinder thereon is shown in Figures 1A (side perspective view), 1B (end view), and 1C (enlarged view). The cartridge supports shown in Figures 1A, 1B, and 1C can be used as either an outer cartridge support or an inner cartridge support. The illustrated end portion of the cylindrical outer support 10 includes a first end and a longitudinal bar (or "strand") 14 extending along the length of the cartridge support 10 between the first end and an opposite end (not shown). A plurality of three-dimensional extensions (bumps, protrusions, etc.) 18 are formed on the flat (cylindrically curved) surface 16 of the bar 14. The extensions 18 are arranged in a regularly spaced pattern on the surface of the bar 14. Each extension 18 has an outermost surface 20 that functions as a centering surface. Preferably, all outermost surfaces 20 of the plurality of three-dimensional extensions 18 are disposed at substantially the same radial distance from a longitudinal axis AL extending longitudinally along the centerline of the cylindrical cartridge outer support 10 .

[0047] 1A from an end view. As shown, the "centering surface cylinder" 30 is an imaginary cylinder located along the length of the cartridge outer support at a constant radial distance Dr from the longitudinal axis AL of the cartridge outer support 10. The radial distance Dr is equal to the distance between the longitudinal axis of the cartridge support and the outermost surface of the cartridge support's centering surface 20 ("outermost" meaning the surface radially furthest from the longitudinal axis).

[0048] As shown, the centering surface 20 is a point structure that does not exhibit a substantial length, width, or area. Centering "surfaces" can include such point (dimensionless) structures of three-dimensional extensions of the cartridge outer support, as well as line structures that theoretically do not have both length and width dimensions. These "surfaces" intersect the centering surface cylinder at a single point or along a line. In other examples, the centering surface may be a flat outer surface (optionally cylindrically curved along a helical path) that extends along and intersects the length and width of the centering surface cylinder, such that the centering surface exhibits length and width dimensions (on the cylinder).

[0049] The centering surface may have a total surface area and be positioned on the cartridge outer support such that the centering surface is effective in maintaining the position of the filter cartridge in the center of the filter housing (e.g., bowl or sleeve) while allowing a useful flow rate of fluid through the housing volume. The cartridge outer support and associated centering surface are positioned within the housing volume of the assembled filter housing (within the space located between the inner surface of the filter housing and the outer surface of the filtration membrane). During use, fluid flows through the housing volume, which means that the cartridge outer support and centering surface are in the path of the fluid flow and may impede the fluid flow. The shape and size of the cartridge support and the centering surface of the cartridge outer support can preferably be designed to control, reduce, or minimize the effect that the centering surface may have on impeding fluid flow through the housing volume, while allowing a useful amount of fluid flow through the housing volume.

[0050] Additionally or alternatively, the centering surface of the cartridge support may preferably have a relatively small total surface area. According to certain useful examples of cartridge supports, the total surface area of ​​the centering structures may be less than 30% of the area of ​​the defined centering surface cylinder. In other useful or preferred examples, the total surface area of ​​the centering surface may be much smaller, such as less than 25, 20, 15, 10, or 5 percent of the area of ​​the centering surface cylinder.

[0051] Additionally or alternatively, as an effective approximation of these ranges of centering surface area relative to the centering surface cylinder, the centering surface can have an area comparable to the cylindrical outer surface of the filter cartridge's filtration membrane. According to a particularly useful example of a cartridge outer support, the total surface area of ​​the centering surface relative to the total outer (cylindrical) surface area of ​​the filtration membrane can be less than 30, 25, 20, 15, or 10 percent of the surface area of ​​the outer surface of the filtration membrane on which the cartridge outer support is disposed. The surface area of ​​the filtration membrane is the area of ​​a cylinder in contact with the peripheral surface of the filtration membrane. The surface area of ​​the filtration membrane is the surface area of ​​a cylinder of uniform radius (from the longitudinal axis of the filter cartridge) along the length of the filtration membrane, the radius being slightly less (by the thickness of the outer support structure) than the radius Dr of the centering surface cylinder.

[0052] Some types of centering surfaces represent a flat area having a length and width across the cylindrical surface. For these types of centering surfaces, the total surface area is equal to the area of ​​the flat surface.

[0053] Other centering surfaces may exhibit rounded or pointed outer surfaces that lack both width and length dimensions. For these types of centering surfaces, the missing length or width dimension can be estimated as a small value, such as a length or width in the range of 0.5 to 1.5 millimeters, for purposes of calculating the total surface area of ​​the centering surface. A centering surface in the form of a pointed ridge that forms a straight or curved line along the length of the cartridge support, having a length dimension but theoretically no width dimension, can be considered to have a length equal to the length of the line, a nominal width in the range of 0.5 to 1.5 millimeters, and a surface area calculated as the width multiplied by the length. A centering surface in the form of a pointed or curved tip of a bump or protrusion, i.e., a theoretically dimensionless point structure, can be considered to have a nominal width in the range of 0.5 to 1.5 millimeters, a nominal length in the range of 0.5 to 1.5 millimeters, and a surface area calculated as the length of 0.5 to 1.5 millimeters multiplied by the width of 0.5 to 1.5 millimeters.

[0054] Also, to facilitate fluid flow through the housing volume of the filtration membrane and filter device, the cartridge support can include reducing the area of ​​structures (e.g., strands, such as rods or helical strands) that create resistance to fluid flow through the housing volume or filter media. Cartridge supports that house helical strands or longitudinal strands (rods) can facilitate fluid flow through the housing volume by reducing masking / coverage of the filter surface by the cartridge support.

[0055] The cartridge support can be designed to cover a reduced amount of the outer surface area of ​​the filtration membrane supported by the cartridge support. The amount of surface area of ​​the filtration membrane covered by (but not necessarily in contact with) the cartridge support is referred to herein as "coverage area." According to a particularly useful example of a cartridge support, the total surface area of ​​the cartridge support relative to the total outer (cylindrical) surface area of ​​the filtration membrane can be less than 40, 30, 25, 20, 15, 10, or 5 percent of the outer surface area of ​​the filtration membrane on which the cartridge support is placed.

[0056] This "coverage area" may be equal to the contact area between the cartridge support structure and the surface of the filtration membrane, or the contact area between the cartridge support structure and the surface of the filtration membrane may be less than the "coverage area" (see, e.g., FIG. 5). According to particularly useful examples of cartridge outer supports, the contact area between the outer cartridge support and the surface of the filtration membrane may be less than 40, 30, 25, 20, 15, 10, or 5 percent of the surface area of ​​the filtration membrane on which the cartridge support is disposed.

[0057] The cartridge support can be of any useful thickness to reduce the level of resistance to liquid flow through the housing volume caused by the cartridge support, although a preferred thickness is relatively thin. Exemplary cartridges can optionally have an outer support that can have a variable thickness to provide a centering surface; typically, useful thicknesses of the cartridge support or portions of the cartridge support can range from 0.5 to 15 millimeters, e.g., 1 to 5, 10, or 15 millimeters.

[0058] Also, in general, the width to thickness ratio of the strands of the cartridge support may be in the range of 1:3 to 3:1 or 1:2 to 2:1 (width:thickness), such as in the case of helical strands. In the case of longitudinal rod-type strands, the width to thickness ratio may also be in the range of 1:3 to 3:1 or 1:2 to 2:1, but may also be higher, such as in the range of 2:1 to 10:1 (width:thickness).

[0059] Exemplary cartridge supports herein will now be described with reference to some of the accompanying drawings.

[0060] 2A and 2B, an example of a cartridge support 100 is shown. The cartridge support 100 includes a distal end 102 and a proximal end 104, with a single helical strand 110 extending between the two ends 102 and 104 along the length L of the cartridge support. The helical strand 110 has a length (Lh) that extends along a helical path defined by the strand between the ends 102 and 104. The helical strand 110 also has a variable thickness (Th) that extends radially between the outer surface 106 and the inner surface 108, as shown. The helical strand 110 has a width (Wh) that extends transversely to both the length (Lh) and the thickness (Th).

[0061] The helical strand 110 includes a two-dimensional (cylindrically curved) inner surface 108 that faces inward toward the longitudinal axis 120 and extends along the entire length (Lh) of the helical strand. As shown, the inner surface 108 is referred to as a "flat" (two-dimensional) surface in contrast to the cylindrical shape defined by the inner surface 108 along the length of the outer support surface. The inner surface 108 has a helically extending length and a width that is located at a constant radius (ri) from the longitudinal axis 120 across the thickness and length. The outer surface 106 is a two-dimensional surface that has a relatively constant width and a length that extends along the entire length of the helical strand 110.

[0062] A portion of the outer surface 106 is the centering surface described herein. The helical strand 110 has a thickness (Th) that varies along the length of the strand. At some points along the length, the thickness (Th) is greater than at other points along the length of the helical strand 110. At the thicker point, designated 106', the helical strand 110 has a maximum thickness, and the outer surface 106' is located at the outermost (largest radius) point of the cartridge outer support 100. Thus, the surface 106' is the centering surface described herein. The portion of the helical strand 110 of reduced or minimum thickness is designated surface 106".

[0063] Although shown as exhibiting a variable thickness, helical strand 110 need not have a variable thickness along any of its length, but may instead have a uniform thickness along any portion of its length or along the entire helical length (Lh). In that configuration, outer surface 106 along the entire length Lh of uniform thickness helical strand 110 can be considered a centering surface.

[0064] As shown in Figure 2B, the cartridge support 100 is compressible along the longitudinal axis 120. Compressibility is particularly useful when the cartridge support 100 serves as an outer cartridge support surrounding a filter, as it facilitates positioning the cartridge support 100 around the filter. Figure 2B shows the cartridge support 100 compressed to exhibit a reduced length L' and increased diameter D'.

[0065] 2B, 2C, and 2D illustrate steps of an exemplary method for assembling a filter cartridge by compressing a compressible cartridge support 100 (FIG. 2B), inserting a filtration membrane 116 into the interior space of the compressed cartridge support (FIG. 2C), and then removing the compression (FIG. 2D). The assembled filter cartridge of FIG. 2D includes an uncompressed cartridge support 110 disposed on the exterior surface of the filtration membrane.

[0066] With respect to the cartridge support 100 of FIG. 2A , the varying thickness of the helical path and (optional) helical strands 110 form a centering surface 106′, and these features, individually or in combination, enable useful or advantageous fluid flow performance for the cartridge support 100 contained within a housing volume. Referring to FIG. 3A , the cartridge support 100 is included as an outer cartridge support as a component of a filter cartridge 138, which includes a filtration membrane 130, a distal end cap 150, a proximal end cap 160, and a cartridge inner support (or “core”) 132. While the cartridge support 100 is shown in FIG. 3A as the outer cartridge support, any of the other cartridge supports disclosed herein can function as the outer cartridge support (e.g., cartridge support 400 shown in FIG. 4 , cartridge support 500 shown in FIG. 5 , and cartridge support 600 shown in FIG. 6 ). In some embodiments, the inner cartridge support 132 can be one of the cartridge supports disclosed herein, such as the cartridge supports shown in FIGS. 4 and 5 . As shown, filter cartridge 138 is installed within bowl 140 of the filter housing, with cartridge 138 centered within bowl 140. During use, fluid (indicated by arrows) can enter housing volume 134 through an inlet (not shown), then pass through filtration membrane 130 into interior volume 136, and then exit the filter housing through an outlet (not shown).

[0067] Referring further to FIG. 3A, the inner surface 108 of the cartridge support 100 is positioned adjacent to, preferably but not necessarily in contact with, the outer surface of the filtration membrane 130. The cartridge support 100 is positioned within the housing volume 134. The outer surface 106', which serves as a centering surface, can be positioned a small distance (e.g., less than 6 millimeters) from the inner surface 142 of the bowl 140 of the illustrated filter housing. While FIG. 3A shows contact between the outer surface 106' and the inner surface 142 of the bowl 140, a small distance of separation between the surfaces is preferred. FIG. 3A also illustrates that the helical strand 110 has a varying thickness along the helical length of the helical strand. Alternatively, the helical strand 100 may have a uniform thickness along the helical length of the strand.

[0068] The helical shape of cartridge support 100 allows liquid to flow through the spaces between helically wound strands 110 along the entire length of cartridge support 100 without fluid flow being blocked across its width by any portion of the structure of cartridge support 100, so cartridge support 100 does not unduly impede fluid flow through housing volume 134. Additionally, an optional reduction in thickness of other portions (designated 106″) of helical strand 100 creates a separation between a portion of the total outer surface 106 of helical strand 100 and inner surface 142 of housing bowl 140, creating space for fluid to flow between the portion of outer surface 106 of helical strand 110 and inner surface 142 of housing bowl 140.

[0069] 3B, cartridge support 200 is included as a cartridge outer support component of filter cartridge 238, which includes a filtration membrane (not shown), distal end cap 250, proximal end cap 260, and cartridge inner support structure (or "core") 232. As shown, filter cartridge 238 is installed within filter housing 240, which includes sleeve 242, first (inlet) end 244, and second (outlet) end 246. Cartridge 238 is centered within sleeve 242 relative to a cylindrical interior surface 243 of sleeve 242, between ends 244 and 246.

[0070] During use, fluid (shown by arrows) can flow into the housing volume 234 through an inlet located at the inlet end 244, then through a filtration membrane (not shown) of the cartridge 238 into the inner volume 236, and then out of the filter housing 240 through an outlet as part of the outlet end 246.

[0071] 3B, the inner surface 208 of the cartridge support 200 is positioned adjacent, preferably but not necessarily in contact with, the outer surface of the filtration membrane. The cartridge support 200 is positioned within the housing volume 234. The outer surface 207 at the end of an extension 209 that extends radially from the outer surface of the cartridge outer support 200 serves as a centering surface. The outer surface 207 can be positioned a small distance (e.g., less than 6 millimeters) from the inner surface 243 of the sleeve 240 of the illustrated filter housing. While FIG. 3B shows contact or near-contact between the outer surface 207 and the inner surface 243 of the sleeve 242, a small distance separating the surfaces is preferred.

[0072] In an alternative embodiment of the cartridge support described, FIG. 4 shows a cartridge support 400 including end portions 102 and 104 and a helical strand 110, as in the example of FIG. 2A. Additionally, the cartridge support 400 of FIG. 4 includes a set of longitudinally extending strands or rods 112. Furthermore, the helical strands 110 are disposed on the outer portion of the cartridge support 400, positioning a centering surface 106′ at the outermost periphery of the cartridge outer support 100. FIG. 4 illustrates that the helical strands 110 have a variable thickness along their helical length. Alternatively, the helical strands 110 may have a uniform thickness along their helical length. The cartridge support 400 shown in FIG. 4 can function as either a cartridge outer support or a cartridge inner support. In some embodiments, the longitudinally extending strands or rods 112 can have multiple three-dimensional extensions similar to those disclosed with respect to FIG. 1A.

[0073] In an alternative embodiment of the cartridge support described, FIG. 5 shows a cartridge support 500 including end portions 102 and 104 and a helical strand 110, as in the example of FIG. 2A. Additionally, the cartridge support 500 of FIG. 5 includes a set of longitudinally extending strands (or "rods" 112). The helical strands 110 are disposed at an interior location of the cartridge support 100. Optionally, a centering surface (not shown) may be disposed at the outermost location of the cartridge outer support 100, for example, as a protrusion or extension from the flat (cylindrical, two-dimensional) outer surface 114 of the rods 112. An advantage of the cartridge support 500 is that the surface area of ​​the inner surface 120 of the helical strand 110 that contacts the outer surface of the filtration membrane (not shown) held within the cartridge outer support 100 is small. Due to the small amount of contact surface area between the helical strands 110 and the outer surface of the filtration membrane, very little flow from the membrane is directly blocked by the surface of the cartridge outer support 100. FIG. 5 illustrates that the helical strand 110 has a varying thickness along the helical length of the helical strand. Alternatively, the helical strand 110 may have a uniform thickness along the helical length of the strand. The cartridge support 500 shown in FIG. 5 can function as an outer cartridge support or an inner cartridge support. In some embodiments, the longitudinally extending strand or rod 112 can have multiple three-dimensional extensions similar to those disclosed with respect to FIG. 1A.

[0074] In yet another embodiment of the described cartridge support, FIG. 6 illustrates an alternative cartridge support 600. Cartridge support 600 includes end portions 102 and 104, as in the example of FIG. 2A. Additionally, cartridge support 600 of FIG. 6 includes a set of two counter-rotating helical strands 110, 110′, each having a centering surface (not shown) along outer surface 106. In some embodiments, there may be three or more counter-rotating helical strands. Cartridge support 600 of FIG. 6 may be compressible along longitudinal axis 120. Each of the two helical strands may independently have a uniform thickness along the helical length of the strand or a non-uniform thickness along the length of the helical strand. Cartridge support 600 illustrated in FIG. 6 can function as an outer cartridge support or an inner cartridge support.

[0075] The cartridge support herein can be made from any useful material, but preferred materials are polymers, particularly thermoplastic polymers that can be reversibly solidified and melted by alternately heating and cooling the polymer. Preferred thermopolymers can be melted by heating and then cooled to a low temperature that causes the thermopolymer to solidify into a cartridge outer support having a desired shape (e.g., a helix with a centering surface) that is self-supporting, i.e., has sufficient rigidity and strength to support its own weight with only slight deformation.

[0076] Examples of polymers useful for forming cartridge supports include thermoplastic polymers in general, and useful chemical types of thermoplastic polymers include polyolefins such as polyethylene, polypropylene, and blends of these with other polyolefin or non-polyolefin thermopolymers, polyacrylates, polyurethanes, and thermoplastic fluoropolymers such as perfluoroalkoxyalkanes (PFAs).

[0077] The polymeric material can be formed into a cartridge support by any useful technique for forming thermoplastic products, such as molding, injection molding, or three-dimensional printing techniques.

[0078] Generally, a useful method for forming the cartridge support and assembling it to be disposed on the outer surface of the filtration membrane can include preparing the cartridge support separately from the filtration membrane and then inserting the filtration membrane into the interior space of the cartridge support when used as the cartridge outer support. The filtration membrane may be inserted with the necessary force into the end of the cartridge outer support until the end of the filtration membrane is positioned adjacent to the end of the cartridge outer support. Optionally, as shown in Figures 2A-2D, certain examples of cartridge outer supports containing helical strands can be compressed to expand the diameter of the cartridge outer support, facilitating the process of inserting the filtration membrane into the cartridge outer support. In other embodiments, when the cartridge support functions as the cartridge inner support, the filtration membrane may be disposed around the cartridge support.

[0079] In another example, the cartridge outer support can be made from a thermoplastic polymer by melting the thermoplastic polymer and applying the molten thermoplastic polymer to the outer surface of the filtration membrane in the desired configuration, such as a single helical strand, multiple (e.g., opposing) helical strands, or other structures such as rods. The thermoplastic polymer can be applied to the surface by any technique, including molding to form a centering surface. The thermopolymer can solidify and adhere to the outer surface of the filtration membrane. However, the solidified thermoplastic resin is strong enough to support its own weight and not deform when removed from contact with the filtration membrane, and the solidified thermoplastic cartridge outer support is considered self-supporting.

[0080] In embodiment 1, the filter cartridge comprises a cartridge distal end and a cartridge proximal end, and a cartridge support extending between the cartridge distal end and the cartridge proximal end and comprising a helical strand, the helical strand comprising a length extending along a helical path of the helical strand, a radial thickness, a width perpendicular to the length and thickness, and a width-to-thickness ratio in the range of 1:3 to 3:1.

[0081] In embodiment 2 according to embodiment 1, the filter cartridge is compressible along the longitudinal axis, and compressing the filter cartridge along the longitudinal axis increases the diameter.

[0082] In embodiment 3 according to embodiment 1 or 2, the helical strand comprises a trapezoidal, triangular, circular, square or rectangular cross-section at each point along its length, a thickness that varies along its length, or both.

[0083] In Example 4 according to any one of Examples 1 to 3, the filter cartridge further comprises a filtration membrane extending between the cartridge distal end and the cartridge proximal end.

[0084] In a fifth aspect according to any one of the first to fourth aspects, the cartridge support comprises a clockwise rotating helical strand and a counterclockwise rotating helical strand.

[0085] In embodiment 6 according to any one of embodiments 1 to 5, the cartridge includes a filtration membrane extending between the distal end and the proximal end of the cartridge, and the cartridge support has a surface area covering less than 40 percent of the surface area of ​​the exterior of the filtration membrane.

[0086] In embodiment 7 according to any one of embodiments 1 to 6, the cartridge support is self-supporting.

[0087] In embodiment 8 according to any one of embodiments 1 to 7, the cartridge support comprises a thermoplastic polymer.

[0088] In embodiment 9 according to embodiment 8, the thermoplastic polymer comprises a polyolefin, a polyacrylate, a polyurethane, or a thermoplastic fluoropolymer.

[0089] In embodiment 10, the filter cartridge comprises a cartridge distal end and a cartridge proximal end, and a cartridge support extending between the cartridge distal end and the cartridge proximal end and comprising a helical strand, the helical strand including a length extending along a helical path of the helical strand, a radial thickness, and a width perpendicular to the length and thickness, the thickness varying along the length.

[0090] In embodiment 11 according to embodiment 10, the filter cartridge further comprises a filtration membrane extending between the cartridge distal end and the cartridge proximal end.

[0091] In embodiment 12 according to embodiment 10 or 11, the helical strand comprises a trapezoidal, triangular, circular, square or rectangular cross section at each point along its length.

[0092] In embodiment 13 according to any one of embodiments 10 to 12, the cartridge support comprises a helical strand and an elongated rod extending between the cartridge distal end and the cartridge proximal end.

[0093] In embodiment 14 according to any one of embodiments 10 to 13, the cartridge support comprises a clockwise rotating helical strand and a counterclockwise rotating helical strand.

[0094] In embodiment 15 according to any one of embodiments 10 to 14, the cartridge further comprises a filtration membrane extending between the cartridge distal end and the cartridge proximal end, wherein the cartridge support has a surface area covering less than 40 percent of the surface area of ​​the exterior of the filtration membrane.

[0095] In embodiment 16 according to any one of embodiments 10 to 15, the cartridge support is self-supporting.

[0096] In embodiment 17 according to any one of embodiments 10 to 16, the cartridge support comprises a thermoplastic polymer.

[0097] In embodiment 18 according to any one of embodiments 10 to 17, the thermoplastic polymer comprises a polyolefin, a polyacrylate, a polyurethane, or a thermoplastic fluoropolymer.

[0098] In embodiment 19 according to any one of embodiments 10 to 18, the helical strand has a thickness in the range of 0.5 to 8 millimeters, a width in the range of 1 to 15 millimeters, or both.

[0099] In embodiment 20 according to any one of embodiments 10 to 19, the helical strand has a width to thickness ratio ranging from 1:3 to 3:1.

[0100] In embodiment 21, a method of assembling the filter cartridge of embodiments 1-20 includes compressing the cartridge support to increase the diameter of the cartridge support; inserting a filtration membrane into the cartridge support while the cartridge support is compressed; and decreasing the diameter of the cartridge support to allow the cartridge outer support to contact an outer surface of the filtration membrane.

[0101] In embodiment 22, a method of making the filtering cartridge of any one of embodiments 1 to 20, wherein the cartridge support comprises a thermoplastic polymer, comprising making the cartridge support by an additive manufacturing method.

[0102] In embodiment 23, the cartridge support comprises a thermoplastic polymer, and a method of making the filter cartridge of any one of embodiments 1 to 20 comprises applying the thermoplastic polymer in a molten form directly to the exterior surface of the filter medium and allowing the thermoplastic polymer to solidify on the exterior surface of the filter medium.

[0103] In embodiment 24, a filter device includes a filter housing having a cylindrical interior space and a filter cartridge of any one of embodiments 1-20 within the cylindrical interior space.

[0104] In embodiment 25 according to embodiment 24, the filtering cartridge includes a filtering membrane, and the cartridge support is an outer cartridge support that surrounds the filtering membrane.

[0105] In embodiment 26 according to embodiment 24, the filter cartridge includes a filtration membrane, and the cartridge support is an inner cartridge support disposed within the filtration membrane.

[0106] In embodiment 27, a filter device comprises a filter housing having an open end, a distal end opposite the open end, a cylindrical interior defined by a cylindrical sidewall surface extending from the open end to the distal end and having an interior sidewall surface, and an interior extending between the open end and the distal end, and a filter cartridge disposed therein, the filter cartridge having a cartridge distal end and a cartridge proximal end, and a cylindrical cartridge support extending between the cartridge distal end and the cartridge proximal end, the cartridge support having a surface with a three-dimensional extension.

[0107] In embodiment 28 according to embodiment 27, the surface of the cartridge support is positioned no more than 6 millimeters from the cylindrical sidewall.

[0108] In embodiment 29 according to embodiment 27 or 28, the cartridge support comprises strands extending longitudinally from the cartridge distal end and the cartridge proximal end.

[0109] In embodiment 30 according to any one of embodiments 27 to 29, the filter cartridge comprises a filtration membrane and the cylindrical cartridge support is an outer cartridge support that surrounds the filtration membrane.

[0110] In embodiment 31 according to any one of embodiments 27 to 29, the filter cartridge comprises a filtration membrane, and the cylindrical cartridge support is an inner cartridge support disposed within the filtration membrane.

Claims

1. a cartridge distal end and a cartridge proximal end; a cartridge support extending between a cartridge distal end and a cartridge proximal end and comprising a helical strand, the helical strand comprising: a length extending along the helical path of the helical strand; the radial thickness; a width perpendicular to said length and said thickness; and a width to thickness ratio ranging from 1:3 to 3:

1. Cartridge support and A filter cartridge comprising:

2. 10. The filter cartridge of claim 1, wherein the filter cartridge is compressible along its longitudinal axis, and compressing the filter cartridge along its longitudinal axis increases its diameter.

3. The spiral strand is a trapezoidal, triangular, circular, square or rectangular cross section at each point along said length; a thickness that varies along said length; or Both The filter cartridge of claim 1 or 2, comprising:

4. 4. The filter cartridge of claim 1, further comprising a filtration membrane extending between the cartridge distal end and the cartridge proximal end.

5. 5. The filter cartridge of claim 1, wherein the cartridge support comprises a clockwise rotating helical strand and a counterclockwise rotating helical strand.

6. 6. The filter cartridge of claim 1, further comprising a filtration membrane extending between the cartridge distal end and the cartridge proximal end, the cartridge support having a surface area covering less than 40 percent of the surface area of ​​the exterior of the filtration membrane.

7. 7. The filter cartridge of claim 1, wherein the cartridge support is self-supporting.

8. The filter cartridge of claim 1 , wherein the cartridge support comprises a thermoplastic polymer.

9. The filter cartridge of claim 8 , wherein the thermoplastic polymer comprises a polyolefin, a polyacrylate, a polyurethane, or a thermoplastic fluoropolymer.

10. a cartridge distal end and a cartridge proximal end; a cartridge support extending between a cartridge distal end and a cartridge proximal end and comprising a helical strand, the helical strand comprising: a length extending along the helical path of the helical strand; the radial thickness; a width perpendicular to said length and said thickness, said thickness varying along said length Cartridge support and A filter cartridge comprising:

11. The filter cartridge of claim 10 , further comprising a filtration membrane extending between the cartridge distal end and the cartridge proximal end.

12. 12. The filter cartridge of claim 10 or 11, wherein the helical strand has a trapezoidal, triangular, circular, square or rectangular cross section at each point along said length.

13. The cartridge support a spiral strand; an elongated rod extending between the cartridge distal end and the cartridge proximal end; 13. The filter cartridge of claim 10, comprising:

14. 14. The filter cartridge of any one of claims 10 to 13, wherein the cartridge support comprises clockwise rotating helical strands and counterclockwise rotating helical strands.

15. 15. The filter cartridge of claim 10, further comprising a filtration membrane extending between the cartridge distal end and the cartridge proximal end, wherein the cartridge support has a surface area covering less than 40 percent of the surface area of ​​the exterior of the filtration membrane.

16. 16. The filter cartridge of any one of claims 10 to 15, wherein the cartridge support is self-supporting.

17. 17. The filter cartridge of any one of claims 10 to 16, wherein the cartridge support comprises a thermoplastic polymer.

18. 18. The filter cartridge of claim 17, wherein the thermoplastic polymer comprises a polyolefin, a polyacrylate, a polyurethane, or a thermoplastic fluoropolymer.

19. The spiral strand is a thickness ranging from 0.5 to 8 millimeters; a width in the range of 1 to 15 millimeters, or Both 19. The filter cartridge of claim 10, wherein:

20. The filter cartridge of any one of claims 10 to 19, wherein the helical strands have a width to thickness ratio in the range of 1:3 to 3:

1.

21. 21. A method of assembling a filter cartridge according to any one of claims 1 to 20, comprising the steps of: compressing the cartridge support to increase the diameter of the cartridge support; inserting a filtration membrane into the cartridge support while the cartridge support is compressed; reducing the diameter of the cartridge support to allow the cartridge outer support to contact the outer surface of the filtration membrane; A method comprising:

22. 21. A method of making the filter cartridge of any one of claims 1 to 20, wherein the cartridge support comprises a thermoplastic polymer, comprising making the cartridge support by an additive manufacturing process.

23. 21. A method of making the filter cartridge of any one of claims 1 to 20, wherein the cartridge support comprises a thermoplastic polymer, comprising applying the thermoplastic polymer in a molten form directly to the exterior surface of the filter media and allowing the thermoplastic polymer to solidify on the exterior surface of the filter media.

24. a filter housing having a cylindrical interior space; a filter cartridge according to any one of claims 1 to 20 within a cylindrical interior space; A filter device comprising:

25. 25. The filter device of claim 24, wherein the filter cartridge comprises a filtration membrane and the cartridge support is an outer cartridge support that surrounds the filtration membrane.

26. 25. The filter device of claim 24, wherein the filter cartridge comprises a filtration membrane and the cartridge support is an inner cartridge support disposed within the filtration membrane.

27. 1. A filter device comprising: a filter housing having an open end, a distal end opposite the open end, a cylindrical interior defined by a cylindrical sidewall surface extending from the open end to the distal end and having an interior sidewall surface, and an interior extending between the open end and the distal end; and a filter cartridge disposed therein, wherein the filter cartridge has a cartridge distal end and a cartridge proximal end, and a cylindrical cartridge support extending between the cartridge distal end and the cartridge proximal end, the cartridge support having a surface with a three-dimensional extension.

28. 28. The filter device of claim 27, wherein the surface of the cartridge support is located no more than 6 millimeters from the cylindrical sidewall.

29. 29. The filter device of claim 27 or 28, wherein the cartridge support comprises strands extending longitudinally from the cartridge distal end and the cartridge proximal end.

30. 30. The filter device of any one of claims 27 to 29, wherein the filter cartridge comprises a filtration membrane and the cylindrical cartridge support is an outer cartridge support that surrounds the filtration membrane.

31. 30. The filter device of any one of claims 27 to 29, wherein the filter cartridge comprises a filtration membrane and the cylindrical cartridge support is an inner cartridge support disposed within the filtration membrane.

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