Fluid valve
A mesh-like sealing element with an elastic support cylinder addresses leakage issues in fluid valves by forming a closed loop around the axis of rotation, ensuring reliable sealing and fluid control in motor vehicle applications.
Patent Information
- Application Number
- DE102024208277
- Authority / Receiving Office
- DE · DE
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2024-08-30
- Publication Date
- 2026-03-05
- Estimated Expiration
- Not applicable · inactive patent
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Abstract
Description
[0001] The present invention relates to a fluid valve, a method for its manufacture, and a motor vehicle with the fluid valve.
[0002] In fluid valves where a valve spool is rotated in a housing to selectively connect or separate different ports, leakage between an inner circumferential surface of the housing and an outer surface of the valve spool at the ports can impair the function.
[0003] One object of an embodiment of the present invention is to improve a fluid valve, in particular its manufacture and / or functionality.
[0004] This problem is solved by a fluid valve with the features of claim 1 or a method with the features of claim 11. Claim 10 protects a motor vehicle with at least one fluid valve described herein. The dependent claims relate to advantageous embodiments.
[0005] According to one embodiment of the present invention, a fluid valve, in a particularly preferred embodiment a fluid valve for a motor vehicle and / or for adjusting fluid flows, in one embodiment in a coolant circuit or the like, comprises: a housing that has an inner circumferential surface with access points; and a valve slide that can be rotated about an axis of rotation into different rotational positions, with an outer surface facing the inner circumferential surface, which has a passage arrangement with one or more (fluid) passages. In one version, the valve slide is at least partially located in the housing.
[0006] In one embodiment, at least one (first) group with two or more access points is intersected by a (first) plane that is perpendicular to the axis of rotation of the valve slide.
[0007] Additionally or alternatively, in one version two or more access points are axially spaced apart from each other in the direction of the rotation axis of the valve slide.
[0008] In a further development, at least one further (second) group with two or more access points is cut by a further (second) plane that is perpendicular to the axis of rotation of the valve slide and thus parallel to the first plane, wherein the first and second groups are axially spaced apart from each other.
[0009] This allows for the realization of a more compact multi-way valve with multiple ports in a single design.
[0010] According to one embodiment of the present invention: In at least one rotational position, at least two of the access points are connected (fluidically) via the passage arrangement or communicate (fluidically) with each other, wherein these rotational position(s) or access points are referred to as the first rotational position(s) or access points without loss of generality, and in at least one other rotary position, which without loss of generality is referred to as the second rotary position(s), at least two of these at least two first accesses are separated from each other by means of the valve slide.
[0011] In one embodiment, in at least one second rotary position, one or more of the first accesses (each) separated from each other by means of the valve slide are (fluidically) blocked or closed by means of the valve slide and are therefore not (fluidically) connected to alternative accesses.
[0012] Preferably, the fluid valve or valve slide also has further rotational positions in which the access points of the inner circumferential surface of the housing are interconnected differently or connected or separated from each other in different configurations, preferably at least partially blocked.
[0013] According to one embodiment of the present invention, the fluid valve has a seal comprising an elastic, preferably one-piece, support cylinder; and a mesh-like, preferably one-piece, sealing element with several nodes and edges connecting them, preferably at least two, particularly preferably three or more, axially spaced rows of nodes and (circumferential) edges connecting them in the direction of the axis of rotation of the valve slide, and / or at least two, particularly preferably three or more, circumferentially spaced rows of nodes and (axial) edges connecting them around the axis of rotation of the valve slide, and arranged between the inner circumferential surface and the outer shell surface, preferably in a radial gap between the inner circumferential surface and the outer shell surface.
[0014] In one embodiment, the sealing element is arranged between the support cylinder and the outer shell surface or on a radially inner side of the support cylinder facing the outer shell surface and, in a further development, makes sealing contact with the outer shell surface; in another embodiment, it is clamped or pressed against the outer shell surface by the support cylinder.
[0015] In one embodiment, preferably combined with this, the seal is fixed to the housing; in a further development, the support cylinder is positively and / or materially connected to the housing, preferably the inner circumferential surface, for example by projections on the support cylinder that engage in recesses in the housing and / or projections on the housing that engage in recesses in the support cylinder.
[0016] A housing-mounted seal allows individual access points to be advantageously sealed by a so-called stationary mesh of the net-like sealing element.
[0017] Accordingly, in one embodiment, one or more, preferably all, and especially preferably all existing, access points are enclosed by a mesh formed by a closed pull of nodes and edges of the sealing element.
[0018] In one embodiment, the sealing element is arranged between the inner circumferential surface and the support cylinder or on a radially outer side of the support cylinder facing the inner circumferential surface and, in a further development, makes sealing contact with the inner circumferential surface; in another embodiment, it is clamped or pressed against the inner circumferential surface by the support cylinder.
[0019] In one embodiment, preferably combined with this, the seal is fixed to the valve slide or rotatable together with the valve slide, or rotates together with the valve slide; in a further development, the support cylinder is positively and / or materially connected to the valve slide, preferably the outer surface, for example by projections on the support cylinder that engage in recesses in the valve slide and / or projections on the valve slide that engage in recesses in the support cylinder.
[0020] By means of a valve-slide-proof seal, individual inlet openings of the passage arrangement can advantageously be sealed by a valve-slide-proof mesh of the net-like sealing element.
[0021] Accordingly, in one embodiment, one or more, preferably all, and particularly preferably all existing inlet openings of the passage assembly formed in the outer surface of the valve slide are (each) enclosed by a mesh formed by a closed loop of nodes and edges of the sealing element. These seals advantageously prevent leakage from or into the inlet openings of the passage assembly.
[0022] Additionally or alternatively, in one embodiment, in one or more rotary positions, or in a preferred embodiment, in every operating or switching position of the valve slide, one or more ports blocked by the valve slide, or in a preferred embodiment, all ports intended for use, and particularly preferably all existing ports blocked by the valve slide, are enclosed by a mesh formed by a closed loop of nodes and edges. In other words, in one embodiment, in one or more, preferably all, rotary positions, one or more, preferably all, blocked ports are each sealed by a mesh formed by a closed loop of nodes and edges of the sealing element. This advantageously prevents leakage from or into the blocked port(s).
[0023] Additionally or alternatively, in one embodiment, in one or more rotary positions, or in a preferred embodiment, in every operating or switching position of the valve spool, one or more (each) access points connected to at least one other access point via the passage arrangement, or in a preferred embodiment, all access points intended for use, and particularly preferably all existing access points connected to at least one other access point via the passage arrangement, are (each) enclosed by a mesh formed by a closed loop of nodes and edges. In other words, in one embodiment, in one or more, preferably all, rotary positions, one or more, preferably all, at least partially open access points are each sealed by a mesh formed by a closed loop of nodes and edges of the sealing element. This advantageously prevents leakage from or into open access points.
[0024] In general, or in both a valve spool-fixed seal and a housing-fixed seal, according to one embodiment of the present invention, in the first rotational position and / or in the second rotational position, in a preferred embodiment in each operating or switching position of the valve spool, one or more of the first access points, in a preferred embodiment all access points intended for use, particularly preferably all existing, are enclosed by a mesh formed by a closed or continuous thread of nodes and edges and thereby sealed against the remaining gap between the inner circumferential surface and the outer shell surface.
[0025] This allows for a particularly advantageous, and especially efficient, sealing to be achieved in a single design.
[0026] The support cylinder allows the sealing element to be advantageously clamped or pressed against the outer surface or inner circumferential surface, thereby improving the sealing effect and / or compensating for tolerances and / or deformations during operation. In one embodiment, the support cylinder is flat or has surfaces or flat sections that cover edges of the mesh-like sealing element as well as the spaces between these edges. This simplifies the manufacturing of the cylinder in one embodiment and / or improves the connection and / or support of the sealing element. In another embodiment, the support cylinder has a through-opening in the area of one or more, preferably all, inlet openings of the passage arrangement provided for use, and particularly preferably all existing ones, formed in the outer surface of the valve slide.
[0027] The mesh-like sealing element can advantageously compensate for tolerances and / or shape changes during operation. Additionally or alternatively, it can also advantageously compensate for unevenness, especially compared to a flat or surface-like sealing element.
[0028] In one embodiment, in one or more rotational positions, in a preferred embodiment in every operating or switching position of the valve slide, two or more access points, which are intersected by a plane that is perpendicular to the axis of rotation of the valve slide, and / or two or more access points that are axially spaced apart from each other in the direction of the axis of rotation of the valve slide, are each enclosed by a mesh formed by a closed loop of nodes and edges, wherein these nodes and edges are formed integrally.
[0029] In one embodiment, an end face of the sealing element facing the inner circumferential surface and / or an end face of the sealing element facing the outer shell surface is made of PTFE (polytetrafluoroethylene); in a further development, the sealing element is made of PTFE.
[0030] This can improve the sealing.
[0031] In one embodiment, the support element comprises at least one elastomer, preferably synthetic rubber, particularly preferably EPDM (ethylene propylene diene monomer rubber), and can in particular be made from this.
[0032] This allows for improved assembly and / or support and / or tolerance compensation, and therefore sealing, in one design.
[0033] In one embodiment, one or more (circumferential) edges of the sealing element, which connect (each) two nodes of the sealing element adjacent in the circumferential direction around the axis of rotation of the valve slide, are designed in a meandering or wave-like manner; preferably the wave troughs or crests extend axially in the direction of the axis of rotation.
[0034] This makes it particularly advantageous to compensate for tolerances and changes in shape in the circumferential direction and / or to simplify assembly.
[0035] Additionally or alternatively, in one embodiment one or more (axial) edges of the sealing element, which connect (each) two nodes of the sealing element axially adjacent in the direction of the rotation axis of the valve slide, are designed in a meandering or wave-like manner, preferably the wave troughs or crests extend in the circumferential direction.
[0036] This allows for the advantageous compensation of tolerances and shape changes in the direction of the axis of rotation and / or simplifies assembly.
[0037] In one embodiment, the sealing element is continuous or closed around the axis of rotation, so that it cannot be unrolled into a flat shape without being destroyed or cut. Additionally or alternatively, in another embodiment, the support cylinder is continuous or closed around the axis of rotation, so that it cannot be unrolled into a flat shape without being destroyed or cut. This can be achieved, in each case, by appropriate pre-forming or by a non-destructive joining method, particularly a material-bonded joining, preferably by gluing or welding.
[0038] In one embodiment, this allows the sealing to be improved, in particular leakage through a continuous axial slot to be avoided, whereby a variation in the circumferential direction, in particular for assembly and / or compensation of tolerances and shape changes, can preferably be realized instead of through a continuous axial slot by the aforementioned meandering design of the mesh-like sealing element and / or elasticity of the support cylinder.
[0039] In one embodiment, the sealing element has one or more (each) meshes formed by a closed train of nodes and edges, the circumferential extent of which around the axis of rotation of the valve spool is (each) less than the circumferential extent of one or more of the access points, or, in another embodiment, of an access point that is axially adjacent to these meshes in the direction of rotation. In other words, the mesh-like sealing element has at least partial circumferential spacings between (axial) edges that are shorter than the circumferential extent of one or more access points, preferably of an access point arranged axially adjacent to these (axial) edges.
[0040] This can improve the assembly and / or fixing, and therefore the sealing.
[0041] A fluid valve described here can be used with particular advantage in a motor vehicle and / or in a coolant circuit; preferably it is a multi-way valve for adjusting fluid flows, especially liquid flows.
[0042] A loop formed by a closed train of nodes and edges can encompass one or more (transverse) edges that do not belong to this train or the loop formed by this train - for example, in a digital 8 with three vertically spaced pairs of two horizontally spaced nodes each and these six nodes connected by three horizontal and four vertical edges: the top four nodes and the top two vertical and top two horizontal edges connecting them form a loop created by a closed pull from these nodes and edges; the lower four knots and the lower two vertical and lower two horizontal edges connecting them form another loop by a closed pull from these knots and edges; and also the six knots and the vertical edges connecting them, and the lower and upper horizontal edges, form another loop through a closed pull from these knots and edges.
[0043] According to one embodiment of the present invention, to produce a fluid valve described herein, the mesh-like sealing element is connected, preferably by means of vulcanization, to the elastic support cylinder.
[0044] In a further development, the seal produced in this way or by this connection is subsequently or after this connection arranged on the inner circumferential surface, especially in the case of a housing-fixed seal, or outer shell surface, especially in the case of a valve slide-fixed seal.
[0045] This can improve the connection process in particular.
[0046] In another further development, the support cylinder is already arranged on the inner circumferential surface, especially in the case of a housing-fixed seal, or on the outer shell surface, especially in the case of a valve slide-fixed seal, when connecting the sealing element and the support cylinder, or the connection takes place in situ.
[0047] This allows for easier assembly of the support cylinder and / or protects the sealing element in one version.
[0048] In one version, the valve slide with mounted seal, connected sealing element and support cylinder is inserted into the housing.
[0049] Further advantages and features will become apparent from the dependent claims and the exemplary embodiments. These are shown, in part schematically: Fig. 1: A housing of a fluid valve according to an embodiment of the present invention in an axial section along line II in Fig. 2; Fig. 2: the fluid valve in a cross-section along line II-II in Fig. 1; Fig. 3: a fluid valve seal in a Fig. 1 corresponding axial section; Fig. 4: a seal of a fluid valve according to a further embodiment of the present invention in a radial top view; and Fig. 5: a valve slide, a sealing element and a support cylinder of a fluid valve according to a further embodiment of the present invention in a perspective exploded view.
[0050] Fig. Figure 2 shows a fluid valve according to an embodiment of the present invention in a cross-section.
[0051] The fluid valve has a housing 10 with an inner circumferential surface 11 with access points 12, which is in Fig. 1 is shown in an axial section.
[0052] The fluid valve also has a rotational axis (vertical in) around which it rotates. Fig. 1) A valve slide 20 rotatable into different rotational positions, with an outer surface 21 facing the inner circumferential surface, and comprising a passage arrangement with at least one passage 23 and inlet openings 22. Fig. Figure 2 shows, purely as examples, such a passage and two inlet openings; it is clear to those skilled in the art that other configurations are possible in order to realize the desired flow-related connections of the inlets in (corresponding switching or operating) rotary positions of the valve spool. In particular, axially spaced inlets can also be connected by means of an axial passage.
[0053] The fluid valve further comprises a seal which has an elastic support cylinder 40 and an associated mesh-like sealing element with several nodes 30 and these connecting edges 31, 32 and is arranged between the inner circumferential surface 11 and the outer shell surface 21.
[0054] In the execution of the Fig. 1-3 the sealing element is arranged between the support cylinder 40 and the outer shell surface 21 and the seal is fixed to the housing, in the exemplary embodiment indicated by a projection 41 on the support cylinder which engages in a recess in the housing 10.
[0055] Each of the access points 12 is enclosed by a mesh formed by a closed train of nodes and edges and is thereby sealed against the remaining radial gap between the inner circumferential surface 11 and the outer shell surface 21.
[0056] In this way, each of the accesses 12, which are connected to or separated from other accesses in different configurations in different rotational positions of the valve slide 20, is always enclosed by a mesh formed by a closed train of nodes and edges.
[0057] In axial section of the Fig. Figure 3, which also illustrates the radially inner side of the support cylinder 40 facing the valve slide 20 or its outer surface 21 and the sealing element arranged thereon, shows that the circumferentially extending (circumferential) edges 31 of the sealing element, which each connect two nodes of the sealing element adjacent in the circumferential direction around the axis of rotation of the valve slide, are each designed in a meandering shape.
[0058] This allows the stiffer PTFE sealing element, together with the elastomeric support cylinder 40, to advantageously compensate for tolerances, be easily mounted and seal advantageously.
[0059] The support cylinder 40 is designed in the form of a hollow cylinder with recesses with closed edges in the area of the access points 12 and is thus continuous in the circumferential direction.
[0060] For example, in the lower left area of the Fig. 3. As can be seen, the sealing element has meshes formed by a closed train of nodes and edges, the extent of which in the circumferential direction is less than the extent of at least one access 12 in the circumferential direction.
[0061] This can particularly improve the handling of the sealing element and its connection with the support cylinder, which can be advantageously achieved by vulcanization.
[0062] Fig. Figure 4 shows a seal of a fluid valve according to a further embodiment of the present invention in a radial top view, which corresponds to the view or perspective of the axial section of the Fig. 3 without a cut corresponds to a radially outer side of the seal. The fluid valve is identical in construction to the fluid valve of the [unclear text], except for the differences explained below. Fig. 1-3, so that reference is made to the above description.
[0063] In the execution of the Fig. 4 the sealing element is arranged between the inner circumferential surface 11 and the support cylinder 40 and the seal is valve-slide fixed, for example analogous to the projection 41 in Fig. 3, but then engaging in a recess in the valve slide 20 (not shown).
[0064] Inlet openings 22 of the passage arrangement formed in the outer surface 21 of the valve slide 20 are each enclosed by a mesh formed by a closed loop of nodes and edges. The mesh-like sealing element is configured such that, in operating or switching rotary positions, the ports blocked and / or connected to other access points by means of the valve slide, or open ports, are each enclosed by a mesh formed by a closed loop of nodes and edges and thereby sealed.
[0065] To manufacture the fluid valve, the mesh-like sealing element is connected to the elastic support cylinder 40, and the seal produced in this way is formed in the design of Fig. 1-3 on the inner circumferential surface 11 or in the version of Fig. 4 on the outer shell surface 21 and then the valve slide 20 is inserted into the housing 10.
[0066] Fig. Figure 5 shows a valve slide 20, a support cylinder 40 and a mesh-like sealing element with several nodes 30 and these connecting edges 31, 32 of a fluid valve according to a further embodiment of the present invention in a perspective exploded view.
[0067] In the present disclosure, "has an X" does not generally imply an exhaustive list, but is a shorthand for "has at least one X" and also includes "has two or more X" as well as "has Y in addition to X". Although exemplary embodiments were explained in the preceding description, it should be noted that a multitude of variations are possible. Furthermore, it should be noted that the exemplary embodiments are merely examples and are not intended to limit the scope of protection, applications, or structure in any way.Rather, the preceding description provides the skilled person with a guide for implementing at least one exemplary embodiment, whereby various modifications, particularly with regard to the function and arrangement of the described components, can be made without leaving the scope of protection as defined by the claims and these equivalent combinations of features. Reference symbol list 10 cases 11 Inner perimeter area 12 Access 20 valve slides 21 Outer shell area 22 Entrance opening 23 Passage 30 knots 31 meandering circumferential edge 32 Axial edge 40 support cylinders 41 lead
Claims
[1] Fluid valve comprising: a housing (10) having an inner circumferential surface (11) with access points (12); a valve slide (20) rotatable about an axis of rotation into different rotational positions, with an outer surface (21) facing the inner circumferential surface, and comprising a passage arrangement with at least one passage (23); and a seal that an elastic support cylinder (40); and a connected net-like sealing element with several nodes (30) and these connecting edges (31, 32) exhibits and is arranged between the inner circumferential surface (11) and the outer lateral surface (21), where In at least one first rotational position, at least two of the first access points are connected via the passage arrangement; In at least one second rotational position, at least two of these at least two first accesses are separated from each other by means of the valve slide; and In at least one of these two rotational positions, at least one of these first access points is enclosed by a mesh formed by a closed train of nodes and edges. [2] Fluid valve according to claim 1, characterized by that the sealing element is arranged between the support cylinder and the outer shell surface. [3] Fluid valve according to claim 1, characterized by that the sealing element is arranged between the inner circumferential surface and the support cylinder. [4] Fluid valve according to one of the preceding claims, characterized by that the seal is housing-tight. [5] Fluid valve according to claim 4, characterized by , that at least one access point is enclosed by a mesh formed by a closed train of knots and edges. [6] Fluid valve according to any one of the preceding claims 1-3, characterized by that the seal is valve-tight. [7] Fluid valve according to claim 6, characterized by , that: in at least one rotational position at least one access blocked by means of the valve slide from a closed train of nodes and The edges of the formed mesh are enclosed; and / or In at least one rotational position, at least one access point connected via the passage arrangement to at least one other access point is enclosed by a mesh formed by a closed train of nodes and edges; and / or at least one inlet opening of the passage arrangement formed in the outer surface of the valve slide is enclosed by a mesh formed by a closed train of nodes and edges. [8] Fluid valve according to any one of the preceding claims, characterized by , that: at least two access points are intersected by a plane that is perpendicular to the axis of rotation of the valve slide; and / or at least two access points are axially spaced apart in the direction of the rotation axis of the valve slide; and / or has a front face facing the inner circumferential surface and / or a front face of the sealing element facing the outer shell surface made of PTFE; and / or the support element contains at least one elastomer. [9] Fluid valve according to any one of the preceding claims, characterized by , that: at least one edge of the sealing element, which connects two nodes of the sealing element adjacent in the circumferential direction around the axis of rotation of the valve slide, is designed in a meandering manner; and / or at least one edge of the sealing element that connects two nodes of the sealing element that are axially adjacent in the direction of the rotation axis of the valve slide, is meandering in shape; and / or the sealing element and / or the support cylinder is continuous in the circumferential direction around the axis of rotation; and / or the sealing element is formed by at least one closed section of nodes and The mesh formed by the edges has a circumferential extent around the axis of rotation of the valve slide that is less than the circumferential extent of at least one access point. [10] Motor vehicle with at least one fluid valve according to any one of the preceding claims. [11] Method for manufacturing a fluid valve according to one of the preceding claims, wherein the mesh-like sealing element is connected to the elastic support cylinder (40); and wherein the seal produced in this way is then arranged on the inner circumferential surface (11) or outer shell surface (21); or the support cylinder (40) is already arranged on the inner circumferential surface (11) or outer shell surface (21) during the connection.
Citation Information
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