EP3307962A1 - Dispositif de montage pour un panneau de robinetterie - Google Patents

Dispositif de montage pour un panneau de robinetterie

Info

Publication number
EP3307962A1
EP3307962A1 EP16730767.7A EP16730767A EP3307962A1 EP 3307962 A1 EP3307962 A1 EP 3307962A1 EP 16730767 A EP16730767 A EP 16730767A EP 3307962 A1 EP3307962 A1 EP 3307962A1
Authority
EP
European Patent Office
Prior art keywords
fluid connection
connection element
mounting device
connection
fluid
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Withdrawn
Application number
EP16730767.7A
Other languages
German (de)
English (en)
Inventor
Paul Curty
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Aqua Art AG
Original Assignee
Aqua Art AG
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Aqua Art AG filed Critical Aqua Art AG
Publication of EP3307962A1 publication Critical patent/EP3307962A1/fr
Withdrawn legal-status Critical Current

Links

Classifications

    • EFIXED CONSTRUCTIONS
    • E03WATER SUPPLY; SEWERAGE
    • E03CDOMESTIC PLUMBING INSTALLATIONS FOR FRESH WATER OR WASTE WATER; SINKS
    • E03C1/00Domestic plumbing installations for fresh water or waste water; Sinks
    • E03C1/02Plumbing installations for fresh water
    • E03C1/021Devices for positioning or connecting of water supply lines
    • EFIXED CONSTRUCTIONS
    • E03WATER SUPPLY; SEWERAGE
    • E03CDOMESTIC PLUMBING INSTALLATIONS FOR FRESH WATER OR WASTE WATER; SINKS
    • E03C1/00Domestic plumbing installations for fresh water or waste water; Sinks
    • E03C1/02Plumbing installations for fresh water
    • EFIXED CONSTRUCTIONS
    • E03WATER SUPPLY; SEWERAGE
    • E03CDOMESTIC PLUMBING INSTALLATIONS FOR FRESH WATER OR WASTE WATER; SINKS
    • E03C1/00Domestic plumbing installations for fresh water or waste water; Sinks
    • E03C1/02Plumbing installations for fresh water
    • E03C1/04Water-basin installations specially adapted to wash-basins or baths
    • EFIXED CONSTRUCTIONS
    • E03WATER SUPPLY; SEWERAGE
    • E03CDOMESTIC PLUMBING INSTALLATIONS FOR FRESH WATER OR WASTE WATER; SINKS
    • E03C1/00Domestic plumbing installations for fresh water or waste water; Sinks
    • E03C1/02Plumbing installations for fresh water
    • E03C1/04Water-basin installations specially adapted to wash-basins or baths
    • E03C1/0408Water installations especially for showers
    • EFIXED CONSTRUCTIONS
    • E03WATER SUPPLY; SEWERAGE
    • E03CDOMESTIC PLUMBING INSTALLATIONS FOR FRESH WATER OR WASTE WATER; SINKS
    • E03C1/00Domestic plumbing installations for fresh water or waste water; Sinks
    • E03C1/02Plumbing installations for fresh water
    • E03C1/04Water-basin installations specially adapted to wash-basins or baths
    • E03C1/042Arrangements on taps for wash-basins or baths for connecting to the wall
    • EFIXED CONSTRUCTIONS
    • E03WATER SUPPLY; SEWERAGE
    • E03CDOMESTIC PLUMBING INSTALLATIONS FOR FRESH WATER OR WASTE WATER; SINKS
    • E03C1/00Domestic plumbing installations for fresh water or waste water; Sinks
    • E03C1/12Plumbing installations for waste water; Basins or fountains connected thereto; Sinks
    • E03C1/32Holders or supports for basins
    • E03C1/322Holders or supports for basins connected to the wall only
    • E03C1/324Holders or supports for basins connected to the wall only adjustable
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16LPIPES; JOINTS OR FITTINGS FOR PIPES; SUPPORTS FOR PIPES, CABLES OR PROTECTIVE TUBING; MEANS FOR THERMAL INSULATION IN GENERAL
    • F16L5/00Devices for use where pipes, cables or protective tubing pass through walls or partitions

Definitions

  • the present description relates to a mounting device for a
  • Fitting unit comprising a mounting device of the type mentioned, a basic element for a mounting device, a fluid connection element, and a method for assembling a fitting unit.
  • Permanently installed valve units for the connection of fluids such as gases or liquids offer the advantage of a high degree of robustness. Especially in industrial or public and semi-public areas, these advantages come to
  • fittings for example in the sanitary area, without externally accessible movable or manipulatable parts can be arranged.
  • US 2005/0044623 proposes a mounting device for a shower panel, in which the wall suspension takes place on the one hand on the existing line connections in the wall, and on the other hand, a suction cup for further support and fixation is used.
  • a shower panel without holes are fixed to a wall.
  • CN 103343557 indicates a fitting unit in which a dash panel is attached to the existing pipe connections in the wall.
  • gas connections are to be arranged starting from existing line connections in a wall at an ergonomically and / or operationally favorable position.
  • a dashboard panel or a fitting unit by means of
  • a fluid connection element described which also serves to attach the mounting device to the wall or other surface, such that the attachment can be made directly to an existing wall in the pipe connection.
  • the fluid connection element described is particularly easy to handle. It also offers the advantage of flexibly positioning the connection for the fittings according to the requirements.
  • a mounting device for a dashboard panel which mounting device comprises a base element and at least one fluid connection element, the base element on a front side means for attaching a dashboard panel and on a rear side of a
  • At least substantially planar contact surface comprises.
  • At least one passage opening for a fastening means is arranged in the base element, which extends from the rear side of the base element, in particular from the contact surface, to the front side of the base element, such that a fastening means can be guided through the base element at the at least one passage opening or passage opening.
  • the fluid connection element has a flow channel and a pressure surface, wherein the
  • Throughflow channel penetrates a plane of the pressure surface and wherein the pressure surface is dimensioned such that at least their maximum total cross-sectional extension is greater than at least one cross-sectional extension of the through hole.
  • the overall cross-sectional extension is understood to mean a measure "about everything.”
  • the overall cross-sectional extension is therefore a measure of the outer edges of the pressure surface. If, for example, an annular pressure surface is concerned, then the total cross-sectional extension is not the width of the ring between an outer radius and an inner radius, but the outer diameter. At least the smallest cross-sectional extension of the at least one passage opening is therefore smaller than the said
  • the fluid connection element has a connection which extends from the plane of the pressure surface and projects from it.
  • the flow channel extends through the nozzle.
  • the nozzle is generally circular cylindrical or in other embodiments generally conical, frusto-conical, formed with a circular cross-section, wherein the cone tapers towards the free end of the nozzle.
  • Generally cylindrical or generally conical in this context means that, of course bevels or recesses or other structures, such as a thread, may be arranged on the outer circumference of the nozzle, as long as the envelope of the contour has a cylindrical or conical shape.
  • At one axial end of the nozzle is a
  • the at least one passage opening is designed and arranged such that the connecting piece as fastening means to at least two different
  • Positions on the base element can be passed through the base element.
  • the at least one passage opening and the fluid connection element are dimensioned coordinated with one another such that the connection piece passes through the at least one passage opening, and this at at least two positions on the base element, but not the contact surface, and thus when the connection piece is carried out an edge of
  • Passage opening designed and arranged such that at least two possible mounting positions exist whose distance from each other is l OOmm or less.
  • the mounting device is further designed such, respectively, the at least one through hole is designed and arranged such that the selection of possible attachment positions can be done either continuously or in the smallest possible steps.
  • the distance between two possible attachment positions is 100 mm or less, in particular 80 mm or less, and more particularly 50 mm or less.
  • the at least one passage opening is further designed and arranged such that at least three possible attachment positions are possible, and in particular at least five possible attachment positions are provided.
  • the fluid connection element is integrally formed integrally with the nozzle.
  • One-piece is here on the one hand to understand that the fluid connection element with the neck seamless, made of a blank, or also that the fluid connection element insoluble,
  • the fluid connection element is detachable, in particular non-destructively detachable, composed of a pressure element and a, in particular hollow-drilled, bolt on which the neck is formed, joined.
  • the bolt may be screwed into the pressure element. It is understood that care must be taken in these embodiments, a corresponding seal between the bolt and the pressure element, so that no fluid leakage from the flow channel through the joint between the bolt and the pressure element can be done.
  • a corresponding seal between the bolt and the pressure element so that no fluid leakage from the flow channel through the joint between the bolt and the pressure element can be done.
  • the Bolt surrounding end face of the pressure element formed the pressure surface.
  • the nozzle is shaped and configured to provide fluid communication with a conduit wall port, directly or with an intermediate adapter or adapter such as the port liner described below.
  • an external thread is formed on the neck, such that the fluid connecting element with the neck has an external thread on the neck.
  • attachment positions are incrementally determined, for example, by the discrete passage openings.
  • a dashboard panel is to be fastened on a surface, for example on a wall, in such a way that a fitting of the dashboard panel comes to rest at a defined position.
  • an attachment point is specified on the surface on which the assembly is to take place.
  • the surface may be, for example, a surface of an upright wall and the
  • Attachment point a pipe connection in the wall.
  • Attachment point of the surface such that the base member can be pressed against the surface during tightening of the screw and frictionally connected thereto.
  • the position of the fittings can be chosen flexibly, but is fixed after installation.
  • the valves may be, for example, gas connections, shut-off devices, faucets, shower heads and the like, and this list is by no means to be understood as conclusive. In this case, the assembly can be done without new attachment points in the area where the dashboard panel is to be arranged must be created. For this finds as
  • Attachment point in particular a line connection Use to which a fitting of the dashboard panel is to be connected. This is made possible, on the one hand, by the fact that the at least one element is attached to the basic element
  • Passage opening is designed such that at least two
  • Attachment positions are provided, and on the other hand in that the fluid connection element with the pressure surface is designed so that it simultaneously, in addition to establishing a fluid connection with the
  • a user-accessible connection points for gases at given wall connections in easily accessible places. This can be advantageous, for example, in industrial applications but also, for example, in hospitals.
  • the attachment point is selected at a point at which a line connection is arranged on the surface.
  • the line connection can lie within a structure on which the surface is arranged, or the line connection can protrude from this structure on the side of the said surface.
  • the line connection may be a connection of a supply line for a gaseous or liquid medium, for example a water connection.
  • the line connection can also be a connection of a return line, for example a sewer line.
  • the said structure is for example a wall.
  • Base element coincides with the location of the surface on which the
  • the fluid connection element has a connection which extends from the pressure surface and in the interior of which a part of the flow channel of the fluid connection element is arranged.
  • the nozzle according to certain embodiments
  • the passage opening is dimensioned such that the nozzle can be passed through the passage opening.
  • the nozzle serves as a fastening means for the base element.
  • the nozzle of the fluid connection element is screwed to the line connection, whereby the pressure surface comes to rest on the edge of the passage opening. With a sufficient tightening torque of the screw connection, the base element is fixed to the surface.
  • the fluid connection element has a pressure element and a bolt which are detachably joined together.
  • the neck is formed on the bolt.
  • the pressure element comprises an inner Flow channel extending through the pressure surface. In this channel, for example, an internal thread is formed.
  • the bolt is facing
  • Line connection can be made directly on the one hand, for example by direct screwing, in particular screwing, the nozzle with the or in the line connection, or can also
  • connection box as described in more detail below.
  • Mounting device this can also be used when several, in particular two, line connections are available. This can be for
  • Example connections for hot and cold water but also connections for different gases or liquids.
  • the fitting unit comprises a mounting device according to the present description and a dashboard panel having means by which the dash panel can be fastened to corresponding means of the base plate of the mounting device and at least one fitting.
  • Said method comprises selecting a desired position of a fitting to determine the position of a lead terminal on the surface from which Distance of the positions to determine the required mounting position, which must have the line connection on the base element, so that the valve reaches the desired position, the base element with its back to the surface so that the line connection to the required
  • Fixing position with a through hole of the base element comes to cover, and to connect the fluid connection element from the front of the base element ago with the line connection and in particular to screw.
  • it is a method for assembling a
  • Fitting unit on an upright surface comprising selecting a desired height of a fitting to determine the height of a line connection on the upright surface, to determine from the height difference the required position, which must have the line connection to the base element, so that the valve reaches the desired height to apply the base member with its rear side to the upstanding surface such that the lead terminal coincides with a through hole of the base member at the required position, and connect and particularly screw the fluid fitting member from the front side of the base member to the lead terminal ,
  • the base element By appropriately tightening the screw connection, the base element can be frictionally connected to the surface on which the fitting unit is fastened in each of the aforementioned assembly methods.
  • the method may further include connecting a fluid port of the valve to a fluid port provided on a fluid connector.
  • flexible connecting elements for example hoses, can be used.
  • the method include, in particular after the necessary fluid connections are made, the dash panel corresponding to the connection
  • the basic element has in particular a longitudinal extension and a
  • Width extension the length extension is greater than that
  • Width extension According to another aspect of the present invention
  • Revelation is the at least one through hole arranged such that the different attachment positions are arranged in the direction of the longitudinal extent of the base member.
  • the at least one passage opening comprises at least one oblong hole, or is a
  • the mounting positions can be selected continuously and continuously.
  • the slot is arranged in exemplary embodiments such that the longitudinal axis of the elongated hole or slots in
  • a single elongated hole is arranged, which covers the entire adjustment range, within which the attachment positions can be selected, and wherein the
  • Length extension of the slot is at least as large as the desired adjustment range, plus the diameter of a leading through the slot fastener.
  • Adjustment range the mounting positions are continuously and continuously selected.
  • a plurality of slots are arranged sequentially along their parallel or identical longitudinal axes.
  • a fastening position on the base element can be selected in regions continuously and continuously.
  • At least two oblong holes are arranged, the longitudinal axes of which are parallel are arranged to each other. If these are arranged offset in the direction of their transverse axis to each other, so this allows the arrangement of the base element also in the case in which there are multiple line connections on the surface to which the base element is to be attached.
  • the mounting device may have at least two individual passage openings, which are arranged in a row.
  • the passage openings are arranged along a straight line. The distance between adjacent passage openings, measured between the opposite edges of two adjacent openings, is less than five times the cross-sectional dimension of a
  • Through hole measured perpendicular to the orientation of said row or to the line.
  • said distance is less than three times, less than twice, less than the simple, less than half or less than one third of said
  • Cross-sectional dimensions and more particularly a quarter or less of said cross-sectional dimension.
  • adjacent vias overlap.
  • the arrangement of individual lead-through openings on the one hand has the disadvantage that the choice of
  • Fixing position can not or can not be continuous continuously.
  • the distances in which the mounting position can be selected, among other things, from the above distances of
  • the through holes are at least approximately circular openings which receive the neck with little play.
  • Diameter be arranged in the range of 23 to 25 millimeters. Other diameters are of course also possible within the scope of the present disclosure. Appropriately, these can be chosen so that the nozzle of the fluid connection element with a certain
  • a mounting device of the type mentioned in which the through openings comprise or are openings with at least approximately circular cross-section.
  • the orientation of the row or the straight line defines the direction along which the different attachment positions can be selected. In this case, according to an even more specific aspect of the
  • Mounting device the row or the straight line along a transverse extension or a longitudinal extent of the base element.
  • At least two parallel rows of openings are arranged.
  • the pitch of the openings in both rows are identical. This makes it possible to flexibly use the mounting device there, where more than two line connections are available and should be used. It may prove to be expedient if the passage openings are dimensioned in one of these rows so that a fastener is received in each direction with little play, as explained above, while the through holes are made in one or more other rows that a larger game is generally possible. This allows tolerances in the arrangement of
  • the mounting device may further comprise a connection box.
  • Said connecting bushing has a first thread which is suitable and intended to be screwed to a line connection, for example a wall connection given on site.
  • Connecting bush further has a second thread, which corresponds to a thread of the fluid connection element, such that by means of the second thread of the nozzle of the fluid connection element with the
  • Connection box can be screwed.
  • a groove may be provided on the connection bushing and / or on the fluid connection element, which is provided and arranged in such a way to receive an O-ring for sealing between the connection bushing and the fluid connection element.
  • the mentioned threads can be arranged as internal and / or external threads.
  • one of the threads can be designed as an internal thread and the other of said threads as an external thread.
  • the connection sleeve has an external thread, which is provided to be screwed into an internal thread of the wall connection, as well as an internal thread, which corresponds to an external thread on the nozzle of the fluid connection element.
  • the above-described method for mounting a fitting unit further comprises, in this case, to screw the connection box to the pipe connection.
  • the fluid connection element is connected to the second thread of the connection sleeve
  • an exemplary mounting device in which at least one row of elongated holes is arranged, whose longitudinal axes at least approximately perpendicular or parallel to the orientation of the series.
  • fitting unit comprising a
  • the dashboard means, by means of which the dashboard panel
  • the fitting assembly further includes flexible conduits for connecting the fluid port of the fitting to a fluid port provided on a fluid port member.
  • the flexible lines make it possible to make this connection even if the relative position of a fitting and a fluid connection element are not known in advance, as in the
  • a fluid connection element has basically become known, for example, from DE 20 2011 102 730 U1.
  • the fluid connection element described here has a first and a second end face, between which an axial extent is defined. Starting from the first end side extending in the direction of the axial extent of the first channel is disposed within the fluid connection element.
  • the fluid connection element further has an outer side extending transversely to the axial extension groove which is bounded by two axial boundary walls.
  • the groove extends in its length, in particular over at least part of the circumference of the fluid connection element, and may in particular be formed as a completely circumferential groove.
  • the cross section around which the said circumference extends can be circular, but in principle also have other, for example polygonal, shapes.
  • the fluid connection element has two cylindrical rings on which the axial
  • Limiting walls of the groove are arranged and between which the groove is arranged.
  • a second channel extends into the fluid connection element.
  • the second channel is in fluid communication with the first channel within the fluid connection element, such that the first channel and the second channel together form a flow channel connecting the first end face to the groove.
  • the fluid connection element has a connection which extends from the first end side in the direction of the second end side.
  • the first channel extends through the neck.
  • a cross-sectional enlargement is arranged, whereby a radial step is formed with an end face, wherein said end face, which is formed by the radial step, forms the pressing surface of the fluid connection element.
  • the radial step is a transition to a larger cross-section than that of the neck. It is therefore implicit that the pressure surface facing the first end or the free end of the nozzle. It will also be implicit to one skilled in the art that the radial step must be sized sufficiently large to serve as a pressure surface; this dimensioning knows to make the expert because of his expertise.
  • ring-shaped element which is arranged surrounding the cylindrical rings, and which has on its lateral surface a connection opening between a radially inner surface and a radially outer surface of the having annular element.
  • a fluid-tight arrangement is made between the cylindrical rings and the annular element such that the groove of the fluid connection element provides fluid communication between the
  • Line connection is also a connection between the
  • annular element is rotatably arranged on the rings in its circumferential direction.
  • the circumferential position of the terminal provided on the annular member can be varied.
  • the annular member is provided with a further threaded hole through which a screw or a threaded pin can be screwed, which causes an axial securing of the annular element within the groove and this optionally sets in the circumferential direction.
  • Thread axis extending in the direction of the axial extent of the fluid connection element.
  • the thread is used in particular for direct or indirect screw connection of the fluid connection element with a line connection. As described above, this screw is from the front of a
  • Another exemplary embodiment of the fluid connection element is characterized in that said thread is formed on the outer surface of the nozzle.
  • the first channel is centric in the
  • the fluid connection element can be formed in one piece, integral, or it can be detachably joined from a pressure element and a bolt on which the connection piece is formed.
  • Fig. 2 is a front view of an exemplary embodiment of a
  • FIG. 3 shows further exemplary embodiments of a basic element of a mounting device described here
  • FIG. 4 shows an exemplary fluid connection element
  • 5 is a sectional view of the fluid connection element of Figure 4
  • Fig. 6 shows an example of the attachment of a basic element to a
  • FIG. 1 shows a fitting unit 1, which comprises a dash panel 10 and a mounting device, wherein the mounting device comprises a base element 20 and a fluid connection element 50.
  • the base member 20 has a front side, which indicates the dashboard panel, as well as a
  • This back has a flat contact surface, with which the base element can be arranged on a wall, not shown, or other surface.
  • a fitting is arranged in a known per se, in the example shown, a receiving device 11 for a shower head. Furthermore, a
  • Armature connection 12 is arranged, can be passed over the water to the shower head.
  • Armature connection 12 can be passed over the water to the shower head.
  • Mounting device comprises a hollow bored nozzle 52, in which a channel 51 is arranged.
  • the bore in the nozzle communicates with a radial bore which opens into a groove which acts as a fluid distributor in the fluid connection element.
  • the fluid connection element 50 will be further explained in detail below.
  • On the nozzle 52 an external thread is arranged. through This external thread, the fluid connection element 50 are screwed into a line connection, not shown.
  • a fluid for example, in the example shown a shower panel water, from the
  • the base element can be mounted in this way very easily and without dowel holes to drill on a wall.
  • the dashboard panel 10 is connected in a manner known per se via suitable means 13 and 14 and corresponding means 21 and 22 to the base element. In this way, the dashboard panel is fixed to the wall.
  • the view of a front side of the base element 20 in FIG. 2 discloses an arrangement of a plurality of passage openings 23 in a row or along a straight line, the orientation of the row or the straight line extending in the direction of the longitudinal extent of the base element.
  • the passage openings 23 are arranged with a raster or Operaungsmass t. This graduation measure is constant for all passage openings, which is not mandatory, but useful.
  • Each of the through holes 23 offers a discrete
  • the increments of the fastening positions are determined by the graduation mass or, for a given diameter D of the illustrated through holes, by the distance s of mutually opposite edges of the through holes.
  • This distance s is chosen to be significantly smaller than the diameter D.
  • the diameter D is selected, for example, in a range of 23 to 25 millimeters.
  • the graduation may be for example 30 mm, resulting in a distance s of about 6 mm results.
  • the distance s in this case is about one quarter of the diameter of the through holes.
  • these measures are not intended to be limiting; the respective mass, in particular the cross-sectional dimensions of
  • Through holes can be selected in an individual case expediently and depending, for example, on the outer diameter of the element to be performed.
  • FIG. 3 shows further exemplary embodiments of the arrangement of at least one passage opening on a base element of a
  • FIG. 3 a shows an embodiment in which a single oblong hole 24 with a longitudinal axis which extends at least substantially in the direction of the longitudinal extension of the longitudinal axis
  • Base element 20 extends, is arranged and covers the entire adjustment range. Compared to the embodiment shown in Figure 2, this has the advantage that the mounting position along the longitudinal axis of the elongated hole 24 can be selected continuously and continuously. On the other hand, the base element is fixed to a surface only when the fastener is tightened with a minimum tightening torque, such that a
  • Figure 3b) shows a Embodiment which is suitable for fastening a fitting unit which requires two pipe connections, for example for hot water and cold water, or for the supply of different gases. There are 2 rows of
  • Long holes 25 are arranged, whose longitudinal axes along the orientation of the row, or a straight line on which the slots 25 are arranged, are oriented.
  • a second series of oblong holes 26 these are arranged with their longitudinal axis transversely and in particular substantially perpendicular to the orientation of the row.
  • FIG. 4 shows an exemplary embodiment of the fluid connection element 50.
  • the fluid connection element 50 has a first end face 65 and a second end face 66. Between the end faces 65 and 66, an axial extension of the fluid connection element along a longitudinal axis 57 is defined.
  • the fluid connection element comprises a connecting piece 52, which is provided with an external thread 54.
  • a first flow channel not visible in the present representation extends axially through the neck and within the fluid connection element.
  • a radial step is formed, with an end face 53 which forms the contact surface explained in connection with FIG.
  • a circumferential groove 56 is further arranged on the fluid connection element.
  • a second, radially extending, channel 55 is arranged, which is in communication with the first channel, as will be explained in more detail below in connection with FIG.
  • the groove 56 is bounded by two axial boundary walls 58 and 59. Each boundary wall 58 and 59 is disposed on a cylindrical rim 60 and 61, respectively.
  • On each of the Wreaths is another circumferential groove 62 and 63 for receiving a
  • tool projections 64 are arranged on the second end face 66, which for screwing the
  • External thread 54 with a counterpart, for example, with a thread that is formed within a connecting line in a wall serve.
  • FIG. 5 shows the fluid connection element 50 in a section along AA in FIG. 4, wherein furthermore an annular element 70 is shown, which covers and closes the groove 56.
  • the first channel 51 is designed as an outgoing from the first end face 65 axial blind hole.
  • a second channel 55 extends from the bottom of the groove 56 and intersects the first channel 51, such that a fluid connection between the first end face 65 and the groove 56 of the fluid connection element 50 is made.
  • the annular element 70 covers the groove 56 and surrounds the cylindrical rings 60 and 61. O-rings 71 and 72 are inserted into the receiving grooves explained in connection with FIG. 4 for receiving a sealing element. By means of this, a fluid-tight arrangement between the annular element and the rings is made.
  • connection opening 73 is arranged, which extends from a radially inner to a radially outer wall of the annular element.
  • the opening 73 is designed as a bore with an internal thread.
  • the annular member further includes a second threaded bore in which a screw 74 is disposed.
  • a fluid which flows, for example, from the end face 65 of the fluid connection element 50 through the flow channel formed by the first channel 51 and the second channel 55 into the groove 56, distributed in the circumferential groove 56 and can flow out through the opening 73 of the annular element 70.
  • the circumferential position of the radial bore 55 is predetermined.
  • the annular element 70 be placed on the wreaths in a suitable for connecting a line and easily accessible position on the periphery of the fluid connection element.
  • a hose end can be screwed directly, or it can also be a suitable
  • the fluid connection element shown here shows a one-piece, integral embodiment.
  • the fluid connection element can also be releasably joined from a pressure element and a bolt on which the connection piece is formed.
  • the pressure element comprises in this case the area between the pressure surface 53 and the second end face 66.
  • the bolt is screwed, for example, in an internal thread of the pressure element, and the joint is suitably sealed so that no fluid leakage from the flow channel formed by the channels 51 and 55 can be done through the joint.
  • FIG. 6 illustrates an exemplary mounting of a base element 20 on a wall 100 according to an embodiment of wall mounting, wherein only one half of the essentially rotationally symmetrical arrangement is shown.
  • a wall terminal 101 is arranged, which is arranged with an open end facing an opening of the wall.
  • the wall connection 101 is fixed on site.
  • this is a standard 14 "wall water connection, but not by way of limitation
  • Connection sleeve 40 screwed.
  • connection sleeve 40 External thread of the connection sleeve 40 can by means of a suitable
  • the tubular connecting sleeve comprises on its inner wall a groove in which an O-ring 41 is inserted.
  • the connection bush further comprises an internal thread.
  • a fluid connection element 50 is screwed in the manner described above and seals with the connection sleeve 40 via the O-ring 41 from.
  • Connection bush corresponds to the external thread of the fluid connection element 50.
  • the fluid connection element shown here corresponds to the external thread of the fluid connection element 50.
  • the external thread extends only over part of the axial extent of the nozzle 52, while another portion of the outer surface of the nozzle smoothly executed and for establishing a fluid-tight configuration with the O-ring 41 of the connection sleeve is provided. It also differs in that an external hexagon 67 is provided as an approach for a tool for screwing the fluid connection element. In this way, a fluid can flow from the wall connection into the channel 51 of the fluid connection element 50 and from there via the channel 55 into the fluid distribution groove 56 which is closed by the annular element 70
  • the fluid connection element rests with the pressure surface 53 on the base element. Between the base member 20 and the wall 100, a spacer plate 103 is arranged. The spacer plate 103 ensures a defined transmission of the force with which the base member 20 is pressed by the fluid connection element when tightening the assembly in the connecting sleeve through the through hole 23 of the base member 20 and frictionally secured to the wall.
  • connection bushing can be used to assemble the connection bushing
  • Wall connection 101 and the fluid connection element 50 to ensure.
  • the thread of the wall connection is specified by the customer, and points
  • connection sleeve 40 has a matching thread, wherein thread tolerances caused by possible unevenness and damage to the thread of the wall connection caused by the above-mentioned use of a sealing material can be compensated and sealed.
  • thread tolerances caused by possible unevenness and damage to the thread of the wall connection caused by the above-mentioned use of a sealing material can be compensated and sealed.
  • connection sleeve and the fluid connection element are designed freely and conveniently for the intended use. A seal between the connection sleeve and the fluid connection element can then be ensured by suitable means, such as said O-ring.
  • connection bushing 40 is suitable for compensating for positional tolerances of the free end of the wall connection 101 in the wall 100.

Landscapes

  • Engineering & Computer Science (AREA)
  • Health & Medical Sciences (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Hydrology & Water Resources (AREA)
  • Public Health (AREA)
  • Water Supply & Treatment (AREA)
  • General Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Environmental & Geological Engineering (AREA)
  • Valve Housings (AREA)
  • Connection Of Plates (AREA)

Abstract

L'invention concerne un dispositif de montage pour un panneau de robinetterie, lequel dispositif de montage comporte un élément de base (20) et au moins un élément de raccord de fluide (50), l'élément de base comportant, sur un côté avant, des moyens (21, 22) de fixation d'un panneau de robinetterie ainsi que, sur un côté arrière, une surface d'appui au moins sensiblement plane, au moins une ouverture traversante (23) pour un moyen de fixation étant disposée dans l'élément de base, laquelle ouverture traversante s'étend à partir du côté arrière de l'élément de base jusqu'au côté avant de l'élément de base, de telle sorte qu'un moyen de fixation puisse être guidé à travers l'élément de base au niveau de l'au moins une ouverture traversante, l'élément de raccord de fluide comprenant en outre un canal d'écoulement (51) ainsi qu'une surface de pression (53), la surface de pression étant dimensionnée de telle sorte qu'au moins son étendue maximale globale en section transversale soit supérieure à au moins une étendue en section transversale de l'ouverture traversante, et l'au moins une ouverture traversante étant réalisée et disposée de telle sorte qu'une tubulure (52) de l'élément de raccord de fluide puisse être, en tant que moyen de fixation, guidée à travers l'élément de base en au moins deux positions différentes sur l'élément de base.
EP16730767.7A 2015-06-12 2016-06-09 Dispositif de montage pour un panneau de robinetterie Withdrawn EP3307962A1 (fr)

Applications Claiming Priority (3)

Application Number Priority Date Filing Date Title
EP15171958 2015-06-12
EP15181531.3A EP3103931A1 (fr) 2015-06-12 2015-08-19 Dispositif de montage pour un panneau d'un armature
PCT/EP2016/063222 WO2016198553A1 (fr) 2015-06-12 2016-06-09 Dispositif de montage pour un panneau de robinetterie

Publications (1)

Publication Number Publication Date
EP3307962A1 true EP3307962A1 (fr) 2018-04-18

Family

ID=53442541

Family Applications (2)

Application Number Title Priority Date Filing Date
EP15181531.3A Withdrawn EP3103931A1 (fr) 2015-06-12 2015-08-19 Dispositif de montage pour un panneau d'un armature
EP16730767.7A Withdrawn EP3307962A1 (fr) 2015-06-12 2016-06-09 Dispositif de montage pour un panneau de robinetterie

Family Applications Before (1)

Application Number Title Priority Date Filing Date
EP15181531.3A Withdrawn EP3103931A1 (fr) 2015-06-12 2015-08-19 Dispositif de montage pour un panneau d'un armature

Country Status (3)

Country Link
US (1) US20180106020A1 (fr)
EP (2) EP3103931A1 (fr)
WO (1) WO2016198553A1 (fr)

Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE102020209623B4 (de) * 2020-07-30 2023-02-09 Peter Dimnik Montageplatte zur Wandmontage zumindest zweier Installationsfittings, Montagesystem sowie Verfahren zur Montage
DE102021000751A1 (de) 2021-02-13 2022-09-01 Eckhard Gransow Armaturenpaneel

Family Cites Families (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2903712A (en) * 1956-07-13 1959-09-15 Acorn Eng Co Fixture carrier construction
US4927083A (en) * 1989-05-09 1990-05-22 Daunt N Charles Elongated shower head
US20050044623A1 (en) 2003-09-03 2005-03-03 Hua-Song Zhou Fast pedestal mechanism for shower panel
US7657949B2 (en) * 2007-06-01 2010-02-09 Sam Zhadanov Hollow shower panel
GB201006898D0 (en) * 2010-04-26 2010-06-09 Kohler Mira Ltd Fluid connectors
US20120255114A1 (en) * 2011-04-08 2012-10-11 Lifetouch Innovations LLC Pre-plumbed shower panel with clustered jets
DE202011102730U1 (de) * 2011-06-08 2011-12-05 Arco Armaturenfabrik Obrigheim Kg Schwenkverschraubungseinrichtung für Anwendungen in fluidtechnischen Leitungssystemen
CN103343557B (zh) 2013-06-27 2015-02-11 福建欧联卫浴有限公司 一种新型淋浴龙头

Also Published As

Publication number Publication date
EP3103931A1 (fr) 2016-12-14
US20180106020A1 (en) 2018-04-19
WO2016198553A1 (fr) 2016-12-15

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