EP2209101A2 - Présentoir modulaire réalisé par technique d'encliquetage - Google Patents

Présentoir modulaire réalisé par technique d'encliquetage Download PDF

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Publication number
EP2209101A2
EP2209101A2 EP09015483A EP09015483A EP2209101A2 EP 2209101 A2 EP2209101 A2 EP 2209101A2 EP 09015483 A EP09015483 A EP 09015483A EP 09015483 A EP09015483 A EP 09015483A EP 2209101 A2 EP2209101 A2 EP 2209101A2
Authority
EP
European Patent Office
Prior art keywords
information carrier
receptacle
stand
holding
pressure piston
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.)
Granted
Application number
EP09015483A
Other languages
German (de)
English (en)
Other versions
EP2209101A3 (fr
EP2209101B8 (fr
EP2209101B1 (fr
Inventor
Horst-Werner Maier-Hunke
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.)
Durable Hunke and Jochheim GmbH and Co KG
Original Assignee
Hunke and Jochheim
Durable Hunke and Jochheim GmbH and Co KG
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 Hunke and Jochheim, Durable Hunke and Jochheim GmbH and Co KG filed Critical Hunke and Jochheim
Publication of EP2209101A2 publication Critical patent/EP2209101A2/fr
Publication of EP2209101A3 publication Critical patent/EP2209101A3/fr
Application granted granted Critical
Publication of EP2209101B1 publication Critical patent/EP2209101B1/fr
Publication of EP2209101B8 publication Critical patent/EP2209101B8/fr
Not-in-force legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09FDISPLAYING; ADVERTISING; SIGNS; LABELS OR NAME-PLATES; SEALS
    • G09F15/00Boards, hoardings, pillars, or like structures for notices, placards, posters, or the like
    • G09F15/0006Boards, hoardings, pillars, or like structures for notices, placards, posters, or the like planar structures comprising one or more panels
    • G09F15/0056Boards, hoardings, pillars, or like structures for notices, placards, posters, or the like planar structures comprising one or more panels portable display standards
    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09FDISPLAYING; ADVERTISING; SIGNS; LABELS OR NAME-PLATES; SEALS
    • G09F1/00Cardboard or like show-cards of foldable or flexible material
    • G09F1/10Supports or holders for show-cards
    • G09F1/14Supports or holders for show-cards in the form of legs
    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09FDISPLAYING; ADVERTISING; SIGNS; LABELS OR NAME-PLATES; SEALS
    • G09F7/00Signs, name or number plates, letters, numerals, or symbols; Panels or boards
    • G09F7/18Means for attaching signs, plates, panels, or boards to a supporting structure

Definitions

  • the invention relates to a stand for holding at least one substantially flat and extending in a vertical direction information carrier, with a holding base having a receptacle with a holding opening through which the information carrier protrudes in the vertical direction, wherein the holding opening of at least one at least partially transverse to Height direction extending retaining lip is limited and extends the recording in the height direction behind the retaining opening.
  • the invention relates to a kit for a stand with a base and at least one flat and connectable to the base information carrier.
  • Positioners for substantially flat information carriers are known from the prior art and are widely used to present sheet-shaped information material.
  • the sheet-like information material in this case often has a format in the size DIN A4 or less and is held between two presentation surfaces, of which at least one is transparent.
  • Displays for larger information material for example in the format DIN A2, are also known
  • the pivotable attachment of the information carrier to a standable on a table base of the erector has the US 5,408,774 a clamping mechanism in which a provided on an edge of the information carrier mounting portion is inserted.
  • the clamping mechanism of this document has a two-legged holding forceps, which comprises a substantially circular cylindrical trained receiving volume.
  • the also circular cylindrical shaped attachment portion of the information carrier is positively received by the receiving volume and can be tilted about an aligned with the longitudinal axis of the circular cylindrical receiving volume pivot axis.
  • One of the two legs of the holding forceps is substantially non-deformable formed as a holding leg and the second as a clamping leg.
  • the clamping leg can be deflected away from the holding leg, wherein it is at least partially elastically deformed.
  • a spring force generated by the elastic deformation in the clamping leg presses the fastening portion against the retaining leg, whereby the fastening portion is held in the receiving volume.
  • a disadvantage of this stand is that the elastically deflectable clamping leg of the holding forceps difficult to exchange information carriers and is not adaptable to different information carrier. Furthermore, the clamping leg wears due to the elastic deformation in its deformation region.
  • the base is designed here in such a way that the side wall sections of the base bounding the receiving volume can not be significantly deformed, so that the fastening section would have to be pressed into the essentially circular-cylindrical receiving volume.
  • the receiving volume is shaped so that the attachment portion can be easily inserted into it.
  • the side wall portions of the base can not hold the attachment portion with an elastic holding force in the receiving volume.
  • the attachment portion is clamped over a laterally protruding through the side wall portions in the receiving volume clamping screw.
  • the mounting portion has three receiving holes for the clamping screw, which are arranged so that the information carrier can be clamped in three different pivoting positions. Also in this holder, the exchange of the information carrier is complicated in particular by the clamping screw and the holder is not adaptable to different information carrier.
  • the object is achieved in that at least one displaceably arranged in the support base pressure piston is provided, with which the at least one retaining lip is connected to transmit motion
  • the object is achieved for the kit mentioned above in that the information carrier with a mounting portion forms an integrally manageable configured first presentation module, the presentation assembly on the mounting portion in the socket is clamped and the kit with at least one and exchangeable against the first presentation module further presentation module expandable is.
  • the solution according to the invention is structurally simple and has the advantage that the pressure piston is formed separately and thus elastically deflectable in a rectilinear motion, without being significantly deformed. Consequently, the pressure piston, which may be substantially rigid, does not wear out in operation by elastic deformation. Also, the separately formed Antikkolben be interchangeable received by the support base configured. Thus, adapted to different information carrier Antikkolben can be used in the support base, whereby the stand is flexible. Even through intensive use possibly still worn pressure piston can be replaced, so that the rest of the stand can continue to be used.
  • the information carrier can be held pivotably about a pivot axis extending through the receptacle by the pressure piston in the receptacle.
  • the height direction can be substantially perpendicular point the hatch out of the seat. This orientation of the height direction should be unchanged below, even if the information carrier is pivoted out of the starting position in a deflection position.
  • the kit may include pre-assembled assemblies or precursors, which may facilitate installation of the erector.
  • the retaining base may comprise at least one separate spring element, against the spring force of the pressure piston, the retaining opening is movable in an enlarged manner.
  • the spring force can act in a direction transverse to the height direction clamping direction and the An horrkolben against the spring force, the retaining hole to be displaced enlarging.
  • the spring elements can also be pretensioned.
  • a screw element aligned along the spring force can be provided in the retaining base, which can be connected in a motion-transmitting manner to one end of at least one of the spring elements.
  • the length of the spring element can be changed elastically and the spring element can be biased by a predetermined amount.
  • the spring elements may be formed as a helical spring formed of spring steel, which wear only insignificantly by their elastic deformation. Should the spring element nevertheless wear out over time and lose spring force, for example, it can simply be exchanged for a new spring element.
  • the pressure piston can have a contact surface pointing into the receiving area, which extends away from the holding opening in the height direction.
  • the pressure surface can extend at least partially opposite to the clamping direction, the recording expanding.
  • a recording surface which widens in its course produces a recording which is at least partially convex.
  • the information carrier inserted into the receptacle through the holding opening can thus be used against movements against the height direction and thus against unintentional disconnection of the information carrier be secured by the support base.
  • the pressure surface may be formed specifically at a certain attachment portion, so that the pressure piston and the information carrier can form a matched pair of molds, which ensure optimum retention of the information carrier in the support base.
  • the pressure surfaces of possibly more pressure pistons can be spaced from each other in a direction transverse to the insertion and the clamping direction longitudinal direction of the recording.
  • the gaps between the pressure surfaces may possibly engage on the side of the information carrier, which is arranged in the receptacle, provided guiding or holding elements.
  • the information carrier can be secured against unwanted movements, in particular along the longitudinal direction.
  • the retaining elements can lock with the gaps.
  • non-continuous pressure surfaces require less material than continuous pressure surfaces and contribute to a lighter-sized stand.
  • several pressure pistons limit the recording in different and in particular opposite directions and may possibly be arranged opposite one another, wherein acting on the pressure piston on the recording spring forces act.
  • the pressure piston may have a continuous pressure surface which extends in the longitudinal direction substantially over the entire length of the receptacle.
  • the stand may comprise at least one information carrier, which may be provided in one of its side regions with an at least partially form-fitting accommodatable in the receiving attachment portion.
  • the attachment portion may in particular be at least partially formed complementary to the receptacle and be arranged in the receptacle, wherein the pressure piston may be deflected against inserted in the receptacle attachment portion against the spring force. With the spring force of the pressure piston is clamped in the receptacle.
  • the recording can form a tilting bearing with the attachment portion, via which the information carrier is pivotally connected to at least one pivot axis with the support base.
  • the attachment portion may be spherical and the receptacle may be substantially complementary to the attachment portion, ie, for example, spherical. If such an information carrier is used in the receptacle described, then it can be tilted by as many pivot axes as possible, with all pivot axes intersecting in the center of the sphere.
  • the receptacle and the attachment portion are cylindrical and the holding opening is slit-shaped are formed, wherein the receptacle and the holding opening can extend in the longitudinal direction. If the attachment section is now inserted into the receptacle and both the receptacle and the attachment section have a substantially circular cross-section, the information carrier can be tiltable about a pivot axis running parallel to the longitudinal direction.
  • the pivot axis can thereby be aligned substantially with the longitudinal axis extending in the longitudinal direction of the substantially and at least partially circular cylindrical shaped receptacle. Limiting surfaces of the circular-cylindrical sections of the receptacle can have a constant distance to the longitudinal axis perpendicular to the longitudinal direction.
  • the information carrier can now be pivoted about the pivot axis without changing the position of the pressure piston or the spring force.
  • the attachment portion may also be formed differently and with a different cross-sectional shape of the cross section.
  • the attachment portion may have an oval cross-section whose longer axis may be parallel to the presentation surfaces and the height direction. If the thus-shaped information carrier is pivoted, the pressure piston, which is also partially formed in a cylindrically cylindrical manner, can be moved further counter to the clamping direction to increase the spring force. In this embodiment, the information carrier may be held by the changing spring force in a target pivot position in which the spring force is minimal, or be forced back into this by the spring force.
  • the receptacle and in particular of the recording at least partially limiting An horrkolben also have at least one bulge into which the facing away from the presentation surface end of the oval mounting portion can engage in a predetermined pivot position.
  • the spring force may have a local minimum and the information carrier be secured in this pivot position against unwanted changes in position.
  • a particularly stable mounting is obtained if the fastening section and the pressure surface are of substantially equal size in the longitudinal direction and at least partially complementary to each other.
  • the contact surface thus adapted to the attachment portion abuts in the largest possible area on the attachment portion, whereby a maximum frictional engagement between the pressure surface and the voltage applied to the pressure surface of the attachment portion can be generated.
  • the receptacle may have at least two opposing retaining lips, of which it may be limited in the clamping direction.
  • the opposing retaining lips may be arranged on two longitudinal sides of the receptacle extending parallel to the longitudinal direction and the receptacle widen in its course away from the retaining opening from the retaining lips, so that they biconvex is formed.
  • the attachment portion is secured on both sides of the retaining opening against movements against the height directions in the recording.
  • At least one of the retaining lips can be provided with at least one latching edge pointing into the receptacle.
  • the locking edge may extend substantially over the entire length of the retaining lip parallel to the longitudinal direction. Due to the latching edge, a higher pressure can locally be exerted on the fastening section, so that the information carrier can be fixed in a tilted position in a force-locking manner by the at least one latching edge better than by the pressure surface alone.
  • the attachment portion may also have at least one side a latching structure with at least one latching groove or locking groove, which may be turned to the locking edge.
  • the latching structure may extend substantially along the entire length of the attachment portion along the longitudinal direction.
  • the latching structure may be arranged on an upper side of the fastening section, which lies next to the presentation surfaces.
  • the locking edge now has at least partially in the vertical direction and contributes to securing the information carrier against unwanted tilting. If a plurality of latching grooves or latching grooves are provided, which are preferably arranged together, the information carrier can be held in different pivoting positions predetermined by the position of the latching grooves or grooves.
  • At least one of the retaining lips may have at least one stop surface which may extend away from the receptacle and may tilt away from the retaining aperture.
  • this stop surface may be formed running parallel to the longitudinal direction over the entire length of the retaining lip.
  • the abutment surface can limit the deflection of the information carrier in the pivoting direction on the stop surface and serve in the extraction of the information carrier from the receptacle as a lever bearing. If two stop surfaces are provided, they can form a funnel. By tilted away from each other and away from the insertion opening abutment surfaces of the mounting portion can be guided during insertion in the direction of the holding opening. This effect can, albeit reduced, also occur when only one retaining lip is provided with a stop surface
  • the abutment bead may have at least one boundary surface, which may be adapted to the stop surface and in particular parallel to the presentation surfaces and may point away from them. Possible damage to the transparent portion of the information carrier by the contact with the stop surface can be avoided. Also, the stop bead may extend away from the restricting portion and with an adjacent presentation surface be provided inside, which rest against the presentation surface and support them.
  • the side wall sections or inner sides of the clamping slot facing the presentation surfaces can be contoured and, in particular, have a structure reinforcing the connection between the attachment section and the presentation surface.
  • the inner side may have lugs or webs that may bulge toward the presentation surface, whereby the retention force connecting the information carrier to the attachment portion may rise.
  • the attachment portion may be formed as a separate adapter piece, via which the information carrier is connectable to the support base.
  • different information carriers can be used via a fixing section adapted to the pressure piston arranged in the stand, with the stand.
  • the change of the information carrier can be as simple as if an information carrier with a fixed mounting portion may need to be changed together with the Antikkolben.
  • the information carrier to be newly used may for example be higher or wider than the information carrier used previously, wherein the new information carrier with the separate attachment portion can be held by the support base.
  • the separate attachment portion may comprise a clamping slot for the information carrier, which may extend in particular in the longitudinal direction of the attachment portion. One end of the here the presentation surfaces comprehensive information carrier can be pressed into the clamping slot.
  • the information carrier and the attachment portion may alternatively be connected to each other inseparably so that they can be handled together as a presentation assembly.
  • the information carrier and the attachment portion may be formed from a part.
  • the optical properties of the attachment section are rather unimportant for its function. Therefore, this does not need to be transparent, but should wear as little as possible after many movements within the recording.
  • At least one of the insides of the attachment portion may have distribution grooves for the generally liquid adhesive. These distribution grooves may extend substantially in the longitudinal direction.
  • a particularly simple method for producing the fastening section is the extrusion or extrusion press method.
  • the attachment portion can be produced as a so-called continuous molding and further processed, for example, by the meter.
  • the continuous moldings can be cut to size for production of the presentation assembly. Special tools for different length mounting sections are not needed.
  • the front and rear presentation surfaces of the information carrier may tend to spread apart when the information carrier is made of too soft material. As a result, a sheet arranged between the presentation surfaces may possibly be insufficiently fixed in the information carrier and fall out of it.
  • the attachment portion may include a shutter mechanism urging the front and rear presentation surfaces against each other.
  • the surface of the information carrier can also be configured repeatedly inscribable.
  • the support base can be arranged at least one non-wearable support device with a perpendicular to the spring force oriented support plate.
  • the support plate may be formed so that an end facing away from the receptacle end of the spring element can be supported on the support plate.
  • the support plate can extend over the entire length of the support base in the longitudinal direction and substantially planar, so that it can serve as a reference plane for the spring elements. If a plurality of spring elements acting in the clamping direction are distributed uniformly in the longitudinal direction of the retaining base and these spring elements have essentially the same spring constants, then these spring elements can generate the same force over the entire length of the pressure piston when the pressure piston is deflected in the clamping direction.
  • the end of the pressure piston facing away from the receptacle can at least partially engage behind the support plate in an overlapping region.
  • the movement of the pressure piston in the clamping direction can be limited when a projection forming the overlapping area the Anyakkolbens abuts against the clamping direction facing side of the support plate at maximum in the clamping direction deflected Anyakkolben.
  • the pressure piston is placed on the support device and the ends of the pressure piston engage behind the support plate, then the pressure piston and the support device can form an integrally manageable piston assembly which can be easily inserted into the support base.
  • the spring elements between the pressure piston and the support plate can be arranged and secured by holding elements of the support plate against accidental displacement or tilting. Subsequently, the pressure piston is pushed against the spring force of the spring elements in the direction of the support device until its pointing to the support device ends engage behind the support plate and form a latching connection with this.
  • the piston assembly against the spring force can be at least partially pushed together and inserted in this state in the longitudinal direction in the support base.
  • the retaining base may have at least one side extending in the longitudinal direction opening.
  • a contact surface can be arranged in the clamping direction in front of the support plate, wherein the support plate can be based thereon.
  • the clamp-pointing end of the An horrkolbens may have a directed away from the holding opening extending abutment surface which can abut a non-displaceably arranged in the support base further contact surface, which does not directly adjacent to the receptacle, when the mounting portion is disposed completely outside of the receptacle.
  • the piston assembly may be at least partially compressed against the spring force in the inserted into the support base state and be supported on the abutment and the abutment surface. About these two surfaces and the spring force, the position of the piston assembly can be frictionally secured in the support base against unwanted movements in the longitudinal direction.
  • Both the pressure piston and the support device can be manufactured with the same methods and the same materials that are suitable for the production of the attachment portion. Since the pressure piston and the support device can be less susceptible to wear and, for example, not like the attachment portion to latching elements are moved fitting, in many cases, an embodiment of at least the support device as a continuous molding made of plastic sufficient.
  • the spring force pointing and shaped as guide pins holding elements on which the spring elements can be aligned can be aligned with each other in the longitudinal direction and on the platen.
  • the guide pins can be extruded together with the support device. After the extrusion or extrusion process, the spaces between the guide pins still have to be freed from the material. For this purpose, the gaps can be punched out or cut out, for example.
  • helical spring-shaped spring elements can be placed on the remaining guide pins.
  • the pressure piston and the support device can be formed as a continuous molding and cut to size in a further manufacturing step.
  • at least the plastic parts of the erector can also be manufactured by means of an injection molding process.
  • the injection molds needed for this process are expensive and can not readily be used to make plastic parts of different lengths.
  • the information carrier can be made removable by the holding opening from the receptacle of the holding base and re-usable into the receptacle.
  • a longitudinal side of the holding opening extending transversely to the vertical direction projects beyond the other longitudinal side.
  • at least one of the longitudinal sides can be formed by the holding lip provided on the pressure piston.
  • the receptacle may otherwise be formed substantially symmetrical.
  • the information carrier can be pivoted in the direction of the higher of the two sides until it at least partially abuts it in a certain maximum deflected pivot position. If the information carrier is further tilted in the same direction, it pivots about a pivot axis located in the area of the contact surface between the information carrier and the one side of the receptacle and can be levered out of the receptacle.
  • the projected side is provided on the movable pressure piston, which can be displaced by the levering out of the information carrier against the spring force and release the attachment portion.
  • the attachment portion can thus slide over the lower side and thus optionally be pushed with support from the spring force generated by the spring element from the recording as soon as the maximum deflection of the Antikkolbens when levering out of the information carrier is exceeded
  • the stand can be modular and comprise a housing into which the support base can be used.
  • the housing may be formed, for example, as a hollow cylinder into which the retaining base can be inserted and in which the retaining base can be positively or non-positively secured against unwanted movements.
  • the housing may have a passage opening spanning the retaining opening in the vertical direction, through which the fastening section can be inserted into the receptacle.
  • This modular design has the advantage that different housing or housing shells can be used with an information carrier and a support base.
  • the housing or housing shells can be mechanically formed differently, so that the For example, stands can be placed on a table or, alternatively, can be hung on a wall. Also, the housing shells may have different colors or other design features.
  • the housing may be needed to support the support base and against the spring forces acting in it.
  • the housing can be dispensed with.
  • the holding base like the attachment portion, be made of a metal and in particular of aluminum and also by means of an extrusion process.
  • the stand can be designed so that the spring forces do not lead to a deformation of the support base.
  • the pressure piston can be connected via Kraftumlenk vie with the support base, via which the spring force is transferable to the support base, without the support base deformed significantly.
  • the spring force may be split and deflected so as to retain the support base in its original form, or to cancel out the resulting forces acting on the support base to deform it.
  • the stand can be designed as a kit.
  • the kit may comprise, for example, at least two differently shaped and mutually exchangeable Antikkolben or piston assemblies.
  • the kit may comprise at least two different information carriers, at least two fastening sections formed as separate adapter pieces or also a plurality of spring elements with different spring constants.
  • a mounting portion may be adapted to support one of the information carrier and form a Festklemmpan with one of the pressure piston or one of the piston assemblies, wherein the mounting portion and the pressure piston may be formed at least partially complementary to each other.
  • Easier to handle are different and, for example, adapted to different paper formats presentation assemblies that can be used alternately or possibly even together with the stand.
  • the presentation assemblies can be arranged longitudinally behind the other by the recording held.
  • the stand can also identify a plurality of longitudinally extending and transversely to the longitudinal direction arranged receptacles, in each of which a presentation assembly can be inserted.
  • the receptacles can be arranged at different distances to a footprint for the stand and offset from one another, so that the pressure piston of one of the images can overlap at least partially with an adjacent recording.
  • you can the user has several and differently designed presentation modules available for replacement.
  • the stand for differently formatted information that differ for example from the format DIN A4 and possibly larger or even longer, be adapted and keep them safe.
  • a kit may be advantageous that includes a support base, a piston assembly, and a presentation assembly. These can be easily and possibly even assembled without tools or tools. After mounting these parts, end caps can be placed on the longitudinally facing ends of the support base. These end caps can for example be held positively on the support base.
  • the support base may also comprise at least one receptacle for a screw, wherein the screw can be screwed through at least one of the
  • the querykappert into the receptacle.
  • the receptacle for the screw can be designed as a screw-shaped dome which extends in the longitudinal direction and has a hollow cylindrical shape.
  • the screw dome can be slotted parallel to the longitudinal direction and have a claw-shaped cross-section transverse to the longitudinal direction. If the screw dome is also produced by means of an extrusion process, a mating thread for the screw can be cut into it. Alternatively, the screw of this mating thread in the possibly made of plastic lentdom be designed cutting. Also, the fferdom can be glued into the receptacle for the screw or sprayed with this, if the ringdom is made of metal, for example.
  • end caps can also be glued to the support base, in which case, however, a substantially permanent connection between end caps and retaining base arises and at least the piston assembly can not be easily replaced.
  • the stand 1 is shown in a perspective view with a base 2 and an information carrier 3.
  • the base 2 comprises a cylindrical housing 4, on whose end faces end caps 5, 5 'are provided. In the embodiment shown here, the end caps 5, 5 'are pushed onto the housing ends.
  • the information carrier 3 comprises a rear and a front presentation surface 6, 7, which are arranged parallel to each other and connected to each other via a yoke 8.
  • the presentation surfaces 6, 7 can be labeled, for example, with a felt-tip pen with information to be displayed.
  • at least the front presentation surface 6 may be made of a transparent material.
  • An inscribed with the information to be displayed sheet can be visibly arranged by the front presentation surface 7 between the rear and the front presentation surface 6, 7.
  • the yoke 8 opposite end 9 of the information carrier 3 extends into the base. 2
  • Fig. 2 shows a further embodiment, wherein for elements that are in function and structure of the elements of the embodiment of Fig. 1 correspond, the same reference numerals are used. For brevity, only the differences from the embodiment of Fig. 1 received.
  • Fig. 2 shows the stand 1 in a side view; the end cap 5 is not shown.
  • the yoke 8 opposite end 9 of the information carrier 3 is shown spaced from a height direction K of the information carrier 3 from the base 2 and provided with a mounting portion 10.
  • the fastening portion 10 is cylindrical and extends parallel to a longitudinal direction L extending substantially perpendicular to the height direction K and pointing out of the plane of the drawing, has a substantially circular cross-section and extends with a substantially longitudinal direction L and height direction K.
  • Clamping slot 11 formed, which is open against the height direction K.
  • the attachment portion 10 is formed with two stop beads 12, 12 'which extend on both sides of the clamping slot 11 in the longitudinal direction L and extend the clamping slot 11.
  • the stop beads 12, 12 'each have a boundary surface 13, 13' which extend substantially parallel to the height direction K and point away from the clamping slot 11.
  • the mounting portion 10 is on both sides with extending in the longitudinal direction L latching structures 14, 14' configured, each having at least one latching groove 15, 15 'and in particular as shown here with three latching grooves 15, 15' are designed.
  • the fastening section 10 shown here symmetrically about the clamping slot 11 can alternatively also be designed asymmetrically and, in particular, be formed only on one side with one of the stop beads 12, 12 'or latching areas 14, 14'.
  • the base 2 of the erector 1 is shown with the end cap 5, which is plugged onto a support base 16.
  • the end cap 5 shown here, or alternatively also the end cap 5 ', not shown, may extend in the longitudinal direction over the entire length of the support base 16 and form a housing 17 which can be closed by the other end cap 5, 5'.
  • the housing 17 may have a perpendicular to the height direction K extending lower wall 18, which allows an arrangement of the erector 1 on flat surfaces.
  • the lower wall 18 may be formed as a footprint, so that the stand 1 can be placed on substantially horizontal surfaces, for example on a table.
  • the stand 1 on in the end caps 5, 5 'or in the lower wall 18 provided holding elements also on vertical surfaces can be suspended and screwed to this example.
  • the end cap 5 has a front wall 20 and a rear wall 21, respectively, with the front and rear walls 20, 21 running along the longitudinal direction L. and extend substantially opposite to the height direction K.
  • the opposite of the height direction K located ends of the front and the rear wall 20, 21 are connected to each other via an upper wall 22.
  • the upper wall 22 bulges against the height direction K, wherein the curvature of the front wall 20 in the direction of the rear Wall 21 increases.
  • the upper wall 22 has a passage opening 23.
  • the passage opening 23 is dimensioned such that the fastening section 10 can be introduced through it into the interior of the erector 1.
  • the passage opening 23 forms a slot extending in the longitudinal direction L.
  • a substantially T-shaped fixing rail 25 is provided on the inner side 24 of the lower wall 18 and is connected immovably to the lower wall 18.
  • the fixing rail 25 is connected via a connecting wedge 25 'with the inner side 24 of the lower wall 18 and tilted by a wedge angle W to the lower wall 18 and to a perpendicular to the height direction K and the longitudinal direction L extending direction H.
  • the wedge angle W is an acute angle and in particular less than 45 ° or less than 20 ° or even less than 10 °.
  • the end cap 5 ' not shown, is designed to be mirror-symmetrical to the end cap 5 about a plane extending transversely to the longitudinal direction L.
  • the support base 16 may also have at least one, for example, in the longitudinal direction extending receptacle for screws. At least one of the screws can be screwed through one of the end caps 5, 5 'in the receptacle and thus form a detachable connection between end cap 5, 5' and support base 16.
  • the receptacle for the screw for example, be easily prepared by extrusion together with the support base 16 and be formed as a longitudinally extending retaining claw.
  • the holding claw may be formed as a cylindrical body extending in the longitudinal direction L, wherein the base surface of the cylindrical body may correspond to a pitch circle which may extend over more than 180 ° and in particular more than 270 °.
  • the support base 16 is possibly interchangeable with the housing 17 or with the end caps 5, 5 'connected, so that the stand with different housings 17 / end caps 5, 5', which may have, for example, a different color or external shape can be used.
  • the support base 16 is formed substantially claw-shaped and in particular complementary to the front, the rear and the upper wall 20, 21, 22. It has a front and a rear Antikschenkel 26, 27 which extend along the longitudinal direction L and substantially in the height direction K in receiving troughs 28, 29 which are provided in the lower wall 18, and the Antikschenkel 26, 27 in the longitudinal direction L lead.
  • the Antikschenkel 26, 27 are substantially parallel to the front and the rear wall 20, 21 of the housing 16, against which they rest.
  • At the opposite to the height direction K facing ends of the front and rear Antikschenkel 26 and 27 of the support base 17 kinks and extends in mutually arched front and rear part shells 30, 31, on the inside of the upper Wall 22 abut.
  • the front and the rear partial shell 30, 31 terminate in the region of the passage opening 23 provided in the upper wall 22.
  • the lower wall 18, the front and the rear wall 20, 21 and the upper wall 22 form the lateral surfaces of the cylindrically shaped housing 16 and the cup-shaped end cap 5.
  • the front and rear part of shell 30, 31 are connected to each other via a holding device 32, which is described in more detail below
  • Fig. 3 shows enlarged, the holding device 32 of the embodiment of the Fig. 2 , wherein for elements which are in function and structure the elements of the embodiment of the Fig. 2 correspond, the same reference numerals are used.
  • the holding device 32 comprises a connecting plate 33, a connecting plate 33 connecting the connecting plate 33 with the rear part shell 30 and a connecting portion between the connecting plate 33 and the rear part shell 27 connecting them arranged holding portion 35.
  • the connecting plate 33 is substantially parallel to one to the wedge angle W to the direction H tilted clamping direction D and is formed at its located in the clamping direction D end with two substantially L-shaped fixing rails 36, 36 '.
  • the ends 37, 37 'of the L-shaped fixing rails 36, 36' pointing away from the connecting plate 33 essentially in the vertical direction K run essentially parallel to the clamping direction D towards one another and engage behind a transverse bar 38 extending in the longitudinal direction L and in the clamping direction D.
  • the L-shaped fixing rails 36, 36 ' can also be referred to as fixing or fixing gripper.
  • the positive connection of the L-shaped and the T-shaped fixing rails 36, 36 ', 25 determine the position of the support base 16 in the housing 17 and the end caps 5, 5' and protect the support base 16 in particular in the longitudinal direction L by frictional against unwanted movements.
  • the opposite of the clamping direction D facing end of the connecting plate 33 is shown connected via the support plate 34 with the front part shell 30
  • a support device 39 is arranged, which is based on the pointing in the clamping direction D side 40 of the support plate 34.
  • the support plate 34 is opposite to the direction H spaced from the passage opening 24 and strikes the rear part of shell 30, wherein the support plate 34 extends substantially perpendicular to the clamping direction D.
  • the support device 39 Spaced away from the support plate 34 in the clamping direction D, the support device 39 comprises a support plate 41 aligned substantially perpendicular to the clamping direction D, which is connected to the support plate 34 via two support rails 42, 42 'extending in the clamping direction D.
  • the edges located in and opposite to the height direction K and extending in the longitudinal direction L edges 43, 43 'of the support plate 41 are inclined against the clamping direction D and thus formed substantially barb-shaped
  • the support plate 41 has at least one guide pin 44, which extends in the clamping direction D and transversely to the clamping direction D is substantially centered on the support plate 41
  • leg 45 of the rear H in the direction of L-shaped fixing rail 36 projects beyond the connecting plate 33 in the direction of the passage opening 23 of the housing 17 and connects the connecting plate 33 with the holding portion 35th Das toward the Through opening 23 facing end of the leg 45 forms a spacer nipple 46, which projects beyond a boundary arc 47.
  • the limiting arc 47 connects the leg 45 with the rear Tellschale 31 and is shown with a substantially constant radius of curvature of the spacer nipple 46, starting curved left.
  • the pointing away from the spacer nipple 46 end of the limiting arc 47 has a projecting first retaining lip 48 which forms a substantially on the support plate 41 facing and extending in the longitudinal direction L locking edge 49.
  • the first retaining lip 48 has a first stop surface 48 'tilted in the direction H and extending in the longitudinal direction L.
  • a pressure piston 50 is used, which forms a receptacle 51 together with the boundary sheet 47, in which the attachment portion 10 is at least partially inserted.
  • the pressure piston 50 extends in the longitudinal direction L and has a latching region 52 pointing counter to the clamping direction D, a pressure section 53 pointing in the clamping direction D, and a guide section 54 connecting the latching region 52 to the pressure section 53.
  • the guide section 54 has two guide plates 55, 55 ', which run parallel to the clamping direction D and extend along the longitudinal direction L over substantially the entire length of the holding base 16. They are arranged perpendicular to the clamping direction D before or behind the guide pin 44 and form a running in the longitudinal direction L guide channel, in which the guide pin 44 parallel to the guide plates 55, 55 'protrudes.
  • the guide pin 44 is arranged substantially centrally between the guide plates 55, 55 '.
  • the inner sides 56, 56 'of the guide plates 55, 55' pointing toward the guide pin 44 are essentially flat and are formed extending in the clamping direction D and guide at least one spring element 57 inserted into the pressure piston 50, thus securing tilting movements in or against the height direction K. is.
  • the at least one guide pin 44 secures the spring element 57 against tilting movements in the longitudinal direction L.
  • the spring element 57 may be formed as a plugged onto the guide pin 44 coil spring.
  • the opposite to the clamping direction D facing end of the spring element 57 is supported on the support plate 42 from.
  • the pressure piston 50 widens, so that the inner diameter of the latching region 52 corresponds at least to the outer diameter of the support plate 41 running perpendicular to the clamping direction D.
  • the opposite to the clamping direction D facing end of the latching portion 52 is provided with projecting into the interior of the pressure piston 50 and possibly at least partially in the clamping direction D facing latching hooks 58, 58 '.
  • the latching area 42 can be pushed against the clamping direction D over the support plate 42, whereby it widens due to sliding surfaces provided on the support plate 42 and possibly also on the latching hooks 58, 58 '. If the pressure piston 50 is pushed by a predetermined amount over the pressure surface 42 against the clamping direction D, the latching hooks 58, 58 'snap back in or against the height direction K and overlap in an overlapping area U, U' at least the edges 43, 43 'of Platen 41. At least by this overlap region U, U 'is a movement of the pressure piston 50 in the clamping direction D limited.
  • the end of the latching region 52 pointing against the clamping direction D may possibly strike against the side of the support plate 34 pointing in the printing direction D, whereby a movement of the pressure piston 50 against the clamping direction D may be restricted.
  • the pressure piston 50 if it is locked with the support device 39 and biased by at least one spring element 57 with these parts form an integrally manageable piston group A.
  • the Anyakabrough 53 comprises two contact rails 59, 59 'for pointing in the clamping direction D end of the spring element 57, which is supported on the bearing rails 59, 59' and so applied by the spring member 57 and facing in the clamping direction D spring force F can transfer to the Antikkolben 50.
  • the side facing the boundary sheet 47 of the Antikabitess 53 is formed substantially mirror-symmetrical to the boundary sheet 47, extending from Abstandsnippel 46 starting right curved and limited together with the boundary sheet 47 now biconvex designed recording 51.
  • the 51 in the recording side of the Anyakabitess 53 includes a second projecting retaining lip 60, which is followed by a curved pressure surface 61 in the height direction K. Further in the vertical direction K behind the pressure surface 61, the pressure piston 50 has a second delimiting arc 62 which points into the receptacle 51 but which springs back in relation to the pressure surface 61. In the height direction K in front of the contact surface 61, the second retaining lip 60 has a second abutment surface 60 'extending away from the receptacle 51 and inclined counter to the clamping direction D.
  • the receptacle 51 is substantially convex, wherein it forms opposite to the height direction K formed by the retaining lips 48 and 60, indicated by a dashed line holding opening 63 and extends in the height direction K behind the retaining opening 63. If no fastening section 10 is arranged in the receptacle 51, the at least one spring element 57 can be compressed at least partially against the clamping direction D by the pressure piston 50. The pointing in the clamping direction D end of the plunger 50 is at least partially on the leg 45 of the fixing rail 36 'and is printed with the spring force F against this. The latching hooks 58, 58 'of the pressure piston 50 are spaced from the support plate 41 counter to the clamping direction D.
  • Fig. 4 shows a further embodiment, wherein for elements which correspond in function and structure to the elements of the embodiments of the previous figures, the same reference numerals are used. For brevity, only the differences from the embodiments of the previous figures will be discussed.
  • the stand 1 is again shown in a side view and without the end cap 5, wherein the mounting portion 10 of the information carrier 3 is shown inserted in the height direction K through the passage opening 23 in the receptacle 51 arranged in the holding base 16.
  • the pressure piston 50 is displaced counter to the clamping direction D, wherein it compresses the spring element 57 against the spring force 57 generated by the spring element 57 and acting parallel to the clamping direction D.
  • the latching hooks 58, 58 'of the pressure piston 50 are shown spaced from the support plate 41 counter to the clamping direction D.
  • the mounting portion 10 is clamped with the spring force F between the plunger 50 and the boundary sheet 47.
  • the boundary surface 13 'of the Anschlagwulstes 12' is applied to the first stop surface 48 '.
  • the information carrier 3 is aligned parallel to the height direction K and can not be pivoted in the direction of the latching edge 49 due to the contact of the limiting surface 13 'with the first stop surface 48'.
  • the attachment portion 10 abuts against the pressure surface 61, the spacer nipple 46 and the locking edge 49.
  • the contact surface 61, spacer nipple 46 and the locking edge 49 extend in the longitudinal direction L and provide a support for the attachment portion 10, which corresponds to a three-point or a three-line support.
  • Fig. 5 shows the embodiment of the Fig. 4 in which the information carrier 3 is held by the receptacle 51 about a pivot axis S extending parallel to the longitudinal direction L through a central axis of the fastening section 10 having a substantially circular cross-section.
  • the same reference numerals are used. For brevity, only the differences from the embodiment of Fig. 4 received.
  • the information carrier 3 forms a tilt bearing B with the receptacle 51 and the fastening element 10 and is here tilted in the direction of the front wall 20 about the pivot axis S pointing out of the plane of the drawing.
  • the boundary surface 13 'of the Anschlagwulstes 12' follows the tilting movement of the information carrier 3 in the direction of the front wall 20 and is accordingly opposite to the direction H spaced from the first stop surface 48 'shown.
  • the latching edge 49 engages in one of the latching grooves 15 ', whereby a positive connection between the latching edge 49 and the latching groove 15' is formed, by which the current tilting position of the information carrier 3 is fixed
  • the deflection of the pressure piston 50 is compared to the embodiment of Fig. 4 substantially unchanged, since both the attachment portion 10 and the receptacle 51 are formed with a substantially circular cross-section and having aligned central axes.
  • the central axes coincide with the pivot axis S.
  • the attachment portion 10 is formed with a substantially non-circular cross section or an oval cross section, wherein the attachment portion 10, in particular parallel to one of the presentation surfaces 6, 7 has a greater extent than transverse to the presentation surfaces 6, 7, the position of the When the information carrier 3 is tilted, the pressure piston 50 changes in the direction of the rear wall 20 against the clamping direction D. As a result, the spring force F generated by the spring element 57 increases and clamps the information carrier 3 more strongly in the receptacle 51.
  • Fig. 6 shows an enlargement of the holding device 32 of the embodiment of Fig. 5 , wherein for elements which are in function and structure the elements of the embodiment of the Fig. 5 correspond, the same reference numerals are used.
  • the attachment portion 10 is held in this embodiment only on the locking edge 49, the spacer nipple 46 and the pressure surface 61 in the receptacle 51.
  • Both boundary surfaces 13, 13 'of the stop beads 12, 12' are free and abut neither on the first nor on the second stop surface 48 ', 60'.
  • the information carrier 3 is accordingly pivotable about the pivot axis S running parallel to the longitudinal direction L and arranged in the receptacle 51, both in the direction of the front wall 20 and in the direction of the rear wall 21.
  • Fig. 7 shows a further embodiment, wherein for elements which correspond in function and structure to the elements of the embodiments of the previous figures, the same reference numerals are used. For brevity, only the differences from the embodiments of the previous figures will be discussed.
  • the inserted into the receptacle 51 information carrier 3 is shown at a maximum in the direction of the front wall 20 tilted.
  • the boundary surface 13 is located on the stop surface 60 ', so that the information carrier 3 can not be tilted further in the direction of the front wall 20, without that changes its position against the height direction K.
  • the locking edge 49 prevents movements against the height direction K of the mounting portion 10th
  • a simple method for removing the fastening portion 10 from the receptacle 51 comprises pivoting the information carrier 3 in the direction of the rear wall 21 until the limiting surface 13 'bears against the abutment surface 48' and subsequently further in the direction of the rear wall 21 is pivoted. Due to the now occurring tilting moment, the information carrier 3 pivots about a pivot axis S 'extending through the latching edge 49, the pressure piston 50 is moved counter to the clamping direction D and consequently releases the fastening section 10 against the height direction K.
  • Fig. 8 shows a further embodiment, wherein for elements which correspond in function and structure to the elements of the embodiments of the previous figures, the same reference numerals are used. For brevity, only the differences from the embodiments of the previous figures will be discussed.
  • the stand 1 is shown in a rear view.
  • the information carrier 3 is tilted in the direction of the rear wall 20 in the Hattesockel 16 inserted.
  • the retaining base 16 is shown broken in a longitudinal direction L facing away from the plane of the drawing area 64.
  • the pivot axis S is parallel to the longitudinal direction L.
  • Fig. 9 shows the broken-away area 64 of the embodiment of FIG Fig. 8 , wherein for elements which are in function and structure the elements of the embodiment of the Fig. 8 correspond, the same reference numerals are used.
  • the relevant elements described above extend along the longitudinal direction L substantially over the entire length of the retaining base 17.
  • the attachment portion 10, the plunger 50, the boundary sheet 47 and the holding device 34 extend substantially over the entire length of the support base 16.
  • a plurality of guide pins 44 are aligned with each other on the support plate 41, wherein selected guide pins 44, in this Example, every third guide pin 44, are provided with a spring element 57 designed as a spiral spring.
  • the attachment portion 10 may be exchangeable with a mounting portion 10 adapted to an information carrier 3, for example, larger or smaller. Here it can also be more convenient to swap preassembled presentation boards P against each other.
  • the stand 1 may be formed as a kit, which may include several presentation groups P and / or piston assemblies B and at least one support base 16 and possibly more than two end caps 5, 5 ', in particular each one of the mounting portions 10 and the pressure piston 50th at least partially complementarily formed to each other and can form a Festklemmpres.

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  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Engineering & Computer Science (AREA)
  • Theoretical Computer Science (AREA)
  • Clamps And Clips (AREA)
  • Details Of Connecting Devices For Male And Female Coupling (AREA)
EP09015483.2A 2009-01-19 2009-12-15 Présentoir modulaire réalisé par technique d'encliquetage Not-in-force EP2209101B8 (fr)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE200910005396 DE102009005396A1 (de) 2009-01-19 2009-01-19 Modularer Aufsteller in Stecktechnik

Publications (4)

Publication Number Publication Date
EP2209101A2 true EP2209101A2 (fr) 2010-07-21
EP2209101A3 EP2209101A3 (fr) 2010-10-13
EP2209101B1 EP2209101B1 (fr) 2016-04-06
EP2209101B8 EP2209101B8 (fr) 2016-05-18

Family

ID=42144878

Family Applications (1)

Application Number Title Priority Date Filing Date
EP09015483.2A Not-in-force EP2209101B8 (fr) 2009-01-19 2009-12-15 Présentoir modulaire réalisé par technique d'encliquetage

Country Status (3)

Country Link
EP (1) EP2209101B8 (fr)
DE (1) DE102009005396A1 (fr)
PL (1) PL2209101T3 (fr)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US10152903B2 (en) * 2014-10-23 2018-12-11 SignsDirect Inc. Swinging sign apparatus

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE102021105708B3 (de) 2021-03-09 2022-03-17 Wpp Offsetdruck Gmbh Informationsvorrichtung

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4134222A (en) 1976-11-24 1979-01-16 Orsos Nicholas M Ticketing system
US5408774A (en) 1993-04-06 1995-04-25 Marketing Displays, Inc. Countertop adjustable and changeable sign holder
FR2719412A1 (fr) 1994-04-29 1995-11-03 Herpin Christian Clotaire Socle support à ressorts pour panneau d'affichage inclinable.
US6079683A (en) 1998-12-04 2000-06-27 Lin; Yung-Ching Angle adjustable support for a sun-shade device
US6430854B1 (en) 2000-09-13 2002-08-13 Erno Szentgyorgyi Inspection and registration holder
US20020174582A1 (en) 2000-10-06 2002-11-28 Clamp Swing Pricing Company Sign holder device

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4134222A (en) 1976-11-24 1979-01-16 Orsos Nicholas M Ticketing system
US5408774A (en) 1993-04-06 1995-04-25 Marketing Displays, Inc. Countertop adjustable and changeable sign holder
FR2719412A1 (fr) 1994-04-29 1995-11-03 Herpin Christian Clotaire Socle support à ressorts pour panneau d'affichage inclinable.
US6079683A (en) 1998-12-04 2000-06-27 Lin; Yung-Ching Angle adjustable support for a sun-shade device
US6430854B1 (en) 2000-09-13 2002-08-13 Erno Szentgyorgyi Inspection and registration holder
US20020174582A1 (en) 2000-10-06 2002-11-28 Clamp Swing Pricing Company Sign holder device

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US10152903B2 (en) * 2014-10-23 2018-12-11 SignsDirect Inc. Swinging sign apparatus

Also Published As

Publication number Publication date
EP2209101A3 (fr) 2010-10-13
PL2209101T3 (pl) 2016-10-31
EP2209101B8 (fr) 2016-05-18
EP2209101B1 (fr) 2016-04-06
DE102009005396A1 (de) 2010-07-22

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