EP3104749B1 - Vitrine réfrigérante - Google Patents

Vitrine réfrigérante Download PDF

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Publication number
EP3104749B1
EP3104749B1 EP15705522.9A EP15705522A EP3104749B1 EP 3104749 B1 EP3104749 B1 EP 3104749B1 EP 15705522 A EP15705522 A EP 15705522A EP 3104749 B1 EP3104749 B1 EP 3104749B1
Authority
EP
European Patent Office
Prior art keywords
struts
lateral
strut
vertical
base
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.)
Active
Application number
EP15705522.9A
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German (de)
English (en)
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EP3104749A1 (fr
Inventor
Reinhold Resch
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.)
AHT Cooling Systems GmbH
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AHT Cooling Systems GmbH
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 AHT Cooling Systems GmbH filed Critical AHT Cooling Systems GmbH
Priority to SI201530575T priority Critical patent/SI3104749T1/sl
Priority to PL15705522T priority patent/PL3104749T3/pl
Publication of EP3104749A1 publication Critical patent/EP3104749A1/fr
Application granted granted Critical
Publication of EP3104749B1 publication Critical patent/EP3104749B1/fr
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    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47FSPECIAL FURNITURE, FITTINGS, OR ACCESSORIES FOR SHOPS, STOREHOUSES, BARS, RESTAURANTS OR THE LIKE; PAYING COUNTERS
    • A47F3/00Show cases or show cabinets
    • A47F3/04Show cases or show cabinets air-conditioned, refrigerated
    • A47F3/0439Cases or cabinets of the open type
    • A47F3/0469Details, e.g. night covers
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47FSPECIAL FURNITURE, FITTINGS, OR ACCESSORIES FOR SHOPS, STOREHOUSES, BARS, RESTAURANTS OR THE LIKE; PAYING COUNTERS
    • A47F3/00Show cases or show cabinets
    • A47F3/04Show cases or show cabinets air-conditioned, refrigerated
    • A47F3/0439Cases or cabinets of the open type
    • A47F3/0443Cases or cabinets of the open type with forced air circulation
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47FSPECIAL FURNITURE, FITTINGS, OR ACCESSORIES FOR SHOPS, STOREHOUSES, BARS, RESTAURANTS OR THE LIKE; PAYING COUNTERS
    • A47F3/00Show cases or show cabinets
    • A47F3/04Show cases or show cabinets air-conditioned, refrigerated
    • A47F3/0439Cases or cabinets of the open type
    • A47F3/0443Cases or cabinets of the open type with forced air circulation
    • A47F3/0447Cases or cabinets of the open type with forced air circulation with air curtains
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47FSPECIAL FURNITURE, FITTINGS, OR ACCESSORIES FOR SHOPS, STOREHOUSES, BARS, RESTAURANTS OR THE LIKE; PAYING COUNTERS
    • A47F5/00Show stands, hangers, or shelves characterised by their constructional features
    • A47F5/10Adjustable or foldable or dismountable display stands

Definitions

  • the invention relates to a refrigerated shelf with a frame having on each side a C-shaped frame with a rear side vertical strut, a lateral roof strut and a side floor strut, wherein the C-shaped side frames are constructed separately and connected by means of mounting elements and wearing a refrigerator enclosing trim parts of a floor group, a rear wall group and a roof group.
  • a refrigerated shelf of this kind is in the DE 20 2006 007 152 U1 shown.
  • two side stand modules are present, which are constructed C-shaped from two vertical uprights U-shaped cross-section and with a firmly welded upper and lower traverse.
  • the lower truss is pushed into a trough-like floor module and can be screwed on during assembly.
  • the bottom pan which also contains a heat exchanger and a Ventillatorbautik must have a correspondingly stable, suitable for the assembly of the stator module structure, which is associated with a respective effort.
  • the US 5 517 826 A shows a refrigerated shelf with an upper, heat-insulating shelf structure and a lower external frame structure, which has a base portion and a vertical portion.
  • the shelf structure and the vertical portion have vertical struts between which an outer plate of a rear wall portion is mounted.
  • FIG. 2010/313588 A1 Another refrigerated shelf is in the US 2010/313588 A1 shown.
  • a frame In this cooling rack, a frame is also formed from a plurality of wall elements, wherein frame parts are also connected to a rear wall element.
  • the JP H11 276315 A shows a refrigerated shelf with an upper and lower box-like shelf part.
  • Refrigerated shelves are shown with C-shaped cross-section and with the bottom side, back wall side and roof side trim parts, between which an air curtain is formed.
  • the cladding together with side walls form a furniture carcass, which stands up on the floor by means of feet.
  • such refrigerated shelves have a C-shaped cross-section, wherein the requirements for a stable structure with the simplest possible assembly of the trim parts and cooling components while taking into account an efficiently usable cooling space are difficult to meet.
  • each module has two C-shaped side frames, each with a vertical profile and attached thereto, projecting forward lower and upper horizontal profile.
  • the lower horizontal profiles are provided with feet standing up on the floor and paneling parts with heat-insulating plate-shaped elements are mounted on the inside of the side frames to the refrigerator compartment.
  • This design of the cooling rack results in a stable construction with well insulated on the back and top and bottom encapsulation, being mounted to increase the stability between the lower and upper horizontal profiles at a distance from the rear vertical profiles support profiles with the interposition of heat insulating elements.
  • the present invention has for its object to provide a cooling rack of the type mentioned, with which the installation options and method of installation can be improved.
  • the side frames and the intermediate frames are preferably made of metal, in particular steel profiles.
  • the side frames and the intermediate frames form separate units with respect to the trim parts, d. H. they are not formed by these, but carry them.
  • At least one roof-side intermediate strut and / or the lateral roof struts hat / has profile profile.
  • the at least one vertical intermediate strut and / or the lateral vertical struts have / has hat-shaped profile cross section.
  • the features that the at least one bottom-side intermediate strut hat-shaped cross-section, contribute to advantageous installation and mounting options.
  • the lateral floor struts is designed as a closed hollow profile with a square or rectangular cross-section or has a C-shaped or hat-shaped cross-section.
  • a stable connection with simple handling is achieved in that for clamping the lateral vertical struts with the associated lateral roof struts and the associated lateral floor struts and / or for bracing the vertical intermediate struts with the associated roof side and bottom-side intermediate struts in the vertical struts facing rear mounting portions of the lateral roof struts and the lateral floor struts and the vertical intermediate struts facing rear mounting portions of the roof side and bottom intermediate struts transverse to the longitudinal axis extending fasteners are used with threaded holes in the through the associated vertical struts and the associated vertical intermediate struts guided clamping screws are screwed.
  • the measures are advantageous in that the lateral vertical struts and the associated lateral floor struts are connected by means of a stiffening angle.
  • the measures are also advantageous in that a respective vertical support strut is installed at a distance from the vertical strut between the lateral side strut and the roof strut of the two lateral frames in the rear area. Accordingly, also spaced from the vertical intermediate struts forward support struts between the associated floor struts and roof struts are installed, the front sides of all support struts are aligned parallel to the back plane with each other. In the built-in side frames support struts laterally projecting mounting flanges are omitted on the outside.
  • the covering parts comprise heat-insulating plate-shaped elements, which are mounted on the inside of the refrigerator side facing the frame and the intermediate frame.
  • the support struts are provided with rows of holes in a predetermined grid spacing, which cantilevered forward to the refrigerator support arms are suspended and that the existing metal struts against the existing metal side roof struts and Floor struts and the bottom side and roof side intermediate struts are installed supporting over heat insulating spacers.
  • front and rear feet are attached with height adjustment on the lateral floor struts and the bottom-side intermediate struts.
  • Fig. 1 shows a refrigerated shelf 1 in perspective view with a cold room at the bottom, rear, top and side bounding bottom group 2, rear wall group 4, roof group 5 and two side walls 3.
  • a cooling device 6 is present, of which some components in that a cooling unit 60 with control unit and a heat exchanger 62 are shown, which are accommodated in or on the roof group 5.
  • Other components of the cooling device 6, such as flow channels for the cooling air, compressor and fan are included in the rear wall group 4 and the bottom group 2.
  • the floor assembly 2 is closed to the front with a base panel unit 24 and the refrigerator down with a plurality of plate-shaped Bodenabdeck too 23 and includes one or more heat-insulating Bodenabdeckmaschine example of a plastic foam and sections of cooling air ducts, the back pass into corresponding sections of cooling air ducts in the rear wall group 4.
  • the rear wall group 4 is closed to the refrigerator from several plate-shaped elements, namely lower rear wall portions 42 and overlying rear wall portions 43, in particular the rear wall portions 43 are provided with numerous openings for the discharge of cooling air into the refrigerator.
  • Fig. 1 are also vertical support struts 80 are shown, which serve to stabilize the (not shown in this figure.) Frame of the cooling rack 1 and also for attaching the rear wall parts 42, 43 and hooking (also not shown) projecting forward into the refrigerator support arms are designed for receiving shelves, including the support struts 80 are provided with rows of holes with introduced in a certain grid spacing holes.
  • the rear wall group 4 and the roof group 5 are provided with respect to the cooling chamber with the cooling channels outside surrounding insulating heat insulating panels.
  • the side walls 3 may also be lined with thermal insulation material or be made of such.
  • the supported by the fans cooling air flow runs in a largely closed circuit through the bottom group 2, the rear wall group 4, the roof group 5 and in a cooling air curtain from top to bottom over the front, where they have a slat cover in the front region of the roof group 5 exits down and enters the front upper portion of the floor assembly 2 via a louvred grille in the formed in the bottom group 2 sections of the cooling air ducts again.
  • a roller blind for closing the refrigerator can be provided on the front to z. B. outside sales hours to store the cooling air in the refrigerator.
  • the cooling rack 1 as a supporting framework, a frame with a plurality of side view C-shaped frame, namely two lateral frame 10 and preferably at a regular distance therebetween intermediate frame 10 ', wherein in Fig. 2 two intermediate frame 10 'are present.
  • the distance between successive frames corresponds to z. B. the width of a conventional shelf module of 1.25 m width (one line), after which in the Fig. 1 and 2 Shelf arrangement shown exemplified three lines and z. B. has a width of 3.75 m.
  • an adjustable securing support element 72 for additional stability is arranged on the side frame 10 at the bottom on the rear side.
  • Fig. 2 also shows in the rear wall group 2 arranged fan 61 and arranged in the roof group fan 61 '.
  • the lateral frames 10 each have a lateral vertical strut 40, a lateral floor strut 20 attached to the lower end thereof projecting in the direction of the depth, and a lateral roof strut 50 attached to its upper end and protruding forward in the direction of the depth.
  • the intermediate frames 10 'each have a vertical intermediate strut 41, a forwardly projecting bottom-side intermediate strut 21 attached to the lower end region thereof and a roof-side intermediate strut 51 projecting at its upper end region and protruding forwardly.
  • a stiffening angle 90 with a leg directed forwards and upwards along the bottom strut 20 and the vertical strut 40 may be attached (optionally in addition to further connecting elements).
  • the bottom struts 20, roof struts 50, bottom-side intermediate struts 21 and roof-side intermediate struts 51 are preferably aligned horizontally or at right angles relative to the associated vertical struts 40 and vertical intermediate struts 41.
  • the in the intermediate frame 10 'built-in support struts 80 have, for example, on both sides parallel to the backplane beveled mounting flanges. However, in the support brackets 80 built into the side frames 10, preferably only one mounting flange oriented inwardly parallel to the backplane is present, while no outwardly facing mounting flange is present.
  • the lateral vertical struts 40 are formed as profiles with hutförmigem cross-section, ie with a U-shaped in cross-section and right-angled bent outward free ends of the U-legs. With this structure, advantageous mounting options arise, wherein the U-web and the right angles bent outwards U-legs define mutually defined parallel spaced flange mounting surfaces into which mounting holes can be introduced at appropriate locations.
  • the lateral roof struts 50 of the side frame 10 are formed according to the vertical struts 40 of a profile with hutförmigem cross-section.
  • Both in the vertical struts 40 and the roof struts 50 of the profile cavity is open to the outside. This results in a stable mounting of the frame legs together and also advantages in the assembly of the plate-shaped trim parts and the side walls 3.
  • the side floor struts are preferably made of a closed rectangular or square hollow profile or C-shaped profile, which is a high stability in connection with the bottom support 7 and at the same time provide good mounting options for the vertical struts 40 and side walls 3.
  • the vertical intermediate struts 41 and the roof-side intermediate struts 51 also consist of a profile with hutförmigem profile cross-section, wherein the profile dimensions in cross section advantageously correspond to the profile dimensions of the vertical struts 40 and roof struts 50.
  • the roof-side intermediate struts 51 are swept with their opening side down to the refrigerator to get inside the refrigerator and on the outside of the roof group 5 better mounting options.
  • the roof-side intermediate struts 51 are provided on their upper side with recesses 510, which extend in the example shown approximately from the front third to the vicinity of the rear end portion. In the recesses can on the top z. B.
  • the bottom-side intermediate struts 21 are likewise formed from a profile with hat-shaped cross-section, wherein the opening of the profile cavity is directed upwards to the cooling space.
  • the formed above lying angled lateral flanks result in advantageous mounting surfaces for the cladding elements and z.
  • the front and rear feet 70, 71 are taken stable and adjustable in relevant recordings.
  • the profile cross-section of the bottom-side intermediate struts 21 is wider than the profile cross-section of the vertical and roof-side intermediate struts 41 and 51, respectively, in order to obtain cheaper mounting options.
  • Fig. 3 shows an intermediate frame 10 'in a perspective view in the disassembled state.
  • the roof-side intermediate strut with its recess 510 can be clearly seen, wherein the recess 510 is followed by a rear upper mounting portion 511, at its front side, the vertical intermediate strut 41 with the facing web of their U-section directly or indirectly with the interposition of an intermediate piece in Appendix brought and clamped by means of a introduced from the back through a respective bore of the vertical intermediate strut 41 fastener 513 in the form of a fastening screw becomes.
  • the fastening screw is screwed into a threaded mounting hole in a fixing piece 512, which is inserted at right angles to the longitudinal axis of the roof-side intermediate strut 51 inserted therein transverse slots.
  • connection of the vertical intermediate strut 41 with its lower portion on the bottom intermediate strut 21 takes place on the end side of the bottom-side intermediate strut 21.
  • a contact piece is used at a lower rear attachment portion 210 of the bottom-side intermediate strut 21, to which the vertical intermediate strut 41 is attached as described in more detail below.
  • Fig. 3 also shows the mounting of the heat-insulating, made of stable plastic material bearing blocks 81 on the outwardly directed flange-like portions of the bottom intermediate strut 21 by means of fastening screws 810th
  • Fig. 3 also shows the attachment of the front and rear feet 70, 71 on the bottom intermediate strut 21.
  • a receptacle is attached to the U-legs of the U-section of the bottom intermediate strut 21, which is provided with an internal thread or connected to a threaded bolt 700, 710 of the front and rear stand 70 record vertically adjustable.
  • the threaded bolt projects upwards over the top of the bottom intermediate strut 21 and has in its upper portion an approach for a tool such.
  • B. a recording for an Allen key.
  • the front and the rear foot 70, 71 can be easily adjusted from above, ie from the interior of the cooling rack, as the arrows in the direction of rotation and in the height direction illustrate.
  • the rear foot 71 which is offset from the rear of the cooling rack 1 forward approximately up to the region of the support strut 80, and indeed slightly before the longitudinal axis, can be easily operated in this way for height adjustment.
  • the bearing blocks 81 and possibly covering elements have corresponding access openings or can be brought out of the range of the tool approach in a simple manner.
  • the front and the rear foot 70, 71 are attached to the two different legs of the U-section, which results in an increased stability.
  • Fig. 4A shows the roof-side intermediate strut 51 in an enlarged view with the upper mounting portion 511 and inserted therein in a transverse slot fastening piece 512 which is provided with a threaded hole for said mounting screw 513 for attaching the vertical intermediate strut 41. Furthermore, the recess 510 can be clearly seen in the upturned U-section of the profile. In the U-web and the outwardly bent at right angles legs mounting holes are introduced for attaching relevant components.
  • Fig. 4B shows the roof-side intermediate strut 51 in a rear view, wherein the bore 514, which is preferably provided with an internal thread, in the central region of the mounting piece 512 is arranged with lateral portions outwardly over the U-legs of the roof-side intermediate strut 51 through the therein introduced transverse slot protrudes.
  • the attachment piece 512 is inserted under play in the transverse slot and has in the region of the U-legs of the roof-side intermediate strut 51 relevant holding recesses.
  • Fig. 4B also shows the angled flanges (side flanges) 515 of the intermediate strut 51.
  • FIG. 4C For example, the upper rear attachment portion 511 of the roof side intermediate brace 51 and the associated portion of the respective vertical intermediate brace 41 are shown.
  • an intermediate piece 516 is attached at right angles to the longitudinal axis of the intermediate strut, which forms a defined, stable system for the U-web of the vertical intermediate strut 41.
  • Above the intermediate piece 516 there is an edge of the U-web of the roof-side intermediate strut 51, at the end of which a still further projecting fixing lug 517 is mounted, which is inserted into a fitted receiving opening 413 on the upper portion of the vertical intermediate strut 41 and offers a positioning aid.
  • the fixing means 513 designed as a clamping screw can be screwed into the threaded bore of the fastening piece 512 by a bore 412 arranged in the correct position and a bore (not visible in the figure), around the vertical intermediate brace 41 on the roof-side intermediate brace 51 tight.
  • the Fig. 5A to 5E show the rear portion of the bottom intermediate strut 21 with the rear leg 71 and the lower portion of the vertical intermediate strut 41.
  • the U-legs of the vertical intermediate strut 41 are set between rearwardly projecting lateral fixing lugs 212, which are rearwardly of the U-legs of the bottom Intermediate strut 21 or from an attached to the rear end side of the bottom-side intermediate strut 21 contact piece 213 project, wherein the distance of the lateral fixing lugs 212 is adapted to the distance of the outer sides of the U-section of the vertical intermediate strut 41.
  • the lateral fixing lugs 212 and the U-legs of the vertical intermediate strut 41 are to be brought through openings through which the retaining screw 211 is performed transversely to clamp the vertical intermediate strut 41 with the bottom intermediate strut 21.
  • another fixing lug 212 rearward which engages in a position and shape adapted fixing opening 414 in the U-web of the vertical intermediate strut 41.
  • the investment piece 213 may, for. B. by means of an axially introduced to the bottom-side intermediate strut 21 retaining screw, which is screwed into a inserted into a transverse slot of the bottom-side intermediate strut 21 clamping piece with threaded hole.
  • Fig. 5A Furthermore, the rear stand 71 is shown, which is fixed to a side leg of the U-section 214 of the bottom-side intermediate strut 21 stable in a cylindrical receptacle.
  • the receptacle is itself provided with an internal thread or connected to an internal thread receiving nut, so that the rear base 71 is guided vertically adjustable with its threaded bolt 710 in the vertical direction.
  • the threaded bolt 710 provided with the tool attachment in the exemplary embodiment an Allen receptacle, projects beyond the upper side of the intermediate strut 21 on the bottom, wherein the outwardly bent flange portion 215 is pierced at the point of insertion of the threaded bolt 710.
  • a screw can be transversely performed by the U-section of the bottom intermediate strut 21 with which the U-legs are stabilized in their orientation become.
  • the folded flange portions 215 are further fastening holes 216 z. B. for the bearing blocks 81 and implementation of the mounting screws 810 introduced.
  • Fig. 5B shows the attachment of the bearing blocks 81 by means of fastening screws 810.
  • the Fig. 5C shows the attachment of the vertical intermediate strut 41 with its U-section 410 on the bottom-side intermediate strut 21, wherein the side flange portions 411 of the vertical intermediate strut 41 protrude beyond the end face of the lateral fixing lugs 212 in the clamped state.
  • the fixing lugs 212 as in the embodiments according to Fig.
  • 5A and 5B may be the case, formed as projecting portions of the U-legs of the bottom intermediate strut 21, in which case the investment piece 213 is received between the lateral fixing lugs 212 and only in its upper region with laterally over the fixing lugs 212 projecting portions in particular to the remote, after externally beveled flange portions 215 of the bottom-side intermediate strut 21 bears frontally and in the lower region z. B. is stably supported on the front side accordingly staggered U-web. Further shows Fig. 5C in turn attached to the bottom-side intermediate strut 21 rear pedestal 71 with the threaded bolt 710 and the attachment of the bearing blocks 81 by means of the mounting screws 810 in a perspective view of the opposite Fig. 5B other side.
  • Fig. 5D the attachment of the vertical intermediate strut 41 on the bottom intermediate strut 21 in the manner described above can be seen.
  • the rear foot 71 is shown with the threaded bolt 710.
  • a heat-insulating Bodenabdeckteil 22 z. B. from a plastic foam, which is placed on the facing folded flange portion 215 of the bottom-side intermediate strut 21 and with this z. B. can be connected by means of screws or other fastening means.
  • the Bodenabdeckteil 22 is provided with a breakthrough to introduce the tool for height adjustment in the threaded bolt 710 and rotate for height adjustment can. How out Fig.
  • Fig. 5E the bottom-side intermediate strut 21 is shown in its entire length, at the rear attachment portion of the vertical intermediate strut 41 is mounted in the manner described above.
  • a seal (not shown) is used for sealing
  • the z. B. has a mushroom-shaped cross-section.
  • Fig. 5E shows in addition to the rear foot 71, which is mounted in the manner described above on the bottom intermediate strut 21 and adjustable from above, also the front foot 70 with the threaded bolt 700, which in its upper portion also with a tool approach, such. B. Allen, is provided and accessible via a breakthrough in the front region of the respective Bodenabdeckteils 22 for height adjustment from above.
  • the attachment of the front foot 70 is preferably formed according to the rear leg 71 as described above.
  • the cylindrical receptacle is attached to the rear leg 71 opposite U-leg of the U-section of the bottom-side intermediate strut 21 and arranged the front base 70 on this U-leg.
  • the height adjustment is thus easily possible from above. The height adjustment is therefore not difficult if the front base 70 is more or less offset from the front edge of the cooling rack 1 to the rear.
  • Fig. 5E one opposite the subway the bottom-side intermediate strut 21 downwardly projecting, connected to the U-bar bow-shaped support portion 217th
  • the bottom-side intermediate strut 21 is provided at its front portion with a front mounting portion 218, can be attached to the front side base elements or panel elements.
  • the front fastening section 218 has flat contact sections aligned at right angles to the longitudinal axis of the bottom-side intermediate strut 21 on the end face of the bottom-side intermediate strut 21.
  • Fig. 5F is the front portion of the bottom-side intermediate strut 21 in a perspective view from the opposite Fig. 5E shown enlarged side opposite. Visible is the height-adjustable design of the front base 70 with the threaded bolt 700 and its attachment to the one U-leg of the bottom intermediate strut 21 and the support portion 217 and the front mounting portion 218. In the region of the threaded bolt 700 is the relevant folded flange portion 215 of the bottom intermediate strut 21 also broken, as in the area of the rear foot 71st
  • Fig. 5G shows a lower, lateral shelf portion with a section of the rear wall group 4, rear wall parts 43, lateral vertical strut 40 and struts 80, a section of the bottom group 2 with lateral bottom strut 20, rear base 71 and Bodenabdeckteil 23, a section of the base panel unit 24 and a section of a side wall 3. Also visible are the connection angle 90 between the lateral vertical strut 40 and the lateral floor strut 20 and also the backup support element 72 in the support position in the rear area.
  • the rear base 71 is set slightly higher than the support strut 80 for ease of access and via a breakthrough in the foot of the support strut 80 accessible from above for height adjustment.
  • the arrangement of the rear stand 71 near the longitudinal axis of the support strut 80 high weight forces can be absorbed, which occur increasingly in this rear shelf area.
  • different cooling components in particular heat exchangers, such as evaporators, fans 61 and optionally compressor can be arranged and
  • the support struts 80, the protruding forward into the refrigerator support arms are hung for the male goods.
  • Fig. 5H shows similar Fig. 5G a section of the lower corner region of the cooling rack 1, but in a perspective view from the back.
  • the lateral bottom strut 20 and the attached thereto at the rear attachment portion 210 lateral vertical strut 40 and supported against the top of the lateral bottom strut 20 support strut 80 are shown with its support leg.
  • the front foot 70 and the threaded bolt 710 of the rear stand 71 are recognizable and also shown in the support position backup support member 72 which is mounted on the vertical side strut 40 detachable or swiveling up by means of screws.
  • Fig. 5I shows a side frame 10 with lateral vertical strut 40, side roof strut 50 and side floor strut 20 in the disassembled state in a perspective view.
  • the lateral vertical strut 40 is secured to the rearward attachment portion of the side roof strut 50 in a manner similar to that described above in connection with the intermediate frame 10 '.
  • the lateral roof strut 50 is hereby rotated with its opening side in contrast to the roof-side intermediate struts 51 by 180 ° upwards and has also no recess in the U-section area, since in the lateral area no or at least less mounting options for roof structures, such.
  • B. arranged on the roof cooling components of the cooling device 6 are required and also provide benefits for stability and side wall mounting, as explained below.
  • the lateral vertical strut 40 is in turn connected to the lateral roof strut 50 by means of a clamping screw, wherein the U-web of the lateral vertical strut 40 is braced against the rear end side of the lateral roof strut 50 with or without interposed intermediate piece.
  • the lower portion of the lateral vertical strut 40 is braced with its U-web against the front side of the lateral bottom strut 20 with or without embglagung an intermediate piece.
  • connection between the lateral vertical strut 40 and the lateral floor strut 20 is loosened differently than the connection between the vertical intermediate struts 41 and the bottom intermediate struts 21 and corresponds more to the manner of attachment between the upper portion of the lateral vertical strut 40 and the lateral roof strut 50.
  • the lower portion of the lateral vertical strut 40 and the rear portion of the lateral floor strut 40 are connected via the stiffening angle 90 by means of the connecting elements 900 in the form of clamping screws, wherein the stiffening angle 90 at the lying to the cooling space inner U-legs of the lateral vertical strut 40th and lying to the refrigerator inner side profile legs the lateral bottom strut 20 is brought into abutment and screwed there, so that the stiffening angle 90 can counteract large weight forces.
  • Fig. 5I furthermore, the front and rear feet 70, 71 protruding on the underside of the lateral floor strut 20 are shown, which can also be configured to be height-adjustable from above or from the side, since they are arranged near the lateral edge of the cooling rack 1.
  • the feet 70, 71 are held on the lateral bottom strut 20 at the bottom and preferably also at the upper profile leg, since the lateral bottom struts 20 is formed as a square, rectangular or C-shaped hollow profile, as described above.
  • the securing support member 72 is in the illustrated illustration upwards, that is not aligned in the supporting position and is removably attached to the lower end portion of the lateral vertical strut 40.
  • Fig. 5J is the rear lower corner portion of the side frame 10 after Fig. 5I shown enlarged.
  • the implementation of the threaded bolt 710 of the rear stand 71 through the lateral bottom strut 20 by the lower and upper profile legs (lower and upper wall portions of the bottom strut 20) and the adjustment from above can be seen.
  • On the bottom strut 20 launched trim or support elements or the like. Are provided in the axial direction of the threaded bolt 710 with openings, so that the tool neck of the threaded bolt 710, such. B. an Allen, easily accessible from above.
  • the fastening means 513 in the form of the clamping screw for clamping the vertical strut 40 with its U-web against the facing end side of the bottom strut 20, the connecting means 900 to be attached to the vertical strut 40 and bottom strut 20 connecting angle 90th and the upwardly, in the non-supporting position pivoted securing support member 72.
  • the respect to the cooling rack 1 parallel to the rear wall inwardly facing flange portion 411 also forms a stable investment for the upwardly directed leg of the stiffening angle 90 and also for the parallel edge of the Safety support element 72.
  • FIGS. 6A to 6E the arrangement and attachment of the side walls 3 is shown in more detail.
  • lower holding counter-elements are mounted in the lower lateral region of the cooling rack 1, as Fig. 6A shows.
  • the side wall 3 is attached to the upper holding counter-elements 500 by means of upper holding elements and to the lower holding counter-elements 200 by means of lower holding elements, as described below.
  • Fig. 6A shows the one lower lateral portion of the cooling rack 1 with the relevant, to be mounted side wall 3.
  • the lower support members 200 are formed angularly, with a downwardly pointing legs parallel to the side wall in the side base area stable directly to the lateral bottom strut 20 z.
  • B. a side stable skirting board is attached.
  • the second leg of the lower retaining counter-element 200 projects at right angles to the lateral plane of the cooling rack 1 or the side wall 3 mounted thereon above the lateral skirting board.
  • a plug-in opening 201 is arranged, which is formed in the embodiment shown as directed parallel to the side wall longitudinal slot. At least two such retaining counter-elements 200 are in corresponding Height at the lower lateral edge region of the cooling rack 1 spaced from each other, as shown Fig. 6A seen. At the lower portion of the respective side wall 3, the lower holding members 31 are mounted in a position matched to the position of the lower holding counter-elements 200.
  • the lower support members 31 are attached to a lower, at right angles to the plane of the side wall 3 inwardly directed edge, including the lower support members 31 are also angularly formed and provided with a parallel to the plane of the side wall 3 downwardly directed leg, which is adapted to the insertion opening 201 and inserted into this.
  • the lower support members 31 With the upper angled leg, the lower support members 31 are attached to the lower, inwardly directed edge of the side wall 3, in particular screwed.
  • the side wall 3 is provided at its lower edge with a plurality of lower holding elements 31, which are adapted in their position and dimension to the lower holding counter-elements 200 and their insertion openings 201.
  • the side wall 3 is inserted with the lower retaining elements 31 in the insertion openings 201 from above and then brought to the associated lateral edges of the rear wall group 4 and the roof group 5 in Appendix, as indicated by an arrow in FIG Fig. 6B symbolically represented.
  • the upper retaining counter-elements 500 are Z-shaped, with a lower, directed parallel to the side wall leg rests against the inside of the outer U-leg of the lateral roof strut 50 and the middle leg rests on the outwardly directed flange portion of the lateral roof strut 50 and extends to the outer edge.
  • About the running in the depth direction length of the lateral roof strut 50 are in the illustrated embodiment arranged two spaced upper retaining counter-elements 500 and connected, for example by means of screws on the downwardly directed legs with the outer U-legs of the roof strut 50 by means of screws, but also come with other connecting means in question.
  • the outer, upwardly facing legs of the upper holding counter-elements 500 are provided with said slot-shaped openings, which are vertically aligned in the embodiment shown.
  • matched upper holding elements 30 are mounted, by means of which the side wall 3 is fixed to the upper holding counter-elements 500, for example by means of retaining screws 300 or other holding means.
  • the upper support members 30 are mounted in the embodiment shown at an upper right angle inwardly directed towards the refrigerator compartment upper edge and have a rectangular cross-sectional shape. A directed perpendicular to the plane of the side wall 3 legs is placed on the right-angled inwardly facing edge of the side wall 3 into contact and z. B. attached by screws.
  • a parallel to the plane of the side wall 3 upwardly directed leg of the upper support members 30 is aligned in its position relative to the mounted side wall 3 on the position of the associated upper holding counter-element 500 and has a passage opening for a retaining screw 300, which in the embodiment shown as a horizontal slot-shaped Opening is formed, which is thus aligned at right angles to the slot-shaped opening of the upper holding counter-element 500, whereby a horizontal and vertical adjustment possibility of the side wall 3 is given.
  • a plurality of these matched in location and dimensioning upper support members 30 are mounted on the side wall 3, as seen from Fig. 6B seen.
  • FIG. 6C shows the procedure for the attachment of the side walls 3 of the cooling rack 1 .
  • the side wall with their lower support members 31 inserted into the lower holding counter-elements 200 and then pivoted in its upper region against the lateral edges of the roof group 5 and rear wall group 4 and the roof strut 50 and vertical strut 40.
  • the side wall group 3 is fixed by means of the upper holding elements 30 to the upper retaining counter-elements 500 by means of the retaining screws 300.
  • the cooling rack 1 is advantageously designed with a cooling device 6, which has an oblique plate heat exchanger arranged on the roof, which is connected via a large lateral collecting tube with further cooling components in the rear wall group 4.
  • a further advantageous embodiment consists in a hybrid attachment on the roof of the cooling rack 1.
  • the hybrid attachment has a plate heat exchanger with air cooling for heat dissipation to the shelf environment in the event that a relatively low room temperature is present, and in addition a heat exchanger for connection to a central heat exchanger if the ambient temperature of the refrigerated shelf 1 or other requirements for a dissipation of the heat speak in a remote from the refrigerator shelf 1 space.
  • the hybrid attachment is designed in such a way that a controlled switching z. B. depending on the ambient temperature of the refrigerated shelf 1 by means of a control device.
  • a special air duct is provided over the back of the shelf to avoid a short circuit in the air flow.
  • a further advantageous embodiment relates to the arrangement of the compressor of the cooling device 6.
  • the compressor housing for the compressor is adapted to the shape of the compressor, with a half-shell-like housing of plastic with lateral mounting flange and lower end wall is present.
  • the Arrangement of the compressor housing is in the lower part of the rear wall, for example, in the central region with respect to the width, provided, wherein the assembly is done from the inside.

Landscapes

  • Physics & Mathematics (AREA)
  • Thermal Sciences (AREA)
  • Devices That Are Associated With Refrigeration Equipment (AREA)
  • Freezers Or Refrigerated Showcases (AREA)
  • Refrigerator Housings (AREA)

Claims (11)

  1. Vitrine réfrigérante comportant un châssis, qui sur chaque face, présente un cadre en C (10) pourvu d'un montant vertical (40) latéral arrière, d'une traverse supérieure latérale (50), montée à l'extrémité supérieure dudit montant vertical et saillant vers l'avant dans le sens de la profondeur, et d'une traverse inférieure latérale montée à l'extrémité inférieure du montant vertical (40) et saillant vers l'avant dans le sens de la profondeur, les cadres latéraux en C (10) étant montés séparément et portant des parties d'habillage d'un ensemble inférieur (2), d'un ensemble arrière (4) et d'un ensemble supérieur (5), ces parties d'habillage étant reliées par des éléments de montage et définissant un espace de réfrigération,
    les cadres latéraux en C (10) étant dressés, leur traverse inférieure, dotée de pieds (70), sur le sol,
    entre les cadres latéraux en C (10) étant disposé au moins un cadre intermédiaire en C (10'), qui est espacé latéralement des premiers, est de forme différente de ceux-ci et comporte une traverse intermédiaire horizontale (21) inférieure, saillant vers l'avant, un montant intermédiaire vertical (41) et une traverse intermédiaire supérieure (51), saillant vers l'avant, le cadre intermédiaire en C (10') reposant, quant à lui, avec les traverses intermédiaires inférieures (21) sur le sol, à l'aide de pieds (71),
    caractérisée en ce que
    l'au moins une traverse intermédiaire supérieure (51) et/ou les traverses supérieures latérales (50) présente(nt) une section transversale en forme de profilé chapeau et en ce que l'espace creux de la traverse intermédiaire supérieure (51) est ouvert vers le bas et l'espace creux des traverses supérieures latérales (50) est ouvert vers le haut.
  2. Vitrine réfrigérante selon l'une des revendications précédentes,
    caractérisée en ce que
    l'au moins un montant intermédiaire vertical (41) et/ou les montants verticaux latéraux présente(nt) une section transversale en forme de profilé chapeau.
  3. Vitrine réfrigérante selon l'une des revendications précédentes,
    caractérisée en ce que
    l'au moins une traverse intermédiaire inférieure (21) présente une section transversale en forme de profilé chapeau.
  4. Vitrine réfrigérante selon l'une des revendications précédentes,
    caractérisée en ce que
    les traverses inférieures latérales (50) sont conçues sous forme de profilé creux fermé doté d'une section transversale carré ou rectangulaire ou présente une section transversale en C ou encore en chapeau.
  5. Vitrine réfrigérante selon l'une des revendications précédentes,
    caractérisée en ce que
    les montants verticaux latéraux (40) sont serrés contre les faces frontales arrière des traverses supérieures latérales (50) et des traverses inférieures latérales (20) avec ou sans entretoise (516) et
    en ce que les montants intermédiaires verticaux (41), sont serrés contre les faces frontales arrière des traverses intermédiaires supérieures (51) et des traverses intermédiaires inférieures (21) avec ou sans entretoise.
  6. Vitrine réfrigérante selon la revendication 5,
    caractérisée en ce que
    pour serrer ensemble les montants verticaux latéraux (40) et les traverses supérieures latérales (50) associées ainsi que les traverses inférieures latérales associées (20) et/ou pour serrer ensemble les montants intermédiaires verticaux (41) et les traverses intermédiaires supérieures et inférieures (51, 21), des pièces de fixation (512) présentant un évidement fileté et s'étendant transversalement par rapport à l'axe longitudinale des traverses, sont insérées dans une partie fixation arrière des traverses supérieures latérales (50) et des traverses inférieures latérales (20), cette partie fixation étant tournée vers les montants verticaux (40), ainsi que dans des parties fixations (511, 210) arrière des traverses intermédiaires supérieures et inférieures (21, 51), ces parties fixation étant tournées vers les montants intermédiaires verticaux (41) ; pièces de fixation dans lesquelles sont vissées des vis de serrage, dirigées par les montants verticaux correspondants (40) et par les montants intermédiaires verticaux correspondants (41).
  7. Vitrine réfrigérante selon l'une des revendications précédentes,
    caractérisée en ce que
    les montants verticaux latéraux (40) et les traverses inférieures latérales associées (20) sont reliés au moyen d'une équerre de renfort (90).
  8. Vitrine réfrigérante selon l'une des revendications précédentes,
    caractérisée en ce qu'un montant de support vertical (80) respectif est monté entre les traverses inférieure (20) et supérieure (50) latérales des deux cadres latéraux (10) dans la partie arrière, espacé vers l'avant du montant vertical (40).
  9. Vitrine réfrigérante selon l'une des revendications précédentes,
    caractérisée en ce que
    que les parties d'habillage comprennent des éléments thermo-isolants en forme de plaques, lesquels sont fixés sur la face intérieure des cadres latéraux (10) et du cadre intermédiaire (10'), face qui est tournée vers l'espace de réfrigération.
  10. Vitrine réfrigérante selon la revendication 8 ou 9,
    caractérisée en ce que
    les montants de support (80) sont dotés de rangées de trous à intervalles pré-définis, dans lesquels des bras de support saillants vers l'avant dans l'espace de réfrigération peuvent être accrochés et
    en ce que les montants de support (80) constitués de métal sont montés de sorte à soutenir les traverses supérieures (50) et inférieures (20) latérales, également constituées de métal, ainsi que les traverses intermédiaires inférieure et supérieure (21, 51) par le biais d'entretoise thermo-isolantes.
  11. Vitrine réfrigérante selon l'une des revendications précédentes,
    caractérisée en ce que
    des pieds avant et arrière (70, 71) réglables en hauteur sont fixés aux traverses inférieures latérales (20) et aux traverses intermédiaires inférieures (21).
EP15705522.9A 2014-02-14 2015-02-04 Vitrine réfrigérante Active EP3104749B1 (fr)

Priority Applications (2)

Application Number Priority Date Filing Date Title
SI201530575T SI3104749T1 (sl) 2014-02-14 2015-02-04 Hladilni regal
PL15705522T PL3104749T3 (pl) 2014-02-14 2015-02-04 Regał chłodniczy

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE202014100662.1U DE202014100662U1 (de) 2014-02-14 2014-02-14 Kühlregal
PCT/EP2015/052297 WO2015121125A1 (fr) 2014-02-14 2015-02-04 Vitrine réfrigérante

Publications (2)

Publication Number Publication Date
EP3104749A1 EP3104749A1 (fr) 2016-12-21
EP3104749B1 true EP3104749B1 (fr) 2018-12-12

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ID=50276785

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EP15705522.9A Active EP3104749B1 (fr) 2014-02-14 2015-02-04 Vitrine réfrigérante

Country Status (18)

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US (1) US10420426B2 (fr)
EP (1) EP3104749B1 (fr)
JP (1) JP2017511457A (fr)
CN (1) CN106061328B (fr)
BR (1) BR112016016199B1 (fr)
DE (1) DE202014100662U1 (fr)
DK (1) DK3104749T3 (fr)
ES (1) ES2705402T3 (fr)
HU (1) HUE043742T2 (fr)
MX (1) MX2016010407A (fr)
MY (1) MY178569A (fr)
PL (1) PL3104749T3 (fr)
PT (1) PT3104749T (fr)
RU (1) RU2644042C1 (fr)
SI (1) SI3104749T1 (fr)
TR (1) TR201900592T4 (fr)
WO (1) WO2015121125A1 (fr)
ZA (1) ZA201605585B (fr)

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JP6692076B2 (ja) * 2015-12-18 2020-05-13 パナソニックIpマネジメント株式会社 ショーケース
US11717097B2 (en) * 2020-05-22 2023-08-08 American Business Forms, Inc. Moveable base for retail gondola
US11723463B2 (en) 2021-09-21 2023-08-15 True Manufacturing Co., Inc. Refrigerator cabinet
US11300347B1 (en) * 2020-09-24 2022-04-12 True Manufacturing Co., Inc. Refrigerator cabinet
US11980300B2 (en) * 2020-12-07 2024-05-14 Hill Phoenix, Inc. Display case with insulated foam paneling

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Also Published As

Publication number Publication date
JP2017511457A (ja) 2017-04-20
MY178569A (en) 2020-10-16
MX2016010407A (es) 2016-11-30
PL3104749T3 (pl) 2019-05-31
CN106061328A (zh) 2016-10-26
SI3104749T1 (sl) 2019-04-30
RU2644042C1 (ru) 2018-02-07
PT3104749T (pt) 2019-01-28
WO2015121125A1 (fr) 2015-08-20
DK3104749T3 (en) 2019-02-04
BR112016016199A2 (fr) 2017-08-08
ES2705402T3 (es) 2019-03-25
CN106061328B (zh) 2020-03-03
HUE043742T2 (hu) 2019-09-30
US20170007039A1 (en) 2017-01-12
TR201900592T4 (tr) 2019-02-21
DE202014100662U1 (de) 2014-02-24
ZA201605585B (en) 2017-11-29
BR112016016199B1 (pt) 2022-03-22
US10420426B2 (en) 2019-09-24
EP3104749A1 (fr) 2016-12-21

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