US20170238703A1 - Supporting Beam and Net Shelf for Shelving Apparatus - Google Patents
Supporting Beam and Net Shelf for Shelving Apparatus Download PDFInfo
- Publication number
- US20170238703A1 US20170238703A1 US15/049,124 US201615049124A US2017238703A1 US 20170238703 A1 US20170238703 A1 US 20170238703A1 US 201615049124 A US201615049124 A US 201615049124A US 2017238703 A1 US2017238703 A1 US 2017238703A1
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- Prior art keywords
- wall
- vertical
- post
- supporting
- shelf
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Classifications
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- A—HUMAN NECESSITIES
- A47—FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
- A47B—TABLES; DESKS; OFFICE FURNITURE; CABINETS; DRAWERS; GENERAL DETAILS OF FURNITURE
- A47B57/00—Cabinets, racks or shelf units, characterised by features for adjusting shelves or partitions
- A47B57/30—Cabinets, racks or shelf units, characterised by features for adjusting shelves or partitions with means for adjusting the height of detachable shelf supports
- A47B57/48—Cabinets, racks or shelf units, characterised by features for adjusting shelves or partitions with means for adjusting the height of detachable shelf supports consisting of tongues, pins or similar projecting means coacting with openings
- A47B57/50—Cabinets, racks or shelf units, characterised by features for adjusting shelves or partitions with means for adjusting the height of detachable shelf supports consisting of tongues, pins or similar projecting means coacting with openings characterised by shape or orientation of opening, e.g. keyhole-shaped
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- A—HUMAN NECESSITIES
- A47—FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
- A47B—TABLES; DESKS; OFFICE FURNITURE; CABINETS; DRAWERS; GENERAL DETAILS OF FURNITURE
- A47B47/00—Cabinets, racks or shelf units, characterised by features related to dismountability or building-up from elements
- A47B47/0083—Cabinets, racks or shelf units, characterised by features related to dismountability or building-up from elements with four vertical uprights
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- A—HUMAN NECESSITIES
- A47—FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
- A47B—TABLES; DESKS; OFFICE FURNITURE; CABINETS; DRAWERS; GENERAL DETAILS OF FURNITURE
- A47B47/00—Cabinets, racks or shelf units, characterised by features related to dismountability or building-up from elements
- A47B47/02—Cabinets, racks or shelf units, characterised by features related to dismountability or building-up from elements made of metal only
- A47B47/021—Racks or shelf units
- A47B47/027—Racks or shelf units with frames only
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- A—HUMAN NECESSITIES
- A47—FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
- A47B—TABLES; DESKS; OFFICE FURNITURE; CABINETS; DRAWERS; GENERAL DETAILS OF FURNITURE
- A47B96/00—Details of cabinets, racks or shelf units not covered by a single one of groups A47B43/00 - A47B95/00; General details of furniture
- A47B96/02—Shelves
- A47B96/021—Structural features of shelf bases
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- A—HUMAN NECESSITIES
- A47—FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
- A47B—TABLES; DESKS; OFFICE FURNITURE; CABINETS; DRAWERS; GENERAL DETAILS OF FURNITURE
- A47B96/00—Details of cabinets, racks or shelf units not covered by a single one of groups A47B43/00 - A47B95/00; General details of furniture
- A47B96/06—Brackets or similar supporting means for cabinets, racks or shelves
Definitions
- the present invention relates to a shelving apparatus, and more particularly to a supporting beam and a net shelf for a shelving apparatus, wherein the supporting beam can be quickly and rigidly attached to two vertical posts to support the net shelf for substantially distributing the weight force of an object to the vertical posts.
- a conventional shelf structure comprises four vertical posts vertically extended from four corners of the shelf structure and a plurality of supporting panels horizontally and spacedly coupled at the vertical posts to form a shelving unit for supporting objects.
- each supporting panel comprises a plurality of beams coupled between two of the post member and a panel body supported by the beams.
- U.S. Pat. No. 4,342,397 disclosed a beam coupled between two posts B 1 . As shown in FIG.
- the beam has an outside vertical wall A 1 , a bottom wall A 2 extending horizontally from the bottom of the vertical wall A 1 , a top wall A 3 extending horizontally from the vertical wall A 1 with a vertically downwardly extending wall A 4 extending from the top wall A 3 , an inwardly extending horizontally wall A 5 and a vertically downwardly extending wall A 6 .
- the beam structure requires two lockers to lock the ends of the beam with the posts B 1 respectively.
- each locker has a locking mechanism to lock up the bottom wall A 2 and the horizontally wall A 5 of the beam to the post B 1 , such that when the object is supported on the supporting panel, the downward weighting force of the object will substantially exert to the bottom wall A 2 and the horizontally wall A 5 to create stress thereat. Since the bottom wall A 2 and the horizontally wall A 5 are spacedly extended from the vertical wall A 1 of the beam, the excessive downward force of the object will bend the bottom wall A 2 and the horizontally wall A 5 , and even twist the beam. Once the bottom wall A 2 or the horizontally wall A 5 is bent or deformed, the beam cannot be stably supported by the post B 1 .
- the locking engagement between the beam and the locker requires a clearance in order to enable the bottom wall A 2 and the horizontally wall A 5 to be locked up with the locker.
- the clearance will create an unwanted movement between the beam and the post B 1 . Therefore, the overall structure of the shelving unit become wobble and unstable.
- each post B 1 has a post wall B 2 and a plurality of rectangular openings B 3 spacedly formed on the post wall B 2 .
- the post B 1 is made of rectangular hollow sheet metal, such that the stress at the rectangular opening B 3 will tear the post wall B 2 .
- the two opposed stress force from two beams will oppositely tear the post wall B 2 apart. In other words, the overall structure of the shelving unit will be collapsed once the post B 1 is broken.
- the invention is advantageous in that it provides a supporting beam and a net shelf for a shelving apparatus, wherein the supporting beam can be quickly and rigidly attached to two vertical posts to support the net shelf for substantially distributing the weight force of an object to the vertical posts.
- Another advantage of the invention is to a supporting beam and a net shelf for a shelving apparatus, wherein the beam member of the supporting beam is double-locked up with vertical post to prevent any unwanted lateral or twisting movement between the beam member and the vertical post so as to prevent any deformation of the beam member or the vertical post in response to the weight force of the object.
- Another advantage of the invention is to a supporting beam and a net shelf for a shelving apparatus, wherein the recessed beam flange is configured to have a folded double-wall structure to substantially support the net shelf. Accordingly, the supporting frame can withstand 1500 lbs of object without collapsing the shelving apparatus.
- Another advantage of the invention is to a supporting beam and a net shelf for a shelving apparatus, wherein the beam member has a built-in reinforcing structure to prevent any twisting movement of the beam member so as to provide a rigid structure to support the weight of the object and to distribute the weight of the object to the vertical post.
- Another advantage of the invention is to a supporting beam and a net shelf for a shelving apparatus, wherein a longitudinal size of the shelving structure can be selectively expanded by coupling two beam members to two sides of one single vertical post respectively.
- Another advantage of the invention is to a supporting beam and a net shelf for a shelving apparatus, which provides different supporting orientations to selectively adjust a depth of the supporting frame.
- Another advantage of the invention is to a supporting beam and a net shelf for a shelving apparatus, wherein the net shelf is reversibly supported by the shelf retaining members to selectively adjust the depth of the supporting frame.
- the user is able to selectively adjust the depth of supporting frame without disassembling the vertical posts.
- Another advantage of the invention is to provide a supporting beam and a net shelf for a shelving apparatus, wherein no expensive or complicated structure is required to employ in the present invention in order to achieve the above mentioned objects. Therefore, the present invention successfully provides an economic and efficient solution for providing a rigid configuration for the multiple shelving apparatus.
- a supporting frame for a shelving apparatus which comprises a plurality of vertical posts.
- each of the vertical posts has an inner attachment surface, a side surface perpendicularly extended from the inner attachment surface, and a plurality of attachment slots spacedly formed at the inner attachment surface.
- the supporting frame comprises a net shelf and a plurality of shelf supporting beams for supporting the net shelf.
- Each of the shelf supporting beams comprises a beam member and two post lockers provided at two ends of the beam member to detachably couple at two of the vertical posts respectively.
- Each of the post lockers comprises an extension wall perpendicularly extended from the beam member to bias against the side surface of the vertical post, a locker wall perpendicularly extended from the extension wall to bias against the inner attachment surface of the vertical post, and at least a locking element provided at the locker wall to selectively engage with at least one of the attachment slots so as to detachably couple the shelf supporting beam between the vertical posts at a position that the beam member is extended between the side surfaces of the vertical posts.
- FIG. 1 is a sectional perspective view of a beam structure of a conventional shelf.
- FIG. 2 is a perspective view of the shelving apparatus according to a preferred embodiment of the present invention.
- FIG. 3 is a partially perspective view of the post locker of the shelving apparatus according to the above preferred embodiment of the present invention.
- FIG. 4 is a perspective view of the post locker of the shelving apparatus according to the above preferred embodiment of the present invention.
- FIG. 5 is a sectional view of the vertical post of the shelving apparatus according to the above preferred embodiment of the present invention, illustrating the post locker coupled at the vertical post.
- FIG. 6 is a sectional view of the beam member of the shelving apparatus according to the above preferred embodiment of the present invention.
- FIG. 7 is a perspective view of the reinforcing member of the shelving apparatus according to the above preferred embodiment of the present invention.
- FIG. 7A illustrates an engagement between the reinforcing members and the longitudinal slot according to the above preferred embodiment of the present invention.
- FIG. 8 is a perspective view of the net shelf of the shelving apparatus according to the above preferred embodiment of the present invention.
- FIG. 9A illustrates the net shelf supported at the first position according to the above preferred embodiment of the present invention.
- FIG. 9B illustrates the net shelf supported at second first position according to the above preferred embodiment of the present invention.
- FIG. 10 illustrates two beam members coupling with the vertical post as a common post to expand a longitudinal size of the shelving apparatus.
- the shelving apparatus comprises a plurality of vertical posts 10 and a supporting frame.
- the supporting frame comprises one or more net shelves 20 and a plurality of shelf supporting beams 30 for supporting the net shelves 20 .
- each of the vertical posts 10 is supported in a vertically oriented manner to serve as a corner post of the shelving apparatus.
- four vertical posts 10 are provided that four corners of the supporting frame are coupled at the vertical posts 10 respectively.
- each of the vertical posts 10 generally has a rectangular cross section and defines an inner wall 101 , two sidewalls 102 spacedly extended from the inner wall 101 , and an outer wall 103 extended from the sidewalls 103 that the outer wall 103 is spaced apart from the inner wall 101 .
- each of the vertical post 10 has an inner attachment surface 11 defined on the inner wall 101 , two side surfaces 12 integrally and perpendicularly extended from the inner attachment surface 11 and defined on the two sidewalls 102 respectively, and a plurality of attachment slots 13 spacedly formed at the inner attachment surface 11 .
- the inner attachment surfaces 11 of the two vertical posts 10 in a transverse direction of the shelving apparatus face toward each other while the side surfaces 12 of the two vertical posts 10 in a longitudinal direction of the shelving apparatus face toward each other.
- the side surfaces 12 and an outer surface at the outer wall 103 of the vertical post 10 are flat and smooth surfaces that no hole or slot is formed thereon.
- each of the vertical post 10 further has a vertical retention slot 14 indented on the inner attachment surface 11 .
- the retention slot 14 is formed at the middle of the inner attachment surface 11 .
- the inner wall 101 has two L-shaped inner wall members, wherein each of the inner wall members has a first inner wall portion 1011 perpendicularly extended from the sidewall 102 and a second inner wall portion 1012 inwardly bent from the first inner wall portion 1011 toward the outer wall 103 .
- the retention slot 14 is defined at a space between the second inner wall portions 1012 of the inner wall members.
- the attachment slots 13 are lined up in a column manner.
- the attachment slots 13 are formed at the first inner wall portions 1011 of the inner wall members of the inner wall 101 . Therefore, two columns of the attachment slots 13 are formed on the inner attachment surface 11 of the vertical post 10 at a position that the retention slot 14 is formed between the columns of the attachment slots 13 .
- Each of the attachment slots 13 having a keyhole configuration, has an enlarged upper slot portion 131 and an elongated lower slot portion 132 , wherein a size of the upper hole portion 131 is larger than a size of the lower hole portion 132 .
- the supporting frame further comprises a plurality of cross members 40 extended between the vertical posts 10 to form a side boundary of the shelving apparatus.
- each of the cross members 40 has two ends detachably coupled at the retention slots 14 of the two vertical posts in a transverse direction.
- the cross member 40 is perpendicularly extended from the inner attachment surface 11 of the inner wall 101 of the vertical post 10 .
- the cross member 40 is located at the same level of the shelf supporting beam 30 that the cross member 40 is perpendicularly aligned the shelf supporting beam 30 end-to-end.
- the supporting frame comprises four different supporting levels, wherein at each supporting level, there are one net shelf 30 , two shelf supporting beams 30 , and two cross members 40 .
- the net shelf 20 is a wire shelf made by a plurality of longitudinal and transverse wires intersecting with each other. It should be appreciated that the net shelf 20 can be made of other configurations such as solid panel, laminated panel, or other materials such as wood or plastic.
- the net shelf 20 has a surrounding frame 21 and a base frame 22 located at different horizontal levels of the surrounding frame 21 , wherein the net shelf 20 is reversibly supported by the shelf supporting beams 30 .
- the base frame 22 is constructed to have a wire shelf configuration, wherein the surrounding frame 21 is formed as a surrounding wall and is upwardly extended from the base frame 22 .
- a circumferential size of the surrounding frame 21 is smaller than a circumferential size of the base frame 22 .
- Each of the shelf supporting beams 30 is detachably coupled with two of the vertical posts 10 , such that the shelf supporting beams 30 form a boundary frame to support the net shelf 20 therewithin.
- each of the shelf supporting beams 30 has two ends arranged for detachably coupling with two of the vertical posts 10 .
- two of the shelf supporting beams 30 serve as a front boundary and a rear boundary respectively, such that the boundary frame is formed between the front boundary and the rear boundary.
- the length of the front boundary matches with the length of the rear boundary.
- each of the shelf supporting beams 30 comprises a beam member 31 and two post lockers 32 provided at two ends of the beam member 31 to detachably couple at two of the vertical posts 10 respectively.
- each of the beam members 31 has a planar structure to be detachably coupled at two of the vertical posts 10 via the post lockers 32 .
- each of the beam members 31 comprises a vertical beam wall 311 , a top beam wall 312 integrally and horizontally extended from a top edge of the vertical beam wall 311 , and a recessed beam flange 313 integrally extended from the top beam wall 312 to define a platform supporting surface 314 to support the net shelf 20 thereon.
- the recessed beam flange 313 comprises a vertical flange wall 3131 downwardly extended the top beam wall and a U-shaped folded platform supporting wall 3132 integrally and horizontally extended from the vertical flange wall 3131 to define the platform supporting surface 314 on the folded platform supporting wall 3132 .
- the folded platform supporting wall 3132 has a double wall structure not only for rigidly supporting the net shelf 20 on the platform supporting surface 314 but also reinforce the structure of the recessed beam flange 313 to prevent any twisting movement or torque created thereat when the object is placed and supported on the net shelf 20 .
- the net shelf 20 is reversibly supported by the shelf supporting beams 30 .
- the base frame 22 of the net shelf 20 is supported on the platform supporting surfaces 314 of the beam members 31 at a first position and a reversibly second position.
- the base frame 22 is supported by the platform supporting surfaces 314 of the shelf supporting beams 30 at a position that the surrounding frame 21 of the net shelf 20 is located above the base frame 22 to form an obstruction wall of the net shelf 20 .
- the base frame 22 is supported by the platform supporting surfaces 314 of the shelf supporting beams 30 at a position that the surrounding frame 21 is located below the base frame 22 to form a boundary-less frame structure.
- Each of the beam members 31 further comprises a reinforcing wall 315 integrally extended and inwardly folded on the vertical beam wall 313 at a bottom edge thereof to bias against the post locker 32 , and at least one longitudinal reinforcing rib 316 integrally and outwardly extended from the vertical beam wall 311 . Accordingly, the reinforcing wall 315 is inwardly folded to overlap on an inner side of the vertical beam wall 313 at the bottom edge thereof, wherein the reinforcing wall 315 and the bottom portion of the vertical beam wall 313 also form a double wall structure to reinforce the structure of the vertical beam wall 313 to prevent any twisting movement or torque created thereat. As shown in FIG.
- each of the longitudinal reinforcing ribs 316 has a curved cross section integrally bent at a mid-portion of the vertical beam wall 313 to reinforce the structure of the vertical beam wall 313 to prevent any twisting movement or torque created thereat.
- each of the post lockers 32 comprises an extension wall 321 perpendicularly extended from the beam member 31 to bias against the side surface 12 of the vertical post 10 , a locker wall 322 perpendicularly extended from the extension wall 321 to bias against the inner attachment surface 11 of the vertical post 10 , and at least a locking element 323 provided at the locker wall 322 to selectively engage with at least one of the attachment slots 13 so as to detachably couple the shelf supporting beam 30 between the vertical posts 10 at a position that the beam member 31 is extended between the side surfaces 12 of the vertical posts 10 .
- each of the extension wall 321 of the post locker 32 has a locker tail 3211 extended to fittingly fill the space underneath the top beam wall 312 at an opposite side of the platform supporting surface 314 , as shown in FIG. 4 .
- the shape of the beam member 31 as shown in FIGS. 4 and 6 , is rigidly supported and retained by means of the extension walls 321 of the two post lockers 32 at two ends thereof. Therefore, the top beam wall 312 can be strengthened by the locker tail 3211 when the net shelf 20 is supported on the platform supporting surface 314 .
- two ends of the beam members 31 are coupled at two of the vertical posts 10 via the post lockers 32 respectively, such that the longitudinal reinforcing ribs 316 will generate an anti-twist reinforcing force to reinforce the planar structure of the vertical beam wall 311 so as to prevent any twisting force created thereat.
- the downward force when the downward force is applied on the platform supporting surface 314 on the recessed beam flange 313 , the downward force will transfer to the vertical beam wall 311 . Therefore, the reinforcing force from the reinforcing rib 316 will withstand the downward force at the vertical beam wall 311 . In other words, the reinforcing ribs 316 will also reinforce the downward force applied on the platform supporting surface 314 .
- the longitudinal reinforcing rib 316 will also generate a resilient force at the curved portion thereof.
- the direction of the resilient force of the longitudinal reinforcing rib 316 is opposite to the downward force applied on the platform supporting surface 314 , such that the longitudinal reinforcing rib 316 will also enhance the supporting ability of the platform supporting surface 314 to support a heavier load thereon.
- the angle between the extension wall 321 and the locker wall 322 matches with the angle between the inner attachment surface 11 of the vertical post 10 and the side surface 12 thereof.
- the angle between the extension wall 321 and the locker wall 322 is 90 degrees. Therefore, when the locking element 323 is engaged with the respective attachment slot 13 , the extension wall 321 and the locker wall 322 will overlappedly biased against the side surface 12 and the inner attachment surface 11 of the vertical post 10 respectively. It is worth mentioning that when the locking elements 323 are engaged with the attachment slots 13 respectively, the locker wall 322 is biased against the first inner wall portion 1011 to cover the attachment slots 13 . In other words, the corresponding attachment slots 13 are covered by the locker wall 322 once the post locker 32 is coupled at the vertical post 10 .
- Each of the post lockers 32 further comprises an attachment wall 324 perpendicularly extended from extension wall 321 , wherein the attachment wall 324 is overlappedly attached to the vertical beam wall 311 of the beam member 31 .
- the extension wall 321 is perpendicularly extended from the vertical beam wall 311 of the beam member 31 .
- two opposed edges of the extension wall 321 are integrally extended between the locker wall 322 and the attachment wall 324 at a position that the locker wall 322 and the attachment wall 324 are extended from the extension wall 321 at opposite directions. In other words, the locker wall 322 and the attachment wall 324 are extended in parallel.
- the locking element 323 is slidably passed through the upper slot portion 131 of the respective attachment slot 13 and is downwardly slid to engage with the lower slot portion 132 of the attachment slot 13 so as to detachably lock up the beam member 31 with the vertical post 10 .
- the locking element 323 has an elongated neck portion 3231 extended from the locker wall 322 and an enlarged head portion 3232 extended from a free end of the neck portion 3231 .
- the size of the head portion 3232 of the locking element 323 is smaller than the size of the upper slot portion 131 of the attachment slot 13 and is larger than the size of the lower slot portion 132 of the attachment slot 13 .
- the size of the neck portion 3231 is smaller than the lower slot portion 132 of the attachment slot 13 .
- the neck portion 3231 of the locking element 323 is downwardly slid to engage with the lower slot portion 132 of the attachment slot 13 , as shown in FIG. 5 .
- two locking elements 323 are spacedly provided on the locker wall 322 to detachably engage with two adjacent attachment slots 13 respectively, so as to prevent any unwanted movement between the beam member 31 and the vertical post 10 .
- Each of the post lockers 32 further comprises a retention wall 325 perpendicularly extended from the locker wall 322 to slidably insert into the retention slot 14 when the locking element 323 is engaged with the attachment slot 13 .
- the extension wall 321 , the locker wall 322 , and the retention wall 325 form a U-shaped configuration, wherein a distance between the retention slot 14 and the side surface 12 of the vertical post 10 matches with a distance between the extension wall 321 and the retention wall 325 of the post locker 32 .
- the extension wall 321 and the retention wall 325 are integrally extended from two opposed edges of the locker wall 322 respectively.
- the extension wall 321 is biased against the side surface 12 of the vertical post 10 while the retention wall 325 is slid into the retention slot 14 .
- two retention walls 325 are spacedly extended from the locker wall 322 at the upper and lower portions thereof respectively.
- the post locker 32 provides three different locking mechanisms to securely lock up the beam member 31 to the vertical post 10 .
- the first locking mechanism is that the locking element 323 is engaged with the attachment slot 13 of the vertical post 10 .
- the second locking mechanism is the surface engagement between the extension wall 321 and the side surface 12 of the vertical post 10 , and the surface engagement between the locker wall 322 and the inner attachment surface 11 of the vertical post 10 .
- the third locking mechanism is that the retention wall 325 is slidably inserted into the retention slot 14 of the vertical post 10 .
- the supporting frame further comprises a plurality of reinforcing members 33 extended between two of the beam members 31 , wherein the reinforcing members 33 are extended parallelly to the cross members 40 to support the net shelf 20 .
- each of the beam members 31 further has at least a longitudinal slot 318 formed at an inner side thereof, such that two ends of each of the reinforcing members 33 are detachably engaged with the longitudinal slots 318 of two of the beam members 31 to reinforce the beam members 31 and to retain a fixed distance therebetween.
- each of the reinforcing members 33 has a L-shaped reinforcing panel 331 to support the net shelf 20 , and two coupling latches 332 integrally extended from two ends of the reinforcing panel 331 respectively and opposedly extended with each other to slidably engage with the longitudinal slots 318 of two of the beam members 31 respectively. Accordingly, each of the coupling latches 332 is perpendicularly extended from the end of the reinforcing panel 331 .
- each of the coupling latches 332 has a tapered latch portion 3321 perpendicularly extended from the end of the reinforcing panel 331 and an inserting end portion 3322 integrally extended from the latch portion 3321 .
- two slanted edges are defined at the latch portion 3321 , wherein the inserting end portion 3322 has a uniform width.
- a coupling panel 317 is overlappedly attached to the inner side of the beam member 31 to define the longitudinal slot 318 between the coupling panel 317 and the inner side of the beam member 31 .
- a peripheral edge of the coupling panel 317 is welded to the inner side of the beam member 31 , wherein the coupling panel 317 is punched, via a metal punching machine, to form the longitudinal slot 318 with a shape and size corresponding to the shape and size of the coupling latch 332 . Therefore, after the inserting end 3322 of the coupling latch 332 is inserted into the longitudinal slot 318 , the latch portion 3321 of the coupling latch 332 is frictionally engaged with the longitudinal slot 318 so as to evenly distribute the weight force of the object to the beam members 31 and to prevent any torque generated at the reinforcing members 33 and/or the beam members 31 .
- the net shelf 20 further has a plurality of guiding notches 23 spacedly formed along the surrounding frame 21 , wherein each of the reinforcing members 33 is fitted into the guiding notches 23 when the net shelf 20 is supported at the second position.
- the base frame 22 is supported by the platform supporting surfaces 314 of the shelf supporting beams 30 at a position that the surrounding frame 21 is located below the base frame 22 to form the boundary-less frame structure.
- each supporting level of the supporting frame can withstand 1500 lbs of object to be placed thereon without damaging the structure of the shelving apparatus since the weight force of the object can be substantially distributed to the beam members 31 and the vertical posts 10 .
- two columns of the attachment slots 13 are formed on the inner attachment surface 11 of each of the vertical posts 10 , wherein two of the shelf supporting beams 30 are detachably coupled at the vertical post 10 as a common post at the opposite directions as shown in FIGS. 2, 3, and 10 to selectively expand a longitudinal size of the shelving apparatus.
- the locking element 323 of one of the shelf supporting beams 30 is engaged with the attachment slot 13 at the first column while the locking element 323 of the other shelf supporting beam 30 is engaged with the attachment slot 13 at the second column, such that the two shelf supporting beams 30 are opposedly extended from the common vertical post 10 and are aligned with each other end-to-end.
- two or more shelving apparatus are interconnected side-by-side via the common post to form a multiple shelving apparatus. Therefore, the longitudinal expansion of the shelving apparatus could be unlimited and the object supported thereon will be evenly distributed to the entire structure of the shelving apparatus. It is worth mentioning that when the object is loaded at one of the shelving apparatus, the object can be supported by the multiple shelving apparatus through the common posts. In addition, the multiple shelving apparatus will also provide a stable and rigid support by interlocking the different shelving apparatus with each other via the common posts.
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Abstract
A supporting frame, which is configured for a shelving apparatus including a plurality of vertical posts, includes a net shelf and a plurality of shelf supporting beams for supporting the net shelf. Each shelf supporting beam includes a beam member and two post lockers provided at two ends of the beam member respectively. Each post locker includes an extension wall biasing against a side surface of the vertical post, a locker wall biasing against the inner attachment surface of the vertical post, and a locking element provided at the locker wall to selectively engage with one of attachment slots of the vertical post so as to detachably couple the shelf supporting beam between the vertical posts at a position that the beam member is extended between the side surfaces of the vertical posts.
Description
- A portion of the disclosure of this patent document contains material which is subject to copyright protection. The copyright owner has no objection to any reproduction by anyone of the patent disclosure, as it appears in the United States Patent and Trademark Office patent files or records, but otherwise reserves all copyright rights whatsoever.
- Field of Invention
- The present invention relates to a shelving apparatus, and more particularly to a supporting beam and a net shelf for a shelving apparatus, wherein the supporting beam can be quickly and rigidly attached to two vertical posts to support the net shelf for substantially distributing the weight force of an object to the vertical posts.
- Description of Related Arts
- A conventional shelf structure comprises four vertical posts vertically extended from four corners of the shelf structure and a plurality of supporting panels horizontally and spacedly coupled at the vertical posts to form a shelving unit for supporting objects. In addition, each supporting panel comprises a plurality of beams coupled between two of the post member and a panel body supported by the beams. For example, U.S. Pat. No. 4,342,397 disclosed a beam coupled between two posts B1. As shown in
FIG. 1 , the beam has an outside vertical wall A1, a bottom wall A2 extending horizontally from the bottom of the vertical wall A1, a top wall A3 extending horizontally from the vertical wall A1 with a vertically downwardly extending wall A4 extending from the top wall A3, an inwardly extending horizontally wall A5 and a vertically downwardly extending wall A6. However, such beam structure has several drawbacks. Accordingly, the beam structure requires two lockers to lock the ends of the beam with the posts B1 respectively. In particular, each locker has a locking mechanism to lock up the bottom wall A2 and the horizontally wall A5 of the beam to the post B1, such that when the object is supported on the supporting panel, the downward weighting force of the object will substantially exert to the bottom wall A2 and the horizontally wall A5 to create stress thereat. Since the bottom wall A2 and the horizontally wall A5 are spacedly extended from the vertical wall A1 of the beam, the excessive downward force of the object will bend the bottom wall A2 and the horizontally wall A5, and even twist the beam. Once the bottom wall A2 or the horizontally wall A5 is bent or deformed, the beam cannot be stably supported by the post B1. In addition, the locking engagement between the beam and the locker requires a clearance in order to enable the bottom wall A2 and the horizontally wall A5 to be locked up with the locker. The clearance will create an unwanted movement between the beam and the post B1. Therefore, the overall structure of the shelving unit become wobble and unstable. - Furthermore, each post B1 has a post wall B2 and a plurality of rectangular openings B3 spacedly formed on the post wall B2. When the beam is coupled at the post wall B2 of the post B1 through the rectangular openings B3, stress will create at the rectangular openings B3 and will transfer to post wall B2. It is worth mentioning that the post B1 is made of rectangular hollow sheet metal, such that the stress at the rectangular opening B3 will tear the post wall B2. Especially when two columns of rectangular openings B3 are formed on the same post wall B2 of the post B1 for connecting with two beams, the two opposed stress force from two beams will oppositely tear the post wall B2 apart. In other words, the overall structure of the shelving unit will be collapsed once the post B1 is broken.
- The invention is advantageous in that it provides a supporting beam and a net shelf for a shelving apparatus, wherein the supporting beam can be quickly and rigidly attached to two vertical posts to support the net shelf for substantially distributing the weight force of an object to the vertical posts.
- Another advantage of the invention is to a supporting beam and a net shelf for a shelving apparatus, wherein the beam member of the supporting beam is double-locked up with vertical post to prevent any unwanted lateral or twisting movement between the beam member and the vertical post so as to prevent any deformation of the beam member or the vertical post in response to the weight force of the object.
- Another advantage of the invention is to a supporting beam and a net shelf for a shelving apparatus, wherein the recessed beam flange is configured to have a folded double-wall structure to substantially support the net shelf. Accordingly, the supporting frame can withstand 1500 lbs of object without collapsing the shelving apparatus.
- Another advantage of the invention is to a supporting beam and a net shelf for a shelving apparatus, wherein the beam member has a built-in reinforcing structure to prevent any twisting movement of the beam member so as to provide a rigid structure to support the weight of the object and to distribute the weight of the object to the vertical post.
- Another advantage of the invention is to a supporting beam and a net shelf for a shelving apparatus, wherein a longitudinal size of the shelving structure can be selectively expanded by coupling two beam members to two sides of one single vertical post respectively.
- Another advantage of the invention is to a supporting beam and a net shelf for a shelving apparatus, which provides different supporting orientations to selectively adjust a depth of the supporting frame.
- Another advantage of the invention is to a supporting beam and a net shelf for a shelving apparatus, wherein the net shelf is reversibly supported by the shelf retaining members to selectively adjust the depth of the supporting frame. In other words, the user is able to selectively adjust the depth of supporting frame without disassembling the vertical posts.
- Another advantage of the invention is to provide a supporting beam and a net shelf for a shelving apparatus, wherein no expensive or complicated structure is required to employ in the present invention in order to achieve the above mentioned objects. Therefore, the present invention successfully provides an economic and efficient solution for providing a rigid configuration for the multiple shelving apparatus.
- Additional advantages and features of the invention will become apparent from the description which follows, and may be realized by means of the instrumentalities and combinations particular point out in the appended claims.
- According to the present invention, the foregoing and other objects and advantages are attained by a supporting frame for a shelving apparatus which comprises a plurality of vertical posts.
- Accordingly, each of the vertical posts has an inner attachment surface, a side surface perpendicularly extended from the inner attachment surface, and a plurality of attachment slots spacedly formed at the inner attachment surface.
- The supporting frame comprises a net shelf and a plurality of shelf supporting beams for supporting the net shelf. Each of the shelf supporting beams comprises a beam member and two post lockers provided at two ends of the beam member to detachably couple at two of the vertical posts respectively. Each of the post lockers comprises an extension wall perpendicularly extended from the beam member to bias against the side surface of the vertical post, a locker wall perpendicularly extended from the extension wall to bias against the inner attachment surface of the vertical post, and at least a locking element provided at the locker wall to selectively engage with at least one of the attachment slots so as to detachably couple the shelf supporting beam between the vertical posts at a position that the beam member is extended between the side surfaces of the vertical posts.
- Still further objects and advantages will become apparent from a consideration of the ensuing description and drawings.
- These and other objectives, features, and advantages of the present invention will become apparent from the following detailed description, the accompanying drawings, and the appended claims.
-
FIG. 1 is a sectional perspective view of a beam structure of a conventional shelf. -
FIG. 2 is a perspective view of the shelving apparatus according to a preferred embodiment of the present invention. -
FIG. 3 is a partially perspective view of the post locker of the shelving apparatus according to the above preferred embodiment of the present invention. -
FIG. 4 is a perspective view of the post locker of the shelving apparatus according to the above preferred embodiment of the present invention. -
FIG. 5 is a sectional view of the vertical post of the shelving apparatus according to the above preferred embodiment of the present invention, illustrating the post locker coupled at the vertical post. -
FIG. 6 is a sectional view of the beam member of the shelving apparatus according to the above preferred embodiment of the present invention. -
FIG. 7 is a perspective view of the reinforcing member of the shelving apparatus according to the above preferred embodiment of the present invention. -
FIG. 7A illustrates an engagement between the reinforcing members and the longitudinal slot according to the above preferred embodiment of the present invention. -
FIG. 8 is a perspective view of the net shelf of the shelving apparatus according to the above preferred embodiment of the present invention. -
FIG. 9A illustrates the net shelf supported at the first position according to the above preferred embodiment of the present invention. -
FIG. 9B illustrates the net shelf supported at second first position according to the above preferred embodiment of the present invention. -
FIG. 10 illustrates two beam members coupling with the vertical post as a common post to expand a longitudinal size of the shelving apparatus. - The following description is disclosed to enable any person skilled in the art to make and use the present invention. Preferred embodiments are provided in the following description only as examples and modifications will be apparent to those skilled in the art. The general principles defined in the following description would be applied to other embodiments, alternatives, modifications, equivalents, and applications without departing from the spirit and scope of the present invention.
- Referring to
FIGS. 2 to 6 , a shelving apparatus according to a preferred embodiment of the present invention is illustrated, wherein the shelving apparatus comprises a plurality ofvertical posts 10 and a supporting frame. The supporting frame comprises one or morenet shelves 20 and a plurality ofshelf supporting beams 30 for supporting thenet shelves 20. - Each of the
vertical posts 10 is supported in a vertically oriented manner to serve as a corner post of the shelving apparatus. In one embodiment, fourvertical posts 10 are provided that four corners of the supporting frame are coupled at thevertical posts 10 respectively. According to the preferred embodiment, each of thevertical posts 10 generally has a rectangular cross section and defines aninner wall 101, twosidewalls 102 spacedly extended from theinner wall 101, and anouter wall 103 extended from thesidewalls 103 that theouter wall 103 is spaced apart from theinner wall 101. In particular, each of thevertical post 10 has aninner attachment surface 11 defined on theinner wall 101, twoside surfaces 12 integrally and perpendicularly extended from theinner attachment surface 11 and defined on the twosidewalls 102 respectively, and a plurality ofattachment slots 13 spacedly formed at theinner attachment surface 11. It is worth mentioning that, as shown inFIG. 3 , the inner attachment surfaces 11 of the twovertical posts 10 in a transverse direction of the shelving apparatus face toward each other while the side surfaces 12 of the twovertical posts 10 in a longitudinal direction of the shelving apparatus face toward each other. In addition, the side surfaces 12 and an outer surface at theouter wall 103 of thevertical post 10 are flat and smooth surfaces that no hole or slot is formed thereon. - As shown in
FIGS. 3 to 5 , each of thevertical post 10 further has avertical retention slot 14 indented on theinner attachment surface 11. Preferably, theretention slot 14 is formed at the middle of theinner attachment surface 11. In other words, only theinner attachment surface 11 has theattachment slots 13 and theretention slot 14 formed therein. Accordingly, theinner wall 101 has two L-shaped inner wall members, wherein each of the inner wall members has a firstinner wall portion 1011 perpendicularly extended from thesidewall 102 and a secondinner wall portion 1012 inwardly bent from the firstinner wall portion 1011 toward theouter wall 103. Theretention slot 14 is defined at a space between the secondinner wall portions 1012 of the inner wall members. - The
attachment slots 13 are lined up in a column manner. In particular, theattachment slots 13 are formed at the firstinner wall portions 1011 of the inner wall members of theinner wall 101. Therefore, two columns of theattachment slots 13 are formed on theinner attachment surface 11 of thevertical post 10 at a position that theretention slot 14 is formed between the columns of theattachment slots 13. Each of theattachment slots 13, having a keyhole configuration, has an enlargedupper slot portion 131 and an elongatedlower slot portion 132, wherein a size of theupper hole portion 131 is larger than a size of thelower hole portion 132. - As shown in
FIGS. 2 and 3 , the supporting frame further comprises a plurality ofcross members 40 extended between thevertical posts 10 to form a side boundary of the shelving apparatus. Accordingly, each of thecross members 40 has two ends detachably coupled at theretention slots 14 of the two vertical posts in a transverse direction. In other words, thecross member 40 is perpendicularly extended from theinner attachment surface 11 of theinner wall 101 of thevertical post 10. Preferably, thecross member 40 is located at the same level of theshelf supporting beam 30 that thecross member 40 is perpendicularly aligned theshelf supporting beam 30 end-to-end. - As shown in
FIGS. 2 and 3 , the supporting frame comprises four different supporting levels, wherein at each supporting level, there are onenet shelf 30, twoshelf supporting beams 30, and twocross members 40. - According to the preferred embodiment, the
net shelf 20 is a wire shelf made by a plurality of longitudinal and transverse wires intersecting with each other. It should be appreciated that thenet shelf 20 can be made of other configurations such as solid panel, laminated panel, or other materials such as wood or plastic. - As shown in
FIG. 8 , thenet shelf 20 has a surroundingframe 21 and abase frame 22 located at different horizontal levels of the surroundingframe 21, wherein thenet shelf 20 is reversibly supported by the shelf supporting beams 30. Accordingly, thebase frame 22 is constructed to have a wire shelf configuration, wherein the surroundingframe 21 is formed as a surrounding wall and is upwardly extended from thebase frame 22. In particular, a circumferential size of the surroundingframe 21 is smaller than a circumferential size of thebase frame 22. - Each of the
shelf supporting beams 30 is detachably coupled with two of thevertical posts 10, such that theshelf supporting beams 30 form a boundary frame to support thenet shelf 20 therewithin. In particular, each of theshelf supporting beams 30 has two ends arranged for detachably coupling with two of the vertical posts 10. Accordingly, two of theshelf supporting beams 30 serve as a front boundary and a rear boundary respectively, such that the boundary frame is formed between the front boundary and the rear boundary. Preferably, the length of the front boundary matches with the length of the rear boundary. - As shown in
FIGS. 3 to 6 , each of theshelf supporting beams 30 comprises abeam member 31 and twopost lockers 32 provided at two ends of thebeam member 31 to detachably couple at two of thevertical posts 10 respectively. - Each of the
beam members 31 has a planar structure to be detachably coupled at two of thevertical posts 10 via thepost lockers 32. As shown inFIG. 6 , each of thebeam members 31 comprises avertical beam wall 311, atop beam wall 312 integrally and horizontally extended from a top edge of thevertical beam wall 311, and a recessedbeam flange 313 integrally extended from thetop beam wall 312 to define aplatform supporting surface 314 to support thenet shelf 20 thereon. - The recessed
beam flange 313 comprises avertical flange wall 3131 downwardly extended the top beam wall and a U-shaped foldedplatform supporting wall 3132 integrally and horizontally extended from thevertical flange wall 3131 to define theplatform supporting surface 314 on the foldedplatform supporting wall 3132. Accordingly, the foldedplatform supporting wall 3132 has a double wall structure not only for rigidly supporting thenet shelf 20 on theplatform supporting surface 314 but also reinforce the structure of the recessedbeam flange 313 to prevent any twisting movement or torque created thereat when the object is placed and supported on thenet shelf 20. - As it is mentioned that the
net shelf 20 is reversibly supported by the shelf supporting beams 30. In particular, thebase frame 22 of thenet shelf 20 is supported on theplatform supporting surfaces 314 of thebeam members 31 at a first position and a reversibly second position. At the first position, as shown inFIG. 9A , thebase frame 22 is supported by theplatform supporting surfaces 314 of theshelf supporting beams 30 at a position that the surroundingframe 21 of thenet shelf 20 is located above thebase frame 22 to form an obstruction wall of thenet shelf 20. At the second position, as shown inFIG. 9B , thebase frame 22 is supported by theplatform supporting surfaces 314 of theshelf supporting beams 30 at a position that the surroundingframe 21 is located below thebase frame 22 to form a boundary-less frame structure. - Each of the
beam members 31 further comprises a reinforcingwall 315 integrally extended and inwardly folded on thevertical beam wall 313 at a bottom edge thereof to bias against thepost locker 32, and at least one longitudinal reinforcingrib 316 integrally and outwardly extended from thevertical beam wall 311. Accordingly, the reinforcingwall 315 is inwardly folded to overlap on an inner side of thevertical beam wall 313 at the bottom edge thereof, wherein the reinforcingwall 315 and the bottom portion of thevertical beam wall 313 also form a double wall structure to reinforce the structure of thevertical beam wall 313 to prevent any twisting movement or torque created thereat. As shown inFIG. 6 , two longitudinal reinforcingribs 316 are extended in parallel, wherein each of the longitudinal reinforcingribs 316 has a curved cross section integrally bent at a mid-portion of thevertical beam wall 313 to reinforce the structure of thevertical beam wall 313 to prevent any twisting movement or torque created thereat. - As shown in
FIGS. 4 and 5 , each of thepost lockers 32 comprises anextension wall 321 perpendicularly extended from thebeam member 31 to bias against theside surface 12 of thevertical post 10, alocker wall 322 perpendicularly extended from theextension wall 321 to bias against theinner attachment surface 11 of thevertical post 10, and at least alocking element 323 provided at thelocker wall 322 to selectively engage with at least one of theattachment slots 13 so as to detachably couple theshelf supporting beam 30 between thevertical posts 10 at a position that thebeam member 31 is extended between the side surfaces 12 of the vertical posts 10. In particular, two ends of thebeam member 31 are rigidly mounted with the twopost lockers 32 respectively, wherein each of theextension wall 321 of thepost locker 32 has alocker tail 3211 extended to fittingly fill the space underneath thetop beam wall 312 at an opposite side of theplatform supporting surface 314, as shown inFIG. 4 . In other words, the shape of thebeam member 31, as shown inFIGS. 4 and 6 , is rigidly supported and retained by means of theextension walls 321 of the twopost lockers 32 at two ends thereof. Therefore, thetop beam wall 312 can be strengthened by thelocker tail 3211 when thenet shelf 20 is supported on theplatform supporting surface 314. - It is appreciated that, as shown in
FIGS. 4 to 6 , when thenet shelf 20 as shown inFIG. 8 sits on theplatform supporting surface 314 of thebeam member 31, the downward force applied on theplatform supporting surface 314 is supported and held by supportingwall 312 which is further reinforced by the reinforcingribs 316 that not only prevent the beam wall from being bent and deformed, but also provide better supporting ability to the supportingwall 312 and the supportingsurface 314. It is worth mentioning that two ends of thebeam members 31 are coupled at two of thevertical posts 10 via thepost lockers 32 respectively, such that the longitudinal reinforcingribs 316 will generate an anti-twist reinforcing force to reinforce the planar structure of thevertical beam wall 311 so as to prevent any twisting force created thereat. In addition, when the downward force is applied on theplatform supporting surface 314 on the recessedbeam flange 313, the downward force will transfer to thevertical beam wall 311. Therefore, the reinforcing force from the reinforcingrib 316 will withstand the downward force at thevertical beam wall 311. In other words, the reinforcingribs 316 will also reinforce the downward force applied on theplatform supporting surface 314. Furthermore, by configuring the longitudinal reinforcingrib 316 to have a curved cross section outwardly extended from thevertical beam wall 311, the longitudinal reinforcingrib 316 will also generate a resilient force at the curved portion thereof. The direction of the resilient force of the longitudinal reinforcingrib 316 is opposite to the downward force applied on theplatform supporting surface 314, such that the longitudinal reinforcingrib 316 will also enhance the supporting ability of theplatform supporting surface 314 to support a heavier load thereon. - Accordingly, the angle between the
extension wall 321 and thelocker wall 322 matches with the angle between theinner attachment surface 11 of thevertical post 10 and theside surface 12 thereof. Preferably, the angle between theextension wall 321 and thelocker wall 322 is 90 degrees. Therefore, when the lockingelement 323 is engaged with therespective attachment slot 13, theextension wall 321 and thelocker wall 322 will overlappedly biased against theside surface 12 and theinner attachment surface 11 of thevertical post 10 respectively. It is worth mentioning that when the lockingelements 323 are engaged with theattachment slots 13 respectively, thelocker wall 322 is biased against the firstinner wall portion 1011 to cover theattachment slots 13. In other words, thecorresponding attachment slots 13 are covered by thelocker wall 322 once thepost locker 32 is coupled at thevertical post 10. - Each of the
post lockers 32 further comprises anattachment wall 324 perpendicularly extended fromextension wall 321, wherein theattachment wall 324 is overlappedly attached to thevertical beam wall 311 of thebeam member 31. In other words, when theattachment wall 324 is overlappedly attached to thevertical beam wall 311 of thebeam member 31, theextension wall 321 is perpendicularly extended from thevertical beam wall 311 of thebeam member 31. It is worth mentioning that two opposed edges of theextension wall 321 are integrally extended between thelocker wall 322 and theattachment wall 324 at a position that thelocker wall 322 and theattachment wall 324 are extended from theextension wall 321 at opposite directions. In other words, thelocker wall 322 and theattachment wall 324 are extended in parallel. - The locking
element 323 is slidably passed through theupper slot portion 131 of therespective attachment slot 13 and is downwardly slid to engage with thelower slot portion 132 of theattachment slot 13 so as to detachably lock up thebeam member 31 with thevertical post 10. In particular, the lockingelement 323 has an elongatedneck portion 3231 extended from thelocker wall 322 and anenlarged head portion 3232 extended from a free end of theneck portion 3231. The size of thehead portion 3232 of thelocking element 323 is smaller than the size of theupper slot portion 131 of theattachment slot 13 and is larger than the size of thelower slot portion 132 of theattachment slot 13. Also, the size of theneck portion 3231 is smaller than thelower slot portion 132 of theattachment slot 13. Therefore, when thehead portion 3232 of thelocking element 323 passes through theupper slot portion 131 of theattachment slot 13, theneck portion 3231 of thelocking element 323 is downwardly slid to engage with thelower slot portion 132 of theattachment slot 13, as shown inFIG. 5 . As shown inFIGS. 4 and 5 , two lockingelements 323 are spacedly provided on thelocker wall 322 to detachably engage with twoadjacent attachment slots 13 respectively, so as to prevent any unwanted movement between thebeam member 31 and thevertical post 10. - Each of the
post lockers 32 further comprises aretention wall 325 perpendicularly extended from thelocker wall 322 to slidably insert into theretention slot 14 when the lockingelement 323 is engaged with theattachment slot 13. As shown inFIGS. 4 and 5 , theextension wall 321, thelocker wall 322, and theretention wall 325 form a U-shaped configuration, wherein a distance between theretention slot 14 and theside surface 12 of thevertical post 10 matches with a distance between theextension wall 321 and theretention wall 325 of thepost locker 32. In other words, theextension wall 321 and theretention wall 325 are integrally extended from two opposed edges of thelocker wall 322 respectively. Therefore, when thelocker wall 322 is biased against theinner attachment surface 11 of thevertical post 10, theextension wall 321 is biased against theside surface 12 of thevertical post 10 while theretention wall 325 is slid into theretention slot 14. Preferably, tworetention walls 325 are spacedly extended from thelocker wall 322 at the upper and lower portions thereof respectively. - Therefore, the
post locker 32 provides three different locking mechanisms to securely lock up thebeam member 31 to thevertical post 10. In particular, the first locking mechanism is that the lockingelement 323 is engaged with theattachment slot 13 of thevertical post 10. The second locking mechanism is the surface engagement between theextension wall 321 and theside surface 12 of thevertical post 10, and the surface engagement between thelocker wall 322 and theinner attachment surface 11 of thevertical post 10. The third locking mechanism is that theretention wall 325 is slidably inserted into theretention slot 14 of thevertical post 10. - As shown in
FIG. 7 , the supporting frame further comprises a plurality of reinforcingmembers 33 extended between two of thebeam members 31, wherein the reinforcingmembers 33 are extended parallelly to thecross members 40 to support thenet shelf 20. Accordingly, each of thebeam members 31 further has at least alongitudinal slot 318 formed at an inner side thereof, such that two ends of each of the reinforcingmembers 33 are detachably engaged with thelongitudinal slots 318 of two of thebeam members 31 to reinforce thebeam members 31 and to retain a fixed distance therebetween. In particular, each of the reinforcingmembers 33 has a L-shaped reinforcingpanel 331 to support thenet shelf 20, and two coupling latches 332 integrally extended from two ends of the reinforcingpanel 331 respectively and opposedly extended with each other to slidably engage with thelongitudinal slots 318 of two of thebeam members 31 respectively. Accordingly, each of the coupling latches 332 is perpendicularly extended from the end of the reinforcingpanel 331. - As shown in
FIG. 7A , each of the coupling latches 332 has a taperedlatch portion 3321 perpendicularly extended from the end of the reinforcingpanel 331 and an insertingend portion 3322 integrally extended from thelatch portion 3321. In other words, two slanted edges are defined at thelatch portion 3321, wherein the insertingend portion 3322 has a uniform width. In order to form thelongitudinal slot 318, acoupling panel 317 is overlappedly attached to the inner side of thebeam member 31 to define thelongitudinal slot 318 between thecoupling panel 317 and the inner side of thebeam member 31. In particular, a peripheral edge of thecoupling panel 317 is welded to the inner side of thebeam member 31, wherein thecoupling panel 317 is punched, via a metal punching machine, to form thelongitudinal slot 318 with a shape and size corresponding to the shape and size of thecoupling latch 332. Therefore, after the insertingend 3322 of thecoupling latch 332 is inserted into thelongitudinal slot 318, thelatch portion 3321 of thecoupling latch 332 is frictionally engaged with thelongitudinal slot 318 so as to evenly distribute the weight force of the object to thebeam members 31 and to prevent any torque generated at the reinforcingmembers 33 and/or thebeam members 31. - As shown in
FIG. 8 , thenet shelf 20 further has a plurality of guidingnotches 23 spacedly formed along the surroundingframe 21, wherein each of the reinforcingmembers 33 is fitted into the guidingnotches 23 when thenet shelf 20 is supported at the second position. It is worth mentioning that at the second position, as shown inFIG. 9B , thebase frame 22 is supported by theplatform supporting surfaces 314 of theshelf supporting beams 30 at a position that the surroundingframe 21 is located below thebase frame 22 to form the boundary-less frame structure. - It is worth mentioning that for the four-leveled supporting frame of the instant invention, the structural configuration of the shelving apparatus can withstand totally 6000 lbs of object without deforming or twisting the supporting frame. In other words, each supporting level of the supporting frame can withstand 1500 lbs of object to be placed thereon without damaging the structure of the shelving apparatus since the weight force of the object can be substantially distributed to the
beam members 31 and the vertical posts 10. - In addition, two columns of the
attachment slots 13 are formed on theinner attachment surface 11 of each of thevertical posts 10, wherein two of theshelf supporting beams 30 are detachably coupled at thevertical post 10 as a common post at the opposite directions as shown inFIGS. 2, 3, and 10 to selectively expand a longitudinal size of the shelving apparatus. In other words, the lockingelement 323 of one of theshelf supporting beams 30 is engaged with theattachment slot 13 at the first column while thelocking element 323 of the othershelf supporting beam 30 is engaged with theattachment slot 13 at the second column, such that the twoshelf supporting beams 30 are opposedly extended from the commonvertical post 10 and are aligned with each other end-to-end. In other words, two or more shelving apparatus are interconnected side-by-side via the common post to form a multiple shelving apparatus. Therefore, the longitudinal expansion of the shelving apparatus could be unlimited and the object supported thereon will be evenly distributed to the entire structure of the shelving apparatus. It is worth mentioning that when the object is loaded at one of the shelving apparatus, the object can be supported by the multiple shelving apparatus through the common posts. In addition, the multiple shelving apparatus will also provide a stable and rigid support by interlocking the different shelving apparatus with each other via the common posts. - One skilled in the art will understand that the embodiment of the present invention as shown in the drawings and described above is exemplary only and not intended to be limiting.
- It will thus be seen that the objects of the present invention have been fully and effectively accomplished. The embodiments have been shown and described for the purposes of illustrating the functional and structural principles of the present invention and is subject to change without departure from such principles. Therefore, this invention includes all modifications encompassed within the spirit and scope of the following claims.
Claims (8)
1-23. (canceled)
24: A supporting frame for a shelving apparatus which comprises a plurality of vertical posts each having a plurality of attachment slots formed and lined up at an inner attachment surface of said vertical post in a column manner, wherein said supporting frame is arranged for being supported horizontally by the vertical posts and comprises:
a net shelf; and
a plurality of shelf supporting beams supporting said respective net shelf, wherein each of said shelf supporting beams comprises a beam member and two post lockers provided at two ends of said beam member for detachably coupling at two of the vertical posts respectively, wherein each of said post lockers comprises an extension wall perpendicularly extended from said beam member—for biasing against a side surface of the vertical post, an attachment wall overlappedly attached to said beam member and extended from said extension wall towards a direction, a locker wall perpendicularly extended from said extension wall towards an opposite direction for biasing against said inner attachment surface of the vertical post, and at least a locking element provided at said locker wall to selectively engage with at least one of the attachment slots so as to detachably couple said shelf supporting beam between the vertical posts at a position that said beam member is extended between the side surfaces of the vertical posts, wherein each of said beam members comprises a vertical beam wall overlappedly attached with said attachment wall, a top beam wall integrally and horizontally extended from a top edge of said vertical beam wall, and a recessed beam flange integrally extended from said top beam wall to define a platform supporting surface to support said net shelf thereon, wherein each of said post lockers further has a locker tail extended from said extension wall to fittingly fill a space underneath said top beam wall for strengthening said top beam wall.
25: The supporting frame, as recited in claim 24 , wherein each of said beam members further comprises a reinforcing wall integrally extended and inwardly folded on said vertical beam wall at a bottom edge thereof to bias against said post locker.
26: The supporting frame, as recited in claim 25 , wherein each of said beam members further comprises at least one longitudinal reinforcing rib integrally bent at a middle portion of said vertical beam wall to reinforce the structure of said vertical beam wall.
27: The supporting frame, as recited in claim 26 , wherein each of said post lockers further comprises a retention wall perpendicularly extended from said locker wall for slidably inserting into a retention slot indented on the inner attachment surface of the vertical post when said locking element is engaged with at the attachment slot.
28: The supporting frame, as recited in claim 27 , further comprising a plurality of reinforcing members, wherein each of said beam members has at least a coupling panel formed at an inner side thereof and having a longitudinal slot such that two ends of each of said reinforcing members are detachably engaged with said longitudinal slots of two of said coupling panel to reinforce said beam members and to retain a fixed distance therebetween.
29: The supporting frame, as recited in claim 28 , wherein each of said reinforcing members has a L-shaped reinforcing panel and two coupling latches integrally extended from two ends of said reinforcing panel respectively and opposedly extended with each other to slidably engage with said longitudinal slots of two of said beam members respectively.
30: The supporting frame, as recited in claim 29 , wherein said net shelf, which has a surrounding frame and a base frame located at different horizontal levels of said surrounding frame, is reversibly supported by said shelf supporting beams at a first position and a reversibly second position, wherein at said first position, said base frame is supported by said shelf supporting beams at a position that said surrounding frame is located above said base frame to form an obstruction wall of said net shelf, and at said second position, said base frame is supported by said shelf supporting beams at a position that said surrounding frame is located below said base frame to form a boundary-less frame structure.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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US15/049,124 US20170238703A1 (en) | 2016-02-21 | 2016-02-21 | Supporting Beam and Net Shelf for Shelving Apparatus |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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US15/049,124 US20170238703A1 (en) | 2016-02-21 | 2016-02-21 | Supporting Beam and Net Shelf for Shelving Apparatus |
Publications (1)
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US20170238703A1 true US20170238703A1 (en) | 2017-08-24 |
Family
ID=59631398
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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US15/049,124 Abandoned US20170238703A1 (en) | 2016-02-21 | 2016-02-21 | Supporting Beam and Net Shelf for Shelving Apparatus |
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Cited By (6)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US10806257B1 (en) * | 2020-02-12 | 2020-10-20 | Taiwan Shin Yeh Enterprise Co., Ltd. | Wire shelving assembly |
CN112093229A (en) * | 2020-09-23 | 2020-12-18 | 大连益丰金属制品有限公司 | Horizontal separation device and tray box with same |
US11344114B2 (en) * | 2018-03-12 | 2022-05-31 | Hangzhou United Tools Co., Ltd. | Shelf |
US20220378195A1 (en) * | 2021-05-28 | 2022-12-01 | Protrend Co., Ltd. | Combined type shelf |
US11583073B2 (en) | 2019-04-23 | 2023-02-21 | Edsal Manufacturing Company, Inc. | Shelf support beams and shelving units utilizing same |
US11925258B2 (en) | 2021-10-27 | 2024-03-12 | Edsal Manufacturing Company, Llc | Weldless shelf support beams and shelving units utilizing same |
-
2016
- 2016-02-21 US US15/049,124 patent/US20170238703A1/en not_active Abandoned
Cited By (6)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US11344114B2 (en) * | 2018-03-12 | 2022-05-31 | Hangzhou United Tools Co., Ltd. | Shelf |
US11583073B2 (en) | 2019-04-23 | 2023-02-21 | Edsal Manufacturing Company, Inc. | Shelf support beams and shelving units utilizing same |
US10806257B1 (en) * | 2020-02-12 | 2020-10-20 | Taiwan Shin Yeh Enterprise Co., Ltd. | Wire shelving assembly |
CN112093229A (en) * | 2020-09-23 | 2020-12-18 | 大连益丰金属制品有限公司 | Horizontal separation device and tray box with same |
US20220378195A1 (en) * | 2021-05-28 | 2022-12-01 | Protrend Co., Ltd. | Combined type shelf |
US11925258B2 (en) | 2021-10-27 | 2024-03-12 | Edsal Manufacturing Company, Llc | Weldless shelf support beams and shelving units utilizing same |
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