Display frame assembly and manufacturing method thereof

By designing a display frame assembly that can simultaneously hold silicon edge graphics and slatted wall brackets, the manufacturing process is simplified, costs and weight are reduced, stability and visual display quality are improved, and it is suitable for a variety of commercial applications.

CN121459705APending Publication Date: 2026-02-03BOATRIGHT & EGAN LTD
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Patent Information

Application Number
CN202510959584.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Priority Date
2024-11-08
Filing Date
2025-07-11
Publication Date
2026-02-03

AI Technical Summary

Technical Problem

Existing display frames are complex in design, rely on multiple individual components, resulting in high manufacturing costs and increased weight, and are not convenient for use in applications where portability and ease of installation are critical.

Method used

Design a display frame assembly that simultaneously holds a Silicon Edge Pattern (SEG) display fabric and a slatted wall bracket using multiple extrusion members, reducing the number of necessary components. The assembly utilizes a first forming part to accommodate and hold the silicone edge of the SEG display fabric, and a second forming part to clamp the cooperating components of the slatted wall bracket, simplifying the manufacturing process and improving stability.

Benefits of technology

It reduces the manufacturing cost and weight of the display frame, provides a high-quality visual display, and ensures the firm hold of the SEG display fabric and slatted wall brackets, preventing sagging and displacement. It is suitable for trade shows, retail environments, and other venues.

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Abstract

A display frame assembly is disclosed that includes a plurality of extrusion members, where each extrusion member is attached to an adjacent extrusion member to form a display frame. The first extrusion member is adapted to hold the silicon edge graphic display fabric and the slat wall bracket. The first extrusion component comprises a first forming part which is suitable for accommodating and keeping the silicon edge of the corresponding silicon edge graph display fabric so as to fixedly hold the corresponding silicon edge graph display fabric; and the second forming part is suitable for containing the cooperation component of the batten wall bracket and being clamped on the cooperation component so as to display a plurality of products.
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Description

TECHNICAL FIELD

[0001] The present disclosure relates to display frame assemblies. Further, the present disclosure relates to methods for manufacturing display frame assemblies. BACKGROUND

[0002] Generally, extrusions of various metals and plastics are used worldwide to house graphics and merchandise. Silicon edge graphics (SEG) is one of the most common methods of manufacturing extruded framed graphics. The way the frame extrusion is profiled allows for the insertion of a silicon edge into a tight fitting groove around the front face of the assembled graphic frame. The graphic display is then tensioned by the assembled graphic frame. These frames come in a variety of sizes and finishes to choose from. As such, each extruded member of the graphic frame generally has a length that can be cut to the desired length (typically using a bevel cut), and these length segments are coupled at the corners of the assembled graphic frame.

[0003] The extruded members of the assembled graphic frame can be manufactured to provide a graphic frame with a single-sided display or a double-sided display. The extruded members of the assembled graphic frame can be manufactured to provide a wall-mounted display frame, or a free-standing display frame via one or more support feet. The assembled graphic frame can include an array of light emitting diodes to allow the assembled frame to be used as a light box.

[0004] Slatwall panel systems are used globally in a variety of configurations, typically in retail environments or events for product display. Each slatwall panel is generally made of a wood or metal substrate that includes a plurality of horizontal slats formed therein. The slats can also be finished with additional extruded inserts to provide greater strength and to make the slats aesthetically more pleasing, thereby hiding the raw wood after cutting. The slats are cut into panels in a configuration that allows the slats to adopt a wide range of slatwall fixtures, which can include shelves, pegs, graphic frames, clothing rods, and fixtures custom made for specific merchandise. These known slatwall fixtures are manufactured to embed into the slats, thereby allowing the wall to bear the weight of the products supported by the fixtures.

[0005] For displaying graphics on a slatwall, there are a variety of known solutions. One solution is to adhere graphics to the surface of the slatwall using an adhesive material. Another solution is to create framed graphics that include a clip compatible with the slatwall that, in use, clips into one of the existing slats.

[0006] It is also known that free-standing graphic display frames include one or more slatwall fixtures. This configuration requires the manufacture of a shelf to house the SEG frame and a separate additional part to support and / or hold the slatwall fixture. This additional part is generally made of a metal or wood material.

[0007] While such add-on parts are widely used, the existing solutions have several limitations. The reliance on multiple individual components complicates the design process and is labor-intensive to manufacture. This complexity results in higher manufacturing costs and limits the commercially achievable goals for available product configuration options. Furthermore, the overall weight of the display frame increases, which can be a significant drawback in applications where portability or ease of installation is critical.

[0008] Accordingly, in light of the above discussion, there is a need to overcome the aforementioned drawbacks. SUMMARY

[0009] It is an object of the present disclosure to provide a display frame assembly and a method for manufacturing a display frame assembly to form a robust display frame assembly that helps reduce the number of components required to simultaneously carry a silicon edge graphic (SEG) display panel and hold one or more pre-existing fixtures compatible with panel walls, such as shelves, arms, pegs, clothes hangers, and the like. The object of the present disclosure is achieved by a display frame assembly and a method for manufacturing a display frame assembly as defined in the appended independent claims as referred to. Advantageous features are set out in the appended dependent claims.

[0010] Throughout the description and claims of this specification, the terms "comprise", "contain", "have" and "include" and variations of the word "comprising", such as "comprise" and "including", will be understood to enable, without excluding, other BRIEF DESCRIPTION OF DRAWINGS

[0011] FIG. 1A and FIG. 1B are schematic illustrations of a perspective view of a display frame assembly and an exploded view of a display frame assembly, respectively, according to an embodiment of the present disclosure;

[0012] FIG. 2A , FIG. 2C and FIG. 2E are schematic illustrations of a perspective view, a cross-sectional view, and a front view, respectively, of a first extruded member according to an embodiment of the present disclosure;

[0013] FIG. 2B and FIG. 2D are schematic illustrations of a perspective view and a cross-sectional view, respectively, of a first extruded member according to another embodiment of the present disclosure;

[0014] FIG. 3A and FIG. 3Bare schematic illustrations of an exploded view of a display frame assembly and a cross-sectional view of a first extruded member according to embodiments of the present disclosure, respectively;

[0015] FIG. 3C is a schematic illustration of a cross-sectional view of a first extruded member according to another embodiment of the present disclosure;

[0016] FIG. 4A , FIG. 4C and FIG. 4E are schematic illustrations of perspective, cross-sectional, and front view illustrations of an arrangement of a first extruded member and a second extruded member according to another embodiment of the present disclosure, respectively;

[0017] FIG. 4B and FIG. 4D are schematic illustrations of perspective and cross-sectional view illustrations of an arrangement of a first extruded member and a second extruded member according to another embodiment of the present disclosure, respectively;

[0018] FIG. 5A , FIG. 5C and FIG. 5D are schematic illustrations of perspective, front, and cross-sectional view illustrations of a first extruded member arranged on a corresponding perimeter edge of a first face and a second extruded member arranged on a corresponding perimeter edge of a second face in a display frame assembly according to another embodiment of the present disclosure;

[0019] FIG. 5B and FIG. 5E are schematic illustrations of perspective and cross-sectional view illustrations of a first extruded member arranged on a corresponding perimeter edge of a first face and a second extruded member arranged on a corresponding perimeter edge of a second face in a display frame assembly according to another embodiment of the present disclosure;

[0020] FIG. 6 is a schematic illustration of an exploded perspective view of an implementation of a display frame assembly according to embodiments of the present disclosure;

[0021] FIG. 7 is a schematic illustration of a perspective view of an implementation of a display frame assembly according to embodiments of the present disclosure;

[0022] FIG. 8 is a schematic illustration of an exploded perspective view of an implementation of a display frame assembly according to embodiments of the present disclosure;

[0023] FIG. 9 is a schematic illustration of a perspective view of an implementation of a display frame assembly according to embodiments of the present disclosure;

[0024] FIGS. 10A-10Fare schematic views of a second profile of at least one extruded member according to embodiments of the present disclosure adapted to receive and clamp onto a cooperating member of different implementations of a panel wall bracket,

[0025] FIG. 11A and FIG. 11B are schematic views of different implementations of a display frame assembly according to embodiments of the present disclosure,

[0026] FIG. 12 is a schematic view of an exploded view of an implementation of a display frame assembly according to embodiments of the present disclosure,

[0027] FIG. 13 is a schematic view of an implementation of a display frame assembly according to embodiments of the present disclosure,

[0028] FIG. 14 is a schematic view of an exploded view of a display frame assembly according to embodiments of the present disclosure,

[0029] FIG. 15 is a schematic view of an implementation of a display frame assembly according to embodiments of the present disclosure,

[0030] FIG. 16 is a schematic view of an implementation of a display frame assembly according to embodiments of the present disclosure,

[0031] FIG. 17A and FIG. 17B are schematic views of an exploded view and perspective view of a display frame assembly according to embodiments of the present disclosure,

[0032] FIG. 18 is a schematic view of an implementation of an arrangement of a first extruded member and a second extruded member according to embodiments of the present disclosure,

[0033] FIG. 19A is a schematic view of a cross-sectional view of a first extruded member according to embodiments of the present disclosure,

[0034] FIG. 19B is a schematic view of a cross-sectional view of a first extruded member according to another embodiment of the present disclosure,

[0035] FIG. 20A is a schematic view of a cross-sectional view of an arrangement of a first extruded member and a second extruded member according to another embodiment of the present disclosure,

[0036] FIG. 20B is a schematic view of a cross-sectional view of an arrangement of a first extruded member and a second extruded member according to another embodiment of the present disclosure,

[0037] FIG. 21is a schematic view of an arrangement of a first, second and third display frame assembly according to embodiments of the present disclosure;

[0038] FIG. 22A and FIG. 22C is a schematic view of a first extrusion member according to embodiments of the present disclosure, comprising a dual-slot array used in different implementation scenarios;

[0039] FIG. 22B is a schematic view of a first extrusion member according to another embodiment of the present disclosure, comprising a dual-slot array used in different implementation scenarios;

[0040] and

[0041] FIG. 23 is a flowchart depicting steps of a method for manufacturing a display frame assembly according to embodiments of the present disclosure. DETAILED DESCRIPTION

[0042] The following detailed description illustrates embodiments of the present disclosure and ways in which such embodiments can be implemented. Although some modes for carrying out the present disclosure have been disclosed, those skilled in the art will recognize that other embodiments for carrying out or practicing the present disclosure are also possible.

[0043] In a first aspect, the present disclosure provides a display frame assembly comprising:

[0044] a plurality of extrusion members, wherein each extrusion member is attached to an adjacent extrusion member to form a display frame, wherein a first extrusion member provides a peripheral edge of a first face of the display frame; the first extrusion member is adapted to hold a silicon edge graphic (SEG) display fabric and a panel wall holder, and wherein the first extrusion member comprises:

[0045] a first profiled portion adapted to receive and retain a silicon edge of a corresponding SEG display fabric to hold the corresponding SEG display fabric, and

[0046] a second profiled portion adapted to receive a cooperating member of a panel wall holder and to clamp onto the cooperating member to display a plurality of products.

[0047] The present disclosure provides the aforementioned display frame assembly that significantly reduces the number of different extruded members required for displaying a SEG display fabric and for supporting a panel wall holder, respectively. Further, the at least one extruded member is capable of holding the silicone edge of the SEG display fabric and simultaneously retaining a cooperating member of the panel wall holder, which makes the display frame assembly less costly, lighter and simpler to manufacture. In addition, the first profiled portion and the second profiled portion are capable of providing a universal and secure retention for the cooperating members of the display fabric and the panel wall holder, respectively, which prevents sagging and displacement of the SEG display fabric and the panel wall holder. In addition, the display frame is capable of providing a high quality visual display in different venues such as trade shows, retail environments and promotional events, among others.

[0048] In a second aspect, the present disclosure provides a method for manufacturing a display frame assembly, comprising:

[0049] assembling a plurality of extruded members to form a display frame, wherein a first extruded member provides a perimeter edge of a first face of the display frame; the first extruded member is adapted to retain a silicone edge graphic (SEG) display fabric and a panel wall holder on the first face of the display frame, and wherein the first extruded member comprises:

[0050] a first profiled portion adapted to accommodate and hold a corresponding silicone edge of the SEG display fabric to retain the corresponding SEG display fabric, and

[0051] a second profiled portion adapted to accommodate a cooperating member of the panel wall holder and clamp onto the cooperating member to display a plurality of products.

[0052] The present disclosure provides the aforementioned method capable of manufacturing a display frame assembly that significantly reduces the number of different extruded members required for displaying a SEG display fabric and for supporting a panel wall holder, respectively. Further, the method is capable of attaching the first extruded member to a corresponding perimeter edge of the first face of the display frame to ensure that the SEG display fabric is securely retained along the edge, thereby providing a taut and smooth display surface. In addition, the method improves the stability and integrity of the display frame, thereby preventing deformation or sagging. In addition, the at least one extruded member is capable of holding the silicone edge of the SEG display fabric while retaining the cooperating member of the panel wall holder, which makes the display frame assembly less costly, lighter and simpler to manufacture. The use of the first profiled portion ensures secure and tight retention of the silicone edge of the SEG display fabric, such that the SEG display fabric remains smooth and wrinkle-free, thereby improving the visual quality of the display frame. In addition, the use of the second profiled portion facilitates accommodation of the panel wall holder, which allows for displaying a plurality of products.

[0053] Throughout this disclosure, the term "display frame assembly" refers to a multipurpose structure that is commercially used to display products and advertisements in a single assembled structure. Generally, the display frame assembly should be sturdy, easy to assemble, and versatile for different commercial applications.

[0054] Throughout this disclosure, the term "display panel" refers to a rigid or non-rigid element designed to exhibit graphics, advertisements, promotional content, and the like. Notably, the assembled display frame is capable of providing a professional look of the display panel, which is critical for high quality visual presentation in different venues such as trade shows, retail environments, promotional events, and the like. The term "silicone edge graphic (SEG) display fabric" refers to a display fabric on which content to be displayed on the display frame is printed in high definition quality. Generally, the SEG display fabric is characterized by having silicone beads sewn around its edges. Beneficially, the silicone edges in the SEG display fabric enable the SEG display fabric to be easily inserted into the display frame, thereby creating a smooth and seamless visual presentation on the display frame. The term "face" refers to a surface of the display frame that is visible to customers to display the SEG display fabric. It should be appreciated that "at least one face" refers to "a single face" in some implementations and "multiple faces" in other implementations. Throughout this disclosure, the term "corresponding SEG display fabric" refers to a separate SEG display fabric that is displayed on each face of the display frame. Notably, the fact that each face of the display frame is adapted to provide support to the corresponding SEG display fabric means that each face of the display frame securely holds the corresponding SEG fabric to keep the corresponding SEG fabric taut and smooth for optimal visual presentation.

[0055] Optionally, the corresponding SEG display fabric is made using one of a high resolution fabric and a polyester fiber. Here, the term "high resolution fabric" refers to a type of fabric that is specifically designed for displaying detailed, high quality, and clear content with exceptional clarity. Generally, a high resolution fabric supports high quality print resolution, allowing for the reproduction of vibrant colors, fine details, and complex designs. Notably, a high resolution fabric is made from tightly woven fibers that can preserve detailed printed content without blurring or pixelation. Throughout this disclosure, the term "polyester fiber" refers to a synthetic fabric material used to make the corresponding SEG display fabric. Generally, a polyester fiber is stretch resistant, shrink resistant, and wear resistant. Notably, a polyester fiber provides a smooth surface that supports high resolution printing and ensures vibrant colors and clear details in printed graphics. Additionally, due to the durability and ease of maintenance of a polyester fiber, a polyester fiber is suitable for use in both indoor and outdoor environments. It should be appreciated that the corresponding SEG display fabric can be made from a high resolution fabric or a polyester fiber. Since a high resolution fabric provides exceptional visual clarity while a polyester fiber provides strength, the technical effect is that the corresponding SEG display fabric can be reused without loss of appearance and visual aesthetics.

[0056] Throughout this disclosure, the term "extruded member" refers to an apparatus extruded from a surface to simultaneously hold and support both the SEG display fabric and the panel wall bracket in the display frame assembly. Generally, the at least one extruded member provides a strong and rigid frame for maintaining the stability and durability of the display frame assembly. Optionally, the at least one extruded member is made using one of aluminum and steel. Notably, aluminum has a high strength-to-weight ratio that provides structural support to the at least one extruded member without adding unnecessary bulk. Furthermore, aluminum is easily extruded into complex shapes, allowing for the precise manufacturing of the at least one extruded member. Here, steel is a strong, durable metal alloy used to make the first extruded member. Notably, steel is suitable for heavy duty applications such as display frames that need to support heavier objects due to its robustness and high tensile strength. Additionally, one of aluminum and steel reduces the manufacturing cost of the at least one extruded member and its suitability in high strength applications. The technical effect is that the at least one extruded member is able to support heavier loads and withstand more wear due to superior corrosion resistance, thereby increasing the lifespan of the display frame assembly.

[0057] Throughout this disclosure, the term "perimeter edge" refers to the outer boundary or outer rim that surrounds a face of a display frame. Typically, the perimeter edge defines the outermost boundary of a face of a display frame. Here, "corresponding perimeter edge" refers to the perimeter edge to which a given extruded member of the at least one extruded member is attached. Notably, depending on the shape of the display frame (e.g., rectangular, square, etc.), the at least one corresponding perimeter edge follows the contour of the at least one face of the display frame. Advantageously, the first extruded member attached to the first corresponding perimeter edge provides a clean and finished look to the display frame. Moreover, the first extruded member is attached to the at least one corresponding perimeter edge with an attachment device such as a screw, bolt, fastener, etc.

[0058] Optionally, each extruded member further comprises a channel disposed in a central portion of each extruded member, wherein the channel is adapted to hold a planar support member. In this regard, the term "channel" refers to a hollow and linear cavity within the at least one extruded member. The term "light emitting diode" refers to a semiconductor device that emits light when an electric current is passed through it. Typically, light emitting diodes (LEDs) are made of semiconductor materials such as gallium arsenide (GaAs), gallium phosphide (GaP), etc. Moreover, LEDs are used to provide backlighting or edge lighting for the display frame. The term "central portion" refers to an area within the at least one extruded member that is equidistant from the outer edges of the at least one extruded member. Moreover, the channel disposed in the central portion of each extruded member houses and securely holds a planar panel. The planar panel supports an array of LED components across the planar member. The technical effect of positioning the LEDs in the channel is that light is evenly distributed across the entire face of the display frame, eliminating dark spots and shadows, and better lighting enhances the visibility of the display, making the display frame assembly more attractive and effective for exhibiting multiple products.

[0059] Optionally, the planar support member comprises a first face pointing in a first direction and a second face pointing in a second direction opposite the first direction, and wherein the first extruded member comprises a first extruded member disposed on a corresponding perimeter edge of the first face and a second extruded member disposed on a corresponding perimeter edge of the second face, such that a central portion of the first extruded member is in contact with a central portion of the second extruded member to form a merged channel adapted to hold the rigid planar member.

[0060] In this regard, the term "first face" refers to one of the surfaces of the display frame used to present information or graphics. The term "second face" refers to the surface of the display frame facing in the opposite direction of the first face. Typically, the second surface is used to present graphics or display information. The term "first direction" refers to the direction in which the first face of the display frame is pointing. Similarly, the term "second direction" refers to the direction in which the second face of the display frame is pointing. The term "first extruded member" refers to the extruded member attached to the corresponding peripheral edge of the first face of the display frame. The term "second extruded member" refers to the extruded member attached to the corresponding peripheral edge of the second face of the display frame. Furthermore, the display frame assembly includes a double-sided display frame that is capable of presenting information or graphics on both faces of the display frame, thereby increasing visibility and utility. Additionally, the first face and the second face of the display frame point in opposite directions, with the first extruded member and the second extruded member attached to the peripheral edge of the first face and the peripheral edge of the second face, respectively. The central portion of the first extruded member and the central portion of the second extruded member contact to form a single consolidated channel that holds the LEDs. Advantageously, combining the central portions of the extruded members into a consolidated channel provides more efficient use of space and material of at least one extruded member. The technical effect is that the display frame can be viewed from two directions, thereby making the display frame suitable for environments where visibility from multiple angles is critical, such as in advertising and retail establishments. Additionally, the use of a single consolidated channel for the LEDs reduces the need for additional materials and components, thereby making the production of the display frame more cost effective.

[0061] Throughout this disclosure, the term "first molding" refers to a section of the at least one extruded member designed to accommodate and securely hold the silicone edge of the corresponding SEG display fabric. Typically, the first molding provides a secure holding mechanism that tightly holds onto the silicone edge of the corresponding SEG display fabric to maintain tension and prevent the corresponding SEG display fabric from sagging over time. The term "silicone edge" refers to a thin strip or band made of silicone material that is stitched or attached along the edge of the corresponding SEG display fabric. Notably, the primary function of the silicone edge is to provide a flexible yet durable edge that can be inserted into the first molding of the at least one extruded member. Once the edge is inserted, the first molding of the at least one extruded member holds onto the silicone edge and creates tension in the corresponding SEG display fabric. Advantageously, the first molding facilitates easy installation of the corresponding SEG display fabric and shortens the downtime for maintaining the display content in the corresponding SEG display fabric. Additionally, the first molding can utilize pressure, locking mechanisms, or the like to hold the silicone edge, thereby ensuring secure holding without damaging the corresponding SEG display fabric.

[0062] Optionally, the first face of the rigid planar member includes an array of light emitting diode (LED) components.

[0063] In this regard, the rigid plane supports and maintains the array of LED components along the plane extending through the central channel disposed within each extrusion of the display frame. The array of LEDs includes LED components evenly distributed along the plane extending through the central channel disposed within each extrusion of the display frame.

[0064] Optionally, the first shaped portion includes a recess adapted to receive and retain a silicone edge of a corresponding SEG display fabric. In this regard, the term "recess" refers to a long and narrow cutout or indentation in the first shaped portion of the at least one extruded member. It should be appreciated that the recess in the first shaped portion is specifically shaped to accommodate and secure the silicone edge of the corresponding SEG display fabric. Notably, the recess within the first shaped portion is precisely designed to match the shaped portion of the silicone edge, thereby ensuring a tight fit. The technical effect is that the recess provides a secure attachment point for the silicone edge and ensures that the corresponding SEG display fabric remains taut and does not sag or shift over time. Additionally, the recess allows for direct insertion and securing of the silicone edge of the corresponding SEG display fabric.

[0065] Optionally, the recess in the first shaped portion includes a plurality of raised edges. Here, the term "raised edges" refers to small, raised protrusions or indentations within the recess of the first shaped portion. Typically, the plurality of raised edges are arranged in a pattern along the inner surface of the recess. Moreover, the plurality of raised edges are designed to interlock with the silicone edge of the corresponding SEG display fabric, thereby providing additional grip. Additionally, for strength and durability, the plurality of raised edges are made of the same material as the at least one extruded member. Furthermore, when the silicone edge of the corresponding SEG display fabric is inserted into the recess, the plurality of raised edges bite into the silicone edge and create multiple points of contact with the silicone edge and enhance the securing force. The technical effect is that the plurality of raised edges evenly distributes the securing force over multiple points and reduces wear and tear on the silicone edge of the corresponding SEG display fabric.

[0066] Optionally, the depth of each of the plurality of raised edges is in the range of 0.5 mm to 2 mm. In this regard, the term "depth" refers to a linear measurement of the vertical distance from the bottom of the raised edge (the location where the raised edge intersects the surface of the groove) to the peak or tip of the raised edge. Here, the depth of each of the plurality of raised edges is in the range of 0.5 mm to 2 mm. Optionally, the depth of each of the plurality of raised edges can be in the range of 0.5 mm, 0.6 mm, 0.7 mm, 0.8 mm, 0.9 mm, 1 mm, 1.2 mm, 1.4 mm, 1.6 mm, or 1.8 mm up to 0.6 mm, 0.7 mm, 0.8 mm, 0.9 mm, 1 mm, 1.2 mm, 1.4 mm, 1.6 mm, 1.8 mm, or 2 mm. Notably, the depth of each of the raised edges within the groove in the above range ensures effective retention of the silicone edge of the corresponding SEG display fabric in the first molding portion. The technical effect is that the depth range of each of the raised edges provides a firm and reliable grip on the silicone edge and accommodates slight variations in the thickness of the silicone edge of the corresponding display fabric.

[0067] Optionally, the width of each of the plurality of raised edges is in the range of 0.1 mm to 0.5 mm. In this regard, the term "width" refers to a linear measurement that indicates the horizontal distance across the bottom of each of the plurality of raised edges. Here, the width of each of the plurality of raised edges is in the range of 0.1 mm to 0.5 mm. Optionally, the width of each of the plurality of raised edges can be in the range of 0.1 mm, 0.2 mm, 0.3 mm, or 0.4 mm up to 0.2 mm, 0.3 mm, 0.4 mm, or 0.5 mm. Optionally, the width of each of the plurality of raised edges is uniform throughout the groove to provide a uniform grip strength. The technical effect is that the width range of each of the raised edges ensures sufficient surface contact to secure the silicone edge and causes the retention pressure to be evenly distributed across the silicone edge of the corresponding SEG display fabric within the groove.

[0068] Optionally, the recess in the first shaped portion includes a friction fit mechanism to retain the silicone edge of the corresponding SEG display panel. In this regard, the term "friction fit mechanism" refers to a mechanism by which a plurality of raised edges within the recess hold the silicone edge of the corresponding SEG display fabric. Notably, the friction fit mechanism relies on the resistance created by the friction between the surface of the recess and the silicone edge of the corresponding SEG display fabric. Further, the inner surface of the recess has a specific texture to increase the friction. Additionally, the recess is sized to slightly compress the silicone edge when inserted. Thus, when the silicone edge of the corresponding SEG display fabric is pushed into the recess, the friction fit mechanism engages by friction and creates a secure grip. The technical effect is that the friction fit mechanism ensures that the corresponding SEG display fabric remains in place even under varying environmental conditions without the need for additional fastening hardware.

[0069] Optionally, the first shaped portion further includes a raised surface portion within the recess of the first shaped portion, wherein the raised surface portion is adapted to enhance the retention of the recess on the silicone edge of the corresponding SEG display fabric. In this regard, the term "raised surface portion" refers to a raised portion within the recess that is designed to enhance the grip on the silicone edge of the corresponding SEG display fabric. Notably, the raised surface portion is designed to increase the contact area and friction between the recess and the silicone edge of the corresponding SEG display fabric. Further, the raised surface portion more securely retains the silicone edge of the corresponding SEG display fabric by creating additional contact points and enhancing the overall grip. The technical effect is that the raised surface portion enhances the retention and reduces the likelihood of the silicone edge of the corresponding SEG display fabric slipping out of the recess.

[0070] Throughout this disclosure, the term "second shaped portion" refers to a segment of the at least one extruded member that is designed to accommodate and securely grip onto a cooperating member of a panelized wall bracket. Typically, the second shaped portion provides a secure grip on the cooperating member of the panelized wall bracket and prevents the panelized wall bracket from disengaging or shifting. Further, the design of the second shaped portion of the at least one extruded member allows for the weight of a plurality of products mounted on the panelized wall bracket to be borne without compromising stability.

[0071] In an implementation, in the at least one extruded member, the first shaped portion is disposed at a lower position than the second shaped portion. In another implementation, in the at least one extruded member, the first shaped portion is disposed at a higher position than the second shaped portion.

[0072] Optionally, the second profiled portion includes a slot configured to receive and retain a cooperating member of the panel wall bracket. In this regard, the term "slot" refers to a specially designed opening within the second profiled portion of the extruded member to receive and grip onto the cooperating member of the panel wall bracket. Notably, the slot is precisely cut or molded into the second profiled portion of the extruded member. Further, the slot is shaped and sized to mate with the cooperating member of the panel wall bracket. Additionally, the slot is designed to allow it to grip onto the cooperating member, thereby securely holding the cooperating member in place. The gripping can involve a friction fit, a mechanical locking mechanism, or the like. The technical effect is that the slot within the second profiled portion simplifies the attachment process of the panel wall bracket and provides a secure and stable connection point for the panel wall bracket, thereby preventing the panel wall bracket from accidentally disengaging from the at least one extruded member.

[0073] Optionally, the slot includes a beveled inner edge. In this regard, the term "beveled inner edge" refers to the inner edge of the slot that is chamfered, beveled, curved, or inclined by removing sharp corners in the inner edge of the slot. The technical effect of the slot including a beveled inner edge is that it makes it easier for the panel wall bracket to be inserted into the slot due to the presence of the beveled inner edge.

[0074] The term "panel wall bracket" refers to a support bracket used to hold and display a plurality of products. The term "product" refers to an item or good intended to be displayed on the panel wall bracket. Typically, the plurality of products can include a wide variety of items intended for exhibition or sale, such as clothing, accessories, electronics, tools, sporting equipment, decorative items, and the like. Notably, the panel wall bracket is designed to be easily attached to and detached from the second profiled portion of the at least one extruded member. Further, the panel wall bracket is made of a durable material, such as metal or high-strength plastic. Additionally, the panel wall bracket can be easily moved and reconfigured for flexible display arrangements. Throughout this disclosure, the term "cooperating member" refers to the portion of the panel wall bracket designed to fit within the slot of the second profiled portion of the at least one extruded member. Notably, the cooperating member is designed to match the shape and size of the second profiled portion of the at least one extruded member.

[0075] Optionally, each of the at least one extruded member further comprises an internal bracket, wherein the internal bracket is adapted to hold a first end of an L-shaped support plate, wherein a second end of the L-shaped support plate is held by an adjacent extruded member attached to another peripheral edge adjacent to the corresponding peripheral edge. In this regard, the term "internal bracket" refers to a space present in each of the at least one extruded member configured to hold and secure the first end of the L-shaped support plate. Typically, the internal bracket is integral to the structure of each of the at least one extruded member. It is to be understood that the internal bracket is built into or securely attached within each of the at least one extruded member during manufacturing. Further, the internal bracket comprises features such as notches, clamps or other fastening mechanisms that allow the internal bracket to securely hold the first end of the L-shaped support plate. The term "L-shaped support plate" refers to a support plate shaped like the letter "L" that serves to provide support between the corresponding peripheral edge of the at least one extruded member and the adjacent extruded member attached to another peripheral edge positioned adjacent to the corresponding peripheral edge. The term "adjacent extruded member" refers to an extruded member attached on the adjacent side of the corresponding peripheral edge of the at least one extruded member. Notably, the second end of the L-shaped support plate is held by the adjacent extruded member to provide lateral support. Further, the L-shaped support plate has holes to screw the first and second ends of the L-shaped support plate into the internal bracket of the at least one extruded member and the adjacent extruded member, respectively. The technical effect is that the internal bracket effectively utilizes the internal space of each extruded member to provide support for the display frame without increasing the external volume and the display frame gains additional stability, thereby reducing the risk of deformation or collapse under weight or stress.

[0076] Optionally, the at least one extruded member further comprises at least one dual-notch array. In this regard, the term "dual-notch" refers to two parallel hollow notches in the surface of the at least one extruded member designed to provide flexibility in moving and adjusting one or more elements attached to the at least one extruded member, for example, shelf brackets, shelf inserts, hanging tracks, hooks, pegs, bookshelves, and the like. Further, the at least one dual-notch array is stamped or laser-processed onto the surface of the at least one extruded member. The technical effect of the at least one extruded member further comprising the at least one dual-notch array is to provide additional adaptability in moving one or more elements attached to the at least one extruded member.

[0077] Optionally, the display framework assembly further comprises a support structure, wherein the support structure is one of a foot support and a wall support. In this regard, the term "support structure" refers to an auxiliary component that provides stability and support to the display framework assembly. Typically, the support structure ensures that the display framework assembly is firmly positioned and maintained in the desired orientation. The term "foot support" refers to a base plate that supports the display framework assembly placed on the ground to enable the display framework assembly to stand independently. Notably, the size of the foot support depends on the size of the display framework. Optionally, the foot support can be made of the same material or a different material used to manufacture the at least one extruded member. The term "wall support" refers to a mounting mechanism that attaches the display framework assembly to a wall. Furthermore, the support structure ensures that the display framework assembly remains upright and stable in the intended location and prevents the display framework assembly from toppling over or shifting. Additionally, the support structure allows the display framework assembly to be used in various environments and configurations, whether standing independently or wall-mounted. Moreover, the support structure includes a mechanism (such as screws, brackets, clips, etc.) that securely attaches the support structure to the display framework assembly and the support surface (floor or wall). The technical effect is that the foot support provides an upright and firm base for the display framework, and the wall support ensures that the display framework can be used in various locations and configurations, thereby increasing the utility of the idle wall space.

[0078] Optionally, the display framework is attached to a second SEG display framework, wherein the second SEG display framework is attached to an outer side of the extruded member to which the corresponding top perimeter edge of the display framework is attached.

[0079] In this regard, the term "another SEG display panel" refers to a second SEG display framework that is attached to the display framework to expand the display surface. Notably, the second display framework is used to display additional information about the plurality of products, such as the logo of the brand to which the products belong. The term "outer side" refers to the outer surface of the extruded member that faces away from the orientation of the display framework when assembled. Furthermore, the outer side of the extruded member serves as a mounting point for attaching the second SEG display framework. Here, the extruded member is attached to the corresponding top perimeter edge of the display framework. Additionally, the attachment ensures that the second SEG display framework is properly aligned and expands the display area in a coordinated manner. The technical effect is to allow multiple SEG display frameworks to be easily added, thereby expanding the display area and allowing for a larger and more complex visual presentation.

[0080] Optionally, the first extruded member for use in the aforementioned framework assembly comprises:

[0081] a first formation adapted to receive and retain a silicone edge of a corresponding SEG display fabric to hold the corresponding SEG display fabric, and

[0082] a second profiled portion adapted to receive a co-operating member of a panel wall bracket and to clamp onto the co-operating member to display a plurality of products.

[0083] In this regard, the first extruded member is provided as a stand-alone component for subsequent use as a component of a framework assembly. For example, the spare framework component enables a framework assembly to be repaired or a set of components to be provided within which the framework components can subsequently be assembled to form a framework assembly.

[0084] The present disclosure also relates to a method as described above. The various embodiments and variants disclosed above in relation to the display framework assembly apply mutatis mutandis to the method.

[0085] Detailed description of the drawings

[0086] Reference FIG. 1A and FIG. 1B , respectively, show a perspective view of a display framework assembly 100 and a schematic view of an exploded view of a display framework assembly 100, according to embodiments of the present disclosure. As shown, the display framework assembly 100 comprises a support plate 106. Furthermore, the support plate 106 is adapted to provide support for the framework assembly 100. In addition, the display framework assembly 100 comprises a first extruded member (depicted as first extruded member 108) attached to at least one corresponding perimeter edge (depicted as first corresponding perimeter edge 110) of a first face 104 of the support plate 106, wherein the first extruded member 108 is adapted to hold the corresponding support plate 106, and wherein the first extruded member 108 comprises a first profiled portion (not shown) adapted to receive and retain a silicon edge of a corresponding SEG display fabric to hold the corresponding SEG display fabric (not shown) and a second profiled portion adapted to receive a co-operating member of a panel wall bracket (not shown) and to clamp onto the co-operating member to display a plurality of products. Optionally, the first extruded member 108 further comprises an internal bracket (not shown), wherein the internal bracket is adapted to hold a first end of an L-shaped support plate 112, wherein a second end of the L-shaped support plate 112 is held by an adjacent second extruded member 114 attached to a second perimeter edge 116 adjacent to the corresponding perimeter edge 110.

[0087] Reference FIG. 2A , FIG. 2C and FIG. 2E, respectively, show schematic views of an isometric view, a cross-sectional view, and a front view of a first extrusion member 200 according to embodiments of the present disclosure. As shown, the first extrusion member 200 includes a first profiled portion 202 adapted to house and retain a silicone edge of a corresponding SEG display fabric to hold the corresponding SEG display fabric and a second profiled portion 204 adapted to house and clamp onto a cooperating member of a panel wall bracket (not shown) to display a plurality of products. Optionally, the first extrusion member 200 further includes an internal channel bracket 206 adapted to receive an L-shaped support bracket corner bracket (not shown). Optionally, the at least one extrusion member 200 further includes a channel 208 disposed in a central portion of the at least one extrusion member 200, wherein the channel 208 is adapted to hold a board for supporting a light emitting diode (LED) array (not shown). Optionally, the first profiled portion 202 of the first extrusion member 200 includes a groove 210 for housing and retaining a silicone edge of a corresponding SEG display fabric. Optionally, the first profiled portion 202 further includes a raised surface portion 212 within the groove 210 of the first profiled portion 202. Optionally, the second profiled portion 204 includes a slot 214 configured to house and clamp onto a cooperating member of a panel wall bracket. Optionally, in the at least one extrusion member 200, the first profiled portion 202 is disposed at a lower position than the second profiled portion 204.

[0088] Referring to FIG. 2B and FIG. 2D , an alternative embodiment of the first extrusion member 200 is shown, wherein the slot 214 includes a curved inner edge 216. The slot 214 includes an inner inclined surface 218 facing the curved surface 216. The inclined surface extends from a front portion of the first extrusion member 200 and into the slot 214.

[0089] Referring to FIG. 3A and FIG. 3B , respectively, show schematic views of an exploded view of a display frame assembly 300 and a cross-sectional view of a first extrusion member 302 according to embodiments of the present disclosure. As shown, the first extrusion member 302 includes an internal bracket 304. Further, the internal bracket 304 is adapted to hold a first end 306A of an L-shaped support plate 308, and a second end 306B of the L-shaped support plate 308 is held by a second extrusion member 310 attached to a second peripheral edge 312 adjacent to a first corresponding peripheral edge 314.

[0090] Referring to FIG. 3C , an alternative embodiment of the first extrusion member 302 and the second extrusion member is shown, wherein the slot includes a curved inner edge. The slot includes an inner inclined surface facing the curved surface. The inclined surface extends from a front portion of the first extrusion member and into the slot.

[0091] Referring to FIG. 4A , FIG. 4C and FIG. 4E , respectively, are schematic illustrations of perspective, cross-sectional and front views of an arrangement of a first extrusion member 400 and a second extrusion member 402 according to another embodiment of the present disclosure. As shown, a central portion of the first extrusion member 400 is in contact with a central portion of the second extrusion member 402 to form a merged channel 404 adapted to hold a support plate for supporting an array of LED components (not shown).

[0092] Referring to FIG. 4B and FIG. 4D , alternative embodiments of the first extrusion member 400 and the second extrusion member 402 are shown, in which the notch includes a curved inner edge. The notch includes an inner inclined surface facing the curved surface. The inclined surface extends from the front of the first extrusion member and into the notch.

[0093] Referring to FIG. 5A , FIG. 5C and FIG. 5D , respectively, are schematic illustrations of perspective, front and cross-sectional views of a first extrusion member 500 arranged on a corresponding perimeter edge 502 of a first face 504 of a display frame assembly (not shown) and a second extrusion member 506 arranged on a second corresponding perimeter edge (not shown) of a second face (not shown) of the display frame assembly according to another embodiment of the present disclosure. As shown, a central portion of the first extrusion member 500 is in contact with a central portion of the second extrusion member 506 to form a merged channel 508 adapted to hold a support plate for supporting an array of LED components. Optionally, the first extrusion member 500 includes a first inner cradle 510 adapted to hold a first end 512A of a first L-shaped support plate 514, and a second end 512B of the first L-shaped support plate 514 is held by a second adjacent extrusion member 516 attached to a second perimeter edge 518 adjacent to the corresponding first perimeter edge 502. Optionally, the second extrusion member 506 includes a second inner cradle 520 adapted to hold a first end 522A of a second L-shaped support plate 524, and a second end 522B of the second L-shaped support plate 524 is held by a second adjacent extrusion member (not shown) attached to another perimeter edge (not shown) adjacent to the corresponding perimeter edge (not shown).

[0094] Referring to FIG. 5B and FIG. 5E , alternative embodiments of the first extrusion member 500 and the second extrusion member 406 are shown, in which the notch includes a curved inner edge. The notch includes an inner inclined surface facing the curved surface. The inclined surface extends from the front of the first extrusion member and into the notch.

[0095] Referring to FIG. 6FIG. 6 shows a schematic diagram illustrating an exploded perspective view of an implementation of a display frame assembly 600, in accordance with an embodiment of the present disclosure. As shown, the display frame assembly 600 includes a support structure 602, where the support structure 602 is a foot support.

[0096] Referring to FIG. 7 FIG. 7 shows a schematic diagram illustrating a perspective view of an implementation of a display frame assembly 700, in accordance with an embodiment of the present disclosure. As shown, a display panel 702 of the display frame assembly 700 is attached to a second SEG display frame 704, where the second SEG display frame 704 is attached to an outer side 706 of an extruded member 708 of the at least one extruded member that is attached to a corresponding top perimeter edge (not shown) of the display frame 702.

[0097] Referring to FIG. 8 FIG. 8 shows a schematic diagram illustrating a perspective view of an implementation of a display frame assembly 800, in accordance with an embodiment of the present disclosure. As shown, a display frame 802 of the display frame assembly 800 is attached to another SEG display frame 804. Further, the display frame assembly 800 includes a support structure 806, where the support structure 806 is a foot support.

[0098] Referring to FIG. 9 FIG. 9 shows a schematic diagram illustrating a perspective view of an implementation of a display frame assembly 900, in accordance with an embodiment of the present disclosure. As shown, a first profile (not shown) of a first extruded member 902 in the display frame assembly 900 is adapted to receive and hold a silicone edge 904 of a corresponding SEG display fabric 906 to secure the corresponding SEG display fabric 906. Further, a support panel 908 of the display frame assembly 900 is attached to a second support panel 910. Optionally, another first profile (not shown) of a second extruded member (depicted as another first extruded member 912) in the display frame assembly 900 is adapted to receive and hold another silicone edge 914 of another corresponding SEG display fabric 916 to secure the other corresponding SEG display fabric 916.

[0099] Referring to FIGS. 10A-10F FIG. 10 shows a schematic diagram illustrating a second profile 1000 of a first extruded member 1002 adapted to receive and clamp onto a cooperating member (not shown) of a panel wall bracket 1004 of different implementations, in accordance with an embodiment of the present disclosure.

[0100] Referring to FIG. 11A and FIG. 11B, respectively, show schematic views of different implementations of a display framework assembly 1100 according to embodiments of the present disclosure. As shown, a second shaped portion (not shown) of a first extruded member 1102 in the display framework assembly 1100 is adapted to receive and clamp onto a cooperating member (not shown) of a panel wall bracket 1104 to display a plurality of products 1106. Further, the display framework assembly 1100 includes a support structure 1108, where the support structure 1108 is a floor support.

[0101] Referring to FIG. 12 , a schematic view of an implementation of a display framework assembly 1200 according to embodiments of the present disclosure is shown. As shown, the display framework assembly 1200 includes a support structure 1202, where the support structure 1202 is a wall support. Further, the display framework assembly 1200 includes a first extruded member 1204, where the first extruded member 1204 includes a second shaped portion 1206 adapted to receive and clamp onto a cooperating member of a panel wall bracket (not shown) to display a plurality of products (not shown).

[0102] Referring to FIG. 13 , a schematic view of an implementation of a display framework assembly 1300 according to embodiments of the present disclosure is shown. As shown, the display framework assembly 1300 includes a support structure 1302, where the support structure 1302 is a wall support. Further, a first extruded member 1304 of the display framework assembly 1300 includes a second shaped portion 1306 adapted to receive and clamp onto a cooperating member (not shown) of a panel wall bracket 1308 to display a plurality of products 1310.

[0103] Referring to FIG. 14 , a schematic view of an exploded view of a display framework assembly 1400 according to embodiments of the present disclosure is shown. As shown, a support plate 1402 includes additional panel wall brackets 1404A-B inserted into spaces 1406A-B, respectively.

[0104] Referring to FIG. 15 , a schematic view of an implementation of a display framework assembly 1500 according to embodiments of the present disclosure is shown. As shown, the display framework assembly 1500 includes a support structure 1502, where the support structure 1502 is a wall support, and where a support plate 1508 is connected to the support structure 1502 using additional panel wall brackets 1500A-B inserted into spaces 1504A-B, respectively.

[0105] Referring to FIG. 16, showing a schematic view of an implementation of a display frame assembly 1600 according to an embodiment of the present disclosure. As shown, a first extruded member 1602 of the display frame assembly 1600 includes a second formation (not shown) adapted to receive and clamp onto a cooperating member (not shown) of a panel wall bracket 1604 to display a plurality of products 1606.

[0106] Referring to FIG. 17A and FIG. 17B , respectively, are schematic views of an exploded view and a perspective view of a display frame assembly 1700 according to an embodiment of the present disclosure. As shown, each extruded member in the display frame assembly 1700 includes a channel 1704 disposed in a central portion of each extruded member 1702, wherein the channel 1704 is adapted to hold a board for supporting an array of LED components 1706. Power is supplied to the LED array through power leads / wires 1706. Optionally, the display frame assembly 1700 includes a support structure 1708, wherein the support structure 1708 is a foot support. Further, the first extruded member 1702 includes a second formation 1710 adapted to receive and clamp onto a cooperating member of a panel wall bracket (not shown) to display a plurality of products (not shown).

[0107] Referring to FIG. 18 , is a schematic view of an implementation of an arrangement of a first extruded member 1800 and a second extruded member 1802 according to an embodiment of the present disclosure. As shown, a second formation 1804 in the first extruded member 1800 includes a first slot 1806 configured to receive and hold a cooperating member 1808 of a first panel wall bracket 1810. Similarly, a second formation 1812 in the second extruded member 1802 includes a first slot (not shown) configured to receive and hold a cooperating member (not shown) of a second panel wall bracket 1814.

[0108] Referring to FIG. 19A, showing a schematic view of a cross-sectional view of a first extruded member 1900 according to an embodiment of the present disclosure. As shown, the first extruded member 1900 includes a first profiled portion 1902 adapted to house and hold a silicone edge of a corresponding SEG display fabric to hold a corresponding SEG display fabric and a second profiled portion 1904 adapted to house and clamp onto a cooperating member of a panel wall holder 1906 to display a plurality of products. Optionally, the first extruded member 1900 further includes a channel 1908 disposed in a central portion of the first extruded member 1900, wherein the channel is adapted to hold a support plate (not shown) including an array of LED components. Optionally, the first profiled portion 1902 of the first extruded member 1900 includes a groove 1910 for housing and holding a silicone edge of a corresponding SEG display fabric. Optionally, the first profiled portion 1902 further includes a raised surface portion 1912 within the groove 1910 of the first profiled portion 1902. Optionally, the second profiled portion 1904 includes a slot 1904 configured to house and clamp onto a cooperating member of a panel wall holder 1916. Optionally, in the first extruded member 1900, the first profiled portion 1902 is disposed at a higher position than the second profiled portion 1904. The panel wall holder 1906 is configured as a shelf including a base component extending from a first face of the extruded member 1900.

[0109] Referring to FIG. 19B , showing an alternative embodiment of the first extruded member 1900, wherein the slot 1904 includes a curved inner edge. The slot 1904 includes an inner inclined surface facing the curved surface. The inclined surface extends from a front portion of the first extruded member 1900 and into the slot 1904.

[0110] Referring to FIG. 20A , showing a schematic view of a cross-sectional view of an arrangement of a first extruded member 2000 and a second extruded member 2002 according to another embodiment of the present disclosure. As shown, a central portion 2014 of the first extruded member 2000 is in contact with a central portion 2016 of the second extruded member 2002 to form a merged channel 2004 adapted to hold a support plate including an array of LEDs. Further, a second profiled portion 2010 of the first extruded member 2000 is adapted to house and clamp onto a cooperating member of a panel wall holder 2006. The panel wall holder 2006 is configured as a first shelf including a base component extending from a first face of the first extruded member 2000. Further, a second profiled portion 2012 of the second extruded member 2002 is adapted to house and clamp onto a cooperating member of a panel wall holder 2008. The panel wall holder 2008 is configured as a second shelf including a base component extending from a first face of the second extruded member 2002.

[0111] Referring toFIG. 20B FIG. 20 illustrates an alternative embodiment of the first extrusion member 2000 and the second extrusion member 2002, wherein the slot includes a curved inner edge. The slot includes an inner sloped surface facing the curved surface. The sloped surface extends from the front of the first extrusion member and into the slot.

[0112] Referring to FIG. 21 FIG. 21 illustrates a schematic view of an arrangement of a first display frame assembly 2100, a second display frame assembly 2102, and a third display frame assembly 2104, in accordance with embodiments of the present disclosure. As shown, the first display frame assembly 2100 includes a first extrusion member 2106, wherein the first extrusion member 2106 includes a second profile 2108 adapted to house a cooperating member of a panel wall bracket 2110. In addition, the first display frame assembly 2100 further includes a foot support structure 2112. Further, a shelf structure 2134 is attached to the first extrusion member 2106. Similarly, the second display frame assembly 2102 includes a first extrusion member 2114, wherein at least one extrusion member 2114 includes a second profile 2116 adapted to house a cooperating member of a panel wall bracket 2118. In addition, the second display frame assembly 2102 further includes a foot support structure 2120. Further, a display surface 2122 of the second display frame assembly 2102 is attached to another SEG display fabric 2124. Similarly, the third display frame assembly 2104 includes a first extrusion member 2126, wherein the first extrusion member 2126 includes a second profile 2128 adapted to house a cooperating member of a panel wall bracket 2130. In addition, the third display frame assembly 2104 further includes a foot support structure 2130. Further, a shelf structure 2136 is attached to the first extrusion member 2126.

[0113] Referring to FIG. 22A and FIG. 22C FIG. 22 illustrates a schematic view of a first extrusion member 2200 used in different implementation scenarios, in accordance with embodiments of the present disclosure. As shown, the first extrusion member 2200 includes at least one dual slot array (depicted as a first dual slot array 2202A and a second dual slot array 2202B).

[0114] Referring to FIG. 22B FIG. 23 illustrates an alternative embodiment of the first extrusion member 2200, wherein the slot includes a curved inner edge. The slot includes an inner sloped surface facing the curved surface. The sloped surface extends from the front of the first extrusion member and into the slot.

[0115] Referring to FIG. 23, a flowchart depicting steps of a method for manufacturing a display frame assembly according to embodiments of the present disclosure is shown. At step 2302, a display panel having at least one face is configured for providing support for a corresponding silicon edge graphic (SEG) display fabric via each of the at least one face of the display panel. At step 2304, at least one extruded member is attached to at least one corresponding perimeter edge of the at least one face of the display panel, wherein the at least one extruded member is adapted to hold the corresponding SEG display fabric, and wherein each of the at least one extruded member comprises a first formation adapted to receive and retain a silicon edge of the corresponding SEG display fabric to hold the corresponding SEG display fabric, and a second formation adapted to receive and clamp onto a cooperating member of a panel wall bracket to display a plurality of products.

[0116] The above steps are merely illustrative and other alternatives can also be provided where one or more steps are added, one or more steps are removed, or one or more steps are provided in a different sequence without departing from the scope of the claims herein.

[0117] Modifications can be made to the embodiments of the present disclosure described above without departing from the scope of the present disclosure as defined by the appended claims. Expressions such as "including", "containing", "comprising", "incorporating", "consisting of", "consisting essentially of" and the like are to be construed in a non-exclusive manner when interpreting the describing and claim language set forth herein, i.e., such expressions are intended to encompass both excluding and including the items identified by such expressions. Reference to singular is also to be construed in a non-exclusive manner, i.e., as also including the plural.

Claims

1. A display frame component (100, 300, 600, 700, 800, 900, 1100, 1200, 1300, 1400, 1500, 1600, 1700, 2100, 2102, 2104), comprising: A plurality of extruded members, each of which is attached to an adjacent extruded member to form a display frame, wherein a first extruded member (108, 200, 302, 400, 500, 902, 1002, 1102, 1204, 1304, 1602, 1800, 1900, 2000, 2106, 2114, 2126, 2200) provides a peripheral edge (110, 314, 502) of a first face (104, 504) of the display frame; the first extruded member is adapted to hold a silicon edge patterned display fabric (906, 2124) and a slatted wall bracket (1004, 1104, 1308, 1604, 1810, 1814, 1906, 2006, 2008, 2110, 2118, 2130) on the first face of the display frame, and wherein the first extruded member comprises: A first forming portion (202, 1902) is adapted to receive and retain the silicon edge of the corresponding silicon edge pattern display fabric to hold the corresponding silicon edge pattern display fabric, wherein the first forming portion includes a groove (210, 1910) adapted to receive and retain the silicon edge of the corresponding silicon edge pattern display fabric, and A second forming section (204, 1000, 1206, 1306, 1710, 1804, 1812, 1904, 2010, 2012, 2108, 2116, 2128) is adapted to receive and hold the cooperating member (1808) of the slatted wall bracket to display multiple products (1606), wherein the second forming section includes slots (214, 1806) configured to receive and hold the cooperating member of the slatted wall bracket.

2. The display frame components (100, 300, 600, 700, 800, 900, 1100, 1200, 1300, 1400, 1500, 1600, 1700, 2100, 2102, 2104) according to claim 1, wherein, Each of the extrusion members also includes channels (208, 1704, 1908) arranged in the central portion of each of the extrusion members, wherein the channels are adapted to retain the planar support member.

3. The display frame component (100, 300, 600, 700, 800, 900, 1100, 1200, 1300, 1400, 1500, 1600, 1700, 2100, 2102, 2104) according to claim 1 or 2, wherein, The planar support member includes a first surface pointing in a first direction and a second surface pointing in a second direction opposite to the first direction, wherein the first extrusion member (108, 200, 302, 400, 500, 902, 1002, 1102, 1204, 1304, 1602, 1800, 1900, 2000, 2106, 2114, 2126, 2200) includes a first extrusion member disposed on a corresponding peripheral edge (110, 314, 502) of the first surface (104, 504) and a second extrusion member (114, 310, 402, 506, 1802, 2002) disposed on a corresponding peripheral edge (116) of the second surface, such that the central portion (2014) of the first extrusion member contacts the central portion (2016) of the second extrusion member to form a merging channel (404, 508, 2004) suitable for holding the rigid planar member.

4. The display frame components (100, 300, 600, 700, 800, 900, 1100, 1200, 1300, 1400, 1500, 1600, 1700, 2100, 2102, 2104) according to claim 3, wherein, The first surface of the rigid planar member includes an array of light-emitting diode components (1706).

5. The display frame component (100, 300, 600, 700, 800, 900, 1100, 1200, 1300, 1400, 1500, 1600, 1700, 2100, 2102, 2104) according to any one of the preceding claims, wherein, The first molding portion (202, 1902) further includes a raised surface portion (212) within the groove (210, 1910) of the first molding portion, wherein the raised surface portion is adapted to enhance the retention of the groove on the silicon edge of the corresponding silicon edge pattern display fabric (906, 2124).

6. The display frame component according to claim 1, wherein, The slot (214, 1806) includes an inclined inner edge (216).

7. The display frame component (100, 300, 600, 700, 800, 900, 1100, 1200, 1300, 1400, 1500, 1600, 1700, 2100, 2102, 2104) according to any one of the preceding claims, wherein, At least one of the extruded components is made of either aluminum or steel.

8. The display frame component (100, 300, 600, 700, 800, 900, 1100, 1200, 1300, 1400, 1500, 1600, 1700, 2100, 2102, 2104) according to any one of the preceding claims, wherein, The corresponding silicon edge pattern display fabric (906, 2124) is made of either high-resolution fabric or polyester fiber.

9. The display frame component (100, 300, 600, 700, 800, 900, 1100, 1200, 1300, 1400, 1500, 1600, 1700, 2100, 2102, 2104) according to any one of the preceding claims, wherein, The grooves (210, 1910) in the first molding section (202, 1902) include a friction-fitting mechanism for holding the silicon edge of the corresponding silicon edge pattern display fabric.

10. The display frame component (100, 300, 600, 700, 800, 900, 1100, 1200, 1300, 1400, 1500, 1600, 1700, 2100, 2102, 2104) according to any one of the preceding claims, wherein, At least one of the extrusion members further includes an internal bracket (206, 304, 510, 520), wherein the internal bracket is adapted to hold a first end (306A, 512A, 522A) of an L-shaped support plate (112, 308, 514, 524), wherein a second end (306B, 512B, 522B) of the L-shaped support plate is held by an adjacent extrusion member (516) attached to another peripheral edge (312, 518) adjacent to the corresponding peripheral edge (110, 314, 502).

11. The display frame assembly (100, 300, 600, 700, 800, 900, 1100, 1200, 1300, 1400, 1500, 1600, 1700, 2100, 2102, 2104) according to any one of the preceding claims, further comprising a support structure (602, 806, 1108, 1202, 1302, 1502, 1708), wherein the support structure is one of a foot support (2112, 2120, 2132) and a wall support.

12. The display frame component (100, 300, 600, 700, 800, 900, 1100, 1200, 1300, 1400, 1500, 1600, 1700, 2100, 2102, 2104) according to any one of the preceding claims, wherein, The display frame is attached to a second silicon edge graphic display frame, wherein the second silicon edge graphic display frame is attached to the outer side of the extrusion member corresponding to the top peripheral edge of the display frame.

13. The display frame component (100, 300, 600, 700, 800, 900, 1100, 1200, 1300, 1400, 1500, 1600, 1700, 2100, 2102, 2104) according to any one of the preceding claims, wherein, The groove (210, 1910) in the first forming part (202, 1902) includes a plurality of raised edges.

14. The display frame component (100, 300, 600, 700, 800, 900, 1100, 1200, 1300, 1400, 1500, 1600, 1700, 2100, 2102, 2104) according to claim 13, wherein, The depth of the edge of each of the plurality of protrusions is in the range of 0.5 mm to 2 mm.

15. The display frame assembly (100, 300, 600, 700, 800, 900, 1100, 1200, 1300, 1400, 1500, 1600, 1700, 2100, 2102, 2104) according to claim 13 or 14, wherein, The width of the edge of each of the plurality of protrusions is in the range of 0.1 mm to 0.5 mm.

16. The display frame component according to any one of the preceding claims, wherein, At least one of the extrusion components further includes at least one dual-groove array (2202A-B).

17. A first extruded member (108, 200, 302, 400, 500, 900, 1100, 1200, 1300, 1400, 1500, 1600, 1700, 2100, 2102, 2104) for use in a display frame assembly (100, 300, 600, 700, 800, 902, 1002, 1102, 1204, 1304, 1602, 1800, 1900, 2000, 2106, 2114, 2126, 2200) according to any one of the preceding claims, comprising: A first forming portion (202, 1902) is adapted to receive and retain the silicon edge of the corresponding silicon edge pattern display fabric (906, 2124) to secure the corresponding silicon edge pattern display fabric, wherein the first forming portion includes a groove (210, 1910) adapted to receive and retain the silicon edge of the corresponding silicon edge pattern display fabric, and A second forming section (204, 1000, 1206, 1306, 1710, 1804, 1812, 1904, 2010, 2012, 2108, 2116, 2128) is adapted to receive and hold a cooperating member (1808) of a slatted wall bracket (1004, 1104, 1308, 1604, 1810, 1814, 1906, 2006, 2008, 2110, 2118, 2130) on the cooperating member to display multiple products, wherein the second forming section includes slots (214, 1806) configured to receive and hold the cooperating member of the slatted wall bracket. The first extrusion component further includes at least one dual-groove array (2202A-B).

18. A method for manufacturing display frame components (100, 300, 600, 700, 800, 900, 1100, 1200, 1300, 1400, 1500, 1600, 1700, 2100, 2102, 2104), comprising: Assemble multiple extruded components to form a display frame, wherein a first extruded component provides the peripheral edges (110, 314, 502) of a first face (104, 504) of the display frame; the first extruded component is adapted to hold a silicon edge patterned display fabric (906, 2124) and slatted wall brackets (1004, 1104, 1308, 1604, 1810, 1814, 1906, 2006, 2008, 2110, 2118, 2130) on the first face of the display frame, and wherein the first extruded component comprises: A first forming portion (202, 1902) is adapted to receive and retain the silicon edge of the corresponding silicon edge pattern display fabric to hold the corresponding silicon edge pattern display fabric, wherein the first forming portion includes a groove (210, 1910) adapted to receive and retain the silicon edge of the corresponding silicon edge pattern display fabric, and A second forming section (204, 1000, 1206, 1306, 1710, 1804, 1812, 1904, 2010, 2012, 2108, 2116, 2128) is adapted to receive and hold the cooperating member (1808) of the slatted wall bracket to display multiple products (1606), wherein the second forming section includes slots (214, 1806) configured to receive and hold the cooperating member of the slatted wall bracket. The first extrusion component further includes at least one dual-groove array (2202A-B).