Splicing plate and splicing floor
By designing the splicing, overlapping, and supporting parts of the splicing panels, the problem of water seepage and leakage in spliced flooring due to thermal expansion and contraction was solved, achieving convenient assembly and good drainage, and improving hygiene conditions.
Patent Information
- Application Number
- CN202422967402.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-02
- Publication Date
- 2025-12-09
- Estimated Expiration
- 2034-12-02
AI Technical Summary
Existing interlocking flooring is prone to gaps due to thermal expansion and contraction, leading to water seepage and leakage, and the water is difficult to drain, causing odor and hygiene problems.
Design a splicing panel, including a panel body, splicing part, overlapping part and support part. The splicing part and overlapping part are respectively located at the bottom ends of the panel body. The splicing part forms a drainage channel, the overlapping part facilitates the installation of connectors, and the support part provides stable support. During assembly, a drainage gap is left between adjacent panels to facilitate water drainage.
It enables convenient assembly and good drainage of interlocking flooring, avoiding water seepage, leakage, and odor problems, and improving hygiene conditions.
Smart Images

Figure CN223647363U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of flooring technology, and in particular to a splicing board and spliced flooring using the above-mentioned splicing board. Background Technology
[0002] Existing interlocking flooring is generally laid on a joist. However, due to thermal expansion and contraction, there are often gaps between the interlocking boards during the assembly of the flooring. This can easily lead to water seepage and leakage. At the same time, the presence of the joist makes it difficult for water flowing into the gaps between the joists to drain out, which can easily cause odor and hygiene problems due to water accumulation. Utility Model Content
[0003] The technical problem to be solved by this utility model embodiment is to provide a splicing panel with a simple structure and easy assembly.
[0004] The technical problem to be solved by this utility model embodiment is to provide a modular floor that is easy to assemble and has good drainage.
[0005] To solve the above-mentioned technical problems, this utility model provides a splicing panel, including a panel body. The bottom of the panel body is provided with a splicing part, an overlapping part, and a support part for supporting the panel body. The splicing part and the overlapping part are respectively located at the bottom two ends of the panel body.
[0006] The splicing section includes a connecting section, a bottom groove section, and a splicing section connected to the panel body, and the connecting section, bottom groove section, and splicing section are connected in sequence to form a guide channel;
[0007] The overlapping portion includes a support section connected to the panel body and an overlapping section for connecting to external components. One end of the overlapping section is connected to the support section, and the other end extends laterally to the outside of the panel body.
[0008] The support section is provided with a fastening groove that matches the end of the splicing section.
[0009] As an improvement to the above solution, one end of the panel body is provided with a shielding edge, which is inclined downward toward the guide groove.
[0010] As an improvement to the above solution, the two ends of the panel body are respectively provided with a shielding edge and an extension edge, and the sum of the lateral length of the shielding edge and the lateral length of the extension edge is greater than the width of the guide groove.
[0011] As an improvement to the above solution, the overlapping section is provided with a positioning protrusion strip to form an overlapping positioning groove that is compatible with the bottom groove section between the supporting section and the supporting section.
[0012] The overlapping section extends outward relative to the positioning protrusion strip and has a fastener mounting section for installing the connector. The fastener mounting section is provided with a positioning V-groove for opening holes.
[0013] As an improvement to the above solution, the support part includes a plurality of support bars for supporting the main body of the panel, and the bottom of the support bar is provided with a bottom support plate for contacting the support surface.
[0014] As an improvement to the above solution, the upper surface of the panel body is covered with a decorative layer, and the upper surface of the panel body is roughened to allow the decorative layer to make contact with it.
[0015] As an improvement to the above solution, the panel body, splicing part, overlapping part and supporting part are integrated profile structure.
[0016] A type of interlocking flooring, comprising a plurality of the aforementioned interlocking panels;
[0017] Between two adjacent splicing panels, the splicing section of one splicing panel is snapped into the snap-fit groove of the other splicing panel, and the bottom groove section is supported on the overlapping section;
[0018] A preset distance is left between adjacent panel bodies to form a drainage gap, which is located on the guide groove.
[0019] As an improvement to the above solution, it also includes a snap-fit keel for fixing and installing the splicing panel, the snap-fit keel being provided with multiple snap-fit grooves;
[0020] The support part includes a plurality of support bars for supporting the main body of the panel. The bottom of the support bar is provided with a bottom support plate. The two sides of the slot of the snap-fit groove are provided with snap-fit strips corresponding to the outer side of the bottom support plate. The snap-fit strips are inclined downward to restrict the bottom support plate from leaving the snap-fit groove after it is snapped into the snap-fit groove.
[0021] The panel body is inserted into the snap-fit groove via the bottom support plate to connect with the snap-fit keel.
[0022] As an improvement to the above solution, the maximum width between the bottom support plates of two adjacent support bars is the snap-fit width that matches the snap-fit groove.
[0023] The width of the overlapping section is equal to the width of the snap-fit.
[0024] As an improvement to the above solution, it also includes a limiting edge strip and a water-guiding edge strip. The splicing plates are spliced together to form the main body of the floor. The limiting edge strip and the water-guiding edge strip are combined to form a frame. The main body of the floor is located within the frame.
[0025] Along the length of the guide channel, the limiting edge strip is provided on both sides of the floor body;
[0026] Along the splicing direction of the splicing panels, the water-guiding edge strips are provided on both sides of the floor body. The water-guiding edge strips are provided with drainage grooves for the floor body to be inserted into, so as to communicate with the drainage grooves of each splicing panel.
[0027] Implementing this utility model has the following beneficial effects:
[0028] This utility model embodiment discloses a splicing panel, including a panel body. The bottom of the panel body is provided with a splicing part, an overlapping part, and a support part for supporting the panel body. The splicing part and the overlapping part are respectively provided at both ends of the bottom of the panel body.
[0029] The splicing section includes a connecting section, a bottom groove section, and a splicing section connected to the panel body. The connecting section, bottom groove section, and splicing section are connected in sequence to form a guide channel. Therefore, the formation and setting of the guide channel can facilitate the outward discharge of water flowing into the guide channel.
[0030] Furthermore, the overlapping portion includes a support section connected to the panel body and an overlapping section for connecting to external components. One end of the overlapping section is connected to the support section, and the other end extends laterally to the outside of the panel body. Therefore, the overlapping section is located on the outside, which facilitates the installation of connectors by assembly personnel.
[0031] Meanwhile, the support section is provided with a fastening groove that matches the end of the splicing section, that is, the connection between adjacent splicing plates can be completed by inserting the end of the splicing end into the fastening groove.
[0032] Accordingly, this utility model also discloses a spliced floor using the above-mentioned splicing board, which is easy to assemble and has good drainage. Attached Figure Description
[0033] Figure 1 This is a perspective view of the splicing panel of this utility model;
[0034] Figure 2 This is a structural schematic diagram of the interlocking floor of this utility model;
[0035] Figure 3 This is a structural schematic diagram of the spliced panel flooring of this utility model;
[0036] Figure 4 This is a cross-sectional structural diagram of the spliced flooring of this utility model. Detailed Implementation
[0037] To make the objectives, technical solutions and advantages of this utility model clearer, the utility model will be described in further detail below with reference to the accompanying drawings.
[0038] See Figure 1 , 2 This utility model provides a splicing panel, including a panel body 1. The bottom of the panel body 1 is provided with a splicing part 2, an overlapping part 3 and a support part 4 for supporting the panel body 1. The splicing part 2 and the overlapping part 3 are respectively provided at both ends of the bottom of the panel body 1.
[0039] The splicing part 2 includes a connecting section 21, a bottom groove section 22 and a splicing section 23 connected to the panel body 1. The connecting section 21, the bottom groove section 22 and the splicing section 23 are connected in sequence to form a guide groove 2a.
[0040] The overlapping portion 3 includes a support section 31 connected to the panel body 1 and an overlapping section 32 for connecting to external components. One end of the overlapping section 32 is connected to the support section 31, and the other end extends laterally to the outside of the panel body 1. The support section 31 is provided with a fastening groove 33 that matches the end of the splicing section 23. Preferably, the fastening groove 33 is inclined downwards.
[0041] Specifically, one end of the panel body 1 is provided with a shielding edge 11, which is inclined downward toward the guide groove 2a.
[0042] The panel body 1 has a shielding edge 11 and an extension edge 12 at both ends, respectively. The sum of the lateral lengths of the shielding edge 11 and the extension edge 12 is greater than the width of the guide channel 2a. Therefore, the shielding edge 11 is inclined downwards, which avoids contact with the extension edge 12 after the splicing panels are assembled, thus forming an interlaced arrangement. This arrangement prevents the guide channel 2a from being exposed.
[0043] The overlapping section 32 is provided with a positioning protrusion 321 to form an overlapping positioning groove 32a that is adapted to the bottom groove section 22 between it and the support section 31.
[0044] The overlapping section 32 extends outward from the positioning protrusion 321 and has a fastener mounting section 322 for installing the connector. The fastener mounting section 322 has a positioning V-groove 323 for drilling holes. The V-groove 323 facilitates manual positioning and drilling later. Correspondingly, after the connector is installed at the V-groove 323, such as after bolt installation, it can work with the support section 31 to prevent the component located within the overlapping positioning groove 32a from detaching, such as the detachment of the splice 2.
[0045] The support portion 4 includes a plurality of support bars 41 for supporting the panel body 1. The bottom of each support bar 41 is provided with a bottom support plate 42 for contacting the support surface, thereby increasing the contact area of the support. This arrangement prevents the support bars 41 from damaging the support surface when they are made of a thinner size.
[0046] The upper surface of the panel body 1 is covered with a decorative layer, and the upper surface of the panel body 1 is roughened to allow the decorative layer to cover and contact the surface. The decorative layer may be a spray-painted coating, an injection-molded layer, etc. The roughened surface may be a mesh surface, a frosted surface, a toothed surface, or other structural surfaces.
[0047] Preferably, the panel body 1, splicing part 2, overlapping part 3 and supporting part 4 are an integrated profile structure.
[0048] See Figure 2 - 4. This utility model also discloses a spliced floor, including multiple splicing panels 5; between two adjacent splicing panels 5, the splicing section 23 of one splicing panel 5 is fastened into the fastening groove 33 of another splicing panel 5, and the bottom groove section 22 is supported on the overlapping section 32; a preset distance is left between adjacent panel bodies 1 to form a drainage gap, and the drainage gap is located on the guide channel 2a. This allows water flowing into the drainage gap to be discharged outward through the guide channel 2a.
[0049] Preferably, the bottom groove section 22 is positioned above the bottom support plate 42, and the height difference between the bottom groove section 22 and the bottom support plate 42 matches the thickness of the overlapping section 32, thereby providing corresponding support force at the joint between the splicing plates 5. This allows the splicing section 23 to be inserted more stably into the fastening groove 33.
[0050] Furthermore, the interlocking floor also includes a snap-fit joist 6 for fixing and installing the interlocking panels 5, and the snap-fit joist 6 is provided with a plurality of snap-fit grooves 61;
[0051] The support part 4 includes multiple support bars 41 for supporting the panel body 1. A bottom support plate 42 is provided at the bottom of each support bar 41. The two sides of the slot 61 have corresponding snap-fit strips 611 on the outer sides of the bottom support plate 42. The snap-fit strips 611 are inclined downwards to prevent the bottom support plate 42 from disengaging from the snap-fit slot 61 after it is engaged. The panel body 1 is engaged with the snap-fit keel 6 via the bottom support plate 42. This arrangement simplifies the connection between the splicing panel 5 and the snap-fit keel 6, allowing for efficient assembly while ensuring connection quality.
[0052] Preferably, the maximum width between the bottom support plates 42 of two adjacent support bars 41 is the snap-fit width that matches the snap-fit groove 61; the width of the overlapping section 32 is equal to the snap-fit width.
[0053] To stabilize the interlocking floor, the interlocking floor also includes a limiting edge strip 7 and a water-guiding edge strip 8. The interlocking panels 5 are spliced together to form the main body of the floor. The limiting edge strip 7 and the water-guiding edge strip 8 are combined to form a frame. The main body of the floor is located within the frame.
[0054] Along the length of the guide channel 2a, the limiting edge strip 7 is provided on both sides of the floor body;
[0055] Along the splicing direction of the splicing panels 5, the water-guiding edge strips 8 are provided on both sides of the floor body. The water-guiding edge strips 8 are provided with drainage grooves 81 for the floor body to be inserted into, so as to communicate with the drainage grooves 2a of each splicing panel 5. That is, a square frame structure is formed by the two limiting edge strips 7 and the two water-guiding edge strips 8.
[0056] The top of both the limiting edge strip 7 and the water-guiding edge strip 8 is provided with a panel pressing strip 9, which is located on the top edge of the main body of the floor.
[0057] The above description is the preferred embodiment of this utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the principle of this utility model, and these improvements and modifications are also considered to be within the protection scope of this utility model.
Claims
1. A splicing panel, characterized in that, The panel body includes a splicing part, an overlapping part, and a support part for supporting the panel body at its bottom. The splicing part and the overlapping part are respectively located at both ends of the bottom of the panel body. The splicing section includes a connecting section, a bottom groove section, and a splicing section connected to the panel body, and the connecting section, bottom groove section, and splicing section are connected in sequence to form a guide channel; The overlapping portion includes a support section connected to the panel body and an overlapping section for connecting to external components. One end of the overlapping section is connected to the support section, and the other end extends laterally to the outside of the panel body. The support section is provided with a fastening groove that matches the end of the splicing section.
2. The splicing panel as described in claim 1, characterized in that, One end of the panel body is provided with a shielding edge, which is inclined downward toward the guide groove.
3. The splicing panel as described in claim 2, characterized in that, The panel body has a shielding edge and an extension edge at both ends, and the sum of the lateral length of the shielding edge and the lateral length of the extension edge is greater than the width of the guide groove.
4. The splicing panel as described in claim 1, characterized in that, The overlapping section is provided with a positioning protrusion strip to form an overlapping positioning groove that is adapted to the bottom groove section between it and the support section. The overlapping section extends outward relative to the positioning protrusion strip and has a fastener mounting section for installing the connector. The fastener mounting section is provided with a positioning V-groove for opening holes.
5. The splicing panel as described in claim 4, characterized in that, The support includes multiple support bars for supporting the main body of the panel, and the bottom of the support bar is provided with a bottom support plate for contacting the support surface.
6. The splicing panel as described in claim 1, characterized in that, The upper surface of the panel body is covered with a decorative layer, and the upper surface of the panel body is roughened to allow the decorative layer to contact the surface.
7. The splicing panel as described in claim 1, characterized in that, The panel body, splicing part, overlapping part and supporting part are integrated profile structure.
8. A type of interlocking flooring, characterized in that, Includes multiple splicing panels as described in any one of claims 1-7; Between two adjacent splicing panels, the splicing section of one splicing panel is snapped into the snap-fit groove of the other splicing panel, and the bottom groove section is supported on the overlapping section; A preset distance is left between adjacent panel bodies to form a drainage gap, which is located on the guide groove.
9. The interlocking flooring as described in claim 8, characterized in that, It also includes a snap-fit keel for fixing the splicing panel, the snap-fit keel being provided with multiple snap-fit grooves; The support part includes a plurality of support bars for supporting the main body of the panel. The bottom of the support bar is provided with a bottom support plate. The two sides of the slot of the snap-fit groove are provided with snap-fit strips corresponding to the outer side of the bottom support plate. The snap-fit strips are inclined downward to restrict the bottom support plate from leaving the snap-fit groove after it is snapped into the snap-fit groove. The panel body is inserted into the snap-fit groove via the bottom support plate to connect with the snap-fit keel.
10. The interlocking flooring as described in claim 9, characterized in that, It also includes a limiting edge strip and a water-guiding edge strip. The splicing plates are spliced together to form the main body of the floor. The limiting edge strip and the water-guiding edge strip are combined to form a frame. The main body of the floor is located inside the frame. Along the length of the guide channel, the limiting edge strip is provided on both sides of the floor body; Along the splicing direction of the splicing panels, the water-guiding edge strips are provided on both sides of the floor body. The water-guiding edge strips are provided with drainage grooves for the floor body to be inserted into, so as to communicate with the drainage grooves of each splicing panel.