An ultra-thick pressed skylight tile

By designing a combined structure of ultra-thick pressure lighting tiles, the combination of reset spring and stop parts is used to solve the safety hazards caused by dust accumulation on the surface of the lighting tiles, the automatic discharge and safety distinction of dust are achieved, and the safety of roof operations is improved.

CN114809457BActive Publication Date: 2025-08-26FUJIAN SANGANG MINGUANG +1
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Patent Information

Application Number
CN202210613558.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-05-31
Publication Date
2025-08-26
Estimated Expiration
2042-05-31

AI Technical Summary

Technical Problem

The surface area of ​​the lighting tile is mixed with the surrounding iron roof after dust gathers, resulting in roof operators being easily stepped on by mistake, causing dangerous accidents.

Method used

An ultra-thick pressure-type daylighting tiles are designed, including bottom support plate, balance tile seat, daylighting plate, drainage joint, vibration guide guard and other components. Using the combination of a return spring and a stopper, dust is squeezed into the ventilation layer and discharged through ground vibration, forming a partition seam to avoid accidents.

Benefits of technology

It effectively avoids the danger of roof operators accidentally stepping on it. Through the design of a combined vibration guide protector and drainage joint, the automatic discharge of dust is realized, and the lighting tiles are distinguished from the surrounding iron roof, which improves safety.

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Abstract

The present invention discloses an ultra-thick corrugated skylight tile, which has a structure including a bottom support plate, a balancing tile seat, a skylight plate, a drainage gap, a vibration guide protector, a reinforcement frame, a connecting piece, and a stacking layer. A vibration guide protector for combined installation is provided on the surface groove of the balancing tile seat. The deformation groove is formed by the inner cavity of the support frame and the gap of the reset spring. The surface of the reset spring is provided with a snap-on stopper. The pressure caused by ground vibration will force the reset spring to bounce, and the communicating gap between the deformation groove and the drainage gap can be adjusted so that the press-fit plate slightly drops under the movable support of the stopper. The dust falling on the drainage gap is squeezed and falls on the ventilation layer and is then discharged. Then, a partition seam is formed on the surface of the skylight tile, which is separated from the surrounding iron sheet roof area, effectively avoiding accidents caused by roof workers such as those doing waterproofing accidentally stepping on it.
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Description

Technical Field

[0001] The invention belongs to the technical field of skylight tiles, and in particular relates to an ultra-thick pressed skylight tile. Background Art

[0002] Skylight tiles are also known as: skylight covers, corrugated tiles, skylight panels, and skylight strips. Skylight tiles are mainly made of PP, PC, PET, APET, or PVC materials, which are one of the new building materials. Application number: 202122670472.6 discloses an improved edge-wrapped skylight tile, which fixes the two skylight tiles by cooperating with each other between the upper mounting surface and the lower mounting surface. The double-layer skylight tile stacking design has better thermal insulation effect. Application number: 202020782671.9 discloses a roof waterproof skylight tile, which prevents rainwater from penetrating through a first waterproof and breathable membrane and a second waterproof and breathable membrane, and limits the flow of water through the leak-proof plate and the water flow trough on the leak-proof plate, which is beneficial to water discharge. The first skylight tile and the second skylight tile are in close contact through the cooperation of bolts and threaded holes to fix the skylight tile to prevent it from sliding and falling, and the cooperation of seals and fixing holes to prevent rainwater from entering.

[0003] However, as dust accumulates on the surface of the skylight tiles, the surface of the skylight tiles often blends into the surrounding iron roof. As a result, roof workers doing waterproofing and other work can easily step on them by mistake while walking, which can easily cause dangerous accidents. Summary of the Invention

[0004] In view of the shortcomings of the existing technology, the present invention aims to provide an ultra-thick pressed skylight tile. In order to achieve the above object, the present invention is implemented through the following technical solutions:

[0005] An ultra-thick pressed skylight tile, whose structure includes a bottom support plate, a balancing tile seat, a skylight plate, a drainage slit, a vibration guide protector, a reinforcement frame, a connecting piece, and a stacking layer. The balancing tile seat is provided with a bottom support plate, the skylight plate is arranged on the balancing tile seat, the skylight plate is provided with a drainage slit, a connecting piece is provided at a local transverse wall position on the surface of the bottom support plate, the reinforcement frame is arranged at equal height intervals on the groove on the surface of the balancing tile seat, the bottom support plate is provided with a stacking layer, and the stacking layer is provided with a vibration guide protector.

[0006] Furthermore, the vibration guide protector includes a deformation groove, a crimping plate, a stopper, an inner plate, a reset spring, a support frame, and a ventilation layer. The deformation groove is composed of an inner cavity of the support frame and a gap of the reset spring. The surface of the reset spring is provided with a snap-on stopper. The upper end of the stopper is movably embedded in the inner plate. The inner plate is horizontally arranged at the lower wall of the crimping plate. The ventilation layer is connected to the gap of the deformation groove. The support frame is horizontally arranged on the surface of the stacking layer.

[0007] Furthermore, the connecting pieces are correspondingly arranged at the center grooves of the reinforcement frames at both ends.

[0008] Furthermore, the drainage slit is formed by the opening grooves on both sides of the lighting plate.

[0009] Furthermore, the surface of the balancing tile seat is provided with a lighting plate with horizontal end faces.

[0010] Furthermore, the installation surface of the skylight panel is higher than the bottom support plate located at the lower part of the structure.

[0011] Furthermore, the stop member is vertically embedded in the center position of the supporting frame.

[0012] Furthermore, two ends of the surface of the compression plate correspond to interconnected drainage slits.

[0013] The present invention provides an ultra-thick pressed skylight tile, and a vibration guide protector for combined installation is provided on the groove on the surface of the balance tile seat. The deformation groove is formed by the inner cavity of the support frame and the gap of the reset spring. The surface of the reset spring is equipped with a snap-on stopper. The pressure caused by ground vibration will force the reset spring to bounce, and the gap between the deformation groove and the drainage gap can be adjusted, so that the pressing plate can slightly drop under the movable support of the stopper. Dust falling on the drainage gap is squeezed and falls on the ventilation layer and is then discharged. Then, a partition seam is formed on the surface of the skylight tile that is separated from the surrounding iron roof area, effectively avoiding accidents caused by roof workers such as those doing waterproofing accidentally stepping on it. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 This is a structural schematic diagram of an ultra-thick pressed skylight tile of the present invention;

[0015] Figure 2 This is a schematic diagram of the assembly structure of the vibration guide protector of the present invention;

[0016] Figure 3 This is a schematic diagram of the crimping assembly structure of the present invention;

[0017] Figure 4 It is a schematic diagram of the reset compression assembly structure of the present invention.

[0018] In the figure: bottom support plate 1, balancing tile seat 2, skylight plate 3, drainage slit 4, vibration guide protector 5, deformation groove 71, pressing plate 72, stop member 73, inner plate 74, return spring member 75, support frame 76, ventilation layer 77, reinforcement frame 6, connecting piece 7, overlapping layer 8. DETAILED DESCRIPTION

[0019] In order to make the technical means, creative features, objectives and effects achieved by the present invention easier to understand, the present invention is further described below in conjunction with specific implementation methods.

[0020] See also Figures 1-4 The present invention provides a technical solution: an ultra-thick pressed skylight tile, whose structure includes a bottom support plate 1, a balancing tile seat 2, a skylight plate 3, a drainage seam 4, a vibration guide protector 5, a reinforcement frame 6, a connecting piece 7, and a stacking layer 8. The balancing tile seat 2 is provided with a bottom support plate 1 that is installed and connected as a whole in combination. A connecting piece 7 is provided at a local transverse wall position on the surface of the bottom support plate 1. The reinforcement frame 6 is arranged at equal height intervals on the groove on the surface of the balancing tile seat 2. The surface of the bottom support plate 1 is integrally formed with a stacking layer 8. The surface of the stacking layer 8 is provided with a vibration guide protector 5 for combined installation. The vibration guide protector 5 includes a deformation groove 71, a pressing plate 72, a stopper 73, an inner plate 74, a reset spring 75, a support frame 76, and a ventilation layer 77. The deformation groove 71 is formed by the support frame 76. The cavity and the gap of the return spring member 75 are integrally formed, and the surface of the return spring member 75 is equipped with a snap-on stop member 73, and the upper end of the stop member 73 is movably embedded in the inner plate 74, and the inner plate 74 is horizontally arranged on the lower wall of the pressing plate 72. The ventilation layer 77 is connected to the gap of the deformation groove 71, and the supporting frame 76 is horizontally placed on the surface of the stacking layer 8. The connecting piece 7 is correspondingly installed in the center groove of the reinforcement frame 6 at both ends. The drainage gap 4 is integrally formed by the opening grooves on both sides of the skylight plate 3. The surface of the balancing tile seat 2 is provided with a skylight plate 3 with a horizontal end face spacing. The installation surface of the skylight plate 3 is higher than the bottom support plate 1 located at the lower part of the structure. The stop member 73 is vertically embedded in the center position of the supporting frame 76, and the two ends of the surface of the pressing plate 72 correspond to the corresponding drainage gaps 4.

[0021] The return spring 75 of this patent is a mechanical part that utilizes elasticity to work. The part made of elastic material is deformed under external force and returns to its original shape after the external force is removed, and is used to adjust the gap between the deformation groove 71 and the drainage slit 4.

[0022] For example: when in use, a vibration guide protector 5 for combined installation is provided on the groove on the surface of the balancing tile seat 2, and the deformation groove 71 is composed of the inner cavity of the support frame 76 and the gap of the reset spring 75. The surface of the reset spring 75 is equipped with a snap-on stop 73. The pressure caused by the vibration of the ground will force the reset spring 75 to bounce, and the gap between the deformation groove 71 and the drainage gap 4 can be adjusted so that the pressing plate 72 drops slightly under the movable support of the stop 73. The dust falling on the drainage gap 4 is squeezed and falls on the ventilation layer 77 and is then discharged. Then, a barrier seam is formed on the surface of the lighting tile that is separated from the surrounding iron roof area, which effectively avoids accidents caused by roof workers such as those doing waterproofing accidentally stepping on it.

[0023] The problem that the present invention solves is that after dust continuously accumulates on the surface of the skylight tiles, the surface of the skylight tiles and the surrounding iron roofs often become the same color. As a result, workers doing waterproofing and other roofing work can easily step on them by mistake while walking, which can easily cause dangerous accidents. The present invention combines the above-mentioned components with each other. The pressure caused by ground vibration will force the reset spring to bounce, and the gap between the deformation groove and the drainage seam can be adjusted. The dust falling on the drainage seam is squeezed and falls into the ventilation layer and is then discharged. Then, a barrier seam is formed on the surface of the skylight tiles that is separated from the surrounding iron roof area, effectively avoiding accidents caused by workers doing waterproofing and other roofing work accidentally stepping on them.

[0024] The above shows and describes the basic principles and main features of the present invention and the advantages of the present invention. It is obvious to those skilled in the art that the present invention is not limited to the details of the above exemplary embodiments, and that the present invention can be implemented in other specific forms without departing from the spirit or essential characteristics of the present invention. Therefore, from all points of view, the embodiments should be regarded as illustrative and non-restrictive. The scope of the present invention is defined by the appended claims rather than the above description, and it is intended that all changes that fall within the meaning and range of equivalents of the claims are included in the present invention. Any reference signs in the claims should not be construed as limiting the claim to which they relate.

[0025] In addition, it should be understood that although this specification is described in terms of implementation methods, not every implementation method contains only one independent technical solution. This narrative method of the specification is only for the sake of clarity. Those skilled in the art should regard the specification as a whole. The technical solutions in each embodiment can also be appropriately combined to form other implementation methods that can be understood by those skilled in the art.

Claims

1. An ultra-thick pressed skylight tile, comprising a bottom support plate (1), a balancing tile seat (2), a skylight plate (3), a drainage slit (4), a vibration guide protector (5), a reinforcement frame (6), a connecting piece (7), and a stacking layer (8), characterized in that: The balancing tile seat (2) is provided with a bottom support plate (1), the skylight plate (3) is arranged on the balancing tile seat (2), the skylight plate (3) is provided with a drainage slit (4), a connecting piece (7) is provided at a local transverse wall position on the surface of the bottom support plate (1), the reinforcement frame (6) is arranged at equal height intervals on the groove on the surface of the balancing tile seat (2), the bottom support plate (1) is provided with a stacking layer (8), and the stacking layer (8) is provided with a vibration guide protector (5); The vibration guide protector (5) includes a deformation groove (71), a pressing plate (72), a stopper (73), an inner plate (74), a return spring (75), a support frame (76), and a ventilation layer (77). The deformation groove (71) is formed by the inner cavity of the support frame (76) and the gap of the return spring (75). The return spring (75) is provided with a snap-on stopper (73). The upper end of the stopper (73) is movably embedded in the inner plate (74). The inner plate (74) is horizontally arranged on the lower wall of the pressing plate (72). The ventilation layer (77) is connected to the gap of the deformation groove (71). The support frame (76) is horizontally arranged on the surface of the stacking layer (8). The stop member (73) is vertically embedded in the center of the supporting frame (76); The two ends of the surface of the pressing plate (72) correspond to the communicating drainage slits (4).

2. The ultra-thick pressed skylight tile according to claim 1, characterized in that: The connecting pieces (7) are correspondingly arranged at the center grooves of the reinforcement frames (6) at both ends.

3. The ultra-thick pressed skylight tile according to claim 1, characterized in that: The drainage slit (4) is formed integrally by the opening grooves on both sides of the lighting plate (3).

4. The ultra-thick pressed skylight tile according to claim 1, characterized in that: The surface of the balancing tile seat (2) is provided with a lighting plate (3) with horizontal end face spacing.

5. The ultra-thick pressed skylight tile according to claim 1, characterized in that: The installation surface of the lighting board (3) is higher than the bottom support board (1) located at the lower part of the structure.

Citation Information

Patent Citations

  • Roof waterproof daylighting tile

    CN212358872U

  • Improved edge-covered daylighting tile

    CN216075950U

  • Super-thick profiled daylighting tile

    CN217897022U