Power generation glass balustrade structure
By designing aluminum alloy profile handrails on the power generation glass railing to form cable channels, the problems of cable connections affecting aesthetics and inconvenience in maintenance are solved. This achieves concealed cable layout and a simple appearance of the railing, while improving maintenance convenience and sealing performance.
Patent Information
- Application Number
- CN202423041642.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-10
- Publication Date
- 2026-02-13
- Estimated Expiration
- 2034-12-10
AI Technical Summary
The existing cable connection method for power generation glass panels makes later maintenance inconvenient and affects aesthetics, and existing technologies have not been able to effectively solve this problem.
The handrail is designed with aluminum alloy profiles to form a cable channel. The cables are arranged above the railing and are connected by buckles and flanges to form a detachable connection. The cable is fixed and sealed by pressure lines and sealing gaskets. The cable joints are hidden inside the handrail.
It achieves concealed cable layout, facilitates later inspection and maintenance, maintains a simple and elegant appearance of the panel, is easy to assemble, and has reliable sealing performance.
Smart Images

Figure CN223907787U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to photovoltaic glass field, specifically, the utility model relates to a power generation glass fence plate structure. BACKGROUND
[0002] In prior art, the cable connection mode of power generation glass fence plate is wiring under glass or open wiring on glass back, but all have defects, wiring under glass is inconvenient for later maintenance, open wiring on glass back affects fence plate appearance.
[0003] The utility model discloses a rotatable photovoltaic glass guardrail, which is disclosed in the utility model patent with the publication number CN202299619U on July 4, 2012 and has the name of a rotatable photovoltaic glass guardrail. The rotatable photovoltaic glass guardrail comprises a support of a fixed guardrail, a handrail arranged on the upper part of the support and a fence plate connected between the supports. A rotating shaft is arranged between the fence plate and the support or the handrail. The fence plate is provided with a photovoltaic panel. The rotatable photovoltaic glass guardrail cannot solve the technical problems described above. UTILITY MODEL CONTENT
[0004] The utility model discloses a rotatable photovoltaic glass guardrail, which is disclosed in the utility model patent with the publication number CN202299619U on July 4, 2012 and has the name of a rotatable photovoltaic glass guardrail. The rotatable photovoltaic glass guardrail comprises a support of a fixed guardrail, a handrail arranged on the upper part of the support and a fence plate connected between the supports. A rotating shaft is arranged between the fence plate and the support or the handrail. The fence plate is provided with a photovoltaic panel. The rotatable photovoltaic glass guardrail cannot solve the technical problems described above.
[0005] In order to achieve the above-mentioned purpose, the utility model adopts the technical scheme that:
[0006] The power generation glass fence plate structure comprises a stand, a handrail and a lower crossbeam, the power generation glass is located between the stand, the handrail and the lower crossbeam, the top of the handrail is provided with a buckle cover, and a cable channel is arranged between the buckle cover and the handrail.
[0007] The cross section of the buckle cover is U-shaped, the top of the handrail is provided with a flange at both ends, and the buckle cover is clamped with the flange at both ends.
[0008] The top of the power generation glass extends into the handrail, the top of the power generation glass is provided with a battery box, a cable is arranged in the cable channel, the cable comprises a cable connector, a through hole is arranged on the upper end of the handrail below the cable connector, the cable connector passes through the through hole and is connected with the battery box.
[0009] The stand, the handrail and the lower crossbeam are all provided with a line pressing strip, and a rubber strip is arranged between one end of the line pressing strip and the power generation glass.
[0010] The stand, the handrail and the lower crossbeam are all provided with a sealing gasket at the end, and the sealing gasket and the rubber strip are respectively arranged at both sides of the end of the power generation glass.
[0011] The line pressing strip is provided with a supporting rib, the stand, the handrail and the lower crossbeam are all provided with a protrusion, and the protrusion is clamped with the supporting rib.
[0012] The top end of the buckle cover is arc-shaped and transitions, and the outer side of the buckle cover is in the same plane as the outer side of the handrail.
[0013] The stand, the handrail, the lower cross beam and the wire pressing line are all aluminum alloy profiles.
[0014] The technical effect of the utility model is: the power generation glass fence structure, through the improvement fence handrail section design, form is used for arranging cable cable channel, make cable arrangement on power generation glass above, hide in fence handrail, instead of traditional glass below wiring or back wiring arrangement mode, facilitate the cable later maintenance, appearance simple and unassuming, with ordinary glass fence appearance is identical;Fence structure design is reasonable, and assembly is convenient, and sealing performance is reliable. BRIEF DESCRIPTION OF DRAWINGS
[0015] The present specification includes the following drawings, and the shown contents are respectively:
[0016] Figure 1 It is the structure schematic diagram of the power generation glass fence structure of the utility model;
[0017] Figure 2 It is Figure 1 the cross section A-A schematic diagram;
[0018] Figure 3 It is Figure 1 the cross section B-B schematic diagram;
[0019] Figure 4 It is Figure 1 the cross section C-C schematic diagram.
[0020] Marked as in the figure: 1, power generation glass;2, stand;3, handrail;4, lower cross beam;5, buckle cover;6, wire pressing line;7, cable channel;8, cable;9, cable joint;10, battery box;11, flanging;12, through hole;13, support rib;14, protrusion;15, rubber strip;16, sealing gasket. DETAILED DESCRIPTION
[0021] The specific embodiments of the utility model are further explained in detail by comparing the drawings and describing the embodiments, the purpose is to help the technical personnel in the field to have more complete, accurate and deep understanding to the inventive concept and technical scheme of the utility model, and help its implementation.
[0022] As Figures 1 to 4 shown, the power generation glass fence structure, including stand 2, handrail 3 and lower cross beam 4, the power generation glass 1 is located between stand 2, handrail 3 and lower cross beam 4, the top of handrail 3 is equipped with buckle cover 5, and buckle cover 5 is equipped with cable channel 7 between handrail 3.
[0023] The power generation glass fence structure includes three parts: the first part is an aluminum alloy profile, the aluminum alloy profile includes a vertical column 2, a handrail 3 and a lower crossbeam 4, the second part is a power generation glass 1, and the third part is a cable channel 7 formed by the handrail 3 and a buckle cover 5; through the cross-section design of the aluminum alloy profile of the handrail 3, the cable channel 7 is formed, the power generation glass 1 is installed in place through assembly, the cable enters the cable channel 7, and an unobstructed connection with the power generation glass 1 is formed. Compared with the cable arrangement under the glass or the bright line arrangement on the back of the glass, the cable is hidden and the maintenance is convenient, since the cable 8 is located at the handrail 3 part of the fence, the connection of the power generation glass 1 cable is smoother, and the later maintenance is more convenient.
[0024] As shown in Figure 2 , the cross section of the buckle cover 5 is U-shaped, the top of the handrail 3 is provided with a flange 11 at both ends, and the buckle cover 5 is clamped with the flange 11 at both ends. The above structure realizes the detachable connection of the buckle cover 5, the U-shaped buckle cover 5 and the upper end of the handrail 3 form the cable channel 7, the two ends of the handrail 3 can form reliable fixation with the flange 11, and the handrail 3 is also convenient to disassemble during later maintenance.
[0025] As shown in Figure 2 , the top of the power generation glass 1 extends into the handrail 3, the top of the power generation glass 1 is provided with a battery box 10, the cable channel 7 is provided with a cable 8, the cable 8 includes a cable connector 9, the upper end of the handrail 3 is provided with a through hole 12 below the cable connector 9, the cable connector 9 passes through the through hole 12 and is connected with the battery box 10. The edge of the power generation glass 1 extends into the vertical column 2, the handrail 3 and the lower crossbeam 4, thereby forming a reliable connection, and the through hole 12 is reserved at the upper end of the handrail 3, thereby facilitating the cable connector 9 to extend out of the aluminum alloy handrail 3.
[0026] As shown in Figures 2 to 4 , the vertical column 2, the handrail 3 and the lower crossbeam 4 are all provided with a pressing line 6, one end of the pressing line 6 is provided with a clamping block, and the other end of the pressing line 6 is provided with a rubber strip 15 between the pressing line 6 and the power generation glass 1. After the power generation glass 1 extends into the vertical column 2, the handrail 3 and the lower crossbeam 4, the pressing line 6 is used to fix one side of the power generation glass 1, one end of the pressing line 6 is clamped on the vertical column 2, the handrail 3 and the lower crossbeam 4, and the other end is fixed by using the rubber strip 15, thereby facilitating the assembly process of the fence and the power generation glass 1; the pressing line 6 provides a good sealing effect for the aluminum alloy profile of the fence, beautifies the appearance of the fence, and also protects the power generation glass 1.
[0027] As shown in Figures 2 to 4 , the vertical column 2, the handrail 3 and the lower crossbeam 4 are all provided with a sealing gasket 16, and the sealing gasket 16 and the rubber strip 15 are located at both sides of the end of the power generation glass 1. The above structure forms a reliable seal inside the aluminum alloy profile of the vertical column 2, the handrail 3 and the lower crossbeam 4, thereby isolating the edge of the power generation glass 1 from the outside world, avoiding the influence of external water vapor on the cable, electrical devices and glass, and improving the service life of the fence system.
[0028] AsFigures 2 to 4 As shown, the pressure line 6 is provided with a support rib 13, and the column 2, handrail 3 and lower crossbeam 4 are all provided with protrusions 14, which are snapped together with the support rib 13. The support rib 13 provides an additional fixing position for the pressure line 6, and the support rib 13 is located at the turning point of the pressure line 6 cross section, which helps to improve the anti-deformation effect of the pressure line 6. The support rib 13 also adopts a snap-fit installation method, which is convenient for installation and maintenance.
[0029] like Figure 2 As shown, the top of the cover 5 has an arc-shaped transition, and the outer side of the cover 5 is on the same plane as the outer side of the handrail 3. The above structure makes the surface of the handrail 3 of the balustrade smooth and beautiful, which helps to improve the appearance quality of the balustrade.
[0030] The uprights 2, handrails 3, lower crossbeams 4, and pressure lines 6 are all made of aluminum alloy profiles. All of the above structures are made of aluminum alloy, which has good corrosion resistance, is reliable and durable, maintains a good appearance even after long-term use, and possesses good strength and toughness, providing effective safety protection.
[0031] The assembly steps of the power-generating glass railing structure are as follows: Connect and fix the aluminum alloy columns 2 to the building structure according to the design module; connect the aluminum alloy lower crossbeam 4 to the aluminum alloy columns 2; install the aluminum alloy handrail 3 above the aluminum alloy columns 2, ensuring the handrail 3 runs the entire length. Place the power-generating glass 1 in the aluminum alloy frame and secure it with aluminum alloy pressure lines 6 and adhesive strips 15. Extend the cable connector 9 from the pre-drilled through-hole 12 in the aluminum alloy handrail 3 and connect the cables 8 of each power-generating glass 1 sequentially. Finally, install the aluminum alloy cover 5 on the aluminum alloy handrail 3, ultimately forming the cable channel 7, thus concealing the cables of the power-generating glass 1.
[0032] This power-generating glass railing structure, through an improved cross-sectional design of the railing handrail 3, forms a cable channel 7 for arranging the cable 8, allowing the cable 8 to be arranged above the power-generating glass 1 and concealed within the railing handrail 3. This replaces the traditional arrangement of wiring under or behind the glass, facilitating the later inspection and maintenance of the cable 8. The appearance is simple and elegant, indistinguishable from ordinary glass railings. The railing structure is reasonably designed, easy to assemble, and has reliable sealing performance.
[0033] The present invention has been described above by way of example with reference to the accompanying drawings. Obviously, the specific implementation of the present invention is not limited to the above-described manner. Any non-substantial improvements made using the inventive concept and technical solution of the present invention; or the direct application of the inventive concept and technical solution to other situations without modification, are all within the protection scope of the present invention.
Claims
1. A power-generating glass fence structure, characterized by: The utility model provides a kind of power generation glass, including stand (2), handrail (3) and lower crossbeam (4), the power generation glass (1) is located between stand (2), handrail (3) and lower crossbeam (4), the top of handrail (3) is equipped with buckle cover (5), cable channel (7) is equipped between buckle cover (5) and handrail (3);The section of buckle cover (5) is U-shaped, the top of handrail (3) both ends is equipped with flanging (11), the both ends of buckle cover (5) are connected with flanging (11);Stand (2), handrail (3) and lower crossbeam (4) are all equipped with wire pressing (6), and the one end of wire pressing (6) is equipped with rubber strip (15) between power generation glass (1);The end of stand (2), handrail (3) and lower crossbeam (4) is all equipped with sealing gasket (16), and sealing gasket (16) and rubber strip (15) are located respectively in the both sides of the end of power generation glass (1).
2. The power-generating glass fence structure of claim 1, wherein: The top of power generation glass (1) is stretched into handrail (3), and the top of power generation glass (1) is equipped with battery box (10), cable channel (7) is equipped with cable (8) in, and cable (8) includes cable connector (9), and the upper end of handrail (3) is located below cable connector (9) and is equipped with through hole (12), and cable connector (9) passes through through hole (12) and is connected with battery box (10).
3. The power-generating glass fence structure of claim 1, wherein: Wire pressing (6) is equipped with support rib (13), and stand (2), handrail (3) and lower crossbeam (4) are all equipped with convex (14), and convex (14) is connected with support rib (13).
4. The power-generating glass fence structure of claim 1, wherein: The top of buckle cover (5) is arc-shaped transition, and the outside of buckle cover (5) is in the same plane with the outside of handrail (3).
5. The power-generating glass fence structure of claim 3, wherein: The stand (2), handrail (3), lower crossbeam (4) and wire pressing (6) are all aluminum alloy profiles.
Citation Information
Patent Citations
Rotatable photoelectric glass guardrail
CN202299619U