Photovoltaic support adjustable clamp for connecting curved surface color steel tile roof and bottom beam

By designing adjustable clamps to clamp the bottom beam of the photovoltaic bracket onto the corrugated surface of the curved corrugated steel roof, precise installation with different curvatures and surface ripple patterns is achieved. This solves the problem that traditional photovoltaic brackets are difficult to adapt to curved corrugated steel roofs, and improves the stability and adaptability of the installation.

CN223758217UActive Publication Date: 2026-01-02XIAMEN ANTAI NEW ENERGY TECH
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202520089839.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-15
Publication Date
2026-01-02
Estimated Expiration
2035-01-15

AI Technical Summary

Technical Problem

Traditional photovoltaic brackets are difficult to fit precisely and securely on curved corrugated steel roofs, and cannot meet the installation requirements of different curvatures, angles and surface ripple patterns.

Method used

Design an adjustable clamp including a corrugated clamping part and a bottom beam clamping part. The adjustable clamp directly clamps the bottom beam of the photovoltaic bracket to the corrugated part of the curved color steel tile roof. It allows for 90° rotation adjustment in the horizontal direction and height adjustment in the vertical direction to meet the installation requirements of different curvatures and surface corrugation patterns.

Benefits of technology

No destructive operation is required, ensuring the integrity and waterproof performance of the curved corrugated steel roof, and significantly improving the adaptability and installation stability of the photovoltaic bracket.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223758217U_ABST
    Figure CN223758217U_ABST
Patent Text Reader

Abstract

The utility model provides a photovoltaic support adjustable clamp for connecting a curved surface color steel tile roof and a bottom beam. The photovoltaic support adjustable clamp comprises a corrugated clamping portion and a bottom beam clamping portion. A first arc strip hole and a second arc strip hole are formed in the left horizontal supporting plate in a penetrating mode, and a third arc strip hole and a fourth arc strip hole are formed in the right horizontal supporting plate in a penetrating mode. The first arc strip hole, the second arc strip hole, the third arc strip hole and the fourth arc strip hole are circumferentially distributed on a plane formed by the left horizontal supporting plate and the right horizontal supporting plate; the bottom beam clamping part comprises a left side plate, a bottom plate and a right side plate which are connected in a U-shaped structure; the bottom plate is connected with the left horizontal supporting plate and the right horizontal supporting plate through four second bolt assemblies. The innovative design of the adjustable clamp allows the bottom beam and the curved surface color steel tile roof to be subjected to 90-degree rotation adjustment in the horizontal direction and to be subjected to height adjustment in the vertical direction, so that the corrugated mounting requirements of different curvatures, angles and surface corrugated shapes are met, and the adaptability of the photovoltaic support is remarkably improved.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The utility model relates to photovoltaic technology field, concretely relates to a kind of photovoltaic support adjustable fixture of connecting curved surface color steel tile roof and bottom beam. BACKGROUND

[0002] Non-planar color steel tile roof becomes important carrier of photovoltaic power generation with its unique structural characteristics and extensive application scenarios (such as commercial buildings, airports, exhibition halls, stadiums, etc.). Non-planar color steel tile roof usually includes corrugated roof, arc roof, curved roof, etc. However, the complex geometry of such roofs poses many challenges to the design and installation of photovoltaic support systems.

[0003] Curved surface color steel tile roof is a roof constructed with curved surface designed color steel tile material. The curved surface design can improve the drainage performance of the roof, enhance the spatial sense of the roof, reduce the wind load of the photovoltaic support, and improve the stability of the overall building. Traditional photovoltaic supports are mostly designed based on planar or simple arc-shaped color steel tile roofs. The curvature, angle and surface corrugation of curved surface color steel tile roof vary in different areas, which makes it difficult for traditional photovoltaic supports to achieve precise fitting and stable installation.

[0004] In view of this, the above-mentioned problems are studied in depth, and the present case is produced. SUMMARY

[0005] The utility model solves the technical problem that traditional photovoltaic supports are not suitable for curved surface color steel tile roof and are difficult to precisely fit and stably install. It provides a photovoltaic support adjustable fixture connecting curved surface color steel tile roof and bottom beam, which meets the installation requirements of corrugated roof with different curvature, angle and surface corrugation, and significantly improves the adaptability of photovoltaic support.

[0006] The utility model is implemented as follows: a photovoltaic support adjustable fixture connecting curved surface color steel tile roof and bottom beam, comprising a corrugated clamping part and a bottom beam clamping part; the corrugated clamping part comprises a left clamping petal, a right clamping petal and a first bolt assembly; the left clamping petal comprises a left horizontal support plate, a left vertical locking plate and a left arc-shaped clamping plate; the right clamping petal comprises a right horizontal support plate, a right vertical locking plate and a right arc-shaped clamping plate; the left vertical locking plate and the right vertical locking plate are connected by the first bolt assembly; the left horizontal support plate is formed with a first circular arc slot and a second circular arc slot; the right horizontal support plate is formed with a third circular arc slot and a fourth circular arc slot; the first circular arc slot, the second circular arc slot, the third circular arc slot and the fourth circular arc slot are circumferentially distributed on the plane formed by the left horizontal support plate and the right horizontal support plate;

[0007] The bottom beam clamping part comprises a left side plate, a bottom plate and a right side plate connected in a U-shaped structure, the bottom plate is formed with a first through hole for cooperating with the first arc strip hole, a second through hole for cooperating with the second arc strip hole, a third through hole for cooperating with the third arc strip hole and a fourth through hole for cooperating with the fourth arc strip hole, and the bottom plate is connected with the left horizontal support plate and the right horizontal support plate through four second bolt assemblies.

[0008] Further, the left arc-shaped clamping plate and the right arc-shaped clamping plate are surrounded to form a corrugated clamping space.

[0009] Further, the number of the first bolt assemblies is two.

[0010] Further, the bottom beam clamping part is connected with the bottom beam through third bolt assemblies, the left side plate, the bottom plate and the right side plate surround to form a U-shaped mounting groove accommodating the bottom beam, the left side plate is formed with at least one left vertical long slot, the right side plate is formed with at least one right vertical long slot, the bottom beam is formed with a left notch and a right notch at two sides respectively, the third bolt assemblies pass through the left vertical long slot and the left notch in sequence to lock the left side plate with the bottom beam, and the third bolt assemblies pass through the right vertical long slot and the right notch in sequence to lock the right side plate with the bottom beam.

[0011] Further, the number of the left vertical long slots is two, the two left vertical long slots are arranged side by side along the length direction of the left notch, and the number of the right vertical long slots is two, the two right vertical long slots are arranged side by side along the length direction of the right notch.

[0012] Further, the upper surface of the bottom plate is formed with a first strip-shaped limiting groove and a second strip-shaped limiting groove.

[0013] Further, the third bolt assembly comprises a T-shaped bolt, a gasket and a nut, the left notch is oppositely provided with a first limiting plate and a second limiting plate, and the right notch is oppositely provided with a third limiting plate and a fourth limiting plate.

[0014] The adjustable clamp is used for directly clamping the bottom beam of the photovoltaic support on the corrugation of the curved color steel tile roof, without destructive operation such as punching, so that the integrity and waterproof performance of the curved color steel tile roof are ensured, the innovative design of the adjustable clamp allows the bottom beam and the curved color steel tile roof to be rotated and adjusted by 90° in the horizontal direction and to be adjusted in height in the vertical direction, thereby meeting the installation requirements of corrugations with different curvatures, angles and surface ripple forms, and the adaptability of the photovoltaic support is significantly improved. BRIEF DESCRIPTION OF DRAWINGS

[0015] The utility model will be further described in connection with the embodiments with reference to the drawings.

[0016] Figure 1Is the connecting structure schematic view of the curved surface color steel tile roof and the photovoltaic support in the utility model.

[0017] Figure 2 Is the structure schematic view of the photovoltaic support in the utility model.

[0018] Figure 3 Is the connecting structure schematic view of the corrugated clamping part and the bottom beam clamping part in the utility model.

[0019] Figure 4 Is the structure schematic view of the corrugated clamping part in the utility model.

[0020] Figure 5 Is the structure schematic view of the bottom beam clamping part in the utility model.

[0021] Figure 6 Is the side view of the bottom beam clamping part in the utility model.

[0022] Corrugated clamping part 100, left clamping petal 1, left horizontal support plate 11, first arc strip hole 111, second arc strip hole 112, left vertical locking plate 12, left arc clamping plate 13, right clamping petal 2, right horizontal support plate 21, third arc strip hole 211, fourth arc strip hole 212, right vertical locking plate 22, right arc clamping plate 23, first bolt assembly 3, bottom beam clamping part 200, left side plate 4, left vertical long strip hole 41, bottom plate 5, first through hole 51, second through hole 52, third through hole 53, first strip-shaped limiting groove 55, second strip-shaped limiting groove 56, right side plate 6, right vertical long strip hole 61, U-shaped installation groove 7, second bolt assembly 8, third bolt assembly 9, T-shaped bolt 91, gasket 92, nut 93, bottom beam 300, left slot 301, right slot 302, first limiting plate 303, second limiting plate 304, third limiting plate 305, fourth limiting plate 306, curved surface color steel tile roof 400, corrugation 401.

CONCRETE EMBODIMENT

[0023] In order to better understand the technical scheme of the utility model, the technical scheme of the utility model will be explained in detail in the following in combination with the drawings of the specification and specific implementation.

[0024] It should be noted that the terms "center", "longitudinal", "transverse", "upper", "lower", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing these embodiments and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation. In addition, the terms "first", "second" and the like are only for description purposes and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the technical features indicated. Therefore, the features defined as "first", "second" and the like can explicitly or implicitly include one or more of the features.

[0025] Please refer to Figures 1 to 6 The utility model provides a kind of photovoltaic support adjustable clamp for connecting curved surface color steel tile roof 400 and bottom beam 300, including corrugated clamping part 100 and bottom beam clamping part 200.

[0026] The corrugated clamping part 100 includes left clamping petal 1, right clamping petal 2, first bolt assembly 3, the left clamping petal 1 includes left horizontal support plate 11, left vertical locking plate 12, left arc clamping plate 13, the right clamping petal 2 includes right horizontal support plate 21, right vertical locking plate 22, right arc clamping plate 23, the left vertical locking plate 12 and right vertical locking plate 22 are connected by first bolt assembly 3;The first arc strip hole 111 and the second arc strip hole 112 are formed through the left horizontal support plate 11, and the third arc strip hole 211 and the fourth arc strip hole 212 are formed through the right horizontal support plate 21;The first arc strip hole 111, the second arc strip hole 112, the third arc strip hole 211 and the fourth arc strip hole 212 are circumferentially distributed on the plane formed by the left horizontal support plate 11 and the right horizontal support plate 21.The bottom beam clamping part 200 includes left side plate 4, bottom plate 5, right side plate 6 connected in U-shaped structure;The first through hole 51 for cooperating with the first arc strip hole 111, the second through hole 52 for cooperating with the second arc strip hole 112, the third through hole 53 for cooperating with the third arc strip hole 211 and the fourth through hole for cooperating with the fourth arc strip hole 212 are formed on the bottom plate 5;The bottom plate 5 is connected with the left horizontal support plate 11 and the right horizontal support plate 21 by four second bolt assemblies 8.Through the design that the first arc strip hole 111, the second arc strip hole 112, the third arc strip hole 211 and the fourth arc strip hole 212 are circumferentially distributed on the plane formed by the left horizontal support plate 11 and the right horizontal support plate 21, the angle rotation range of the bottom beam clamping part 200 in horizontal direction can be improved, and the installation requirements of different corrugated angles and positions are met.

[0027] The utility model discloses adjustable clamp directly clamps the bottom beam 300 of photovoltaic support on the corrugated 401 of curved color steel tile roof 400, does not need destructive operation such as punching, guarantees the integrity and waterproof performance of curved color steel tile roof 400, and the innovative design of adjustable clamp allows the bottom beam 300 and curved color steel tile roof 400 to rotate and adjust 90 degrees in horizontal direction, to carry out height adjustment in vertical direction, to meet the corrugated installation demand of different curvature, angle and surface ripple form, and the adaptability of photovoltaic support is improved significantly.

[0028] In the utility model, the left arc clamping plate 13 and right arc clamping plate 23 surround and form the corrugated clamping space.

[0029] In the utility model, in order to increase the clamping stability, the number of first bolt assembly 3 is 2.

[0030] In the utility model, the bottom beam clamping portion 200 is connected with the bottom beam 300 through the third bolt assembly 9, the left side plate 4, bottom plate 5 and right side plate 6 surround and form the U-shaped installation slot 7 containing the bottom beam 300, the left side plate 4 is formed with at least one left vertical long slot 41, the right side plate 6 is formed with at least one right vertical long slot 61, the two sides of the bottom beam 300 are formed with left slot 301 and right slot 302 respectively, the third bolt assembly 9 passes through the left vertical long slot 41 and left slot 301 in proper order and locks the left side plate 4 and bottom beam 300, and the third bolt assembly 9 passes through the right vertical long slot 61 and right slot 302 in proper order and locks the right side plate 6 and bottom beam 300, the design of left vertical long slot 41 and right vertical long slot 61 cooperates with left slot 301 and right slot 302, and the third bolt assembly 9 locks the bottom beam clamping portion 200 and bottom beam 300, the bottom beam 300 is the basic connecting component of whole photovoltaic support, the bottom beam clamping portion 200 can slide and adjust along the direction of left slot 301 and right slot 302, the bottom beam 300 can be finely adjusted up and down along the direction of left vertical long slot 41 and right vertical long slot 61, and the precise butt joint of bottom beam 300 and adjustable clamp assembly is realized.

[0031] In the utility model, in order to increase the connecting stability of bottom beam clamping portion 200 and bottom beam 300, the number of left vertical long slot 41 is 2, and the two left vertical long slots 41 are arranged side by side along the length direction of left slot 301, the number of right vertical long slot 61 is 2, and the two right vertical long slots 61 are arranged side by side along the length direction of right slot 302.

[0032] In the utility model, the first arc strip hole 111 and the fourth arc strip hole 212 are screwed with the second bolt assembly 8, the second arc strip hole 112 and the third arc strip hole 211 are screwed with the second bolt assembly 8, and the first arc strip hole 111, the fourth arc strip hole 212, the second arc strip hole 112 and the third arc strip hole 211 are located in the first strip limiting slot 55 and the second strip limiting slot 56, so that the connecting stability of the corrugated clamping part 100 and the bottom beam clamping part 200 is increased.

[0033] In the utility model, the third bolt assembly 9 includes T type bolt 91, gasket 92, nut 93, the first limiting plate 303 and the second limiting plate 304 are oppositely arranged at left slot 301, and the third limiting plate 305 and the fourth limiting plate 306 are oppositely arranged at right slot 302. The design of first limiting plate 303 and second limiting plate 304 can prevent T type bolt 91 from separating from left slot 301, the design of third limiting plate 305 and fourth limiting plate 306 can prevent T type bolt 91 from separating from right slot 302, and the connecting stability of bottom beam 300 and bottom beam clamping part 200 is improved.

[0034] Although the specific embodiments of the utility model are described above, skilled in the art should understand that the specific examples that we described are only illustrative, and are not used to limit the scope of the utility model, and equivalent modifications and changes made according to the spirit of the utility model by skilled in the art should be covered in the scope of protection of the claims of the utility model.

Claims

1. A photovoltaic support adjustable clamp for connecting a curved color steel tile roof and a bottom beam, comprising a corrugated clamping part and a bottom beam clamping part; characterized in that: The corrugated clamping part comprises a left clamping petal, a right clamping petal and a first bolt assembly, the left clamping petal comprises a left horizontal support plate, a left vertical locking plate and a left arc-shaped clamping plate, the right clamping petal comprises a right horizontal support plate, a right vertical locking plate and a right arc-shaped clamping plate, and the left vertical locking plate and the right vertical locking plate are connected through the first bolt assembly; the left horizontal support plate is formed with a first circular arc slot hole and a second circular arc slot hole, and the right horizontal support plate is formed with a third circular arc slot hole and a fourth circular arc slot hole; the first circular arc slot hole, the second circular arc slot hole, the third circular arc slot hole and the fourth circular arc slot hole are circumferentially distributed on the plane formed by the left horizontal support plate and the right horizontal support plate; The bottom beam clamping part comprises a left side plate, a bottom plate and a right side plate connected in a U-shaped structure; the bottom plate is formed with a first through hole for cooperating with the first circular arc slot hole, a second through hole for cooperating with the second circular arc slot hole, a third through hole for cooperating with the third circular arc slot hole and a fourth through hole for cooperating with the fourth circular arc slot hole; and the bottom plate is connected with the left horizontal support plate and the right horizontal support plate through four second bolt assemblies.

2. The photovoltaic mounting bracket adjustable clamp for connecting the curved color steel tile roof and the bottom beam according to claim 1, characterized in that: The left arc-shaped clamping plate and the right arc-shaped clamping plate surround to form a corrugated clamping space.

3. The photovoltaic mounting bracket adjustable clamp for connecting the curved color steel tile roof and the bottom beam according to claim 1, characterized in that: The number of the first bolt assemblies is two.

4. The photovoltaic bracket adjustable clamp for connecting the curved color steel tile roof and the bottom beam according to any one of claims 1-3, characterized in that: The bottom beam clamping part is connected with the bottom beam through a third bolt assembly; the left side plate, the bottom plate and the right side plate surround to form a U-shaped mounting groove accommodating the bottom beam; the left side plate is formed with at least one left vertical long slot hole, and the right side plate is formed with at least one right vertical long slot hole; the bottom beam is formed with a left notch and a right notch on both sides; the third bolt assembly passes through the left vertical long slot hole and the left notch in sequence to lock the left side plate and the bottom beam, and the third bolt assembly passes through the right vertical long slot hole and the right notch in sequence to lock the right side plate and the bottom beam.

5. The photovoltaic mounting bracket adjustable clamp for connecting the curved color steel tile roof and the bottom beam according to claim 4, characterized in that: The number of the left vertical long slot holes is two, and the two left vertical long slot holes are arranged side by side along the length direction of the left notch; the number of the right vertical long slot holes is two, and the two right vertical long slot holes are arranged side by side along the length direction of the right notch.

6. The photovoltaic mounting bracket adjustable clamp for connecting the curved color steel tile roof and the bottom beam according to claim 5, characterized in that: The upper surface of the bottom plate is formed with a first strip-shaped limiting groove and a second strip-shaped limiting groove.

7. The photovoltaic mounting bracket adjustable clamp for connecting the curved color steel tile roof and the bottom beam according to claim 6, characterized in that: The third bolt assembly comprises a T-shaped bolt, a gasket and a nut; the left notch is oppositely provided with a first limiting plate and a second limiting plate, and the right notch is oppositely provided with a third limiting plate and a fourth limiting plate.