A suspension bracket system for a slope roof hanging basket and a construction method thereof

CN116517260BActive Publication Date: 2025-08-29BEIJING URBAN CONSTR GROUP
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Patent Information

Application Number
CN202310688742.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-06-12
Publication Date
2025-08-29
Estimated Expiration
2043-06-12

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Abstract

A suspension bracket system for a sloping roof hanging basket and a construction method thereof include the following steps: Step 1, laying a roof structure layer, and arranging an inner mounting groove and an outer mounting groove on the roof structure layer near the eaves at intervals; Step 2, installing a first embedded part in the inner mounting groove, and simultaneously installing a second embedded part in the outer mounting groove; Step 3, hinge-connecting the lower end of the cantilever rod to the first embedded part; Step 4, hinge-connecting the cantilever rod leg to the second embedded part, and supporting the upper end of the cantilever rod leg on the bottom of the front section of the cantilever rod; Step 5, hanging the hanging basket below the hanging part via a steel wire rope. The present invention solves the technical problems that the installation and removal of traditional suspension brackets are relatively cumbersome and require the coordination of machinery, have a significant impact on other process operations after installation, and cannot be well connected to the main structure when used on a sloping roof, resulting in a high safety risk.
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Description

Technical Field

[0001] The invention belongs to the technical field of building engineering construction, and in particular relates to a suspension bracket system for a slope roof hanging basket and a construction method thereof. Background Art

[0002] A hanging basket is a construction tool used for aerial work in construction projects, used for exterior wall construction, curtain wall installation, insulation construction, and exterior wall maintenance and cleaning of multi-story buildings. A hanging basket is a new type of high-altitude work equipment that can replace traditional scaffolding, reducing labor intensity, improving work efficiency, and being reusable. The suspension bracket is one of the most important components of a hanging basket. The bracket can be divided into standard and special types, which are further divided into cantilever and pull-rod types. Commonly used suspension brackets in construction projects include counterweight suspension brackets, parapet clamps, and special types such as riding suspension brackets derived from these two types. The main disadvantages of the counterweight suspension brackets, parapet clamps, and riding suspension brackets commonly used in construction projects include the relatively cumbersome installation and removal, which require the use of machinery, a significant impact on other work processes after installation, a poor connection to the structure, posing a high safety risk, and an inability to effectively address the overturning of sloping roofs. Summary of the Invention

[0003] The purpose of the present invention is to provide a suspension bracket system and a construction method for a sloping roof hanging basket, in order to solve the technical problems that the installation and removal of the traditional suspension bracket are relatively cumbersome and require the cooperation of machinery, have a great impact on other working processes after installation, and cannot be well connected with the main structure when used on a sloping roof, causing great safety risks.

[0004] To achieve the above objectives, the present invention adopts the following technical solutions.

[0005] 4. The repairing kit for automotive dents, according to claim 1, wherein a bottom of the foot stand comprises a through-hole, and the two foot pieces comprise two bosses, wherein the bosses comprise a through-hole, a screw bolt, and a nut. The bosses comprise a through-hole, a screw bolt, and a nut. The bosses comprise a through-hole, a screw bolt, and a nut. The bosses comprise a through-hole, a screw bolt, and a nut. The arm is tilted in a direction perpendicular to the roof ridge, and the length of the cantilever is adjustable; the lower end of the cantilever is set between adjacent first stiffening plates and is hingedly connected to the first stiffening plates, and the upper end of the cantilever extends outward from the eaves; a hanger for hanging a hanging basket is hingedly connected to the upper end of the cantilever; the second embedded part is installed in the outer mounting groove, and includes a second connecting plate and a second anchor bolt; the vertical section of the second connecting plate is L-shaped and is longitudinally arranged in the outer mounting groove; on the plate surface of the second connecting plate, along the longitudinal Second stiffening plates are arranged at intervals; the second anchor bolts are embedded in the roof panel at the bottom of the groove, the upper end of the second anchor bolts passes through the horizontal plate section of the second connecting plate and is anchored by a second nut; a second anchor plate is connected to the bottom of the second anchor bolt; the cantilever rod legs are installed on the second embedded parts, and the length of the cantilever rod legs is adjustable; the lower ends of the cantilever rod legs are arranged between adjacent second stiffening plates and are hingedly connected to the second stiffening plates, the upper ends of the cantilever rod legs are supported on the bottom of the cantilever rod and are adjustably connected to the cantilever rod.

[0006] Preferably, the roof structure layer includes an insulation layer, a leveling layer, a waterproof layer, a protective layer and a tile roofing layer, which are arranged in sequence from bottom to top; the insulation layer is provided with slots at the positions of the outer mounting slot and the inner mounting slot respectively; the leveling layer, the waterproof layer and the protective layer are laid on the bottom and side walls of the slots in sequence; the waterproof layer extends upward at the position of the first anchor bolt and is wrapped around the first anchor bolt; the waterproof layer extends upward at the position of the second anchor bolt and is wrapped around the second anchor bolt; tile hanging strips are arranged at intervals on the top of the protective layer along the slope direction; the tile roofing layer is composed of tiles, and the tiles are hung on the tile hanging strips.

[0007] Preferably, the distance between the inner mounting groove and the outer mounting groove is 1100 mm to 2500 mm.

[0008] Preferably, a first longitudinal hole is provided on the horizontal plate section of the first connecting plate at a position corresponding to the position through which the first anchor bolt passes; and a second longitudinal hole is provided on the horizontal plate section of the second connecting plate at a position corresponding to the position through which the second anchor bolt passes.

[0009] Preferably, the cantilever rod includes a first fixed section and a first length-adjustable section; the first fixed section is tubular, and the lower end of the first fixed section is arranged between adjacent first stiffening plates and is hingedly connected to the first stiffening plates; the first length-adjustable section is inserted into the upper end of the first fixed section, and the first length-adjustable section and the first fixed section are adjustably connected.

[0010] Preferably, a first connecting hole is provided on the tube wall of the first fixed section, near the upper end; second connecting holes are provided in the lower part of the first adjustable length section, spaced along the long axis of the first adjustable length section; the first adjustable length section and the first fixed section are connected by a first bolt.

[0011] Preferably, the cantilever rod leg includes a second fixed section and a second length-adjustable section; the second fixed section is tubular, and the lower end of the second fixed section is arranged between adjacent second stiffening plates and is hingedly connected to the second stiffening plates; the second length-adjustable section is inserted into the upper end of the second fixed section, and the second length-adjustable section and the second fixed section are adjustably connected.

[0012] Preferably, a third connecting hole is provided on the tube wall of the second fixed section, near the upper end; fourth connecting holes are provided in the lower part of the second adjustable length section, spaced along the long axis of the second adjustable length section; the second adjustable length section and the second fixed section are connected by a second bolt.

[0013] Preferably, a sleeve is provided at the upper end of the cantilever leg; a horizontal hole is opened on the sleeve; the sleeve is sleeved on the cantilever and is adjustably connected to the cantilever.

[0014] Preferably, the angle between the cantilever leg and the portion of the cantilever close to the eaves is no more than 90°.

[0015] A construction method for a suspension bracket system for a slope roof hanging basket includes the following steps.

[0016] Step 1: laying the roof structure layer, and arranging inner installation grooves and outer installation grooves on the roof structure layer near the eaves at intervals.

[0017] Step 2: Install the first embedded part in the inner installation groove and install the second embedded part in the outer installation groove at the same time.

[0018] Step three: hinge the lower end of the cantilever rod to the first embedded part.

[0019] Step 4: hinge the cantilever rod leg to the second embedded part, and then support the upper end of the cantilever rod leg on the bottom of the front section of the cantilever rod.

[0020] Step 5: Hang the hanging basket under the hanger through the steel wire rope.

[0021] Compared with the prior art, the present invention has the following characteristics and beneficial effects.

[0022] 1. The suspension bracket system of the present invention is in the shape of a herringbone and is composed of a cantilever rod, cantilever rod legs and embedded parts. The system mainly uses the principle of leverage, and the ends and fulcrums are reliably connected to the structural members using hinged supports. Each rod is bolted together, which can be easily installed and removed. In addition, the structural members are made of lightweight and high-strength materials, can be standardized in production, have a high turnover rate, are strong and lightweight, are suitable for roofs of any slope, are easy to install, occupy a small area, and can be used in conjunction with conventional hanging baskets without affecting each other during multi-process operations.

[0023] 2. The embedded parts of the present invention are pre-buried in the roof panel, and the exposed anchor bolts are connected to the connecting plates. The length of the exposed anchor bolts can be reserved according to actual needs; the first connecting plate is connected to the first anchor bolt and then to the first fixed section of the cantilever rod; the second connecting plate is connected to the second anchor bolt and then to the second fixed section of the cantilever rod leg; the second length-adjustable section is connected to the second fixed section for an adjustable connection; finally, the second length-adjustable section is connected to the first length-adjustable section to form a completed herringbone-shaped standardized suspension bracket; the rod material of the herringbone-shaped standardized suspension bracket system is made of high-strength lightweight steel, and holes are respectively provided on the cantilever rod and the cantilever rod leg, so that the length and height of the cantilever rod and the cantilever rod leg can be freely adjusted. It can be freely transformed according to different slope roofs and different cantilever lengths, and has strong applicability; thus, it is better suitable for various slope roofs and cantilever lengths. In addition, the suspension bracket system of the present invention is easy to install and can be completed independently by one person. BRIEF DESCRIPTION OF THE DRAWINGS

[0024] The present invention will be further described in detail below with reference to the accompanying drawings.

[0025] Figure 1 It is a structural schematic diagram of the suspension bracket system of the present invention arranged on the roof.

[0026] Figure 2 It is a schematic structural diagram of the suspension bracket system of the present invention spaced along the edge of the roof panel.

[0027] Figure 3 It is a schematic diagram of the connection structure between the suspension bracket system and the roof panel of the present invention.

[0028] Figure 4 It is a planar schematic diagram of the cantilever rod and cantilever rod leg connection structure in the present invention.

[0029] Figure 5 It is a schematic diagram of the connection structure between the second embedded part and the roof panel in the present invention.

[0030] Figure 6 It is a structural schematic diagram of the cantilever rod in the present invention.

[0031] Figure 7 It is a schematic diagram of the connection structure between the first embedded part and the roof panel in the present invention.

[0032] Figure 8 It is a schematic diagram of the connection structure between the second fixed section and the second length-adjustable section in the present invention.

[0033] Figure 9 It is a structural schematic diagram of the second connecting plate in the present invention.

[0034] Figure numbers: 1-roof panel, 2-first embedded part, 2.1-first connecting plate, 2.2-first anchor bolt, 2.3-first nut, 2.4-first anchor plate, 3-second embedded part, 3.1-second connecting plate, 3.2-second anchor bolt, 3.3-second nut, 3.4-second anchor plate, 4-cantilever rod, 4.1-first fixed section, 4.2-first length-adjustable section, 5-cantilever rod leg, 5.1-second fixed section, 5.2-second length-adjustable section, 6-inner mounting groove, 7-outer mounting groove, 8-second 1. Stiffening plate, 9. First spacer, 10. Hanging basket, 11. Hanging piece, 12. Second spacer, 13. Second stiffening plate, 14. Insulation layer, 15. Leveling layer, 16. Waterproof layer, 17. Protective layer, 18. Tile roofing layer, 19. Tile hanging strip, 20. First longitudinal strip hole, 21. Second longitudinal strip hole, 22. First connecting hole, 23. First bolt, 24. Second connecting hole, 25. Second bolt, 26. Third connecting hole, 27. Fourth connecting hole, 28. Casing, 29. Horizontal strip hole, 30. Steel strand, 31. Adhesive layer. DETAILED DESCRIPTION

[0035] like Figure 1-9As shown, this suspension bracket system for a slope roof hanging basket is arranged at intervals along the edge of the roof panel 1; a roof structure layer is provided on the roof panel 1; the suspension bracket system includes a first embedded part 2, a second embedded part 3, a cantilever rod 4 and a cantilever rod leg 5; on the roof structure layer, near the eaves position, inner mounting grooves 6 and outer mounting grooves 7 are provided at intervals; the outer mounting grooves 7 are provided in a group and are provided at intervals along the edge of the roof panel 1; the inner mounting grooves 6 are provided in a group, and a group of inner mounting grooves 6 is provided corresponding to a group of outer mounting grooves 7, and the inner mounting grooves 6 are located in the outer mounting grooves 7; the first embedded part 2 is installed in the inner mounting groove 6, including a first connecting plate 2.1 and a first anchor bolt 2.2; the vertical section of the first connecting plate 2.1 is L-shaped and is longitudinally arranged in the inner mounting groove 6; on the plate surface of the first connecting plate 2.1, first stiffening plates 8 are arranged at intervals along the longitudinal direction; the first anchor bolt 2.2 is embedded in the roof panel 1 at the bottom of the groove, and the upper end of the first anchor bolt 2.2 passes through the horizontal plate section of the first connecting plate 2.1 and is anchored by the first nut 2.3; the bottom of the first anchor bolt 2.2 is connected to the first anchor plate 2.4; the cantilever rod 4 is tilted in a direction perpendicular to the roof ridge, and the length of the cantilever rod 4 is adjustable; the lower end of the cantilever rod 4 is set between adjacent first stiffening plates 8 and is hingedly connected to the first stiffening plates 8, and the upper end of the cantilever rod 4 extends outward from the eaves; a hanger 11 for hanging a hanging basket 10 is hingedly connected to the upper end of the cantilever rod 4; the second embedded part 3 is installed in the outer mounting groove 7, and includes a second connecting plate 3.1 and a second anchor bolt 3.2; the vertical section of the second connecting plate 3.1 is L-shaped and is longitudinally arranged in the outer mounting groove 7; on the plate surface of the second connecting plate 3.1, there are longitudinally spaced apart arrangements There is a second stiffening plate 13; the second anchor bolt 3.2 is embedded in the roof panel 1 at the bottom of the groove, and the upper end of the second anchor bolt 3.2 passes through the horizontal plate section of the second connecting plate 3.1 and is anchored by a second nut 3.3; a second anchor plate 3.4 is connected to the bottom of the second anchor bolt 3.2; the cantilever rod leg 5 is installed on the second embedded part 3, and the length of the cantilever rod leg 5 is adjustable; the lower end of the cantilever rod leg 5 is arranged between adjacent second stiffening plates 13 and is hingedly connected to the second stiffening plate 13. The upper end of the cantilever rod leg 5 is supported on the bottom of the cantilever rod 4 and is adjustably connected to the cantilever rod 4.

[0036] In this embodiment, when the suspension bracket system is arranged in a direction perpendicular to the roof ridge, a first pad 9 is provided between the bottom of the first connecting plate 2.1 and the bottom surface of the inner mounting groove 6, and the first anchor bolt 2.2 is passed through the first pad 9; a second pad 12 is provided between the bottom of the second connecting plate 3.1 and the bottom surface of the inner mounting groove 6, and the second anchor bolt 3.2 is passed through the second pad 12.

[0037] In this embodiment, the roof structure layer includes an insulation layer 14, a leveling layer 15, a waterproof layer 16, a protective layer 17 and a tile roofing layer 18 arranged in sequence from bottom to top; the insulation layer 14 is respectively provided with slots at the positions of the outer mounting groove 7 and the inner mounting groove 6; the leveling layer 15, the waterproof layer 16 and the protective layer 17 are sequentially laid on the bottom and side walls of the slot; the waterproof layer 16 extends upward at the position of the first anchor bolt 2.2 and wraps around the first anchor bolt 2.2; the waterproof layer 16 extends upward at the position of the second anchor bolt 3.2 and wraps around the second anchor bolt 3.2; tile hanging strips 19 are arranged at intervals on the top of the protective layer 17 along the slope direction; the tile roofing layer 18 is composed of tiles, and the tiles are hung on the tile hanging strips 19; the first pad 9 is arranged on the protective layer 17 of the inner mounting groove 6; the second pad 12 is arranged on the protective layer 17 of the outer mounting groove 7.

[0038] In this embodiment, the spacing between the inner mounting groove 6 and the outer mounting groove 7 is 1100 mm to 2500 mm. In this embodiment, a first longitudinal hole 20 is formed on the horizontal plate section of the first connecting plate 2.1 at the position corresponding to the position where the first anchor bolt 2.2 passes through; and a second longitudinal hole 21 is formed on the horizontal plate section of the second connecting plate 3.1 at the position corresponding to the position where the second anchor bolt 3.2 passes through.

[0039] In this embodiment, the cantilever rod 4 includes a first fixed section 4.1 and a first length-adjustable section 4.2; the first fixed section 4.1 is tubular, and the lower end of the first fixed section 4.1 is arranged between adjacent first stiffening plates 8 and is hingedly connected to the first stiffening plates 8; the first length-adjustable section 4.2 is inserted into the upper end of the first fixed section 4.1, and the first length-adjustable section 4.2 is adjustably connected to the first fixed section 4.1; the first fixed section 4.1 and the first length-adjustable section 4.2 are made of lightweight and high-strength square steel. Of course, in other embodiments, the first fixed section 4.1 and the first length-adjustable section 4.2 can also be made of steel pipes with other rectangular cross-sections.

[0040] In this embodiment, a first connecting hole 22 is provided on the tube wall of the first fixed section 4.1, near the upper end; second connecting holes 24 are provided in the lower part of the first adjustable-length section 4.2, spaced apart along the long axis of the first adjustable-length section 4.2; the first adjustable-length section 4.2 and the first fixed section 4.1 are connected by a first bolt 23.

[0041] In this embodiment, the cantilever leg 5 includes a second fixed section 5.1 and a second length-adjustable section 5.2; the second fixed section 5.1 is tubular, and the lower end of the second fixed section 5.1 is arranged between adjacent second stiffening plates 13 and is hingedly connected to the second stiffening plates 13; the second length-adjustable section 5.2 is inserted into the upper end of the second fixed section 5.1, and the second length-adjustable section 5.2 is adjustably connected to the second fixed section 5.1; the second fixed section 5.1 and the second length-adjustable section 5.2 are made of lightweight and high-strength square steel. Of course, in other embodiments, the second fixed section 5.1 and the second length-adjustable section 5.2 can also be made of steel pipes with other rectangular cross-sections.

[0042] In this embodiment, a third connecting hole 26 is provided on the tube wall of the second fixed section 5.1 near the upper end; fourth connecting holes 27 are provided at the lower part of the second adjustable length section 5.2 and spaced along the long axis of the second adjustable length section 5.2; the second adjustable length section 5.2 and the second fixed section 5.1 are connected by a second bolt 25.

[0043] In this embodiment, a sleeve 28 is provided at the upper end of the cantilever leg 5; a horizontal hole 29 is opened on the sleeve 28; the sleeve 28 is sleeved on the cantilever rod 4 and is adjustably connected to the cantilever rod 4; the angle between the cantilever leg 5 and the part of the cantilever rod 4 close to the eaves is not greater than 90°.

[0044] The construction method of the suspension bracket system for a slope roof hanging basket includes the following steps.

[0045] Step 1: Lay the roof structure layer, and on the roof structure layer, near the eaves, an inner mounting groove 6 and an outer mounting groove 7 are spaced apart;

[0046] Step 2: Install the first embedded part 2 in the inner installation groove 6 and install the second embedded part 3 in the outer installation groove 7;

[0047] Step 3: hinge the lower end of the cantilever rod 4 to the first embedded part 2;

[0048] Step 4: hinge the cantilever leg 5 to the second embedded part 3, and then support the upper end of the cantilever leg 5 on the bottom of the front section of the cantilever rod 4;

[0049] Step 5: Hang the hanging basket 10 below the hanger 11 through the steel wire rope 30.

[0050] In this embodiment, the hanger 11 is U-shaped, and the upper ends of both sides of the hanger 11 are respectively clamped on both sides of the front end of the cantilever rod 4, and are hingedly connected to the cantilever rod 4 through tie bolts.

[0051] In this embodiment, there are two first stiffening plates 8, and the spacing between the two first stiffening plates 8 is 150 mm; the length of the first connecting plate 2.1 is 450 mm, and the height of the first connecting plate 2.1 is 150 mm; there are two second stiffening plates 13, and the spacing between the two second stiffening plates 13 is 150 mm; the length of the second connecting plate 3.1 is 450 mm, and the height of the second connecting plate 3.1 is 150 mm.

[0052] In this embodiment, the length of the first adjustable length section 4.2 is 1800 mm to 2400 mm, and the length of the first fixed section 4.1 is 1000 mm.

[0053] In this embodiment, the slope of the roof panel 1 is 18°, and an adhesive layer is provided between the leveling layer 15 and the waterproof layer 16.

[0054] In this embodiment, the first embedded part 2 and the second embedded part 3 are buried in the roof panel 1, and the exposed anchor bolts are connected to the connecting plate. The length of the exposed anchor bolts can be reserved according to actual needs; the first connecting plate is connected to the first anchor bolt and then to the first fixed section of the cantilever rod; the second connecting plate is connected to the second anchor bolt and then to the second fixed section 5.1, and then the second length-adjustable section 5.2 is adjustably connected to the second fixed section 5.1; finally, the second length-adjustable section 5.2 is supported at the bottom of the first length-adjustable section 4.2 to form a complete herringbone standardized suspension bracket system.

[0055] In this embodiment, the herringbone suspension bracket system is made of Q355 high-strength lightweight steel, and the spacing between the holes on the cantilever rod 4 and the cantilever rod leg 5 is 100 mm. The length and height of the cantilever rod and the cantilever rod leg can be freely adjusted to better adapt to various slope roofs and cantilever lengths.

Claims

1. A suspension bracket system for a sloping roof hanging basket, arranged at intervals along the edge of a roof panel (1); a roof structure layer is provided on the roof panel (1); and the system is characterized in that: The suspension bracket system comprises a first embedded part (2), a second embedded part (3), a cantilever rod (4) and a cantilever rod leg (5); an inner mounting groove (6) and an outer mounting groove (7) are arranged at intervals on the roof structure layer near the eaves; the outer mounting grooves (7) are provided in a group and are arranged at intervals along the edge of the roof panel (1); the inner mounting grooves (6) are provided in a group, one group of inner mounting grooves (6) is arranged correspondingly to one group of outer mounting grooves (7), and the inner mounting grooves (6) are located on the inner side of the outer mounting grooves (7); the first embedded part (2) is installed in the inner mounting groove (6) and comprises a first connecting plate (2.1) and a first anchor bolt (2.2); the vertical section of the first connecting plate (2.1) is L-shaped and is longitudinally arranged in the inner mounting groove (6); on the plate surface of the first connecting plate (2.1), first stiffening plates (8) are longitudinally spaced; the first anchor bolt (2.2) is pre-buried in the roof panel (1) at the bottom of the groove, the upper end of the first anchor bolt (2.2) passes through the horizontal plate section of the first connecting plate (2.1) and is anchored by a first nut (2.3); a first anchor plate (2.4) is connected to the bottom of the first anchor bolt (2.2); the cantilever rod (4) is tilted in a direction perpendicular to the roof ridge, and the length of the cantilever rod (4) is adjustable; The lower end of the cantilever rod (4) is arranged between adjacent first stiffening plates (8) and is hingedly connected to the first stiffening plates (8). The upper end of the cantilever rod (4) extends outward from the eaves. A hanger (11) for hanging a hanging basket (10) is hingedly connected to the upper end of the cantilever rod (4). The second embedded part (3) is installed in the outer mounting groove (7) and includes a second connecting plate (3.1) and a second anchor bolt (3.2). The vertical section of the second connecting plate (3.1) is L-shaped and is longitudinally arranged in the outer mounting groove (7). Second stiffening plates (13) are longitudinally spaced on the plate surface of the second connecting plate (3.1). The second anchor bolt (3.2) is provided at intervals along the longitudinal direction. The bolt (3.2) is embedded in the roof panel (1) at the bottom of the groove, and the upper end of the second anchor bolt (3.2) passes through the horizontal plate section of the second connecting plate (3.1) and is anchored by the second nut (3.3); the second anchor plate (3.4) is connected to the bottom of the second anchor bolt (3.2); the cantilever rod leg (5) is installed on the second embedded part (3), and the length of the cantilever rod leg (5) is adjustable; the lower end of the cantilever rod leg (5) is arranged between adjacent second stiffening plates (13) and is hingedly connected to the second stiffening plates (13); the upper end of the cantilever rod leg (5) is supported on the bottom of the cantilever rod (4) and is adjustably connected to the cantilever rod (4).

2. The suspension bracket system for a slope roof hanging basket according to claim 1, characterized in that: The roof structure layer comprises an insulation layer (14), a leveling layer (15), a waterproof layer (16), a protective layer (17) and a tile roofing layer (18) arranged in sequence from bottom to top; the insulation layer (14) is provided with slots at the positions of the outer mounting slot (7) and the inner mounting slot (6); the leveling layer (15), the waterproof layer (16) and the protective layer (17) are sequentially laid on the bottom and side walls of the slots; the waterproof layer (16) extends upward at the position of the first anchor bolt (2.2) and wraps around the first anchor bolt (2.2); the waterproof layer (16) extends upward at the position of the second anchor bolt (3.2) and wraps around the second anchor bolt (3.2); tile hanging strips (19) are arranged at intervals on the top of the protective layer (17) along the slope direction; the tile roofing layer (18) is composed of tiles, and the tiles are hung on the tile hanging strips (19).

3. The suspension bracket system for a slope roof hanging basket according to claim 1, characterized in that: The distance between the inner mounting groove (6) and the outer mounting groove (7) is 1100 mm to 2500 mm.

4. The suspension bracket system for a slope roof hanging basket according to claim 1, characterized in that: A first longitudinal strip hole (20) is provided on the horizontal plate section of the first connecting plate (2.1) at a position corresponding to the position through which the first anchor bolt (2.2) passes; and a second longitudinal strip hole (21) is provided on the horizontal plate section of the second connecting plate (3.1) at a position corresponding to the position through which the second anchor bolt (3.2) passes.

5. The suspension bracket system for a slope roof hanging basket according to claim 1, characterized in that: The cantilever rod (4) comprises a first fixed section (4.1) and a first length-adjustable section (4.2); the first fixed section (4.1) is tubular, and the lower end of the first fixed section (4.1) is arranged between adjacent first stiffening plates (8) and is hingedly connected to the first stiffening plates (8); the first length-adjustable section (4.2) is inserted into the upper end of the first fixed section (4.1), and the first length-adjustable section (4.2) and the first fixed section (4.1) are adjustably connected.

6. The suspension bracket system for a slope roof hanging basket according to claim 5, characterized in that: A first connecting hole (22) is provided on the tube wall of the first fixed section (4.1) near the upper end; second connecting holes (24) are provided at intervals along the long axis of the first adjustable length section (4.2) at the lower part of the first adjustable length section (4.2); and the first adjustable length section (4.2) and the first fixed section (4.1) are connected via a first bolt (23).

7. The suspension bracket system for a slope roof hanging basket according to claim 1, characterized in that: The cantilever rod leg (5) comprises a second fixed section (5.1) and a second length-adjustable section (5.2); the second fixed section (5.1) is tubular, and the lower end of the second fixed section (5.1) is arranged between adjacent second stiffening plates (13) and is hingedly connected to the second stiffening plates (13); the second length-adjustable section (5.2) is inserted into the upper end of the second fixed section (5.1), and the second length-adjustable section (5.2) and the second fixed section (5.1) are adjustably connected.

8. The suspension bracket system for a slope roof hanging basket according to claim 7, characterized in that: A third connecting hole (26) is provided on the tube wall of the second fixed section (5.1) near the upper end; fourth connecting holes (27) are provided at intervals along the long axis of the second adjustable length section (5.2) at the lower part of the second adjustable length section (5.2); the second adjustable length section (5.2) and the second fixed section (5.1) are connected via a second bolt (25).

9. The suspension bracket system for a slope roof hanging basket according to claim 1, characterized in that: A sleeve (28) is provided at the upper end of the cantilever rod leg (5); a horizontal bar hole (29) is opened on the sleeve (28); the sleeve (28) is sleeved on the cantilever rod (4) and is adjustably connected to the cantilever rod (4); the angle between the cantilever rod leg (5) and the portion of the cantilever rod (4) close to the eaves is not greater than 90°.

10. A construction method for a suspension bracket system for a slope roof hanging basket according to any one of claims 1 to 9, characterized in that: The steps are as follows: Step 1: laying a roof structure layer, and arranging an inner mounting groove (6) and an outer mounting groove (7) on the roof structure layer near the eaves at intervals; Step 2: Install the first embedded part (2) in the inner mounting groove (6) and simultaneously install the second embedded part (3) in the outer mounting groove (7); Step 3: hinge the lower end of the cantilever rod (4) to the first embedded part (2); Step 4: hinge the cantilever rod leg (5) to the second embedded part (3), and then support the upper end of the cantilever rod leg (5) on the bottom of the front section of the cantilever rod (4); Step 5: Hang the hanging basket (10) below the hanging member (11) through the steel strand (30).