Construction method of modular lighting railings used in landscape environments

By positioning the anchor plate in the landscape environment and forming a beam and slab cavity, and connecting the light railings after pouring concrete, the problems of cumbersome and high cost of lighting railings are solved, and convenient construction and good lighting effects are achieved.

CN115726523BActive Publication Date: 2025-08-19SHENZHEN GEOTECHN INVESTIGATION & SURVEYING INST
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Patent Information

Application Number
CN202211284094.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-10-20
Publication Date
2025-08-19
Estimated Expiration
2042-10-20

AI Technical Summary

Technical Problem

In the prior art, the construction of lighting railings is cumbersome and costly, which affects the integration of lighting effects and landscape.

Method used

In the landscape environment, the anchor plate is located on site, and the beam plate cavity is formed through the formwork and concrete is poured. After the beam plate is formed, the lighting frame of the modular lighting rail is connected to the anchor plate to realize the fixed connection between the lighting rail and the beam plate.

Benefits of technology

The construction process is convenient, reducing construction costs, and achieving effective integration of lighting railings and landscape environment, improving lighting effects.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to the technical field of railings, and discloses a construction method for modular lighting railings used in landscape environments. The method comprises the following steps: on-site survey in the landscape environment, positioning the position of the anchor plate, and during the construction process, a formwork is supported to form a beam-slab cavity. The anchor plate includes an anchor section and a connecting section. At the same time, a modular lighting railing is provided, and the lighting railing includes a railing frame. Lighting frames are provided on both sides of the railing frame. The bottom of the light frame extends downward to form an installation section. The light frame is provided with an illumination lamp, and the lighting railing is arranged longitudinally. The beam-slab cavity is formed by supporting the formwork, the anchor plate is arranged on the formwork, and concrete is poured into the beam-slab cavity. After the concrete is cured to the set requirements, the formwork is removed, and the concrete in the beam-slab cavity forms the beam-slab. The anchor section of the anchor plate is placed in the beam-slab to form a whole with the beam-slab. The installing section of the light frame is connected to the connecting section of the anchor plate, thereby fixing the lighting railing to the beam-slab. The entire construction process is convenient to operate and has low construction cost.
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Description

Technical Field

[0001] The patent of this invention relates to the technical field of railings, specifically, to a construction method of modular lighting railings used in landscape environments. Background Art

[0002] In urban life, lighting landscapes are widely used, generally in parks, greenways, scenic spots, etc. They can be powered by municipal power or solar power. Different power supply modes can be selected according to the actual application situation.

[0003] At present, lighting landscapes can be arranged in a column-type manner, which is mainly suitable for urban roads. However, the lighting of the lighting landscape arranged in a column-type manner is easily obstructed, affecting the lighting effect; alternatively, the lighting landscape can also be arranged underground. However, when it rains, the lights are easily covered by rainwater, affecting the lighting and making maintenance inconvenient.

[0004] In the prior art, in order to achieve a better integration of lighting and landscape environment, lights are set on the railings, that is, the lights and the railings are combined together. However, in the process of constructing the railings, there are defects such as cumbersome construction and high cost. Summary of the Invention

[0005] The purpose of the present invention is to provide a construction method of modular lighting railings for use in landscape environments, aiming to solve the problem of cumbersome construction in the prior art.

[0006] The present invention is implemented in this way. The construction method of modular lighting railings used in landscape environments includes the following construction steps:

[0007] 1) Conduct on-site survey in the landscape environment and locate the position of the anchor plate by measuring and setting out the lines;

[0008] 2) During road construction in a landscape environment, a beam-slab cavity is formed by supporting a formwork, and a plurality of anchor plates are arranged at intervals on the formwork, wherein the anchor plates include an anchoring section extending into the beam-slab cavity and a connecting section extending outside the beam-slab cavity;

[0009] 3) pouring concrete into the beam-slab cavity, and after the concrete is cured to the set requirements, removing the formwork, the concrete in the beam-slab cavity forms the beam-slab, and the anchoring section of the anchoring plate is placed in the beam-slab to form a whole with the beam-slab;

[0010] 4) Providing a modular lighting railing, the lighting railing comprising a railing frame, with lighting racks on both sides of the railing frame, the bottom of the lighting rack extending downward to form a mounting section, and a lighting lamp provided in the lighting rack;

[0011] The installation section of the lighting rack is connected to the connection section of the anchor plate, and the installation sections of the two lighting racks are respectively connected to two adjacent connection sections, and the lighting railings are arranged longitudinally.

[0012] Optionally, repeat construction step 4) to arrange multiple lighting railings, and the multiple lighting railings are arranged in sequence along the length direction of the beam and slab.

[0013] Optionally, in the construction step 3), a steel bar frame is first tied and arranged in the beam-slab cavity, and then concrete is poured into the beam-slab cavity, and the concrete covers the steel bar frame.

[0014] Optionally, in the construction step 3), the anchoring section of the anchoring plate is placed in the beam-slab cavity, passes through the steel frame, and extends to the interior of the steel frame.

[0015] Optionally, in the construction step 4), bolts are passed through the connecting section and the mounting section, and nuts on the bolts are tightened to fit and fix the connecting section and the mounting section.

[0016] Optionally, in the construction step 4), the top of the light frame is flat, and a solar panel is provided on the top of the light frame; the light frame has a longitudinally arranged light trough, and the light trough has an inner opening facing the inner side of the road;

[0017] The lighting lamp is arranged in the light trough and extends along the longitudinal direction of the light trough. The inner opening of the light trough is covered with a light-transmitting plate, and the light plate seals the inner opening of the light trough.

[0018] The top of the light frame has a through hole connected to the light groove, and the solar panel has a wire. The wire passes through the through hole and extends into the light groove to be electrically connected to the lighting lamp, and then the through hole is sealed with waterproof glue.

[0019] Optionally, in the construction step 2), the anchoring section includes a longitudinally arranged end plate, the end plate having an inner end surface facing the beam-slab cavity, and a plurality of anchoring legs extending inward from the inner end surface of the end plate; the plurality of anchoring legs are arranged at intervals around the circumference of the end plate, with anchoring intervals between adjacent anchoring legs, and the plurality of anchoring legs enclose an anchoring space;

[0020] There is a transition section between the connecting section and the end plate, the inner end of the transition section passes through the beam plate and is fixedly connected to the outer end surface of the end plate as a whole; the outer end of the transition section passes through the outside of the beam plate and is fixedly connected to the connecting section as a whole.

[0021] Optionally, along the inward extension direction of the anchoring foot, the anchoring foot is arranged outwardly and deviates from the anchoring space; a bent plate is provided at the outer end of the anchoring foot, the outer end of the bent plate is connected to the outer end of the anchoring foot, the inner end of the bent plate extends toward the anchoring space, and the bent plate and the anchoring foot are arranged in a bent shape;

[0022] A bending space is formed between the bending plate and the anchoring leg, and the bending space is filled with an elastic material. The elastic material is fixedly connected to the anchoring leg and the bending plate, respectively, and has a bending gap with the bottom of the bending space;

[0023] The elastic material has an exposed end surface facing the anchoring space, and the exposed end surface is arranged in a concave and convex shape; in the construction step 3), after pouring concrete into the beam and slab cavity, the concrete wraps the entire anchoring section and fills into the anchoring space, combining with the exposed end surface of the elastic material, and the concrete presses the bending plate to bend toward the downward anchoring foot, and compresses the elastic material into a compressed state.

[0024] Optionally, both sides of the transition section extend outward to form a limiting plate; the limiting plate comprises an inner end section and an outer end section that are butted against the side of the transition section, the inner end section is arranged obliquely and has an oblique interval with the transition section, and the outer end section is flat;

[0025] In the construction step 3), the inner end section is embedded in the beam slab to form a whole with the beam slab, and the outer end section is flatly abutted against the outer side wall of the beam slab.

[0026] Optionally, a plurality of horizontally arranged transverse bars are provided in the inclined intervals, the two ends of the transverse bars are respectively connected to the transition section and the inner end section, and the plurality of transverse bars are arranged at intervals; in the construction step 3), the plurality of transverse bars are placed in the beam and slab, and the concrete passes between adjacently arranged transverse bars.

[0027] Compared with the prior art, the present invention discloses a construction method for modular lighting railings for use in landscape environments. First, an on-site survey is conducted in the landscape environment to locate the position of the anchor plate. During the construction process, a beam-slab cavity is formed by formwork, and the anchor plate is arranged on the formwork. Then, concrete is poured into the beam-slab cavity. After the concrete is cured to the set requirements, the formwork is removed, and the concrete in the beam-slab cavity forms a beam-slab. The anchoring section of the anchor plate is placed in the beam-slab to form a whole with the beam-slab. At the same time, a modular lighting railing is provided. The lighting railing is provided with a lighting frame, and the bottom of the lighting frame extends downward to form an installation section. The installation section of the lighting frame is then connected to the connecting section of the anchor plate, thereby fixing the lighting railing to the beam-slab. The entire construction process is convenient to operate and has low construction cost. BRIEF DESCRIPTION OF THE DRAWINGS

[0028] Figure 1This is a subjective schematic diagram of a modular lighting railing for use in a landscape environment provided by the present invention;

[0029] Figure 2 This is a schematic diagram of the main view of the lighting railing provided by the present invention;

[0030] Figure 3 The present invention provides Figure 1 The enlarged partial schematic diagram at point A in the middle;

[0031] Figure 4 The present invention provides Figure 2 The enlarged partial schematic diagram at point B in the middle;

[0032] Figure 5 is a bottom view schematic diagram of the anchoring section provided by the present invention;

[0033] Figure 6 It is a partial schematic diagram of the anchoring section provided by the present invention. DETAILED DESCRIPTION

[0034] In order to make the purpose, technical solutions and advantages of the present invention more clearly understood, the present invention will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not intended to limit the present invention.

[0035] The implementation of the present invention is described in detail below with reference to specific embodiments.

[0036] The same or similar numbers in the drawings of this embodiment correspond to the same or similar parts; in the description of the present invention, it should be understood that if the terms "upper", "lower", "left", "right", etc. indicate the orientation or position relationship, they are based on the orientation or position relationship shown in the drawings. This is only for the convenience of describing the present invention and simplifying the description, and does not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operate in a specific orientation. Therefore, the terms describing the position relationship in the drawings are only used for illustrative purposes and cannot be understood as limiting this patent. For ordinary technicians in this field, the specific meanings of the above terms can be understood according to specific circumstances.

[0037] Reference Figure 1-6 The figure shows a preferred embodiment of the present invention.

[0038] The construction method of the modular lighting railing for landscape environment provided by the present invention includes the following construction steps:

[0039] 1) Conducting on-site surveys in the landscape environment and locating the anchor plate 101 by measuring and setting out the lines;

[0040] 2) During road construction in a landscape environment, a beam-slab cavity 100 is formed by formwork, and a plurality of anchor plates 101 are arranged at intervals on the formwork. The anchor plates 101 include anchoring sections 102 extending into the beam-slab cavity 100 and connecting sections 103 extending to the outside of the beam-slab cavity 100;

[0041] 3) Pour concrete into the beam-slab cavity 100. After the concrete is cured to the set requirements, remove the formwork. The concrete in the beam-slab cavity 100 forms the beam-slab 104. The anchoring section 102 of the anchoring plate 101 is placed in the beam-slab 104 to form a whole with the beam-slab 104.

[0042] 4) Providing a modular lighting railing, the lighting railing includes a railing frame 105, with lighting racks 106 on both sides of the railing frame 105, the bottom of the lighting rack 106 extending downward to form a mounting section 107, and a lighting lamp 108 provided in the lighting rack 106;

[0043] The mounting section 107 of the lighting rack 106 is connected to the connecting section 103 of the anchor plate 101 . The mounting sections 107 of the two lighting racks 106 are respectively connected to two adjacent connecting sections 103 . The lighting railings are arranged longitudinally.

[0044] The above disclosure discloses a construction method for modular lighting railings used in landscape environments. First, an on-site survey is conducted in the landscape environment to locate the position of the anchor plate 101. During the construction process, a beam-slab cavity 100 is formed by formwork support, and the anchor plate 101 is arranged on the formwork. Then concrete is poured into the beam-slab cavity 100. After the concrete is cured to the set requirements, the formwork is removed, and the concrete in the beam-slab cavity 100 forms the beam-slab 104. The anchoring section 102 of the anchor plate 101 is placed in the beam-slab 104 to form a whole with the beam-slab 104. At the same time, a modular lighting railing is provided. The lighting railing is provided with a lighting frame 106, and the bottom of the lighting frame 106 extends downward to form an installation section 107. The installation section 107 of the lighting frame 106 is then connected to the connecting section 103 of the anchor plate 101, thereby fixing the lighting railing to the beam-slab 104. The entire construction process is convenient to operate and the construction cost is low.

[0045] Repeat construction step 4) to arrange multiple light railings, which are arranged in sequence along the length of the beam slab 104. In this way, the light railings are arranged along the beam slab 104, and the light railings are equipped with light-emitting elements, which illuminate the road along the beam slab 104, beautifying the landscape and providing lighting for tourists.

[0046] In this embodiment, in construction step 3), a steel frame is first tied and arranged in the beam-slab cavity 100, and then concrete is poured into the beam-slab cavity 100, covering the steel frame with concrete. In this way, the steel frame serves to shape the concrete. After the poured concrete is cured to the required setting, the concrete shaped by the steel frame can be anchored in the subsequent anchoring section 102.

[0047] Specifically, in construction step 3), the anchoring section 102 of the anchor plate 101 is placed in the beam-slab cavity 100 and extends through the reinforcement frame to the interior of the reinforcement frame. This allows the concrete, already shaped by the reinforcement frame, to be anchored therein, facilitating the anchoring section 102 of the anchor plate 101. This allows the anchoring section 102 to be securely and firmly connected to the beam-slab cavity 100, thus satisfying the requirement for the lighting railing to be longitudinally arranged on the outside of the beam-slab 104 in subsequent steps.

[0048] In construction step 4), bolts 109 are passed through the connecting section 103 and the mounting section 107, and nuts 110 on the bolts 109 are tightened to secure the connecting section 103 to the mounting section 107. The mounting section 107 and the connecting section 103 are connected by bolts 109, and the nuts 110 on the bolts 109 are tightened to secure the connecting section 103 to the mounting section 107, thereby securing the lighting railing to the anchor plate 101.

[0049] In this embodiment, in construction step 4), the top of the light frame 106 is flat, and a solar panel 111 is provided on the top of the light frame 106; the light frame 106 has a longitudinally arranged light trough 112, and the light trough 112 has an inner opening facing the inner side of the road;

[0050] The lighting lamp 108 is arranged in the light groove 112 and extends along the longitudinal direction of the light groove 112. The inner opening of the light groove 112 is covered with a light-transmitting plate 113, and the light plate seals the inner opening of the light groove 112.

[0051] The top of the light frame 106 has a through hole 114 connected to the light groove 112. The solar panel 111 has a wire. The wire passes through the through hole 114 and extends into the light groove 112 to be electrically connected to the lighting lamp 108. The through hole 114 is then sealed with waterproof glue.

[0052] By providing a light trough 112 in the light frame 106, the lighting lamp 108 can be embedded in the light trough 112 for emitting light. The light trough 112 extends along the height direction of the light frame 106, and the lighting range is wider and the lighting is brighter. At the same time, the light trough 112 has an opening facing the road, so that the lighting light can be irradiated on the road for lighting people, and the opening is covered with a light-transmitting plate 113, which does not affect the lighting of the lighting lamp 108 and can protect the light strip inside the opening. In addition, a solar panel 111 is provided on the top of the light frame 106, and the solar panel 111 can continuously convert solar energy into electrical energy and store it. A through hole 114 is also provided on the top of the light frame 106, and the through hole 114 can electrically connect the solar panel 111 to the lighting lamp 108, so that the stored electrical energy can be used for the lighting lamp 108 to continuously emit light, and the through hole 114 is sealed with waterproof glue, which can prevent water from entering the light trough 112 from the through hole 114.

[0053] In construction step 2), the anchoring section 102 includes a longitudinally arranged end plate 115, the end plate 115 having an inner end surface facing the beam-slab cavity 100, and a plurality of anchoring legs 116 extending inward from the inner end surface of the end plate 115; the plurality of anchoring legs 116 are arranged circumferentially around the end plate 115, with anchoring intervals between adjacent anchoring legs 116, and the plurality of anchoring legs 116 enclose an anchoring space;

[0054] There is a transition section 118 between the connecting section 103 and the end plate 115. The inner end of the transition section 118 passes through the beam plate 104 and is fixedly connected to the outer end surface of the end plate 115 as a whole; the outer end of the transition section 118 passes through the outside of the beam plate 104 and is fixedly connected to the connecting section 103 as a whole.

[0055] Through the anchoring feet 116 provided on the end plate 115, multiple anchoring feet 116 can make the anchoring plate 101 fixedly connected in the beam plate 104. Multiple anchoring feet 116 surround and form an enclosed space. The anchoring feet 116 are anchored to the material in the anchoring space. At the same time, the inner end of the transition section 118 is fixedly connected to the end plate 115, and the outer end of the transition section 118 is fixedly connected to the connecting section 103, and then the connecting section 103 is fixedly connected to the end plate 115. In this way, the entire anchoring plate 101 has a tight structure, making the entire structure more reliable and stable.

[0056] Along the inward extension direction of the anchoring foot 116, the anchoring foot 116 is arranged outwardly and tilted away from the anchoring space; a bent plate 117 is provided at the outer end of the anchoring foot 116, the outer end of the bent plate 117 is connected to the outer end of the anchoring foot 116, and the inner end of the bent plate 117 extends toward the anchoring space, and the bent plate 117 and the anchoring foot 116 are arranged in a bent shape;

[0057] A bending space 124 is formed between the bending plate 117 and the anchoring leg 116. The bending space 124 is filled with an elastic material 123. The elastic material 123 is fixedly connected to the anchoring leg 116 and the bending plate 117, respectively, and has a bending gap with the bottom of the bending space 124.

[0058] The elastic material 123 has an exposed end surface facing the anchoring space, and the exposed end surface is arranged in a concave and convex shape; in construction step 3), after pouring concrete into the beam-slab cavity 100, the concrete wraps the entire anchoring section 102 and fills into the anchoring space, combining with the exposed end surface of the elastic material 123, and the concrete presses the bending plate 117 to bend toward the lower anchoring foot 116, and compresses the elastic material 123 into a compressed state.

[0059] The anchoring foot 116 extends outward away from the enclosed space, which can make the enclosed space larger. At the same time, a bending plate 117 is connected to the outer end of the anchoring foot 116, and the bending plate 117 is bent toward the enclosed space. The anchoring foot 116 and the bending plate are connected to form a claw shape. The formed claw shape can firmly fix the anchoring section 102 in the beam slab 104, and the elastic material 123 is filled in the bending gap. When the concrete wraps the entire anchoring section 102 and the anchoring space is filled with the anchoring space, the concrete combines with the exposed end face of the elastic material 123, causing the elastic material 123 to be compressed. Since the elastic material 123 is elastic, the elastic material 123 drives the bending plate 117 to bend toward the enclosed space.

[0060] In this embodiment, both sides of the transition section 118 extend outward to form a limiting plate 119; the limiting plate 119 includes an inner end section 120 and an outer end section 121 that abut against the side of the transition section 118. The inner end section 120 is arranged obliquely and has an oblique gap with the transition section 118, while the outer end section 121 is flat.

[0061] In construction step 3), the inner end section 120 is embedded in the beam slab 104 to form a whole with the beam slab 104 , and the outer end section 121 is flatly abutted against the outer side wall of the beam slab 104 .

[0062] Limiting plates 119 extend outward from both sides of the transition section 118. The limiting plates 119 can limit the insertion length of the anchoring section 102. When the anchoring plate 101 is used to place the anchoring section 102 in the beam slab 104, after the anchoring section 102 is inserted into the beam slab 104 for a certain distance, the outer end section 121 of the limiting plate 119 will abut against the outer side wall, so that the anchoring section 102 cannot go any deeper, thereby preventing the anchoring section 102 from sinking too deep and the reserved outer side length from being insufficient, resulting in the inability to install the matching lighting railing.

[0063] Specifically, a plurality of horizontally arranged transverse bars 122 are provided in the inclined intervals, and the two ends of the transverse bars 122 are respectively connected to the transition section 118 and the inner end section 120, and the plurality of transverse bars 122 are arranged at intervals; in construction step 3), the plurality of transverse bars 122 are placed in the beam slab 104, and the concrete passes between adjacently arranged transverse bars 122.

[0064] A transverse bar 122 is provided connecting the transition section 118 and the inner end section 120. After being inserted into the anchoring section 102, the transverse bar 122 abuts against the concrete. The transverse bar 122 can anchor the anchoring section 102 more stably. At the same time, the transverse bar 122, the transition section 118 and the inner end section 120 form a triangle, which strengthens and stabilizes the outer end section 121's ability to resist external forces. In addition, the transverse bar 122 fixes the inclination angle of the inclined interval and the vertical distance between the outer end section 121 and the transition section 118, thereby ensuring the limit distance of the limit plate 119.

[0065] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.

Claims

1. The construction method of modular lighting railings used in landscape environments is characterized by: The construction steps include: 1) Conduct on-site survey in the landscape environment and locate the position of the anchor plate by measuring and setting out the lines; 2) During road construction in a landscape environment, a beam-slab cavity is formed by supporting a formwork, and a plurality of anchor plates are arranged at intervals on the formwork, wherein the anchor plates include an anchoring section extending into the beam-slab cavity and a connecting section extending outside the beam-slab cavity; 3) pouring concrete into the beam-slab cavity, and after the concrete is cured to the set requirements, removing the formwork, the concrete in the beam-slab cavity forms the beam-slab, and the anchoring section of the anchoring plate is placed in the beam-slab to form an integral body with the beam-slab; 4) Provide a modular lighting railing, the lighting railing includes a railing frame, and light racks are respectively provided on both sides of the railing frame. The bottom of the light rack extends downward to form an installation section, and the light rack is provided with a lighting lamp; Connecting the installation section of the lighting rack to the connecting section of the anchor plate, the installation sections of the two lighting racks are respectively connected to two adjacent connecting sections, and the lighting railings are arranged longitudinally; In construction step 2), the anchoring section includes a longitudinally arranged end plate, the end plate having an inner end surface facing the beam-slab cavity, and a plurality of anchoring legs extending inward from the inner end surface of the end plate; the plurality of anchoring legs are arranged at intervals around the circumference of the end plate, with anchoring intervals between adjacent anchoring legs, and the plurality of anchoring legs enclose an anchoring space; A transition section is provided between the connecting section and the end plate, wherein the inner end of the transition section passes through the beam plate and is fixedly connected to the outer end surface of the end plate as a whole; the outer end of the transition section passes through the outside of the beam plate and is fixedly connected to the connecting section as a whole; Along the inward extension direction of the anchoring foot, the anchoring foot is arranged outwardly and deviates from the anchoring space; a bent plate is provided at the outer end of the anchoring foot, the outer end of the bent plate is connected to the outer end of the anchoring foot, the inner end of the bent plate extends toward the anchoring space, and the bent plate and the anchoring foot are arranged in a bent shape; A bending space is formed between the bending plate and the anchoring leg, and the bending space is filled with an elastic material. The elastic material is fixedly connected to the anchoring leg and the bending plate, respectively, and has a bending gap with the bottom of the bending space; The elastic material has an exposed end surface facing the anchoring space, and the exposed end surface is arranged in a concave-convex shape. In construction step 3), after pouring concrete into the beam-slab cavity, the concrete wraps the entire anchoring section and fills the anchoring space, combining with the exposed end surface of the elastic material. The concrete presses the bent plate toward the lower anchoring foot and compresses the elastic material into a compressed state. Both sides of the transition section extend outward to form a limit plate; the limit plate has an inner end section and an outer end section that are butted against the side of the transition section, the inner end section is arranged obliquely and has an oblique gap with the transition section, and the outer end section is flat; In construction step 3), the inner end section is embedded in the beam slab to form an integral body with the beam slab, and the outer end section is flatly abutted against the outer side wall of the beam slab; A plurality of horizontally arranged transverse bars are provided in the inclined intervals, the two ends of the transverse bars are respectively connected to the transition section and the inner end section, and the plurality of transverse bars are arranged at intervals; in construction step 3), the plurality of transverse bars are placed in the beam slab, and the concrete passes through between adjacently arranged transverse bars.

2. The construction method of the modular lighting railing for landscape environment according to claim 1, characterized in that: Repeat construction step 4) to arrange multiple lighting railings, and the multiple lighting railings are arranged in sequence along the length direction of the beam and slab.

3. The construction method of the modular lighting railing for landscape environment as claimed in claim 1, characterized in that: In construction step 3), a steel bar frame is first tied and arranged in the beam-slab cavity, and then concrete is poured into the beam-slab cavity, and the concrete covers the steel bar frame.

4. The construction method of the modular lighting railing for landscape environment as claimed in claim 3, characterized in that: In construction step 3), the anchoring section of the anchoring plate is placed in the beam-slab cavity and passes through the steel frame to extend into the interior of the steel frame.

5. The construction method of modular lighting railings for landscape environment as claimed in claim 1, characterized in that: In construction step 4), bolts are passed through the connecting section and the mounting section, and nuts on the bolts are tightened to secure the connecting section and the mounting section.

6. The construction method of the modular lighting railing for landscape environment according to any one of claims 1 to 5, characterized in that: In construction step 4), the top of the light frame is flat, and a solar panel is provided on the top of the light frame; the light frame has a longitudinally arranged light trough, and the light trough has an inner opening facing the inner side of the road; The lighting lamp is arranged in the light trough and extends along the longitudinal direction of the light trough. The inner opening of the light trough is covered with a light-transmitting plate, and the light-transmitting plate seals the inner opening of the light trough. The top of the light frame has a through hole connected to the light groove, and the solar panel has a wire. The wire passes through the through hole and extends into the light groove to be electrically connected to the lighting lamp, and then the through hole is sealed with waterproof glue.

Citation Information

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