PVT matching pipeline assembly type support system capable of being laid on roof in hidden mode
By designing a concealable roof PVT matching pipeline assembly bracket system, the problems of exposed and limited fixed range of pipeline brackets in the prior art are solved, and the rapid disassembly and fast installation of pipelines and hidden waterproof and sun-proof installation are realized to adapt to various on-site environment changes.
Patent Information
- Application Number
- CN202421604233.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-09
- Publication Date
- 2025-08-08
- Estimated Expiration
- 2034-07-09
AI Technical Summary
The existing pipeline bracket systems in the field of solar photovoltaic and thermal energy are mostly exposed, with limited fixed range, and it is difficult to achieve step-by-step installation of pipelines and waterproof and sun protection requirements at important nodes.
A concealable roof PVT supporting pipeline assembly bracket system including a first pipeline layout device, a flexible connection device and a second pipeline layout device is designed. It adopts a quick disassembly and quick installation structure, which can adjust the height difference and angle of the pipeline layout, and realizes hidden waterproof and sun protection installation.
It realizes quick disassembly and fast installation of pipelines and hidden installation, adapts to various on-site environment changes, and ensures the waterproof and sun protection effect of pipelines at important nodes.
Smart Images

Figure CN223206741U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of solar photovoltaic and thermal energy, and more specifically to an assembled support system capable of concealedly laying rooftop PVT supporting pipelines. Background Art
[0002] With the rapid development of modern industry, it has also been widely used in the field of solar photovoltaic and thermal energy and its accessories.
[0003] For example: CN220930388U, a detachable combined pipe support. The utility model discloses a detachable combined pipe support, comprising a first lower support mounted on one side and a second lower support mounted on the other side. The first lower support and the second lower support are sleeved and connected to an upper support frame, and at least one supported pipe is mounted on the upper portion of the upper support frame. The first lower support and the second lower support both comprise a connecting plate fixedly connected to the ground and a lower support mounted on the connecting plate. A groove is provided at the connection between the upper support frame and the lower support, and the lower support is inserted into the groove to achieve stable support. The utility model provides a detachable combined pipe support. When laying tiles, there is no need to cut them. Instead, holes need to be opened and inserted, achieving an aesthetically pleasing and practical effect. The fixed support of the utility model is limited in scope and is exposed. In comparison, the utility model can ensure the stepped installation of pipes, and the modular optional structure is more flexible. It can also ensure that pipes at important nodes are waterproof and sun-proof.
[0004] For example: CN220957154U, a pipe bracket with good adaptability. The utility model relates to the technical field of pipe brackets and provides a pipe bracket with good adaptability, including a base, a No. 1 clamping hoop is installed between the bases, wherein the bottom surfaces of the two groups of the bases are equipped with a No. 1 mounting plate, and a long rod is fixedly connected to one side of the No. 1 mounting plate. In actual use, by arranging the base, No. 1 clamping hoop, No. 1 mounting plate, long rod, No. 2 mounting plate, bolt hole, No. 2 clamping hoop, U-shaped frame, docking hole, nut, rectangular block, slide plate, positioning block, No. 1 socket, No. 1 pin, No. 2 pin, spring, No. 2 socket and block, the base with No. 1 mounting plate and No. 2 mounting plate is fixed to the head and tail ends of the platform, so that multiple groups of bases in the middle can be connected to each other through No. 1 pin and No. 2 pin, thereby improving the layout efficiency of the pipe bracket. At the same time, the spacing of the bolt holes can be adjusted according to the hole positions on different platforms, thereby improving the adaptability of the base and enabling it to be installed in different environments. The fixing bracket of the utility model has a limited range and is exposed. In comparison, the utility model can ensure the stepped installation of the pipeline, the modular optional structure is more flexible, and can also ensure that the pipelines at important nodes are waterproof and sun-proof. Summary of the Invention
[0005] The purpose of this utility model is to provide an assembled bracket system that can conceal the installation of PVT supporting pipelines on the roof. The overall structure is quick-disassembly and quick-installation. The height difference and angle during the pipeline layout can be adjusted according to the on-site conditions, and the hidden installation of important waterproof and sun-proof nodes can be achieved.
[0006] The purpose of this utility model is achieved through the following technical solutions:
[0007] A concealed installation of PVT supporting pipelines on a roof is characterized by comprising a first pipeline arrangement device, a flexible connection device, and a second pipeline arrangement device, wherein the first pipeline arrangement device is connected to the flexible connection device, and the flexible connection device is connected to the second pipeline arrangement device.
[0008] As a further optimization of the technical solution, the utility model provides an assembled bracket system for concealed laying of PVT supporting pipelines on the roof. The first pipeline layout device includes a bracket A, a top cover, a quick-release waterproof board A, a quick-release waterproof board B, a wiring bracket A, an optical axis A, an optical axis B, an optical axis C, an optical axis D, a bracket B, a bracket C, a bracket D, a handle, a ratchet A, a tension spring, a ratchet B, a ratchet shaft, a crank A, a gear shaft A, a crank shaft A, a crank B, a crank C, a gear shaft B, a crank shaft B, a crank shaft C, a slider bracket, a wiring bracket B, a pipe fixing bracket A, a wiring bracket C, a pipe fixing bracket B, a bracket E, a pipe fixing bracket C, a pipe fixing bracket D, the top cover, the quick-release waterproof board A, the quick-release waterproof board B, the wiring bracket A, the bracket C, and the bracket D are all fixedly connected to the bracket A, the wiring bracket A is fixedly connected to the bracket B through the optical axis A, the optical axis B, the optical axis C, and the optical axis D, the bracket D is rotatably connected to the handle, and the handle is rotatably connected to the ratchet A, the ratchet Tooth B is rotatably connected, ratchet A is fixedly connected to ratchet B through a tension spring, ratchet A and ratchet B are both meshed with the ratchet shaft, the ratchet shaft is rotatably connected to the bracket C, the ratchet shaft is fixedly connected to crank A, crank A and crank shaft A are both fixedly connected to gear shaft A, crank B and crank C are rotatably connected to gear shaft A and gear shaft B, the ratchet shaft and crank shaft A are both rotatably connected to the bracket E, gear shaft A is meshed with gear shaft B, gear shaft B is fixedly connected to crank shaft B and crank shaft C, crank shaft B and crank shaft C are both rotatably connected to the slider bracket, the slider bracket is fixedly connected to the wiring bracket B and wiring bracket C, the slider bracket is connected to the optical axis C and optical axis D, the wiring bracket B is connected to the optical axis A and optical axis C, the wiring bracket B is fixedly connected to the pipe fixed bracket A, the wiring bracket C is connected to the optical axis B and optical axis D, the wiring bracket C is fixedly connected to the pipe fixed bracket B, and the pipe fixed bracket C and pipe fixed bracket D are both fixedly connected to the wiring bracket A.
[0009] As a further optimization of the technical solution, the utility model provides an assembled bracket system that can conceal the laying of roof PVT supporting pipelines. The flexible connection device includes a flexible connecting pipe, a docking plate A, and a docking plate B, wherein the docking plate A and the docking plate B are both fixedly connected to the flexible connecting pipe.
[0010] As a further optimization of the technical solution, the utility model provides an assembled bracket system for concealed laying of roof PVT supporting pipelines. The components contained in the second pipeline layout device are the same as those of the first pipeline layout device, and its assembly method and sequence are symmetrical and the same as those of the first pipeline layout device.
[0011] The utility model provides an assembled bracket system for concealed laying of roof PVT supporting pipelines, which has the following beneficial effects: 1. The overall structure is quick-disassembly and quick-assembly, and the height difference and angle during pipeline layout can be adjusted according to on-site conditions; 2. It can realize the concealed installation of important waterproof and sun-proof nodes. BRIEF DESCRIPTION OF THE DRAWINGS
[0012] The present invention will be further described in detail below with reference to the accompanying drawings and specific implementation methods.
[0013] Figure 1 This is a schematic diagram of the overall structure of the utility model Figure 1 ;
[0014] Figure 2 This is a schematic diagram of the structure of the first pipeline arrangement device of the utility model Figure 1 ;
[0015] Figure 3 This is a schematic diagram of the structure of the first pipeline arrangement device of the utility model Figure 2 ;
[0016] Figure 4 This is a schematic diagram of the structure of the first pipeline arrangement device of the utility model Figure 3 ;
[0017] Figure 5 This is a schematic diagram of the flexible connection device structure of the utility model Figure 1 ;
[0018] In the figure: first pipeline routing device 1; bracket A101; top cover 102; quick-release waterproof plate A103; quick-release waterproof plate B104; wiring bracket A105; optical axis A106; optical axis B107; optical axis C108; optical axis D109; bracket B110; bracket C111; bracket D112; handle 113; ratchet A114; tension spring 115; ratchet B116; ratchet shaft 117; crank A118; gear shaft A119; crank shaft A120 ; Crank B121; Crank C122; Gear shaft B123; Crank shaft B124; Crank shaft C125; Slider bracket 126; Wiring bracket B127; Pipe fixing bracket A128; Wiring bracket C129; Pipe fixing bracket B130; Bracket E131; Pipe fixing bracket C132; Pipe fixing bracket D133; Flexible connecting device 2; Flexible connecting pipe 201; Docking plate A202; Docking plate B203; Second pipeline layout device 3. DETAILED DESCRIPTION
[0019] The present invention will be described in further detail below with reference to the accompanying drawings.
[0020] The fixed connection described in this device refers to fixation by welding, threaded fixing, etc., and different fixing methods are used in combination with different usage environments. The rotating connection refers to the axial fixation of the bearing by baking it on the shaft, and a spring retaining ring groove is provided on the shaft or the shaft hole. The elastic retaining ring is clamped in the retaining ring groove to achieve rotation, or meshing rotation between gears. Specific implementation method one:
[0022] The following combination Figure 1-5 This embodiment describes an assembled support system for concealed installation of PVT supporting pipelines on a roof, comprising a first pipeline arrangement device 1, a flexible connection device 2, and a second pipeline arrangement device 3. The first pipeline arrangement device 1 is connected to the flexible connection device 2, and the flexible connection device 2 is connected to the second pipeline arrangement device 3. Specific implementation method 2:
[0024] The following combination Figure 1-5This embodiment is described. This embodiment further describes Example 1. The first pipeline arrangement device 1 includes a bracket A101, a top cover 102, a quick-release waterproof plate A103, a quick-release waterproof plate B104, a wiring bracket A105, an optical axis A106, an optical axis B107, an optical axis C108, an optical axis D109, a bracket B110, a bracket C111, a bracket D112, a handle 113, a ratchet A114, a tension spring 115, a ratchet B116, a ratchet shaft 117, a crank A118, a gear shaft A119, a crank shaft A120, a crank B121, a crank C122, a gear shaft B123, a crank shaft B124, a crank shaft C125, Slider bracket 126, wiring bracket B127, pipe fixing bracket A128, wiring bracket C129, pipe fixing bracket B130, bracket E131, pipe fixing bracket C132, pipe fixing bracket D133, top cover 102, quick-release waterproof plate A103, quick-release waterproof plate B104, wiring bracket A105, bracket C111, and bracket D112 are all fixedly connected to bracket A101. Wiring bracket A105 is fixedly connected to bracket B110 via optical axis A106, optical axis B107, optical axis C108, and optical axis D109. Bracket D112 is rotatably connected to handle 113, and handle 113 is connected to ratchet A114 and ratchet B116. Rotationally connected, the ratchet A114 is fixedly connected to the ratchet B116 through a tension spring 115, the ratchet A114 and the ratchet B116 are both meshed and connected with the ratchet shaft 117, the ratchet shaft 117 is rotationally connected to the bracket C111, the ratchet shaft 117 is fixedly connected to the crank A118, the crank A118 and the crank shaft A120 are both fixedly connected to the gear shaft A119, the crank B121 and the crank C122 are both rotationally connected to the gear shaft A119 and the gear shaft B123, the ratchet shaft 117 and the crank shaft A120 are both rotationally connected to the bracket E131, the gear shaft A119 is meshed and connected with the gear shaft B123, the gear shaft B123 is rotationally connected to the crank shaft B124 and the crank shaft C1 25 is fixedly connected, the crank shaft B124 and the crank shaft C125 are both rotatably connected to the slider bracket 126, the slider bracket 126 is fixedly connected to the wiring bracket B127 and the wiring bracket C129, the slider bracket 126 is connected to the optical axis C108 and the optical axis D109, the wiring bracket B127 is connected to the optical axis A106 and the optical axis C108, the wiring bracket B127 is fixedly connected to the pipe fixing bracket A128, the wiring bracket C129 is connected to the optical axis B107 and the optical axis D109, the wiring bracket C129 is fixedly connected to the pipe fixing bracket B130, and the pipe fixing bracket C132 and the pipe fixing bracket D133 are both fixedly connected to the wiring bracket A105. Specific implementation method three:
[0026] The following combination Figure 1-5This embodiment further illustrates Example 1. The flexible connection device 2 includes a flexible connection tube 201 , a docking plate A 202 , and a docking plate B 203 , wherein both the docking plate A 202 and the docking plate B 203 are fixedly connected to the flexible connection tube 201 . Specific implementation method four:
[0028] The following combination Figure 1-5 This embodiment further explains the first embodiment. The components of the second pipeline arrangement device 3 are the same as those of the first pipeline arrangement device 1 , and the assembly method and sequence are symmetrical and the same as those of the first pipeline arrangement device 1 .
[0029] The utility model is a concealed installation of rooftop PVT supporting pipeline assembly support system, which has the following beneficial effects: in the process of arranging solar photovoltaic and thermal pipelines, the on-site environment for arranging pipelines will undergo various changes. When corner installation or stepped installation occurs, traditional pipeline supports are mostly exposed to the outside and most of them are inconvenient to adjust. In the utility model, the pipeline fixing support A128, the pipeline fixing support B130, the pipeline fixing support C132, and the pipeline fixing support D133 are pipeline supports adapted to different pipe diameters, among which the pipeline fixing support C132 and the pipeline fixing support D133 are separately built-in supports of three pipe diameter sizes, the pipeline fixing support A128 is a support for two pipe diameter sizes, and the pipeline fixing support B130 is The reserved installation dimensions of the brackets of a single pipe diameter size, pipe fixing bracket A128, pipe fixing bracket B130, pipe fixing bracket C132, and pipe fixing bracket D133 are all consistent. The purpose is to freely select and match brackets of different pipe diameters according to the installed pipes, so that the above-mentioned multiple pipe diameter brackets can be freely installed in the pipe fixing bracket A128, pipe fixing bracket B130, pipe fixing bracket C132, and pipe fixing bracket D133. After placing the device according to the actual situation on site, the first pipeline arrangement device 1 and the second pipeline arrangement device 3 are respectively fixed, and the flexible connecting device 2 is respectively connected to the first pipeline arrangement device 1 and the second pipeline arrangement device 3. Due to the material properties of the flexible connecting pipe 201, According to the installation orientation of the first pipeline arrangement device 1 and the second pipeline arrangement device 3, the first pipeline arrangement device 1 and the second pipeline arrangement device 3 can also be installed in a method in which the input and output pipelines have a certain height difference. For example, when the arranged pipeline passes through the bracket in the pipeline fixing bracket A128 in the second pipeline arrangement device 3, the flexible connecting pipe 201 is then disassembled, and the pipeline is then connected to the pipeline fixing bracket A128 in the first pipeline arrangement device 1. After all the pipelines have passed through, the fixing parts of the bracket in the pipeline fixing bracket A128 in the second pipeline arrangement device 3 are tightened to completely fix the pipeline. Then, the flexible connecting pipe 201 is fixed to the first pipeline arrangement device 1 and the second pipeline arrangement device 3, and the quick release is opened. The waterproof board A103 rotates the handle 113 in a clockwise and counterclockwise reciprocating manner. When the handle 113 rotates, it drives the ratchet shaft 117 to rotate through the ratchet A114 and the ratchet B116. The ratchet shaft 117 drives the gear shaft A119 to rotate through the crank A118 and the crank shaft A120. When the gear shaft A119 rotates, it drives the gear shaft B123 to rotate. When the gear shaft B123 rotates, it drives the slider bracket 126 to slide up and down along the optical axis C108 and the optical axis D109 through the crank shaft B124 and the crank shaft C125. When the slider bracket 126 slides, it drives the wiring bracket B127 to slide along the optical axis A106 and the optical axis C108. When the slider bracket 126 slides, it drives the wiring bracket C129 to slide along the optical axis B107 and the optical axis D109.When the wiring bracket B127 slides, it drives the pipe fixing bracket A128 to slide. When the pipe fixing bracket A128 drives the pipe to slide to the required height, the handle 113 is stopped. Then, the quick-release waterproof plate A103 is fixed to the bracket A101, achieving the installation of the pipe in a waterproof and sun-proof environment with a height difference.
[0030] Of course, the above description is not a limitation of the present invention, and the present invention is not limited to the above examples. Changes, modifications, additions or substitutions made by ordinary technicians in this technical field within the essential scope of the present invention also fall within the scope of protection of the present invention.
Claims
1. An assembled support system for concealed installation of PVT supporting pipelines on roofs, characterized by: The invention comprises a first pipeline arrangement device (1), a flexible connection device (2), and a second pipeline arrangement device (3), wherein the first pipeline arrangement device (1) is connected to the flexible connection device (2), and the flexible connection device (2) is connected to the second pipeline arrangement device (3); The first pipeline arrangement device (1) comprises a bracket A (101), a top cover (102), a quick-release waterproof plate A (103), a quick-release waterproof plate B (104), a wiring bracket A (105), an optical axis A (106), an optical axis B (107), an optical axis C (108), an optical axis D (109), a bracket B (110), a bracket C (111), a bracket D (112), a handle (113), a ratchet A (114), a tension spring (115), a ratchet B (116), a ratchet shaft (117), a crank A (118), a gear shaft A (119), a crank shaft A (120), a crank B (121), a crank C (122), a gear shaft B (123), a crank shaft B (124), and a crank shaft C (125). , slider bracket (126), wiring bracket B (127), pipe fixing bracket A (128), wiring bracket C (129), pipe fixing bracket B (130), bracket E (131), pipe fixing bracket C (132), pipe fixing bracket D (133), top cover (102), quick-release waterproof plate A (103), quick-release waterproof plate B (104), wiring bracket A (105), bracket C (111), bracket D (112) are all fixedly connected to bracket A (101), wiring bracket A (105) is fixedly connected to bracket B (110) through optical axis A (106), optical axis B (107), optical axis C (108), optical axis D (109), bracket D (112) is rotatably connected to handle (113) Then, the handle (113) is rotatably connected to the ratchet A (114) and the ratchet B (116), the ratchet A (114) is fixedly connected to the ratchet B (116) through the tension spring (115), the ratchet A (114) and the ratchet B (116) are both meshed and connected to the ratchet shaft (117), the ratchet shaft (117) is rotatably connected to the bracket C (111), the ratchet shaft (117) is fixedly connected to the crank A (118), the crank A (118) and the crank shaft A (120) are both fixedly connected to the gear shaft A (119), the crank B (121) and the crank C (122) are rotatably connected to the gear shaft A (119) and the gear shaft B (123), the ratchet shaft (117) and the crank shaft A (120) are both rotatably connected to the bracket E (131), The gear shaft A (119) is meshedly connected with the gear shaft B (123), the gear shaft B (123) is fixedly connected with the crank shaft B (124) and the crank shaft C (125), the crank shaft B (124) and the crank shaft C (125) are both rotatably connected with the slider bracket (126), the slider bracket (126) is fixedly connected with the wiring bracket B (127) and the wiring bracket C (129), the slider bracket (126) is connected with the optical axis C (108) and the optical axis D (109), the wiring bracket B (127) is connected with the optical axis A (106) and the optical axis C (108), the wiring bracket B (127) is fixedly connected with the pipe fixing bracket A (128), and the wiring bracket C (129) is connected with the optical axis B (107) and the optical axis D (109).The wiring bracket C (129) is fixedly connected to the pipe fixing bracket B (130), and the pipe fixing bracket C (132) and the pipe fixing bracket D (133) are both fixedly connected to the wiring bracket A (105); The flexible connection device (2) comprises a flexible connection tube (201), a docking plate A (202), and a docking plate B (203), wherein the docking plate A (202) and the docking plate B (203) are both fixedly connected to the flexible connection tube (201); The components of the second pipeline arrangement device (3) are the same as those of the first pipeline arrangement device (1), and the assembly method and sequence thereof are symmetrical and the same as those of the first pipeline arrangement device (1).
Citation Information
Patent Citations
Detachable combined pipeline support
CN220930388U
A pipe support with good adaptability
CN220957154U