Anti-cold-bridge structure for hanging riding track steel suspenders under indoor ski field

By installing a multi-layered insulation structure on the steel hangers of the indoor ski resort's walkway, the heat transfer path is blocked, solving the cold bridging problem caused by traditional steel hangers. This improves the ski resort's insulation performance and operational efficiency, providing skiers with a more comfortable and safer skiing environment.

CN224039976UActive Publication Date: 2026-03-27THE FIRST CONSTR CO LTD OF CHINA CONSTR FIRST GRP +1
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-10
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

Traditional indoor ski resorts often have steel suspension rods on the walkways that are prone to becoming cold bridges due to their good thermal conductivity. This causes heat to be transferred from warm areas to cold areas, resulting in energy loss and uneven temperature distribution, which affects operational efficiency and safety.

Method used

The structure employs a multi-layered thermal insulation structure, including the hanger body, support plate, connecting rod, thermal insulation pad, insulation board, and adhesive coating. The thermal insulation pad and insulation board block the heat transfer path, while high-strength polyurethane pads and perfluororubber maintain the seal, forming a complete walkway structure.

Benefits of technology

It effectively prevents cold bridging, maintains temperature uniformity, improves the insulation performance and operational efficiency of ski resorts, and provides skiers with a comfortable and safe skiing environment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an anti-cold-bridge structure for hanging riding track steel suspenders under an indoor ski field, and relates to the technical field of riding track steel suspenders. The hanging rod comprises a plurality of hanging rod bodies, supporting plates are installed in every two adjacent hanging rod bodies, and the tops of the hanging rod bodies are fixedly connected with flange plates. According to the hanging rod, the first heat insulation pad, the second heat insulation pad, the glue coating layer and the third heat insulation pad are arranged, the occurrence of the cold bridge condition can be effectively reduced through the arrangement of the first heat insulation pad and the second heat insulation pad, and the heat transfer path between the hanging rod body and the supporting plate is blocked; according to the ski field, heat among the multiple supporting plates cannot be mutually transferred, so that the conditions of energy loss and uneven temperature cannot occur, heat of a cold area can be effectively prevented from being transferred to a warm area through gaps through the arranged glue coating, and the heat preservation performance and the operation efficiency of the ski field are greatly improved; and a more comfortable and safer skiing environment is provided for skiers.
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Description

TECHNICAL FIELD

[0001] The application relates to the technical field of horse track steel hanger rods, in particular to a structure for preventing cold bridges of indoor ski field lower hanging horse track steel hanger rods. BACKGROUND

[0002] In recent years, indoor ski fields have been rapidly developed worldwide as a place integrating leisure, entertainment and sports. In order to ensure that skiers can enjoy high-quality skiing experience indoors, a series of complex technical problems need to be solved in the design and construction of indoor ski fields, and the cold bridge prevention technology is a key link.

[0003] The cold bridge phenomenon refers to that the heat preservation layer in the indoor ski field is caused by the good heat conduction performance of certain structures or materials, so that the heat is transferred from the area with higher temperature to the area with lower temperature through the structures or materials, thereby causing energy loss and uneven indoor temperature distribution.

[0004] However, in the daily use of the ski field, the traditional steel hanger rod on the lower hanging horse track is easy to become a cold bridge due to the good heat conduction performance, so that the heat is transferred from the warm area to the cold area through the hanger rod, causing energy loss and uneven temperature, which not only affects the operation efficiency of the ski field and the experience of skiers, but also may cause safety hazards such as condensation and icing inside the structure. Therefore, the application provides a structure for preventing cold bridges of indoor ski field lower hanging horse track steel hanger rods. Practical new type content

[0005] The application aims to solve the problem that the traditional steel hanger rod on the lower hanging horse track is easy to become a cold bridge due to the good heat conduction performance, so that the heat is transferred from the warm area to the cold area through the hanger rod, causing energy loss and uneven temperature.

[0006] In order to achieve the above-mentioned purpose, the application specifically adopts the following technical scheme:

[0007] A structure for preventing cold bridges of indoor ski field lower hanging horse track steel hanger rods, comprising a plurality of hanger rod bodies, a support plate is arranged inside two adjacent hanger rod bodies, a flange plate is fixedly connected to the top of each of the plurality of hanger rod bodies, a connecting rod is symmetrically fixedly connected to one side of each of the two adjacent hanger rod bodies, a heat insulation pad one is fixedly connected to the top of each of the plurality of flange plates, a heat insulation pad two is fixedly connected to the inner walls of the plurality of hanger rod bodies and connecting rods, a heat preservation plate is fixedly connected to the inside of each of the plurality of support plates, a connecting plate one is fixedly connected to one end of each of the plurality of support plates, a connecting plate two is fixedly connected to the other end of each of the plurality of support plates, a connecting assembly is arranged in the inside of the connecting plate one, and a rubber coating is arranged on the outer wall of each of the plurality of support plates.

[0008] By adopting the above technical scheme, when the plurality of suspender bodies are fixed, the plurality of support plates can be taken out and arranged inside the suspender body, and the outer wall of the support plate is attached to the heat insulation pad two on the suspender body. The heat insulation pad two arranged can effectively block the heat transfer path between the suspender body and the support plate. Then, the plurality of connecting plates one and the connecting plate two are connected by the connecting assembly to form a complete horse path. In the use process, the temperature of the plurality of support plates can be effectively maintained by the heat preservation plate arranged. In addition, the rubber coating arranged can maintain its flexibility and sealing property at low temperature, thereby effectively preventing the heat of the cold area from being transferred to the warm area through the gap.

[0009] Further, the connecting assembly comprises two grooves symmetrically arranged on the top of the connecting plate one, two sliding grooves arranged on the two sides of the inner part, two springs fixedly connected in the two sliding grooves, and two limiting blocks slidingly connected in the two sliding grooves. One end of the spring is fixedly connected with one end of the limiting block. The bottom of the connecting plate two is fixedly connected with two insertion blocks, and the two sides of the two insertion blocks are provided with limiting grooves.

[0010] By adopting the above technical scheme, the plurality of connecting plates one and the connecting plate two are connected through the cooperation between the limiting block and the limiting groove, so that the plurality of support plates are quickly spliced and fixed.

[0011] Further, the end of the limiting block away from the spring is arc-shaped, and the shape and size of the limiting groove are consistent with the arc-shaped end of the limiting block.

[0012] By adopting the above technical scheme, the bottom end of the insertion block is in contact with the arc-shaped end of the limiting block, and then the arc-shaped end of the limiting block is extruded and pushed into the sliding groove.

[0013] Further, the opposite surfaces of the connecting plate one and the connecting plate two are fixedly connected with a heat insulation pad three, and the heat insulation pad three is a polyurethane foam plate.

[0014] By adopting the above technical scheme, the heat insulation pad three arranged can prevent the heat from being transferred between the plurality of support plates.

[0015] Further, the heat insulation pad one is made of rock wool board.

[0016] By adopting the above technical scheme, the rock wool board has poor heat conduction performance, which can effectively reduce the occurrence of cold bridge.

[0017] Further, the heat insulation pad two is made of high-strength polyurethane pad.

[0018] By adopting the above technical solution, the heat insulation pad II made of high-strength polyurethane pad has an extremely low thermal conductivity, thereby effectively blocking the heat transfer path between the hanger body and the support plate.

[0019] Furthermore, the insulation board is made of polyisocyanurate foam board.

[0020] By adopting the above technical solution, the insulation board made of polyisocyanate foam board is an organic low-temperature insulation material, which can make the support board have the advantages of low thermal conductivity and strong adaptability.

[0021] Furthermore, the adhesive coating is made of perfluororubber.

[0022] By adopting the above technical solution, the coating made of perfluororubber has excellent low temperature resistance and cold flow resistance, and can maintain good elasticity and sealing performance at ultra-low temperatures.

[0023] In summary, this application includes at least one of the following beneficial effects:

[0024] 1. This application includes a heat insulation pad one, a heat insulation pad two, an adhesive coating, and a heat insulation pad three. The heat insulation pad one and the heat insulation pad two can effectively reduce the occurrence of cold bridges and block the heat transfer path between the hanger body and the support plate. The heat insulation pad three can prevent heat transfer between multiple support plates, thus preventing energy loss and uneven temperature. The adhesive coating can effectively prevent heat from cold areas from being transferred to warm areas through gaps, greatly improving the thermal insulation performance and operational efficiency of the ski resort, and providing skiers with a more comfortable and safe skiing environment.

[0025] 2. In this application, a connecting component is provided, which places a second connecting plate at one end of a support plate on top of a first connecting plate. Then, the connecting component is used to connect multiple first connecting plates to second connecting plates, thereby enabling multiple support plates to be quickly spliced ​​and fixed. Through the installation of multiple hanger bodies and support plates, a complete walkway can be formed. Attached Figure Description

[0026] Figure 1 This is a three-dimensional structural diagram of the main body of the device in this application.

[0027] Figure 2 This is a schematic diagram of the connection structure of the boom body in this application.

[0028] Figure 3 This is a front view of the main body of the device in this application.

[0029] Figure 4 This is a three-dimensional structural diagram of the connecting component in this application.

[0030] Explanation of reference signs:

[0031] 1, boom body; 2, support plate; 3, flange plate; 4, connecting rod; 5, heat insulation pad one; 6, heat insulation pad two; 7, heat preservation plate; 8, connecting plate one; 9, connecting plate two; 10, glue coating; 11, heat insulation pad three; 12, groove; 13, sliding groove; 14, spring; 15, limiting block; 16, plug; 17, limiting groove. DETAILED DESCRIPTION

[0032] The following will be further described in detail in combination with the accompanying Figure 1 The present application is further described in detail.

[0033] The embodiment of the present application discloses a structure for preventing cold bridges of a steel boom of a lower hanging ski trail in an indoor ski field.

[0034] Referring to Figure 1 , Figure 2 and Figure 3 , a structure for preventing cold bridges of a steel boom of a lower hanging ski trail in an indoor ski field, comprising a plurality of boom bodies 1, a support plate 2 is installed inside two adjacent boom bodies 1, a flange plate 3 is fixedly connected to the top of each of the plurality of boom bodies 1, a connecting rod 4 is fixedly and symmetrically connected to one side of each of the two adjacent boom bodies 1, a heat insulation pad one 5 is fixedly connected to the top of each of the plurality of flange plates 3, a heat insulation pad two 6 is fixedly connected to the inner walls of each of the plurality of boom bodies 1 and the connecting rod 4, a heat preservation plate 7 is fixedly connected to the inside of each of the plurality of support plates 2, a connecting plate one 8 is fixedly connected to one end of each of the plurality of support plates 2, a connecting plate two 9 is fixedly connected to the other end of each of the plurality of support plates 2, a connecting assembly is arranged in the inside of the connecting plate one 8, and a glue coating 10 is arranged on the outer wall of each of the plurality of support plates 2.

[0035] In use, first through the plurality of flange 3 to connect and fix the plurality of boom body 1 with the top of the indoor ski field, and the connection between the flange 3 and the ski field top is placed between the heat insulation pad 1 5, through the setting of heat insulation pad 1 5 can effectively reduce the occurrence of cold bridge, prevent the ski field top and flange 3 and boom body 1 direct contact, reduce energy consumption and dew phenomenon, and when the plurality of boom body 1 is fixed, the plurality of support plate 2 is taken out and is arranged inside the boom body 1, and the outer wall of the support plate 2 is attached to the heat insulation pad 2 6 on the boom body 1, and the heat insulation pad 2 6 is arranged to effectively block the heat transfer path between the boom body 1 and the support plate 2, thereby reducing the occurrence of cold bridge, and when the plurality of support plate 2 is arranged in the boom body 1, the connecting plate 2 9 at one end of the support plate 2 is arranged on the top of the connecting plate 1 8, and then the connecting assembly is used to connect the plurality of connecting plate 1 8 and connecting plate 2 9, so that the plurality of support plate 2 is quickly spliced and fixed, and through the installation of the plurality of boom body 1 and support plate 2, a complete horse path can be formed, and in the use process, the heat preservation plate 7 is arranged to effectively maintain the temperature of the plurality of support plate 2, reduce the occurrence of uneven cold and hot conditions, and the adhesive coating 10 is arranged to maintain its flexibility and sealing property at low temperature, thereby effectively preventing the heat of the cold area from being transmitted to the warm area through the gap, so as to meet the strict requirements of the indoor ski field on heat preservation and air tightness, thereby effectively solving the cold bridge problem of the indoor ski field hanging horse path steel boom, improving the heat preservation performance and operation efficiency of the ski field, and providing a more comfortable and safe skiing environment for skiers.

[0036] Referring to Figure 1 and Figure 4 , the connecting assembly comprises two grooves 12 symmetrically arranged on the top of the connecting plate 1 8, two sliding grooves 13 are arranged on the two sides of the two grooves 12, springs 14 are fixedly connected in the two sliding grooves 13, limit blocks 15 are slidably connected in the two sliding grooves 13, one end of the spring 14 is fixedly connected with one end of the limit block 15, plug blocks 16 are fixedly connected on the bottom of the connecting plate 2 9, limit grooves 17 are arranged on the two sides of the two plug blocks 16, the end of the limit block 15 away from the spring 14 is arc-shaped, the shape and size of the limit groove 17 are consistent with the arc-shaped end of the limit block 15, heat insulation pads 3 1 are fixedly connected on the opposite surfaces of the connecting plate 1 8 and the connecting plate 2 9, and the heat insulation pad 3 1 is a polyurethane foam plate.

[0037] In use, first, the thermal insulation pad three 11 is set on the bottom of the connecting plate two 9, then the connecting plate two 9 at one end of the support plate 2 is arranged on the top of the connecting plate one 8, so that the two insertion blocks 16 at the bottom of the connecting plate two 9 are inserted into the inside of the groove 12, at this time, the bottom end of the insertion block 16 is in contact with the arc-shaped end of the limiting block 15, then the arc-shaped end of the limiting block 15 is extruded and pushed into the inside of the sliding groove 13, and when the insertion block 16 is completely inserted into the inside of the groove 12, at this time, the sliding groove 13 is in the same horizontal line with the limiting groove 17, therefore, the rebound of the spring 14 pushes the limiting block 15 into the inside of the limiting groove 17, through the mutual cooperation between the limiting block 15 and the limiting groove 17, the plurality of connecting plate one 8 and the connecting plate two 9 are connected, so that the plurality of support plates 2 are quickly spliced and fixed.

[0038] With reference to Figure 1 and Figure 3 , the thermal insulation pad one 5 is made of rock wool board.

[0039] In use, the rock wool board has poor heat conduction performance, which can effectively reduce the occurrence of cold bridge, prevent the top of the ski field from directly contacting the flange plate 3 and the boom body 1, and reduce energy consumption and condensation phenomenon.

[0040] With reference to Figure 1 and Figure 3 , the thermal insulation pad two 6 is made of high-strength polyurethane pad plate.

[0041] In use, the thermal insulation pad two 6 made of high-strength polyurethane pad plate has very low thermal conductivity, which effectively blocks the heat transfer path between the boom body 1 and the support plate 2, thereby reducing the occurrence of cold bridge phenomenon.

[0042] With reference to Figure 1 and Figure 3 , the thermal insulation board 7 is made of polyisocyanate foam board.

[0043] In use, the thermal insulation board 7 made of polyisocyanate foam board is an organic low-temperature thermal insulation material, which can make the support plate 2 have the advantages of small thermal conductivity and strong adaptability, can effectively maintain the temperature of the plurality of support plates 2, and reduce the occurrence of uneven cold and hot conditions.

[0044] With reference to Figure 1 and Figure 3 , the glue coating layer 10 is made of perfluorinated rubber.

[0045] In use, the glue coating layer 10 made of perfluorinated rubber has excellent low-temperature resistance and cold flow resistance, which can maintain good elasticity and sealing performance at ultra-low temperature, thereby effectively preventing the heat of the cold area from being transmitted to the warm area through the gap, to meet the strict requirements of indoor ski fields on thermal insulation and air tightness.

[0046] The implementation principle of the structure for preventing cold bridges of the steel hanger rod of the indoor ski field lower hanging ski trail is as follows: in use, first, the plurality of hanger rod bodies 1 are connected and fixed with the top of the indoor ski field through the plurality of flanges 3, and the heat insulation pad one 5 is placed at the connection between the flange 3 and the top of the ski field, the rock wool board has poor heat conduction performance, can effectively reduce the occurrence of cold bridge, prevent the direct contact between the top of the ski field and the flange 3 and the hanger rod body 1, reduce energy consumption and condensation phenomenon, prevent the direct contact between the top of the ski field and the flange 3 and the hanger rod body 1, reduce energy consumption and condensation phenomenon, when the plurality of hanger rod bodies 1 are fixed, the plurality of support plates 2 can be taken out and arranged inside the hanger rod body 1, and the outer wall of the support plate 2 is attached to the heat insulation pad two 6 on the hanger rod body 1, the heat insulation pad two 6 made of high-strength polyurethane pad has extremely low thermal conductivity, thereby effectively blocking the heat transfer path between the hanger rod body 1 and the support plate 2, thereby reducing the occurrence of cold bridge, when the plurality of support plates 2 are arranged inside the hanger rod body 1, the heat insulation pad three 11 can be sleeved on the bottom of the connecting plate two 9, then the connecting plate two 9 at one end of the support plate 2 is arranged on the top of the connecting plate one 8, the two plug blocks 16 at the bottom of the connecting plate two 9 are inserted into the recess 12, at this time, the bottom end of the plug block 16 is in contact with the arc-shaped end of the limiting block 15, then the arc-shaped end of the limiting block 15 is extruded and pushed into the sliding groove 13, when the plug block 16 is completely inserted into the recess 12, at this time, the sliding groove 13 is in the same horizontal line with the limiting groove 17, therefore, the rebound of the spring 14 pushes the limiting block 15 into the limiting groove 17, through the cooperation between the limiting block 15 and the limiting groove 17, the plurality of connecting plate one 8 and the connecting plate two 9 are connected, thereby quickly splicing and fixing the plurality of support plates 2, through the installation of the plurality of hanger rod bodies 1 and the support plates 2, a complete ski trail can be formed, in use, the heat preservation plate 7 made of polyisocyanate foam board is an organic low-temperature heat insulation material, can make the support plate 2 have small thermal conductivity and strong adaptability, can effectively maintain the temperature of the plurality of support plates 2, reduce the uneven temperature, in addition, the glue coating 10 made of perfluorinated rubber has excellent low-temperature resistance and cold flow resistance, can maintain good elasticity and sealing performance at ultra-low temperature, thereby effectively preventing the heat of the cold area from being transferred to the warm area through the gap, to meet the strict requirements of the indoor ski field on heat preservation and air tightness, thereby effectively solving the cold bridge problem of the steel hanger rod of the indoor ski field lower hanging ski trail, improving the heat preservation performance and operation efficiency of the ski field, and providing a more comfortable and safe skiing environment for skiers.

Claims

1. A structure for preventing cold bridges in the steel hanger rods of the lower hanging ski slope of an indoor ski slope, comprising a plurality of hanger rod bodies (1), characterized in that: Two adjacent said suspender body (1) inside mounting support plate (2), a plurality of said suspender body (1) top fixedly connected with flange (3), two adjacent said suspender body (1) one side symmetry fixedly connected with connecting rod (4), a plurality of said flange (3) top fixedly connected with heat insulation pad one (5), a plurality of said suspender body (1) and connecting rod (4) inner wall fixedly connected with heat insulation pad two (6), a plurality of said support plate (2) inside fixedly connected with heat preservation plate (7), a plurality of said support plate (2) one end fixedly connected with connecting plate one (8), a plurality of said support plate (2) the other end fixedly connected with connecting plate two (9), the inside of said connecting plate one (8) is provided with connecting assembly, a plurality of said support plate (2) outer wall is provided with rubber coating (10).

2. The structure for preventing cold bridge of the steel hanger pole of the indoor ski slope lower hanging ski trail according to claim 1, characterized in that: The connecting assembly includes two recesses (12) symmetrically opened at the top of the connecting plate one (8), two said inside two sides are provided with a sliding slot (13), two said sliding slot (13) are fixedly connected with spring (14) in the inside, two said sliding slot (13) are slidably connected with limit block (15) in the inside, one end of the spring (14) is fixedly connected with one end of the limit block (15), the bottom of the connecting plate two (9) is fixedly connected with plug (16) symmetrically, two said plug (16) two sides are provided with limit slot (17).

3. The structure for preventing cold bridge of the steel hanger pole of the indoor ski slope lower hanging ski trail according to claim 2, characterized in that: The end of the limit block (15) away from the spring (14) is arc-shaped, the shape and size of the limit slot (17) are consistent with the arc-shaped end of the limit block (15).

4. The structure for preventing cold bridge of the steel hanger pole of the indoor ski slope lower hanging ski trail according to claim 1, characterized in that: The opposite surfaces of the connecting plate one (8) and the connecting plate two (9) are fixedly connected with heat insulation pad three (11), and the heat insulation pad three (11) is a polyurethane foam board.

5. The structure for preventing cold bridge of the steel hanger pole of the indoor ski slope lower hanging ski trail according to claim 1, characterized in that: The heat insulation pad one (5) is made of rock wool board.

6. The structure for preventing cold bridge of the steel hanger pole of the indoor ski slope lower hanging ski trail according to claim 1, characterized in that: The heat insulation pad two (6) is made of high-strength polyurethane pad.

7. The structure for preventing cold bridge of the steel hanger pole of the indoor ski slope lower hanging ski trail according to claim 1, characterized in that: The heat preservation plate (7) is made of polyisocyanate foam board.

8. The structure for preventing cold bridge of the steel hanger pole of the indoor ski slope lower hanging ski trail according to claim 1, characterized in that: The rubber coating (10) is made of perfluorinated rubber.