Supporting structure for house building engineering

By designing a support structure with adjustable length, the problem of the length of the support rod cannot be adjusted in the prior art is solved, and the applicability and stability to meet different construction needs are achieved.

CN222909562UActive Publication Date: 2025-05-27SICHUAN HONGTENG CONSTRUCT GRP CO LTD
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Patent Information

Application Number
CN202420816832.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-04-19
Publication Date
2025-05-27
Estimated Expiration
2034-04-19

AI Technical Summary

Technical Problem

In the prior art, the length of the support rod cannot be adjusted, which limits its applicability, increases installation difficulty, reduces adaptability, and may lead to waste of resources.

Method used

A support structure including a fixing part and an adjusting part is designed. The adjusting part consists of an inner pipe and an outer pipe. The inner pipe can be slid in the outer pipe. The overall length of the device is adjusted by adjusting the protruding length of the inner pipe, and the adjustment hole and support rod are provided on the outer pipe, and the support rod is fixed by clamping to ensure the stability of the inner pipe.

Benefits of technology

The adjustable length of the support structure is realized, adapted to the construction needs of different heights and shapes, improved the applicability and efficiency of construction, and ensured the stability and reliability of the structure.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model discloses a supporting structure used for house building engineering in the technical field of building engineering construction, which comprises a fixing part and an adjusting part, the end part of the fixing part is detachably connected with the end part of the adjusting part, the adjusting part comprises an outer pipe, an inner pipe is connected inside the outer pipe in a sliding mode, and the inner pipe is connected with the outer pipe in a sliding mode. And the length of the inner pipe extending out of the outer pipe is adjustable. According to the supporting structure, the overall length of the device can be adjusted by adjusting the extending length of the inner pipe, so that the supporting structure can adapt to various different constructional engineering and is convenient to use, and the construction time is saved.
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Description

Technical Field

[0001] The utility model relates to the technical field of construction engineering, and particularly to a support structure for housing construction engineering. Background Technique

[0002] In housing construction engineering, support structures play a crucial role. They are used to support the weight of the building during construction to ensure construction safety and the stability of the building structure. In traditional support structures, the support rods often have a fixed length, making it difficult to adapt to the construction requirements of different heights and shapes. It is necessary to adjust the height of the support structure according to the actual situation, which has a certain impact on the construction quality and progress.

[0003] In summary, designing a support structure with adjustable length is of great significance for construction engineering. Content of the Utility Model

[0004] The purpose of the utility model is to provide a support structure for housing construction engineering to solve the problem that the length of the support rod in the prior art cannot be adjusted.

[0005] Most of the existing support rods cannot adjust their lengths, and they are only suitable for specific environments or requirements, which limits their applicability, increases the installation difficulty, reduces the adaptability, and may lead to waste of resources.

[0006] The purpose of the utility model is mainly achieved through the following technical solutions:

[0007] A support structure for housing construction engineering includes a fixed part and an adjusting part, and the end of the fixed part is detachably connected to the end of the adjusting part;

[0008] The adjusting part includes an outer tube, and an inner tube is slidably connected inside the outer tube, and the length of the inner tube extending out of the outer tube is adjustable.

[0009] The utility model provides a support structure with a fixed part and an adjusting part. The length of the fixed part is fixed with the structure, and the stability is better. The detachable connection is used to adjust the length of the adjusting part to adapt to housing buildings with different length requirements. The adjusting part includes an inner tube and an outer tube. The inner tube is slidably connected inside the outer tube, and the length of the inner tube extending out of the outer tube can be adjusted. By adjusting the extending length of the inner tube, the overall length of the device can be adjusted, so that the support structure described in this application can adapt to a variety of different construction projects, is convenient to use, and saves construction time.

[0010] Furthermore, a plurality of adjusting holes are provided on the outer tube, the adjusting holes are evenly distributed longitudinally along the tube body of the outer tube, and a support rod that can move radially along the outer tube is provided in the adjusting holes, and the support rod is used to limit the inner tube.

[0011] As a support structure used in building construction projects, the present utility model needs to have good stability, so that this application can achieve a good support effect and ensure that the supported building structure has standard structure and strength. The present utility model is provided with a number of adjustment holes on its appearance, and a support rod is arranged in the holes. The support rod supports and limits the inner tube, ensuring that the extended length of the inner tube will not slide after adjustment, and ensuring the stability and reliability of this application during use.

[0012] The inner and outer tubes are slidably connected, and the extended length of the inner tube relative to the outer tube can be adjusted arbitrarily. Then, the support rod passes through the adjustment hole and presses against the inner tube to ensure that the relative extended length of the inner tube and the outer tube can be adjusted flexibly to be suitable for the length or height of each building structure.

[0013] A number of the adjustment holes are evenly distributed longitudinally along the tube body of the outer tube, so that the support rod can support the inner tube at multiple points, strengthening the stability of this application during use.

[0014] The adjustment hole is provided with a support rod that can move radially along the outer tube. During the process of adjusting the position of the inner tube, the support rod moves radially outward along the outer tube diameter without blocking the movement of the inner tube. After the extended length of the inner tube is determined, the support rod moves radially towards the center along the outer tube to support the inner tube on the tube body and bottom end of the inner tube, preventing the inner tube from sliding relative to the outer tube and ensuring the stability of this application during use.

[0015] Furthermore, the axis of the support rod is parallel to the end face of the outer tube, and at least two opposite support rods are included on the same plane parallel to the end face of the outer tube.

[0016] On the same plane, the axis of the support rod is parallel to the end face of the outer tube, which is used to support the inner tube and make the stability of the inner tube better. At least two opposite support rods are included on the same plane parallel to the end face of the outer tube, so that the inner tube is more evenly stressed and not easily deformed or offset. At the same time, the number of support points is increased, the support force is strengthened, and the stability is improved.

[0017] Furthermore, the rod body of the support rod passes through the adjustment hole, one end of the support rod is located inside the outer tube, the other end of the support rod is located outside the outer tube, and the circumradius of the end of the support rod is greater than the radius of the adjustment hole.

[0018] The support rod is inserted into the adjustment hole, the circumradii of the ends of both ends of the support rod are greater than the radius of the adjustment hole, and both ends of the support rod are respectively located on both sides of the outer tube, so that the support rod is fixed on the outer tube. During use, the specific length and position are adjusted according to the specific building structure, and the structure is unified, which is convenient for storage and management.

[0019] Furthermore, the support rod is located at the bottom of the inner tube, a clamp is provided on the outside of the support rod, the locked clamp fits tightly against the outer end of the support rod in the plane, and the shaft of the support rod is inserted into the outer tube.

[0020] In order to further enhance the stability of the structure of the present application, a support rod is arranged at the bottom of the support rod, so that the support rod provides an upward supporting force to the inner tube at the bottom of the inner tube. Compared with the friction force of the support rod on the surface of the inner tube to prevent the inner tube from falling, the supporting force from the bottom is more stable and is not easily affected by factors such as material and pressure.

[0021] The support rod is supported by the wall of the adjustment hole and the pressure and gravity of the inner tube in the longitudinal direction, and there is no external force in the horizontal direction. However, the shaft of the support rod is relatively long. When the shaft of the support rod is completely located in the outer tube, the inner tube is subjected to strong pressure, which may cause the support rod to deviate from the adjustment hole as the center, causing the inner tube to slide slightly, and thus failing to achieve a good support effect. In addition, the support rod on the side wall of the inner tube may move outward during the process of the inner tube being compressed and expanding horizontally, failing to exert a good restraining effect on the inner tube. The present application sets a clamp at the outer end of the support rod, and uses the clamp to prevent the support rod from shifting, thereby ensuring the stability of the structure of the present application, so that the stability of the present application is guaranteed when the length is adjustable, thereby improving the reliability of the present application when in use.

[0022] Furthermore, the fixing portion includes a plurality of detachably connected fixing rods.

[0023] The present application includes a number of fixing rods, and the fixing rods are all detachably connected to each other, so that the length of the present application can be preliminarily adjusted according to the number of fixing rods, and then the length of the adjustment part can be adjusted. The two cooperate to make the present application applicable to support devices with various length requirements. When the length of the support device is long, it is not necessary to set all of them as adjustment parts to prevent too many adjustment holes on the outer tube from affecting the overall bearing strength of the device. When the length of the structure to be supported is short, only the adjustment rod is used, and the inner tube is mostly extended into the inner part of the outer rod to form a double-layer thickened structure with the outer rod. The overall bearing strength is also guaranteed to a certain extent. When in use, it has high safety and good stability.

[0024] Furthermore, the fixing rod includes an outer layer and an inner layer, a reinforcement layer is provided between the outer layer and the inner layer, the reinforcement layer is coaxial with the outer layer and the inner layer, the outer side of the reinforcement layer is fixedly connected to the outer layer, and the inner side of the reinforcement layer is fixedly connected to the inner layer.

[0025] In order to enhance the stability of the fixing rod, a reinforcement layer is provided inside the outer layer of the fixing rod, and a thickened inner layer is provided inside the reinforcement layer, so that the inner layer, the reinforcement layer and the outer layer are integrated as a whole, and the thickness of the fixing rod is enhanced to ensure that the fixing rod is not easily deformed even when the length is long, and has good bearing capacity, which is sufficient to support most building structures.

[0026] In summary, compared with the prior art, the utility model has the following beneficial effects:

[0027] 1. The utility model includes a number of fixedly connected fixing rods and adjusting parts, and adopts a modular structure, which is convenient to adjust the length of the application according to the actual situation, and increases the applicability and reliability of the application during use.

[0028] 2. A number of adjusting holes are provided on the outer tube of the utility model. A support rod is arranged in the adjusting hole, and a clamp is arranged outside the support rod. Both the fixing rod and the adjusting part are of multi-layer structures, which strengthen the stability and load-bearing capacity of the utility model, making the structure of the application stable and reliable. BRIEF DESCRIPTION OF THE DRAWINGS

[0029] The drawings described herein are used to provide a further understanding of the embodiments of the utility model, and constitute a part of this application, but do not constitute a limitation to the embodiments of the utility model. In the drawings:

[0030] Figure 1 is a perspective view of the overall structure of this application;

[0031] Figure 2 is an exploded view of the adjusting part of this application;

[0032] Figure 3 is a combined schematic diagram of the support rod and the outer tube of this application;

[0033] Figure 4 is a sectional view of the fixing part of this application;

[0034] The names corresponding to the reference numerals are: 1. Adjusting part; 11. Inner tube; 12. Outer tube; 13. Adjusting hole; 14. Support rod; 15. Clamp; 2. Fixing part; 21. Outer layer; 22. Reinforcing layer; 23. Inner layer. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0035] In order to make the purpose, technical solutions and advantages of the utility model clearer and more understandable, the utility model will be further described in detail below in conjunction with the embodiments and the drawings. The illustrative embodiments and descriptions thereof of the utility model are only used to explain the utility model and do not constitute a limitation to the utility model.

[0036] Embodiment:

[0037] As Figure 1 Figure 4 shown, this embodiment relates to a support structure used in a housing construction project in the field of construction engineering construction technology, including a fixing part 2 and an adjusting part 1. The end of the fixing part 2 is detachably connected to the end of the adjusting part 1;

[0038] The adjusting part 1 includes an outer tube 12, and an inner tube 11 is slidably connected inside the outer tube 12. The length of the inner tube 11 extending out of the outer tube 12 is adjustable.

[0039] Most of the existing support rods 14 cannot adjust their lengths, and are only suitable for specific environments or requirements, which limits their applicability, increases the installation difficulty, reduces the adaptability, and may lead to waste of resources.

[0040] The present utility model provides a support structure with a fixing part 2 and an adjusting part 1. The length of the fixing part 2 is fixed with the structure, and the stability is better. The adjusting part 1 with an adjustable length is detachably connected to adapt to the housing buildings with different length requirements. The adjusting part 1 includes an inner tube 11 and an outer tube 12. The inner tube 11 is slidably connected inside the outer tube 12. The length of the inner tube 11 extending out of the outer tube 12 can be adjusted. By adjusting the extending length of the inner tube 11, the overall length of the device can be adjusted, so that the support structure described in the present application can adapt to a variety of different construction projects, is convenient to use, and saves construction time.

[0041] Furthermore, a plurality of adjusting holes 13 are provided on the outer tube 12. The adjusting holes 13 are uniformly distributed longitudinally along the tube body of the outer tube 12. A support rod 14 that can move radially along the outer tube 12 is provided in the adjusting holes 13. The support rod 14 is used to limit the inner tube.

[0042] As a support structure used in housing construction projects, the present utility model needs to have good stability, so that the present application can achieve a good support effect and ensure that the supported building structure has a standard structure and strength. The present utility model is provided with a plurality of adjusting holes 13 on the appearance, and a support rod 14 is arranged in the holes. The inner tube 11 is supported and limited by the support rod 14 to ensure that the extending length of the inner tube 11 will not slide after adjustment, and to ensure the stability and reliability of the present application during use.

[0043] The inner and outer tubes 12 are slidably connected, and the extending length of the inner tube 11 relative to the outer tube 12 can be adjusted arbitrarily. Then, the support rod 14 is passed through the adjusting hole 13 to press against the inner tube 11, ensuring that the relative extending length of the inner tube 11 and the outer tube 12 can be flexibly adjusted to adapt to the length or height of each building structure.

[0044] A plurality of the adjusting holes 13 are uniformly distributed longitudinally along the tube body of the outer tube 12, so that the support rod 14 can support the inner tube 11 at multiple points, strengthening the stability of the present application during use.

[0045] A support rod 14 that can move radially along the outer tube 12 is provided in the adjustment hole 13. During the process of adjusting the position of the inner tube 11, the support rod 14 moves radially outward along the outer tube 12 without blocking the movement of the inner tube 11. After the insertion length of the inner tube 11 is determined, the support rod 14 moves radially toward the center along the outer tube 12 to support the inner tube 11 at the tube body and bottom end of the inner tube 11, preventing the inner tube 11 from sliding relative to the outer tube 12 and ensuring the stability of the present application during use.

[0046] Furthermore, the axis of the support rod 14 is parallel to the end face of the outer tube 12, and at least two opposite support rods 14 are included in the same plane parallel to the end face of the outer tube 12.

[0047] In the same plane, the axis of the support rod 14 is parallel to the end face of the outer tube 12 for supporting the inner tube 11 to make the inner tube 11 more stable. At least two opposite support rods 14 are included in the same plane parallel to the end face of the outer tube, so that the inner tube 11 is more evenly stressed and not easily deformed or offset. At the same time, the number of support points is increased, the support force is strengthened, and the stability is improved.

[0048] As an implementable manner of the above solution, the two opposite support rods 14 are an integral support rod 14, which will not fall over and has a more stable support effect.

[0049] As an implementable manner of the above solution, there are three adjustment holes 13 on the same horizontal plane of the outer tube 12, and the connection line of the centers of the three adjustment holes 13 is an equilateral triangle, so that the three support rods 14 are evenly distributed at the bottom of the inner tube 11 and the overall structure is more stable.

[0050] Furthermore, the rod body of the support rod 14 passes through the adjustment hole 13, one end of the support rod 14 is located inside the outer tube 12, the other end of the support rod 14 is located outside the outer tube 12, and the circumradius of the end of the support rod 14 is greater than the radius of the adjustment hole 13.

[0051] The support rod 14 is inserted into the adjustment hole 13, the circumradii of the ends of the two ends of the support rod 14 are greater than the radius of the adjustment hole 13, and the two ends of the support rod 14 are respectively located on both sides of the outer tube 12, so that the support rod 14 is fixed on the outer tube 12. During use, the specific length and position are adjusted according to the specific building structure, and the structure is unified, which is convenient for storage and management.

[0052] Furthermore, the support rod 14 is located at the bottom of the inner tube 11, a clamp 15 is provided outside the support rod 14, and the tightened clamp 15 closely fits the outer end of the support rod 14 in this plane, and the rod body of the support rod 14 is inserted into the outer tube 12.

[0053] To further enhance the stability of the structure of this application, a support rod 14 is provided at the bottom of the support rod 14, so that the support rod 14 provides an upward support force to the inner tube 11 at the bottom of the inner tube 11. Compared with the frictional force of the support rod 14 on the surface of the inner tube to prevent the inner tube from falling, the support force from the bottom is more stable and is not easily affected by factors such as material and pressure.

[0054] The support rod 14 is supported by the hole wall of the adjustment hole 13, and is pressured and gravitated by the inner tube in the longitudinal direction, and there is no external force in the horizontal direction. However, the rod body of the support rod 14 is relatively long. When the tube body of the support rod 14 is completely located inside the outer tube 12, the inner tube 11 is under strong pressure, which may cause the support rod 14 to shift around the adjustment hole 13, resulting in a slight downward slide of the inner tube 11, thus failing to achieve a good support effect. Moreover, the support rod 14 on the side wall of the inner tube 11 may move outward during the process of the inner tube 11 being pressured and expanding horizontally outward, and cannot play a good restraining effect on the inner tube 11. This application is provided with a clamp 15 at the outer end of the support rod 14 to prevent the displacement of the support rod 14 by using the clamp 15, ensuring the stability of the structure of this application, so that the stability of this application is guaranteed while having an adjustable length, thereby improving the reliability during the use of this application.

[0055] Furthermore, the fixing part 2 includes a number of fixedly connected fixing rods.

[0056] This application includes a number of fixing rods, and the fixing rods are all detachably connected to each other, so that the length of this application can be initially adjusted according to the number of fixing rods, and then the length of the adjusting part 1 is adjusted. The two cooperate to make this application applicable to support devices with various length requirements. When the length of the support device is relatively long, it is not necessary to set all as the adjusting part 1 to prevent excessive adjustment holes 13 on the outer tube 12 from affecting the overall load-bearing strength of the device. When the length of the structure to be supported is relatively short, only the adjusting rod is used, and the inner tube extends more into the outer rod, forming a double-layer thickened structure with the outer rod, and the overall load-bearing strength is also guaranteed to a certain extent. During use, the safety factor is high and the stability is good.

[0057] As an implementable solution of the above scheme, the end of the fixing part 2 is threadedly connected, snap-connected, or pin-connected to the end of the adjusting part 1.

[0058] Furthermore, the fixing rod includes an outer layer 21 and an inner layer 23, and a reinforcing layer 22 is provided between the outer layer 21 and the inner layer 23. The reinforcing layer 22 is coaxial with the outer layer 21 and the inner layer 23. The outer side of the reinforcing layer 22 is fixedly connected to the outer layer 21, and the inner side of the reinforcing layer 22 is fixedly connected to the inner layer 23.

[0059] To enhance the stability of the fixing rod, there is a reinforcement layer 22 inside the outer layer 21 of the fixing rod, and a thickened inner layer 23 inside the reinforcement layer 22, making the inner layer 23, the reinforcement layer 22 and the outer layer 21 an integral whole, strengthening the thickness of the fixing rod, ensuring that the fixing rod is not easily deformed even when its length is relatively long, having good load-bearing capacity and being sufficient to support most building structures.

[0060] As an implementable way of the above solution, the cross-section of the reinforcement layer 22 is an annular structure composed of several identical triangles.

[0061] As an implementable way of the above solution, the cross-section of the reinforcement layer 22 is an annular structure composed of several identical cross structures connected end to end.

[0062] As an implementable way of the above solution, the reinforcement layer 22 is a frame structure.

[0063] As a preferred implementation of the present application:

[0064] This embodiment includes an adjustment part 1 and a fixing part 2 detachably connected below the adjustment part 1;

[0065] The adjustment part 1 includes an inner tube 11 and an outer tube 12. The inner tube 11 is located inside the outer tube 12 and is slidably connected to the outer tube 12. A number of adjustment holes 13 are provided on the body of the outer tube 12. The a number of adjustment holes 13 are evenly distributed longitudinally along the body of the outer tube 12 and evenly distributed circumferentially relative to the body of the outer tube 12. In the same plane, there are three adjustment holes 13 on the body of the outer tube 12. A support rod 14 passes through each adjustment hole 13. Both ends of the support rod 14 cannot pass through the adjustment hole 13. The bottom of the inner tube 11 contacts the rod body of the support rod 14. A clamp 15 is provided on the outer periphery of the support rod 14;

[0066] The fixing part 2 includes a number of fixing rods connected by screw threads. The fixing rod includes an outer layer 21, an inner layer 23, and a reinforcement layer 22 connecting the inner and outer layers 21.

[0067] When the above preferred embodiment is specifically used, first assemble the fixing part 2 according to the structure to be supported, then assemble the adjustment part 1 on the fixing part 2, adjust the extending length of the inner tube 11 relative to the outer tube 12 according to the actual length, then insert three support rods 14 into the bottom of the inner tube 11, and clamp the outer tube 12 and the support rod 14 with a clamp 15 on the outside of the support rod 14 to complete the length adjustment of the present invention.

[0068] The specific embodiments described above further elaborate on the purpose, technical solutions, and beneficial effects of the present utility model. It should be understood that the above description is only the specific embodiments of the present utility model and is not used to limit the protection scope of the present utility model. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present utility model shall be included within the protection scope of the present utility model.

Claims

1. A supporting structure for use in a housing construction project, comprising a fixing portion (2), characterized in that: It also comprises an adjusting portion (1), and an end portion of the fixing portion (2) is detachably connected to an end portion of the adjusting portion (1); The adjusting portion (1) comprises an outer tube (12), the interior of the outer tube (12) is slidably connected to an inner tube (11), and the length of the inner tube (11) extending out of the outer tube (12) is adjustable.

2. A supporting structure for a housing construction project as claimed in claim 1, characterized in that: The outer tube (12) is provided with a plurality of adjustment holes (13), the adjustment holes (13) being evenly distributed along the longitudinal direction of the tube body of the outer tube (12), and a support rod (14) being movable radially along the outer tube (12) being provided in the adjustment holes (13), the support rod (14) being used to limit the position of the inner tube (11).

3. A supporting structure for a housing construction project as claimed in claim 2, characterized in that: The axis of the support rod (14) is parallel to the end surface of the outer tube (12), and at least two opposing support rods (14) are included on the same plane parallel to the end surface of the outer tube (12).

4. The supporting structure for housing construction as claimed in claim 2, characterized in that: The rod body of the support rod (14) passes through the adjustment hole (13), one end of the support rod (14) is located on the inner side of the outer tube (12), and the other end of the support rod (14) is located on the outer side of the outer tube (12), and the radius of the circumscribed circle of the end of the support rod (14) is greater than the radius of the adjustment hole (13).

5. A supporting structure for housing construction as claimed in claim 4, characterized in that: The support rod (14) is located at the bottom of the inner tube (11), and a clamp (15) is provided on the outside of the support rod (14). The locked clamp (15) fits tightly against the outer end of the support rod (14), and the rod body of the support rod (14) is inserted into the outer tube (12).

6. The supporting structure for housing construction according to claim 1, characterized in that: The fixing part (2) comprises a plurality of detachably connected fixing rods.

7. A supporting structure for a housing construction project as claimed in claim 6, characterized in that: The fixing rod comprises an outer layer (21) and an inner layer (23); a reinforcement layer (22) is provided between the outer layer (21) and the inner layer (23); the reinforcement layer (22) is coaxial with the outer layer (21) and the inner layer (23); the outer side of the reinforcement layer (22) is fixedly connected to the outer layer (21); and the inner side of the reinforcement layer (22) is fixedly connected to the inner layer (23).