Adjustable supporting device suitable for building pipeline auxiliary construction
By designing an adjustable support device, the lifting mechanism and adjustment mechanism are used to achieve accurate slope control and limit fixation of the pipeline, the problems of mechanical damage, corrosion, foundation changes, and maintenance difficulties in traditional pipeline laying methods are solved, and construction efficiency and safety are improved.
Patent Information
- Application Number
- CN202422132642.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-30
- Publication Date
- 2025-05-30
- Estimated Expiration
- 2034-08-30
AI Technical Summary
In construction, traditional pipeline laying methods have the risks of mechanical damage, corrosion problems, impact of foundation changes, maintenance difficulties, and structural strength and ground pressure distribution problems.
An adjustable support device suitable for auxiliary construction of building pipelines is designed, using a hoisting mechanism and an adjustment mechanism to achieve accurate slope control and limit fixation of the pipeline through hydraulic devices to prevent the pipeline from falling or sliding.
The device improves construction efficiency, reduces costs, achieves safe and reliable support and precise adjustment of pipelines, and avoids various technical defects in traditional methods.
Smart Images

Figure CN222925074U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to a pipeline support device, specifically an adjustable support device suitable for auxiliary construction of building pipelines, mainly used for supporting pipelines during construction and installation and facilitating adjustment of pipelines, especially for auxiliary support during construction such as butt joint, support and elevation adjustment of large pipelines, belonging to the technical field of auxiliary construction of building engineering pipelines. Background Technique
[0002] Generally speaking, in practical applications, large-scale exposed pipelines are directly laid on the ground or placed on piers. When using the traditional method of placing on piers, the elevation control of piers is particularly important for non-pressure pipelines. For example, when directly laying large-scale exposed pipelines on the ground as mentioned above, there are the following technical problems:
[0003] First, the risk of mechanical damage: The pipeline is directly exposed on the ground and is easily damaged by mechanical equipment, vehicles or accidental collisions.
[0004] Second, the corrosion problem: The pipeline is exposed to moisture and environmental elements, which may cause corrosion, especially if there are no sufficient protection measures or coatings.
[0005] Third, the influence of foundation movement: The pipeline directly laid on the ground is more vulnerable to soil movement, settlement or erosion, which may affect its stability and integrity.
[0006] Fourth, the difficulty of maintenance and repair: When the pipeline is directly laid on the ground, the difficulty of inspection, maintenance and repair may increase, especially if the pipeline is installed on a bracket without a well-designed convenient access, the repair is more difficult.
[0007] If the traditional method of using piers is adopted, the technical defects in the use process are:
[0008] First, the limitation of structural strength: The design of the pier must be strong enough to support the weight of the pipeline and the fluid inside the pipeline. If the pier is not properly designed or is subjected to external impact, it may cause damage or failure of the pier.
[0009] Second, the difficulty of maintenance: Pipeline piers are often arranged in relatively inaccessible places, which makes daily maintenance and repair work more difficult and time-consuming.
[0010] Third, the ground pressure distribution problem: The pier may exert concentrated pressure on the ground, especially on soft or unstable foundations, which may cause foundation settlement or deformation problems. In short, it is often very inconvenient.
[0011] Therefore, the key to solving the above technical problems lies in developing a pipe adjustable support device with strong practicability, easy adjustment and high flexibility. Summary of the Invention
[0012] In view of the many defects and deficiencies in the above-mentioned background technology, the present utility model has made improvements and innovations. The purpose is to provide a device with flexible design and simple structure. By using the device of the present utility model, tooling, lightweight, sizing and standardization are realized for the auxiliary construction of large-scale surface-mounted pipelines. At the same time, for non-pressure pipelines, the accurate control of the slope can be achieved through the functions of this device. It solves the problems such as difficult butt joint installation and low efficiency of large-scale surface-mounted pipelines, and difficult slope control of non-pressure pipelines. Compared with traditional construction, it can greatly improve the construction efficiency and reduce costs, and can be quickly applied under any conditions. For pipelines that need to adjust the slope, the accurate adjustment and control of the slope can be achieved through the adjustment of the hydraulic device. At the same time, it can relatively stably and reliably limit and fix the pipeline to prevent the risk of the pipeline falling or slipping, so as to achieve safety and reliability during use.
[0013] To solve the above problems and achieve the above-mentioned invention purpose, an adjustable support device for building pipeline auxiliary construction of the present utility model is realized by adopting the following design structure and the following technical solutions:
[0014] As an improvement of an adjustable support device for building pipeline auxiliary construction of the present utility model,
[0015] It further includes:
[0016] An adjustment mechanism (2), which is rotatably connected above the jacking mechanism (1) and is used to adjust the inclination of the support seat (3);
[0017] A support seat (3), the middle part of the lower end of the support seat (3) is connected to the top of the adjustment mechanism (2);
[0018] A fixing mechanism (4), which is connected to the upper end of the support seat (3) through several connecting pieces (5) and is used to support and limit and fix the pipeline (6) to prevent the pipeline (6) from slipping or falling.
[0019] As an improvement of the above of the present utility model, the adjustment mechanism (2) includes:
[0020] A connecting plate (21), the lower end of the connecting plate (21) is connected to the upper end of the jacking mechanism (1);
[0021] A first hinge seat (22), the lower end of the first hinge seat (22) is connected to the upper end of the connecting plate (21);
[0022] The second hinge seat (23), the upper end of the second hinge seat (23) is connected to the lower end of the support seat (3);
[0023] The connecting block (24), one end of the connecting block (23) is rotatably connected to the first hinge seat (22), and the other end of the connecting block (23) is rotatably connected to the second hinge seat (23).
[0024] As a further improvement of the above-mentioned utility model, both the first hinge seat (22) and the second hinge seat (23) are integrally in a "U" - shaped structure. A first connecting shaft and a second connecting shaft are respectively connected to the openings of the first hinge seat (22) and the second hinge seat (23), and the first connecting shaft and the second connecting shaft are arranged in a relative "cross" shape;
[0025] The connecting block (24) is integrally in a cuboid structure. A first through - hole connected to the first connecting shaft is formed through one pair of opposite end faces in the length direction of the connecting block (24), and a second through - hole connected to the first connecting shaft is formed through the other pair of opposite end faces in the length direction of the connecting block (24).
[0026] As a further improvement of the above - mentioned utility model, the support seat (3) includes:
[0027] The support bottom plate (31), the support bottom plate (31) is integrally a square plate - like member;
[0028] The first support plate (32), the first support plate (32) is arranged along the length direction of the support bottom plate (31), and the first support plate (32) is connected to the upper surface of the support bottom plate (31) at the middle in the width direction of the support bottom plate (31);
[0029] The second support plate (33), the second support plate (33) is symmetrically connected to the upper surface of the support bottom plate (31) on both sides of the first support plate (32);
[0030] The support top plate (34), the support top plate (34) is connected to the upper ends of the first support plate (32) and the second support plate (33).
[0031] As a further improvement of the above - mentioned utility model, it further includes several reinforcing plates (35), and several reinforcing plates (35) are respectively connected to the corresponding support bottom plate (31), the second support plate (33) and the support top plate (34);
[0032] The height of the first support plate (32) is lower than the height of the second support plate (33);
[0033] The support top plate (34) is integrally in an arc - shaped structure;
[0034] Among them, the upper end of the reinforcing plate (35) is provided with a radian adapted to be connected to the support top plate (34).
[0035] As a further improvement of the above-mentioned utility model, the fixing mechanism (4) includes: a fixing base (41), and the fixing base (41) is connected above the connecting member (5);
[0036] Connecting seats (42), and the connecting seats (42) are symmetrically connected to both ends of the upper part of one side of the fixing base (41);
[0037] Locking components (43), and the locking components (43) are symmetrically connected to both ends of the upper part of the other side of the fixing base (41);
[0038] Two movable clamps (44), one ends of the two movable clamps (44) are respectively movably connected to the corresponding connecting seats (42), and the other ends of the two movable clamps (42) are respectively locked by the corresponding locking components (43) to form the fixing mechanism (4).
[0039] As a further improvement of the above-mentioned utility model, the locking component (43) includes:
[0040] A locking seat (431), the locking seat (431) is integrally in an "L" shape, one end of the locking seat (431) is fixedly connected to the fixing base (41), and the other end is provided with a locking member connection port, and a locking member connection shaft is sleeved on the locking member connection port;
[0041] A locking member (432), and one end of the locking member (432) is rotatably connected to the locking member connection shaft;
[0042] Wherein, the locking member (432) includes a locking column, a locking sleeve threadedly connected to one end of the locking column, and connecting ears symmetrically connected to the locking sleeve.
[0043] As a further improvement of the above-mentioned utility model, the fixing base (41) is integrally in an arc-shaped structure;
[0044] One end of the connecting seat (42) is fixedly connected to the fixing base (41), the other end of the connecting seat (42) is provided with a connecting seat mounting port for connecting the movable clamp (44), and a locking shaft is sleeved on the upper part of the connecting seat mounting port;
[0045] The movable clamp (44) is integrally in an arc shape or a semi-circular shape, one end of the movable clamp (44) is provided with a connecting portion adapted to the connecting seat mounting port, the other end of the movable clamp (44) is connected with an outwardly extending mounting plate, and a locking connection port for cooperating with the locking member (432) to complete the locking work is inwardly opened in the middle of the non-connecting end of the mounting plate.
[0046] As a further improvement of the above-mentioned utility model, it further includes an anti-slip pad (7) arranged on the fixing mechanism (4), and the anti-slip pads (7) are respectively connected to the inner walls of the fixed clamping seat (41) and the movable clamp (44).
[0047] As a further improvement of the above-mentioned utility model, a fixing plate (8) is also connected to the lower end of the jacking mechanism (1);
[0048] The connecting member (5) is integrally in a circular columnar structure, and the connecting members (5) are arranged at equal or unequal intervals between the support top plate (34) and the fixed clamping seat (41); among them, the jacking mechanism (1) is a jack.
[0049] The working principle is as follows: First, place this device at the routing position of the pipeline (6) to be installed according to the spacing in the relevant specification content of Articles 3.3.8 to 3.3.10 in the "Code for Acceptance of Construction Quality of Building Water Supply, Drainage and Heating Engineering" GB50242-2002, and place multiple units of this utility model coaxially as needed.
[0050] Then, place this pipeline (6) on this device, lock the movable clamp (44), so that the pipeline (6) is closely placed on the fixing mechanism (4) and is firmly fixed.
[0051] Immediately afterwards, adjust the height of this device according to the relevant specification content of Articles 5.2.2, 5.2.3, and 5.3.3 in the "Code for Acceptance of Construction Quality of Building Water Supply, Drainage and Heating Engineering" GB50242-2002. The height adjustment of this device is mainly achieved by repeatedly pressing the jacking mechanism (1) to raise it, and the slope adjustment is realized by rotating the adjustment mechanism (2).
[0052] Finally, use a spirit level of the existing structure prepared in advance to check the slope of the pipeline (6) with the adjusted slope. The pipeline with a qualified slope can permanently maintain the qualified slope requirement.
[0053] When in use, this utility model can temporarily support and place the pipeline (6), which provides convenience for installing the pipeline, eliminates various technical defects and deficiencies brought about by the traditional method of directly placing it on the ground, realizes the support and placement of the pipeline, and achieves the purpose of centrally arranging and tidying up the pipeline.
[0054] If it is necessary to disassemble, assemble or make major adjustments to the pipeline (6), the operator only needs to first open the lock nut (432), and then loosen the movable clamp (44), and then the pipeline (6) can be removed.
[0055] It should be emphasized that this device has an upgrade function. During transportation, the jacking device can be reset to the lowest original position through the pressure relief valve of the jack in the jacking mechanism (1), so as to save space, facilitate transportation and storage during transportation.
[0056] The beneficial effects of the present utility model compared with the prior art are as follows:
[0057] 1. The device of the present utility model realizes the auxiliary construction of large-scale surface-mounted pipelines in a toolized, lightweight, standardized and modularized manner. At the same time, for non-pressure pipelines, the precise control of the slope can be achieved through the functions of this device. It solves the problems of difficult butt joint installation and low efficiency of large-scale surface-mounted pipelines, and difficult slope control of non-pressure pipelines. Compared with traditional construction, it can greatly improve the construction efficiency and reduce costs, and can be quickly applied under any conditions. For pipelines that need to adjust the slope, the precise adjustment and control of the slope can be achieved through the adjustment of the hydraulic device;
[0058] 2. The structure of the present utility model is simple and the design is novel and reasonable. Since a jacking mechanism is provided, and the jacking mechanism is a jack, which can precisely adjust the inclination. The jack can accurately adjust the inclination of the pipeline or the horizontal position of the structure. When adjusting the inclination of the pipeline or the structure, the jack provides stable support and lifting ability to ensure the safety and stability of the pipeline or the structure during the adjustment process;
[0059] 3. Since the present utility model uses a jack as the jacking mechanism to cooperate with the adjustment mechanism for lifting or adjusting the inclination of the pipeline, precise control is achieved. The jack can provide precise vertical lifting, making the adjustment of the pipeline or the structure more accurate. Through manual or electric control, the height or position can be gradually adjusted to meet the requirements of the project or installation; at the same time, according to actual needs, by adjusting the adjustment mechanism to a suitable inclination angle or slope, while realizing high-precision and reliable support for the pipeline, it can also work more safely, reducing the possibility of accidents and ensuring the safety of the staff and the surrounding environment;
[0060] 4. The jack of the present utility model can be applied to pipelines or structures of different shapes and sizes, so it has strong adaptability. As a tool for lifting pipelines or adjusting structures, the jack can provide precise, reliable and safe lifting functions, and is one of the important indispensable devices in modern engineering and maintenance work;
[0061] 5. The exterior of the present utility model is coated with an anti-rust layer and a waterproof layer, so it can prevent rust and extend the service life of the entire device, realizing environmental protection and saving resources at the same time. At the same time, a self-luminous fluorescent material is coated on the exterior of the device, which can clearly mark the position of the device at night, in dark rooms and underground construction environments, effectively playing a role of safety reminder, improving the visibility, being easy for people to distinguish, and increasing the safety in construction and life. BRIEF DESCRIPTION OF THE DRAWINGS
[0062] The following further elaborates on the specific implementation manners of the present utility model in conjunction with the attached drawings, where:
[0063] Figure 1 is one of the usage state diagrams of the present utility model;
[0064] Figure 2 is another usage state diagram of the present utility model;
[0065] Figure 3 is yet another usage state diagram of the present utility model;
[0066] Figure 4 is one of the overall structure schematic diagrams of the present utility model;
[0067] Figure 5 is another overall structure schematic diagram of the present utility model;
[0068] Figure 6 is yet another overall structure schematic diagram of the present utility model;
[0069] Figure 7 is the side view of the present utility model;
[0070] Figure 8 is the exploded view of the present utility model;
[0071] Among them, the reference numerals in the figures: 1 - lifting mechanism;
[0072] 2 - adjustment mechanism, 21 - connecting plate, 22 - first hinge seat, 23 - second hinge seat, 24 - connecting block;
[0073] 3 - support seat, 31 - support bottom plate, 32 - first support plate, 33 - second support plate, 34 - support top plate, 35 - reinforcement plate;
[0074] 4 - fixing mechanism, 41 - fixing clamp seat, 42 - connecting seat, 43 - locking assembly, 431 - locking seat, 432 - locking member, 44 - movable clamp;
[0075] 5 - connecting member;
[0076] 6 - pipeline;
[0077] 7 - anti-slip cushion;
[0078] 8 - fixing plate. Specific implementation manners
[0079] In order to make the technical means, creative features, achieved purposes and functions realized by the present utility model easy to understand, the technical solution of the present utility model will be further described in detail below in conjunction with the attached drawings and specific embodiments. It should be noted that, without conflict, the embodiments in the present application and the features in the embodiments can be combined with each other. The present utility model will be described in detail below with reference to the drawings and embodiments.
[0080] As shown in the attached drawings of the specification Figure 1 to the attached drawings of the specification Figure 8 An adjustable support device applicable to the auxiliary construction of building pipelines, including a jacking mechanism 1, further includes:
[0081] An adjustment mechanism 2, which is rotatably connected above the jacking mechanism 1 and is used to adjust the inclination of the support seat 3;
[0082] A support seat 3, the middle part of the lower end of the support seat 3 is connected to the top of the adjustment mechanism 2;
[0083] A fixing mechanism 4, the fixing mechanism 4 is connected to the upper end of the support seat 3 through several connecting pieces 5 and is used to support and limit and fix the pipeline 6 to prevent the pipeline 6 from slipping or falling.
[0084] Further, as shown in Figure 8 , the adjustment mechanism 2 includes:
[0085] A connecting plate 21, the lower end of the connecting plate 21 is connected to the upper end of the jacking mechanism 1;
[0086] A first hinge seat 22, the lower end of the first hinge seat 22 is connected to the upper end of the connecting plate 21;
[0087] A second hinge seat 23, the upper end of the second hinge seat 23 is connected to the lower end of the support seat 3;
[0088] A connecting block 24, one end of the connecting block 23 is rotatably connected to the first hinge seat 22, and the other end of the connecting block 23 is rotatably connected to the second hinge seat 23.
[0089] Specifically, as shown in Figure 8 , both the first hinge seat 22 and the second hinge seat 23 are integrally in a "U" - shaped structure. A first connecting shaft and a second connecting shaft are respectively connected to the openings of the first hinge seat 22 and the second hinge seat 23, and the first connecting shaft and the second connecting shaft are arranged in a relative "cross" shape;
[0090] The connecting block 24 is integrally in a cuboid structure. A first through - hole connected to the first connecting shaft is penetrated and opened on a pair of opposite end faces in the length direction of the connecting block 24, and a second through - hole connected to the first connecting shaft is penetrated and opened on the other pair of opposite end faces in the length direction of the connecting block 24.
[0091] Further, as Figure 8 shown, the support base 3 includes:
[0092] A support bottom plate 31, which is an overall square plate-like member;
[0093] A first support plate 32, which is arranged along the length direction of the support bottom plate 31, and the first support plate 32 is connected to the upper surface of the support bottom plate 31 at the middle in the width direction of the support bottom plate 31;
[0094] A second support plate 33, which is symmetrically connected to the upper surface of the support bottom plate 31 on both sides of the first support plate 32;
[0095] A support top plate 34, which is connected to the upper ends of the first support plate 32 and the second support plate 33.
[0096] More specifically, as Figure 8 shown, it further includes several reinforcing plates 35, and several reinforcing plates 35 are respectively connected to the corresponding support bottom plate 31, the second support plate 33 and the support top plate 34;
[0097] The height of the first support plate 32 is lower than the height of the second support plate 33;
[0098] The support top plate 34 is an overall arc-shaped structure;
[0099] Among them, the upper end of the reinforcing plate 35 is provided with a radian adapted to the support top plate 34 for connection.
[0100] In the present utility model, the opening of the support top plate 34 faces the fixing mechanism 4.
[0101] Further, as Figure 8 shown, the fixing mechanism 4 includes: a fixing clamp seat 41, and the fixing clamp seat 41 is connected above the connecting member 5;
[0102] A connecting seat 42, which is symmetrically connected to both ends of the upper part of one side of the fixing clamp seat 41;
[0103] A locking assembly 43, which is symmetrically connected to both ends of the upper part of the other side of the fixing clamp seat 41;
[0104] Two movable clamps 44, one ends of the two movable clamps 44 are respectively movably connected to the corresponding connecting seats 42, and the other ends of the two movable clamps 42 are respectively locked through the corresponding locking assemblies 43 to form the fixing mechanism 4.
[0105] Specifically, the locking assembly 43 includes:
[0106] The locking seat 431 is in an "L" shape as a whole. One end of the locking seat 431 is fixedly connected to the fixed card seat 41, and the other end is provided with a locking member connecting port, and a locking member connecting shaft is sleeved on the locking member connecting port;
[0107] A locking member 432, one end of which is rotatably connected to the locking member connecting shaft;
[0108] The locking member 432 includes a locking column, a locking sleeve threadedly connected to one end of the locking column, and a connecting ear symmetrically connected to the locking sleeve.
[0109] In the utility model, a locking column through hole adapted to be connected to the locking member connecting shaft is provided at one end of the locking column, and an external threaded section is provided at the other end of the locking column; the locking sleeve is generally a cylindrical structure with a hollow interior and an open end, and a threaded section adapted to the external threaded section of the locking column is provided inside the locking sleeve; the connecting ear is generally in a diamond shape or direction, and the connecting ear is connected to the side wall of the non-open end of the locking sleeve.
[0110] Specifically, the fixed base 41 is an arc-shaped structure as a whole;
[0111] One end of the connecting seat 42 is fixedly connected to the fixed clamping seat 41, and the other end of the connecting seat 42 is provided with a connecting seat installation opening connected to the movable clamp 44, and a locking shaft is sleeved on the upper part of the connecting seat installation opening;
[0112] The movable clamp 44 is an arc-shaped or semicircular structure as a whole, and one end of the movable clamp 44 is provided with a connecting portion adapted to the mounting port of the connecting seat, and the other end of the movable clamp 44 is connected to a mounting plate extending outward, and a locking connecting port is opened inwardly in the middle of the non-connecting end of the mounting plate to match the locking piece 432 to complete the locking work.
[0113] In the utility model, the locking connection port is a U-shaped opening as a whole, the width of the locking connection port is slightly larger than the diameter of the locking column, and the width of the locking connection port is smaller than the outer diameter of the locking sleeve.
[0114] Specifically, Figure 2 and Figure 8 As shown, it also includes an anti-skid pad 7 arranged on the fixing mechanism 4, and the anti-skid pad 7 is respectively connected to the inner wall of the fixing base 41 and the movable clamp 44.
[0115] In the present invention, the anti-skid pad 7 is a rubber protective pad, and a plurality of rubber protective protrusions of a connected structure are arranged on the outside of the rubber protective pad.
[0116] Therefore, since a rubber protection pad with protective protrusions on the outside is provided at the position of the mutual contact connection between the pipeline and the present utility model, it can not only play a protective role, ensure the integrity of the pipeline structure, but also increase the friction force at the connection, so that the pipeline is reliably and stably located within the present utility model.
[0117] Furthermore, as Figure 2 and Figure 8 shown, a fixing plate 8 is also connected to the lower end of the jacking mechanism 1;
[0118] The connecting member 5 is integrally in a circular columnar structure, and the connecting members 5 are arranged between the supporting top plate 34 and the fixed clamping seat 41 at equal or unequal intervals; among them, the jacking mechanism 1 is a jack.
[0119] At the same time, in the present utility model, on the outer surfaces of the jacking mechanism 1, the adjusting mechanism 2, the supporting seat 3
[0120] , the fixing mechanism 4, the connecting member 5 and the fixing plate 8, an injection layer, an anti-rust layer, a waterproof layer and a warning layer are sequentially sprayed from the inside to the outside, and fluorescent powder is coated on the warning layer.
[0121] A high molecular wear-resistant material is injection-molded on the injection layer; the anti-rust layer includes an epoxy zinc-rich primer, a chlorinated rubber topcoat and an epoxy mica iron intermediate coat located between the epoxy zinc-rich primer and the chlorinated rubber topcoat; the waterproof layer is a polyurethane waterproof coating; the warning layer is a yellow or black reflective warning tape or reflective color film or reflective paint.
[0122] At the same time, in the present utility model, the referred connections are all fixed connections or movable connections or detachable connections. Among them, the fixed connection is a welded connection or is directly processed into an integral molding structure; the movable connection or detachable connection is a hinged connection, a threaded connection, a bayonet connection, a plug-in connection or a bolt assembly connection or a screw connection.
[0123] In the present utility model, the pipeline 6 is a large-scale surface-mounted pipeline or a non-pressure pipeline or a drainage pipeline.
[0124] In summary, a more specific implementation manner of the present utility model is:
[0125] Before using an adjustable support device applicable to the auxiliary construction of building pipelines with the above design structure, it needs to be manufactured and installed for standby.
[0126] The specific installation steps are as follows: First, place this device at the spacing according to the relevant specification content of Articles 3.3.8 to 3.3.10 in the Code for Acceptance of Construction Quality of Building Water Supply, Drainage and Heating Engineering (GB50242-2002) at the routing position where the pipeline 6 is to be installed, and place multiple of the present utility models coaxially according to needs.
[0127] Then, place this pipeline 6 on this device, lock the movable clamp 44, so that the pipeline 6 is closely placed on the fixing mechanism 4 and is firmly fixed.
[0128] Immediately afterwards, adjust the height of this device according to the relevant specification contents of Articles 5.2.2, 5.2.3, and 5.3.3 in the Code for Acceptance of Construction Quality of Building Water Supply, Drainage and Heating Engineering GB50242-2002. The height adjustment of this device is mainly achieved by the cyclic pressing of the jacking mechanism 1 to raise it, and the slope adjustment is realized by the rotation of the adjustment mechanism 2. Adjust it to a suitable position.
[0129] Finally, use the level of the existing structure prepared in advance to recheck the pipeline slope of the pipeline 6 with the adjusted slope. The qualified pipeline slope can permanently meet the qualified slope requirements.
[0130] During use, this utility model can temporarily support and place the pipeline 6, providing convenience for installing the pipeline, eliminating various technical defects and deficiencies brought by the traditional direct placement on the ground, realizing the support and placement of the pipeline, and achieving the purpose of centrally placing and arranging the pipeline.
[0131] If the pipeline 6 needs to be disassembled, assembled or significantly adjusted, the operator only needs to first open the locking nut 432, and then loosen the movable clamp 44, then the pipeline 6 can be removed.
[0132] It should be emphasized that this device has an upgrade function. During transportation, the jacking device can be reset to the lowest original position through the pressure relief valve of the jack in the jacking mechanism 1. In this way, space is saved during transportation, and it is convenient for transportation and storage.
[0133] During the above implementation operation process, since a rubber protection pad with external protection protrusions is provided at the position of the mutual contact connection between the pipeline and this utility model, it can not only play a protection role, ensure the integrity of the pipeline structure, but also increase the friction force at the connection, so that the pipeline is reliably and stably located within this utility model.
[0134] At the same time, since the jacking mechanism is a combination of a jack and an adjustment mechanism for lifting or adjusting the inclination of the pipeline, precise control is achieved. The jack can provide precise vertical lifting, making the adjustment of the pipeline or structure more accurate. Through manual or electric control, the height or position can be gradually adjusted to meet the requirements of the project or installation; at the same time, according to actual needs, by adjusting the adjustment mechanism to a suitable inclination angle or slope, while achieving high-precision and reliable support for the pipeline, it can also work more safely, reducing the possibility of accidents and ensuring the safety of the staff and the surrounding environment.
[0135] The utility model realizes the centralized stacking and placement of pipelines during installation or processed pipelines, ensuring the qualified rate of the finished products or the quality during use of the pipelines.
[0136] Finally, it should be noted that the specific implementation modes of the present utility model have been described in detail in conjunction with the accompanying drawings. However, the present utility model is not limited to the above implementation modes, and various changes can be made within the scope of knowledge possessed by ordinary technicians in the art.
Claims
1. An adjustable support device suitable for auxiliary construction of building pipelines, comprising: The lifting mechanism (1) is characterized by further comprising: An adjustment mechanism (2), the adjustment mechanism (2) is rotatably connected to the top of the lifting mechanism (1) and is used to adjust the inclination of the support seat (3); A support seat (3), wherein the middle portion of the lower end of the support seat (3) is connected to the top of the adjustment mechanism (2); The fixing mechanism (4) is connected to the upper end of the support seat (3) via a plurality of connecting pieces (5) and is used to support and limit the pipe (6) to prevent the pipe (6) from slipping or falling.
2. The adjustable support device suitable for auxiliary construction of building pipelines according to claim 1, characterized in that: The adjustment mechanism (2) comprises: A connecting plate (21), the lower end of the connecting plate (21) being connected to the upper end of the jacking mechanism (1); A first hinge seat (22), the lower end of the first hinge seat (22) being connected to the upper end of the connecting plate (21); A second hinged seat (23), the upper end of the second hinged seat (23) being connected to the lower end of the support seat (3); A connecting block (24), one end of the connecting block (24) is rotatably connected to the first hinge seat (22), and the other end of the connecting block (24) is rotatably connected to the second hinge seat (23).
3. The adjustable support device suitable for auxiliary construction of building pipelines according to claim 2 is characterized in that: The first hinge seat (22) and the second hinge seat (23) are both "U"-shaped structures as a whole, and the openings of the first hinge seat (22) and the second hinge seat (23) are respectively connected to the first connecting shaft and the second connecting shaft, and the first connecting shaft and the second connecting shaft are arranged in a "cross" shape opposite to each other; The connecting block (24) is in an overall rectangular parallelepiped structure; a first through hole connected to the first connecting shaft is formed through one opposite end surface in the length direction of the connecting block (24); and a second through hole connected to the first connecting shaft is formed through another opposite end surface in the length direction of the connecting block (24).
4. The adjustable support device suitable for auxiliary construction of building pipelines according to claim 1 is characterized in that: The support seat (3) comprises: A supporting bottom plate (31), the supporting bottom plate (31) being a square plate-shaped member as a whole; A first support plate (32), the first support plate (32) being arranged along the length direction of the support base plate (31), and the first support plate (32) being connected to the upper surface of the support base plate (31) in the middle of the width direction of the support base plate (31); A second support plate (33), the second support plate (33) being symmetrically connected to the upper surface of the supporting bottom plate (31) on both sides of the first support plate (32); A supporting top plate (34) is connected to the upper ends of the first supporting plate (32) and the second supporting plate (33).
5. The adjustable support device suitable for auxiliary construction of building pipelines according to claim 4 is characterized in that: It also includes a plurality of reinforcing plates (35), wherein the plurality of reinforcing plates (35) are respectively connected to the supporting bottom plate (31) and the second supporting plate (33) and the supporting top plate (34) on the corresponding sides; The height of the first support plate (32) is lower than the height of the second support plate (33); The supporting top plate (34) is an overall arc-shaped structure; The upper end of the reinforcing plate (35) is provided with an arc adapted to be connected with the supporting top plate (34).
6. The adjustable support device suitable for auxiliary construction of building pipelines according to claim 1, characterized in that: The fixing mechanism (4) comprises: a fixing base (41), the fixing base (41) being connected above the connecting member (5); A connecting seat (42), the connecting seat (42) is symmetrically connected to two ends of an upper portion of one side of the fixed clamping seat (41); A locking assembly (43), the locking assembly (43) being symmetrically connected to two ends of the upper portion of the other side of the fixed card seat (41); Two movable clamps (44), one end of the two movable clamps (44) is movably connected to the corresponding connection seat (42), and the other ends of the two movable clamps (44) are locked by corresponding locking assemblies (43) to form a fixing mechanism (4).
7. The adjustable support device suitable for auxiliary construction of building pipelines according to claim 6, characterized in that: The locking assembly (43) comprises: The locking seat (431) is in an "L" shape as a whole. One end of the locking seat (431) is fixedly connected to the fixed clamping seat (41), and the other end is provided with a locking member connecting port, and a locking member connecting shaft is sleeved on the locking member connecting port; A locking member (432), one end of the locking member (432) being rotatably connected to the locking member connecting shaft; The locking member (432) comprises a locking column, a locking sleeve threadedly connected to one end of the locking column, and a connecting ear symmetrically connected to the locking sleeve.
8. The adjustable support device suitable for auxiliary construction of building pipelines according to claim 6, characterized in that: The fixed card seat (41) is an arc-shaped structure as a whole; One end of the connecting seat (42) is fixedly connected to the fixed clamping seat (41), and the other end of the connecting seat (42) is provided with a connecting seat installation opening connected to the movable clamp (44), and a locking shaft is sleeved on the upper part of the connecting seat installation opening; The movable clamp (44) is of an arc or semicircular structure as a whole, and one end of the movable clamp (44) is provided with a connection portion adapted to the mounting opening of the connection seat, and the other end of the movable clamp (44) is connected to a mounting plate extending outward, and a locking connection opening is provided inwardly at the middle of the non-connecting end of the mounting plate to match the locking member (432) to complete the locking work.
9. An adjustable support device suitable for auxiliary construction of building pipelines according to claim 1 or 6, characterized in that: It also includes an anti-skid pad (7) arranged on the fixing mechanism (4), and the anti-skid pad (7) is respectively connected to the inner wall of the fixing base (41) and the movable clamp (44).
10. The adjustable support device suitable for auxiliary construction of building pipelines according to claim 1, characterized in that: The lower end of the lifting mechanism (1) is also connected to a fixing plate (8); The connecting member (5) is in the form of a circular columnar structure as a whole, and is arranged between the supporting top plate (34) and the fixed clamping seat (41) at equal or unequal distances; wherein the lifting mechanism (1) is a jack.