Floating mooring column embedded member and installation construction method thereof
By adopting the design of guide rail embedded parts, external support structure and locking protection components in the embedded parts of floating bollards, the problem of loose bolts is solved, stable support and high-precision splicing of embedded parts are achieved, and construction safety and usage stability are improved.
Patent Information
- Application Number
- CN202511094994.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-06
- Publication Date
- 2025-10-17
- Estimated Expiration
- 2045-08-06
AI Technical Summary
During the installation and construction of existing floating bollard embedded parts, high-frequency vibration and external factors may cause the bolts to loosen, affecting the assembly stability and position accuracy of the upper and lower embedded parts.
The first and second guide rail embedded parts are vertically erected, with corner guards and reinforcement ribs set on the outside, and are stably supported by external support structures and internal support parts. Guide sleeves and connecting sleeves are used for stable splicing. Combined with locking protection components and a design to prevent the fixing bolts from rotating and loosening, the negative pressure effect is used to improve the density of the concrete.
It achieves stable support for embedded parts, improves the splicing stability and casting accuracy of upper and lower embedded parts, and ensures construction safety and stability in subsequent use.
Smart Images

Figure CN120575546B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application belongs to the technical field of floating mooring column construction, and particularly relates to a floating mooring column embedded part and a mounting construction method thereof. BACKGROUND
[0002] The floating mooring column is a ship mooring device applied to a ship lock and other hydraulic structures, and the core feature thereof is that it can synchronously float up and down with the water level, thereby providing a stable mooring support point for the ship under the condition of large water level change, and guaranteeing the safety of the ship during berthing, loading and unloading or waiting for the lock.
[0003] A mounting construction method of a floating mooring column embedded part is disclosed in Chinese Patent No. CN113152379A, which comprises the following steps: 1) mounting of a base support; 2) pouring of a lock wall bottom plate concrete; 3) assembly of the floating mooring column embedded part, mounting the floating mooring column embedded part on both sides of the inner support, adjusting the embedded part fixing bolts, so that the relative dimensions and perpendicularity and the intersegment misalignment meet the relevant technical requirements, connecting the embedded part intersegment bolts and welding the intersegment butt welds, and grinding and corrosion-proofing after welding; 4) mounting of the first mounting segment of the floating mooring column embedded part; 5) mounting of the upper floating mooring column embedded part; 6) form erection and warehouse preparation; 7) pouring of the concrete; 8) removal of the inner support; and 9) polishing and corrosion-proofing of the embedded part welding points.
[0004] In the mounting construction process of the above-mentioned floating mooring column embedded part, the upper and lower embedded parts are assembled by connecting the embedded part intersegment bolts, but when the concrete is poured and vibrated, the high-frequency vibration and other external factors can easily cause the bolts to loosen, thereby affecting the assembly stability of the upper and lower embedded parts, and further reducing the position accuracy of the embedded part construction, so that the normal lifting of the mooring column is affected during subsequent use, and there is a certain use defect. SUMMARY
[0005] The purpose of the present application is to provide a floating mooring column embedded part and a mounting construction method thereof, so as to solve the problem that the floating mooring column embedded part on the market is fixed by a single bolt, and the high-frequency vibration and other external factors during pouring can easily cause the bolt to loosen, thereby affecting the assembly stability of the upper and lower embedded parts.
[0006] To achieve the above-mentioned purpose, the present application provides the following technical solutions:
[0007] The application discloses a kind of floating mooring column embedded parts, including two groups of first guide rail embedded parts vertically erected, the upper end of the first guide rail embedded part is fixedly connected with second guide rail embedded part, and the first guide rail embedded part, second guide rail embedded part is fixedly provided with angle bead, and the outer side of first guide rail embedded part, second guide rail embedded part is uniformly integrally provided with reinforcing rib, and anchor bar is fixed on the reinforcing rib simultaneously;The outer side of the first guide rail embedded part, second guide rail embedded part is installed with outer support structure, the inner support member is supported between the two groups of first guide rail embedded parts, the upper end of the first guide rail embedded part is fixedly provided with guide sleeve, and the lower end of the second guide rail embedded part is fixedly provided with adapter sleeve, and the guide sleeve and adapter sleeve are fixedly connected by fixing bolt, the outer side of the adapter sleeve is installed with locking protection assembly for preventing the rotation loosening of fixing bolt, and the locking protection assembly improves the pouring compactness of joint concrete by negative pressure effect.
[0008] Preferably, the outer support structure includes a lateral support member rotatably mounted to the outer side of the first guide rail embedded part and the second guide rail embedded part, the lower end of the lateral support member is supported on the construction ground, and a fixed column is fixedly installed to the outer side of the lateral support member, and a flower basket bolt is fixedly connected between the fixed column and the bent portion of the anchor bar.
[0009] Preferably, when the first guide rail embedded part and the second guide rail embedded part are spliced, the adapter sleeve is sleeved to the outer side of the guide sleeve, and the guide sleeve and the adapter sleeve are gap-fitted, the inner wall of the guide sleeve is provided with an internal thread structure, the fixing bolt is threadedly connected with the guide sleeve, and the length of the widest portion of the nut of the fixing bolt is greater than the inner diameter of the adapter sleeve.
[0010] Preferably, the outer side of the upper portion of the adapter sleeve is provided with an external thread structure, the lower end of the protection sleeve is threadedly connected with the adapter sleeve, the adapter sleeve and the protection sleeve are coaxially arranged, the outer side of the protection sleeve is sleeved with a buffer sleeve, the outer wall of the protection sleeve is fixedly provided with a guide block, the inner wall of the buffer sleeve is provided with a limiting groove, the guide block is slidably connected with the limiting groove, and a buffer spring is fixedly connected between the protection sleeve and the buffer sleeve.
[0011] Preferably, the inner side of the buffer sleeve is coaxially fixedly connected with a connecting rod, the connecting rod is slidably penetrated through the upper end of the protection sleeve, the outer side of one end of the connecting rod is sleeved with a movable sleeve, the lower end of the movable sleeve is fixedly installed with a positioning lock piece, and the positioning lock piece is sleeved to the outer side of the nut of the fixing bolt during downward movement to lock the fixing bolt.
[0012] Preferably, a return spring is fixedly connected between the connecting rod and the movable sleeve, a cylindrical partition is coaxially fixedly installed to the inner side of the protection sleeve, the positioning lock piece is slidably attached to the inner wall of the cylindrical partition, and the positioning lock piece and the cylindrical partition are sealingly connected.
[0013] Preferably, the lower outer wall of the connecting rod is provided with a spiral guide groove, the inner wall of the movable sleeve is embedded with a ball, and the positioning lock member abuts against the top of the fixed bolt to extend and retract the connecting rod and the movable sleeve, while the ball slides along the guide groove to drive the positioning lock member to rotate and adjust, and the nut outside the fixed bolt is sleeved during the rotation and adjustment of the positioning lock member.
[0014] Preferably, the sealing plug is provided between the protective sleeve and the cylindrical partition with an interference fit, the upper end of the traction cable is slid through the cylindrical partition and fixedly connected to the top of the positioning lock member, and the positioning lock member is lowered to pull the sealing plug upward on the inner side of the protective sleeve through the traction cable.
[0015] A floating mooring column embedded part installation construction method, the specific method steps are as follows: S1, the first guide rail embedded part and the outer corner are welded, the lateral support member is rotated, the first guide rail embedded part is vertically placed, the inner side of the first guide rail embedded part is supported by the inner support member, and the lateral support member is positioned by the basket bolt in the subsequent process, so that the first guide rail embedded part is supported; S2, then the pouring formwork is spliced and poured, the pouring liquid level is lower than the top of the first guide rail embedded part, and after solidification, the second guide rail embedded part is installed on the top of the first guide rail embedded part through the fixed bolt, and the inner support member is hoisted upward to support the second guide rail embedded part; S3, the protective sleeve is installed on the upper end of the connecting sleeve, and then the pouring formwork is spliced and poured.
[0016] Compared with the prior art, the beneficial effects of the present application are:
[0017] The floating mooring column embedded part and the installation construction method thereof can realize stable support of the embedded part, effectively improve the splicing stability of the upper and lower embedded parts, and effectively improve the precision of embedded part splicing and pouring.
[0018] 1. The lateral support member, basket bolt and inner support member are provided, the support angle of the lateral support member can be fixed by the basket bolt, so that the lateral support member can exert a support force on the outer side of the first guide rail embedded part, avoiding the first guide rail embedded part from falling down, and the inner side of the first guide rail embedded part can be stably supported by the inner support member, avoiding the first guide rail embedded part from being deformed or damaged due to excessive stress during pouring, and effectively improving the installation construction safety.
[0019] 2. The guide sleeve, connecting sleeve and fixed bolt are provided, when the first guide rail embedded part and the second guide rail embedded part are spliced, the connecting sleeve can be sleeved on the outer side of the guide sleeve to realize stable guiding, and the first guide rail embedded part and the second guide rail embedded part can be stably spliced by the fixed bolt.
[0020] 3、Set up with protection kit, buffer kit and positioning lock piece, in the process of pouring, the buffer kit will move down under the action of concrete gravity, realize the buffer of fixed bolt installation position, the buffer kit will drive the positioning lock piece to move down synchronously in the process of moving down through the connecting rod, so that the positioning lock piece can be set in the top of the fixed bolt, realize the locking of the fixed bolt, avoid the loosening of the fixed bolt in the subsequent pouring and vibrating process due to vibration, effectively ensure the splicing stability of the embedded part in the pouring process.
[0021] 4、Set up with positioning lock piece and sealing plug, with the downward movement of the positioning lock piece, it will pull the sealing plug to slide in the inside of the protection kit through the traction rope, so that the air pressure between the protection kit and the cylindrical partition plate is reduced, the gap between the guide sleeve, the connecting sleeve and the fixed bolt can accelerate the infiltration of concrete through negative pressure, improve the concrete filling effect of the embedded part splicing place, further improve the pouring stability of the embedded part. BRIEF DESCRIPTION OF DRAWINGS
[0022] Figure 1 It is a front view structure schematic diagram of the application;
[0023] Figure 2 It is a top view structure schematic diagram of the application;
[0024] Figure 3 It is a first guide rail embedded part and lateral support piece connection structure schematic diagram of the application;
[0025] Figure 4 It is a first guide rail embedded part and second guide rail embedded part splicing structure schematic diagram of the application;
[0026] Figure 5 It is a first guide rail embedded part and second guide rail embedded part splicing structure schematic diagram of the application;
[0027] Figure 6 It is a protection kit and buffer kit connection structure schematic diagram of the application;
[0028] Figure 7 It is a protection kit and buffer kit connection structure schematic diagram of the application;
[0029] Figure 8 It is a positioning lock piece installation structure schematic diagram of the application;
[0030] Figure 9 It is a Figure 8 It is a schematic diagram of the enlarged structure of A in the application.
[0031] In the figure: 1, the first guide rail embedded part; 2, the second guide rail embedded part; 3, the corner guard; 4, the reinforcing rib; 5, the anchor rib; 6, the lateral support; 7, the fixed column; 8, the basket bolt; 9, the inner support; 10, the guide sleeve; 11, the connecting sleeve; 12, the fixing bolt; 13, the protection kit; 1301, the guide block; 14, the buffer kit; 1401, the limiting groove; 15, the buffer spring; 16, the connecting rod; 1601, the guide groove; 17, the movable sleeve; 1701, the ball; 18, the positioning lock; 19, the reset spring; 20, the cylindrical partition; 21, the traction cable; 22, the sealing plug. DETAILED DESCRIPTION
[0032] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0033] Embodiment one: the existing floating mooring column embedded part construction process is inconvenient to be stably supported, in order to solve this technical problem, the embodiment discloses the following technical content, please refer to Figures 1-3 As shown in the figure: a floating mooring column embedded part, comprising two groups of vertically erected first guide rail embedded parts 1, the upper end of the first guide rail embedded part 1 is fixedly connected with the second guide rail embedded part 2, and the first guide rail embedded part 1 and the second guide rail embedded part 2 are fixedly provided with the corner guard 3, and the outer side of the first guide rail embedded part 1 and the second guide rail embedded part 2 is uniformly and integrally provided with the reinforcing rib 4, and the reinforcing rib 4 is fixedly provided with the anchor rib 5, the outer side of the first guide rail embedded part 1 and the second guide rail embedded part 2 is provided with the outer support structure, and the inner support 9 is supported between the two groups of first guide rail embedded parts 1.
[0034] The lateral support 6 is rotated and separated to the outer side of the first guide rail embedded part 1, the first guide rail embedded part 1 is lifted and erected by using the hoisting equipment, and the first guide rail embedded part 1 is supported by the lateral support 6, and the fixed column 7 on the outer side of the lateral support 6 and the anchor rib 5 at the corresponding position are connected by the basket bolt 8, so as to stabilize the supporting angle of the lateral support 6, then the inner support 9 is hoisted to between the two groups of first guide rail embedded parts 1, so as to realize the inner support of the first guide rail embedded part 1, then the formwork is installed, after the installation is completed, pouring is carried out, so as to ensure the pouring precision of the lowermost first guide rail embedded part 1, and the highest pouring point is lower than the top of the first guide rail embedded part 1, which is convenient for subsequent splicing operation.
[0035] The technical content disclosed in this embodiment is a further improvement based on the above-mentioned embodiment one. In the existing floating mooring column embedded part, only a single bolt is used for fixed connection during splicing, which is easy to loosen and deviate during subsequent pouring and vibrating, thereby affecting the splicing pouring precision of the embedded part. In order to further solve this technical problem, the technical content is disclosed as follows, such as Figures 4-9 The outer side of the abutment sleeve 11 is provided with a locking protection assembly for preventing the fixed bolt 12 from rotating and loosening, and the locking protection assembly improves the pouring density of the concrete at the joint through negative pressure effect. The outer support structure includes a lateral support 6 rotatably installed on the outer side of the first guide rail embedded part 1 and the second guide rail embedded part 2, and the lower end of the lateral support 6 is supported on the construction ground. A fixed column 7 is fixedly installed on the outer side of the lateral support 6, and a basket bolt 8 is fixedly connected between the fixed column 7 and the curved part of the anchor 5. The first guide rail embedded part 1 and the outer corner 3 are welded, the lateral support 6 is rotated, the first guide rail embedded part 1 is vertically placed, and the inner side of the first guide rail embedded part 1 is supported by the inner support 9. The lateral support 6 is positioned by the basket bolt 8, and the support of the first guide rail embedded part 1 is realized. When the first guide rail embedded part 1 and the second guide rail embedded part 2 are spliced, the abutment sleeve 11 is sleeved on the outer side of the guide sleeve 10, the guide sleeve 10 and the abutment sleeve 11 are gap matched, the inner wall of the guide sleeve 10 is provided with an internal thread structure, the fixed bolt 12 and the guide sleeve 10 are threadedly connected, and the length of the widest part of the nut of the fixed bolt 12 is greater than the inner diameter of the abutment sleeve 11.
[0036] After the pouring of the first guide rail embedded part 1 is completed, the second guide rail embedded part 2 is hoisted and spliced with the first guide rail embedded part 1, so that the abutment sleeve 11 is sleeved on the outer side of the guide sleeve 10, the first guide rail embedded part 1 and the second guide rail embedded part 2 are guided and assembled, then the fixed bolt 12 and the guide sleeve 10 are threadedly connected, so that the nut of the fixed bolt 12 is fitted on the top of the abutment sleeve 11, thereby realizing the fixed connection of the first guide rail embedded part 1 and the second guide rail embedded part 2, and then the inner support 9 is hoisted upward to realize the inner support of the second guide rail embedded part 2.
[0037] As Figures 6-9As shown, the upper outer side of the adapter sleeve 11 is provided with an external thread structure, and the lower end of the protective sleeve 13 is threadedly connected with the adapter sleeve 11, and the adapter sleeve 11 and the protective sleeve 13 are coaxially arranged, and the outer lifting sleeve of the protective sleeve 13 is provided with a buffer sleeve 14, the outer wall of the protective sleeve 13 is fixedly provided with a guide block 1301, the inner wall of the buffer sleeve 14 is provided with a limiting groove 1401, and the guide block 1301 and the limiting groove 1401 are in sliding connection, the buffer spring 15 is fixedly connected between the protective sleeve 13 and the buffer sleeve 14, the inner side of the buffer sleeve 14 is coaxially fixedly connected with the connecting rod 16, the connecting rod 16 slides through the upper end of the protective sleeve 13, and the outer side of one end of the connecting rod 16 is sleeved with the movable sleeve 17, and the lower end of the movable sleeve 17 is fixedly installed with the positioning lock 18, and the positioning lock 18 is sleeved on the outer side of the nut of the fixed bolt 12 during downward movement to lock the fixed bolt 12, the reset spring 19 is fixedly connected between the connecting rod 16 and the movable sleeve 17, the cylindrical partition plate 20 is coaxially fixedly installed on the inner side of the protective sleeve 13, the positioning lock 18 slides on the inner wall of the cylindrical partition plate 20, and the positioning lock 18 and the cylindrical partition plate 20 are in sealing connection, the lower outer wall of the connecting rod 16 is provided with a spiral guide groove 1601, the inner wall of the movable sleeve 17 is embeddedly installed with a ball 1701, and the connecting rod 16 and the movable sleeve 17 are adjusted in extension and retraction when the positioning lock 18 abuts against the top of the fixed bolt 12, and the ball 1701 slides along the guide groove 1601 to drive the positioning lock 18 to rotate and adjust, the positioning lock 18 is sleeved on the outer side of the nut of the fixed bolt 12 during rotation and adjustment, the sealing plug 22 is arranged in interference between the protective sleeve 13 and the cylindrical partition plate 20, the traction cable 21 is fixedly connected above the sealing plug 22, the upper end of the traction cable 21 slides through the cylindrical partition plate 20 and is fixedly connected to the top of the positioning lock 18, and the sealing plug 22 is pulled by the traction cable 21 to move upward in the protective sleeve 13 during downward movement of the positioning lock 18.
[0038] After the installation of the fixing bolt 12 is completed, the protective sleeve 13 is threadedly connected to the outside of the connecting sleeve 11, the thread rotation directions of the fixing bolt 12 and the protective sleeve 13 are opposite, and then during pouring, the buffer sleeve 14 will move downward under the gravity of the concrete and buffer the falling concrete, thereby reducing the vibration at the installation position of the fixing bolt 12. With the downward movement of the buffer sleeve 14, the positioning lock 18 will be driven to move downward inside the cylindrical partition 20 through the connecting rod 16, so that the positioning lock 18 is sleeved on the top of the fixing bolt 12, thereby realizing the positioning of the fixing bolt 12 and avoiding loosening of the fixing bolt 12 due to vibration during subsequent pouring and vibration. If the positioning lock 18 collides with the top of the nut of the fixing bolt 12 during the downward movement, the connecting rod 16 will continue to move downward, which will drive the ball 1701 to slide along the guide groove 1601, thereby driving the movable sleeve 17 to rotate the positioning lock 18, so that the positioning lock 18 can be smoothly sleeved outside the nut of the fixing bolt 12. Since the length and spiral angle of the guide groove 1601 are limited, it will not affect the locking and anti-loosening effect of the positioning lock 18 on the fixing bolt 12.
[0039] As shown in Figures 7-8 With the downward movement of the positioning lock 18, the sealing plug 22 will be pulled upward between the protective sleeve 13 and the cylindrical partition 20 through the traction rope 21, so that the internal pressure of the protective sleeve 13 is reduced. At the same time, since the nut of the fixing bolt 12 does not completely block the gap between the guide sleeve 10 and the connecting sleeve 11, the concrete filler can be extracted through the gap between the guide sleeve 10, the connecting sleeve 11 and the fixing bolt 12 under the action of negative pressure, thereby further improving the filling effect of the concrete between the first guide rail embedded part 1 and the second guide rail embedded part 2, and ensuring the structural stability of the connection position after subsequent solidification.
[0040] The contents not described in detail in the specification belong to the prior art known to those skilled in the art.
[0041] Although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions recorded in the foregoing embodiments or make equivalent replacements for part of the technical features, and any modification, equivalent replacement, improvement, etc. made within the spirit and principles of the present application shall be included in the protection scope of the present application.
Claims
1. A floating bollard embedded part, comprising two groups of first guide rail embedded parts (1) erected vertically, wherein the upper ends of the first guide rail embedded parts (1) are fixedly connected to the second guide rail embedded parts (2), and the first guide rail embedded parts (1) and the second guide rail embedded parts (2) are fixedly provided with corner guards (3), and the outer sides of the first guide rail embedded parts (1) and the second guide rail embedded parts (2) are uniformly and integrally provided with reinforcing ribs (4), and anchor ribs (5) are fixed to the reinforcing ribs (4); Its characteristics are: An external support structure is installed on the outer side of the first guide rail embedded part (1) and the second guide rail embedded part (2); an internal support part (9) is supported between the two groups of first guide rail embedded parts (1); a guide sleeve (10) is fixedly provided on the upper end of the first guide rail embedded part (1), and a connecting sleeve (11) is fixedly provided on the lower end of the second guide rail embedded part (2); the guide sleeve (10) and the connecting sleeve (11) are fixedly connected by a fixing bolt (12); a locking protection component is installed on the outer side of the connecting sleeve (11) to prevent the fixing bolt (12) from rotating and loosening, and the locking protection component improves the pouring density of concrete at the joint through the action of negative pressure; An external thread structure is provided on the outer side of the upper portion of the connecting sleeve (11), and the lower end of the protection kit (13) is threadedly connected to the connecting sleeve (11), and the connecting sleeve (11) and the protection kit (13) are coaxially arranged, and the outer lifting sleeve of the protection kit (13) is provided with a buffer kit (14), the outer wall of the protection kit (13) is fixedly provided with a guide block (1301), and the inner wall of the buffer kit (14) is provided with a limiting groove (1401), and the guide block (1301) and the limiting groove (1401) are slidably connected, and a buffer spring (15) is fixedly connected between the protection kit (13) and the buffer kit (14); The inner side of the buffer kit (14) is coaxially fixedly connected with a connecting rod (16), and the connecting rod (16) slides through the upper end of the protection kit (13), and the connecting rod (16) is located on the outer side of one end of the protection kit (13) and is sleeved with a movable sleeve (17), and the lower end of the movable sleeve (17) is fixedly installed with a positioning lock (18), and the positioning lock (18) is sleeved on the outer side of the nut of the fixing bolt (12) during the downward movement process to achieve locking of the fixing bolt (12); A spiral guide groove (1601) is provided on the lower outer wall of the connecting rod (16), and a ball (1701) is embedded in the inner wall of the movable sleeve (17), and when the positioning lock (18) contacts the top of the fixing bolt (12), the connecting rod (16) and the movable sleeve (17) are telescopically adjusted, and at the same time, the ball (1701) slides along the guide groove (1601) to drive the positioning lock (18) to rotate and adjust, and the positioning lock (18) is sleeved on the outer side of the nut of the fixing bolt (12) during the rotation adjustment process.
2. The floating bollard embedded component according to claim 1, characterized in that: The external support structure comprises a lateral support member (6) rotatably mounted on the outside of the first guide rail embedded member (1) and the second guide rail embedded member (2), wherein the lower end of the lateral support member (6) is supported on the construction ground, and a fixing column (7) is fixedly mounted on the outside of the lateral support member (6), and a basket bolt (8) is fixedly connected between the fixing column (7) and the bent portion of the anchor bar (5).
3. The floating bollard embedded component according to claim 1, characterized in that: When the first guide rail embedded part (1) and the second guide rail embedded part (2) are spliced, the connecting sleeve (11) is sleeved on the outer side of the guide sleeve (10), and the guide sleeve (10) and the connecting sleeve (11) are clearance-matched, and the inner wall of the guide sleeve (10) is provided with an internal thread structure, and the fixing bolt (12) and the guide sleeve (10) are threadedly connected, and the widest part of the nut of the fixing bolt (12) is longer than the inner diameter of the connecting sleeve (11).
4. The floating bollard embedded component according to claim 1, characterized in that: A return spring (19) is fixedly connected between the connecting rod (16) and the movable sleeve (17), and a cylindrical partition (20) is coaxially fixedly installed on the inner side of the protection kit (13), and the positioning lock (18) slides on the inner wall of the cylindrical partition (20), and the positioning lock (18) and the cylindrical partition (20) are sealed.
5. The floating bollard embedded component according to claim 1, characterized in that: A sealing plug (22) is provided between the protection kit (13) and the cylindrical partition (20) for interference sliding, and a traction rope (21) is fixedly connected to the top of the sealing plug (22), and the upper end of the traction rope (21) slides through the cylindrical partition (20) and is fixedly connected to the top of the positioning lock (18), and at the same time, when the positioning lock (18) moves downward, the sealing plug (22) is pulled upward on the inner side of the protection kit (13) by the traction rope (21).
6. A method for installing and constructing embedded parts of a floating bollard, characterized in that: The method is implemented based on the floating bollard embedded component according to claim 2, and the method comprises the following steps: S1. Weld the first guide rail embedded part (1) and the outer corner guard (3), rotate the lateral support part (6), and place the first guide rail embedded part (1) vertically, and support the inner side of the first guide rail embedded part (1) through the inner support part (9), and then position the lateral support part (6) through the basket bolt (8) to achieve support for the first guide rail embedded part (1); S2, after splicing the casting template, casting is carried out, the casting liquid level is lower than the top of the first guide rail embedded part (1), and after solidification, the second guide rail embedded part (2) is installed on the top of the first guide rail embedded part (1) through the fixing bolts (12), and at the same time, the inner support part (9) is lifted upward to achieve support for the second guide rail embedded part (2); S3, installing the protection kit (13) on the outer side of the upper end of the connecting sleeve (11), and then splicing the template and pouring.
Citation Information
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Floating bollard embedded part mounting construction method
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Floating type bollard guide groove assembling device and assembling method
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