Foundation vibroflotation device
By designing replacement and splicing components, the problem of difficult disassembly and replacement of the end structure of the foundation vibratory compaction device was solved, enabling rapid maintenance and length adjustment, and improving construction efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- 浙江江南春建设集团有限公司
- Filing Date
- 2025-03-18
- Publication Date
- 2026-05-05
AI Technical Summary
The end structure of existing foundation vibratory compaction devices cannot be disassembled when deformed or damaged, resulting in long maintenance time, affecting construction progress, and the vibratory compaction head cannot be replaced according to environmental requirements.
Replacement components and splicing components were designed. The replacement components enable quick installation and disassembly of the vibratory compaction sleeve through limiting slide rails and through screws, while the splicing components enable length adjustment of the vibratory compaction structure through splicing columns and fixing rings.
It enables rapid replacement and length adjustment of vibratory compaction structures, improving construction efficiency, reducing maintenance time, and adapting to different environmental needs.
Smart Images

Figure CN224199883U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of foundation vibratory compaction technology, specifically a foundation vibratory compaction device. Background Technology
[0002] During foundation construction, due to the instability of the ground, the ground strength often fails to support the building. To avoid affecting the building, a vibratory compaction device is usually used to create holes in the ground during foundation construction. Then, stones are poured into the holes, and the compaction process makes the ground more dense, thereby improving the support stability of the building above.
[0003] In existing technologies, the end structure of existing foundation vibratory compaction devices cannot be disassembled when the outer surface is deformed or damaged, resulting in long maintenance time, affecting normal construction, and making it impossible to use different vibratory compaction heads according to different environments. Utility Model Content
[0004] The purpose of this utility model is to provide a foundation vibratory compaction device to solve the problem that the end structure of the existing foundation vibratory compaction device in the background art is incapable of being disassembled when the outer surface is deformed or damaged, resulting in a long maintenance time, affecting normal construction, and the inability to use different vibratory compaction heads according to different environments. By setting replacement components, the outer vibratory compaction sleeve can be flexibly replaced to adapt to different needs.
[0005] To solve the above-mentioned technical problems, this utility model provides the following technical solution:
[0006] A foundation vibratory compaction device includes a connecting rod, a replacement component is provided at the bottom of the connecting rod for replacing and repairing the vibratory compaction structure, and a splicing component is provided at the top of the connecting rod for extending the length of the vibratory compaction structure as needed.
[0007] The replacement component includes a vibratory end, and four sets of limiting slide rails are installed on the outer side of the vibratory end. A vibratory sleeve is provided on the outer side of the limiting slide rails, and several sets of through screws are embedded inside the vibratory sleeve. Guide blocks are installed on both sides of the vibratory sleeve, and limiting blocks are installed on the front and back of the lower end of the vibratory sleeve. A guide groove is provided between the guide block and the limiting block.
[0008] The splicing assembly includes a splicing column, and an upper connecting column is installed on the top of the splicing column. Fixing rings are installed on the upper end of the connecting rod, the lower end of the upper connecting column, and the upper and lower ends of the splicing column. Two sets of combination frames are provided on the outer sides of the two sets of fixing rings.
[0009] Preferably, the bottom of the connecting rod is equipped with a fixed end, and the fixed end is located at the top of the vibratory impact end.
[0010] Preferably, the vibratory end is provided with a vibration motor and an eccentric shaft, the connecting rod, splicing column and upper connecting column have an opening in the middle, and the opening is provided with wiring, and the top of the upper connecting column is equipped with a connecting end.
[0011] Preferably, the top of the connecting rod and the splicing column are provided with a number of slots, and the bottom of the splicing column and the upper connecting column are provided with a number of insert rods, the insert rods being located inside the slots.
[0012] Preferably, the front and back of the combination frame are equipped with connecting plates, and several sets of positioning bolts are embedded in the inner side of the connecting plates.
[0013] Preferably, the vibratory sleeve is provided with side fixing plates on both sides, and a sealing gasket is provided on the top of the vibratory sleeve, with the sealing gasket located at the bottom of the fixing end.
[0014] Preferably, the inner side of the vibratory sleeve is provided with four sets of limiting slide grooves, and the limiting slide grooves are spliced to the outer side of the limiting slide rail.
[0015] Compared with the prior art, the beneficial effects achieved by this utility model are:
[0016] 1. This utility model, by installing a replacement component, uses a limiting slide rail to restrict the outer vibratory sleeve. The vibratory sleeve can be installed by inserting it longitudinally, and then the through screws are installed in sequence to compress the sealing gasket to maintain the sealing effect of the connection area. The internal vibratory structure and the external direct contact structure can be separated by disassembly, which is convenient for maintenance and replacement. At the same time, the guide groove between the guide block and the limiting block can guide the stones inside, so that the vibratory structure does not need to be raised too high to vibrate, effectively improving the construction efficiency.
[0017] 2. By installing splicing components, the length of the existing vibratory impact structure cannot be adjusted according to the requirements. By setting splicing columns, the corresponding plug can be inserted into the inner side of the slot. After insertion, it remains in a spliced state. Then, the combination frame is fixed on the outer side of the fixing ring. The splicing column can be prevented from falling off by using the limiting method. The splicing components can be used to flexibly extend the length of the vibratory impact structure to adapt to different needs. Attached Figure Description
[0018] Figure 1 This is a schematic diagram of the main structure of the present utility model;
[0019] Figure 2 This is a schematic diagram of the connecting rod structure of this utility model;
[0020] Figure 3 This is a schematic diagram of the combined frame structure of this utility model;
[0021] Figure 4 This is a schematic diagram of the splicing column structure of this utility model;
[0022] Figure 5 This is a schematic diagram of the vibratory impact sleeve structure of this utility model.
[0023] The components are as follows: 1. Connecting rod; 101. Fixed end; 102. Vibratory impact end; 103. Limiting slide rail; 104. Opening; 105. Splicing column; 106. Upper connecting column; 107. Connecting end; 108. Insert rod; 109. Slot; 110. Fixing ring; 2. Combination frame; 201. Connecting plate; 202. Positioning bolt; 3. Vibratory impact sleeve; 301. Sealing gasket; 302. Guide block; 303. Side fixing plate; 304. Limiting block; 305. Through screw; 306. Limiting slide groove. Detailed Implementation
[0024] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0025] Please see Figure 1-5 A foundation vibratory compaction device includes a connecting rod 1, a replacement component is provided at the bottom of the connecting rod 1, and the replacement component is used to replace and repair the vibratory compaction structure, and a splicing component is provided at the top of the connecting rod 1, and the splicing component is used to extend the length of the vibratory compaction structure as needed.
[0026] The replacement component includes a vibratory end 102, and four sets of limiting slide rails 103 are installed on the outer side of the vibratory end 102. A vibratory sleeve 3 is provided on the outer side of the limiting slide rails 103, and several sets of through screws 305 are embedded inside the vibratory sleeve 3. Guide blocks 302 are installed on both sides of the vibratory sleeve 3, and limiting blocks 304 are installed on the front and back of the lower end of the vibratory sleeve 3. A guide groove is provided between the guide block 302 and the limiting block 304.
[0027] The splicing assembly includes a splicing column 105, and an upper connecting column 106 is installed on the top of the splicing column 105. Fixing rings 110 are installed on the upper end of the connecting rod 1, the lower end of the upper connecting column 106, and the upper and lower ends of the splicing column 105. Two sets of combination frames 2 are provided on the outer side of the two sets of fixing rings 110.
[0028] Through the above technical solution, the limiting slide rail 103 can be used to restrict the outer vibratory sleeve 3. The vibratory sleeve 3 can be installed by inserting it longitudinally. Then, the through screw 305 is installed in sequence to squeeze the sealing gasket 301 to keep the connection area sealed. The internal vibratory structure and the external direct contact structure can be separated by disassembly, which is convenient for maintenance and replacement. At the same time, the guide groove between the guide block 302 and the limiting block 304 can guide the stones inside, so that the vibratory structure does not need to be raised too high to vibrate, effectively improving the construction efficiency.
[0029] With the above technical solution, by setting the splicing column 105, the corresponding insertion rod 108 can be inserted into the inner side of the slot 109. After insertion, it is kept in a spliced state. Then, the combination frame 2 is fixed on the outer side of the fixing ring 110. The splicing column 105 can be prevented from falling off by using the limiting method. The splicing component can be used to flexibly extend the length of the vibratory impact structure to adapt to different needs.
[0030] Specifically, a fixed end 101 is installed at the bottom of the connecting rod 1, and the fixed end 101 is located at the top of the vibratory end 102.
[0031] Through the above technical solution, the fixed end 101 can be spliced with the bottom vibratory sleeve 3.
[0032] Specifically, the vibratory end 102 is equipped with a vibration motor and an eccentric shaft. The connecting rod 1, the splicing column 105 and the upper connecting column 106 have an opening 104 in the middle, and the opening 104 is equipped with wiring. The top of the upper connecting column 106 is equipped with a connecting end 107.
[0033] Through the above technical solution, the opening 104 is used to connect the auxiliary line, and the connection end 107 can be connected to the external suspension structure.
[0034] Specifically, the top of the connecting rod 1 and the splicing column 105 is provided with several sets of slots 109, and the bottom of the splicing column 105 and the upper connecting column 106 is provided with several sets of insert rods 108, which are located inside the slots 109.
[0035] Through the above technical solution, the slot 109 can provide a constraint for the insertion rod 108, which can be inserted to splice. The splicing can increase stability and prevent the rod structure from bending.
[0036] Specifically, the front and back of the combination frame 2 are equipped with connecting plates 201, and several sets of positioning bolts 202 are embedded in the inner side of the connecting plates 201.
[0037] Through the above technical solution, the connecting plate 201 can connect the combined frame 2 to the fixing ring 110 by means of the positioning bolt 202.
[0038] Specifically, side fixing plates 303 are installed on both sides of the vibratory sleeve 3, and a sealing gasket 301 is provided on the top of the vibratory sleeve 3, and the sealing gasket 301 is located at the bottom of the fixing end 101.
[0039] Through the above technical solution, the side fixing plate 303 can assist in vibration and impact, and the sealing gasket 301 can maintain sealing through compression.
[0040] Specifically, the inner side of the vibratory sleeve 3 is provided with four sets of limiting slide grooves 306, and the limiting slide grooves 306 are spliced on the outer side of the limiting slide rail 103.
[0041] Through the above technical solution, the limiting slide 306 can be spliced with the limiting slide rail 103, and the sliding splicing can maintain the stability of the assembly.
[0042] When in use, first assemble the corresponding number of splicing columns 105 according to the requirements. When assembling, the plug rod 108 needs to be inserted into the inner side of the corresponding slot 109. After insertion, the combination frame 2 will be set on the outer side of the fixing ring 110 for splicing. When it is necessary to disassemble the vibratory sleeve 3, the vibratory sleeve 3 can be slid apart along the limit slide rail 103 by disassembling the through screw 305 structure. After separation, it can be replaced.
[0043] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A foundation vibratory compaction device, comprising a connecting rod (1), characterized in that: The bottom of the connecting rod (1) is provided with a replacement component, which is used to replace and repair the vibratory impact structure. The top of the connecting rod (1) is provided with a splicing component, which is used to extend the length of the vibratory impact structure as needed. The replacement component includes a vibratory end (102), and four sets of limiting slide rails (103) are installed on the outside of the vibratory end (102). A vibratory sleeve (3) is provided on the outside of the limiting slide rails (103), and several sets of through screws (305) are embedded inside the vibratory sleeve (3). Guide blocks (302) are installed on both sides of the vibratory sleeve (3), and limiting blocks (304) are installed on the front and back of the lower end of the vibratory sleeve (3). A guide groove is provided between the guide block (302) and the limiting block (304). The splicing assembly includes a splicing column (105), and an upper connecting column (106) is installed on the top of the splicing column (105). Fixing rings (110) are installed on the upper end of the connecting rod (1), the lower end of the upper connecting column (106), and the upper and lower ends of the splicing column (105). Two sets of combination frames (2) are provided on the outside of the two sets of fixing rings (110).
2. The foundation vibratory compaction device according to claim 1, characterized in that: The bottom of the connecting rod (1) is equipped with a fixed end (101), and the fixed end (101) is located at the top of the vibratory end (102).
3. The foundation vibratory compaction device according to claim 1, characterized in that: The vibratory end (102) is equipped with a vibration motor and an eccentric shaft. The middle part of the connecting rod (1), splicing column (105) and upper connecting column (106) is provided with an opening (104), and the opening (104) is provided with a circuit. The top of the upper connecting column (106) is equipped with a connecting end (107).
4. A foundation vibratory compaction device according to claim 1, characterized in that: The top of the connecting rod (1) and the splicing column (105) is provided with a number of slots (109), and the bottom of the splicing column (105) and the upper connecting column (106) is provided with a number of insert rods (108), the insert rods (108) being located inside the slots (109).
5. A foundation vibratory compaction device according to claim 1, characterized in that: The front and back of the combination frame (2) are equipped with connecting plates (201), and several sets of positioning bolts (202) are embedded in the inner side of the connecting plates (201).
6. A foundation vibratory compaction device according to claim 1, characterized in that: The vibratory sleeve (3) is equipped with side fixing plates (303) on both sides, and a sealing gasket (301) is provided on the top of the vibratory sleeve (3), and the sealing gasket (301) is located at the bottom of the fixing end (101).
7. A foundation vibratory compaction device according to claim 1, characterized in that: The inner side of the vibratory sleeve (3) is provided with four sets of limiting slide grooves (306), and the limiting slide grooves (306) are spliced on the outer side of the limiting slide rail (103).