A rapid prototyping auxiliary device for high-cap pile construction
By designing a rapid prototyping auxiliary device consisting of a base and an auxiliary forming mechanism, the problem of poor balance of the high-cap pile construction device in seawater was solved, the effect of stable insertion and removal of the high-cap pile was achieved, and the forming requirements of high-cap piles of different shapes and sizes were adapted.
Patent Information
- Application Number
- CN202411062845.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-05
- Publication Date
- 2025-10-10
- Estimated Expiration
- 2044-08-05
AI Technical Summary
The existing rapid prototyping auxiliary device for high-cap pile construction is prone to losing balance and tipping over during transportation in seawater, and has poor balance when floating in seawater.
A rapid prototyping auxiliary device is designed, which includes a base, an auxiliary forming mechanism, an adjustment mechanism, a docking mechanism, an unlocking mechanism and a positioning mechanism. The length of the ground pile can be extended by adjusting the position of the ground pile on the base, and the pile can be inserted into the seabed. The high-cap pile is assisted in forming using an auxiliary forming tube. The auxiliary forming tube can be replaced to accommodate high-cap piles of different shapes and sizes.
The device can stably insert and remove high-cap piles in seawater, improve the balance and stability of the device, adapt to the molding requirements of high-cap piles of various shapes and sizes, and is quick and convenient to operate.
Smart Images

Figure CN119195198B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application relates to the technical field of high-bearing-pile construction, in particular to a rapid forming auxiliary device for high-bearing-pile construction. BACKGROUND
[0002] The high-bearing pile refers to a pile foundation in which the upper part of the pile is exposed to the ground and the bottom of the pile is located above the ground. The foundation is often used in port engineering and offshore engineering. When the high-bearing pile is constructed, seawater needs to be blocked to expose the seabed, and the bottom of the high-bearing pile is constructed to facilitate rapid forming. In the process of exposing the seabed, an auxiliary device needs to be used for assistance.
[0003] The rapid forming auxiliary device for high-bearing-pile construction in the prior art is prone to losing balance and turning over during transportation in seawater, and the balance of the rapid forming auxiliary device for high-bearing-pile construction is poor when the rapid forming auxiliary device for high-bearing-pile construction floats in seawater. Therefore, the application provides a rapid forming auxiliary device for high-bearing-pile construction to solve the above problems. SUMMARY
[0004] The application aims to provide a rapid forming auxiliary device for high-bearing-pile construction to solve the problems that the rapid forming auxiliary device for high-bearing-pile construction is prone to losing balance and turning over during transportation in seawater, and the balance of the rapid forming auxiliary device for high-bearing-pile construction is poor when the rapid forming auxiliary device for high-bearing-pile construction floats in seawater.
[0005] To achieve the above-mentioned purpose, the application provides the following technical scheme: a rapid forming auxiliary device for high-bearing-pile construction, comprising:
[0006] a base;
[0007] an auxiliary forming mechanism, the auxiliary forming mechanism is fixedly installed on the base, and the auxiliary forming mechanism comprises a plurality of ground piles, a connecting ring, four auxiliary forming pipes, four matching frames and four butt joints, the ground piles are fixedly installed at the bottom of the connecting ring, the ground piles penetrate through the base, the four butt joints are fixedly connected with the inner side of the base, the four matching frames are fixedly connected with the four auxiliary forming pipes respectively, and the outer side of the matching frame is in sliding contact with the inner wall of the butt joint;
[0008] an adjusting mechanism, the adjusting mechanism is used for adjusting the extension length of the ground pile in the base;
[0009] a butt joint mechanism, the butt joint mechanism is used for mounting the matching frame on the butt joint;
[0010] an unlocking mechanism, the unlocking mechanism is used for unlocking the matching frame on the butt joint;
[0011] a positioning mechanism, the positioning mechanism is used for positioning the auxiliary forming pipe on the inner side of the base;
[0012] There are two groups of adjustment mechanisms, and four groups of docking mechanisms, unlocking mechanisms and positioning mechanisms. The adjustment mechanisms cooperate with the base and the connecting ring respectively, the docking mechanisms cooperate with the matching frame, the docking frame and the unlocking mechanism respectively, and the positioning mechanisms cooperate with the base and the auxiliary forming tube respectively.
[0013] With the above structure, by adjusting the position of the ground pile on the base, the length of the ground pile at the bottom of the base can be extended to insert it into various depths and seabeds. The auxiliary forming tube on the inside of the base can assist in shaping the high-cap pile, and the auxiliary forming tube can also be replaced to assist in shaping high-cap piles of various shapes and sizes, which is quick and convenient.
[0014] Preferably, the adjustment mechanism includes: a sliding block, a sliding frame, a positioning frame, a driving frame, a sliding plate, a limiting block and a pressing frame;
[0015] The sliding block is fixedly mounted on the connecting ring, the sliding frame is fixedly mounted on the base, the positioning frame is slidably connected to the bottom of the sliding block, the positioning frame is fixedly connected to the driving frame, the driving frame cooperates with the sliding plate, the sliding plate is slidably connected to the sliding block, the bottom outer side of the sliding plate is in sliding contact with the inner wall of the driving frame, the pressing frame is rotatably connected to the top of the sliding block, the pressing frame cooperates with the sliding plate, the limiting block is fixedly mounted on the driving frame, and the bottom of the limiting block is in sliding contact with the top of the driving frame. With the above structure, the length of the ground pile at the bottom of the base can be extended by adjusting the position of the ground pile on the base so that it can be inserted into various depths and seabeds. The auxiliary forming tube inside the base can assist in forming the high-cap pile, and the auxiliary forming tube can also be replaced to assist in forming high-cap piles of various shapes and sizes, which is quick and convenient.
[0016] When the two sliding blocks are unlocked, the connecting ring can be pressed downward on the top of the base, and the connecting ring can extend the ground pile downward, so that the ground pile can go deeper into the seabed, and then the positioning frame can be released so that the positioning frame can automatically engage with the sliding frame, and the positioning frame can connect the sliding frame and the sliding block to block the movement of the sliding block on the sliding frame, thereby realizing the positioning of the sliding block, so that the sliding block can block the movement of the connecting ring, thereby realizing the positioning of the connecting ring, and stably using the ground pile.
[0017] Preferably, the docking mechanism includes: a blocking plate, a driving block, a return spring, a fixing block and a fitting block;
[0018] The blocking plate is slidingly connected to the top of the butt joint frame, the blocking plate is fixedly connected to the driving block, the driving block is fixedly connected to the reset spring, the reset spring is fixedly connected to the fixed block, the fixed block is fixedly installed on the top of the matching frame, and the abutting block is fixedly installed on the top of the driving block.
[0019] Further, after the bottom of the blocking plate abuts against the top of the matching frame, the blocking plate can block the matching frame from being separated from the butt joint frame, so as to install the matching frame on the blocking frame, and the auxiliary forming pipe can be installed on the base.
[0020] Preferably, the unlocking mechanism comprises an abutting rod, an intermediate rod, a torsion spring, a rotating frame, a control frame, a handle, a pushing frame, a pushing rod, a driving rod and a round rod.
[0021] The abutting rod is fixedly connected to the intermediate rod, the abutting rod is in sliding contact with the abutting block, the intermediate rod is rotationally connected to the rotating frame, the rotating frame is fixedly installed on the top of the matching frame, the torsion spring is fixedly connected to the rotating frame and the intermediate rod respectively, the bottom of the control frame is slidingly connected to the inner side of the matching frame, the top of the control frame is in sliding contact with the intermediate rod, the handle is fixedly installed on the top of the control frame, the round rod is fixedly connected to the intermediate rod, the round rod is slidingly connected to the control frame, the pushing frame is slidingly connected to the butt joint frame, the pushing frame is rotationally connected to the pushing rod, the pushing rod is fixedly connected to the driving rod, and the driving rod is fixedly connected to the driving block.
[0022] Further, after the handle is pushed to move, the handle can push the control frame to move, so that the bottom of the control frame moves on the inner side of the butt joint frame, the control frame can press the round rod downward, so that the round rod can press the right end of the intermediate rod to slide downward, so that the left end of the intermediate rod can be raised upward to drive the abutting rod and the abutting block to separate, the driving block and the blocking plate are unlocked first, and then the pushing frame is pushed upward to move, so that the pushing frame can push the pushing rod, the pushing rod pushes the driving rod to move, so that the driving rod can drive the blocking block and the matching frame to separate, the matching frame is unlocked, so that the matching frame can be separated from the butt joint frame, and the auxiliary forming pipe is unlocked and disassembled.
[0023] Preferably, the positioning mechanism comprises a connecting frame, a connecting rod, an abutting frame, a supporting rod, an abutting block, an insertion frame, an unlocking frame and an unlocking rod.
[0024] The connecting frame is fixedly installed on the inner side of the base, the connecting rod is rotationally connected to the connecting frame, the abutting frame is rotationally connected to the top end of the connecting rod, the supporting rod is rotationally connected to the rotating frame and the abutting block respectively, the abutting block is slidingly connected to the outer side of the connecting rod, the insertion frame is slidingly connected to the connecting rod, the insertion frame is rotationally connected to the unlocking rod, the unlocking rod is rotationally connected to the unlocking frame, and the unlocking frame is slidingly connected to the connecting rod.
[0025] Furthermore, after the unlocking frame is pressed downward, the unlocking frame can push the unlocking rod, and the unlocking rod can push the insertion frame to disengage from the docking block to unlock the connecting rod, so that the connecting rod can slide freely on the connecting rod. At this time, the connecting rod can be rotated on the connecting frame to adjust the position of the fitting frame, and then the fitting frame can be fitted with various types of auxiliary forming tubes to fit various auxiliary forming tubes, and then the insertion frame can be released to allow the insertion frame to engage with the docking block, and the insertion frame can connect the docking block and the connecting rod to block the movement of the docking block on the connecting rod, and the support rod and the connecting rod can be connected so that the support rod can support the connecting rod, and the connecting rod cannot rotate on the connecting frame, so that the connecting frame can stably position the auxiliary forming tube.
[0026] Preferably, a round block is fixedly mounted on the rear side of the sliding plate, and the outer side of the round block is slidably connected to the inner side of the pressing frame.
[0027] Furthermore, the round block is used to connect the push frame and the sliding plate, so that when the push frame is pressed, the sliding plate can be pressed to slide downward to unlock the sliding block.
[0028] Preferably, a positioning spring is fixedly mounted on the positioning frame, a spring seat is fixedly mounted on the positioning spring, and the spring seat is fixedly mounted on the bottom of the sliding block.
[0029] Furthermore, the positioning spring is used to reset the positioning frame, so that the positioning frame can automatically position the position of the sliding block.
[0030] Preferably, the sliding frame is provided with a plurality of positioning slots arranged at equal intervals, a positioning block is fixedly mounted on the left side of the positioning frame, and the outer side of the positioning block is detachably engaged with the inner wall of the positioning slot.
[0031] Furthermore, after the positioning block is inserted into the inner side of the positioning groove, the positioning block can block the movement of the sliding block, thereby achieving the positioning of the sliding block.
[0032] Preferably, the docking block is provided with a plurality of insertion slots arranged at equal intervals, the insertion frame is fixedly provided with a plurality of insertion blocks arranged at equal intervals, and the outer sides of the insertion blocks are detachably engaged with the inner walls of the insertion slots.
[0033] Furthermore, after the insertion block is inserted into the inner side of the insertion groove, the insertion block can block the movement of the docking block, thereby achieving the positioning of the docking block.
[0034] Preferably, the left side of the insertion frame is fixedly installed with symmetrically arranged tension springs, the number of the pulling springs is two, and the two tension springs are fixedly installed with auxiliary blocks on the left side, and the auxiliary blocks are fixedly installed on the front side of the connecting rod.
[0035] Furthermore, the tension spring is used to reset the insertion rack so that the insertion rack can automatically position the docking block.
[0036] In summary, the technical effects and advantages of the present invention are as follows:
[0037] 1. After the pressing frame is pressed, the pressing frame can press the sliding plate downward, so that the sliding plate can move downward and be inserted into the inner side of the driving frame. The driving frame can drive the positioning frame to disengage from the sliding frame to unlock the sliding block. After the two sliding blocks are unlocked, the connecting ring can be pressed downward on the top of the base. The connecting ring can extend the ground pile downward, so that the ground pile can go deeper into the inside of the seabed. Then the positioning frame is released, so that the positioning frame can automatically engage with the sliding frame. The positioning frame can connect the sliding frame and the sliding block to block the movement of the sliding block on the sliding frame, so as to realize the positioning of the sliding block, so that the sliding block can block the movement of the connecting ring, thereby realizing the positioning of the connecting ring and stably using the ground pile.
[0038] 2. After the bottom of the blocking plate is fitted with the top of the matching frame, the blocking plate can prevent the matching frame from separating from the docking frame, so that the matching frame can be installed on the blocking frame and the auxiliary forming tube can be installed on the base;
[0039] 3. After the handle is pushed and moved, the handle can push the control frame to move, so that the bottom of the control frame moves inside the docking frame, and the control frame can squeeze the round rod downward, so that the round rod can press the right end of the middle rod to slide downward, so that the left end of the middle rod can tilt upward, thereby driving the fitting rod to separate from the fitting block, first unlocking the driving block and the blocking plate, and then pushing the pushing frame upward to move, so that the pushing frame can push the pushing rod, and the pushing rod pushes the driving rod to move, so that the driving rod can drive the blocking block to separate from the matching frame, thereby unlocking the matching frame, so that the matching frame can be separated from the docking frame, thereby unlocking and disassembling the auxiliary forming tube;
[0040] 4. After the unlocking frame is pressed downward, the unlocking frame can push the unlocking rod, and the unlocking rod can push the insertion frame to disengage from the docking block to unlock the connecting rod, so that the connecting rod can slide freely on the connecting rod. At this time, the connecting rod can be rotated on the connecting frame to adjust the position of the fitting frame, and then the fitting frame can be fitted with various types of auxiliary forming tubes to fit various auxiliary forming tubes. Then, the insertion frame is released to engage with the docking block, and the insertion frame can connect the docking block and the connecting rod to block the movement of the docking block on the connecting rod. The support rod and the connecting rod can be connected so that the support rod can support the connecting rod and the connecting rod cannot rotate on the connecting frame, so that the connecting frame can stably position the auxiliary forming tube.
[0041] The present invention: by adjusting the position of the ground pile on the base, the length of the ground pile at the bottom of the base can be extended to insert it into various depths and seabeds. The auxiliary forming tube inside the base can assist in shaping the high-cap pile, and the auxiliary forming tube can also be replaced to assist in shaping high-cap piles of various shapes and sizes, which is quick and convenient. BRIEF DESCRIPTION OF THE DRAWINGS
[0042] Figure 1 A three-dimensional schematic diagram of the main structure of an embodiment of the present application;
[0043] Figure 2 A three-dimensional side view schematic diagram of the structure of an embodiment of the present application;
[0044] Figure 3 A three-dimensional schematic diagram of a top view of the structure of an embodiment of the present application;
[0045] Figure 4 A bottom-up three-dimensional schematic diagram of the structure of an embodiment of the present application;
[0046] Figure 5 This is a three-dimensional schematic diagram of the right side of the structural adjustment mechanism of an embodiment of the present application;
[0047] Figure 6 This is a three-dimensional schematic diagram of the left side of the structural adjustment mechanism of an embodiment of the present application;
[0048] Figure 7 A three-dimensional schematic diagram of the structural docking mechanism of an embodiment of the present application;
[0049] Figure 8 A three-dimensional schematic diagram of the structural unlocking mechanism of an embodiment of the present application;
[0050] Figure 9 This is a three-dimensional schematic diagram of the structural positioning mechanism according to an embodiment of the present application;
[0051] Figure 10 This is a three-dimensional schematic diagram of the structural positioning mechanism of an embodiment of the present application.
[0052] In the figure: 1. Base; 2. Ground pile; 3. Connecting ring; 4. Auxiliary forming tube; 5. Matching frame; 6. Docking frame; 7. Blocking plate; 8. Driving block; 9. Return spring; 10. Fixed block; 11. Fitting block; 12. Fitting rod; 13. Intermediate rod; 14. Torsion spring; 15. Rotating frame; 16. Control frame; 17. Handle; 18. Pushing frame; 19. Pushing rod; 20. Driving rod; 21. Sliding block; 22. Sliding frame ; 23. Positioning frame; 24. Positioning spring; 25. Spring seat; 26. Driving frame; 27. Sliding plate; 28. Limiting block; 29. Pressing frame; 30. Round block; 31. Positioning block; 32. Connecting frame; 33. Connecting rod; 34. Fitting frame; 35. Support rod; 36. Docking block; 37. Insertion frame; 38. Tension spring; 39. Auxiliary block; 40. Insertion block; 41. Unlocking frame; 42. Unlocking rod; 43. Round rod. DETAILED DESCRIPTION
[0053] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention. Example
[0054] refer to Figure 1-10 In this embodiment, a rapid prototyping auxiliary device for high-cap pile construction is proposed, comprising:
[0055] Base 1;
[0056] An auxiliary forming mechanism is fixedly mounted on the base 1 and includes: a plurality of ground piles 2, a connecting ring 3, four auxiliary forming tubes 4, four matching frames 5, and four docking frames 6. The ground piles 2 are fixedly mounted on the bottom of the connecting ring 3 and pass through the base 1. The four docking frames 6 are all fixedly connected to the inner side of the base 1. The four matching frames 5 are respectively fixedly connected to the four auxiliary forming tubes 4. The outer sides of the matching frames 5 are in sliding contact with the inner walls of the docking frames 6.
[0057] An adjustment mechanism, which is used to adjust the extension length of the ground pile 2 on the base 1;
[0058] Docking mechanism, the docking mechanism is used to install the matching frame 5 on the docking frame 6;
[0059] Unlocking mechanism, which is used to unlock the matching frame 5 on the docking frame 6;
[0060] A positioning mechanism is used to position the auxiliary forming tube 4 on the inner side of the base 1;
[0061] There are two groups of adjustment mechanisms, and four groups of docking mechanisms, unlocking mechanisms and positioning mechanisms. The adjustment mechanisms cooperate with the base 1 and the connecting ring 3 respectively, the docking mechanisms cooperate with the matching frame 5, the docking frame 6 and the unlocking mechanism respectively, and the positioning mechanisms cooperate with the base 1 and the auxiliary forming tube 4 respectively.
[0062] With the above structure, by adjusting the position of the ground pile 2 on the base 1, the length of the ground pile 2 at the bottom of the base 1 can be extended to insert it into various depths and seabeds. The auxiliary forming tube 4 on the inside of the base 1 can assist in shaping the high-cap pile, and the auxiliary forming tube 4 can also be replaced to assist in shaping high-cap piles of various shapes and sizes, which is quick and convenient.
[0063] As a preferred implementation of this embodiment, the adjustment mechanism includes: a sliding block 21, a sliding frame 22, a positioning frame 23, a driving frame 26, a sliding plate 27, a limiting block 28 and a pressing frame 29;
[0064] The sliding block 21 is fixedly mounted on the connecting ring 3, the sliding frame 22 is fixedly mounted on the base 1, and the positioning frame 23 is slidably connected to the bottom of the sliding block 21. The positioning frame 23 is fixedly connected to the driving frame 26, which cooperates with the sliding plate 27. The sliding plate 27 is slidably connected to the sliding block 21, and the bottom outer side of the sliding plate 27 slides in contact with the inner wall of the driving frame 26. The pressing frame 29 is rotatably connected to the top of the sliding block 21 and cooperates with the sliding plate 27. The limiting block 28 is fixedly mounted on the driving frame 26, and the bottom of the limiting block 28 slides in contact with the top of the driving frame 26. With the above structure, the length of the ground pile 2 at the bottom of the base 1 can be extended by adjusting the position of the ground pile 2 on the base 1, allowing it to be inserted into various depths and seabeds. The auxiliary forming tube 4 inside the base 1 can assist in forming the high cap pile. The auxiliary forming tube 4 can also be replaced to assist in forming high cap piles of various shapes and sizes, which is quick and convenient.
[0065] The positioning frame 23 is then released, so that the positioning frame 23 can automatically engage with the sliding frame 22, and the positioning frame 23 can connect the sliding frame 22 and the sliding block 21 to block the sliding block 21 from moving on the sliding frame 22, thereby realizing the positioning of the sliding block 21, so that the sliding block 21 can block the connecting ring 3 from moving, thereby realizing the positioning of the connecting ring 3, and stably using the ground pile 2.
[0066] As a preferred implementation of this embodiment, the docking mechanism includes: a blocking plate 7, a driving block 8, a return spring 9, a fixing block 10 and a fitting block 11;
[0067] The blocking plate 7 is slidably connected to the top of the docking frame 6, the blocking plate 7 is fixedly connected to the driving block 8, the driving block 8 is fixedly connected to the return spring 9, the return spring 9 is fixedly connected to the fixed block 10, the fixed block 10 is fixedly installed on the top of the matching frame 5, and the fitting block 11 is fixedly installed on the top of the driving block 8.
[0068] Furthermore, after the bottom of the blocking plate 7 is fitted with the top of the matching frame 5 , the blocking plate 7 can prevent the matching frame 5 from being separated from the docking frame 6 , so that the matching frame 5 can be installed on the blocking frame, and the auxiliary forming tube 4 can be installed on the base 1 .
[0069] As a preferred implementation of this embodiment, the unlocking mechanism includes: a fitting rod 12, an intermediate rod 13, a torsion spring 14, a rotating frame 15, a control frame 16, a handle 17, a pushing frame 18, a pushing rod 19, a driving rod 20 and a round rod 43;
[0070] The laminating rod 12 is fixedly connected to the middle rod 13, the laminating rod 12 is in sliding contact with the laminating block 11, the middle rod 13 is rotatably connected to the rotating frame 15, the rotating frame 15 is fixedly installed on the top of the matching frame 5, the torsion spring 14 is fixedly connected to the rotating frame 15 and the middle rod 13 respectively, the bottom of the control frame 16 is slidably connected to the inner side of the matching frame 5, the top of the control frame 16 is in sliding contact with the middle rod 13, the handle 17 is fixedly installed on the top of the control frame 16, the round rod 43 is fixedly connected to the middle rod 13, the round rod 43 is slidably connected to the control frame 16, the pushing frame 18 is slidably connected to the docking frame 6, the pushing frame 18 is rotatably connected to the pushing rod 19, the pushing rod 19 is fixedly connected to the driving rod 20, and the driving rod 20 is fixedly connected to the driving block 8.
[0071] Furthermore, after the handle 17 is pushed and moved, the handle 17 can push the control frame 16 to move, so that the bottom of the control frame 16 moves inside the docking frame 6, and the control frame 16 can squeeze the round rod 43 downward, so that the round rod 43 can press the right end of the intermediate rod 13 to slide downward, so that the left end of the intermediate rod 13 can be tilted upward, to drive the fitting rod 12 to disengage from the fitting block 11, first unlock the driving block 8 and the blocking plate 7, and then push the pushing frame 18 upward to move, so that the pushing frame 18 can push the pushing rod 19, and the pushing rod 19 then pushes the driving rod 20 to move, so that the driving rod 20 can drive the blocking block to disengage from the matching frame 5, thereby unlocking the matching frame 5, so that the matching frame 5 can be disengaged from the docking frame 6, to achieve unlocking and disassembly of the auxiliary forming tube 4.
[0072] As a preferred implementation of this embodiment, the positioning mechanism includes: a connecting frame 32, a connecting rod 33, a fitting frame 34, a support rod 35, a docking block 36, an insertion frame 37, an unlocking frame 41 and an unlocking rod 42;
[0073] The connecting frame 32 is fixedly installed on the inner side of the base 1, the connecting rod 33 is rotatably connected to the connecting frame 32, the fitting frame 34 is rotatably connected to the top of the connecting rod 33, the support rod 35 is rotatably connected to the rotating frame 15 and the docking block 36 respectively, the docking block 36 is slidably connected to the outside of the connecting rod 33, the insertion frame 37 is slidably connected to the connecting rod 33, the insertion frame 37 is rotatably connected to the unlocking rod 42, the unlocking rod 42 is rotatably connected to the unlocking frame 41, and the unlocking frame 41 is slidably connected to the connecting rod 33.
[0074] When the locking cam 35 is in the unlocked position, the locking cam 35 is released, and the locking cam 35 is in the unlocked position, so that the locking cam 35 can be locked and locked.
[0075] In this embodiment, a round block 30 is fixedly mounted on the rear side of the sliding plate 27 , and the outer side of the round block 30 is slidably connected to the inner side of the pressing frame 29 .
[0076] Furthermore, the round block 30 is used to connect the pressing frame 29 and the sliding plate 27 , so that when the pressing frame 29 is pressed, it can press the sliding plate 27 to slide downward, thereby unlocking the sliding block 21 .
[0077] In this embodiment, a positioning spring 24 is fixedly mounted on the positioning frame 23 , a spring seat 25 is fixedly mounted on the positioning spring 24 , and the spring seat 25 is fixedly mounted on the bottom of the sliding block 21 .
[0078] Furthermore, the positioning spring 24 is used to reset the positioning frame 23 so that the positioning frame 23 can automatically position the position of the sliding block 21 .
[0079] In this embodiment, a plurality of positioning slots arranged at equal intervals are formed on the sliding frame 22 , and a positioning block 31 is fixedly mounted on the left side of the positioning frame 23 , and the outer side of the positioning block 31 is detachably engaged with the inner wall of the positioning slot.
[0080] Furthermore, after the positioning block 31 is inserted into the inner side of the positioning groove, the positioning block 31 can block the movement of the sliding block 21 , thereby achieving the positioning of the sliding block 21 .
[0081] In this embodiment, a plurality of insertion slots arranged at equal intervals are provided on the docking block 36, and a plurality of insertion blocks 40 arranged at equal intervals are fixedly mounted on the insertion frame 37. The outer sides of the insertion blocks 40 are detachably engaged with the inner walls of the insertion slots.
[0082] Furthermore, after the insertion block 40 is inserted into the inner side of the insertion groove, the insertion block 40 can block the movement of the docking block 36, thereby achieving the positioning of the docking block 36.
[0083] In this embodiment, a symmetrically arranged tension spring 38 is fixedly installed on the left side of the insertion frame 37. There are two pulling springs. The two tension springs 38 are fixedly installed with an auxiliary block 39 on the left side. The auxiliary block 39 is fixedly installed on the front side of the connecting rod 33.
[0084] Furthermore, the tension spring 38 is used to reset the insertion rack 37 so that the insertion rack 37 can automatically position the docking block 36 .
[0085] Working principle: When it is necessary to form the high-cap pile, first install the base 1 at the position where the high-cap pile is formed, and now press the pressing frame 29 on the sliding block 21. After the pressing frame 29 is pressed, the pressing frame 29 can press the sliding plate 27 downward, so that the sliding plate 27 can move downward to insert into the inner side of the driving frame 26. The driving frame 26 can drive the positioning frame 23 to disengage from the sliding frame 22 to unlock the sliding block 21. After both sliding blocks 21 are unlocked, the connecting ring 3 can be pressed downward on the top of the base 1. The connecting ring 3 can extend the pile 2 downward, so that the pile 2 can go deeper into the inside of the seabed, and then release the positioning frame 23 so that the positioning frame 23 can automatically engage with the sliding frame 22, and the positioning frame 23 can move the sliding frame 22. The auxiliary forming tube 4 is located on the inner side of the base 1 and is supported by four matching frames 5, four docking frames 6 and four fitting frames 34. ... After 7 is pushed and moved, the handle 17 can push the control frame 16 to move, so that the bottom of the control frame 16 moves inside the docking frame 6, and the control frame 16 can squeeze the round rod 43 downward, so that the round rod 43 can press the right end of the middle rod 13 to slide downward, so that the left end of the middle rod 13 can tilt upward, to drive the fitting rod 12 to separate from the fitting block 11, first unlock the driving block 8 and the blocking plate 7, and then push the pushing frame 18 upward to move, so that the pushing frame 18 can push the pushing rod 19, and the pushing rod 19 then pushes the driving rod 20 to move, so that the driving rod 20 can drive the blocking block to separate from the matching frame 5, thereby unlocking the matching frame 5, so that the matching frame 5 can be separated from the docking frame 6, to achieve unlocking and disassembly of the auxiliary forming tube 4, and then the four connecting rods are connected. The unlocking frames 41 are pressed downwards, and the unlocking frames 41 can push the unlocking rod 42, and the unlocking rod 42 can push the insertion frame 37 to disengage from the docking block 36 to unlock the connecting rod 33, so that the connecting rod 33 can slide freely on the connecting rod 33. At this time, the connecting rod 33 can be rotated on the connecting frame 32 to adjust the position of the fitting frame 34, so that the fitting frame 34 can release the auxiliary forming tube 4 to install the auxiliary forming tube 4, and then the base 1 is lifted out to complete the forming of the high-cap pile, and then the four matching frames 5 on the four auxiliary forming tubes 4 are respectively inserted into the four docking frames 6 on the inner side of the base 1, and then the four fitting frames 34 are adjusted to fit the tops of the four auxiliary forming tubes 4 respectively, and finally the blocking block is released.The blocking block can be reset by the rebound of the reset spring 9 and moved to the top of the matching frame 5. After the bottom of the blocking plate 7 is in contact with the top of the matching frame 5, the blocking plate 7 can prevent the matching frame 5 from being separated from the docking frame 6, so that the matching frame 5 can be installed on the blocking frame, and the auxiliary forming tube 4 can be installed on the base 1. At this time, the middle rod 13 will also be reset, and the middle rod 13 can drive the fitting rod 12 to fit with the fitting block 11, so that the fitting rod 12 can block the driving block 8 and the blocking plate 7 from moving, thereby realizing the positioning of the blocking plate 7, so that the blocking plate 7 can stably position the position of the matching frame 5, and then release the unlocking frame 41, and then allow the fitting frame 34 to fit with the top outer side of the auxiliary forming tube 4, and then release the unlocking frame 41. The unlocking frame 41 can release the insertion frame 37, so that the insertion frame 37 engages with the docking block 36. The insertion frame 37 can connect the docking block 36 with the connecting rod 33 to block the docking block 36 from moving on the connecting rod 33. The support rod 35 and the connecting rod 33 can be connected so that the support rod 35 can support the connecting rod 33. The connecting rod 33 cannot rotate on the connecting frame 32, so that the connecting frame 32 can stably position the auxiliary forming tube 4. After the bottom of the blocking plate 7 is in contact with the top of the matching frame 5, the blocking plate 7 can prevent the matching frame 5 from separating from the docking frame 6, so that the matching frame 5 can be installed on the blocking frame, the auxiliary forming tube 4 can be installed on the base 1, and the subsequent high-cap pile can be formed.
[0086] Finally, it should be noted that the above is only a preferred embodiment of the present invention and is not intended to limit the present invention. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art can still modify the technical solutions described in the aforementioned embodiments or make equivalent substitutions for some of the technical features therein. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.
Claims
1. A rapid prototyping auxiliary device for high cap pile construction, characterized in that: include: Base (1); An auxiliary forming mechanism, the auxiliary forming mechanism is fixedly mounted on a base (1), and the auxiliary forming mechanism comprises: a plurality of ground piles (2), a connecting ring (3), four auxiliary forming tubes (4), four matching frames (5) and four docking frames (6), the ground piles (2) are fixedly mounted on the bottom of the connecting ring (3), the ground piles (2) pass through the base (1), the four docking frames (6) are all fixedly connected to the inner side of the base (1), the four matching frames (5) are respectively fixedly connected to the four auxiliary forming tubes (4), and the outer sides of the matching frames (5) are in sliding contact with the inner walls of the docking frames (6); An adjusting mechanism, the adjusting mechanism being used to adjust the extension length of the ground pile (2) on the base (1); A docking mechanism, the docking mechanism is used to mount the matching frame (5) on the docking frame (6); An unlocking mechanism, the unlocking mechanism being used to unlock the matching frame (5) on the docking frame (6); A positioning mechanism, the positioning mechanism is used to position the auxiliary forming tube (4) on the inner side of the base (1); The number of adjustment mechanisms is two, the number of docking mechanisms, unlocking mechanisms and positioning mechanisms are four, the adjustment mechanisms are matched with the base (1) and the connecting ring (3) respectively, the docking mechanisms are matched with the matching frame (5), the docking frame (6) and the unlocking mechanism respectively, and the positioning mechanisms are matched with the base (1) and the auxiliary forming tube (4) respectively. The docking mechanism comprises: a blocking plate (7), a driving block (8), a return spring (9), a fixing block (10) and a fitting block (11); The blocking plate (7) is slidably connected to the top of the docking frame (6), the blocking plate (7) is fixedly connected to the driving block (8), the driving block (8) is fixedly connected to the return spring (9), the return spring (9) is fixedly connected to the fixed block (10), the fixed block (10) is fixedly mounted on the top of the matching frame (5), and the fitting block (11) is fixedly mounted on the top of the driving block (8); The unlocking mechanism comprises: a fitting rod (12), an intermediate rod (13), a torsion spring (14), a rotating frame (15), a control frame (16), a handle (17), a pushing frame (18), a pushing rod (19), a driving rod (20) and a round rod (43); The laminating rod (12) is fixedly connected to the intermediate rod (13), the laminating rod (12) is in sliding contact with the laminating block (11), the intermediate rod (13) is rotatably connected to the rotating frame (15), the rotating frame (15) is fixedly mounted on the top of the matching frame (5), the torsion spring (14) is fixedly connected to the rotating frame (15) and the intermediate rod (13), the bottom of the control frame (16) is slidably connected to the inner side of the matching frame (5), the top of the control frame (16) is in sliding contact with the intermediate rod (13), the handle (17) is fixedly mounted on the top of the control frame (16), the round rod (43) is fixedly connected to the intermediate rod (13), the round rod (43) is slidably connected to the control frame (16), the pushing frame (18) is slidably connected to the docking frame (6), the pushing frame (18) is rotatably connected to the pushing rod (19), the pushing rod (19) is fixedly connected to the driving rod (20), and the driving rod (20) is fixedly connected to the driving block (8).
2. A rapid prototyping auxiliary device for high cap pile construction according to claim 1, characterized in that: The adjustment mechanism comprises: a sliding block (21), a sliding frame (22), a positioning frame (23), a driving frame (26), a sliding plate (27), a limiting block (28) and a pressing frame (29); The sliding block (21) is fixedly mounted on the connecting ring (3), the sliding frame (22) is fixedly mounted on the base (1), the positioning frame (23) is slidably connected to the bottom of the sliding block (21), the positioning frame (23) is fixedly connected to the driving frame (26), the driving frame (26) cooperates with the sliding plate (27), the sliding plate (27) is slidably connected to the sliding block (21), the bottom outer side of the sliding plate (27) is in sliding contact with the inner wall of the driving frame (26), the pressing frame (29) is rotatably connected to the top of the sliding block (21), the pressing frame (29) cooperates with the sliding plate (27), the limit block (28) is fixedly mounted on the driving frame (26), and the bottom of the limit block (28) is in sliding contact with the top of the driving frame (26).
3. The rapid prototyping auxiliary device for high cap pile construction according to claim 1, characterized in that: The positioning mechanism comprises: a connecting frame (32), a connecting rod (33), a fitting frame (34), a supporting rod (35), a docking block (36), an insertion frame (37), an unlocking frame (41) and an unlocking rod (42); The connecting frame (32) is fixedly mounted on the inner side of the base (1), the connecting rod (33) is rotatably connected to the connecting frame (32), the fitting frame (34) is rotatably connected to the top end of the connecting rod (33), the supporting rod (35) is rotatably connected to the rotating frame (15) and the docking block (36), the docking block (36) is slidably connected to the outer side of the connecting rod (33), the insertion frame (37) is slidably connected to the connecting rod (33), the insertion frame (37) is rotatably connected to the unlocking rod (42), the unlocking rod (42) is rotatably connected to the unlocking frame (41), and the unlocking frame (41) is slidably connected to the connecting rod (33).
4. The rapid prototyping auxiliary device for high cap pile construction according to claim 2, characterized in that: A round block (30) is fixedly mounted on the rear side of the sliding plate (27), and the outer side of the round block (30) is slidably connected to the inner side of the pressing frame (29).
5. The rapid prototyping auxiliary device for high cap pile construction according to claim 2, characterized in that: A positioning spring (24) is fixedly mounted on the positioning frame (23), a spring seat (25) is fixedly mounted on the positioning spring (24), and the spring seat (25) is fixedly mounted on the bottom of the sliding block (21).
6. The rapid prototyping auxiliary device for high cap pile construction according to claim 2, characterized in that: The sliding frame (22) is provided with a plurality of positioning grooves arranged at equal intervals. A positioning block (31) is fixedly mounted on the left side of the positioning frame (23). The outer side of the positioning block (31) is detachably engaged with the inner wall of the positioning groove.
7. The rapid prototyping auxiliary device for high cap pile construction according to claim 3, characterized in that: The docking block (36) is provided with a plurality of insertion slots arranged at equal intervals, and the insertion frame (37) is fixedly provided with a plurality of insertion blocks (40) arranged at equal intervals, wherein the outer sides of the insertion blocks (40) are detachably engaged with the inner walls of the insertion slots.
8. The rapid prototyping auxiliary device for high cap pile construction according to claim 3, characterized in that: A symmetrically arranged tension spring (38) is fixedly installed on the left side of the insertion frame (37). The number of the pulling springs is two. An auxiliary block (39) is fixedly installed on the left side of the two tension springs (38). The auxiliary block (39) is fixedly installed on the front side of the connecting rod (33).
Citation Information
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