A pile hole sediment measuring bucket
By using a padding paper module in the roll-up device of the sediment measuring bucket to absorb moisture from the rope, the problem of rope performance degradation in waterlogged environments was solved, thus protecting the rope, improving measurement accuracy, and increasing construction efficiency.
Patent Information
- Application Number
- CN202511454749.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-13
- Publication Date
- 2026-02-06
- Estimated Expiration
- 2045-10-13
AI Technical Summary
The existing sediment measurement bucket experiences a decline in rope performance in waterlogged environments, affecting measurement accuracy and project schedule.
A pile hole sediment measurement bucket is designed, which uses a padding paper module inside the rolling device to absorb moisture from the rope. The padding paper can be installed and removed through a padding paper removal and assembly module, separating adjacent rope layers and protecting rope performance.
It effectively reduces the water content of ropes, ensuring rope performance and service life, and improving measurement accuracy and construction efficiency.
Smart Images

Figure CN120906193B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of sediment thickness measurement, in particular to a pile hole sediment measuring barrel. BACKGROUND
[0002] Pile hole sediment thickness measurement is a key link to ensure the quality of cast-in-place piles, which can ensure the pile bottom bearing capacity, avoid pile settlement, ensure construction standard, and even improve economic benefits.
[0003] In the prior art, measurement is realized by measuring rope method, measuring instrument or core drilling method. However, the three methods have defects respectively. Specifically, the measuring rope method needs to be operated under the condition of no water or static water to avoid water flow interference with the judgment of the weight hitting the bottom; the measuring accuracy of the measuring instrument is greatly affected by the environment, especially when the water or mud specific gravity is large, and the operation requirement is high; the core drilling method needs a long time and has the risk of missed detection and misjudgment.
[0004] In view of this, a measuring barrel for sediment thickness measurement is designed in the prior art. However, the existing measuring barrel has the following problems: when testing in a water environment, the rope of the measuring barrel will be repeatedly immersed in water, resulting in a decrease in the performance of the rope; however, during continuous measurement, it takes time to dry or replace the rope, which slows down the construction period. SUMMARY
[0005] The technical problem to be solved by the present application is that the performance of the rope is reduced due to immersion in water during the measuring operation of the sediment measuring barrel. The purpose is to provide a pile hole sediment measuring barrel to solve the above problems.
[0006] The present application is realized by the following technical solutions:
[0007] A pile hole sediment measuring barrel, comprising:
[0008] a measuring barrel body for measuring the thickness of the sediment in the pile hole;
[0009] a winding drum device connected to the measuring barrel body by a rope to drive the measuring barrel to ascend and descend along the pile hole;
[0010] The winding drum device comprises a paper pad and a paper pad dismounting module. The paper pad is used to absorb moisture on the rope, and the paper pad dismounting module is used to dismount the paper pad. Accordingly, when the rope is stored in the winding drum device and forms a plurality of rope layers, the paper pad dismounting module installs the paper pad between the adjacent two rope layers. When the rope is released outward, the paper pad dismounting module dismounts the paper pad covering the rope layer.
[0011] In a possible design, the paper pad comprises a body part in the shape of a fold line and an additional part outside the body part. The body part is provided with an additional slot for the rope to pass through, and the additional part is provided with a jack.
[0012] In a possible design, the reel device includes a box body and a storage reel rotatably arranged in the box body, and the storage reel is used to store or release a rope;
[0013] The paper pad dismounting module includes an upper mounting unit, a lower dismounting unit, a paper pad storage unit and a transfer unit;
[0014] The upper mounting unit is arranged on the top plate of the box body and above the storage reel, and the lower dismounting unit is arranged on the bottom plate of the box body and below the storage reel;
[0015] The paper pad storage unit is arranged in the box body and used to store paper pads, and correspondingly, a plurality of paper pads are placed in the paper pad storage unit; the transfer unit is arranged in the box body and used to transfer the paper pads in the paper pad storage unit to below the upper mounting unit.
[0016] In a possible design, the upper mounting unit is provided with four upper mounting units and arranged outside four top corners of the vertical projection of the storage reel respectively;
[0017] The upper mounting unit includes a first sliding rail and a first telescopic rod;
[0018] The first sliding rail is fixed on the top plate of the box body, and the upper end of the first telescopic rod is slidingly arranged on the first sliding rail, and the lower end of the first telescopic rod faces the storage reel;
[0019] When the transfer unit transports the paper pad to below the first telescopic rod, the first telescopic rod extends downward and is connected to the paper pad; the transfer unit moves and is staggered, the first telescopic rod extends downward again, and the paper pad is wrapped on the storage reel.
[0020] Correspondingly, the paper pad is provided with a hole adapted to the first telescopic rod.
[0021] In a possible design, the paper pad storage unit includes a storage box, a pushing subunit and a driving subunit;
[0022] The storage box is fixed on the box body and used to store paper pads, and correspondingly, a plurality of paper pads are stacked in the storage box in sequence;
[0023] The storage box has opposite two sides, one side is an open side facing the storage reel, and the other side is a closed side facing the side wall of the box body; the transfer unit is arranged on the open side of the storage box and used to transfer the paper pads, and the pushing subunit is arranged on the closed side of the storage box and used to push the paper pad box to move on the open side;
[0024] The driving subunit is connected to the storage box, and the output end of the driving subunit is connected to the transfer unit, so that the transfer unit can move and be staggered with the first telescopic rod.
[0025] In a possible design, the transfer unit includes a second sliding rail and a transfer seat;
[0026] One end of the second slide rail passes through the open side of the storage box and is connected to the driving subunit, and the other end of the second slide rail extends between the first telescopic rod and the storage cylinder;
[0027] The transfer seat is slidably arranged on the second slide rail and detachably connected to the pad paper; accordingly, when the pad paper is located in the storage box, the pad paper has a first connecting side facing the transfer seat and a second connecting side facing away from the transfer seat, the first connecting side is provided with a glue area for the transfer seat, and the second connecting side is provided with a matched anti-adhesion area, and the glue area and the anti-adhesion area are located on the additional part of the pad paper; accordingly, the second telescopic rod of the pushing subunit faces the additional part, and the transfer seat is provided with a recessed hole matched with the jack.
[0028] In a possible design, the two ends of the storage cylinder are respectively provided with a guide matched with the upper mounting unit;
[0029] The guide includes a guide plate and a first base, the guide plate is provided with two and located on the two sides of the first base respectively, the first base connects the guide plate and is used for driving the guide plate to reciprocate, and the moving direction of the guide plate is parallel to the first slide rail;
[0030] The guide plate has an arc-shaped outer edge away from the first base and an arc-shaped guide groove arranged along the arc-shaped outer edge, the upper end opening of the arc-shaped guide groove is aligned with the first telescopic rod, and the lower end opening of the arc-shaped guide groove faces the adjacent guide plate.
[0031] In a possible design, the lower end of each of the two guide plates is provided with a separation groove for separating the first telescopic rod from the pad paper, when the first telescopic rod slides along the arc-shaped guide groove to the lower end opening of the arc-shaped guide groove, the connection part of the first telescopic rod and the pad paper moves into the separation groove, so that the pad paper abuts against the side wall of the separation groove;
[0032] The first telescopic rod is provided with an outwardly protruding pad, when the first telescopic rod slides along the arc-shaped guide groove, the first telescopic rod slides along the arc-shaped guide groove through the pad, so that the connection part of the first telescopic rod and the pad paper is raised and suspended in the arc-shaped guide groove; and the lower end opening of the arc-shaped guide groove is provided with a groove, one side of the groove facing the first base is configured as a blocking surface for limiting the forward movement of the pad, and the other side of the groove facing away from the first base is configured as a curved surface for the pad to get out of the groove.
[0033] In a possible design, the lower dismounting unit is provided with two and located at the two ends of the storage cylinder respectively;
[0034] The lower dismounting unit includes a third slide rail and a lower dismounting device;
[0035] The third slide rail is fixed on the bottom plate of the box body;
[0036] The lower disassembling device comprises a second base, a sliding block, a clamping plate and an additional seat; the second base is slidingly arranged on the third sliding rail, the second base is provided with a vertical first sliding groove and a rotating shaft arranged on the first sliding groove, the rotating shaft is provided with an outward convex spiral strip; the sliding block is slidingly arranged on the first sliding groove, and correspondingly, the sliding block is provided with a first spiral groove matched with the spiral strip; the clamping plate is slidingly arranged on the sliding block and is used for clamping the paper pad, and correspondingly, the clamping plate is provided with a second spiral groove matched with the spiral strip; the additional seat is connected to the sliding block through an additional rod, and the additional seat is used for pushing and pulling the sliding block, so that one of the first spiral groove and the second spiral groove is connected to the spiral strip;
[0037] Correspondingly, when the first spiral groove is connected to the spiral strip, the rotating shaft is used for driving the sliding block to reciprocate along the first sliding groove; when the second spiral groove is connected to the spiral strip, the rotating shaft is used for driving the clamping plate to clamp or release the paper pad;
[0038] Correspondingly, the first spiral groove and the second spiral groove both comprise a connecting area connected to the spiral strip and a separation area separated from the spiral strip.
[0039] In a possible design, the spiral strip is configured as an inflatable structure, and correspondingly, when the spiral strip is inserted into the first spiral groove or the second spiral groove, the spiral strip is inflated and abuts against the side wall of the spiral groove; when the spiral strip is switched from one of the first spiral groove and the second spiral groove to the other, the spiral strip is deflated and separated from the side wall of the spiral groove.
[0040] The additional seat is provided with a telescopic clamping plate, when the spiral strip is switched from one of the first spiral groove and the second spiral groove to the other, the telescopic clamping plate is retracted and clamps the second base; when the spiral strip is inserted into the first spiral groove or the second spiral groove, the telescopic clamping plate is away from the second base.
[0041] Compared with the prior art, the present application has the following advantages and beneficial effects:
[0042] When the immersed rope is stored in the reel device, the paper pad is arranged between adjacent rope layers, water is absorbed and temporary treatment is realized through the paper pad, and the water content of the rope is reduced; the paper pad also separates the adjacent rope layers, and the exchange of moisture is reduced. Based on this, the performance and service life of the rope are guaranteed, and the protection of the rope is realized. The paper pad disassembling module is used to realize the movement of the paper pad, so as to cooperate with the storage or release of the rope, and the paper pad is installed or disassembled. BRIEF DESCRIPTION OF DRAWINGS
[0043] In order to more clearly illustrate the technical scheme of the exemplary embodiments of the present application, the following will briefly introduce the drawings needed to be used in the embodiments. It should be understood that the following drawings only show some embodiments of the present application, and therefore should not be regarded as a limitation on the scope. Other related drawings can also be obtained by those skilled in the art without creative labor. In the drawings:
[0044] Figure 1 It is a structure schematic diagram of a pile hole sediment measuring barrel and a partial enlarged structure schematic diagram thereof.
[0045] Figure 2 It is a structure schematic diagram when the paper pad is located above the storage cylinder.
[0046] Figure 3 It is a structure schematic diagram of the paper pad when the body part is vertical and the additional part is horizontal.
[0047] Figure 4 It is a schematic diagram of the cooperation of the first telescopic rod and the guide.
[0048] Figure 5 and Figure 6 It is a structure schematic diagram of the disassembler when the spiral strip connects the first spiral groove and the second spiral groove, respectively.
[0049] Figure 7 It is a sectional structure schematic diagram of the sliding block.
[0050] Figure 8 It is a structure schematic diagram of the clamping plate.
[0051] The marks in the drawings and the corresponding names of the parts are as follows:
[0052] 100, measuring barrel body; 200, winding drum device; 201, box body; 202, storage cylinder; 300, rope; 1, paper pad; 11, body part; 12, additional part; 13, additional groove; 14, insertion hole; 2, upper mounting unit; 21, first sliding rail; 22, first telescopic rod; 23, cushion block; 3, disassembly unit; 31, third sliding rail; 32, disassembler; 301, second base; 302, sliding block; 303, clamping plate; 304, additional seat; 305, first sliding groove; 306, rotating shaft; 307, first spiral groove; 308, second spiral groove; 309, additional rod; 310, telescopic clamping plate; 311, connection area; 312, separation area; 313, through groove; 314, guide rod; 315, fixed plate; 4, paper pad storage unit; 41, storage box; 42, pushing subunit; 43, driving subunit; 5, transfer unit; 51, second sliding rail; 52, transfer seat; 6, guide; 61, guide plate; 62, first base; 63, arc-shaped guide groove; 64, separation groove; 65, groove. DETAILED DESCRIPTION
[0053] In order to make the purpose, technical scheme and advantages of the present application more clear and obvious, the present application is further described in detail below in combination with examples and drawings. The schematic embodiments of the present application and the description thereof are only used to explain the present application, and do not limit the present application.
[0054] In the following description, numerous specific details are set forth in order to provide a thorough understanding of the invention. However, it will be apparent to those skilled in the art that these specific details are not necessary to practice the invention. In other embodiments, well-known structures, circuits, materials, or methods have not been specifically described in order to avoid obscuring the invention.
[0055] Throughout this specification, references to "an embodiment," "an example," or "an example" mean that a particular feature, structure, or characteristic described in connection with that embodiment or example is included in at least one embodiment of the invention. Therefore, the phrases "an embodiment," "an example," "an example," or "an example" appearing in various places throughout the specification do not necessarily refer to the same embodiment or example. Furthermore, specific features, structures, or characteristics can be combined in one or more embodiments or examples in any suitable combination and / or sub-combination. Moreover, those skilled in the art will understand that the illustrations provided herein are for illustrative purposes and are not necessarily drawn to scale. The term "and / or" as used herein includes any and all combinations of one or more of the associated listed items.
[0056] In the description of this invention, the terms "front", "rear", "left", "right", "up", "down", "vertical", "horizontal", "high", "low", "inner", and "outer" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limiting the scope of protection of this invention.
[0057] Example:
[0058] like Figures 1-8 As shown, a sediment measuring bucket for pile holes includes:
[0059] The measuring bucket body 100 is used to measure the thickness of sediment inside the pile hole;
[0060] The drum device 200 is connected to the measuring bucket body 100 via a rope 300 to drive the measuring bucket to rise and fall along the pile hole;
[0061] The winding device 200 includes a padding paper 1 and a padding paper removal and installation module. The padding paper 1 is used to absorb moisture on the rope 300, and the padding paper removal and installation module is used to remove and install the padding paper 1. Accordingly, when the rope 300 is stored in the winding device 200 and forms multiple rope layers, the padding paper removal and installation module installs the padding paper 1 between two adjacent rope layers. When the rope 300 is released to the outside, the padding paper removal and installation module removes the padding paper 1 covering the rope layers.
[0062] In view of the problem of the rope 300 being soaked in water during the thickness measurement operation of the sediment, the pile hole sediment measurement barrel improves the structure of the winding drum device 200. On the one hand, the paper pad 1 is added. When the soaked rope 300 is stored in the winding drum device 200, the rope 300 forms a plurality of rope layers, and the two adjacent rope layers are respectively an inner layer and an outer layer. When the inner layer is wound and the outer layer has not started to be wound, the paper pad 1 is wrapped outside the inner layer to absorb water and temporarily process. In addition, the paper pad 1 can also separate adjacent rope layers to reduce the exchange of moisture and protect the rope 300. On the other hand, the paper pad dismounting module is provided to move the paper pad 1 to cooperate with the storage or release of the rope 300, and the paper pad 1 is installed or dismounted.
[0063] Notably, the pile hole sediment measurement barrel is preferably used for continuous measurement operation. The temporarily stored rope 300 in the winding drum device 200 is temporarily processed by the paper pad 1 to reduce the water content of the rope 300. Conversely, if the measurement operation is completed, the rope 300 should be completely dried, and the paper pad 1 is not needed at this time.
[0064] It is easy to understand that the measurement barrel body 100 can be selected from any suitable existing model, and the staff can select according to the actual situation to adapt to different construction environments.
[0065] In a possible implementation manner, the paper pad 1 includes a body part 11 in the shape of a broken line and an additional part 12 outside the body part 11. The body part 11 is provided with an additional slot 13 for the rope 300 to pass through, and the additional part 12 is provided with a jack 14.
[0066] Based on the above design scheme, the broken line design helps to reduce the space occupation of the paper pad 1, and the folded paper pad 1 has a certain structural strength to facilitate the placement of the paper pad 1 in the winding drum device 200. In addition, when the paper pad 1 wraps the rope layer, the folded part can be stretched to increase the length of the paper pad 1, so as to ensure that the paper pad 1 can completely wrap the rope layer, which also makes the paper pad 1 be able to be used for wrapping different inner diameter rope layers. The additional part 12 is used to expand the range of the paper pad 1, and the jack 14 on the additional part 12 makes the paper pad 1 better connected to the paper pad dismounting module.
[0067] It is easy to understand that the transition section between the two adjacent rope layers passes through the additional slot 13, so that the outer layer is located outside the paper pad 1, and the paper pad 1 is prevented from being wrinkled or squeezed out at the junction of the inner and outer layers.
[0068] In a possible implementation manner, the winding drum device 200 includes a box body 201 and a storage drum 202 rotatably arranged in the box body 201. The storage drum 202 is used to store or release the rope 300.
[0069] The paper pad dismounting module comprises an upper mounting unit 2, a lower dismounting unit 3, a paper pad storage unit 4 and a transfer unit 5.
[0070] The upper mounting unit 2 is arranged on the top plate of the box body 201 and above the storage cylinder 202, and the lower dismounting unit 3 is arranged on the bottom plate of the box body 201 and below the storage cylinder 202.
[0071] The paper pad storage unit 4 is arranged in the box body 201 and used for storing the paper pad 1, and correspondingly, the paper pad 1 is arranged in multiple and placed in the paper pad storage unit 4; the transfer unit 5 is arranged in the box body 201 and used for transferring the paper pad 1 in the paper pad storage unit 4 to below the upper mounting unit 2.
[0072] Based on the above design scheme, each component in the paper pad dismounting module is arranged based on the storage cylinder 202 as a reference point, the space in the box body 201 is fully utilized, and each component is staggered and avoids mutual interference, so as to improve the working efficiency of the paper pad dismounting module.
[0073] The paper pad 1 is stored in the paper pad storage unit 4, when the paper pad 1 needs to be used, the transfer unit 5 transports one paper pad 1 to between the upper mounting unit 2 and the storage cylinder 202, the upper mounting unit 2 is connected to the paper pad 1 and moves downward for mounting, when the upper mounting unit 2 mounts the paper pad 1, the transfer unit 5 should avoid the upper mounting unit 2. When the storage cylinder 202 releases the rope 300, the outer layer is released, the storage cylinder 202 stops, the lower dismounting unit 3 starts and dismounts the paper pad 1, and the storage cylinder 202 starts again and releases the inner layer.
[0074] In a possible implementation, the upper mounting unit 2 is provided with four and located outside four top corners of the vertical projection of the storage cylinder 202 respectively.
[0075] The upper mounting unit 2 comprises a first sliding rail 21 and a first telescopic rod 22.
[0076] The first sliding rail 21 is fixed on the top plate of the box body 201, the upper end of the first telescopic rod 22 is slidingly arranged on the first sliding rail 21, and the lower end of the first telescopic rod 22 faces the storage cylinder 202.
[0077] When the transfer unit 5 transports the paper pad 1 to below the first telescopic rod 22, the first telescopic rod 22 extends downward and is connected to the paper pad 1; the transfer unit 5 moves and is staggered, the first telescopic rod 22 extends downward again, and the paper pad 1 is wrapped on the storage cylinder 202.
[0078] Correspondingly, the paper pad 1 is provided with a hole 14 matched with the first telescopic rod 22.
[0079] Based on the above design scheme, when the pad paper 1 is installed, the first telescopic rod 22 is lowered and inserted into the insertion hole 14 of the pad paper 1, realizing the connection of the first telescopic rod 22 and the pad paper 1. At this time, the transfer unit 5 moves, both separates from the pad paper 1 and is staggered with the upper installation unit 2. The first telescopic rod 22 continues to move downward, so that the pad paper 1 is wrapped on the storage cylinder 202, and at this time, the pad paper 1 of the fold line type is gradually stretched to improve the wrapping area, increase the contact area of the pad paper 1 and the rope layer, and improve the water absorption effect.
[0080] It is easy to understand that the four upper installation units 2 are respectively connected to the four corners of the pad paper 1, thereby driving the pad paper 1 to move synchronously.
[0081] It is worth noting that when the rope 300 is stored and forms a plurality of rope layers, the inner diameter of each rope layer gradually increases from the inside to the outside, and at this time, the first telescopic rod 22 expands the spacing between adjacent first telescopic rods 22 through the first sliding rail 21, thereby adapting to the change of the inner diameter of the rope layer and avoiding the collision of the first telescopic rod 22 with the rope 300.
[0082] In a possible implementation, the pad paper storage unit 4 includes a storage box 41, a pushing sub-unit 42 and a driving sub-unit 43.
[0083] The storage box 41 is fixed on the box body 201 and is used for storing the pad paper 1, and correspondingly, a plurality of pad papers 1 are stacked in the storage box 41 in sequence.
[0084] The storage box 41 has opposite two sides, one side is an open side facing the storage cylinder 202, and the other side is a closed side facing the side wall of the box body 201, the transfer unit 5 is arranged on the open side of the storage box 41 and is used for transferring the pad paper 1, and the pushing sub-unit 42 is arranged on the closed side of the storage box 41 and is used for pushing the pad paper 1 to move to the open side.
[0085] The driving sub-unit 43 is connected with the storage box 41, and the output end of the driving sub-unit 43 is connected with the transfer unit 5, so that the transfer unit 5 can move and be staggered with the first telescopic rod 22.
[0086] Based on the above design scheme, when the transfer unit 5 transports the pad paper 1, it first moves to the open side of the storage box 41, the second telescopic rod is arranged on the pushing sub-unit 42, all the pad papers 1 are pushed to move through the second telescopic rod, and the outermost pad paper 1 abuts against the transfer unit 5, realizing the connection of the two. Secondly, the transfer unit 5 moves from the open side of the storage box 41 to the upper installation unit 2, at this time, except for the outermost pad paper 1, the remaining pad papers 1 are blocked by the top plate of the storage box 41, so as to ensure that only the outermost pad paper 1 is taken away. When the upper installation unit 2 connects the pad paper 1, the driving sub-unit 43 is started to drive the transfer unit 5 to move, so as to ensure that the transfer unit 5 is staggered with the first telescopic rod 22, so as to avoid blocking the downward movement and installation of the pad paper 1.
[0087] For the paper pad 1, due to the structure of the fold line type, the paper pad 1 has a certain structural strength, so that the paper pad 1 can be placed vertically in the storage box 41. And a plurality of paper pads 1 are stacked with each other, which further ensures the stability of the placement of the paper pad 1. In addition, since the folding part can be stretched, it also ensures that the transfer unit 5 can take away the outermost paper pad 1.
[0088] It is easy to understand that the driving sub-unit 43 can not only stagger the rotating unit and the first telescopic rod 22, but also adapt to the change of the distance between the first telescopic rod 22, so as to facilitate the installation of the paper pad 1 for the rope layer with different inner diameters.
[0089] In a possible implementation, the transfer unit 5 includes a second sliding rail 51 and a transfer seat 52;
[0090] One end of the second sliding rail 51 passes through the open side of the storage box 41 and is connected to the driving sub-unit 43, and the other end of the second sliding rail 51 extends between the first telescopic rod 22 and the storage cylinder 202; the transfer seat 52 is slidingly arranged on the second sliding rail 51 and detachably connected to the paper pad 1;
[0091] Correspondingly, when the paper pad 1 is located in the storage box 41, the paper pad 1 has a first connection side facing the transfer seat 52 and a second connection side facing away from the transfer seat 52, the first connection side is provided with a glue area for the transfer seat 52, and the second connection side is provided with a matched anti-adhesion area, and the glue area and the anti-adhesion area are located on the additional part 12 of the paper pad 1. Correspondingly, the pushing sub-unit 42 faces the additional part 12, and the transfer seat 52 is provided with a concave hole matched with the insertion hole 14.
[0092] Based on the above design scheme, when it is necessary to install the paper pad 1, the transfer seat 52 moves to the open side of the storage box 41, the pushing sub-unit 42 pushes the plurality of paper pads 1 to move together until the glue area of the outermost paper pad 1 abuts against the transfer seat 52, so as to realize the connection between the transfer seat 52 and the outermost paper pad 1 by gluing. The transfer seat 52 moves along the second sliding rail 51 to the upper installation unit 2, at this time, the anti-adhesion area avoids the paper pad 1 from being unable to be separated, and the blocking of the top plate of the storage box 41 makes the outermost paper pad 1 smoothly separate from the storage box 41. The first telescopic rod 22 of the upper installation unit 2 further extends and is inserted into the insertion hole 14 of the paper pad 1, and the first telescopic rod 22 moves upward to make the paper pad 1 separate from the transfer seat 52. The transfer unit 5 moves through the driving sub-unit 43 and is staggered with the first telescopic rod 22, the transfer seat 52 moves to the open side of the storage box 41 again, and is ready for the transfer of the next paper pad 1.
[0093] Notably, the cushion paper 1 is vertically placed in the storage box 41, when the plurality of fold lines of the cushion paper 1 are spaced apart in the vertical direction, the frictional force between the first telescopic rod 22 and the insertion hole 14 is greater than the adhesive force, which is greater than the frictional force between adjacent cushion papers 1, so as to ensure that the transfer seat 52 can smoothly transfer the cushion paper 1 from the storage box 41 to the first telescopic rod 22. Conversely, as shown in Figure 3 , the cushion paper 1 is vertically placed in the storage box 41, and the fold lines of the cushion paper 1 extend in the horizontal direction, so as to avoid being blocked by the fold lines when the cushion paper 1 is taken away by the transfer seat 52, which can not only avoid the risk of the outermost cushion paper 1 being separated from the transfer seat 52, but also reduce the deformation of the remaining cushion papers 1.
[0094] Preferably, the adhesive area and the anti-adhesion area are both located on the additional part 12 of the cushion paper 1, correspondingly, the second telescopic rod of the pushing sub-unit 42 faces the additional part 12, and the transfer seat 52 is provided with a concave hole matched with the insertion hole 14. Based on this, the area of the anti-adhesion area is reduced, and the position of the additional part 12 is more stable, which facilitates the accurate insertion of the first telescopic rod 22 into the insertion hole 14. The concave hole avoids the blocking of the first telescopic rod 22 by the transfer seat 52, increases the length of the first telescopic rod 22 passing through the insertion hole 14, and makes the connection between the first telescopic rod 22 and the cushion paper 1 more stable.
[0095] It is easy to understand that the transfer unit 5 is provided with two, each of which corresponds to one side edge of the cushion paper 1; each transfer unit 5 includes a second sliding rail 51 and two transfer seats 52 slidingly arranged on the second sliding rail 51, and the two transfer seats 52 correspond to the two ends of the side edge of the cushion paper 1, so there are four transfer seats 52 in total, and the four transfer seats 52 correspond to the four corners of the cushion paper 1 respectively.
[0096] When the first telescopic rod 22 moves downward so that the cushion paper 1 covers the storage cylinder 202, the cushion paper 1 will be in an inverted U shape. At this time, the deformation of the cushion paper 1 and the covering of the lower semicircle of the storage cylinder 202 are driven by the continuous storage of the rope 300. However, this way will cause the cushion paper 1 at the lower semicircle of the storage cylinder 202 to wrinkle and not be completely covered. Based on this, in one possible implementation, the two ends of the storage cylinder 202 are respectively provided with a guide 6 matched with the upper mounting unit 2. The guide 6 is used to guide the movement of the first telescopic rod 22, so that the cushion paper 1 can smoothly cover the lower semicircle of the storage cylinder 202.
[0097] Alternatively, as shown in Figure 1 , Figure 2 and Figure 4 , the guide 6 includes a guide plate 61 and a first base 62, the guide plate 61 is provided with two and is located on the two sides of the first base 62 respectively, the first base 62 connects the guide plate 61 and is used to drive the reciprocating movement of the guide plate 61, and the movement direction of the guide plate 61 is parallel to the first sliding rail 21;
[0098] The guide plate 61 has an arc-shaped outer edge away from the first base 62 and an arc-shaped guide groove 63 arranged along the arc-shaped outer edge, the upper end opening of the arc-shaped guide groove 63 is aligned with the first telescopic rod 22, and the lower end opening of the arc-shaped guide groove 63 is directed towards the adjacent guide plate 61.
[0099] Based on the above design scheme, when the first telescopic rod 22 moves downward, the first telescopic rod 22 and the additional part 12 of the paper pad 1 enter the arc-shaped guide groove 63, and the arc-shaped guide groove 63 guides the moving direction of the first telescopic rod 22, so that the paper pad 1 is bent and gradually covers the lower semicircle of the receiving cylinder 202. Correspondingly, the rod body part of the first telescopic rod 22 is made of elastic material to realize deformation and adapt to the arc-shaped guide groove 63.
[0100] Further, the inner diameter of each rope layer gradually increases from inside to outside, and the two guide plates 61 are driven to move outward by the first base 62 to ensure that the arc-shaped guide groove 63 is aligned with the first telescopic rod 22. It is easy to understand that the guide plate 61 can push and pull the guide plate 61 through the telescopic rod, or a screw is arranged on the first base 62, the screw is connected to a driving device, the driving device is used to drive the screw to rotate, and the screw is connected to the two guide plates 61 through two sections of threads with opposite rotation directions. When the screw rotates, the two guide plates 61 move towards or away from each other.
[0101] In a possible implementation, the lower end of the two guide plates 61 is provided with a separation groove 64 for separating the first telescopic rod 22 from the paper pad 1, when the first telescopic rod 22 slides along the arc-shaped guide groove 63 to the lower end opening of the arc-shaped guide groove 63, the connection part of the first telescopic rod 22 and the paper pad 1 moves into the separation groove 64, so that the paper pad 1 abuts against the side wall of the separation groove 64;
[0102] The first telescopic rod 22 is provided with an outwardly protruding pad 23, when the first telescopic rod 22 slides along the arc-shaped guide groove 63, the first telescopic rod 22 slides along the arc-shaped guide groove 63 through the pad 23, so that the connection part of the first telescopic rod 22 and the paper pad 1 is raised and suspended in the arc-shaped guide groove 63; and the lower end opening of the arc-shaped guide groove 63 is provided with a groove 65, the side of the groove 65 facing the first base 62 is configured as a blocking surface for limiting the forward movement of the pad 23, and the side of the groove 65 away from the first base 62 is configured as a curved surface for the pad 23 to disengage from the groove 65.
[0103] Based on the above design scheme, when the first telescopic rod 22 is inserted into the arc-shaped guide groove 63, the first telescopic rod 22 is abutted against the inner wall of the arc-shaped guide groove 63 through the pad 23, so that the connection part of the first telescopic rod 22 and the paper pad 1 is raised, avoiding the connection part of the first telescopic rod 22 and the paper pad 1 moving due to friction, to avoid the deformation of the paper pad 1.
[0104] When the first telescopic rod 22 moves to the lower end opening of the arc-shaped guide slot 63, the cushion block 23 is inserted into the recess 65 of the arc-shaped guide slot 63, and the forward movement of the first telescopic rod 22 is prevented by the recess 65. At this time, the connection between the first telescopic rod 22 and the cushion paper 1 is inserted into the separation slot 64, and when the first telescopic rod 22 is retracted, the separation of the first telescopic rod 22 and the cushion paper 1 is realized by the blocking of the side wall of the separation slot 64.
[0105] In addition, if the cushion paper 1 is installed, the storage cylinder 202 is started and the rope 300 is wound, and the rope 300 can also be used to fix the cushion paper 1, so as to realize the separation of the first telescopic rod 22 and the cushion paper 1. However, the storage of the rope 300 is from one end of the storage cylinder 202 to the other end, which is easy to cause the remaining part of the cushion paper 1 to wrinkle.
[0106] For the cushion paper 1, when it is located above the storage cylinder 202, it is square, the projection of the body part 11 is located on the storage cylinder 202, and the projection of the additional part 12 is located outside the storage cylinder 202; when the upper installation unit 2 is lowered and drives the cushion paper 1 to move downward, the cushion paper 1 follows until the body part 11 contacts the upper semicircle of the storage cylinder 202, and with the continuous downward movement of the cushion paper 1, the body part 11 of the cushion paper 1 is stretched while covering the storage cylinder 202, and the fold line is gradually flattened. When the first telescopic rod 22 is inserted and slides along the arc-shaped guide slot 63, the additional part 12 of the cushion paper 1 enters the arc-shaped guide slot 63 along with the first telescopic rod 22, the body part 11 of the cushion paper 1 gradually covers the lower semicircle of the storage cylinder 202, and with the continuous downward movement of the cushion paper 1, the two side edges of the body part 11 of the cushion paper 1 approach each other, and when the first telescopic rod 22 moves into the separation slot 64, the two side edges of the body part 11 abut each other, so that the cushion paper 1 is folded into a cylindrical structure.
[0107] In a possible implementation, the lower disassembly unit 3 is provided with two and located at two ends of the storage cylinder 202 respectively;
[0108] The lower disassembly unit 3 includes a third sliding rail 31 and a lower disassembler 32;
[0109] The third sliding rail 31 is fixed on the bottom plate of the box body 201;
[0110] The lower disassembling device 32 comprises a second base 301, a sliding block 302, a clamping plate 303 and an additional seat 304. The second base 301 is slidingly arranged on the third sliding rail 31, and the second base 301 is provided with a vertical first sliding groove 305 and a rotating shaft 306 rotatingly arranged on the first sliding groove 305, and the rotating shaft 306 is provided with an outwardly protruding spiral strip. The sliding block 302 is slidingly arranged on the first sliding groove 305, and correspondingly, the sliding block 302 is provided with a first spiral groove 307 matched with the spiral strip. The clamping plate 303 is slidingly arranged on the sliding block 302 and is used for clamping the paper pad 1, and correspondingly, the clamping plate 303 is provided with a second spiral groove 308 matched with the spiral strip. The additional seat 304 is connected to the sliding block 302 through an additional rod 309, and the additional seat 304 is used for pushing and pulling the sliding block 302, so that one of the first spiral groove 307 and the second spiral groove 308 is connected to the spiral strip.
[0111] Correspondingly, when the first spiral groove 307 is connected to the spiral strip, the rotating shaft 306 is used for driving the sliding block 302 to reciprocatingly move along the first sliding groove 305; when the second spiral groove 308 is connected to the spiral strip, the rotating shaft 306 is used for driving the clamping plate 303 to clamp or release the paper pad 1.
[0112] Correspondingly, the first spiral groove 307 and the second spiral groove 308 each comprise a connecting area 311 connected to the spiral strip and a separation area 312 separated from the spiral strip.
[0113] Based on the above design scheme, the structure of the lower disassembling unit 3 is combined to explain how to disassemble the paper pad 1 from the storage cylinder 202.
[0114] Firstly, the state of the storage cylinder 202 is explained: a plurality of rope layers are arranged on the storage cylinder 202, and the paper pad 1 is arranged between adjacent rope layers; meanwhile, considering the thickness of the rope 300, a gap is left between adjacent two paper pads 1; in addition, the abutting position of the side edge of the paper pad 1 is located at the lower half circle of the storage cylinder 202.
[0115] In the lower disassembling device 32, the second base 301 is slid along the third sliding rail 31 to below the abutting position of the paper pad 1, the rotating shaft 306 is started, the rotating shaft 306 drives the sliding block 302 to slide upward, that is, the spiral strip is inserted into the first spiral groove 307 at this time. When the sliding block 302 moves upward to the position where the clamping plate 303 is aligned with the additional part 12 of the lowermost paper pad 1, the rotating shaft 306 is stopped. The sliding block 302 is moved by the additional rod 309 on the additional seat 304, so that the spiral strip is separated from the first spiral groove 307 and is inserted into the second spiral groove 308, and then the rotating shaft 306 is started again, the rotating shaft 306 drives the clamping plate 303 to clamp the additional part 12 on one side edge of the paper pad 1.
[0116] At this time, the second base 301 slides along the third slide rail 31 again, thereby moving and separating the paper 1 from the receiving cylinder 202. The clamping plate 303 releases the paper 1 again, and the second base 301 is reset along the third slide rail 31. When a layer of rope layer is released, the additional seat 304 moves the sliding block 302 by pulling the additional rod 309, the spiral strip is separated from the second spiral groove 308 and inserted into the first spiral groove 307, the rotating shaft 306 drives the sliding block 302 to slide upward until the clamping plate 303 is aligned with the additional part 12 of the paper 1 again. The additional seat 304 switches the connection relationship of the spiral strip again, so that the rotating shaft 306 drives the clamping plate 303 to clamp the paper 1.
[0117] Therefore, the same rotating shaft 306 provides power for the sliding block 302 and the clamping plate 303, the additional seat 304 is used to switch the driven one of the sliding block 302 and the clamping plate 303, the first spiral groove 307 and the second spiral groove 308 are provided with the connection area 311 and the separation area 312, and as shown in Figure 5 and Figure 6 , the connection area 311 and the separation area 312 of the first spiral groove 307 and the second spiral groove 308 are reversely arranged, matched with the additional seat 304 and switched.
[0118] Optionally, as shown in Figure 7 and Figure 8 , the sliding block 302 is provided with a through groove 313 and a guide rod 314 located in the through groove 313, and the first spiral groove 307 is provided with two and located at the upper and lower ends of the through groove 313;
[0119] The clamping plate 303 is inserted into the through groove 313 at one end and extends out of the sliding block 302 at the other end; the insertion end of the clamping plate 303 is sleeved on the guide rod 314 and connected to the end wall of the through groove 313 by the elastic member, so as to slide up and down along the through groove 313;
[0120] The sliding block 302 is provided with a fixed plate 315 located above the clamping plate 303, and correspondingly, when the clamping plate 303 moves upward, the clamping plate 303 is folded with the fixed plate 315 and clamps the additional part 12 of the paper 1, and when the clamping plate 303 moves downward, the clamping plate 303 is separated from the fixed plate 315 and releases the additional part 12 of the paper 1.
[0121] In a possible implementation, the spiral strip is constructed as an inflatable structure, and correspondingly, when the spiral strip is inserted into the first spiral groove 307 or the second spiral groove 308, the spiral strip is inflated and abuts against the side wall of the spiral groove, and when the spiral strip is switched from one of the first spiral groove 307 and the second spiral groove 308 to the other, the spiral strip is deflated and separated from the side wall of the spiral groove.
[0122] Based on the above design scheme, when the spiral strip switches from one of the first spiral groove 307 and the second spiral groove 308 to the other, if the spiral strip directly detaches, wear and damage are prone to occur, which not only affects the transmission performance, but also reduces the service life. Therefore, the spiral strip is constructed in a pneumatic structure to make the switching of the spiral strip more smooth and stable.
[0123] In a possible implementation, the additional seat 304 is provided with a telescopic clamping plate 310, which is retracted and clamps the second base 301 when the spiral strip switches from one of the first spiral groove 307 and the second spiral groove 308 to the other; and the telescopic clamping plate 310 is away from the second base 301 when the spiral strip is inserted into the first spiral groove 307 or the second spiral groove 308.
[0124] Based on the above design scheme, when the spiral strip is inserted into one of the first spiral groove 307 and the second spiral groove 308, the sliding block 302 and the clamping plate 303 are locked in height by the spiral strip. Conversely, when the spiral strip switches from one of the first spiral groove 307 and the second spiral groove 308 to the other, the sliding block 302 and the clamping plate 303 are suspended, at this time, the telescopic clamping plate 310 clamps the second base 301, so as to fix the sliding block 302 and the clamping plate 303 at a certain height.
[0125] The above specific embodiments further explain the purpose, technical scheme and beneficial effects of the present application. It should be understood that the above description is only a specific embodiment of the present application and is not used to limit the protection scope of the present application. Any modification, equivalent replacement, improvement, etc. within the spirit and principle of the present application should be included in the protection scope of the present application.
Claims
1. A sediment measuring bucket for pile holes, characterized in that, include: The measuring bucket body (100) is used to measure the thickness of sediment inside the pile hole; A drum device (200) is connected to the measuring bucket body (100) via a rope (300) to drive the measuring bucket to rise and fall along the pile hole; The winding device (200) includes a padding paper (1) and a padding paper removal and assembly module. The padding paper (1) is used to absorb moisture on the rope (300), and the padding paper removal and assembly module is used to remove and assemble the padding paper (1). Accordingly, when the rope (300) is stored in the winding device (200) and forms multiple rope layers, the padding paper removal and assembly module installs the padding paper (1) between two adjacent rope layers. When the rope (300) is released to the outside, the padding paper removal and assembly module removes the padding paper (1) covering the rope layer. The padding paper (1) includes a folded body (11) and an additional part (12) located outside the body (11). The body (11) is provided with an additional groove (13) for the rope (300) to pass through, and the additional part (12) is provided with an insertion hole (14). The reel device (200) includes a housing (201) and a storage cylinder (202) rotatably disposed within the housing (201), the storage cylinder (202) being used to store or release the rope (300). The padding paper disassembly and assembly module includes an upper installation unit (2), a lower disassembly unit (3), a padding paper storage unit (4), and a transfer unit (5); The upper mounting unit (2) is set on the top plate of the box (201) and located above the storage tube (202), and the lower disassembly unit (3) is set on the bottom plate of the box (201) and located below the storage tube (202); The padding paper storage unit (4) is set inside the box (201) and is used to store the padding paper (1). Correspondingly, multiple padding papers (1) are provided and placed inside the padding paper storage unit (4); the transfer unit (5) is set inside the box (201) and is used to transfer the padding paper (1) in the padding paper storage unit (4) to the lower part of the upper mounting unit (2). The upper mounting unit (2) has four units, which are located outside the four apex corners of the vertical projection of the storage tube (202); The upper mounting unit (2) includes a first slide rail (21) and a first telescopic rod (22); The first slide rail (21) is fixed on the top plate of the box (201), the upper end of the first telescopic rod (22) is slidably set on the first slide rail (21), and the lower end of the first telescopic rod (22) faces the storage tube (202). When the transfer unit (5) transports the pad paper (1) to below the first telescopic rod (22), the first telescopic rod (22) extends downward and connects to the pad paper (1); the transfer unit (5) moves and shifts, and the first telescopic rod (22) extends downward again until the pad paper (1) covers the storage tube (202); Accordingly, the pad (1) is provided with a socket (14) adapted to the first telescopic rod (22).
2. The pile hole sediment measuring bucket according to claim 1, characterized in that, The padding paper storage unit (4) includes a storage box (41), a push sub-unit (42), and a drive sub-unit (43). The storage box (41) is fixed on the box body (201) and used to store the padding paper (1). Accordingly, multiple padding papers (1) are stacked in the storage box (41) in sequence. The storage box (41) has two opposite sides, one side being an open side facing the storage tube (202) and the other side being a closed side facing the side wall of the box body (201). The transfer unit (5) is set on the open side of the storage box (41) and is used to transfer the padding paper (1). The push subunit (42) is set on the closed side of the storage box (41) and is used to push the padding paper (1) box open side to move. The drive subunit (43) is connected to the storage box (41), and the output end of the drive subunit (43) is connected to the transfer unit (5) so that the transfer unit (5) can move and be offset from the first telescopic rod (22).
3. The pile hole sediment measuring bucket according to claim 2, characterized in that, The transfer unit (5) includes a second slide rail (51) and a transfer seat (52); One end of the second slide rail (51) passes through the open side of the storage box (41) and is connected to the drive subunit (43), and the other end of the second slide rail (51) extends between the first telescopic rod (22) and the storage tube (202); The transfer seat (52) is slidably mounted on the second slide rail (51) and detachably connected to the pad paper (1); Accordingly, when the pad (1) is located in the storage box (41), the pad (1) has a first connecting side facing the transfer seat (52) and a second connecting side facing away from the transfer seat (52). The first connecting side is provided with an adhesive area for the transfer seat (52), and the second connecting side is provided with a matching anti-stick area. Both the adhesive area and the anti-stick area are located on the additional part (12) of the pad (1). Accordingly, the second telescopic rod of the push sub-unit (42) faces the additional part (12), and the transfer seat (52) is provided with an inner recess adapted to the insertion hole (14).
4. The pile hole sediment measuring bucket according to any one of claims 1-3, characterized in that, Each end of the storage tube (202) is provided with a guide (6) adapted to the upper mounting unit (2); The guide (6) includes a guide plate (61) and a first base (62). There are two guide plates (61) located on both sides of the first base (62). The first base (62) connects to the guide plate (61) and is used to drive the guide plate (61) to move back and forth. The direction of movement of the guide plate (61) is parallel to the first slide rail (21). The guide plate (61) has an arc-shaped outer edge away from the first base (62) and an arc-shaped guide groove (63) arranged along the arc-shaped outer edge. The upper opening of the arc-shaped guide groove (63) is aligned with the first telescopic rod (22), and the lower opening of the arc-shaped guide groove (63) faces the adjacent guide plate (61).
5. The pile hole sediment measuring bucket according to claim 4, characterized in that, The lower ends of the two guide plates (61) are provided with separation grooves (64) for separating the first telescopic rod (22) from the pad paper (1). When the first telescopic rod (22) slides along the arc-shaped guide groove (63) to the lower end opening of the arc-shaped guide groove (63), the connection between the first telescopic rod (22) and the pad paper (1) moves into the separation groove (64) so that the pad paper (1) abuts against the side wall of the separation groove (64). The first telescopic rod (22) is provided with a protruding pad (23). When the first telescopic rod (22) slides along the arc-shaped guide groove (63), the first telescopic rod (22) slides along the arc-shaped guide groove (63) through the pad (23), so that the connection between the first telescopic rod (22) and the pad paper (1) is raised and suspended in the arc-shaped guide groove (63); and the lower end opening of the arc-shaped guide groove (63) is provided with a groove (65). The side of the groove (65) facing the first base (62) is constructed as a blocking surface for restricting the advance of the pad (23), and the side of the groove (65) facing away from the first base (62) is constructed as a curved surface for the pad (23) to disengage from the groove (65).
6. The pile hole sediment measuring bucket according to claim 1, characterized in that, The lower disassembly unit (3) has two parts, which are located at both ends of the storage tube (202); The lowering unit (3) includes a third slide rail (31) and a lowering device (32); The third slide rail (31) is fixed to the bottom plate of the housing (201); The disassembly device (32) includes a second base (301), a slider (302), a clamping plate (303), and an auxiliary seat (304); the second base (301) is slidably mounted on a third slide rail (31), and the second base (301) is provided with a vertical first slide groove (305) and a rotating shaft (306) rotatably mounted on the first slide groove (305), and the rotating shaft (306) is provided with an outwardly protruding spiral strip; the slider (302) is slidably mounted on the first slide groove (305), and correspondingly, the slider (302) The slide block (302) is provided with a first spiral groove (307) adapted to the spiral strip; the clamping plate (303) is slidably disposed on the slide block (302) and used to clamp the pad paper (1), and correspondingly, the clamping plate (303) is provided with a second spiral groove (308) adapted to the spiral strip; the auxiliary seat (304) is connected to the slide block (302) through the auxiliary rod (309), and the auxiliary seat (304) is used to push and pull the slide block (302) so that one of the first spiral groove (307) and the second spiral groove (308) is connected to the spiral strip; Accordingly, when the first spiral groove (307) is connected to the spiral strip, the rotating shaft (306) is used to drive the slider (302) to reciprocate along the first groove (305); when the second spiral groove (308) is connected to the spiral strip, the rotating shaft (306) is used to drive the clamping plate (303) to clamp or release the pad paper (1). Accordingly, both the first spiral groove (307) and the second spiral groove (308) include a connecting area (311) for connecting the spiral strip and a separating area (312) for disengaging from the spiral strip.
7. The pile hole sediment measuring bucket according to claim 6, characterized in that, The spiral strip is constructed as an inflatable structure. Accordingly, when the spiral strip is inserted into the first spiral groove (307) or the second spiral groove (308), the spiral strip is inflated and abuts against the side wall of the spiral groove. When the spiral strip is switched from one of the first spiral groove (307) and the second spiral groove (308) to the other, the spiral strip is deflated and detached from the side wall of the spiral groove. The auxiliary seat (304) is provided with a telescopic clamp (310). When the spiral strip switches from one of the first spiral groove (307) and the second spiral groove (308) to the other, the telescopic clamp (310) retracts and clamps the second base (301). When the spiral strip is inserted into the first spiral groove (307) or the second spiral groove (308), the telescopic clamp (310) moves away from the second base (301).
Citation Information
Patent Citations
Cast-in-place pile hole depth detector
CN212674030U
Cast-in-place pile construction equipment with slurry circulation, separation and slag removal functions
CN214993774U