Cast-in-place pile pore-forming detection system supporting structure capable of adapting to different pore diameters
By designing an adjustable support structure, the problem that existing support structures cannot adapt to different hole diameters was solved, enabling the borehole testing instrument to be stably positioned and flexibly adapted on the cast-in-place pile, thus improving testing efficiency.
Patent Information
- Application Number
- CN202423197208.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-23
- Publication Date
- 2025-11-18
- Estimated Expiration
- 2034-12-23
AI Technical Summary
The existing borehole testing instrument has a fixed support structure length, which cannot adapt to cast-in-place piles with different borehole diameters, reducing its practicality.
An adjustable support structure was designed, comprising components such as a support plate, an adjustment plate, a screw, a lever plate, and cement nails. The adjustable length of the support plate can be achieved by threaded connection and cement nail fixation to accommodate different hole diameters.
This technology enables the borehole testing instrument to be stably positioned above cast-in-place piles of different diameters, improving the applicability and flexibility of the testing.
Smart Images

Figure CN223562213U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a hole forming detection system technical field, specifically to a hole forming detection system supporting structure of bored pile of adaptable different aperture. BACKGROUND
[0002] The hole forming detector is used for the comprehensive detection of the quality of various bored piles and the like, and the ultrasonic hole forming detector adopts ultrasonic reflection technology, in practice, the ultrasonic sensor is lowered along the center of the drill hole filled with mud at a certain rate, and in the lowering process of the probe, the ultrasonic pulse reflection signals of the vertical hole wall in four directions are received and recorded, the hole wall state of the four directions of the drill hole can be monitored conveniently, and the parameters such as the slot width of the continuous wall, the drill hole diameter, the perpendicularity and the hole wall condition can be observed intuitively.
[0003] The hole forming detector is placed above the bored pile through the supporting structure in the use process, then the probe can be inserted into the inside of the bored pile and corresponding detection can be carried out, but the length of the existing supporting structure for the hole forming detector is fixed, so it cannot be adapted to the bored piles of different apertures, thereby reducing the practicality of use, and the above problems need to be improved. UTILITY MODEL CONTENT
[0004] The utility model discloses a hole forming detection system supporting structure of bored pile of adaptable different aperture to solve the problem in the background art.
[0005] In order to achieve the above object, the utility model provides the following technical scheme: a hole forming detection system supporting structure of bored pile of adaptable different aperture, including support board, the top surface of support board is equipped with the placement groove, and the bottom surface of support board is equipped with the installation groove to both sides, the inner wall of one side of installation groove is equipped with the through groove, and the inner wall of the other side of installation groove is equipped with the sliding slot, the both ends of support board are equipped with the screw hole to one side, the inside of installation groove is movably provided with the adjusting plate, and the outside of adjusting plate is equipped with the push plate to one end, the inside of adjusting plate is equipped with the sliding block, the outside of adjusting plate is equipped with the mounting block to the other end, and the top of mounting block is equipped with the side plate to one side, and the inside of side plate is movably screwed with the screw rod, the side of mounting block is equipped with the mounting plate, and the inside of mounting plate is movably provided with the cement nail, and the top of cement nail is equipped with the hammering plate.
[0006] Preferably, one end of the screw rod is equipped with a hand-held rod.
[0007] Preferably, one end of the push plate penetrates the inner wall of one side of the installation groove through the through groove.
[0008] Preferably, the sliding block is arranged in the interior of the sliding groove and is in sliding connection with the interior of the sliding groove.
[0009] Preferably, the outer diameter of the screw rod is adapted to the inner diameter of the threaded hole, and one end of the screw rod extends into the interior of the threaded hole and is in screw connection and fixed arrangement.
[0010] Preferably, the bottom end inner wall of the placement groove is arranged as an inclined surface on both sides.
[0011] Preferably, the top end of the adjusting plate is arranged as an inclined surface on one side, and the bottom end of the adjusting plate is arranged horizontally with the bottom end of the supporting plate.
[0012] Compared with the prior art, the utility model has the advantages that:
[0013] The installation groove, the through groove, the sliding groove, the threaded hole, the adjusting plate, the actuating plate, the sliding block, the mounting block, the side plate, the screw rod, the hand-held rod, the mounting plate, the cement nail and the hammering plate can effectively solve the problem that the length of the existing supporting structure for the hole detection instrument is fixed, thereby failing to adapt to different diameters of the cast-in-place pile, and reducing the practicality.
[0014] The user can rotate the screw rod through the hand-held rod, so that one end of the screw rod can be rotated out of the interior of the threaded hole. Then, the user can move the actuating plate in the interior of the through groove to one side, so that the adjusting plate can move in the interior of the installation groove to one side, so that the sliding block can move in the interior of the sliding groove to one side. When the distance between the two ends of the two adjusting plates can span one side of the top surface of the cast-in-place pile, the movement of the two adjusting plates can be stopped. At this time, the two adjusting plates can be fixed with the supporting plate through screw connection between the screw rod and the interior of the threaded hole. Then, the supporting plate can be placed on one side of the top surface of the cast-in-place pile and spanned. Then, a hammer or other tool can be used to hammer the hammering plate downward, so that the bottom end of the cement nail can extend into the ground and be fixed, so that the two adjusting plates and the supporting plate can be fixed with the ground. In this way, the other supporting plate and the other two adjusting plates can be adjusted and placed in the same way. The specific state can be referred to the drawings. Since the bottom end inner wall of the placement groove is arranged as an inclined surface on both sides and the top end of the adjusting plate is arranged as an inclined surface on one side, the hole detection instrument can be conveniently moved to the interior of the two placement grooves and arranged centrally by using the four wheels. At this time, the hole detection instrument is just located above the cast-in-place pile, so that the hole detection instrument can detect the cast-in-place pile. BRIEF DESCRIPTION OF DRAWINGS
[0015] Figure 1 It is the three-dimensional structure schematic view of the main body of the utility model.
[0016] Figure 2 It is the three-dimensional structure schematic view of the adjusting plate of the utility model.
[0017] Figure 3 It is the bottom structure three-dimensional schematic view of the support plate of the utility model.
[0018] In the figure: 1, support plate; 11, placing groove; 12, mounting groove; 13, through groove; 14, sliding slot; 15, threaded hole; 2, adjusting plate; 21, actuating plate; 22, sliding block; 23, mounting block; 24, side plate; 25, screw; 26, hand rod; 27, mounting plate; 28, cement nail; 29, hammering plate. DETAILED DESCRIPTION
[0019] The technical scheme in the embodiments of the utility model will be described clearly and completely below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model.
[0020] According to Figures 1-3 As shown in the figure, including support plate 1, the top surface of support plate 1 is provided with placing groove 11, and the bottom surface of support plate 1 is provided with mounting groove 12 at both sides, the bottom end inner wall of placing groove 11 is provided with inclined surface at both sides, the one side inner wall of mounting groove 12 is provided with through groove 13, and the other side inner wall of mounting groove 12 is provided with sliding slot 14, and the both ends of support plate 1 are provided with threaded hole 15 at one side.
[0021] The inside of the installation groove 12 is movably provided with an adjusting plate 2, and the outer side of the adjusting plate 2 is provided with a push plate 21 at one end. The top end of the adjusting plate 2 is provided with a slope at one side, and the bottom end of the adjusting plate 2 is provided to be flush with the bottom end of the supporting plate 1. One end of the push plate 21 penetrates the inner wall of one side of the installation groove 12 through the penetration groove 13. The inner side of the adjusting plate 2 is provided with a sliding block 22 located in the inside of the sliding groove 14 and connected with the inside of the sliding groove 14 in a sliding manner. The outer side of the adjusting plate 2 is provided with an installation block 23 at the other end, and the top end of the installation block 23 is provided with a side plate 24 at one side. The inside of the side plate 24 is movably screwed with a screw rod 25, and the outer diameter of the screw rod 25 is matched with the inner diameter of the threaded hole 15. One end of the screw rod 25 is inserted into the inside of the threaded hole 15 and is fixedly connected with the threaded hole 15 in a screwing manner. One end of the screw rod 25 is provided with a hand-held rod 26. One side of the installation block 23 is provided with an installation plate 27, and the inside of the installation plate 27 is movably provided with a cement nail 28. The top end of the cement nail 28 is provided with a hammering plate 29.
[0022] The supporting plate 1 is provided in two groups, and the two groups of supporting plates 1 are placed on both sides of the top surface of the cast-in-place pile. In use, the user can rotate the screw rod 25 through the hand-held rod 26, so that one end of the screw rod 25 can be rotated out of the inside of the threaded hole 15. Then, the user can move the push plate 21 in the penetration groove 13 to one side, so that the adjusting plate 2 can move in the installation groove 12 to one side, and the sliding block 22 can move in the sliding groove 14 to one side. When the distance between the two ends of the two adjusting plates 2 can span one side of the top surface of the cast-in-place pile, the movement of the two adjusting plates 2 can be stopped. At this time, the screw rod 25 and the threaded hole 15 can be fixedly connected in a screwing manner, so that the two adjusting plates 2 can be fixedly arranged with the supporting plate 1. Then, the supporting plate 1 can be placed on one side of the top surface of the cast-in-place pile and spanned. Then, a hammer or other tool can be used to hammer the hammering plate 29 downward, so that the bottom end of the cement nail 28 can be inserted into the ground and fixedly arranged, so that the two adjusting plates 2 and the supporting plate 1 can be fixedly arranged with the ground. In this way, the other group of supporting plates 1 and the other two groups of adjusting plates 2 can be adjusted and placed in the same way. The specific state can be referred to Figure 1As shown, since the inner wall of the bottom end of the placing groove 11 is provided with a slope on both sides and the top end of the adjusting plate 2 is provided with a slope on one side, the hole detection instrument can be conveniently moved to the inside of the two groups of placing grooves 11 and centrally arranged by using the four wheels, at this time, the hole detection instrument is just located above the cast-in-place pile, so that the hole detection instrument can detect the cast-in-place pile, since the two groups of adjusting plates 2 can be moved and adjusted and fixed, so that the whole device can adapt to cast-in-place piles of different diameters.
[0023] Although the embodiments of the utility model have been shown and described, it can be understood by those skilled in the art that various changes, modifications, replacements and variations can be made to these embodiments without departing from the principles and spirits of the utility model, the scope of the utility model is defined by the appended claims and their equivalents.
Claims
1. A support structure of a bored pile hole forming detection system adaptable to different hole diameters, comprising a support plate (1), characterized in that: The top surface of the support plate (1) is provided with a placing groove (11), and the bottom surface of the support plate (1) is provided with a mounting groove (12) at both sides, the inner wall of one side of the mounting groove (12) is provided with a through groove (13), and the inner wall of the other side of the mounting groove (12) is provided with a sliding groove (14), the both ends of the support plate (1) are provided with a threaded hole (15) at one side, the inside of the mounting groove (12) is movably provided with an adjusting plate (2), and the outer side of the adjusting plate (2) is provided with a knob plate (21) at one end, the inner side of the adjusting plate (2) is provided with a sliding block (22), the outer side of the adjusting plate (2) is provided with a mounting block (23) at the other end, and the top end of the mounting block (23) is provided with a side plate (24) at one side, and the inside of the side plate (24) is movably connected with a screw rod (25), one side of the mounting block (23) is provided with a mounting plate (27), and the inside of the mounting plate (27) is movably provided with a cement nail (28), and the top end of the cement nail (28) is provided with a hammering plate (29).
2. The support structure of the cast-in-place pile hole detection system adaptable to different diameters according to claim 1, wherein: One end of the screw rod (25) is provided with a hand-held rod (26).
3. The support structure of the cast-in-place pile hole detection system adaptable to different diameters according to claim 1, wherein: One end of the knob plate (21) penetrates the inner wall of one side of the mounting groove (12) through the through groove (13).
4. The support structure of a cast-in-place pile hole detection system adaptable to different diameters according to claim 1, wherein: The sliding block (22) is arranged in the sliding groove (14), and the sliding block (22) and the sliding groove (14) are in sliding connection.
5. The support structure of a cast-in-place pile hole detection system adaptable to different diameters according to claim 1, wherein: The outer diameter of the screw rod (25) is matched with the inner diameter of the threaded hole (15), and one end of the screw rod (25) extends into the threaded hole (15) and is fixedly connected with the threaded hole (15).
6. The support structure of a cast-in-place pile hole detection system adaptable to different diameters according to claim 1, wherein: The bottom end inner wall of the placing groove (11) is provided with inclined surfaces at both sides.
7. The support structure of a cast-in-place pile hole detection system adaptable to different diameters according to claim 1, wherein: The top end of the adjusting plate (2) is provided with an inclined surface at one side, and the bottom end of the adjusting plate (2) is provided with an inclined surface at one side. The bottom end of the adjusting plate (2) is provided with an inclined surface at one side, and the bottom end of the adjusting plate (2) is provided with an inclined surface at one side.