Self-adaptive accurate positioning and mounting bracket for foundation bolts
The design of the adaptive anchor bolt mounting bracket solves the problems of inaccurate positioning and low efficiency in traditional installation methods, achieving precise positioning and stable installation of anchor bolts, adapting to different terrains and specifications, and improving construction efficiency and safety.
Patent Information
- Application Number
- CN202423143664.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-19
- Publication Date
- 2025-11-18
- Estimated Expiration
- 2034-12-19
AI Technical Summary
Traditional anchor bolt installation methods suffer from inaccurate positioning, low installation efficiency, and the need for frequent adjustments. Furthermore, the complexity of the construction site environment leads to inconvenience and safety hazards during installation.
An adaptive anchor bolt precision positioning and installation bracket was designed, including a positioning crossbeam, telescopic outrigger assembly, lifting assembly, and placement round frame, etc. Through precision design and hydraulic drive, the bracket achieves precise positioning and stable clamping of anchor bolts, adapting to different terrains and specifications.
It improves the accuracy and efficiency of anchor bolt installation, reduces reliance on manual operation, enhances the stability and safety of the installation process, and is suitable for various construction environments.
Smart Images

Figure CN223562537U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to cable pay -off stand technical field especially relates to a self -adaptation anchor bolt accurate positioning installation support. BACKGROUND
[0002] In the modernization building installation process, anchor bolt as the key part of connecting foundation and upper structure, its installation precision and efficiency are directly related to the stability and safety of the whole structure. However, the traditional anchor bolt installation method often exists the problems such as inaccurate positioning, low installation efficiency and frequent adjustment, which brings great inconvenience and safety hazard to construction.
[0003] Specifically, the traditional anchor bolt installation usually relies on manual measurement and positioning, not only time -consuming and labor -intensive, but also be easily influenced by human factors, leading to low positioning accuracy. At the same time, due to the different specifications and lengths of anchor bolts, it is necessary to frequently change and adjust the installation tools, which further reduces the installation efficiency. In addition, due to the complexity of the construction site environment, such as uneven ground, wind interference and other factors, it also brings additional challenges to the installation of anchor bolts.
[0004] In order to solve these problems, some improved anchor bolt installation auxiliary tools appear in the market, such as positioning template, lifting platform, etc. However, these tools can only solve part of the problem, such as positioning template can improve the positioning accuracy, but cannot adapt to anchor bolts of different specifications; Lifting platform can provide vertical movement, but lacks precise adjustment and fixing mechanism. Therefore, in actual application, these tools still have certain limitations and deficiencies.
[0005] How to solve the above technical problems is the subject faced by the utility model. SUMMARY
[0006] In order to solve the deficiencies of the prior art, the utility model provides a self -adaptation anchor bolt accurate positioning installation support with reasonable design, safe and reliable, and its core lies in providing a stable and adjustable installation platform to ensure the accurate positioning and installation of anchor bolt.
[0007] The utility model solves the technical scheme that technical problem adopts: a self -adaptation anchor bolt accurate positioning installation support, including the horizontal setting of the positioning cross -beam, the both ends of the positioning cross -beam are provided with the telescopic support leg assembly that cooperates with the positioning cross -beam, the positioning cross -beam is provided with the positioning slide that slides with the positioning cross -beam, the positioning slide is provided with the first screw that cooperates with the positioning cross -beam, the positioning slide is provided with the lifting rod, the positioning slide is provided with the lifting assembly for controlling the lifting distance of lifting rod;
[0008] The bottom end of the lifting rod is provided with a placing circular frame, a plurality of movable ring frames are arranged on the placing circular frame and are in rotation cooperation with the placing circular frame, a second screw is arranged on the movable ring frame and is in cooperation with the placing circular frame, an extension support rod is arranged on the movable ring frame, and a placing assembly for placing a foundation bolt is arranged on the extension support rod.
[0009] Further, the extension support leg assembly comprises an extension slot arranged on the positioning cross frame, an extension frame is arranged in the extension slot and is in sliding cooperation with the extension slot, a fixed support leg is arranged at the end of the extension frame away from the positioning cross frame, a fixed plate is arranged at the bottom end of the fixed support leg and is in contact with the ground, and a positioning screw is arranged on the positioning cross frame and is in cooperation with the extension frame.
[0010] Further, a stable support frame is horizontally arranged on the positioning cross frame and is perpendicular to the positioning cross frame, a stable support leg assembly is arranged on the stable support frame, and the structure of the stable support leg assembly is consistent with that of the extension support leg assembly.
[0011] Further, the lifting assembly comprises two groups of lifting hydraulic cylinders which are symmetrically arranged at the two ends of the positioning sliding frame, and the moving ends of the two groups of lifting hydraulic cylinders are jointly connected with a lifting clamping plate, and a shock absorbing fixing unit for shock absorbing the clamping rod is arranged on the lifting clamping plate.
[0012] Further, the shock absorbing fixing unit comprises a shock absorbing cylinder arranged on the lifting clamping plate, a shock absorbing slot for penetrating the lifting rod is arranged on the lifting clamping plate, a first sleeve frame is arranged on the lifting rod, a fixing screw is arranged on the first sleeve frame and is in cooperation with the lifting rod, a sliding ring plate is arranged on the first sleeve frame, moving balls are arranged on the sliding ring plate and are in cooperation with the lifting clamping plate, a contact outer cylinder is arranged on the outer side of the first sleeve frame and is in contact with the shock absorbing cylinder, and a plurality of first springs are arranged between the contact outer cylinder and the first sleeve frame.
[0013] A second sleeve frame is arranged on the lifting rod, a reinforcing screw is arranged on the second sleeve frame and is in cooperation with the lifting rod, a reinforcing ring plate is arranged on the second sleeve frame, and a reinforcing pull rope is arranged on the reinforcing ring plate and is connected with the positioning sliding frame.
[0014] Further, a positioning sliding groove is arranged on the top surface of the positioning cross frame and penetrates the positioning cross frame, a stable screw is arranged on the positioning sliding frame and penetrates the positioning sliding groove and is in cooperation with the first screw.
[0015] Further, the positioning slide frame comprises a sliding U-shaped frame in sliding cooperation with the positioning cross frame, the stabilizing screw is arranged on the sliding U-shaped frame, and the first screw is arranged on the sliding U-shaped frame; the sliding U-shaped frame is provided with a lifting fixed frame in cooperation with the lifting assembly; and the lifting fixed frame is provided with a through groove for the lifting rod.
[0016] Further, the placing circular frame is vertically provided with a plurality of movable circular grooves in cooperation with the movable ring frame along the axial direction of the placing circular frame; the movable ring frame is provided with a positioning arc plate in cooperation with the placing circular frame; and the second screw is arranged on the positioning arc plate.
[0017] Further, the placing assembly comprises a placing U-shaped frame sleeved on the telescopic supporting rod; the placing U-shaped frame is provided with an extrusion plate in cooperation with the telescopic supporting rod; the extrusion plate is provided with an extrusion groove in cooperation with the extrusion screw;
[0018] The extrusion plate is vertically provided with a plurality of placing seats; the placing seats are provided with placing grooves for placing foundation bolts; one side of the extrusion plate is provided with a stabilizing U-shaped frame for stably placing the foundation bolts on the placing seats; the stabilizing U-shaped frame is provided with a stabilizing insertion rod in cooperation with the extrusion groove; the extrusion plate is provided with a stabilizing insertion groove in cooperation with the stabilizing insertion rod; and the stabilizing U-shaped frame is provided with a cushion block in cooperation with the foundation bolt.
[0019] The telescopic supporting rod is provided with a through strip groove in cooperation with the extrusion screw.
[0020] The telescopic groove and the telescopic frame are precisely designed; the telescopic supporting leg assembly can automatically adjust the height to adapt to the unevenness of different grounds and the installation depth of the foundation bolts. The stabilizing supporting frame further enhances the stability of the support under complex working conditions, and ensures that the support is vertical and is not easy to incline or move. This self-adaptive design enables the support to be widely applied to various terrains and installation environments.
[0021] The positioning slide frame in the utility model flexibly slides along the sliding groove on the positioning cross frame, and is accurately fixed through the stabilizing screw. The lifting assembly is driven by hydraulic pressure, and through the lifting hydraulic cylinder, the lifting clamping plate and the shock-absorbing fixed unit and other components, the accurate adjustment and stable clamping of the foundation bolt in the vertical direction are realized. This design not only improves the installation precision, but also greatly simplifies the installation process.
[0022] The movable ring frame on the placing circular frame in the utility model can adjust the position along the axial direction to adapt to foundation bolts of different lengths. This design enables the support to be applicable to foundation bolts of various specifications without the need to replace or adjust other components, thereby improving the versatility and flexibility of the support.
[0023] The positioning cross frame in the utility model is the basic structure of the whole support, which has enough strength and rigidity. The design of the positioning sliding groove enables the positioning sliding frame to slide along it, and realizes the accurate positioning of the anchor bolt through accurate adjustment. This design ensures the accuracy and stability in the installation process.
[0024] The positioning arc plate and the adjusting screw on the movable ring frame enable the self-adaptive adjusting mechanism to realize the accurate clamping and positioning of anchor bolts of different specifications. This design not only improves the installation accuracy, but also reduces the dependence on manual operation. BRIEF DESCRIPTION OF DRAWINGS
[0025] Figure 1 It is the overall three-dimensional schematic view of the utility model;
[0026] Figure 2 It is the explosion schematic view of the positioning sliding frame and the lifting assembly of the utility model;
[0027] Figure 3 It is the upper view of the positioning sliding frame and the lifting assembly of the utility model;
[0028] Figure 4 It is the A-A sectional view of the utility model;
[0029] Figure 5 It is the enlarged schematic view of A of the utility model.
[0030] Figure 6 It is the enlarged schematic view of B of the utility model;
[0031] Figure 7 It is the cooperation view of the movable ring frame and the placing assembly of the utility model.
[0032] Figure 8 It is the enlarged schematic view of C of the utility model.
[0033] Wherein, the figure mark is: 100, positioning cross frame; 101, telescopic groove; 110, stable support frame; 120, stable leg assembly; 200, telescopic leg assembly; 210, telescopic frame; 220, fixed leg; 230, fixed plate; 240, positioning screw; 300, positioning slide frame; 310, sliding U frame; 320, stabilizing screw; 330, first screw; 340, lifting solid frame; 350, through groove; 400, lifting rod; 500, lifting assembly; 510, lifting hydraulic cylinder; 520, lifting clamping plate; 530, shock absorbing fixed unit; 531, shock absorbing cylinder; 532, shock absorbing groove; 533, first sleeve frame; 534, sliding ring plate; 535, moving ball; 536, contact outer cylinder; 537, first spring; 538, second sleeve frame; 539, reinforcing screw; 540, reinforcing ring plate; 541, reinforcing pull rope; 600, placing round frame; 700, movable ring frame; 710, positioning arc plate; 720, second screw; 800, telescopic support rod; 900, placing assembly; 901, placing U frame; 902, extrusion plate; 903, extrusion groove; 904, stable U frame; 905, stable insertion rod; 906, through strip groove; 907, extrusion screw; 908, placing seat; 909, placing groove. Embodiments
[0035] Reference Figures 1 to 8 As shown in the figure, a self-adapting anchor bolt accurate positioning installation support, including horizontally arranged positioning cross frame 100, both ends of the positioning cross frame 100 are provided with telescopic leg assembly 200 matched with the positioning cross frame 100, the positioning cross frame 100 is provided with positioning slide frame 300 sliding matched with the positioning cross frame 100, the positioning slide frame 300 is provided with first screw 330 matched with the positioning cross frame 100, the positioning slide frame 300 is provided with lifting rod 400, the positioning slide frame 300 is provided with lifting assembly 500 for controlling the lifting distance of the lifting rod 400;
[0036] The bottom end of the lifting rod 400 is provided with placing round frame 600, the placing round frame 600 is provided with a plurality of movable ring frames 700 rotationally matched with the placing round frame 600, the movable ring frames 700 are provided with second screws 720 matched with the placing round frame 600, the movable ring frames 700 are provided with telescopic support rods 800, and the telescopic support rods 800 are provided with placing assemblies 900 for placing anchor bolts.
[0037] Specifically, the positioning cross frame 100 is horizontally arranged as the basic structure of the whole support, for supporting and fixing other components. The telescopic leg assembly 200 is installed at both ends of the positioning cross frame 100, and the height adjustment is realized through the telescopic slot 101 and the telescopic frame 210, so as to adapt to the unevenness of different grounds and the installation depth of anchor bolts. The positioning sliding frame 300 slides along the positioning sliding slot on the positioning cross frame 100, and the accurate adjustment and fixation of the position are realized through the first screw 330. The design of the sliding U frame 310 enables the positioning sliding frame 300 to be flexibly adjusted to adapt to anchor bolts in different positions. The lifting rod 400 is connected to the placing circular frame 600, and the vertical movement is realized through the driving of the lifting assembly 500. The movable ring frame 700 is arranged on the placing circular frame 600, and the movable ring frame 700 can adjust the position along the axis direction of the placing circular frame 600. Through the rotation of the movable ring frame 700 and the telescopic of the telescopic support 800, the position and height of the anchor bolt can be flexibly adjusted, so as to ensure that the anchor bolt can be firmly fixed in the specified position. The placing assembly 900 provides a stable placing platform for the anchor bolt, so as to ensure that the anchor bolt will not be loose or displaced during the installation process, and the installation precision and stability are improved.
[0038] Further, the telescopic leg assembly 200 comprises a telescopic slot 101 arranged on the positioning cross frame 100, and a telescopic frame 210 arranged in the telescopic slot 101 and slidingly matched with the telescopic slot 101. An end of the telescopic frame 210 away from the positioning cross frame 100 is provided with a fixed leg 220, and a bottom end of the fixed leg 220 is provided with a fixed plate 230 in contact with the ground. The positioning cross frame 100 is provided with a positioning screw 240 matched with the telescopic frame 210.
[0039] Specifically, the telescopic leg assembly 200 realizes the height adjustment through the telescopic frame 210 in the telescopic slot 101, and the fixed leg 220 and the fixed plate 230 ensure the stable contact of the device with the ground. The positioning screw 240 is used for locking the position of the telescopic frame 210, so as to ensure the stability of the device.
[0040] Further, the positioning cross frame 100 is horizontally provided with a stable support frame 110 arranged perpendicularly to the positioning cross frame 100, and the stable support frame 110 is provided with a stable leg assembly 120, and the structure of the stable leg assembly 120 is consistent with that of the telescopic leg assembly 200.
[0041] Specifically, the stable support frame 110 arranged on the positioning cross frame 100 and the stable leg assembly 120 arranged on the stable support frame 110 have the same structure as the telescopic leg assembly 200, which further enhances the stability of the device and ensures that the device can still maintain a stable working state under complex working conditions.
[0042] Further, the lifting assembly 500 comprises two groups of lifting hydraulic cylinders 510 symmetrically arranged at both ends of the positioning slide 300, and the moving ends of the two groups of lifting hydraulic cylinders 510 are jointly connected with a lifting clamping plate 520, and the lifting clamping plate 520 is provided with a damping fixing unit 530 for damping the clamping rod.
[0043] Further, the damping fixing unit 530 comprises a damping cylinder 531 arranged on the lifting clamping plate 520, and the lifting clamping plate 520 is provided with a damping groove 532 for penetrating the lifting rod 400, the lifting rod 400 is sleeved with a first sleeve frame 533, the first sleeve frame 533 is provided with a fixing screw matched with the lifting rod 400, the first sleeve frame 533 is provided with a sliding ring plate 534, the sliding ring plate 534 is provided with a moving ball 535 matched with the lifting clamping plate 520, the outer side of the first sleeve frame 533 is provided with a contact outer cylinder 536 in contact with the damping cylinder 531, and a plurality of first springs 537 are arranged between the contact outer cylinder 536 and the first sleeve frame 533.
[0044] The lifting rod 400 is sleeved with a second sleeve frame 538, the second sleeve frame 538 is provided with a reinforcing screw 539 matched with the lifting rod 400, the second sleeve frame 538 is provided with a reinforcing ring plate 540, and the reinforcing ring plate 540 is provided with a reinforcing pull rope 541 connected with the positioning slide 300.
[0045] Specifically, the lifting assembly 500 adopts symmetrically arranged lifting hydraulic cylinders 510, and the lifting clamping plate 520 is connected through the moving end to realize the lifting operation of the lifting rod 400. The lifting clamping plate 520 and its damping fixing unit 530 ensure the smoothness and stability of the lifting process. The damping cylinder 531, the moving ball 535 and the spring and other components jointly act to effectively reduce the vibration in the concrete vibrating process and improve the overall performance of the device. Through the double sleeve frame structure, the stability and safety of the lifting rod 400 in the lifting process are ensured. The first sleeve frame 533 and the second sleeve frame 538 provide multiple protection and support through different fixing methods and auxiliary structures. This design not only improves the precision of the anchor bolt installation, but also significantly improves the work efficiency and safety.
[0046] Further, the top surface of the positioning cross frame 100 is provided with a positioning sliding groove penetrating the positioning cross frame 100 and matched with the positioning slide 300, and the positioning slide 300 is provided with a stabilizing screw 320 penetrating the positioning sliding groove and matched with the first screw 330.
[0047] Further, the positioning slide 300 comprises a sliding U-shaped bracket 310 which is in sliding cooperation with the positioning cross bracket 100, the stabilizing screw 320 is arranged on the sliding U-shaped bracket 310, and the first screw 330 is arranged on the sliding U-shaped bracket 310, the sliding U-shaped bracket 310 is arranged with a lifting fixed bracket 340 which is in cooperation with the lifting assembly 500, and the lifting fixed bracket 340 is provided with a through slot 350 which is penetrated by the lifting rod 400. The positioning slide 300 slides along the positioning sliding groove on the positioning cross bracket 100, and the accurate adjustment and fixation of the position are realized by the stabilizing screw 320 and the first screw 330, so as to adapt to the anchor bolts in different positions.
[0048] Further, the placing circular bracket 600 is vertically provided with a plurality of movable circular grooves which are in cooperation with the movable ring bracket 700 along the axial direction of the placing circular bracket 600, the movable ring bracket 700 is arranged with a positioning arc plate 710 which is in cooperation with the placing circular bracket 600, and the second screw 720 is arranged on the positioning arc plate 710. The placing circular bracket 600 is provided with the movable circular grooves along the axial direction, and the movable ring bracket 700 is fixed by the second screw 720, so as to realize the multi-angle adjustment.
[0049] Further, the placing assembly 900 comprises a placing U-shaped bracket 901 which is sleeved on the telescopic supporting rod 800, the placing U-shaped bracket 901 is arranged with a pressing plate 902 which is in cooperation with the telescopic supporting rod 800, and the pressing plate 902 is provided with a pressing slot 903 which is in cooperation with the telescopic supporting rod 800, the pressing plate 902 is arranged with a pressing screw 907 which is in cooperation with the telescopic supporting rod 800.
[0050] The pressing plate 902 is vertically provided with a plurality of placing seats 908, the placing seat 908 is provided with a placing slot 909 which is used to place the anchor bolt, one side of the pressing plate 902 is arranged with a stabilizing U-shaped bracket 904 which is used to stably place the anchor bolt on the placing seat 908, the stabilizing U-shaped bracket 904 is arranged with a stabilizing insertion rod 905 which is in cooperation with the pressing slot 903, and the pressing plate 902 is provided with a stabilizing insertion slot 906 which is in cooperation with the stabilizing insertion rod 905, and the stabilizing U-shaped bracket is arranged with a cushion block which is in cooperation with the anchor bolt.
[0051] The telescopic supporting rod 800 is provided with a through strip slot 906 which is in cooperation with the pressing screw.
[0052] Specifically, the placing assembly 900 comprises the placing U-shaped bracket 901, the pressing plate 902 and the stabilizing U-shaped bracket 904, so as to provide a stable placing platform for the anchor bolt, the pressing plate 902 realizes the fixation of the anchor bolt through the pressing slot 903 and the pressing screw 907, so as to prevent the displacement of the anchor bolt during the installation process. The design of the stabilizing U-shaped bracket 904 and the stabilizing insertion rod 905 further enhances the stability of the anchor bolt during the placing process.
[0053] The technical features not described in the utility model can be realized by or using the prior art, and will not be described here again, of course, the above description is not a limitation on the utility model, and the utility model is not limited to the above examples, the changes, modifications, additions or replacements made by the ordinary skilled in the art within the essential scope of the utility model should also belong to the protection scope of the utility model.
Claims
1. An adaptive anchor bolt accurate positioning mounting bracket, characterized in that: it comprises a horizontally arranged positioning cross frame (100), both ends of the positioning cross frame (100) are provided with telescopic leg assemblies (200) matched with the positioning cross frame (100), the positioning cross frame (100) is provided with a positioning sliding frame (300) sliding matched with the positioning cross frame (100), the positioning sliding frame (300) is provided with a first screw (330) matched with the positioning cross frame (100), the positioning sliding frame (300) is provided with a lifting rod (400), and the positioning sliding frame (300) is provided with a lifting assembly (500) for controlling the lifting distance of the lifting rod (400); a placing round frame (600) is arranged at the bottom end of the lifting rod (400), a plurality of movable ring frames (700) are arranged on the placing round frame (600) and are rotationally matched with the placing round frame (600), the movable ring frames (700) are provided with second screws (720) matched with the placing round frame (600), the movable ring frames (700) are provided with telescopic supporting rods (800), and the telescopic supporting rods (800) are provided with a placing assembly (900) for placing anchor bolts. The telescopic leg assembly (200) comprises a telescopic groove (101) formed in the positioning cross frame (100), the telescopic groove (101) is provided with a telescopic frame (210) sliding matched with the telescopic groove (101), one end of the telescopic frame (210) away from the positioning cross frame (100) is provided with a fixed leg (220), the bottom end of the fixed leg (220) is provided with a fixed plate (230) in contact with the ground, and the positioning cross frame (100) is provided with a positioning screw (240) matched with the telescopic frame (210).
2. An adaptive anchor bolt precision positioning mount as claimed in claim 1, wherein: The positioning cross frame (100) is horizontally provided with a stable supporting frame (110) arranged perpendicularly to the positioning cross frame (100), the stable supporting frame (110) is provided with a stable leg assembly (120), and the stable leg assembly (120) has the same structure as the telescopic leg assembly (200).
3. An adaptive anchor bolt precision positioning mount as defined in claim 1, wherein: The lifting assembly (500) comprises two groups of lifting hydraulic cylinders (510) symmetrically arranged at both ends of the positioning sliding frame (300), and the moving ends of the two groups of lifting hydraulic cylinders (510) are jointly connected with a same lifting clamping plate (520), and the lifting clamping plate (520) is provided with a shock absorbing fixing unit (530) for shock absorbing and clamping rods.
4. The precision installation bracket for a foundation bolt of claim 1, wherein: 5. An adaptive anchor bolt precision positioning mount as claimed in claim 4, wherein: The damping fixed unit (530) comprises a damping cylinder (531) arranged on the lifting clamping plate (520), the lifting clamping plate (520) is provided with a damping slot (532) for penetrating the lifting rod (400), the lifting rod (400) is sleeved with a first sleeve frame (533), the first sleeve frame (533) is provided with a fixed screw matched with the lifting rod (400), the first sleeve frame (533) is provided with a sliding ring plate (534), the sliding ring plate (534) is provided with a moving ball (535) matched with the lifting clamping plate (520), the outer side of the first sleeve frame (533) is provided with a contact outer cylinder (536) in contact with the damping cylinder (531), and a plurality of first springs (537) are arranged between the contact outer cylinder (536) and the first sleeve frame (533); The lifting rod (400) is sleeved with a second sleeve frame (538), the second sleeve frame (538) is provided with a reinforcing screw (539) matched with the lifting rod (400), the second sleeve frame (538) is provided with a reinforcing ring plate (540), and the reinforcing ring plate (540) is provided with a reinforcing pull rope (541) connected with the positioning sliding frame (300).
6. An adaptive anchor bolt precision positioning mount as defined in claim 1, wherein: The top surface of the positioning cross frame (100) is provided with a positioning sliding groove matched with the positioning sliding frame (300) and penetrating the positioning cross frame (100), and the positioning sliding frame (300) is provided with a stabilizing screw (320) penetrating the positioning sliding groove and matched with the first screw (330).
7. An adaptive anchor bolt precision positioning mount as claimed in claim 6, wherein: The positioning sliding frame (300) comprises a sliding U-shaped frame (310) slidably matched with the positioning cross frame (100), the stabilizing screw (320) is arranged on the sliding U-shaped frame (310), the first screw (330) is arranged on the sliding U-shaped frame (310), the sliding U-shaped frame (310) is provided with a lifting fixed frame (340) matched with the lifting assembly (500), and the lifting fixed frame (340) is provided with a penetrating groove (350) for penetrating the lifting rod (400).
8. An adaptive anchor bolt precision positioning mount as defined in claim 1, wherein: The placing circular frame (600) is vertically provided with a plurality of movable circular grooves matched with the movable ring frame (700) along the axial direction of the placing circular frame (600), the movable ring frame (700) is provided with a positioning arc plate (710) matched with the placing circular frame (600), and the second screw (720) is arranged on the positioning arc plate (710).
9. An adaptive anchor bolt precision positioning mount as defined in claim 1, wherein: The placing assembly (900) comprises a placing U-shaped frame (901) sleeved on the telescopic supporting rod (800), the placing U-shaped frame (901) is provided with a pressing plate (902) matched with the telescopic supporting rod (800), the pressing plate (902) is provided with a pressing groove (903) matched with the pressing plate (902), and the pressing plate (902) is provided with a pressing screw (907) matched with the pressing plate (902). The extrusion plate (902) is vertically provided with a plurality of placing seats (908), the placing seat (908) is provided with a placing groove (909) for placing an anchor bolt, one side of the extrusion plate (902) is provided with a stable U-shaped frame (904) for stably placing the anchor bolt on the placing seat (908), the stable U-shaped frame (904) is provided with a stable insertion rod (905) matched with the extrusion groove (903), and the extrusion plate (902) is provided with a stable insertion groove matched with the stable insertion rod (905), and the stable U-shaped frame is provided with a pad matched with the anchor bolt; The telescopic supporting rod (800) is provided with a penetrating strip groove (906) matched with the extrusion screw rod.