A drilling platform for a radial drill

CN120680315BActive Publication Date: 2026-09-22XINJIANG XINGCHEN INTELLIGENT EQUIPMENT TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202510989336.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-07-17
Publication Date
2026-09-22
Estimated Expiration
2045-07-17

AI Technical Summary

Technical Problem

[0004]现有的摇臂钻机钻孔平台在加工具有倾斜角度的零件时,常因零件自身倾角导致钻孔角度偏差,这一问题源于平台缺乏自适应调平机制,难以与倾斜零件表面保持垂直,致使钻头受力不均、钻孔轨迹偏移

Benefits of technology

1、本发明通过设置推动机构,可在零件加工时对倾斜角度一侧的钻头提供稳定扶持,该机构能够根据零件倾角自适应调整支撑力度,在定位打孔过程中有效抑制钻头打滑,避免因钻头偏移导致的孔洞倾斜问题。

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Abstract

The present application relates to the technical field of drilling, and discloses a drilling platform of a radial drilling machine, which comprises a fixing base, a fixing block is fixedly connected to the left side of the top of the fixing base, a lifting rod is fixedly connected to the middle end of the top of the fixing block, an adjusting plate is arranged on the outer wall of the lifting rod, the inner wall of the adjusting plate is fixedly connected with the outer wall of the lifting rod, a drilling mechanism is arranged on the inner wall of the top of the adjusting plate, one side of the drilling mechanism close to the adjusting plate is slidably connected with the inner wall of the adjusting plate, a workbench is fixedly connected to the right side of the top of the fixing base, a pushing mechanism is installed on the top of the workbench, and the pushing mechanism comprises a first connecting rod. The pushing mechanism can provide stable support for the drill bit on the side of the inclination angle when machining parts, the mechanism can automatically adjust the supporting force according to the inclination angle of the parts, effectively inhibits the slipping of the drill bit during positioning and punching, and avoids the hole inclination problem caused by the deviation of the drill bit.
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Description

Technical Field

[0001] This invention relates to the field of drilling technology, specifically to a drilling platform for a radial drilling rig. Background Technology

[0002] The drilling platform of a radial drilling rig is a key component of the rig, primarily used to support and secure the drilling equipment, providing a stable working surface for drilling operations. It typically consists of a steel frame, support devices, and a leveling system, possessing good strength and stability to adapt to various terrains and geological conditions. This platform enables precise positioning and adjustment of the drilling rig, ensuring the verticality and accuracy of the borehole. It also facilitates equipment installation, commissioning, and maintenance by operators, improving the efficiency and safety of drilling operations, and playing a vital role in mining, geological exploration, and engineering construction.

[0003] Patent application CN201810302640.6 discloses a drilling platform for a radial drilling rig, including a support plate fixed below the radial drilling rig. A first platform is slidably connected to the support plate in a horizontal direction. A first screw is internally threaded to the first platform. A bearing seat is also fixed above the support plate. A second platform is hinged to the end of the first platform away from the radial drilling rig. A driven gear is fixed to the end of the shaft away from the second platform.

[0004] When machining parts with tilt angles, existing radial drilling platforms often cause drilling angle deviations due to the tilt angle of the parts themselves. This problem stems from the lack of an adaptive leveling mechanism on the platform, making it difficult to maintain perpendicularity to the surface of the tilted parts, resulting in uneven force on the drill bit and deviation of the drilling trajectory. Summary of the Invention

[0005] In view of the shortcomings of the prior art, the purpose of this invention is to provide a drilling platform for a radial drilling rig to solve the problems mentioned in the background art.

[0006] To achieve the above objectives, the present invention provides the following technical solution: a drilling platform for a radial drilling rig, comprising a fixed base, a fixed block fixedly connected to the top left side of the fixed base, a lifting rod fixedly connected to the top middle of the fixed block, an adjusting plate provided on the outer wall of the lifting rod, the inner wall of the adjusting plate fixedly connected to the outer wall of the lifting rod, a drilling mechanism provided on the top inner wall of the adjusting plate, the side of the drilling mechanism near the adjusting plate being slidably connected to the inner wall of the adjusting plate, and a worktable fixedly connected to the top right side of the fixed base, with a pushing mechanism installed on the top of the worktable; The propulsion mechanism includes: A first connecting rod has a first arc-shaped plate on its top outer wall. The side of the first arc-shaped plate closest to the first connecting plate is fixedly connected to the outer wall of the first connecting plate, and a positioning plate is fixedly connected to the side of the first arc-shaped plate away from the first connecting rod. The first connecting rod is used to drive the first arc-shaped plate to move.

[0007] According to the above technical solution, the side of the positioning plate away from the first arc plate is rotatably connected to two sets of first rotating plates via a first rotating shaft. The side of each set of first rotating plates away from the first arc plate is rotatably connected to a second rotating plate via a second rotating shaft. The first rotating plate is used to adjust the position of the second rotating plate.

[0008] According to the above technical solution, a first spring is fixedly connected to the side of each of the two sets of second rotating plates near the first rotating plate, and the side of each of the two sets of first springs near the first rotating plate is fixedly connected to the inner wall of the first rotating plate. A rebound rod is fixedly connected to the side of each of the two sets of second rotating plates away from the first connecting rod, and a blocking plate is fixedly connected to the side of each of the two sets of rebound rods away from the second rotating plate. The blocking plate is used to straighten the angle of the drill bit.

[0009] According to the above technical solution, it also includes an adjustment mechanism, which includes a moving block. The side of the moving block near the worktable is slidably connected to the inner wall of the worktable. An arc-shaped groove is provided on the top of the moving block. A first sliding rod is provided on the wall of the arc-shaped groove. Both sides of the first sliding rod near the arc-shaped groove are fixedly connected to the wall of the arc-shaped groove. A second spring is provided on the outer wall of the first sliding rod. The side of the second spring near the first sliding rod is in contact with the outer wall of the first sliding rod. The right side of the second spring is fixedly connected to the wall of the arc-shaped groove. A displacement plate is fixedly connected to the left side of the second spring. The inner wall of the displacement plate is slidably connected to the outer wall of the first sliding rod. A bonding plate is fixedly connected to the side of the arc-shaped groove near the drilling mechanism. The second spring is used to drive the displacement plate to move back to its original position.

[0010] According to the above technical solution, the inner wall of the bonding plate is provided with three sets of second sliding rods. The side of the three sets of second sliding rods near the bonding plate is slidably connected to the inner wall of the bonding plate. The side of the three sets of second sliding rods near the first sliding rod is fixedly connected to an insertion rod. The side of the three sets of insertion rods near the first sliding rod is slidably connected to the inner wall of the first sliding rod. The second sliding rod is used to drive the insertion rod to move up and down.

[0011] According to the above technical solution, a bending plate is provided on the top of the bonding plate. The side of the bending plate near the arc groove is fixedly connected to the wall of the arc groove. Three sets of pull ropes are fixedly connected to the side of the bending plate near the second sliding rod. The side of each of the three sets of pull ropes near the second sliding rod is fixedly connected to the inner wall of the third sliding rod. The pull ropes are used to drive the second sliding rod to perform a reset movement.

[0012] According to the above technical solution, it also includes a support mechanism, which includes a second connecting rod. The side of the second connecting rod near the moving block is fixedly connected to the left outer wall of the moving block. A rectangular block is fixedly connected to the left side of the second connecting rod. A buckle plate is rotatably connected to the side of the rectangular block near the second connecting rod through a third rotating shaft. Two sets of contact plates are fixedly connected to the top of the buckle plate. The two sets of contact plates are rotatably connected to the contact plates through a first bearing. The second connecting rod is used to limit the movement distance of the rectangular block.

[0013] According to the above technical solution, the side of the buckle away from the second connecting rod is rotatably connected to a curved plate via a fourth rotating shaft. The inner wall of the curved plate is provided with two sets of third springs. The side of each set of third springs near the curved plate is fixedly connected to the inner wall of the curved plate. The side of each set of third springs near each other is fixedly connected to a limit block, which has a position for fixing parts.

[0014] According to the above technical solution, a second arc-shaped plate is fixedly connected to the bottom of the curved plate, and an inclined block is provided on the inner wall of the second arc-shaped plate. The side of the inclined block close to the second arc-shaped plate is slidably connected to the inner wall of the second arc-shaped plate, and the top of the inclined block contacts the bottom of the curved plate. The inclined block is used to fill the tilt angle of the part.

[0015] Compared with the prior art, the present invention provides a drilling platform for a radial drilling rig, which has the following advantages: 1. By setting up a pushing mechanism, the present invention can provide stable support for the drill bit on one side of the tilt angle during part processing. The mechanism can adaptively adjust the support force according to the tilt angle of the part, effectively suppressing drill bit slippage during positioning and drilling, and avoiding hole tilting problems caused by drill bit deviation.

[0016] 2. By setting a second rotating plate, the present invention enables flexible adjustment of the position of the blocking plate. When the position of the blocking plate needs to be adjusted, it can be done simply by operating the second rotating plate. Moreover, the second rotating plate can continuously push forward during the movement, ensuring that the blocking plate automatically fits towards the drill bit after the position adjustment is completed, effectively avoiding the problem of the processing effect being affected by the blocking plate's inability to accurately push the drill bit.

[0017] 3. By setting an adjustment mechanism, the distance of the first connecting rod can be adjusted. This mechanism supports the displacement adjustment of the first connecting rod within a certain range. After the distance adjustment is completed, it can be locked and fixed immediately, which can effectively resist the vibration force generated during the processing, ensure that the first connecting rod always maintains the predetermined position, avoid displacement deviation caused by vibration, and thus provide a reliable guarantee for the stability and accuracy of the processing operation.

[0018] 4. By setting up a pull rope structure, this invention can realize the rapid linkage upward movement of the insertion rod. When the insertion rod is not needed for limiting, the pull rope can promptly drive the insertion rod to retract into the first sliding rod, effectively preventing the displacement plate from colliding with the drill bit due to excessive movement distance. By controlling the timing of the insertion rod's retraction and extension, abnormal contact between components can be prevented, significantly improving the safety and reliability of equipment operation.

[0019] 5. By setting up a support mechanism, the present invention can provide a certain angle compensation for parts with tilt angles. The mechanism can automatically adjust the support posture according to the tilt angle of the part, ensuring that the drill bit and the surface to be processed are in close contact, effectively eliminating the gap caused by the tilt of the surface, and avoiding the problem of hole position displacement caused by uneven force on the drill bit. Attached Figure Description

[0020] Figure 1 This is a schematic diagram of the structure of the present invention; Figure 2 This is a schematic diagram of the structure of the workbench of the present invention; Figure 3 This is a schematic diagram of the structure of the actuating mechanism of the present invention; Figure 4 This is a schematic diagram of the structure of the first arc-shaped plate of the present invention; Figure 5 This is a schematic diagram of the structure of the movable block of the present invention; Figure 6 This is a schematic diagram of the adjustment mechanism of the present invention; Figure 7 This is a schematic diagram of the insertion rod of the present invention; Figure 8 This is a schematic diagram of the support mechanism of the present invention; Figure 9 This is a schematic diagram of the structure of the second arc-shaped plate of the present invention.

[0021] In the diagram: 1. Fixed base; 2. Fixed block; 3. Lifting rod; 4. Adjusting plate; 5. Drilling mechanism; 6. Worktable; 7. Pushing mechanism; 701. First connecting rod; 702. First arc-shaped plate; 703. Positioning plate; 704. First rotating plate; 705. First spring; 706. Blocking plate; 707. Second rotating plate; 708. Return rod; 8. Adjusting mechanism; 801. Moving block; 802. Arc-shaped groove; 803. 804. First sliding rod; 805. Second spring; 806. Displacement plate; 807. Adhesive plate; 808. Bending plate; 809. Pulling rope; 810. Second sliding rod; 811. Insertion rod; 92. Support mechanism; 901. Rectangular block; 902. Contact plate; 903. Second connecting rod; 904. Bending plate; 905. Third spring; 906. Limiting block; 907. Inclined block; 908. Second arc-shaped plate; 909. Buckle plate. Detailed Implementation

[0022] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments.

[0023] Examples of the embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain the invention, and should not be construed as limiting the invention.

[0024] In this invention, unless otherwise explicitly specified and limited, the terms "installation," "connection," "linking," and "fixing," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components. Those skilled in the art can understand the specific meaning of the above terms in this invention according to the specific circumstances.

[0025] Example 1: See Figures 1-4The present invention provides a technical solution: a drilling platform for a radial drilling rig, comprising a fixed base 1, a fixed block 2 fixedly connected to the top left side of the fixed base 1, a lifting rod 3 fixedly connected to the top middle of the fixed block 2, an adjusting plate 4 provided on the outer wall of the lifting rod 3, the inner wall of the adjusting plate 4 fixedly connected to the outer wall of the lifting rod 3, a drilling mechanism 5 provided on the top inner wall of the adjusting plate 4, the side of the drilling mechanism 5 near the adjusting plate 4 being slidably connected to the inner wall of the adjusting plate 4, a worktable 6 fixedly connected to the top right side of the fixed base 1, a pushing mechanism 7 installed on the top of the worktable 6, the pushing mechanism 7 including a first connecting rod 701, a first arc-shaped plate 702 provided on the top outer wall of the first connecting rod 701, the first arc-shaped plate 702... The side of the first arc-shaped plate 702 closest to the first connecting plate is fixedly connected to the outer wall of the first connecting plate. A positioning plate 703 is fixedly connected to the side of the first arc-shaped plate 702 furthest from the first connecting rod 701. The first connecting rod 701 is used to move the first arc-shaped plate 702. By setting a first rotating plate 704 that can rotate at multiple angles, the position can be adaptively adjusted according to parts with different tilt angles. When facing parts with varying tilt angles, the rotation angle of the first rotating plate 704 can be flexibly adjusted to ensure that the supporting part of the drilling mechanism 5 always fits against the tilted surface of the part, thereby improving the stability of the support. This is achieved through the dynamic angle adjustment mechanism of the first rotating plate 704. This design effectively solves the support and adaptation problem during the machining of parts with different tilt angles. The positioning plate 703, on the side away from the first arc-shaped plate 702, is rotatably connected to two sets of first rotating plates 704 via a first rotating shaft. Each set of first rotating plates 704, on the side away from the first arc-shaped plate 702, is rotatably connected to a second rotating plate 707 via a second rotating shaft. The first rotating plate 704 is used to adjust the position of the second rotating plate 707. Each set of second rotating plates 707, on the side closest to the first rotating plate 704, is fixedly connected to a first spring 705. The side of each set of first springs 705 closest to the first rotating plate 704 is fixedly connected to the inner wall of the first rotating plate 704. The two sets of second rotating plates 707... 07. A rebound rod 708 is fixedly connected to the side away from the first connecting rod 701. A blocking plate 706 is fixedly connected to the side of the two sets of rebound rods 708 away from the second rotating plate 707. By setting the blocking plate 706, a stable lateral support can be provided for the drilling mechanism 5. When the drill bit contacts the surface of the inclined part, the blocking plate 706 can accurately fill the suspended area of ​​the drill bit, so that the drill bit always maintains a vertical force state. This effectively avoids uneven force caused by the local suspension of the drill bit, fundamentally prevents slippage during the drilling process, and ensures the accuracy of the drilling position and the stability of the hole quality. The blocking plate 706 is used to straighten the angle of the drill bit.

[0026] The working principle of this embodiment is as follows: When processing parts, the existing radial drilling platform may experience hole position misalignment due to the tilt angle of the parts. This mechanism addresses this issue. When the operator needs to process the part, they adjust the position of the lifting rod 3. The drilling mechanism 5 is moved on the adjusting plate 4. The part to be processed is then placed on the worktable 6. The first connecting rod 701 is then moved, simultaneously moving the first arc plate 702. This movement of the first arc plate 702 causes the positioning plate 703 to move synchronously. The positioning plate 703 then moves the first rotating plate 704, which in turn moves the first spring 705 towards the drilling mechanism 5. 4. During the movement, the second rotating plate 707 will also move synchronously. When the second rotating plate 707 moves, it will drive the return rod 708 to move, which in turn will drive the blocking plate 706 to move. At this time, the angle of the blocking plate 706 needs to be adjusted to ensure that the inclined surface of the blocking plate 706 and the part are in the same position. Then, the operator starts to rotate the second rotating plate 707. When the second rotating plate 707 rotates, it will drive the return rod 708 to move synchronously. When the second rotating plate 707 rotates, it will pull the first spring 705 to stretch. After the second rotating plate 707 completes the angle rotation, the first spring 705 will pull the second rotating plate 707 to move, which will drive the blocking plate 706 and the return rod 708 to move. At this time, the blocking plate 706 will contact the rotating hole mechanism to complete the work.

[0027] Example 2: Please refer to Figures 5-7Based on Embodiment 1, the present invention provides a technical solution that further includes an adjustment mechanism 8. The adjustment mechanism 8 includes a moving block 801. The side of the moving block 801 closest to the worktable 6 is slidably connected to the inner wall of the worktable 6. An arc-shaped groove 802 is provided on the top of the moving block 801. A first sliding rod 803 is provided on the wall of the arc-shaped groove 802. Both sides of the first sliding rod 803 closest to the arc-shaped groove 802 are fixedly connected to the wall of the arc-shaped groove 802. A second spring 804 is provided on the outer wall of the first sliding rod 803. By providing the second spring 804, the displacement plate 805 can be quickly reset. When the drilling mechanism 5 operates at high speed, the increased rotation speed may cause impact damage to the pushing mechanism 7. The second spring 804 can pull in time at this time. The displacement plate 805 is reset. Through the dynamic reset function of the second spring 804, the service life and operational reliability of key components of the equipment are significantly improved while ensuring processing efficiency. The side of the second spring 804 closest to the first sliding rod 803 contacts the outer wall of the first sliding rod 803. The right side of the second spring 804 is fixedly connected to the wall of the arc-shaped groove 802. The displacement plate 805 is fixedly connected to the left side of the second spring 804. The inner wall of the displacement plate 805 is slidably connected to the outer wall of the first sliding rod 803. A bonding plate 806 is fixedly connected to the side of the arc-shaped groove 802 closest to the drilling mechanism 5. The second spring 804 is used to drive the displacement plate 805 to reset and move. Three sets of second sliding rods 809 are provided on the inner wall of the bonding plate 806. The side of rod 809 closest to the bonding plate 806 is slidably connected to the inner wall of the bonding plate 806. Each of the three sets of second sliding rods 809 is fixedly connected to an insertion rod 810 on the side closest to the first sliding rod 803. By setting the insertion rod 810, the displacement block can be precisely limited. After the displacement block completes its movement, the insertion rod 810 can quickly lock its position, effectively resisting the vibration generated during drilling and preventing the displacement block from shifting due to vibration. Through the rigid limiting effect of the insertion rod 810, the displacement block remains stable during processing, ensuring the accuracy of drilling operations and the reliability of equipment operation. The side of each of the three sets of insertion rods 810 closest to the first sliding rod 803 is slidably connected to the inner wall of the first sliding rod 803. 9 is used to drive the insertion rod 810 to move up and down. A bent plate 807 is provided on the top of the bonding plate 806. The side of the bent plate 807 near the arc-shaped groove 802 is fixedly connected to the wall of the arc-shaped groove 802. Three sets of pull ropes 808 are fixedly connected to the side of the bent plate 807 near the second sliding rod 809. By setting the pull ropes 808, the insertion rod 810 can be quickly pulled upwards to reset after it has moved downwards. This design utilizes the instantaneous linkage characteristic of the pull ropes 808 to achieve rapid locking of the displacement plate 805, effectively preventing secondary movement of the displacement plate 805 after it is fixed. Through the coordinated work of the pull ropes 808 and the insertion rod 810, both the convenience of the limit operation and the reliability of the displacement plate 805's fixation are ensured.The three sets of pull ropes 808 are all fixedly connected to the inner wall of the third sliding rod on the side closest to the second sliding rod 809. These pull ropes 808 are used to drive the second sliding rod 809 to perform a reset movement.

[0028] The working principle of this embodiment is as follows: When dealing with parts of different sizes that require distance adjustment, this ensures that the distance can be adjusted even when dealing with parts of different sizes. The process involves processing the distance adjustment. When the connecting rod needs to be moved, the displacement plate 805 is pushed. During the movement of the displacement plate 805, the second spring 804 is stretched, and the displacement plate 805 slides on the first sliding rod 803. After sliding a certain distance, the displacement plate 805 contacts the insertion rod 810. Because the side of the displacement plate 805 closest to the insertion rod 810 has an inclined shape, when the displacement plate 805 moves, it pushes the insertion rod 810 downwards. When the insertion rod 810 moves downwards, it pushes the first sliding rod 803. The two sliding rods 809 move downwards synchronously. When the second sliding rod 809 moves downwards, it slides downwards within the bonding plate 806. This downward movement of the second sliding rod 809 also pulls the pull rope 808 downwards. When the displacement plate 805 passes the insertion rod 810, the pull rope 808 begins to rebound. This rebound causes the second sliding rod 809 to move upwards. As the second sliding rod 809 slides upwards, it causes the insertion rod 810 to move upwards synchronously. When the insertion rod 810 moves upwards, it re-inserts into the first sliding rod 803. At this point, the displacement plate 805 is locked between the insertion rods 810, thus completing the fixation. The second spring 804 then fully bends, completing the operation.

[0029] Example 3: Please refer to Figures 7-9Based on Embodiments 1 and 2, the present invention provides a technical solution that further includes a support mechanism 9. The support mechanism 9 includes a second connecting rod 903. The side of the second connecting rod 903 closest to the moving block 801 is fixedly connected to the left outer wall of the moving block 801. A rectangular block 901 is fixedly connected to the left side of the second connecting rod 903. A buckle plate 909 is rotatably connected to the side of the rectangular block 901 closest to the second connecting rod 903 via a third rotating shaft. By setting the buckle plate 909, it can be ensured that when processing a part, the buckle plate 909 can block the inclined part being processed. This ensures that when the drill bit slips, it will directly contact the buckle plate. The buckle 909 is fixedly connected to two sets of contact plates 902 at its top. The two sets of contact plates 902 are rotatably connected to the contact plates 902 via a first bearing. The second connecting rod 903 is used to limit the movement distance of the rectangular block 901. A curved plate 904 is rotatably connected to the side of the buckle 909 away from the second connecting rod 903 via a fourth rotating shaft. Two sets of third springs 905 are provided on the inner wall of the curved plate 904. The sides of the two sets of third springs 905 closest to the curved plate 904 are fixedly connected to the inner wall of the curved plate 904. Limit blocks 906 are fixedly connected to the sides of the two sets of third springs 905 that are close to each other. By setting a limiting block 906, parts with an angled inclination can be precisely clamped and fixed. The limiting block 906 can adaptively adjust the clamping force according to the inclination angle of the part, ensuring that the part is completely fixed after being limited and cannot move. This effectively prevents the tilting block 907 from shaking when filling the angle of the part. Through the synergistic effect of the limiting block 906 and the tilting block 907, a stable support environment is provided for part processing. The limiting block 906 fixes the position of the part. A second arc-shaped plate 908 is fixedly connected to the bottom of the curved plate 904. The inner wall of the second arc-shaped plate 908 is provided with the tilting block 907. The tilting block 907 is provided to fill the tilt angle of the part when the drilling mechanism 5 is processing the part. The tilting block 907 can fit the tilted surface of the part, effectively eliminating the gap between the drill bit and the part, thereby avoiding the problem of drilling position deviation caused by the drill bit being suspended. Through the angle compensation effect of the tilting block 907, the drilling mechanism 5 is ensured to remain stable during the processing, improving the drilling accuracy and reliability. The side of the tilting block 907 near the second arc block is slidably connected to the inner wall of the second arc block, and the top of the tilting block 907 contacts the bottom of the curved plate 904. The tilting block 907 is used to fill the tilt angle of the part.

[0030] The working principle of this embodiment is as follows: Addressing the issue of drill bit suspension that easily occurs when drilling parts with inclined surfaces, resulting in inaccurate machining, this mechanism addresses this problem. The specific workflow is as follows: When the drill bit is partially suspended due to the inclined surface of the part, the operator can manually rotate the curved plate 904 to raise it upwards. The raising motion of the curved plate 904 drives the third spring 905 upwards via a linkage mechanism, thereby driving the limit block 906 to move upwards synchronously. Simultaneously, the curved plate 904 pulls the second arc plate 908 to adjust its angle. When the curved plate 904 rotates to a preset angle, the buckle plate 909 connected to its end moves upwards accordingly. At this time, the inclined block 907 inside the second arc plate 908... The drill bit begins its controlled descent. During its ascent, the two limiting blocks 906 precisely conform to the contours of the parts on both sides, forming a stable clamping base. At the same time, the tilting block 907 moves along the inner wall of the second arc-shaped plate 908 toward the limiting blocks and continues to move downward. After the tilting block 907 completes its downward movement, it gradually forms an tilted posture that matches the tilted surface of the part. This causes the side of the tilting block 907 closest to the part to fit tightly against the tilted surface of the part, effectively filling the suspended area of ​​the drill bit. At this time, because the curved plate is always rotating downward due to gravity, it ensures that the tilting block 907 will not move upward when the drill bit is processing the part. This ensures that the tilting block 907 always fits against the tilted surface of the part.

[0031] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus.

[0032] Finally, it should be noted that the above descriptions are merely preferred embodiments of the present invention and are not intended to limit the present invention. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.

Claims

1. A drilling platform for a radial drilling rig, comprising a fixed base (1), a fixed block (2) fixedly connected to the top left side of the fixed base (1), a lifting rod (3) fixedly connected to the top middle of the fixed block (2), an adjusting plate (4) provided on the outer wall of the lifting rod (3), the inner wall of the adjusting plate (4) fixedly connected to the outer wall of the lifting rod (3), a drilling mechanism (5) provided on the top inner wall of the adjusting plate (4), the drilling mechanism (5) being slidably connected to the inner wall of the adjusting plate (4) on the side near the adjusting plate (4), and a worktable (6) fixedly connected to the top right side of the fixed base (1), characterized in that, A pushing mechanism (7) is installed on the top of the workbench (6); The propulsion mechanism (7) includes: A first connecting rod (701) is provided with a first arc-shaped plate (702) on the top outer wall of the first connecting rod (701). The side of the first arc-shaped plate (702) close to the first connecting rod (701) is fixedly connected to the outer wall of the first connecting rod (701). A positioning plate (703) is fixedly connected to the side of the first arc-shaped plate (702) away from the first connecting rod (701). The first connecting rod (701) is used to drive the first arc-shaped plate (702) to move. It also includes an adjustment mechanism (8), which includes a moving block (801). The moving block (801) is slidably connected to the inner wall of the worktable (6) on one side near the worktable (6). An arc-shaped groove (802) is provided on the top of the moving block (801). A first sliding rod (803) is provided on the wall of the arc-shaped groove (802). The first sliding rod (803) is fixedly connected to the wall of the arc-shaped groove (802) on both sides near the arc-shaped groove (802). A second spring (804) is provided on the outer wall of the first sliding rod (803). The side of the spring (804) near the first sliding rod (803) is in contact with the outer wall of the first sliding rod (803). The right side of the second spring (804) is fixedly connected to the wall of the arc groove (802). A displacement plate (805) is fixedly connected to the left side of the second spring (804). The inner wall of the displacement plate (805) is slidably connected to the outer wall of the first sliding rod (803). A bonding plate (806) is fixedly connected to the side of the arc groove (802) near the drilling mechanism (5). The second spring (804) is used to drive the displacement plate (805) to move back to its original position. The inner wall of the bonding plate (806) is provided with three sets of second sliding rods (809). The side of the three sets of second sliding rods (809) near the bonding plate (806) is slidably connected to the inner wall of the bonding plate (806). The side of the three sets of second sliding rods (809) near the first sliding rod (803) is fixedly connected to an insertion rod (810). The side of the three sets of insertion rods (810) near the first sliding rod (803) is slidably connected to the inner wall of the first sliding rod (803). The second sliding rod (809) is used to drive the insertion rod (810) to move up and down. The top of the bonding plate (806) is provided with a bending plate (807). The side of the bending plate (807) near the arc groove (802) is fixedly connected to the wall of the arc groove (802). Three sets of pull ropes (808) are fixedly connected to the side of the bending plate (807) near the second sliding rod (809). The side of the three sets of pull ropes (808) near the second sliding rod (809) is fixedly connected to the inner wall of the second sliding rod (809). The pull ropes (808) are used to drive the second sliding rod (809) to perform a reset movement.

2. The drilling platform of a radial drilling rig according to claim 1, characterized in that: The positioning plate (703) is rotatably connected to two sets of first rotating plates (704) on the side away from the first arc plate (702) via a first rotating shaft. The two sets of first rotating plates (704) are rotatably connected to second rotating plates (707) on the side away from the first arc plate (702) via a second rotating shaft. The first rotating plate (704) is used to adjust the position of the second rotating plate (707).

3. The drilling platform of a radial drilling rig according to claim 2, characterized in that: Each of the two sets of second rotating plates (707) is fixedly connected to a first spring (705) on the side near the first rotating plate (704). The side of each of the two sets of first springs (705) near the first rotating plate (704) is fixedly connected to the inner wall of the first rotating plate (704). Each of the two sets of second rotating plates (707) is fixedly connected to a rebound rod (708) on the side away from the first connecting rod (701). Each of the two sets of rebound rods (708) is fixedly connected to a blocking plate (706) on the side away from the second rotating plate (707). The blocking plate (706) is used to straighten the angle of the drill bit.

4. The drilling platform of a radial drilling rig according to claim 3, characterized in that: It also includes a support mechanism (9), which includes a second connecting rod (903). The side of the second connecting rod (903) near the moving block (801) is fixedly connected to the left outer wall of the moving block (801). A rectangular block (901) is fixedly connected to the left side of the second connecting rod (903). A buckle plate (909) is rotatably connected to the side of the rectangular block (901) near the second connecting rod (903) through a third rotating shaft. Two sets of contact plates (902) are fixedly connected to the top of the buckle plate (909). The two sets of contact plates (902) are rotatably connected to the rectangular block (901) through a first bearing. The second connecting rod (903) is used to limit the movement distance of the rectangular block (901).

5. The drilling platform of a radial drilling rig according to claim 4, characterized in that: The side of the buckle plate (909) away from the second connecting rod (903) is rotatably connected to a curved plate (904) via a fourth rotating shaft. The inner wall of the curved plate (904) is provided with two sets of third springs (905). The side of each set of third springs (905) near the curved plate (904) is fixedly connected to the inner wall of the curved plate (904). The side of each set of third springs (905) that is close to each other is fixedly connected to a limit block (906), which fixes the part.

6. The drilling platform of a radial drilling rig according to claim 5, characterized in that: The bottom of the curved plate (904) is fixedly connected to a second arc plate (908). An inclined block (907) is provided on the inner wall of the second arc plate (908). The side of the inclined block (907) close to the second arc plate (908) is slidably connected to the inner wall of the second arc plate (908). The top of the inclined block (907) contacts the bottom of the curved plate (904). The inclined block (907) is used to fill the tilt angle of the part.

Citation Information

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