Anti-burst drilling machine stand overturning equipment
Patent Information
- Application Number
- CN202611083134.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2026-07-21
- Publication Date
- 2026-08-18
AI Technical Summary
这种模式不仅工序繁琐,大幅增加人工拆装工作量,还严重耽误施工进度,打乱煤矿掘进与瓦斯抽采的正常接续计划
[0022] After the positioning groove and the positioning column are matched, the positioning column can be rotated to make the pressure sleeve press against the column base plate, thereby fixing the column. During disassembly, the column can be unlocked simply by releasing the pressure sleeve, thereby enabling the column to be flipped over to reduce its height and facilitate transportation.
Smart Images

Figure CN122589331A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of coal mine drilling rig technology, specifically to a non-disassembly and non-transportable anti-outburst drilling rig column tilting device. Background Technology
[0002] The underground working environment in coal mines is unique, with generally narrow tunnel spaces, especially the height of transport passages, which are typically only 1.5 to 3 meters high, severely limiting the transportation of large equipment. Currently used equipment in coal mines, such as anti-outburst drilling rigs, gas drainage and water exploration drilling rigs, are generally designed to be tall to meet drilling capacity, and their overall dimensions are incompatible with the limited underground transport space.
[0003] The traditional transportation method in the industry is disassembly and transportation, which involves disassembling the drilling rig into multiple independent components such as pump stations, control panels, power heads, and columns in advance, transporting them to the working face separately, and then assembling and installing them on-site. This method is not only cumbersome and significantly increases the amount of manual disassembly and assembly work, but also seriously delays the construction progress and disrupts the normal succession plan of coal mine tunneling and gas extraction.
[0004] Meanwhile, repeated disassembly and reassembly involve a large amount of high-altitude hoisting, large bolt removal, and hydraulic pipeline disassembly and reconnection work, which not only significantly increases the labor intensity of workers but also easily leads to safety risks such as crushing injuries. Repeated disassembly and reassembly of hydraulic pipelines increases the probability of leakage and the entry of coal dust and impurities, easily causing hydraulic system contamination and increasing equipment failure rates. Furthermore, repeated disassembly and reassembly make it difficult to guarantee the installation accuracy of critical components such as the column base and body connections, affecting the accuracy of the drilling angle and causing deviations in deep-hole directional drilling, thus impacting construction quality. Therefore, the existing disassembly and transportation mode suffers from many problems such as low efficiency, high cost, high risk, and difficulty in guaranteeing accuracy. The industry urgently needs equipment and technology that can transport the entire machine without disassembly while meeting transportation size requirements. Summary of the Invention
[0005] To address the shortcomings of existing technologies, the present invention aims to provide a non-disassembly-required anti-outburst drilling rig column flipping device. After the positioning slot and positioning column are matched, rotating the positioning column causes the pressure sleeve to press against the column base plate, thereby fixing the column. During disassembly, simply releasing the pressure sleeve unlocks the column, allowing it to flip over to reduce its height and facilitate transportation. The rotation of the positioning column drives the rotation of the pushing component, controlling the contact or separation between the pushing component and the protrusion. This ensures that when the device body presses against the column base plate, it abuts against the protrusion, preventing the device body from moving. Releasing the pressure sleeve automatically separates the pushing component from the protrusion, enabling rapid disassembly.
[0006] To achieve the above objectives, the present invention adopts the following technical solution:
[0007] In a first aspect, the present invention provides a non-disassembly-required anti-outburst drilling rig column tilting device, which is installed on the drilling rig body. The drilling rig body has a base, and a column is mounted on the top of the base. A column base plate is mounted on the bottom of the column. The device body includes a device body, and a tilting column is fixedly mounted on one side of the column. The tilting column is rotatably connected to the base. The device body includes:
[0008] The mounting base has a groove inside;
[0009] A pressure mechanism located on one side of the mounting base, the pressure mechanism including a support block fixedly installed on one side of the mounting base, and a positioning post threadedly connected to the support block, and a pressure sleeve fixedly sleeved on the positioning post;
[0010] A pushing mechanism is provided inside the groove. The pushing mechanism includes a pushing member. A third flat surface and a fourth flat surface that are perpendicular to each other are opened on one side of the pushing member. The pushing mechanism also includes a rotating wheel. When the rotating wheel moves, it abuts against the third flat surface or the fourth flat surface to drive the pushing member to rotate.
[0011] A transmission mechanism is provided between the pressure mechanism and the pushing mechanism. The transmission mechanism includes a lead screw shaft and a ball nut that cooperate with each other. When the pressure sleeve in the pressure mechanism rotates, it drives the rotating wheel to move linearly through the transmission mechanism.
[0012] Preferably, the transmission mechanism further includes a synchronization component, which includes a synchronization wheel rotatably mounted inside the mounting base. A synchronization belt is mounted on the synchronization wheel. Multiple pressure sleeves are provided, and the side of the pressure sleeve located in the middle part is provided with grooves. The synchronization belt is adapted to the grooves. When the pressure sleeve rotates, it drives the synchronization belt and the synchronization wheel to rotate through the grooves.
[0013] Preferably, a bevel gear set is installed on the top of the synchronous pulley, one end of the bevel gear set is connected to the lead screw shaft, a fixing plate is installed on the mounting base, one end of the lead screw shaft is rotatably mounted on the fixing plate, a side base plate is also fixedly installed on the mounting base, and the other end of the lead screw shaft is rotatably connected to the side base plate.
[0014] Preferably, a cover plate is fixedly installed on the top of the mounting base, and a limiting component is provided between the cover plate and the ball nut. The limiting component includes a sliding plate fixedly installed on the ball nut and a sliding groove opened on the cover plate. The sliding plate is slidably connected to the sliding groove, and the sliding plate and the sliding groove are used to limit the rotation of the ball nut.
[0015] Preferably, the transmission mechanism further includes a moving component, which includes a fixed rod fixedly mounted on the mounting base, a sliding sleeve movably sleeved on the fixed rod, a connecting rod fixedly mounted on the sliding sleeve, and tension springs installed at both ends of the connecting rod, with one end of the tension spring fixedly connected to the mounting base.
[0016] Preferably, the mounting base has a slot, a slider is slidably mounted on the slot, a connecting post is fixedly mounted on the top of the slider, a connecting rod passes through the connecting post and is fixedly connected to it, a connecting frame is fixedly mounted on one side of the connecting rod, and a push plate is mounted on the bottom of the ball nut, the push plate moves and abuts against the connecting frame.
[0017] Preferably, a base plate is installed at the bottom of the mounting base, the pusher is rotatably mounted on the base plate, and the pusher is also provided with a first flat surface and a second flat surface, the first flat surface and the second flat surface are perpendicular to each other, and a boss is provided in the groove, the boss being aligned with the first flat surface or the second flat surface.
[0018] Preferably, the mounting base is provided with a sliding mechanism on both sides. The sliding mechanism includes a limiting sleeve fixedly installed on both sides of the mounting base, and a limiting rod movably inserted into the limiting sleeve. The two ends of the limiting rod are fixedly installed on the top of the base.
[0019] Preferably, a positioning groove is provided on the column base plate, the positioning groove is adapted to the positioning column, a washer is sleeved on the positioning column, the washer is located at the bottom of the pressure sleeve, and an internal hexagonal cap is installed on the top of the positioning column.
[0020] Secondly, the present invention provides another embodiment of the device body, the device body including a second fixing member fixedly connected to the column, and a first fixing member fixedly installed on the top of the base, the first fixing member and the second fixing member being adapted to each other, and a pin being inserted between the first fixing member and the second fixing member.
[0021] Compared with the prior art, the beneficial effects achieved by the present invention are as follows:
[0022] After the positioning groove and the positioning column are matched, the positioning column can be rotated to make the pressure sleeve press against the column base plate, thereby fixing the column. During disassembly, the column can be unlocked simply by releasing the pressure sleeve, thereby enabling the column to be flipped over to reduce its height and facilitate transportation.
[0023] This invention controls the contact or separation between the pusher and the protrusion by rotating the positioning column. This allows the device body to press against the protrusion when it presses against the column base plate, preventing the device body from moving. When the pressure sleeve is released, the pusher automatically separates from the protrusion, achieving rapid disassembly.
[0024] The present invention also achieves the fixation of the column by using a pin to fix the first fixing member and the second fixing member, which is simple in structure. Attached Figure Description
[0025] Figure 1 This is a schematic diagram of the overall structure of Embodiment 1 of the present invention;
[0026] Figure 2 This is a schematic diagram of the installation state of the device body in Embodiment 1 of the present invention;
[0027] Figure 3 This is a schematic diagram of the device body in the detached state in Embodiment 1 of the present invention;
[0028] Figure 4 This is a schematic diagram of the pressure sleeve structure in this invention;
[0029] Figure 5 This is a schematic diagram of the bevel gear assembly in this invention;
[0030] Figure 6 This is a schematic diagram of the tension spring structure in this invention;
[0031] Figure 7 This is a schematic diagram of the structure at the lead screw shaft in this invention;
[0032] Figure 8 This is a schematic diagram of the groove structure in this invention;
[0033] Figure 9 This is a schematic diagram of the structure of the pushing component in this invention;
[0034] Figure 10 This is a schematic diagram of the structure at the boss in this invention;
[0035] Figure 11 This is a schematic diagram of the overall structure of Embodiment 2 of the present invention;
[0036] Figure 12 This is a schematic diagram of the installation state of the device body in Embodiment 2 of the present invention.
[0037] Figure label:
[0038] 100. Drilling rig body; 101. Base; 102. Column; 103. Tilting column; 104. Column base plate;
[0039] 200. Mounting base; 201. Support block; 202. Socket cap; 203. Locating pin; 204. Pressure sleeve; 205. Washer; 206. Locating groove;
[0040] 300. Groove; 301. Synchronous belt; 302. Synchronous pulley; 303. Bevel gear set; 304. Lead screw shaft; 305. Fixed plate; 306. Side plate; 307. Cover plate; 308. Slide groove; 309. Ball nut; 310. Slide plate; 311. Push plate;
[0041] 400. Fixed rod; 401. Sliding sleeve; 402. Connecting rod; 403. Connecting frame; 404. Tension spring; 405. Connecting column; 406. Groove; 407. Slider; 408. Rotating wheel; 409. Groove; 410. Pushing component; 411. First flat surface; 412. Second flat surface; 413. Boss; 414. Base plate; 415. Third flat surface; 416. Fourth flat surface; 417. Protrusion;
[0042] 500, Limiting sleeve; 501, Limiting rod;
[0043] 600, First fastener; 601, Second fastener; 602, Pin. Detailed Implementation
[0044] The technical solution of the present invention will be described in detail below with reference to the accompanying drawings and specific embodiments. It should be understood that the embodiments of the present invention and the specific features in the embodiments are detailed descriptions of the technical solution of the present invention, rather than limitations thereof.
[0045] Example 1
[0046] like Figures 1-10 As shown, this embodiment provides a non-disassembly-required anti-outburst drilling rig column tilting device, which is installed on the drilling rig body 100. A base 101 is installed on the drilling rig body 100, and a column 102 is provided on the top of the base 101. A column base plate 104 is installed at the bottom of the column 102. The device body includes a rotating column 103 fixedly installed on one side of the column 102. The rotating column 103 is rotatably connected to the base 101. The device body includes:
[0047] Mounting base 200, the mounting base 200 has a groove 409 inside;
[0048] The pressure mechanism is located on one side of the mounting base 200. The pressure mechanism includes a support block 201 fixedly installed on one side of the mounting base 200, and a positioning post 203 is threadedly connected to the support block 201. A pressure sleeve 204 is fixedly sleeved on the positioning post 203.
[0049] The pushing mechanism located inside the groove 409 includes a pushing member 410. The pushing member 410 has a third flat surface 415 and a fourth flat surface 416 that are perpendicular to each other on one side. The pushing mechanism also includes a rotating wheel 408. When the rotating wheel 408 moves, it abuts against the third flat surface 415 or the fourth flat surface 416 to drive the pushing member 410 to rotate.
[0050] A transmission mechanism is provided between the pressure mechanism and the push mechanism. The transmission mechanism includes a lead screw shaft 304 and a ball nut 309 that cooperate with each other. When the pressure sleeve 204 in the pressure mechanism rotates, it drives the rotating wheel 408 to move linearly through the transmission mechanism.
[0051] The transmission mechanism also includes a synchronization component, which includes a synchronization pulley 302 rotatably mounted inside the mounting base 200. A synchronization belt 301 is mounted on the synchronization pulley 302. Multiple pressure sleeves 204 are provided, and the middle pressure sleeve 204 has a groove 300 on its side. The synchronization belt 301 is adapted to the groove 300. When the pressure sleeve 204 rotates, it drives the synchronization belt 301 and the synchronization pulley 302 to rotate through the groove 300. In this configuration, four pressure sleeves 204 are provided, and only the two middle pressure sleeves 204 have grooves 300 on their sides. The height of the groove 300 and the synchronization pulley 302 is greater than the width of the synchronization belt 301 to allow space for the pressure sleeve 204 to move up and down, preventing the synchronization belt 301 from disengaging or failing to engage during movement.
[0052] A bevel gear set 303 is mounted on the top of the synchronous pulley 302. One end of the bevel gear set 303 is connected to the lead screw shaft 304. A fixing plate 305 is mounted on the mounting base 200. One end of the lead screw shaft 304 is rotatably mounted on the fixing plate 305. A side plate 306 is also fixedly mounted on the mounting base 200. The other end of the lead screw shaft 304 is rotatably connected to the side plate 306. In this configuration, when the synchronous pulley 302 rotates, it drives the lead screw shaft 304 to rotate through the bevel gear set 303. The bevel gear set 303 is used to change the direction of power so that the rotation of the synchronous pulley 302 is converted into the rotation of the lead screw shaft 304.
[0053] A cover plate 307 is fixedly mounted on the top of the mounting base 200. A limiting component is provided between the cover plate 307 and the ball nut 309. The limiting component includes a sliding plate 310 fixedly mounted on the ball nut 309 and a sliding groove 308 formed in the cover plate 307. The sliding plate 310 is slidably connected to the sliding groove 308. The sliding plate 310 and the sliding groove 308 are used to limit the rotation of the ball nut 309. In this configuration, when the lead screw shaft 304 rotates, the ball nut 309 cannot rotate because of the cooperation between the sliding plate 310 and the sliding groove 308. Therefore, the ball nut 309 can only perform linear motion under the action of the lead screw shaft 304.
[0054] The transmission mechanism also includes a moving component, which includes a fixed rod 400 fixedly mounted on the mounting base 200. A sliding sleeve 401 is movably sleeved on the fixed rod 400, and a connecting rod 402 is fixedly mounted on the sliding sleeve 401. Tension springs 404 are installed at both ends of the connecting rod 402, and one end of the tension spring 404 is fixedly connected to the mounting base 200. In this configuration, the tension of the tension spring 404 acts on the connecting rod 402, so that the connecting rod 402 is continuously subjected to a force that moves in the direction of the bevel gear set 303. The sliding sleeve 401 is used for limiting and preventing the connecting rod 402 from deviating during movement.
[0055] The mounting base 200 has a slot 406, on which a slider 407 is slidably mounted. A connecting post 405 is fixedly mounted on the top of the slider 407. A connecting rod 402 passes through the connecting post 405 and is fixedly connected to it. A connecting frame 403 is fixedly mounted on one side of the connecting rod 402. A push plate 311 is mounted on the bottom of the ball nut 309. The push plate 311 moves and abuts against the connecting frame 403. In this configuration, when the ball nut 309 moves in a straight line, it drives the push plate 311 at the bottom to move. When the push plate 311 moves in the direction of pushing the connecting frame 403, it drives the connecting rod 402 to move, so that it drives the slider 407 to slide along the slot 406. When the push plate 311 moves in the opposite direction, the tension of the tension spring 404 acts on the connecting rod 402 to keep it in contact with the push plate 311.
[0056] A base plate 414 is mounted on the bottom of the mounting base 200. The pusher 410 is rotatably mounted on the base plate 414. The pusher 410 also has a first flat surface 411 and a second flat surface 412, which are perpendicular to each other. A boss 413 is provided in the groove 409, which is aligned with either the first flat surface 411 or the second flat surface 412. In this configuration, when the rotating wheel 408 is in contact with the third flat surface 415, the first flat surface 411 and the boss 413 are in contact, and the pusher 410 cannot rotate. When the rotating wheel 408 is in contact with the fourth flat surface 416, the second flat surface 412 and the boss 413 are in contact, and the pusher 410 cannot rotate.
[0057] A protrusion 417 is mounted on the top of the base 101, and one end of the pusher 410 abuts against the protrusion 417 to prevent the device body from moving.
[0058] The mounting base 200 is provided with sliding mechanisms on both sides. The sliding mechanisms include limiting sleeves 500 fixedly installed on both sides of the mounting base 200, and limiting rods 501 movably inserted into the limiting sleeves 500. The two ends of the limiting rods 501 are fixedly installed on the top of the base 101. In this configuration, the limiting rods 501 and the limiting sleeves 500 can only slide relative to each other, and provide support for the pressure column base plate 104 of the pressure sleeve 204.
[0059] A positioning groove 206 is provided on the column base plate 104, which is adapted to the positioning post 203. A washer 205 is fitted on the positioning post 203, and the washer 205 is located at the bottom of the pressure sleeve 204. An internal hexagonal cap 202 is installed on the top of the positioning post 203. In this configuration, by adapting the positioning post 203 to the positioning groove 206, the pressure sleeve 204 can have a larger contact area with the column base plate 104.
[0060] The implementation principle of the anti-burst drilling rig column tilting device without disassembly and transportation in this embodiment is as follows: When the column 102 is laid down, the device body needs to be unlocked first. At this time, the internal hexagonal cap 202 is turned. When the internal hexagonal cap 202 rotates, it drives the positioning column 203 to rotate, so that the pressure sleeve 204 rotates. During the rotation of the positioning column 203, it rises along the vertical direction and drives the pressure sleeve 204 to rise, so that the pressure sleeve 204 no longer squeezes the column base plate 104.
[0061] During the rotation of the intermediate pressure sleeve 204, the synchronous belt 301 drives the synchronous pulley 302 to rotate, which in turn drives the bevel gear set 303 to rotate. The bevel gear set 303 then drives the lead screw shaft 304 to rotate, causing the ball nut 309 to move linearly. During this movement, the ball nut 309 moves, causing the push plate 311 to move away from the connecting frame 403. When one push plate 311 moves, the other push plate 311 remains in contact with the connecting frame 403. When all the intermediate push plates 311 have moved, the connecting frame 403 is no longer obstructed, allowing the tension of the tension spring 404 to act on the ball nut. On the connecting rod 402, the connecting rod 402 drives the slider 407 to move through the connecting column 405. The slider 407 drives the rotating wheel 408 to move. During the movement, the rotating wheel 408 abuts against the fourth flat surface 416, so that the pushing member 410 rotates. At this time, one end of the pushing member 410 no longer abuts against the protrusion 417. The entire equipment body can move along the limiting rod 501 so that the support block 201 and the column base plate 104 are offset in the vertical direction. At this time, the column 102 can be rotated by rotating and flipping the column 103, so that the column 102 can be laid down, reducing the overall height of the drilling rig body 100 and facilitating transportation.
[0062] When resetting, first restore the column 102 to the vertical position. Then move the equipment body along the limit rod 501 until the positioning column 203 is aligned with the positioning groove 206. Then turn the internal hex cap 202. When the internal hex cap 202 drives the positioning column 203 to rotate, the positioning column 203 drives the pressure sleeve 204 to move and presses the column base plate 104 through the washer 205.
[0063] When the middle hexagonal cap 202 is turned, its corresponding pressure sleeve 204 drives the push plate 311 to move through the timing belt 301, bevel gear set 303 and lead screw shaft 304. The push plate 311 pushes the connecting frame 403 to move. The connecting frame 403 drives the rotating wheel 408 to rotate through the connecting column 405 and slider 407. During the movement, the rotating wheel 408 abuts against the third flat surface 415, so that the pusher 410 rotates until the pusher 410 abuts against the protrusion 417.
[0064] Example 2
[0065] like Figures 11-12 As shown, the present invention provides another embodiment of the device body, the device body includes a second fixing member 601 fixedly connected to the column 102, and a first fixing member 600 fixedly installed on the top of the base 101. The first fixing member 600 is adapted to the second fixing member 601, and a pin 602 is inserted between the first fixing member 600 and the second fixing member 601.
[0066] The implementation principle of the anti-outburst drilling rig column tilting device without disassembly and transportation in this embodiment is as follows: When the column 102 needs to be tilted down, simply remove the pin 602 to separate the first fixing member 600 from the second fixing member 601, and then the column 102 can be tilted down.
[0067] When the column 102 needs to be reset, simply align the first fixing member 600 with the second fixing member 601 and then fix it with the pin 602.
[0068] The above description is merely a preferred embodiment of the present invention. The scope of protection of the present invention is not limited to the above embodiments. All technical solutions falling within the scope of the present invention's concept are within the scope of protection of the present invention. It should be noted that for those skilled in the art, any improvements and modifications made without departing from the principles of the present invention should also be considered within the scope of protection of the present invention.
Claims
1. A non-disassembly transportation anti-burst drilling machine column overturning device, installed on a drilling machine body (100), wherein the drilling machine body (100) is provided with a base (101), and the top of the base (101) is provided with a column (102), and the bottom of the column (102) is provided with a column bottom plate (104), characterized in that, The equipment body includes a rotating column (103) fixedly installed on one side of a column (102). The rotating column (103) is rotatably connected to a base (101). The equipment body includes: Mounting base (200), the mounting base (200) has a groove (409) inside; A pressure mechanism located on one side of the mounting base (200) includes a support block (201) fixedly installed on one side of the mounting base (200), and a positioning post (203) is threadedly connected to the support block (201), and a pressure sleeve (204) is fixedly sleeved on the positioning post (203). A pushing mechanism is provided inside the groove (409). The pushing mechanism includes a pushing member (410). A third flat surface (415) and a fourth flat surface (416) perpendicular to each other are provided on one side of the pushing member (410). The pushing mechanism also includes a rotating wheel (408). When the rotating wheel (408) moves, it abuts against the third flat surface (415) or the fourth flat surface (416) to drive the pushing member (410) to rotate. A transmission mechanism is provided between the pressure mechanism and the pushing mechanism. The transmission mechanism includes a lead screw shaft (304) and a ball nut (309) that cooperate with each other. When the pressure sleeve (204) in the pressure mechanism rotates, it drives the rotating wheel (408) to move linearly through the transmission mechanism.
2. The anti-outburst drilling rig column tilting device for non-disassembly and transportation according to claim 1, characterized in that, The transmission mechanism also includes a synchronization component, which includes a synchronization wheel (302) rotatably mounted inside the mounting base (200). A synchronization belt (301) is mounted on the synchronization wheel (302). Multiple pressure sleeves (204) are provided, and the pressure sleeve (204) located in the middle part has a groove (300) on its side. The synchronization belt (301) is adapted to the groove (300). When the pressure sleeve (204) rotates, it drives the synchronization belt (301) and the synchronization wheel (302) to rotate through the groove (300).
3. The anti-outburst drilling rig column tilting device for non-disassembly and transportation according to claim 2, characterized in that, A bevel gear set (303) is mounted on the top of the synchronous pulley (302). One end of the bevel gear set (303) is connected to the lead screw shaft (304). A fixing plate (305) is mounted on the mounting base (200). One end of the lead screw shaft (304) is rotatably mounted on the fixing plate (305). A side base plate (306) is also fixedly mounted on the mounting base (200). The other end of the lead screw shaft (304) is rotatably connected to the side base plate (306).
4. The anti-outburst drilling rig column tilting device for non-disassembly and transportation according to claim 3, characterized in that, A cover plate (307) is fixedly installed on the top of the mounting base (200). A limiting component is provided between the cover plate (307) and the ball nut (309). The limiting component includes a sliding plate (310) fixedly installed on the ball nut (309) and a sliding groove (308) opened on the cover plate (307). The sliding plate (310) is slidably connected to the sliding groove (308). The sliding plate (310) and the sliding groove (308) are used to limit the rotation of the ball nut (309).
5. The anti-outburst drilling rig column tilting device for non-disassembly and transportation according to claim 4, characterized in that, The transmission mechanism further includes a moving component, which includes a fixed rod (400) fixedly mounted on the mounting base (200), a sliding sleeve (401) movably sleeved on the fixed rod (400), a connecting rod (402) fixedly mounted on the sliding sleeve (401), and tension springs (404) installed at both ends of the connecting rod (402), with one end of the tension spring (404) fixedly connected to the mounting base (200).
6. The anti-outburst drilling rig column tilting device for non-disassembly and transportation according to claim 5, characterized in that, The mounting base (200) has a slot (406) and a slider (407) is slidably mounted on the slot (406). A connecting column (405) is fixedly mounted on the top of the slider (407). The connecting rod (402) passes through the connecting column (405) and is fixedly connected to it. A connecting frame (403) is fixedly mounted on one side of the connecting rod (402). A push plate (311) is mounted on the bottom of the ball nut (309). The push plate (311) moves and abuts against the connecting frame (403).
7. The anti-outburst drilling rig column tilting device for non-disassembly and transportation according to claim 6, characterized in that, The bottom of the mounting base (200) is equipped with a base plate (414), and the pusher (410) is rotatably mounted on the base plate (414). The pusher (410) is also provided with a first flat surface (411) and a second flat surface (412). The first flat surface (411) and the second flat surface (412) are perpendicular to each other. A boss (413) is provided in the groove (409). The boss (413) is aligned with the first flat surface (411) or the second flat surface (412).
8. The anti-outburst drilling rig column tilting device for non-disassembly and transportation according to claim 7, characterized in that, The mounting base (200) is provided with sliding mechanisms on both sides. The sliding mechanisms include limiting sleeves (500) fixedly installed on both sides of the mounting base (200) and limiting rods (501) movably inserted into the limiting sleeves (500). The two ends of the limiting rods (501) are fixedly installed on the top of the base (101).
9. The anti-outburst drilling rig column tilting device for non-disassembly and transportation according to claim 8, characterized in that, The column base plate (104) is provided with a positioning groove (206), the positioning groove (206) is adapted to the positioning column (203), a washer (205) is sleeved on the positioning column (203), the washer (205) is located at the bottom of the pressure sleeve (204), and an internal hexagonal cap (202) is installed on the top of the positioning column (203).
10. The anti-outburst drilling rig column tilting device for non-disassembly and transportation according to claim 1, characterized in that, The device body includes a second fixing member (601) fixedly connected to the column (102) and a first fixing member (600) fixedly installed on the top of the base (101). The first fixing member (600) is adapted to the second fixing member (601), and a pin (602) is inserted between the first fixing member (600) and the second fixing member (601).