Movable type C-shaped arm X-ray machine displayer supporting device
By introducing an adjustment and rotation mechanism into the C-arm X-ray machine monitor support device, the problem that traditional devices cannot be adjusted to different positions and angles is solved, realizing multi-angle adjustment and stable fixation of the monitor, and improving the flexibility and comfort of use.
Patent Information
- Application Number
- CN202520622636.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-03
- Publication Date
- 2026-03-03
- Estimated Expiration
- 2035-04-03
AI Technical Summary
Traditional C-arm X-ray machine monitor support devices cannot be adjusted to different positions and angles according to different needs, resulting in inconvenience in use.
A mobile C-arm X-ray machine display support device is adopted, which includes an adjustment mechanism and a rotation mechanism. The adjustment mechanism adjusts the height and flip angle of the display, while the rotation mechanism rotates the display. Combined with the fastening ring and bidirectional screw, it achieves flexible adjustment in all directions.
It enables flexible adjustment of the monitor's height, flip angle, and rotation angle to meet the needs of different surgical or examination scenarios, ensuring stability and convenience during the surgical process.
Smart Images

Figure CN223965160U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of X-ray machine displays, and more particularly to a mobile C-arm X-ray machine display support device. Background Technology
[0002] A C-arm X-ray machine monitor is a device that displays X-ray images in real time. It is a key component of medical imaging equipment and is widely used in various medical scenarios such as orthopedic surgery and interventional therapy. It is an important auxiliary tool for medical personnel. The monitor support device is mainly used to support and fix the monitor, ensuring that the monitor displays the patient's internal structures in real time, which is beneficial for medical personnel to observe and make judgments during surgery or interventional therapy.
[0003] Traditional C-arm X-ray machine monitor support devices typically consist of a base, lifting mechanism, mounting base, and adjustment mechanism. Traditional systems can only adjust the height of the monitor and perform simple rotation. When doctors and patients view the monitor together, it is difficult to adjust the monitor to different positions and angles according to different needs. Utility Model Content
[0004] To address the inconvenience of adjusting the position and angle of the monitor, this application provides a mobile C-arm X-ray machine monitor support device.
[0005] The present application provides a mobile C-arm X-ray machine display support device with the following technical solution:
[0006] A mobile C-arm X-ray machine display support device includes a display and a protective shell movably fitted around the display. An adjustment mechanism for adjusting the display's height and tilt angle is fixed to the side of the protective shell away from the display. A rotating mechanism for rotating the display is fixed to the bottom end of the adjustment mechanism. A base plate is fixed to the bottom end of the rotating mechanism, and a base is fixed to the bottom end of the base plate. The adjustment mechanism includes a fixing plate fixed to one side of the protective shell. Two fixing members are symmetrically fixed to the fixing plate away from the protective shell. An adjustment bracket is rotatably mounted on the opposite side of the two fixing members. A shaped frame is rotatably mounted at the end of the adjustment bracket away from the fixing members. The rotating mechanism includes a rotating column and a limiting plate fixed to the top of the rotating column. The rotating shell is movably fitted around the outside of the rotating column. A fastening ring is movably fitted at the lower end of the rotating column. A bidirectional screw threaded through the end of the fastening ring away from the rotating column is actuated by a rotating handle at the end of the bidirectional screw away from the fastening ring.
[0007] By adopting the above technical solution, the device achieves full-range flexible adjustment of the monitor's height, tilt angle, and rotation angle through the adjustment mechanism and rotation mechanism, meeting the needs of different surgical or examination scenarios. The cooperation of the fastening ring and the bidirectional screw facilitates fixing the monitor's rotation position and ensures stability during the surgical or examination process.
[0008] Preferably, a damping shaft one is fixedly provided in the middle of the opposite side of the two fixing members, and a damping shaft two is fixedly provided in the middle of both sides of the upper concave surface of the irregular frame. The two ends of the adjusting bracket are respectively fixedly sleeved on the movable ends of the damping shaft one and the damping shaft two, and a wire harness ring is fixedly provided on the upper end of the side of the irregular frame away from the display.
[0009] By adopting the above technical solution, the connection and rotation of the adjustment bracket and the irregular frame are realized through the setting of damping shaft one and damping shaft two. At the same time, the cable tie ring facilitates the arrangement of cables, improving the convenience and neatness of the device.
[0010] Preferably, bearing two and bearing one are fixed at the upper and lower ends of the outer side of the rotating column, respectively, and the outer rings of bearing two and bearing one are fixed to the inner wall of the rotating shell.
[0011] By adopting the above technical solution, the rotating column is stably connected to the rotating shell through bearing one and bearing two at the upper and lower ends, thereby realizing the rotation function of the rotating column inside the rotating shell.
[0012] Preferably, a U-shaped block is movably disposed at the lower end of the rotating shell near the rotating handle, a locking block is fixed at the upper end of the U-shaped block near the rotating shell, the locking block is fixed to the rotating shell near the rotating shell, and the bottom end of the U-shaped block is fixed to the top of the base plate.
[0013] By adopting the above technical solution, the design of the U-shaped block and the locking block enhances the stability between the rotating shell and the base plate.
[0014] Preferably, a second fixed shell and a first fixed shell are movably sleeved on the outer side of the upper end of the rotating shell. The second fixed shell and the first fixed shell are combined to form a shell that rotates outside the rotating shell. The limiting plate is locked inside the upper end of the second fixed shell and the first fixed shell.
[0015] By adopting the above technical solution, the housing formed by the combination of the second fixed housing and the first fixed housing can rotate around the rotating housing and be clamped by the limiting plate, thereby improving the stability of the display when rotating.
[0016] Preferably, a fixing frame and a placement frame are movably provided at the upper and lower ends of the protective shell near the adjustment mechanism, respectively. The opposite ends of the fixing frame and the placement frame are fixed to the two ends of the fixing plate, and a supplementary light switch is fixed at the top of the fixing frame.
[0017] By adopting the above technical solutions, the design of the fixing bracket and the placement bracket helps to improve the stability and practicality of the device, and the design of the supplementary light switch makes it easier for users to improve the viewing effect of the monitor when using it.
[0018] Preferably, the protective shell has mounting strips fixed at both the upper and lower ends of its inner side for providing a sliding groove for the display.
[0019] By adopting the above technical solution, the mounting strip on the inner side of the protective shell provides a track for the sliding of the display and the locking mechanism.
[0020] Preferably, the lower ends of the display are respectively fixed with locking mechanisms to fix the display when the sliding ends. The locking mechanism includes a slider 1, and a bidirectional screw 2 is rotatably provided through the middle of both ends of the slider 1. Two sliders 2 are threaded on the bidirectional screw 2 located inside the slider 1. Rubber strips are fixed on opposite sides of the two sliders 2.
[0021] By adopting the above technical solution, the locking mechanism drives two sliders to move the rubber strip through the two-way screw, thereby achieving a stable fixation of the display after it slides into place.
[0022] In summary, this application includes at least one of the following beneficial technical effects:
[0023] 1. By rotating the first and second fixed housings, the rotating column is driven to rotate, which in turn drives the adjustment mechanism and the display to rotate. Subsequently, rotating the handle drives the first bidirectional screw to rotate, causing the fastening ring to clamp the outer wall of the rotating column, effectively limiting further rotation of the rotating column. This allows the display to be precisely rotated left and right according to specific usage needs. In addition, by lifting or pressing the adjustment bracket, the front-to-back distance or vertical height of the display can be easily adjusted, greatly improving the flexibility and comfort of using the device. At the same time, flipping the protective housing up and down also allows the display to be flipped up and down simultaneously, further meeting diverse usage needs.
[0024] 2. By rotating the two-way screw, the two sliders move in opposite directions, causing the surface of the rubber strip to contact the inner wall. This device makes it easy for the display to remain stable when it stops sliding on the inner wall of the protective shell. This allows the display to not only rotate up, down, left, and right, but also move left and right, thus greatly increasing the position and angle selection of the display and improving the user's viewing experience. Attached Figure Description
[0025] Figure 1 This is a schematic diagram of the right axonometric projection of this application;
[0026] Figure 2 This is a schematic diagram of the left axonometric projection of this application;
[0027] Figure 3 This is a cross-sectional view of the rotating mechanism portion of this application;
[0028] Figure 4 This is an exploded view of the rotating mechanism of this application;
[0029] Figure 5 This is an exploded view of the regulating mechanism in this application;
[0030] Figure 6 This is an exploded view of the locking mechanism of this application.
[0031] Reference numerals: 1. Display; 2. Rotation mechanism; 3. Adjustment mechanism; 4. Locking mechanism; 5. Fill light switch; 6. Fixing bracket; 7. Protective shell; 8. Placement rack; 9. Base; 10. Base plate; 11. Mounting strip;
[0032] 201. Rotating column; 202. Rotating shell; 203. U-shaped block; 204. Locking block; 205. Fastening ring; 206. Rotating handle; 207. Double-ended screw;
[0033] 208. Bearing 1; 209. Bearing 2; 210. Fixing shell 1; 211. Fixing shell 2; 212. Limiting plate; 213. Annular groove; 214. Rubber pad;
[0034] 301. Adjusting bracket; 302. Fixing plate; 303. Irregularly shaped frame; 304. Fixing component; 305. Damping shaft one; 306. Damping shaft two; 307. Cable tie ring;
[0035] 401. Slider 1; 402. Bidirectional screw 2; 403. Slider 2; 404. Threaded hole; 405. Rubber strip. Detailed Implementation
[0036] The following is in conjunction with the appendix Figure 1 - Figure 5 This application will be described in further detail.
[0037] This application discloses a display support device for a mobile C-arm X-ray machine.
[0038] Reference Figure 1 , Figure 2A mobile C-arm X-ray machine display support device includes a display 1 and a protective shell 7 movably fitted around the display 1. The display 1 is connected to equipment such as an X-ray high-voltage generator, an image intensifier, and a computer system to display real-time X-ray images and imaging parameters. An adjustment mechanism 3 is fixed on the side of the protective shell 7 away from the display 1 and is used to adjust the height and tilt angle of the display 1. A rotation mechanism 2 is fixed at the bottom of the adjustment mechanism 3 and is used to adjust the rotation angle of the display 1. A base plate 10 is fixed at the bottom of the rotation mechanism 2, and the upper end of the base 9 is fixed to the bottom end of the base plate 10.
[0039] Before using the device, the base 9 should be placed on a table or installed on the trolley of a mobile C-arm X-ray machine. The base plate 10 should be fixed to the top surface of the base 9, the rotating mechanism 2 should be fixed to the top surface of the base plate 10, the adjusting mechanism 3 should be installed on the top of the rotating mechanism 2, the protective shell 7 should be installed on one side of the upper end of the adjusting mechanism 3, and finally the display 1 should be placed inside the protective shell 7.
[0040] Reference Figure 5 The adjusting mechanism 3 includes a fixed plate 302, which is fixed to the middle of the protective shell 7 on the side facing the protective shell 7. Two fixing members 304 are symmetrically fixed to the side of the fixed plate 302 away from the protective shell 7. The fixed end of the damping shaft 305 is fixed to the middle of the opposite side of the two fixing members 304. The end of the adjusting bracket 301 near the fixed plate 302 is fixed to the movable end of the damping shaft 305. A shaped frame 303 is movably disposed at the lower end of the adjusting bracket 301. The top of the shaped frame 303 is provided with a groove. The shape of the shaped frame 303 is as follows (e.g., Figure 5 As shown), the fixed end of the second damping shaft 306 is fixed to the middle of both sides of the concave surface of the irregular frame 303. The end of the adjusting bracket 301 near the irregular frame 303 is fixed to the movable end of the middle of the second damping shaft 306. Both the first damping shaft 305 and the second damping shaft 306 are shafts with damping effect, used to reduce the deflection speed of the adjusting bracket 301, so that the adjusting bracket 301 can remain stable when it stops rotating. The wire loop 307 is fixed on the upper end of the irregular frame 303 on the side away from the protective shell 7. The wire loop 307 is used to fix the pipelines of the display 1 or other components of the C-arm X-ray machine, which helps to avoid the inconvenience of device operation due to messy pipelines.
[0041] When the display 1 needs to be moved vertically, the adjustment bracket 301 is deformed to a tilted or vertical state, which simultaneously drives the damping shaft 305 and damping shaft 306 fixed at both ends of the adjustment bracket 301 to rotate. The damping shaft 305 drives the fixing member 304 to move the fixing plate 302 in the tilting direction with the adjustment bracket 301 as the center. Simultaneously, the irregular frame 303 is pushed to move vertically, which in turn causes the fixing plate 302 to drive the protective shell 7 and the display 1 to move vertically. When the display 1 needs to be adjusted slightly to change the flip angle, the protective shell 7 drives the display 1 to flip, which causes the fixing plate 302 to drive the damping shaft 305 to flip at the upper end of the adjustment bracket 301. During use, the cable can be inserted into the cable tie ring 307.
[0042] Reference Figure 3 , Figure 4 The rotating mechanism 2 includes a rotating column 201. The bottom end of the limiting plate 212 is fixed to the top end of the rotating column 201. The inner ring of the second bearing 209 is fixed to the outer side of the upper end of the rotating column 201. The inner ring of the first bearing 208 is fixed to the outer side of the lower end of the rotating column 201. The inner sides of the upper and lower ends of the rotating shell 202 are provided with annular grooves at the bearings 208 and 209. The outer rings of the second bearing 209 and the first bearing 208 are respectively fixed in the annular grooves. The first bearing 208 and the second bearing 209 are deep groove ball bearings composed of an inner ring, an outer ring and steel balls.
[0043] By rotating the rotating column 201, the inner rings of bearing 209 and bearing 208 are driven to rotate. Since bearing 208 and bearing 209 are fixed inside the rotating shell 202, the rotating column 201 rotates inside the rotating shell 202.
[0044] The retaining ring 205 is movably sleeved on the lower end of the rotating column 201. The retaining ring 205 is located below the bearing 208. The retaining ring 205 is a U-shaped ring that restricts the rotation of the rotating column 201. The shape of the retaining ring 205 is as follows (e.g., Figure 4 As shown, a rubber pad 214 is fixed to the inner side of the fastening ring 205. The rubber pad 214 is a tough elastic material used to increase the friction between the fastening ring 205 and the rotating column 201, thereby improving the stability of the fastening ring 205 in restricting the rotation of the rotating column 201. The threaded double screw 207 passes through the end of the fastening ring 205 away from the rotating column 201. The rotating handle 206 is fixed to the double screw 207 on the side close to the double screw 207. When the rotating handle 206 rotates and drives the double screw 207 to rotate, the double thread on the surface of the double screw 207 causes the two protrusions at the end of the fastening ring 205 away from the rotating column 201 to move closer to each other, making the inner diameter of the fastening ring 205 smaller, thus restricting the rotation of the rotating column 201.
[0045] When the rotating column 201 stops rotating, the rotating handle 206 drives the bidirectional screw 207, causing the protrusions of the fastening ring 205 near the bidirectional screw 207 to move closer and tighten, and the rubber pad 214 to press the lower end of the rotating column 201 closer, thereby locking the rotation of the rotating column 201 and keeping it stable.
[0046] U-shaped block 203 is movably disposed at the lower end of rotating housing 202 near the rotating handle 206. The bottom end of U-shaped block 203 is fixed to the top end of base plate 10. Locking block 204 is fixed at the upper end of U-shaped block 203 near rotating housing 202, and the side of locking block 204 near rotating housing 202 is fixed to rotating housing 202. One end of bidirectional screw 207 located outside fastening ring 205 is rotatably disposed through the middle of U-shaped block 203. Rotating handle 206 is fixed at the end of bidirectional screw 207 located outside U-shaped block 203. U-shaped block 203 is used to move bidirectional screw 207... 207 remains stable; the second fixed shell 211 and the first fixed shell 210 are movably sleeved on the outer side of the upper end of the rotating shell 202. The inner side of the upper end of the second fixed shell 211 and the first fixed shell 210 are both provided with annular slots 213. The limiting plate 212 rotates inside the annular slots 213. The top of the first fixed shell 210 and the first fixed shell 210 are provided with rectangular holes. The bottom end of the irregular frame 303 passes through the rectangular holes and is fixed to the top of the limiting plate 212. The second fixed shell 211 and the limiting plate 212 are used to keep the adjustment mechanism 3 stable, as well as to increase the aesthetics of the structure and the convenience of use.
[0047] By rotating the second fixed shell 211 and the first fixed shell 210, the annular groove 213, which is locked inside the upper end of the second fixed shell 211 and the first fixed shell 210, drives the rotating column 201 to rotate synchronously and drives the adjustment mechanism 3 to rotate, thereby making it easy for the protective shell 7 and the display 1 to rotate to the required angle. The U-shaped block 203 keeps the bidirectional screw 207 stable when rotating, and the locking block 204 fixes the U-shaped block 203 to the rotating shell 202.
[0048] The fixing frame 6 and the placement frame 8 are movably mounted at both ends of the protective shell 7 near the adjustment mechanism 3. The bottom end of the fixing frame 6 is fixed to the top end of the fixing plate 302, and the top end of the placement frame 8 is fixed to the bottom end of the fixing plate 302. The placement frame 8 is used to place items during the use of the device. The fill light switch 5 is fixed to the top end of the fixing frame 6. A light groove is opened at the bottom of the upper end of the fixing frame 6, and a fill light is installed in the light groove. The fill light switch 5 is used to provide fill light to the display 1 during use.
[0049] The shelf 8 is very practical, allowing you to place various items needed during the use of the device, such as documents, tools or other auxiliary equipment, on it. When the monitor 1 needs additional light to improve the viewing effect during use, you can simply operate the fill light switch 5 to turn on the fill light and provide soft and uniform fill light to the monitor 1.
[0050] Reference Figure 1 , Figure 6 Two mounting strips 11 are respectively fixed to the inner sides of the upper and lower ends of the protective shell 7. The display 1 slides between the two mounting strips 11. Two locking mechanisms 4 are respectively fixed to the lower ends of the display 1. The two locking mechanisms 4 slide along the inner side of the mounting strip 11 located below the display 1. The locking mechanisms 4 are used to fix and lock the display 1 when the sliding ends. The locking mechanism 4 includes a slider 401, and one end of a bidirectional screw 402 rotatably passes through the middle of the two ends of the slider 401. The surface of the bidirectional screw 402 is provided with bidirectional threads. The two sliders 403 are positioned... A threaded hole 404 is provided on one side of the inside of slider 1 401. Two sliders 2 403 are threadedly sleeved on one end of the bidirectional screw 2 402 located inside slider 1 401 through the two threaded holes 404. The ends of the two sliders 2 403 located inside slider 1 401 slide inside slider 1 401. Two rubber strips 405 are fixed on opposite sides of the two sliders 2 403. The rubber strips 405 are made of a tough elastic material and are used to increase the friction with the inner wall of the mounting strip 11 when the locking mechanism 4 stops sliding inside the mounting strip 11, so as to achieve the effect of locking the movement of the display 1.
[0051] After placing the display 1 inside the protective housing 7, install mounting strips 11 on the upper and lower ends of the inner side of the protective housing 7, and install locking mechanisms 4 on both sides of the lower end of the display 1, so that the display 1 slides inside the two mounting strips 11, thereby allowing the display 1 to move laterally left and right as needed. When the display 1 stops moving, by rotating the bidirectional screw 402 in the middle of the slider 1 401, the two sliders 2 403 are driven to move in opposite directions on the inner wall of the slider 1 401, so that the rubber strip 405 is pressed against the inner wall of the mounting strip 11, thereby locking the slider 1 401 and the display 1 and keeping them stable.
[0052] The implementation principle of a mobile C-arm X-ray machine display support device according to an embodiment of this application is as follows: By adjusting the state of the adjusting bracket 301, the damping shaft 305 and the damping shaft 306 are rotated, pushing the fixed plate 302 and the irregular frame 303 to move, thereby driving the protective shell 7 and the display 1 to move longitudinally; the protective shell 7 drives the display 1 to flip, causing the fixed plate 302 and the damping shaft 305 to flip at the upper end of the adjusting bracket 301, allowing the tubing to be inserted into the cable tie ring 307 during use; rotating the fixed shell 211 and the fixed shell 210 causes the rotating column 201 to rotate within the rotating shell 202, driving the irregular frame 303 to move. The rotating mechanism rotates synchronously. After reaching a suitable angle, the rotating handle 206 drives the bidirectional screw 207, which tightens the protrusion of the fastening ring 205, causing the rubber pad 214 to press against the lower end of the rotating column 201 and lock the rotating column 201. After placing the display 1 inside the protective shell 7, the mounting strip 11 is installed on the upper and lower ends of the inner side of the protective shell 7, and the locking mechanism 4 is installed on both sides of the lower end of the display 1, allowing the display 1 to slide within the mounting strip 11 to achieve lateral movement. By rotating the bidirectional screw 402, the two sliders 403 are driven to move in opposite directions, causing the rubber strip 405 to press against the inner wall of the mounting strip 11, thereby locking the display 1.
[0053] The above are merely optional embodiments of this disclosure and are not intended to limit this disclosure. Various modifications and variations can be made to this disclosure by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this disclosure should be included within the scope of protection of this disclosure.
Claims
1. A mobile C-arm x-ray machine display support device, characterized by: The application relates to a display device, which comprises a display (1) and a protective shell (7) movably sleeved around the display (1), a regulating mechanism (3) fixed to one side of the protective shell (7) and used for adjusting the height and the up-down turning angle of the display (1), a rotating mechanism (2) fixed to the bottom end of the regulating mechanism (3) and used for rotating the display (1), and a base (9) fixed to the bottom end of the rotating mechanism (2). The regulating mechanism (3) comprises a fixed plate (302) fixed to one side of the protective shell (7), two fixed members (304) symmetrically fixed to one side of the fixed plate (302), and an adjusting support (301) rotatably arranged on the opposite side of the two fixed members (304), wherein a special-shaped frame (303) is rotatably arranged on the end of the adjusting support (301) away from the fixed members (304). The rotating mechanism (2) comprises a rotating column (201) and a limiting plate (212) fixed to the top end of the rotating column (201), a rotating shell (202) movably sleeved on the outer side of the rotating column (201), a fastening ring (205) movably sleeved on the lower end of the rotating column (201), a two-way screw rod I (207) screwed through the end of the fastening ring (205) away from the rotating column (201), and a rotating handle (206) fixed to the end of the two-way screw rod I (207) away from the fastening ring (205).
2. The mobile C-arm X-ray machine display support apparatus of claim 1, wherein: The middle part of the opposite side of the two fixed members (304) is fixed with a damping rotating shaft I (305), the middle part of the two sides of the upper concave surface of the special-shaped frame (303) is fixed with a damping rotating shaft II (306), the two ends of the adjusting support (301) are fixedly sleeved on the movable ends of the damping rotating shaft I (305) and the damping rotating shaft II (306) respectively, and the upper end of the side of the special-shaped frame (303) away from the display (1) is fixed with a wire bundling ring (307).
3. The mobile C-arm X-ray machine display support apparatus of claim 1, wherein: The upper and lower ends of the outer side of the rotating column (201) are fixed with a bearing II (209) and a bearing I (208) respectively, and the outer ring of the bearing II (209) and the bearing I (208) is fixed with the inner wall of the rotating shell (202).
4. The mobile C-arm X-ray machine display support apparatus of claim 1, wherein: The lower end of the rotating shell (202) is movably provided with a U-shaped block (203) near the side of the rotating handle (206), the upper end of the U-shaped block (203) is fixed with a clamping block (204) near the side of the rotating shell (202), the side of the clamping block (204) near the rotating shell (202) is fixed with the rotating shell (202), and the bottom end of the U-shaped block (203) is fixed to the top end of the bottom plate (10).
5. The mobile C-arm X-ray machine display support apparatus of claim 1, wherein: The upper end of the outer side of the rotating shell (202) is movably sleeved with a fixed shell II (211) and a fixed shell I (210), the fixed shell II (211) and the fixed shell I (210) are combined to form a shell rotatable outside the rotating shell (202), and the limiting plate (212) is clamped inside the upper end of the fixed shell II (211) and the fixed shell I (210).
6. The mobile C-arm X-ray machine display support apparatus of claim 1, wherein: The upper and lower ends of the protective shell (7) near the adjusting mechanism (3) are movably provided with fixing frames (6) and placing frames (8), respectively; the opposite ends of the fixing frames (6) and the placing frames (8) are fixed at the two ends of the fixed plate (302), respectively; and the top end of the fixing frame (6) is fixedly provided with a light supplementing lamp switch (5).
7. The mobile C-arm X-ray machine display support apparatus of claim 1, wherein: The inner side of the protective shell (7) is fixedly provided with mounting strips (11) for providing sliding grooves for the display (1) at the upper and lower ends.
8. The mobile C-arm X-ray machine display support apparatus of claim 1, wherein: The lower end of the display (1) is fixedly provided with locking mechanisms (4) on the two sides for fixing the display (1) at the end of sliding; the locking mechanism (4) comprises a sliding block one (401), a bidirectional screw two (402) is rotatably and penetratingly arranged at the middle part of the two ends of the sliding block one (401), two sliding block twos (403) are threadedly sleeved on the bidirectional screw two (402) in the sliding block one (401), and rubber strips (405) are fixedly arranged on the opposite sides of the two sliding block twos (403).