Device for quickly stopping bleeding in surgery department
By designing a surgical rapid hemostasis device containing pressing and hemostasis bandaging mechanisms, the complex problems of one-way pressing and tourniquet bundling in the prior art are solved, efficient hemostasis and simplified operation of the artery, and light support is provided.
Patent Information
- Application Number
- CN202510627339.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-15
- Publication Date
- 2025-08-08
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
In the existing hemostasis treatment methods, one-way compression cannot effectively press the limb artery, and the tourniquet bundling operation is complicated, resulting in poor hemostasis effect and inability to bandage in time.
A surgical rapid hemostasis device is designed, including a pressing mechanism and a hemostasis bandaging mechanism. The pressing mechanism drives the pressing block to press the artery from the left and right directions through the driving mechanism, and the hemostasis bandaging mechanism realizes rapid hemostasis bandaging through the motor drive adjustment screw.
Efficient compression and hemostasis of the arteries is achieved, simplified bundling operations, improved hemostasis efficiency, and provided lighting support in dim environments.
Smart Images

Figure CN120436711A_ABST
Abstract
Description
Technical Field
[0001] The invention belongs to the field of medical technology, and in particular relates to a device for rapid surgical hemostasis. Background Art
[0002] When the human limbs are injured and wounds appear, it is necessary to stop the bleeding in time. In order to quickly stop the bleeding of the injured and avoid excessive blood loss, medical staff generally need to use nursing devices to quickly stop the bleeding of the wound.
[0003] Existing hemostasis treatments often involve pressing the wound vertically with a compression head. However, due to the one-way pressing and the pressure applied only on the wound, the compression head cannot press the artery close to the wound on the limb during the pressing process, resulting in a poor hemostasis effect. An additional tourniquet is required to press the artery to slow down the bleeding rate of the limb artery. However, the principle of tightening the tourniquet is complex and requires relaxation at intervals. In addition, the compression block has a general hemostasis effect on the wound, making it impossible to bandage the wound in a timely manner. Summary of the Invention
[0004] The purpose of the present invention is to provide a device for rapid surgical hemostasis to solve the problems raised in the above background technology.
[0005] To achieve the above-mentioned objectives, the present invention provides the following technical solutions: a device for rapid surgical hemostasis, comprising a device base, a base plate provided on the device base, a partition plate provided on the base plate, the partition plate separating the device base into a front support seat and a rear support seat, a pressing mechanism fixedly connected to the upper end of the base plate, a lighting mechanism provided on the left end of the front support seat, a hemostatic bandage mechanism provided on the right end of the front support seat, and a tightening ring provided on the front support seat for cooperating with the hemostatic bandage mechanism.
[0006] Preferably, the hemostatic bandage mechanism includes a hemostatic column, an adjusting screw, an adjusting motor, an adjusting block, a hemostatic seat, a blood pressure rod and a hemostatic head. The lower surface of the hemostatic column is fixedly connected to the base plate on the front support seat, the upper end of the hemostatic column is fixed with an adjusting motor, an adjusting cavity is provided in the hemostatic column, and a rotating seat distributed up and down is fixed in the adjusting cavity. An adjusting screw is provided between the rotating seats, and the adjusting screw rotates through the rotating seat at the upper end of the adjusting cavity and is fixedly connected to the output end of the adjusting motor. An adjusting block threadedly connected to the adjusting screw is sleeved on the adjusting screw, the hemostatic seat is fixedly connected to the adjusting block, a fixing groove is provided in the hemostatic seat, a blood pressure rod is inserted in the fixing groove, and the lower end of the blood pressure rod is fixedly connected to the hemostatic head.
[0007] Preferably, the hemostatic rod is provided with a fixed threaded hole, the hemostatic seat is provided with a fixed screw threadedly connected to the hemostatic seat, and the fixed screw is cooperatively connected with the fixed threaded hole on the hemostatic rod.
[0008] Preferably, the rear end of the hemostatic head is threadedly connected to the hemostatic rod, and a hemostatic block is provided in the hemostatic head, and a hemostatic bandage is connected to the lower end of the hemostatic block, and fixing strips are provided at both ends of the hemostatic bandage, and a fixing groove is provided on the fixing strip, and a bandage seat is provided on the front end support seat, and a tightening ring is connected to the bandage seat, and tightening seats are provided at both ends of the tightening ring, and a fixed tooth block is provided in the tightening ring to engage with the fixing groove, and an adjusting cavity is provided in the tightening seat, and an adjusting spring is provided in the adjusting cavity, and one end of the adjusting spring is fixedly connected to the adjusting tooth block.
[0009] Preferably, the pressing mechanism includes a pressing ring, a pressing tube, a pressing block, a pressing rod, a pressing adjustment frame and a pressing adjustment box. There are two pressing rings, which are divided into partition plates fixedly connected to the front support seat and the rear support seat. A pressing tube is fixedly connected between the pressing rings, a pressing hole is provided on the pressing tube, a pressing adjustment frame is fixedly provided on the upper end of the pressing tube, a rotating connecting tube is provided at both ends of the pressing tube, a pressing rotating block rotatably connected to the rotating connecting tube is provided on the rotating connecting tube, the upper end of the pressing rotating block is fixedly connected to the lower end of the pressing rod, the pressing block is fixedly connected to the pressing rod and is located in the pressing hole, and the pressing rod passes through the pressing adjusting frame and is connected to the pressing adjusting box.
[0010] Preferably, the press adjustment frame includes a support tube, a fixing rod and a limit block. The support tube is fixedly connected to the upper end of the press tube. Fixed rods are provided at both ends of the support tube. The limit block is plugged into the fixed rod to form a press limit groove. A locking nut is provided on the outside of the limit block on the fixed rod.
[0011] Preferably, the lower end of the press adjustment box is provided with a fixed support seat fixedly connected to the press adjustment frame, the top of the press adjustment box is provided with a driving motor, and the press adjustment box is provided with a driving threaded rod connected to the output end of the driving motor, and the lower end of the driving threaded rod is sleeved with a threaded sleeve, and the lower end of the threaded sleeve passes through the press adjustment frame and is provided with a press block.
[0012] Preferably, a driving gear is fixedly sleeved on the driving threaded rod, a slide groove is provided in the press-adjusting box, a press-adjusting rod is slidably connected in the slide groove, one end of the press-adjusting rod passes through the press-adjusting box and is fixedly connected to the press-adjusting rod, and a driving block is provided at the other end of the press-adjusting rod, and a driven rack meshing with the driving gear is provided on the driving block, and a compression spring is provided at the outer end of the press-adjusting rod.
[0013] Preferably, the lighting mechanism includes a lighting seat, a lighting frame, a first rotating sleeve, a lighting adjustment rod, a second rotating sleeve, a lighting pole, a lighting lamp seat and a lamp board. The lower surface of the lighting seat is fixedly mounted on the base plate of the front support seat, and the lower end of the lighting frame is fixedly mounted on the lighting seat. The lighting frame is provided with a first rotating sleeve, and a first rotating shaft rotatably connected to the first rotating sleeve is provided in the first rotating sleeve. The lower end of the lighting adjustment rod is provided with a rotating connecting block, and the rotating connecting block is fixedly connected to both ends of the first rotating shaft. The upper end of the lighting adjustment rod is provided with a second rotating sleeve, and a second rotating shaft rotatably connected to the second rotating sleeve is provided in the second rotating sleeve. The lighting pole is rotatably connected to the second rotating shaft, the lighting lamp seat is fixedly mounted on the top end of the lighting pole, and the lamp board is fixedly mounted on the inner surface of the lighting lamp seat.
[0014] The advantages of the present invention over the prior art are as follows: the pressing mechanism of the hemostatic device can drive the three pressing blocks in the pressing tube to press the artery of the injured part from the left, right and upper directions through the driving mechanism in the pressing adjustment box, and then cooperate with the hemostatic bandage mechanism to drive the hemostatic head to press the wound, thereby stopping the bleeding of the wound: The hemostatic bandage mechanism of the present invention can drive the adjusting screw to rotate by the adjusting motor, thereby driving the adjusting block to move downward to drive the hemostatic seat to press the wound to stop bleeding, and a hemostatic bandage is provided in the hemostatic groove of the hemostatic head of the present invention, which can be fixedly matched with the tightening ring on the front support seat to achieve rapid hemostatic bandage of the wound.
[0015] The driving mechanism in the pressing adjustment box in the pressing mechanism of the present invention can drive the rotation of the threaded rod to drive the rotation of the pressing rod and the movement of the threaded sleeve, so that the three pressing blocks can press the wound artery from the top, left and right directions. Compared with tourniquet binding, it is more convenient and efficient and can prevent continuous bleeding from the artery.
[0016] The present invention is also provided with a lighting mechanism that can be rotated and adjusted to provide light in a dimly lit place, so that the hemostatic device can be used normally. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 This is a front view of a surgical rapid hemostasis device according to the present invention; Figure 2 A side view of a surgical rapid hemostasis device according to the present invention; Figure 3 This is a front cross-sectional view of a surgical rapid hemostasis device according to the present invention; Figure 4 This is a schematic structural diagram of a pressing mechanism of a surgical rapid hemostasis device according to the present invention; Figure 5This is a diagram showing the internal structure of a pressure regulating box of a surgical rapid hemostasis device according to the present invention; Figure 6 This is a front view structural diagram of a bandaging mechanism for a surgical rapid hemostasis device according to the present invention; Figure 7 The present invention is a side structural diagram of a hemostatic bandage mechanism of a surgical rapid hemostasis device.
[0018] Device base; 2. lighting mechanism; 3. hemostatic dressing mechanism; 4. pressing mechanism; 11. base plate; 12. partition plate; 13. front support seat; 14. rear support seat; 15. pressing limit slot; 16. tightening ring; 201. lighting seat; 202. lighting frame; 203. first rotating sleeve; 204. lighting adjustment rod; 205. second rotating sleeve; 206. lighting lamp pole; 207. lighting lamp seat; 208. lamp board; 209. first rotating shaft; 210. rotating connecting block; 211. second rotating shaft; 301. hemostatic column; 302. adjusting screw; 303. adjusting motor; 304. adjusting block; 305. hemostatic seat; 306. hemostatic rod; 307. hemostatic head; 308. adjusting cavity; 309. rotating seat; 310. fixing groove; 311. fixing threaded hole; 312. fixing screw; 3 13. Hemostatic block; 314. Adjusting spring; 315. Hemostatic bandage; 316. Fixing strip; 317. Fixing groove; 318. Bandage seat; 319. Tightening seat; 320. Fixed tooth block; 321. Adjusting chamber; 401. Pressing ring; 402. Pressing tube; 403. Pressing block; 404. Pressing rod; 405. Pressing adjustment frame; 406. Pressing adjustment box; 407. Pressing hole; 408 , rotating connecting pipe; 409, pressing and rotating block; 410, supporting pipe; 411, fixing rod; 412, limiting block; 413, locking nut; 414, fixing support seat; 415, driving motor; 416, driving threaded rod; 417, threaded pipe sleeve; 418, driving gear; 419, slide groove; 420, pressing and adjusting rod; 421, driving block; 422, driven rack; 423, compression spring. DETAILED DESCRIPTION
[0019] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0020] Combined with attachment Figure 1 and attached Figure 2A device for rapid surgical hemostasis includes a device base 1, a base plate 11 is provided on the device base 1, a partition plate 12 is provided on the base plate 11, and the partition plate 12 separates the device base 1 into a front support seat 13 and a rear support seat 14. A hemostatic bandage mechanism 3 is provided at the right end of the front support seat 13, and a tightening ring 16 that cooperates with the hemostatic bandage mechanism 3 is provided on the front support seat 13.
[0021] Combined with attachment Figure 1 , Attachment Figure 2 and attached Figure 6 The hemostatic bandage mechanism 3 includes a hemostatic column 301, an adjusting screw 302, an adjusting motor 303, an adjusting block 304, a hemostatic seat 305, a hemostatic blood pressure rod 306 and a hemostatic head 307. The lower surface of the hemostatic column 301 is fixedly connected to the base plate 11 on the front support seat 13. The upper end of the hemostatic column 301 is fixed with an adjusting motor 303. An adjusting cavity 308 is provided in the hemostatic column 301. Rotating seats 309 distributed up and down are fixed in the adjusting cavity 308. An adjusting screw 302 is provided between the rotating seats 309. The adjusting screw 302 rotates through the rotating seat 309 at the upper end of the adjusting cavity 308 and is fixedly connected to the output end of the adjusting motor 303. The adjusting screw 302 is sleeved with a threaded screw 302. The connected adjusting block 304, the hemostatic seat 305 is fixedly connected to the adjusting block 304, the hemostatic seat 305 is provided with a fixing groove 310, the fixing groove 310 is provided with a blood pressure stop rod 306, the blood pressure stop rod 306 is provided with a fixing threaded hole 311, the hemostatic seat 305 is provided with a fixing screw 312 threadedly connected to the hemostatic seat 305, the fixing screw 312 is cooperated with the fixing threaded hole 311 on the blood pressure stop rod 306, the lower end of the blood pressure stop rod 306 is fixedly connected to a hemostatic head 307, the rear end of the hemostatic head 307 is threadedly connected to the blood pressure stop rod 306, the hemostatic head 307 is provided with a blood pressure stop block 313, and the lower end of the blood pressure stop block 313 is connected with a hemostatic bandage 315.
[0022] During actual use, the output end of the adjusting motor 303 drives the adjusting screw 302 in the hemostatic column 301 to rotate, and the adjusting screw 302 begins to rotate on the rotating seat 309 in the hemostatic column 301. During the rotation, the adjusting screw 302 drives the adjusting block 304 to move downward through the threaded connection with the adjusting block 304, and the adjusting block 304 drives the hemostatic seat 305 to move downward, and the hemostatic rod 306 in the hemostatic seat 305 moves downward until the hemostatic head 307 at the lower end of the hemostatic rod 306 presses the wound. At this time, the hemostatic bandage 315 in the hemostatic head 307 presses the wound to stop bleeding.
[0023] Combined with attachment Figure 7The two ends of the hemostatic bandage 315 are provided with fixing strips 316, and the fixing strips 316 are provided with fixing grooves 317. The front support seat 13 is provided with a bandage seat 318, and the bandage seat 318 is connected with a tightening ring 16. The two ends of the tightening ring 16 are provided with tightening seats 319. The tightening seat 319 is provided with a fixed tooth block 320 that is plugged into the fixing groove 317. The tightening seat 319 is provided with an adjustment cavity 321, and the adjustment cavity 321 is provided with an adjustment spring. 314, one end of the adjustment spring 314 is fixedly connected to the fixed tooth block 320. After the hemostatic bandage 315 is pressed on the wound, the fixing strips 316 on both sides of the hemostatic bandage 315 are passed through the adjustment cavity 321 on the tightening ring 16, and the fixing tooth block 320 in the fixing groove 317 is plugged into the fixing groove 317 on the fixing strip 316, and the fixing strip 316 is pulled down from the lower end of the adjustment cavity 321 until the hemostatic bandage 315 and the tightening ring 16 complete the bandaging of the wound.
[0024] Combined with attachment Figure 3 and attached Figure 4 , the upper end of the base plate 11 is fixedly connected to a pressing mechanism 4, the pressing ring 401 is fixedly connected to the partition plate 12 on the front support seat 13 and the rear support seat 14 respectively, a pressing tube 402 is fixedly connected between the pressing rings 401, the pressing tube 402 is provided with a pressing hole 407, the upper end of the pressing tube 402 is fixedly provided with a pressing adjustment frame 405, the pressing adjustment frame 405 includes a support tube 410, a fixing rod 411 and a limit block 412, the support tube 410 is fixedly connected to the upper end of the pressing tube 402, the support tube 410 is provided with a fixing rod 411 at both ends, the limit block 412 is plugged into the fixing rod 411 and forms a pressing limit groove 15, the fixing rod 411 is provided with a locking nut 413 on the outside of the limit block 412, the pressing tube 402 is provided with a rotating connecting tube 408 at both ends, and the rotating connecting tube 408 is provided with a The pressing and rotating block 409 is rotatably connected to the rotating connecting tube 408, and the upper end of the pressing and rotating block 409 is fixedly connected to the lower end of the pressing rod 404. The pressing block 403 is fixedly connected to the pressing rod 404 and is located in the pressing hole 407. The pressing rod 404 passes through the pressing adjustment frame 405 and is connected to the pressing adjustment box 406. A driving gear 418 is fixedly sleeved on the driving threaded rod 416. A sliding groove 419 is provided in the pressing adjustment box 406. The pressing adjustment rod 420 is slidably connected in the sliding groove 419. One end of the pressing adjustment rod 420 passes through the pressing adjustment box 406 and is fixedly connected to the pressing rod 404. The other end of the pressing adjustment rod 420 is provided with a driving block 421. The driving block 421 is provided with a driven rack 422 that meshes with the driving gear 418. The outer end of the pressing adjustment rod 420 is provided with a compression spring 423.
[0025] Combined with attachment Figure 5The driving gear 418 on the driving threaded rod 416 rotates together with the driving threaded rod 416, and the driving gear 418 drives the driven rack 422 to move inward by meshing with the driven rack 422, and the driven rack 422 drives the driving block 421 to move inward, and the driving block 421 drives the pressing adjustment rod 420 to slide inward in the slide groove 419, and the pressing adjustment rod 420 pulls the upper end of the pressing rod 404 inward, and the lower end of the pressing rod 404 is rotatably connected to the rotating connecting tube 408 through the pressing and rotating block 409. When the upper end of the pressing rod 404 receives an inward pulling force, the pressing rod 404 rotates around the rotating connecting tube 408, and the pressing rod 404 drives the pressing block 403 to tighten. During the tightening process, the pressing block 403 presses the wound artery located in the pressing tube 402 from both left and right directions.
[0026] Combined with attachment Figure 4 , Attachment Figure 5 and attached Figure 6 The lower end of the press adjustment box 406 is provided with a fixed support seat 414 fixedly connected to the press adjustment frame 405, and the top of the press adjustment box 406 is provided with a drive motor 415. A drive threaded rod 416 connected to the output end of the drive motor 415 is provided in the press adjustment box 406, and the lower end of the drive threaded rod 416 is sleeved with a threaded sleeve 417, and the lower end of the threaded sleeve 417 passes through the press adjustment frame 405 and is provided with a press block 403. The drive motor 415 can drive the drive threaded rod 416 to rotate. When the drive threaded rod 416 rotates, it drives the threaded sleeve 417 to move downward along the direction of the drive threaded rod 416 through the threaded connection with the threaded sleeve 417. The threaded sleeve 417 drives the press block 403 to move downward, so that the press block 403 presses the wound artery located at the press tube 402 from the upper end.
[0027] Combined with attachment Figure 1 , Attachment Figure 2, the left end of the front support seat 13 is provided with a lighting mechanism 2, and the lighting mechanism 2 includes a lighting seat 201, a lighting frame 202, a first rotating sleeve 203, a lighting adjustment rod 204, a second rotating sleeve 205, a lighting lamp pole 206, a lighting lamp seat 207 and a lamp board 208. The lower surface of the lighting seat 201 is fixedly mounted on the base plate 11 of the front support seat 13, and the lower end of the lighting frame 202 is fixedly mounted on the lighting seat 201. The lighting frame 202 is provided with a first rotating sleeve 203, and the first rotating sleeve 203 is provided with a first rotating shaft 209 rotatably connected to the first rotating sleeve 203. The lower end of the lighting adjustment rod 204 is provided with a rotating connecting block 210, and the rotating connecting block 210 is fixedly connected to both ends of the first rotating shaft 209. The upper end of the lighting adjustment rod 204 is provided with a second rotating sleeve 205 , a second rotating shaft 211 is provided in the second rotating sleeve 205 and is rotatably connected to the second rotating sleeve 205, the lighting pole 206 is rotatably connected to the second rotating shaft 211, the lighting lamp holder 207 is fixedly mounted on the top of the lighting pole 206, and the lamp board 208 is fixedly mounted on the inner surface of the lighting lamp holder 207, pushing the lighting adjustment rod 204, and the lighting adjustment rod 204 is rotatably connected to the first rotating shaft 209 through the rotating connecting block 210, so that the lighting adjustment rod 204 rotates at the first rotating sleeve 203, pushing the lighting pole 206, and the lighting pole 206 is rotated at the second rotating sleeve 205 through the rotation connection with the second rotating shaft 211, and the lighting lamp holder 207 is adjusted to a suitable angle through the rotation adjustment of the lighting adjustment rod 204 and the lighting pole 206.
[0028] During the specific implementation of the present invention, the bleeding part of the patient is first placed into the pressing ring 401 on the rear support seat 14 of the device, passed through the pressing tube 402 and extended from the pressing ring 401 on the front support seat 13, and the injured part is slowly passed through the pressing ring 401 until the wound and the hemostatic bandage mechanism 3 are in the same straight line in the vertical direction. Next, the wound is pressed first, and the regulating motor 303 at the upper end of the hemostatic column 301 is started. The output end of the regulating motor 303 drives the regulating motor 303 in the hemostatic column 301. The screw 302 rotates, and the adjusting screw 302 begins to rotate on the rotating seat 309 in the hemostatic column 301. During the rotation, the adjusting screw 302 drives the adjusting block 304 to move downward through the threaded connection with the adjusting block 304. The adjusting block 304 drives the hemostatic seat 305 to move downward, and the hemostatic rod 306 in the hemostatic seat 305 moves downward until the hemostatic head 307 at the lower end of the hemostatic rod 306 presses the wound. At this time, the hemostatic bandage 315 in the hemostatic head 307 presses the wound to stop bleeding.
[0029] At this time, the pressing mechanism 4 is started at the same time to press the artery around the wound, and the driving motor 415 in the pressing regulating box 406 is started. The driving motor 415 can drive the driving threaded rod 416 to rotate. When the driving threaded rod 416 rotates, the threaded sleeve 417 is driven by the threaded connection with the threaded sleeve 417 to move downward along the driving threaded rod 416. The threaded sleeve 417 drives the pressing block 403 to move downward, so that the pressing block 403 presses the wound artery located on the pressing tube 402 from the upper end. In the process of rotating the driving threaded rod 416, the driving gear 418 on the driving threaded rod 416 rotates together with the driving threaded rod 416. The driving gear 418 is connected to the screw threaded rod 416 by the screw threaded connection. The engagement of the movable rack 422 drives the driven rack 422 to move inward, and the driven rack 422 drives the driving block 421 to move inward, and the driving block 421 drives the pressing adjustment rod 420 to slide inward in the slide groove 419, and the pressing adjustment rod 420 pulls the upper end of the pressing rod 404 inward, and the lower end of the pressing rod 404 is rotatably connected to the rotating connecting tube 408 through the pressing rotating block 409. When the upper end of the pressing rod 404 receives an inward pulling force, the pressing rod 404 rotates around the rotating connecting tube 408, and the pressing rod 404 drives the pressing block 403 to tighten. During the tightening process, the pressing block 403 presses the wound artery located in the pressing tube 402 from the left and right directions, and the arterial compression hemostasis is completed.
[0030] When the hemostatic bandage 315 is pressed against the wound and arterial hemostasis is completed, the fixing strips 316 on both sides of the hemostatic bandage 315 are passed through the adjustment cavity 321 on the tightening ring 16, the fixing tooth blocks 320 in the fixing grooves 317 are plugged into the fixing grooves 317 on the fixing strips 316, and the fixing strips 316 are pulled down from the lower end of the adjustment cavity 321 until the hemostatic bandage 315 and the tightening ring 16 tighten and bandage the wound.
[0031] In addition, the hemostatic bandage 315 and the hemostatic block 313 on this device are adhered by Velcro, and the tightening ring 16 and the bandage seat 318 are also adhered by Velcro. Therefore, when the hemostatic bandage 315 and the tightening ring 16 are completed, the entire bandage device can be removed, making it easier to send the injured person to the hospital for treatment.
[0032] When the device is used in dim light, it is necessary to start the lighting mechanism 2. The lighting seat 201 is fixedly connected to the front support seat 13. The lighting adjustment rod 204 is pushed. The lighting adjustment rod 204 is connected to the first rotating shaft 209 through the rotating connecting block 210, so that the lighting adjustment rod 204 rotates at the first rotating sleeve 203, pushing the lighting lamp pole 206. The lighting lamp pole 206 is connected to the second rotating shaft 211 so that the lighting lamp pole 206 rotates at the second rotating sleeve 205. The lighting lamp holder 207 is adjusted to a suitable angle through the rotation adjustment of the lighting adjustment rod 204 and the lighting lamp pole 206, and the light board 208 in the lighting lamp holder 207 is turned on for lighting.
[0033] Finally, it should be noted that the above is only a preferred embodiment of the present invention and is not intended to limit the present invention. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art can still modify the technical solutions described in the aforementioned embodiments or make equivalent substitutions for some of the technical features therein. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.
Claims
1. A surgical rapid hemostasis device, comprising a device base (1), characterized in that: The device base (1) is provided with a base plate (11), the base plate (11) is provided with a partition plate (12), the partition plate (12) divides the device base (1) into a front support seat (13) and a rear support seat (14), the upper end of the base plate (11) is fixedly connected to a pressing mechanism (4), the left end of the front support seat (13) is provided with a lighting mechanism (2), the right end of the front support seat (13) is provided with a hemostatic bandage mechanism (3), and the front support seat (13) is provided with a tightening ring (16) that cooperates with the hemostatic bandage mechanism (3).
2. A surgical rapid hemostasis device according to claim 1, characterized in that: The hemostatic bandage mechanism (3) comprises a hemostatic column (301), an adjusting screw (302), an adjusting motor (303), an adjusting block (304), a hemostatic seat (305), a hemostatic pressure rod (306) and a hemostatic head (307). The lower surface of the hemostatic column (301) is fixedly connected to the base plate (11) on the front support seat (13). The upper end of the hemostatic column (301) is fixed with an adjusting motor (303). The hemostatic column (301) is provided with an adjusting cavity (308). The adjusting cavity (308) is fixed with a rotating seat (309) distributed up and down. The rotating seat (309) An adjusting screw (302) is provided between the adjusting chamber (308), the adjusting screw (302) passes through the rotating seat (309) at the upper end of the adjusting chamber (308) and is fixedly connected to the output end of the adjusting motor (303), the adjusting screw (302) is sleeved with an adjusting block (304) threadedly connected to the adjusting screw (302), the hemostatic seat (305) is fixedly connected to the adjusting block (304), a fixing groove (310) is provided in the hemostatic seat (305), a hemostatic rod (306) is inserted in the fixing groove (310), and a hemostatic head (307) is fixedly connected to the lower end of the hemostatic rod (306).
3. The surgical rapid hemostasis device according to claim 2, characterized in that: The hemostatic rod (306) is provided with a fixed threaded hole (311), the hemostatic seat (305) is provided with a fixed screw (312) threadedly connected to the hemostatic seat (305), and the fixed screw (312) is cooperatively connected to the fixed threaded hole (311) on the hemostatic rod (306).
4. The surgical rapid hemostasis device according to claim 3, characterized in that: The rear end of the hemostatic head (307) is threadedly connected to the hemostatic rod (306), the hemostatic head (307) is provided with a hemostatic block (313), the lower end of the hemostatic block (313) is connected with a hemostatic bandage (315), both ends of the hemostatic bandage (315) are provided with fixing strips (316), the fixing strips (316) are provided with a fixing groove (317), the front support seat (13) is provided with a bandage seat (318), the bandage seat (318) is connected with a tightening ring (16), both ends of the tightening ring (16) are provided with tightening seats (319), the tightening seat (319) is provided with a fixed tooth block (320) plugged into the fixing groove (317), the tightening seat (319) is provided with an adjusting cavity (321), the adjusting cavity (321) is provided with an adjusting spring (314), and one end of the adjusting spring (314) is fixedly connected to the fixed tooth block (320).
5. The surgical rapid hemostasis device according to claim 1, characterized in that: The pressing mechanism (4) comprises a pressing ring (401), a pressing tube (402), a pressing block (403), a pressing rod (404), a pressing adjustment frame (405) and a pressing adjustment box (406). There are two pressing rings (401), which are fixedly connected to the partition plates (12) on the front support seat (13) and the rear support seat (14), respectively. A pressing tube (402) is fixedly connected between the pressing rings (401). A pressing hole (407) is provided on the pressing tube (402). The upper end of the pressing tube (402) is fixedly provided with a A pressing adjustment frame (405) is provided with a rotating connecting pipe (408) at both ends of the pressing tube (402), and a pressing rotating block (409) is provided on the rotating connecting pipe (408) and is rotatably connected to the rotating connecting pipe (408). The upper end of the pressing rotating block (409) is fixedly connected to the lower end of the pressing rod (404), and the pressing block (403) is rotatably connected to the pressing rod (404) and is located in the pressing hole (407). The pressing rod (404) passes through the pressing adjustment frame (405) and is connected to the pressing adjustment box (406).
6. The surgical rapid hemostasis device according to claim 5, characterized in that: The pressing adjustment frame (405) comprises a supporting tube (410), a fixing rod (411) and a limiting block (412), wherein the supporting tube (410) is fixedly connected to the upper end of the pressing tube (402), fixing rods (411) are provided at both ends of the supporting tube (410), the limiting block (412) and the fixing rod (411) are plugged into each other to form a pressing limiting groove (15), and a locking nut (413) is provided on the fixing rod (411) on the outside of the limiting block (412).
7. The surgical rapid hemostasis device according to claim 6, characterized in that: The lower end of the pressure regulating box (406) is provided with a fixed support seat (414) fixedly connected to the pressure regulating frame (405), the top of the pressure regulating box (406) is provided with a driving motor (415), the inside of the pressure regulating box (406) is provided with a driving threaded rod (416) connected to the output end of the driving motor (415), the lower end of the driving threaded rod (416) is sleeved with a threaded pipe sleeve (417), the lower end of the threaded pipe sleeve (417) passes through the pressure regulating frame (405) and is provided with a pressing block (403).
8. The surgical rapid hemostasis device according to claim 7, characterized in that: A driving gear (418) is fixedly sleeved on the driving threaded rod (416), a sliding groove (419) is provided in the pressing adjustment box (406), and a pressing adjustment rod (420) is slidably connected in the sliding groove (419), one end of the pressing adjustment rod (420) passes through the pressing adjustment box (406) and is fixedly connected to the pressing rod (404), and a driving block (421) is provided at the other end of the pressing adjustment rod (420), and a driven rack (422) meshing with the driving gear (418) is provided on the driving block (421), and a compression spring (423) is provided at the outer end of the pressing adjustment rod (420).
9. The surgical rapid hemostasis device according to claim 1, characterized in that: The lighting mechanism (2) comprises a lighting seat (201), a lighting frame (202), a first rotating sleeve (203), a lighting adjustment rod (204), a second rotating sleeve (205), a lighting lamp rod (206), a lighting lamp seat (207) and a light board (208), wherein the lower surface of the lighting seat (201) is fixedly mounted on the base plate (11) of the front support seat (13), the lower end of the lighting frame (202) is fixedly mounted on the lighting seat (201), the lighting frame (202) is provided with a first rotating sleeve (203), and the first rotating sleeve (203) is provided with a first rotating shaft (203) rotatably connected to the first rotating sleeve (203). 09), a rotating connection block (210) is provided at the lower end of the lighting adjustment rod (204), the rotating connection block (210) is rotatably connected to the two ends of the first rotating shaft (209), a second rotating sleeve (205) is provided at the upper end of the lighting adjustment rod (204), a second rotating shaft (211) rotatably connected to the second rotating sleeve (205) is provided in the second rotating sleeve (205), the lighting lamp pole (206) is rotatably connected to the second rotating shaft (211), the lighting lamp holder (207) is fixedly mounted on the top end of the lighting lamp pole (206), and the lamp board (208) is fixedly mounted on the inner surface of the lighting lamp holder (207).