CN210354679U - Noninvasive hemodynamic detector for nephrology department - Google Patents
Noninvasive hemodynamic detector for nephrology department Download PDFInfo
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- CN210354679U CN210354679U CN201920536121.6U CN201920536121U CN210354679U CN 210354679 U CN210354679 U CN 210354679U CN 201920536121 U CN201920536121 U CN 201920536121U CN 210354679 U CN210354679 U CN 210354679U
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- detector main
- hemodynamics
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Abstract
The utility model discloses a noninvasive hemodynamic detector of nephrology, the power distribution box comprises a box body, the four corners department of bottom half all is provided with flexible groove, and the inside in flexible groove all is provided with the screw rod, the bottom of screw rod all is provided with the balancing piece, and the outside of screw rod all is provided with adjusting nut, be provided with on the balancing piece with adjusting nut matched with spacing groove. The utility model discloses install the box, use through the box can protect hemodynamics detector main part, avoid hemodynamics detector main part to receive the injury, the security of hemodynamics detector main part has been improved, the setting of lifting the hand on the case lid, can make things convenient for device's removal, it is more convenient to use, the setting of box inside support bar, use through the slider cooperation of bracing piece and spout inside, make the device can support hemodynamics detector main part at the in-process that uses, make things convenient for medical personnel's use and observation, it is more convenient to use.
Description
Technical Field
The utility model relates to the technical field of medical equipment, specifically be a noninvasive hemodynamic detector of nephrology.
Background
Nephrology department is a clinical department set by hospitals at all levels for diagnosing and treating kidney diseases, the kidney diseases are common diseases and frequently encountered diseases, and if the kidney diseases are worsened, uremia can be developed, so that the health of people is seriously harmed. Chronic kidney disease has become to follow heart cerebrovascular disease, tumour, diabetes after another kind threatens human health's important disease, become global public health problem, and need use the haemodynamics detector to inspect the patient in the treatment of nephrology branch of academic or vocational study and diagnosis process usually, but traditional haemodynamics detector is in the use, because highly fixed, medical personnel use comparatively inconveniently, influence operation and watch, and traditional haemodynamics detector lacks protection device, and carry comparatively inconveniently, the practicality is comparatively inconvenient, and simultaneously, traditional device can't adjust the stationarity of device in the use, cause the unstability of device, cause the danger that the device fell easily, safety in utilization is lower.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a no blood dynamics detector is created to nephrology to solve the problem that proposes in the above-mentioned background art.
In order to achieve the above object, the utility model provides a following technical scheme: a noninvasive hemodynamic detector for nephrology comprises a box body, wherein telescopic grooves are formed in four corners of the bottom of the box body, screw rods are arranged in the telescopic grooves, balance blocks are arranged at the bottoms of the screw rods, adjusting nuts are arranged on the outer sides of the screw rods, limiting grooves matched with the adjusting nuts are formed in the balance blocks, box covers are hinged to two sides of the top of the box body, hasps are hinged to the box covers on one sides of the box body, lapping blocks are arranged on the box covers on the other sides of the box body, the box covers are clamped with the lapping blocks, handles are arranged at the tops of the box covers, a hemodynamic detector main body is arranged in the box body, two sets of sliding grooves are formed in two ends of the hemodynamic detector main body, sliding blocks are arranged in the sliding grooves, mounting grooves are formed in the tops and the bottoms of the sliding blocks, and pressure springs are arranged in the, the one end that the pressure spring is close to the spout lateral wall all is provided with the fixture block, the inside of spout all is provided with the draw-in groove with fixture block matched with, all articulated on the slider have the bracing piece, and the one end that the slider was kept away from to the bracing piece all articulates with the bottom of box.
Preferably, the bottom of balancing piece all is provided with the rubber pad, and the bottom of rubber pad all is provided with anti-skidding line.
Preferably, the outer sides of the adjusting nuts are uniformly provided with anti-skidding tooth grooves.
Preferably, four groups of hasps and blocks on the box cover are arranged.
Preferably, the two sides of the box body are uniformly provided with vent holes.
Preferably, the bottom of the body of the hemodynamic detector is provided with a protective pad.
Compared with the prior art, the beneficial effects of the utility model are that: the noninvasive hemodynamic detector for nephrology is provided with the box body, the hemodynamic detector main body can be protected by using the box body, the damage to the hemodynamic detector main body is avoided, the safety of the hemodynamic detector main body is improved, the lifting of the handle on the box cover can facilitate the movement of the device, the use is more convenient, the supporting rod in the box body is arranged, the supporting rod is matched with the sliding block in the sliding groove for use, so that the device can support the hemodynamic detector main body in the use process, the use and the observation of medical personnel are facilitated, the use is more convenient, the telescopic groove at the bottom of the box body is arranged, the screw rod in the telescopic groove is matched with the adjusting nut in the limiting groove for use, the telescopic of the screw rod can be controlled in the use process, and then the position of the balance block is controlled, the balance of the device is conveniently adjusted, and the stability of the device is improved.
Drawings
FIG. 1 is a schematic view of the inside of the case of the present invention;
FIG. 2 is a schematic cross-sectional view of the chute of the present invention;
fig. 3 is a schematic cross-sectional view of the bottom of the case body of the present invention.
In the figure: 1. a counterbalance; 2. a limiting groove; 3. a box body; 4. a support bar; 5. a chute; 6. A hemodynamic detector body; 7. a box cover; 8. a handle; 9. a hasp; 10. building blocks; 11. A slider; 12. adjusting the nut; 13. a screw; 14. a clamping block; 15. a pressure spring; 16. mounting grooves; 17. a card slot; 18. a telescopic groove.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1-3, the present invention provides an embodiment: a non-invasive hemodynamic detector for nephrology department comprises a box body 3, wherein four corners of the bottom of the box body 3 are all provided with telescopic grooves 18, screw rods 13 are all arranged inside the telescopic grooves 18, the bottom of each screw rod 13 is provided with a balance block 1, the outer sides of the screw rods 13 are all provided with adjusting nuts 12, limiting grooves 2 matched with the adjusting nuts 12 are arranged on the balance blocks 1, two sides of the top of the box body 3 are all hinged with a box cover 7, the box cover 7 on one side of the box body 3 is hinged with a hasp 9, the box cover 7 on the other side of the box body 3 is provided with a lapping block 10, the box cover 7 is clamped with the lapping block 10, the top of the box cover 7 is all provided with a handle 8, a hemodynamic detector main body 6 is arranged inside the box body 3, two groups of sliding grooves 5 are arranged at two ends of the hemodynamic detector main body 6, sliding blocks 11, and the inside of mounting groove 16 all is provided with pressure spring 15, and the one end that pressure spring 15 is close to 5 lateral walls of spout all is provided with fixture block 14, and the inside of spout 5 all is provided with draw-in groove 17 with fixture block 14 matched with, all articulates on the slider 11 has bracing piece 4, and the one end that the slider 11 was kept away from to bracing piece 4 all articulates with the bottom of box 3.
In this implementation: the bottom of balancing piece 1 all is provided with the rubber pad, and the bottom of rubber pad all is provided with anti-skidding line, the anti-skidding effect of device has been improved, adjusting nut 12's the outside all evenly is provided with anti-skidding tooth's socket, the convenience is adjusted the stationarity of device, hasp 9 on case lid 7 all is provided with four groups with taking piece 10, the sealed effect of case lid 7 has been improved, the both sides of box 3 all evenly are provided with ventilate, be convenient for dispel the heat to haemodynamics detector main part 6 after the shrink, the bottom of haemodynamics detector main part 6 is provided with the protection pad, the protection effect to haemodynamics detector main part 6 has been improved.
The working principle is as follows: when the device is used, the device is placed on a placing table, then the adjusting nuts 12 at the back parts of the limiting grooves 2 are respectively rotated, due to the limiting effect of the limiting grooves 2 on the adjusting nuts 12, the adjusting nuts 12 rotate to drive the screw rods 13 in the telescopic grooves 18 to stretch, the bottom parts of the balance blocks 1 are attached to the placing table, the stability of the box body 3 is ensured, after the box body 3 is placed stably, the hasps 9 and the lapping blocks 10 are separated, then the box cover 7 is opened, the hemodynamics detector main body 6 is lifted up, the lifting height of the hemodynamics detector main body 6 is controlled according to the use requirement, the sliding blocks 11 respectively move in the sliding grooves 5 in the lifting process of the hemodynamics detector main body 6, due to the thrust of the compression springs 15 on the clamping blocks 14, the sliding block 11 is automatically positioned in the sliding grooves 5 in the lifting process of the hemodynamics detector main body 6, and the height of the hemodynamics detector main body 6 is, after the height of the hemodynamic detector main body 6 is adjusted, the device power is turned on to use the hemodynamic detector main body 6.
Although the present invention has been described in detail with reference to the foregoing embodiments, it will be apparent to those skilled in the art that modifications may be made to the embodiments or portions thereof without departing from the spirit and scope of the invention.
Claims (6)
1. The utility model provides a noninvasive hemodynamic detector of nephrology, includes box (3), its characterized in that: the detection device is characterized in that four corners of the bottom of the box body (3) are provided with telescopic grooves (18), screw rods (13) are arranged in the telescopic grooves (18), balance blocks (1) are arranged at the bottoms of the screw rods (13), adjusting nuts (12) are arranged on the outer sides of the screw rods (13), limiting grooves (2) matched with the adjusting nuts (12) are arranged on the balance blocks (1), box covers (7) are hinged to the two sides of the top of the box body (3), hasps (9) are hinged to the box covers (7) on one side of the box body (3), lapping blocks (10) are arranged on the box covers (7) on the other side of the box body (3), the box covers (7) are clamped with the lapping blocks (10), handles (8) are arranged at the tops of the box covers (7), a hemodynamics detector main body (6) is arranged in the box body (3), and two sliding grooves (5) are arranged at the two ends of the hemodynamics detector main, the inside of spout (5) all is provided with slider (11), the top and the bottom of slider (11) all are provided with mounting groove (16), and the inside of mounting groove (16) all is provided with pressure spring (15), the one end that pressure spring (15) are close to spout (5) lateral wall all is provided with fixture block (14), the inside of spout (5) all is provided with draw-in groove (17) with fixture block (14) matched with, all articulate on slider (11) has bracing piece (4), and the one end that slider (11) was kept away from in bracing piece (4) all articulates with the bottom of box (3).
2. The non-invasive hemodynamic detector of claim 1, wherein: the bottom of the balance block (1) is provided with a rubber pad, and the bottom of the rubber pad is provided with anti-skid grains.
3. The non-invasive hemodynamic detector of claim 1, wherein: the outer sides of the adjusting nuts (12) are all uniformly provided with anti-skidding tooth grooves.
4. The non-invasive hemodynamic detector of claim 1, wherein: four groups of hasps (9) and blocks (10) on the box cover (7) are arranged.
5. The non-invasive hemodynamic detector of claim 1, wherein: both sides of the box body (3) are uniformly provided with vent holes.
6. The non-invasive hemodynamic detector of claim 1, wherein: the bottom of the hemodynamics detector main body (6) is provided with a protective pad.
Priority Applications (1)
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CN201920536121.6U CN210354679U (en) | 2019-04-19 | 2019-04-19 | Noninvasive hemodynamic detector for nephrology department |
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CN201920536121.6U CN210354679U (en) | 2019-04-19 | 2019-04-19 | Noninvasive hemodynamic detector for nephrology department |
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CN210354679U true CN210354679U (en) | 2020-04-21 |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN114088983A (en) * | 2021-11-09 | 2022-02-25 | 连盟 | Multifunctional electric power detector |
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2019
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN114088983A (en) * | 2021-11-09 | 2022-02-25 | 连盟 | Multifunctional electric power detector |
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