Flushing receiving device for ophthalmology outpatient service
By designing a flushing and receiving device for ophthalmic outpatient clinics, the base, claws and adjustable support structures are used to solve the problem that patients find it difficult to keep the water receiver stable, achieving the stability and convenient adjustment of the water receiver, and improving treatment efficiency and patient experience.
Patent Information
- Application Number
- CN202421415838.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-20
- Publication Date
- 2025-07-22
- Estimated Expiration
- 2034-06-20
AI Technical Summary
In ophthalmic outpatient clinics, it is difficult for young, elderly, mobility-free or unaccompanied patients to maintain the stability of the water recipient, which makes it difficult to complete the conjunctival sac irrigation treatment, affecting the treatment effect and efficiency.
A flushing and receiving device for an ophthalmic outpatient clinic is designed, including a base, a jaw, a first rod and a second rod. It is connected to the treatment bed through the jaw. The first rod provides high support. The second rod can be rotatably adjusted, which drives the water receiver to accurately fit the patient's face. Combined with the sleeve and adjustment hole structure, the stable fixation of the water receiver is achieved.
It realizes convenient position adjustment and stability of the water receiver, ensures the stability of the water receiver during the treatment process, and improves the treatment efficiency and the patient's medical experience.
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Figure CN223126873U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of medical devices, and more particularly, to a flushing and receiving device for ophthalmic outpatient clinics. Background Art
[0002] In the daily treatment of ophthalmic outpatient clinics, conjunctival sac irrigation is frequently carried out as one of the important medical means. This treatment method requires the cooperation of patients and medical staff to achieve the expected treatment effect. The supplies required for conjunctival sac irrigation are: a water receiver, normal saline, an infusion tube, a treatment bed, etc. The patient needs to hold the handle position of the water receiver, and the edge of the water receiver is closely attached to the patient's face to catch the liquid flowing down from the irrigated conjunctival sac. The medical staff is located near the patient's head. One hand holds the switch of the infusion device to release normal saline, and flushes the normal saline into the conjunctival sac that is controlled to be opened by the other hand.
[0003] However, during this treatment process, it is necessary for the patient to ensure the sufficient stability of the water receiver. For patients who are young, old, have limited mobility, weak hands, or have no family members accompanying them, it is impossible to ensure that the position of the water receiver is in the correct position and the stability of the water receiver during use. Therefore, this treatment is difficult to complete. Even if it is completed, it takes a long time, which not only affects the patient's medical experience, but also affects the patient's treatment effect and reduces the work efficiency of medical staff.
[0004] In view of the above problems, there is an urgent need for improvement. Utility Model Content
[0005] The purpose of this application is to provide a flushing and receiving device for ophthalmic outpatient clinics, which has the advantages of facilitating the position adjustment of the water receiver and ensuring the stability of the water receiver during use.
[0006] This application provides a flushing and receiving device for ophthalmic outpatient clinics, which is used to connect to a treatment bed and receive a water receiver. The technical solution is as follows:
[0007] It includes a base. The base is provided with clamping claws facing outward along the length direction. The clamping claws are connected to the treatment bed. A first support rod is provided along the height direction on the upper part of the base. The free end of the first support rod is rotatably connected to a second support rod. A first through hole is opened at the free end of the second support rod, and the first through hole is connected to the water receiver.
[0008] The flushing receiving device provided by the present application for ophthalmology outpatient clinics is used to connect to a treatment bed and receive a water receiver, and includes a base. The base is provided with clamping claws facing outward along the length direction, and the clamping claws are connected to the treatment bed. The upper part of the base is provided with a first support rod along the height direction. The free end of the first support rod is rotatably connected to a second support rod. The free end of the second support rod is provided with a first through hole, and the first through hole is connected to the water receiver. Among them, by connecting to the treatment bed, the clamping claws provide a basic support function for the overall structure. The first support rod provides support in the height direction, and the second support rod provides support in the horizontal direction. The first through hole provided at the free end of the second support rod receives the water receiver. After adjusting to the target position, the edge part of the water receiver is closely attached to the patient's face, accurately receiving the liquid flowing down from the flushing conjunctival sac, and at the same time ensuring the stability of the water receiver during use. Since the second support rod can rotate around the free end of the first support rod, the convenient adjustment of the position of the free end of the second support rod is also realized. Through the above structure, not only is the position adjustment of the water receiver convenient, but also the stability of the water receiver during use is ensured.
[0009] Further, in the present application, the first support rod includes a first sleeve and a second sleeve inserted into the first sleeve. The outer wall of the first sleeve is provided with a first adjustment hole, and the outer wall of the second sleeve is provided with a plurality of second adjustment holes along the axial direction. After the first adjustment hole and one of the second adjustment holes are correspondingly spliced, they are connected by a first adjustment bolt.
[0010] The flushing receiving device provided by the present application for ophthalmology outpatient clinics, the first support rod includes a first sleeve and a second sleeve inserted into the first sleeve. The outer wall of the first sleeve is provided with a first adjustment hole, and the outer wall of the second sleeve is provided with a plurality of second adjustment holes along the axial direction. After the first adjustment hole and one of the second adjustment holes are correspondingly spliced, they are connected by a first adjustment bolt. Among them, a convenient connection structure of insertion is formed between the first sleeve and the second sleeve. The first adjustment hole is used for positioning and connecting, and the second adjustment hole plays a role in adjusting the telescopic height of the first support rod. After moving the second sleeve to the designated position and making the first adjustment hole and one of the second adjustment holes correspondingly spliced and then connecting them by a first adjustment bolt, a convenient adjustment and connection fixation of the first sleeve and the second sleeve are formed, so that the first support rod is telescopically adjusted to the target height position, ensuring that the water receiver received by the second support rod is at the target position. Thus, while facilitating the position adjustment of the water receiver, the stability of the water receiver during use is also ensured.
[0011] Further, in the present application, the base is provided with a first rotation hole along the height direction, and the bottom of the first sleeve is provided with a first rotating shaft, and the first rotating shaft is rotatably connected to the first rotation hole.
[0012] The flushing receiving device for ophthalmology outpatient service provided by the present application, the base is provided with a first rotation hole in the height direction, the bottom of the first sleeve is provided with a first rotating shaft, and the first rotating shaft is rotatably connected to the first rotation hole. Among them, the first rotation hole provides a support basis for the rotation of the first support rod, and the first rotating shaft serves as a rotating carrier to realize rotation in the first rotation hole, thereby realizing the rotation of the first support rod along the base in the horizontal direction, and at the same time facilitating the position adjustment of the second support rod in the horizontal direction, so as to further facilitate the position adjustment of the water receiver while ensuring the stability of the water receiver during use.
[0013] Further, in the present application, the first sleeve is provided with a first limiting ring above the first rotating shaft, and the bottom surface of the first limiting ring abuts against the upper outer wall of the base.
[0014] The flushing receiving device for ophthalmology outpatient service provided by the present application, the first sleeve is provided with a first limiting ring above the first rotating shaft, and the bottom surface of the first limiting ring abuts against the upper outer wall of the base. Among them, under the action of the self-weight of the first sleeve, the first sleeve carrying the second sleeve, and the gravity of the second support rod, the first limiting ring is used to simplify the rotating connection structure between the first support rod and the base, and at the same time form a good limiting effect. The first sleeve only needs to be inserted into the first rotation hole of the base through the first rotating shaft until the bottom surface of the first limiting ring abuts against the upper outer wall of the base, thereby realizing the rotation of the first rotating shaft along the first rotation hole and the limiting of the first sleeve by the first limiting ring, preventing the first sleeve from being misaligned or shaken during rotation, and further ensuring the stability of the water receiver during use while facilitating the position adjustment of the water receiver.
[0015] Further, in the present application, the second support rod includes a third sleeve and a fourth sleeve inserted into the third sleeve. The outer wall of the third sleeve is provided with a third adjustment hole, and the outer wall of the fourth sleeve is provided with a plurality of fourth adjustment holes along the axial direction. The third adjustment hole and one of the fourth adjustment holes are correspondingly spliced and connected by a second adjustment bolt.
[0016] Further, in the present application, the third sleeve is provided with a second rotation hole near the end close to the second sleeve, the top of the second sleeve is provided with a second rotating shaft, and the second rotating shaft is rotatably connected to the second rotation hole.
[0017] Further, in the present application, the second sleeve is provided with a second limiting ring below the second rotating shaft, and the top surface of the second limiting ring abuts against the bottom outer wall of the third sleeve.
[0018] Further, in the present application, the jaw includes two first jaw bodies and second jaw bodies that face each other and are symmetrically arranged. A first slider is provided at the tail of the first jaw body, and a second slider is provided at the tail of the second jaw body. The base is provided with a first chute in the width direction, and both the first slider and the second slider are slidably connected to the first chute;
[0019] A fifth adjustment hole is formed in the middle of the first jaw body, and a sixth adjustment hole is formed in the middle of the second jaw body. After the fifth adjustment hole and the sixth adjustment hole are correspondingly spliced, they are connected by a third adjustment bolt.
[0020] Further, in the present application, a clamping portion is provided on the mutually facing surface of the free ends of the first jaw body and the second jaw body, and a plurality of arc-shaped grooves are formed in the clamping portion.
[0021] Further, in the present application, the surface of the clamping portion is a rough surface.
[0022] As can be seen from the above, a flushing receiving device for an ophthalmology outpatient clinic provided by the present application is used to connect to a treatment bed and receive a water receiver, and includes a base. The base is provided with clamping claws facing outward along the length direction, and the clamping claws are connected to the treatment bed. A first support rod is provided along the height direction on the upper part of the base. The free end of the first support rod is rotatably connected to a second support rod. A first through hole is opened at the free end of the second support rod, and the first through hole is connected to the water receiver. Among them, by connecting to the treatment bed, the clamping claws provide a basic support function for the overall structure. The first support rod provides support in the height direction, and the second support rod provides support in the horizontal direction. The first through hole opened at the free end of the second support rod passes through the water receiver. After being adjusted to the target position, the edge part of the water receiver is closely attached to the patient's face, accurately receiving the liquid flowing down from the flushing conjunctival sac, and at the same time ensuring the stability of the water receiver during use. Since the second support rod can rotate around the free end of the first support rod, the convenient adjustment of the position of the free end of the second support rod is also realized.Through the above structure, not only is it convenient to adjust the position of the water receiver, but also the stability of the water receiver during use is guaranteed; the first support rod includes a first sleeve and a second sleeve plugged into the first sleeve, the radial outer wall of the first sleeve is provided with a first adjustment hole, and the radial outer wall of the second sleeve is provided with multiple second adjustment holes along the axial direction, the first adjustment hole is correspondingly spliced with one of the second adjustment holes and connected by a first adjustment bolt, wherein a convenient plug-in connection structure is formed between the first sleeve and the second sleeve, the first adjustment hole is used to play a role of positioning connection, and the second adjustment hole plays a role of extending the first support rod. The height adjustment function is to move the second sleeve to the specified position and connect the first adjustment hole with one of the second adjustment holes through the first adjustment bolt, thereby forming a convenient adjustment and connection fixation between the first sleeve and the second sleeve, so that the first support rod is telescopically adjusted to the target height position, ensuring that the water receiver supported by the second support rod is at the target position, thereby facilitating the position adjustment of the water receiver and ensuring the stability of the water receiver during use; the base is provided with a first rotating hole along the height direction, and the bottom of the first sleeve is provided with a first rotating shaft, and the first rotating shaft and the first rotating hole are connected The first rotating hole provides a support basis for the rotation of the first support rod, and the first rotating shaft serves as a rotating carrier to realize rotation in the first rotating hole, thereby realizing the horizontal rotation of the first support rod along the base, and at the same time facilitating the second support rod to realize horizontal position adjustment, thereby further facilitating the position adjustment of the water receiver while also ensuring the stability of the water receiver during use; the first sleeve is provided with a first limiting ring above the first rotating shaft, and the bottom surface of the first limiting ring abuts against the upper outer wall of the base, wherein, under the deadweight of the first sleeve and the carrying capacity of the first sleeve Under the action of gravity of the second sleeve and the second support rod, the first limiting ring is used to simplify the rotational connection structure between the first support rod and the base, and at the same time form a good limiting effect. The first sleeve only needs to be inserted into the first rotation hole of the base through the first rotating shaft and the base to the bottom surface of the first limiting ring to abut against the upper outer wall of the base, thereby realizing the rotation of the first rotating shaft along the first rotating hole and the limiting of the first sleeve by the first limiting ring, preventing the first sleeve from being dislocated or shaking during rotation, thereby facilitating the adjustment of the position of the water receiver and ensuring the stability of the water receiver during use.
[0023] Other features and advantages of the present application will be described in the following description, and partly become apparent from the description, or be understood by practicing the embodiments of the present application. The purpose and other advantages of the present application can be realized and obtained by the structures specifically pointed out in the written description and the drawings. BRIEF DESCRIPTION OF THE DRAWINGS
[0024] Figure 1 A schematic diagram of the structure of a flushing receiving device for use in an ophthalmology clinic provided in this application.
[0025] Figure 2 A cross-sectional view of a flushing and receiving device for ophthalmology outpatient service provided by this application.
[0026] Figure 3 An exploded view of a flushing and receiving device for ophthalmology outpatient service provided by this application.
[0027] In the figure: 1. Base; 101. First rotating hole; 102. First sliding groove; 2. Claw; 201. First claw body; 2011. First slider; 2012. Fifth adjusting hole; 202. Second claw body; 2021. Second slider; 2022. Sixth adjusting hole; 20. Clamping part; 3. First support rod; 301. First sleeve; 3011. First adjusting hole; 3012. First rotating shaft; 3013. First limiting ring; 302. Second sleeve; 3021. Second adjusting hole; 3022. Second rotating shaft; 3023. Second limiting ring; 4. Second support rod; 401. First through hole; 402. Third sleeve; 4021. Third adjusting hole; 4022. Second rotating hole; 403. Fourth sleeve; 4031. Fourth adjusting hole; 5. First adjusting bolt; 6. Second adjusting bolt; 7. Third adjusting bolt. Detailed implementation manners
[0028] Next, the technical solutions in this application will be clearly and completely described in conjunction with the accompanying drawings in this application. Obviously, the described embodiments are only a part of the embodiments of this application, rather than all of the embodiments. Usually, the components of this application described and shown in the accompanying drawings here can be arranged and designed in various different configurations. Therefore, the following detailed description of the embodiments of this application provided in the accompanying drawings is not intended to limit the scope of this application that is required to be protected, but only represents the selected embodiments of this application. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative efforts belong to the scope of protection of this application.
[0029] It should be noted that: similar reference numerals and letters indicate similar items in the following drawings. Therefore, once an item is defined in one drawing, it does not need to be further defined and explained in subsequent drawings. At the same time, in the description of this application, terms such as "first" and "second" are only used for distinguishing descriptions and cannot be understood as indicating or implying relative importance.
[0030] Please refer to Figures 1 to 3As shown in the figure, the present application provides a flushing receiving device for an ophthalmology outpatient clinic, which is used to be connected to a treatment bed and receive a water receiver, and includes a base 1. Along the length direction, the base 1 is provided with a clamping jaw 2 facing outwards. The clamping jaw 2 is connected to the treatment bed. Along the height direction, a first support rod 3 is provided on the upper part of the base 1. The free end of the first support rod 3 is rotatably connected to a second support rod 4. A first through hole 401 is provided at the free end of the second support rod 4, and the first through hole 401 is connected to the water receiver.
[0031] Specifically, in the daily treatment in the ophthalmology outpatient clinic, conjunctival sac irrigation is frequently carried out as one of the important medical means. This treatment method requires the cooperation of patients and medical staff to achieve the expected treatment effect. The supplies needed for conjunctival sac irrigation are: a water receiver, physiological saline, an infusion tube, a treatment bed, etc. The patient needs to hold the grip position of the water receiver, and the edge part of the water receiver is closely attached to the patient's face to catch the liquid flowing down from the irrigated conjunctival sac. The medical staff is located near the patient's head. One hand holds the switch of the infusion set to release physiological saline, and flushes the physiological saline into the conjunctival sac that is controlled to be opened by the other hand. However, during this treatment process, it is required that the patient ensure the sufficient stability of the water receiver. For patients who are young, old, have inconvenient mobility, weak hands, or have no family members accompanying them, it is impossible to ensure that the position of the water receiver is in the correct position and the stability of the water receiver during use. Therefore, this treatment is difficult to complete. Even if it is completed, it takes a long time, which not only affects the patient's medical experience, but also affects the patient's treatment effect and reduces the work efficiency of medical staff. Therefore, to solve the above problems, the flushing and receiving device provided in this application for use in the ophthalmology outpatient clinic is used to connect to the treatment bed and receive the water receiver. It includes a base 1. The base 1 is provided with a claw 2 extending outward along the length direction. The claw 2 is connected to the treatment bed. A first support rod 3 is provided on the upper part of the base 1 along the height direction. The free end of the first support rod 3 is rotatably connected to a second support rod 4. A first through hole 401 is provided at the free end of the second support rod 4. The first through hole 401 is connected to the water receiver. Among them, the claw 2 provides a basic supporting function for the overall structure by connecting to the treatment bed. The first support rod 3 provides support in the height direction. The second support rod 4 provides support in the horizontal direction. The first through hole 401 provided at the free end of the second support rod 4 receives the water receiver. After being adjusted to the target position, the edge part of the water receiver is closely attached to the patient's face to accurately catch the liquid flowing down from the irrigated conjunctival sac, and at the same time ensure the stability of the water receiver during use. Since the second support rod 4 can rotate around the free end of the first support rod 3, the convenient adjustment of the position of the free end of the second support rod 4 is also realized. Among them, a tubular structure is usually provided at the lower part of the water receiver, and an inverted frustum-shaped structure is usually provided at the upper part of the water receiver. The size of the upper part of the water receiver is larger than the size of the lower part of the water receiver. Therefore, for the first through hole 401 provided at the free end of the second support rod 4, the diameter of the first through hole 401 is adapted to the outer wall diameter of the tubular structure at the lower part of the water receiver, which can play a plug-in supporting role for the tubular structure at the lower part of the water receiver. Since the size of the upper part of the water receiver is larger than the size of the lower part of the water receiver, the water receiver will not fall off or become loose. Through the above structure, not only is the position adjustment of the water receiver convenient, but also the stability of the water receiver during use is ensured.
[0032] In some preferred embodiments, the first support rod 3 includes a first sleeve 301 and a second sleeve 302 inserted into the first sleeve 301. A first adjustment hole 3011 is formed in the radial outer wall of the first sleeve 301, and a plurality of second adjustment holes 3021 are axially formed in the radial outer wall of the second sleeve 302. After the first adjustment hole 3011 and one of the second adjustment holes 3021 are correspondingly spliced, they are connected by a first adjustment bolt 5.
[0033] Specifically, the first support rod 3 includes a first sleeve 301 and a second sleeve 302 inserted into the first sleeve 301. A first adjustment hole 3011 is formed in the radial outer wall of the first sleeve 301, and a plurality of second adjustment holes 3021 are axially formed in the radial outer wall of the second sleeve 302. After the first adjustment hole 3011 and one of the second adjustment holes 3021 are correspondingly spliced, they are connected by a first adjustment bolt 5. Among them, a convenient connection structure for insertion is formed between the first sleeve 301 and the second sleeve 302. The first adjustment hole 3011 is used for positioning and connecting, and the second adjustment hole 3021 plays a role in adjusting the telescopic height of the first support rod 3. After moving the second sleeve 302 to a specified position and making the first adjustment hole 3011 and one of the second adjustment holes 3021 correspondingly spliced, they are connected by a first adjustment bolt 5. Thus, a convenient adjustment and connection fixation between the first sleeve 301 and the second sleeve 302 are formed, so that the first support rod 3 is telescopically adjusted to the target height position, ensuring that the water receiver carried by the second support rod 4 is in the target position. Thus, while facilitating the position adjustment of the water receiver, the stability of the water receiver during use is also ensured.
[0034] In some preferred embodiments, the base 1 is provided with a first rotation hole 101 in the height direction, and a first rotating shaft 3012 is provided at the bottom of the first sleeve 301. The first rotating shaft 3012 is rotatably connected to the first rotation hole 101.
[0035] Specifically, the base 1 is provided with a first rotation hole 101 in the height direction, and a first rotating shaft 3012 is provided at the bottom of the first sleeve 301. The first rotating shaft 3012 is rotatably connected to the first rotation hole 101. Among them, the first rotation hole 101 provides a support basis for the rotation of the first support rod 3, and the first rotating shaft 3012 serves as a rotation carrier and rotates in the first rotation hole 101. Thus, the first support rod 3 is rotated horizontally along the base 1, and at the same time, it is convenient to drive the second support rod 4 to realize the position adjustment in the horizontal direction, thereby further facilitating the position adjustment of the water receiver while ensuring the stability of the water receiver during use.
[0036] In some preferred embodiments, a first limiting ring 3013 is provided above the first rotating shaft 3012 of the first sleeve 301, and the bottom surface of the first limiting ring 3013 abuts against the upper outer wall of the base 1.
[0037] Specifically, a first limiting ring 3013 is provided above the first rotating shaft 3012 of the first sleeve 301, and the bottom surface of the first limiting ring 3013 abuts against the upper outer wall of the base 1. Among them, under the action of the self-weight of the first sleeve 301, the first sleeve 301 carrying the second sleeve 302, and the gravity of the second support rod 4, the first limiting ring 3013 is used to simplify the rotational connection structure between the first support rod 3 and the base 1, and at the same time form a good limiting effect. The first sleeve 301 only needs to be inserted into the first rotating hole 101 of the base 1 through the first rotating shaft 3012 until the bottom surface of the first limiting ring 3013 abuts against the upper outer wall of the base 1, thereby realizing the rotation of the first rotating shaft 3012 along the first rotating hole 101, and the limiting of the first sleeve 301 by the first limiting ring 3013, preventing the first sleeve 301 from being displaced or shaken during the rotation process, and further ensuring the stability of the water receiver during use while facilitating the position adjustment of the water receiver.
[0038] In some preferred embodiments, the second support rod 4 includes a third sleeve 402 and a fourth sleeve 403 inserted into the third sleeve 402. A third adjustment hole 4021 is formed in the radial outer wall of the third sleeve 402, and a plurality of fourth adjustment holes 4031 are formed in the radial outer wall of the fourth sleeve 403 along the axial direction. After the third adjustment hole 4021 and one of the fourth adjustment holes 4031 are correspondingly spliced, they are connected by a second adjustment bolt 6.
[0039] Specifically, the second support rod 4 includes a third sleeve 402 and a fourth sleeve 403 inserted into the third sleeve 402. A third adjustment hole 4021 is formed in the radial outer wall of the third sleeve 402, and a plurality of fourth adjustment holes 4031 are formed in the radial outer wall of the fourth sleeve 403 along the axial direction. After the third adjustment hole 4021 and one of the fourth adjustment holes 4031 are correspondingly spliced, they are connected by a second adjustment bolt 6. Among them, a convenient connection structure of insertion is formed between the third sleeve 402 and the fourth sleeve 403. The third adjustment hole 4021 is used for positioning and connecting, and the fourth adjustment hole 4031 plays a role in adjusting the telescopic length of the second support rod 4. After moving the fourth sleeve 403 to a specified position and making the third adjustment hole 4021 and one of the fourth adjustment holes 4031 correspondingly spliced and then connecting them by the second adjustment bolt 6, a convenient adjustment and connection fixation between the third sleeve 402 and the fourth sleeve 403 are formed, so that the second support rod 4 is telescopically adjusted to the target horizontal position, ensuring that the water receiver carried by the second support rod 4 is at the target position, thereby facilitating the position adjustment of the water receiver while also ensuring the stability of the water receiver during use.
[0040] In some preferred embodiments, a second rotation hole 4022 is formed at one end of the third sleeve 402 close to the second sleeve 302, and a second rotating shaft 3022 is provided at the top of the second sleeve 302. The second rotating shaft 3022 is rotatably connected to the second rotation hole 4022.
[0041] Specifically, a second rotation hole 4022 is formed at one end of the third sleeve 402 close to the second sleeve 302, and a second rotating shaft 3022 is provided at the top of the second sleeve 302. The second rotating shaft 3022 is rotatably connected to the second rotation hole 4022. Among them, the second rotating shaft 3022 provides a support basis for the rotation of the second support rod 4. The second support rod 4 uses the second rotation hole 4022 as a rotation carrier and rotates on the second rotating shaft 3022, thereby realizing the rotation of the second support rod 4 along the second sleeve 302 in the horizontal direction, facilitating the position adjustment of the second support rod 4 in the horizontal direction, and further facilitating the position adjustment of the water receiver while ensuring the stability of the water receiver during use.
[0042] In some preferred embodiments, a second limiting ring 3023 is provided below the second rotating shaft 3022 of the second sleeve 302, and the top surface of the second limiting ring 3023 abuts against the bottom outer wall of the third sleeve 402.
[0043] Specifically, a second limiting ring 3023 is provided below the second rotating shaft 3022 of the second sleeve 302, and the top surface of the second limiting ring 3023 abuts against the bottom outer wall of the third sleeve 402. Among them, under the action of the self-weight of the third sleeve 402 and the gravity of the third sleeve 402 carrying the fourth sleeve 403, the second limiting ring 3023 is used to simplify the rotational connection structure between the first support rod 3 and the second support rod 4, and at the same time form a good limiting effect. The third sleeve 402 only needs to be inserted into the second rotating shaft 3022 of the second sleeve 302 through the second rotation hole 4022 until the bottom surface of the second limiting ring 3023 abuts against the bottom outer wall of the third sleeve 402, thereby realizing the rotation of the third sleeve 402 along the second rotating shaft 3022 and the limitation of the second limiting ring 3023 on the third sleeve 402, preventing the third sleeve 402 from being misaligned or shaken during the rotation process, and further facilitating the position adjustment of the water receiver while ensuring the stability of the second support rod 4 and the water receiver during use.
[0044] In some preferred embodiments, the jaw 2 includes two first jaw bodies 201 and second jaw bodies 202 that face each other and are symmetrically arranged. A first slider 2011 is provided at the tail of the first jaw body 201, and a second slider 2021 is provided at the tail of the second jaw body 202. The base 1 is provided with a first chute 102 in the width direction. Both the first slider 2011 and the second slider 2021 are slidably connected to the first chute 102. A fifth adjustment hole 2012 is formed in the middle of the first jaw body 201, and a sixth adjustment hole 2022 is formed in the middle of the second jaw body 202. After the fifth adjustment hole 2012 and the sixth adjustment hole 2022 are correspondingly spliced, they are connected by a third adjustment bolt 7.
[0045] Specifically, the jaw 2 includes two first jaw bodies 201 and second jaw bodies 202 that face each other and are symmetrically arranged. A first slider 2011 is provided at the tail of the first jaw body 201, and a second slider 2021 is provided at the tail of the second jaw body 202. The base 1 is provided with a first chute 102 in the width direction. Both the first slider 2011 and the second slider 2021 are slidably connected to the first chute 102. A fifth adjustment hole 2012 is formed in the middle of the first jaw body 201, and a sixth adjustment hole 2022 is formed in the middle of the second jaw body 202. After the fifth adjustment hole 2012 and the sixth adjustment hole 2022 are correspondingly spliced, they are connected by a third adjustment bolt 7. Among them, the first chute 102 is used to provide a sliding basis for the first slider 2011 and the second slider 2021. The first jaw body 201 and the second jaw body 202 approach or move away from each other correspondingly to form a clamping structure. The positions of the fifth adjustment hole 2012 and the sixth adjustment hole 2022 remain corresponding. When the distance between the fifth adjustment hole 2012 and the sixth adjustment hole 2022 just catches the leg of the treatment cart, the fifth adjustment hole 2012 and the sixth adjustment hole 2022 are correspondingly spliced and connected and fixed by a third adjustment bolt 7. Thus, the jaw 2 can form a convenient and stable clamping connection structure with the leg of the treatment bed.
[0046] In some preferred embodiments, the free ends of the first jaw body 201 and the second jaw body 202 are provided with a clamping portion 20 on the side facing each other, and the clamping portion 20 is provided with a plurality of arc-shaped grooves.
[0047] Specifically, the free ends of the first jaw body 201 and the second jaw body 202 are provided with a clamping portion 20 on the side facing each other, and the clamping portion 20 is provided with a plurality of arc-shaped grooves. Among them, the clamping portion 20 is used to accurately clamp the leg of the treatment cart, and the arc-shaped grooves are used to form a clamping structure, which plays a more firm clamping and fixing role on the leg of the treatment cart, increases the clamping force between the clamping portion 20 and the leg of the treatment cart, prevents dislocation or sliding between the clamping portion 20 and the leg of the treatment cart, and further ensures the stability of the water receiver during use while facilitating the adjustment of the position of the water receiver.
[0048] In some preferred embodiments, the surface of the clamping portion 20 is a rough surface.
[0049] Specifically, in order to further enhance the clamping force of the clamping portion 20 and play a more firm clamping and fixing role on the legs of the treatment bed, in this embodiment, the surface of the clamping portion 20 is a rough surface, thereby increasing the friction force between the clamping portion 20 and the legs of the treatment bed. While enhancing the clamping force of the clamping portion 20, relative sliding between the clamping portion 20 and the legs of the treatment bed is prevented.
[0050] Through the above technical solutions, the flushing receiving device provided by the present application for ophthalmology outpatient clinics is used to connect to a treatment bed and receive a water receiver, and includes a base 1. A claw 2 is arranged outward along the length direction of the base 1, and the claw 2 is connected to the treatment bed. A first support rod 3 is arranged along the height direction on the upper part of the base 1. The free end of the first support rod 3 is rotatably connected to a second support rod 4. A first through hole 401 is opened at the free end of the second support rod 4, and the first through hole 401 is connected to the water receiver. Among them, by connecting to the treatment bed, the claw 2 provides a basic support function for the overall structure. The first support rod 3 provides support in the height direction, and the second support rod 4 provides support in the horizontal direction. The first through hole 401 opened at the free end of the second support rod 4 receives the water receiver. After being adjusted to the target position, the edge part of the water receiver is closely attached to the patient's face, accurately receiving the liquid flowing down from the flushing of the conjunctival sac, and at the same time ensuring the stability of the water receiver during use. Since the second support rod 4 can rotate around the free end of the first support rod 3, the convenient adjustment of the position of the free end of the second support rod 4 is also realized.With the above structure, it is not only convenient to adjust the position of the water receiver, but also ensures the stability of the water receiver during use. The first support rod 3 includes a first sleeve 301 and a second sleeve 302 inserted into the first sleeve 301. A first adjustment hole 3011 is formed on the outer radial wall of the first sleeve 301, and a plurality of second adjustment holes 3021 are axially formed on the outer radial wall of the second sleeve 302. After the first adjustment hole 3011 and one of the second adjustment holes 3021 are correspondingly spliced, they are connected by a first adjustment bolt 5. Among them, a convenient connection structure for insertion is formed between the first sleeve 301 and the second sleeve 302. The first adjustment hole 3011 is used for positioning and connecting, and the second adjustment hole 3021 plays a role in adjusting the telescopic height of the first support rod 3. After moving the second sleeve 302 to a specified position and making the first adjustment hole 3011 and one of the second adjustment holes 3021 correspondingly spliced, they are connected by a first adjustment bolt 5, thereby forming a convenient adjustment and connection fixation between the first sleeve 301 and the second sleeve 302, so that the first support rod 3 is telescopically adjusted to the target height position, ensuring that the water receiver carried by the second support rod 4 is at the target position. Thus, while facilitating the position adjustment of the water receiver, the stability of the water receiver during use is also ensured. A first rotation hole 101 is formed in the base 1 in the height direction. A first rotating shaft 3012 is provided at the bottom of the first sleeve 301, and the first rotating shaft 3012 is rotatably connected to the first rotation hole 101. Among them, the first rotation hole 101 provides a support basis for the rotation of the first support rod 3, and the first rotating shaft 3012 serves as a rotation carrier and rotates in the first rotation hole 101, thereby realizing the rotation of the first support rod 3 along the base 1 in the horizontal direction, and at the same time facilitating the position adjustment of the second support rod 4 in the horizontal direction, further ensuring the stability of the water receiver during use while facilitating the position adjustment of the water receiver. A first limiting ring 3013 is provided above the first rotating shaft 3012 of the first sleeve 301, and the bottom surface of the first limiting ring 3013 abuts against the upper outer wall of the base 1. Among them, under the action of the self-weight of the first sleeve 301, the first sleeve 301 carrying the second sleeve 302, and the gravity of the second support rod 4, the first limiting ring 3013 is used to simplify the rotation connection structure between the first support rod 3 and the base 1, and at the same time form a good limiting effect. The first sleeve 301 only needs to be inserted into the first rotation hole 101 of the base 1 through the first rotating shaft 3012 until the bottom surface of the first limiting ring 3013 abuts against the upper outer wall of the base 1, thereby realizing the rotation of the first rotating shaft 3012 along the first rotation hole 101 and the limiting of the first sleeve 301 by the first limiting ring 3013, preventing the first sleeve 301 from being misaligned or shaken during rotation, and further ensuring the stability of the water receiver during use while facilitating the position adjustment of the water receiver.
[0051] The above are only the embodiments of the present application and are not intended to limit the protection scope of the present application. For those skilled in the art, various modifications and changes can be made to the present application. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included within the protection scope of the present application.
Claims
1. A flushing receiving device for an ophthalmology outpatient clinic, which is used to connect with a treatment bed and receive a water receiver, and is characterized in that, It includes a base (1). The base (1) is provided with a clamping jaw (2) facing outward along the length direction. The clamping jaw (2) is connected to the treatment bed. The upper part of the base (1) is provided with a first support rod (3) along the height direction. The free end of the first support rod (3) is rotatably connected to a second support rod (4). The free end of the second support rod (4) is provided with a first through hole (401), and the first through hole (401) is connected to the water receiver. The first support rod (3) includes a first sleeve (301) and a second sleeve (302) inserted into the first sleeve (301). The radial outer wall of the first sleeve (301) is provided with a first adjustment hole (3011). The radial outer wall of the second sleeve (302) is provided with a plurality of second adjustment holes (3021) along the axial direction. After the first adjustment hole (3011) and one of the second adjustment holes (3021) are correspondingly spliced, they are connected by a first adjustment bolt (5). The clamping jaw (2) includes two first claw bodies (201) and second claw bodies (202) that face each other and are symmetrically arranged. The tail of the first claw body (201) is provided with a first slider (2011), and the tail of the second claw body (202) is provided with a second slider (2021). The base (1) is provided with a first chute (102) along the width direction. The first slider (2011) and the second slider (2021) are both slidably connected to the first chute (102). The middle part of the first claw body (201) is provided with a fifth adjustment hole (2012), and the middle part of the second claw body (202) is provided with a sixth adjustment hole (2022). After the fifth adjustment hole (2012) and the sixth adjustment hole (2022) are correspondingly spliced, they are connected by a third adjustment bolt (7).
2. The flushing and receiving device for ophthalmology outpatient service according to claim 1, wherein The base (1) is provided with a first rotation hole (101) along the height direction. The bottom of the first sleeve (301) is provided with a first rotating shaft (3012), and the first rotating shaft (3012) is rotatably connected to the first rotation hole (101).
3. The flushing and receiving device for ophthalmology outpatient service according to claim 2, characterized in that, The first sleeve (301) is provided with a first limiting ring (3013) above the first rotating shaft (3012), and the bottom surface of the first limiting ring (3013) abuts against the upper outer wall of the base (1).
4. The flushing and receiving device for ophthalmology outpatient service according to claim 3, characterized in that, The second support rod (4) includes a third sleeve (402) and a fourth sleeve (403) inserted into the third sleeve (402). The radial outer wall of the third sleeve (402) is provided with a third adjustment hole (4021). The radial outer wall of the fourth sleeve (403) is provided with a plurality of fourth adjustment holes (4031) along the axial direction. After the third adjustment hole (4021) and one of the fourth adjustment holes (4031) are correspondingly spliced, they are connected by a second adjustment bolt (6).
5. The flushing and receiving device for ophthalmology outpatient service according to claim 4, characterized in that The third sleeve (402) is provided with a second rotation hole (4022) at one end close to the second sleeve (302). The top of the second sleeve (302) is provided with a second rotating shaft (3022), and the second rotating shaft (3022) is rotatably connected to the second rotation hole (4022).
6. The flushing and receiving device for ophthalmology outpatient service according to claim 5, characterized in that, The second sleeve (302) is provided with a second limiting ring (3023) below the second rotating shaft (3022), and the top surface of the second limiting ring (3023) abuts against the bottom outer wall of the third sleeve (402).
7. The flushing and receiving device for ophthalmology outpatient service according to claim 1, characterized in that, The free ends of the first claw body (201) and the second claw body (202) are provided with a clamping portion (20) on the mutually facing surfaces, and a plurality of arc-shaped grooves are formed in the clamping portion (20).
8. The flushing and receiving device for ophthalmology outpatient service according to claim 7, characterized in that, The surface of the clamping portion (20) is a rough surface.