Cold compress device for otolaryngology
By designing an electric curved arm module and a multi-functional component for the cold compress device, the problem of existing cold compress devices being unable to massage and adjust the cold compress area has been solved. Automatic disinfection and water stain removal have been achieved, improving the comfort and efficiency of cold compress.
Patent Information
- Application Number
- CN202510097854.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-22
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2045-01-22
AI Technical Summary
Existing cold compress devices are not convenient for simultaneous massage during cold compress operations, cannot flexibly adjust the cold compress area, and are inconvenient for cleaning and disinfecting water stains on the surface of the cold compress sac.
A cold compress device was designed, comprising a multi-section electric curved arm module, a reciprocating massage component, an adjustable distance module, a water removal component, a disinfection component, and a contour-following pressure component. The cold compress bladder is driven to move back and forth by a motor, and combined with the functions of adjusting the cold compress area and automatic disinfection, it achieves massage and water stain removal.
It improves the comfort and efficiency of cold compresses, ensures safety, is suitable for cold compresses on different parts of the body, achieves automatic disinfection and water stain removal, and enhances the functionality of the device.
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Figure CN119770258B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of cold compress devices, in particular to a cold compress device for otolaryngology. BACKGROUND
[0002] A medical cold compress device is a new cold compress and pressure combined cold therapy equipment that can meet the needs of different parts. Cold compress can make capillaries contract, reduce local congestion, reduce the sensitivity of nerve endings and reduce pain, reduce local blood flow, prevent inflammation and pus spread, and conduct heat dissipation, increase heat dissipation, and reduce body temperature.
[0003] In the prior art, the patent document with publication number CN116942403A discloses a circulating cold compress device for otolaryngology nursing, which comprises a base, a support seat is fixedly arranged on the upper end face of the base, a seat cushion is fixedly arranged on the upper end face of the support seat, a backrest is hingedly arranged on one side of the upper end face of the seat cushion through a rotating assembly, and a miniature disinfection box is fixedly arranged on the upper end of the front and rear end faces of the backrest. The above-mentioned device is provided with an ear compress assembly on the front and rear ends, and the internal cold compress cavity is completed by a conduit, a circulating pipe, a circulating pump and a circulating cold water tank to continuously replace cold water, so that the patient can selectively compress one ear or both ears according to needs. However, the existing cold compress device is not convenient for synchronous massage of the cold compress part during the cold compress process, and is not convenient for flexible adjustment of the cold compress area of the device during the cold compress process, and is not suitable for cold compress operation of different parts. At the same time, the existing cold compress device is not convenient for removing water stains on the surface of the cold compress capsule and automatic disinfection of the cold compress capsule before and after use during the cold compress operation. Based on this, the present application provides a cold compress device for otolaryngology to solve the problems in the background art. SUMMARY
[0004] The present application provides a cold compress device for otolaryngology to solve the problems of the existing cold compress device in the prior art, which is not convenient for synchronous massage of the cold compress part during the cold compress process, and is not convenient for flexible adjustment of the cold compress area of the device during the cold compress process, and is not suitable for cold compress operation of different parts. At the same time, the existing cold compress device is not convenient for removing water stains on the surface of the cold compress capsule and automatic disinfection of the cold compress capsule before and after use during the cold compress operation.
[0005] The technical scheme solving the above technical problems of the present application is as follows: A cold compress device for otolaryngology, comprising a water tank, a refrigeration cycle component and a support are installed on the top surface of the water tank, a plurality of electric curved arm modules are installed on the support, a space position and space angle adjustable rocker arm is connected to the plurality of electric curved arm modules, a reciprocating massage assembly is installed on the rocker arm, a cold compress frame capable of reciprocating along the rocker arm is connected to the reciprocating massage assembly, two winding rollers are rotationally connected between the inner surfaces of the cold compress frame, two winding motors are installed on the cold compress frame, the output shaft ends of the two winding motors are in transmission connection with the two winding rollers respectively, a cold compress bag is wound between the two winding rollers, the inner cavity of the cold compress bag is in communication with the refrigeration cycle component, a pitch adjusting module is installed on the cold compress frame, two symmetrically arranged and pitch adjustable deformation rollers are rotationally installed on the pitch adjusting module, the two deformation rollers are connected with the cold compress bag, a water removing component for removing water on the surface of the cold compress bag, a disinfection component for disinfecting the surface of the cold compress bag with ultraviolet light and alcohol, and a profiling pressure applying component for profiling and applying pressure to the cold compress bag are respectively installed on the cold compress frame.
[0006] On the basis of the above technical scheme, the present application can also be improved as follows.
[0007] Further, the reciprocating massage assembly comprises a transmission motor installed on the rocker arm, a cam is installed on the output shaft end of the transmission motor, the cold compress frame is in sliding connection with the rocker arm, two symmetrically arranged elastic limiters are installed between the cold compress frame and the rocker arm, a buffer seat is in sliding connection with the cold compress frame, a buffer spring limited by the cold compress frame is fixedly installed on the bottom surface of the buffer seat, a driven wheel is rotationally connected to the buffer seat, and the driven wheel is in adaptive connection with the cam.
[0008] The beneficial effects of the above further scheme are that when the cold compress operation is performed, the cold compress bag is attached to the part to be cold compressed of the patient, after the cold compress bag is attached to the part to be cold compressed of the patient, the transmission motor outputs the set power output speed, after the transmission motor outputs the speed, the cold compress frame can reciprocally move in the rocker arm through the cooperation of the cam, the driven wheel and the elastic limiter, after the cold compress frame reciprocally moves, the attachment strength of the cold compress bag to the part to be cold compressed of the patient is changed, and through the reciprocally changing of the attachment strength of the cold compress bag to the part to be cold compressed of the patient, the massage purpose to the part to be cold compressed of the patient is simultaneously achieved during the cold compress;
[0009] The massage purpose is achieved, thereby effectively improving the cold compress comfort and the cold compress efficiency of the device;
[0010] Meanwhile, through the setting of the buffer seat and the buffer spring, the pressure applying strength of the cold compress bag to the part to be cold compressed is maintained within a safe range, and the cold compress bag is prevented from pressing the part to be cold compressed during the cold compress operation, thereby effectively improving the safety of the cold compress device during the cold compress operation.
[0011] Further, the distance adjusting module comprises an adjusting screw rod rotatably connected between the inner surfaces of the cold compress frame, a motor is mounted on the side surface of the cold compress frame, the output shaft end of the motor is fixedly connected with the adjusting screw rod, a normal screw thread part and a reverse screw thread part are symmetrically arranged on the adjusting screw rod, a deformation frame is drivingly connected on each of the normal screw thread part and the reverse screw thread part, and the two deformation frames are slidingly connected with the cold compress frame, and two deformation rollers are rotatably mounted on the two deformation frames respectively.
[0012] The beneficial effect of the above further scheme is that before the cold compress operation in the ear-nose-throat department is performed, the distance between the two deformation frames is adjusted through the setting of the distance adjusting module, the contact and the contact area of the cold compress bag with the part of the patient to be cold compressed are limited and adjusted through the adjustment of the distance between the two deformation frames, and then the device is suitable for the cold compress operation of different parts of the body in the ear-nose-throat department.
[0013] Further, the refrigeration circulating component comprises a liquid storage cavity formed in the water tank, a refrigeration module matched with the liquid storage cavity is mounted on the water tank, a liquid outlet pump and a liquid return pump are respectively mounted on the water tank, the liquid suction port of the liquid outlet pump and the liquid outlet port of the liquid return pump are both in communication with the liquid storage cavity, corrugated pipes are communicated with the other ends of the liquid outlet pump and the liquid return pump, flow guide cavities are formed in the interiors of the two winding rollers, and the two flow guide cavities are in communication with the inner cavity of the cold compress bag.
[0014] Further, the refrigeration circulating component further comprises temperature probes mounted on the liquid storage cavity and the corrugated pipes, and a single-chip microcomputer is mounted on the end surface of the water tank, and the data terminals of the two temperature probes are both in data connection with the single-chip microcomputer.
[0015] The beneficial effect of the above further scheme is that during the cold compress operation, the cold compress bag reciprocally moves within a set period and a set stroke, so as to reciprocally change the use area of the cold compress bag, the low-temperature temperature of the cold compress bag is maintained through the cyclic switching of the use area, and during the cold compress operation, the temperature of the liquid storage cavity and the inner cavity of the cold compress bag is maintained at a set low temperature through the setting of the multiple temperature probes and the setting of the refrigeration module, so as to perform the cold compress operation.
[0016] During the cold compress operation, the cold compress liquid is circulated in the inner cavity of the cold compress bag through the setting of the liquid outlet pump and the liquid return pump, so as to realize the circulating water cooling effect of the cold compress bag.
[0017] Further, the water removing component comprises a cooling fan mounted on the water tank, two water absorbing rollers rotationally connected to the cooling frame, and water absorbing cotton circles mounted on the two water absorbing rollers, the water absorbing cotton circles are attached to the cooling bag, the water absorbing rollers are internally provided with air drying channels, and a plurality of air permeable holes are formed on the water absorbing rollers and are in communication with the air drying channels, and the air outlet port of the cooling fan is in communication with a three-way hose, and the other two ends of the three-way hose are in rotational communication with the air drying channels of the two water absorbing rollers.
[0018] The beneficial effect of the above further scheme is that during the cooling operation, the cooling bag reciprocates within a set period and a set stroke, and when the cooling bag reciprocates, the water stains condensed on the surface of the cooling bag are absorbed by the water absorbing cotton circles, thereby reducing the condensation and precipitation rate of the water stains on the surface of the cooling bag, and improving the comfort of the patient during the cooling operation, and at the same time, the cooling fan works periodically during the cooling operation, thereby achieving air drying of the water absorbing cotton circles by sending in cool air, and maintaining high water absorption rate and high water removal effect of the water absorbing cotton circles by achieving the air drying effect of the water absorbing cotton circles.
[0019] Further, the disinfecting component comprises a steam generating module and an alcohol storage tank mounted on the water tank, two symmetrical spray pipes are mounted on the cooling frame, a group of spray holes are formed on the two spray pipes and face the cooling bag, the steam outlet port of the steam generating module is in communication with the inner cavity of one of the spray pipes, and the alcohol storage tank is in communication with a pump body, and the liquid outlet port of the pump body is in communication with the inner cavity of the other spray pipe.
[0020] The beneficial effect of the above further scheme is that before and after the cooling bag is used, the steam generating module generates high-temperature steam, the cooling bag reciprocates within a set stroke, and after the steam generating module generates high-temperature steam, high-temperature disinfection and sterilization of the cooling bag are achieved, and after sterilization is completed, the alcohol storage tank uniformly sprays alcohol onto the surface of the cooling bag to maintain a low bacterial count on the surface of the cooling bag.
[0021] Further, the profiled pressing component comprises a profiled pressing bag mounted between the two deformation frames, the profiled pressing bag is arranged between the two deformation rollers, and a gas pump is mounted on the back of the cooling frame and is in communication with the inner cavity of the profiled pressing bag through a gas guide hose.
[0022] Further, the profiled pressing bag and the cooling bag are both made of silica gel, and a group of casters are mounted on the bottom surface of the water tank.
[0023] The beneficial effect of the above further scheme is that when the cooling bag is used, the profiled pressing bag is quantitatively pressurized, the profiled pressing bag is quantitatively pressurized to improve the profiled fitting degree of the cooling bag and the part of the patient to be cooled, and the profiled fitting degree is improved to further improve the cooling efficiency and cooling effect of the device.
[0024] The beneficial effects of the present application are:
[0025] 1、The present application can realize massage of the cold compress part during cold compress operation, and can flexibly adjust the cold compress area of the device during cold compress, so that the device is suitable for cold compress operation of different parts.
[0026] 2、When the cold compress operation is performed, the cold compress bag is attached to the part to be cooled of the patient, and after the cold compress bag is attached to the part to be cooled of the patient, the transmission motor outputs the set speed, and through the cooperation of the cam, the driven wheel and the elastic limiting piece, the cold compress frame can reciprocate in the rocker arm, and after the cold compress frame reciprocates, the attachment strength of the cold compress bag to the part to be cooled of the patient is changed, so that the massage purpose of the part to be cooled of the patient is realized during cold compress, and the cold compress comfort and efficiency of the device are improved.
[0027] 3、Before the cold compress operation of the ear-nose-throat department is performed, the distance between the two deformation frames is adjusted through the setting of the distance adjusting module, and the contact and attachment area of the cold compress bag to the part to be cooled of the patient is limited and adjusted, so that the device is suitable for cold compress operation of different parts of the ear-nose-throat department.
[0028] 4、During the cold compress operation, the cold compress bag reciprocates in the set period and the set stroke, and when the cold compress bag reciprocates, the water stains condensed on the surface of the cold compress bag are absorbed by the water-absorbing cotton, so that the condensation and precipitation rate of the water stains on the surface of the cold compress bag is reduced, and the comfort of the patient during the cold compress operation is improved.
[0029] 5、In the present application, before and after the cold compress bag is used, the steam generation module generates high-temperature steam, and the cold compress bag reciprocates in the set stroke, so that the high-temperature disinfection and sterilization of the cold compress bag are realized, and after sterilization is completed, the alcohol tank uniformly sprays alcohol on the surface of the cold compress bag to maintain the low bacterial count of the surface of the cold compress bag.
[0030] 6、The cold compress device for otolaryngology of the present application, when the cold compress bag is used, the inside of the profiled compression bag 30 is quantitatively pressurized, the profiled fit between the cold compress bag and the part of the patient to be cooled is improved through the quantitative pressurization, and the cold compress efficiency and effect of the device are further improved through the improvement of the profiled fit. BRIEF DESCRIPTION OF DRAWINGS
[0031] Figure 1 It is a whole structure schematic diagram of the cold compress device for otolaryngology of the present application;
[0032] Figure 2 It is a whole structure schematic diagram of the cold compress device for otolaryngology of the present application; Figure 1 It is a structure schematic diagram of another angle;
[0033] Figure 3 It is a structure schematic diagram of the rocker arm and the cold compress frame of the present application;
[0034] Figure 4 It is a structure schematic diagram of the winding motor and the deformation frame of the present application;
[0035] Figure 5 It is a structure schematic diagram of the cold compress device for otolaryngology of the present application; Figure 4 It is a local enlarged structure schematic diagram of A in the present application;
[0036] Figure 6 It is a structure schematic diagram of the water absorbing cotton and the deformation roller of the present application;
[0037] Figure 7 It is a structure schematic diagram of the water absorbing roller and the winding roller of the present application;
[0038] Figure 8 It is a cross-sectional structure schematic diagram of the water absorbing cotton of the present application.
[0039] In the drawings, the components represented by each reference numeral are listed as follows:
[0040] 1, water tank; 2, support; 3, rocker arm; 4, cold compress frame; 5, winding roller; 6, winding motor; 7, cold compress bag; 8, motor; 9, deformation roller; 10, transmission motor; 11, cam; 12, elastic limiting piece; 13, slow pressure seat; 14, slow pressure spring; 15, driven wheel; 16, deformation frame; 17, refrigeration module; 18, liquid outlet pump; 19, liquid return pump; 20, temperature probe; 21, single-chip microcomputer; 22, air cooler; 23, water absorbing roller; 24, water absorbing cotton; 25, air-drying flow channel; 26, three-way hose; 27, steam generation module; 28, alcohol storage tank; 29, spray pipe; 30, profiled compression bag; 31, air pump; 32, air guide hose; 33, caster; 34, multi-section electric crank arm module; 35, corrugated conduit. DETAILED DESCRIPTION
[0041] The principles and features of the present invention are described below with reference to the accompanying drawings. The examples given are only for explaining the present invention and are not intended to limit the scope of the present invention.
[0042] The present invention provides the following preferred embodiments.
[0043] like Figures 1-8 As shown, a cold compress device for otolaryngology includes a water tank 1, a set of casters 33 installed on the bottom surface of the water tank 1, a refrigeration circulation component and a bracket 2 installed on the top surface of the water tank 1, a multi-section electric curved arm module 34 installed on the bracket 2, and a rocker arm 3 with adjustable spatial position and spatial angle connected to the multi-section electric curved arm module 34.
[0044] The multi-section electric articulated boom module 34 is a commonly used component in the prior art, and will not be described in detail here;
[0045] A reciprocating massage component is installed on the rocker arm 3, and a cooling rack 4 that can reciprocate along the rocker arm 3 is connected to the reciprocating massage component.
[0046] The reciprocating massage assembly includes a drive motor 10 mounted on a rocker arm 3. A cam 11 is mounted on the output shaft end of the drive motor 10. The cooling frame 4 is slidably connected to the rocker arm 3. Two symmetrically arranged elastic limiting members 12 are installed between the cooling frame 4 and the rocker arm 3. A pressure-relieving seat 13 is slidably connected to the cooling frame 4. A pressure-relieving spring 14, which is limited by the cooling frame 4, is fixedly installed on the bottom surface of the pressure-relieving seat 13. A driven wheel 15 is rotatably connected to the pressure-relieving seat 13. The driven wheel 15 is adapted to and connected to the cam 11.
[0047] When performing a cold compress, the cold compress 7 is in contact with the patient's area to be cooled. After the cold compress 7 is in contact with the patient's area to be cooled, the drive motor 10 outputs a speed at a set power. After the drive motor 10 outputs a speed, through the cooperation of the cam 11, the driven wheel 15 and the elastic limiter 12, the cold compress frame 4 can move back and forth in the rocker arm 3. After the cold compress frame 4 moves back and forth, it then changes the contact strength between the cold compress 7 and the patient's area to be cooled. By changing the contact strength between the cold compress 7 and the patient's area to be cooled, the purpose of massaging the patient's area to be cooled can be achieved simultaneously during the cold compress.
[0048] This is achieved through massage, thereby effectively improving the comfort and efficiency of the cold compress.
[0049] Meanwhile, the pressure relief seat 13 and pressure relief spring 14 ensure that the pressure applied by the cold compress 7 to the cold compress area is maintained within a safe range, and prevent the cold compress 7 from injuring the cold compress area during the cold compress operation, thereby effectively improving the safety of the cold compress device during the cold compress operation.
[0050] Two rollers 5 are rotatably connected between the inner surfaces of the cold compress frame 4. Two winding motors 6 are installed on the cold compress frame 4. The output shafts of the two winding motors 6 are respectively connected to the two rollers 5. A cold compress bag 7 is wound between the two rollers 5. The inner cavity of the cold compress bag 7 is connected to the refrigeration circulation component.
[0051] The refrigeration cycle component includes a liquid storage chamber inside the water tank 1. A refrigeration module 17 that cooperates with the liquid storage chamber is installed on the water tank 1. A liquid outlet pump 18 and a liquid return pump 19 are installed on the water tank 1. The liquid suction port of the liquid outlet pump 18 and the liquid outlet port of the liquid return pump 19 are both connected to the liquid storage chamber. The other end of the liquid outlet pump 18 and the liquid return pump 19 are both connected to a corrugated conduit 35. A guide cavity is opened inside the two rollers 5. The two guide cavities are both connected to the inner cavity of the cold compress bag 7.
[0052] The refrigeration cycle component also includes temperature probes 20 installed on the liquid storage chamber and the corrugated conduit 35. A microcontroller 21 is installed on the end face of the water tank 1, and the data terminals of the two temperature probes 20 are connected to the microcontroller 21.
[0053] During the cold compress operation, the cold compress 7 moves back and forth within a set cycle and a set stroke, thereby repeatedly changing the application area of the cold compress 7. By using the cyclic switching of the area, the low temperature of the cold compress 7 is maintained. During the cold compress operation, the temperature of the liquid storage chamber and the inner cavity of the cold compress 7 is maintained at the set low temperature by setting multiple temperature probes 20 and setting the cooling module 17, so that the cold compress operation can be performed.
[0054] Furthermore, during the cold compress operation, the cold compress liquid is circulated in the inner cavity of the cold compress bladder 7 by setting the liquid outlet pump 18 and the liquid return pump 19, thereby achieving the circulating water cooling effect of the cold compress bladder 7.
[0055] The cold compress frame 4 is equipped with an adjustment module, on which two symmetrically arranged and adjustable-spaced deformable rollers 9 are rotatably mounted. Both deformable rollers 9 are connected to the cold compress bag 7.
[0056] The adjustment module includes an adjusting screw rotatably connected between the inner surfaces of the cooling frame 4. A motor 8 is mounted on the side of the cooling frame 4. The output shaft of the motor 8 is fixedly connected to the adjusting screw. The adjusting screw is symmetrically provided with a positive thread and a negative thread. Both the positive thread and the negative thread are connected to a deformation frame 16. Both deformation frames 16 are slidably connected to the cooling frame 4. Two deformation rollers 9 are rotatably mounted on the two deformation frames 16 respectively.
[0057] Before performing cold compress in ENT, the distance between the two deformable frames 16 can be adjusted by setting the distance adjustment module. By adjusting the distance between the two deformable frames 16, the contact and contact area between the cold compress bag 7 and the patient's part to be cold compressed can be limited and adjusted, thereby making the device suitable for cold compress operations on different body parts in ENT.
[0058] The device is mainly suitable for cold compress of ear, nose, face and neck during treatment in otolaryngology department.
[0059] The cold compress frame 4 is respectively provided with a water removing component for removing water on the surface of the cold compress bag 7, a disinfecting component for disinfecting the surface of the cold compress bag 7 by ultraviolet and alcohol, and a profiling pressure applying component for profiling pressure applying to the cold compress bag 7.
[0060] The water removing component comprises a cold air fan 22 installed on the water tank 1 and two water absorbing rollers 23 rotatably connected to the cold compress frame 4, and each of the two water absorbing rollers 23 is provided with a water absorbing tampon 24 which is attached to the cold compress bag 7, and the water absorbing roller 23 is provided with a wind-drying flow channel 25 in the inside thereof, and a plurality of air-permeable holes 36 are formed in the water absorbing roller 23 and each of the air-permeable holes 36 is in communication with the wind-drying flow channel 25, and the cold air fan 22 is provided with a three-way hose 26 in communication with the wind-drying flow channels 25 of the two water absorbing rollers 23.
[0061] During cold compress operation, the cold compress bag 7 reciprocally moves within a set period and a set stroke, and when the cold compress bag 7 reciprocally moves, the water stains condensed on the surface of the cold compress bag 7 are absorbed by the water absorbing tampon 24 to reduce the condensation and precipitation rate of the water stains on the surface of the cold compress bag 7, thereby improving the comfort of the patient during cold compress operation, and at the same time, the cold air fan 22 is periodically operated during cold compress operation to realize the wind-drying of the water absorbing tampon 24 by sending cold air, and the high water absorption rate and high water removing effect of the water absorbing tampon 24 are maintained by realizing the wind-drying effect of the water absorbing tampon 24.
[0062] The disinfecting component comprises a steam generating module 27 and an alcohol storage tank 28 installed on the water tank 1, and the cold compress frame 4 is provided with two symmetrical spray pipes 29, each of the two spray pipes 29 is provided with a group of spray holes facing the cold compress bag 7, the steam generating module 27 is in communication with the inner cavity of one spray pipe 29 through the steam outlet port thereof, and the alcohol storage tank 28 is provided with a pump body in communication with the inner cavity of the other spray pipe 29 through the liquid outlet port thereof.
[0063] Before and after the cold compress bag 7 is used, the steam generating module 27 generates high-temperature steam, and the cold compress bag 7 reciprocally rotates within a set stroke, and after the steam generating module 27 generates high-temperature steam, high-temperature disinfection and sterilization of the cold compress bag 7 are realized, and after the sterilization is completed, the alcohol storage tank 28 uniformly sprays alcohol on the surface of the cold compress bag 7 to maintain a low bacterial level on the surface of the cold compress bag 7.
[0064] The profiling pressure applying component comprises a profiling pressure bag 30 installed between the two deformation frames 16, and the profiling pressure bag 30 is arranged between the two deformation rollers 9, and the back of the cold compress frame 4 is provided with an air pump 31 in communication with the inner cavity of the profiling pressure bag 30 through an air guide hose 32.
[0065] The profiled pressing capsule 30 and the cold compress capsule 7 are both made of silica gel.
[0066] The internal quantitative pressure charging of the profiled pressing capsule 30 when the cold compress capsule 7 is used, through the quantitative pressure charging, improves the profiled fitting degree of the cold compress capsule 7 and the part of the patient to be cold compressed, through the improvement of the profiled fitting degree, further improves the cold compress efficiency and the cold compress effect of the device.
[0067] The above only describes the preferred embodiments of the present application and is not used to limit the present application, any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application should be included in the protection scope of the present application.
Claims
1. An ear-nose-laryngology cold compress device comprising a water tank (1), characterized in that, The top surface of the water tank (1) is provided with refrigeration cycle components and a support (2), a plurality of electric curved arm modules (34) are installed on the support (2), space position and space angle adjustable rocker arms (3) are connected to the plurality of electric curved arm modules (34), reciprocating massage assemblies are installed on the rocker arms (3), cold compress frames (4) capable of reciprocating along the rocker arms (3) are connected to the reciprocating massage assemblies, two winding rollers (5) are rotatably connected between the inner surfaces of the cold compress frames (4), two winding motors (6) are installed on the cold compress frames (4), the output shaft ends of the two winding motors (6) are in transmission connection with the two winding rollers (5) respectively, and cold compress capsules (7) are wound between the two winding rollers (5); the inner cavities of the cold compress capsules (7) are in communication with the refrigeration cycle components, pitch adjusting modules are installed on the cold compress frames (4), two symmetrically arranged and pitch adjustable deformation rollers (9) are rotatably installed on the pitch adjusting modules, and the two deformation rollers (9) are connected with the cold compress capsules (7); water removing components for removing water on the surfaces of the cold compress capsules (7), disinfecting components for ultraviolet and alcohol disinfection on the surfaces of the cold compress capsules (7), and profiling pressure applying components for profiling pressure application on the cold compress capsules (7) are respectively installed on the cold compress frames (4); the pitch adjusting module comprises an adjusting screw rod rotatably connected between the inner surfaces of the cold compress frames (4), a motor (8) is installed on the side surface of the cold compress frame (4), the output shaft end of the motor (8) is fixedly connected with the adjusting screw rod, a right screw thread part and a reverse screw thread part are symmetrically arranged on the adjusting screw rod, deformation frames (16) are in transmission connection with the right screw thread part and the reverse screw thread part respectively, the two deformation frames (16) are in sliding connection with the cold compress frame (4), the two deformation rollers (9) are rotatably installed on the two deformation frames (16) respectively, the contact area of the cold compress capsule (7) and the cold compress part is limited and adjusted through the pitch adjustment between the two deformation frames (16); the refrigeration cycle components comprise a liquid storage cavity formed in the water tank (1), a refrigeration module (17) matched with the liquid storage cavity is installed on the water tank (1), a liquid outlet pump (18) and a liquid return pump (19) are respectively installed on the water tank (1), the liquid suction port of the liquid outlet pump (18) and the liquid outlet port of the liquid return pump (19) are in communication with the liquid storage cavity, corrugated pipes (35) are in communication with the other ends of the liquid outlet pump (18) and the liquid return pump (19) respectively, flow guide cavities are formed in the interiors of the two winding rollers (5), and the two flow guide cavities are in communication with the inner cavities of the cold compress capsules (7).The water removing component comprises a cooling fan (22) installed on the water tank (1), two water absorbing rollers (23) rotatably connected to the cooling rack (4), water absorbing cotton circles (24) installed on the two water absorbing rollers (23), the water absorbing cotton circles (24) being attached to the cooling bag (7), a drying flow channel (25) formed in the water absorbing roller (23), a plurality of groups of air permeable holes (36) formed on the water absorbing roller (23), each air permeable hole (36) being in communication with the drying flow channel (25), and a three-way hose (26) in communication with an air outlet of the cooling fan (22).
2. The cold compress device for otolaryngology according to claim 1, characterized in that, The reciprocating massage assembly comprises a transmission motor (10) mounted on a rocker arm (3), a cam (11) is mounted at an output shaft end of the transmission motor (10), the cold compress frame (4) is in sliding connection with the rocker arm (3), two symmetrically arranged elastic limit members (12) are mounted between the cold compress frame (4) and the rocker arm (3), a slow pressure seat (13) is in sliding connection with the cold compress frame (4), slow pressure springs (14) limited by the cold compress frame (4) are fixedly mounted on a bottom surface of the slow pressure seat (13), a driven wheel (15) is rotatably connected to the slow pressure seat (13), and the driven wheel (15) is in adaptive connection with the cam (11).
3. The cold compress device for otolaryngology according to claim 2, characterized in that, The other two ends of the three-way hose (26) are in rotational communication with air-drying flow channels (25) on two water absorption rollers (23) respectively.
4. The cold compress device for otolaryngology according to claim 2, characterized in that, The refrigeration cycle component further comprises temperature probes (20) mounted on the liquid storage cavity and the corrugated conduit (35), and a single-chip microcomputer (21) is mounted on an end surface of the water tank (1), and data terminals of the two temperature probes (20) are in data connection with the single-chip microcomputer (21).
5. The cold compress device for otolaryngology according to claim 2, wherein The disinfection component comprises a steam generation module (27) and an alcohol storage tank (28) mounted on the water tank (1), and two symmetrically arranged spray pipes (29) are mounted on the cold compress frame (4).
6. The cold compress device for otolaryngology according to claim 5, characterized in that, A group of spray holes opposite to the cold compress sac (7) are formed in the two spray pipes (29), a steam outlet port of the steam generation module (27) is in communication with an inner cavity of one of the spray pipes (29), and a pump body is in communication with the alcohol storage tank (28), and a liquid outlet port of the pump body is in communication with an inner cavity of the other spray pipe (29).
7. The cold compress device for otolaryngology according to claim 2, characterized in that, The profiled pressure applying component comprises a profiled pressure sac (30) mounted between two deformation frames (16), the profiled pressure sac (30) is arranged between two deformation rollers (9), an air pump (31) is mounted on a back surface of the cold compress frame (4), and a port of the air pump (31) is in communication with an inner cavity of the profiled pressure sac (30) through an air guide hose (32).
8. The cold compress device for otolaryngology according to claim 7, characterized in that, The profiled pressure sac (30) and the cold compress sac (7) are both made of silica gel, and a group of casters (33) are mounted on a bottom surface of the water tank (1).
Citation Information
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