A hyperthermia apparatus
By designing a suspension rail assembly and proximity switches, the problem of accurate positioning of the hyperthermia equipment after it has been moved into place has been solved, enabling multi-directional adjustment and automatic limiting of the machine head, thus improving the effectiveness and lifespan of the equipment.
Patent Information
- Application Number
- CN202210297408.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-03-24
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2042-03-24
AI Technical Summary
Existing hyperthermia equipment is difficult to position accurately after being moved into place, resulting in poor efficacy.
A thermotherapy device was designed, comprising a suspension mechanism, a head unit, and a suspension base. The suspension slide rail assembly drives the head unit to rise and fall, and the suspension base moves back and forth along the slide rail of the thermotherapy machine. The device is automatically limited by sensing the end of the slide rail through a proximity switch.
It enables multi-directional adjustment of the machine head, improves the therapeutic effect, avoids structural damage, and extends the service life of the equipment.
Smart Images

Figure CN114522346B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of hyperthermia machine, in particular to a hyperthermia equipment. BACKGROUND
[0002] At present, human body physiotherapy can be seen everywhere, and the demand for hyperthermia equipment is also increasing. Therefore, the design of the hyperthermia equipment is also more and more important. In the process of moving the existing hyperthermia equipment with the machine head, it is difficult to accurately position after moving to the position, and the use effect is poor. SUMMARY
[0003] The purpose of the present application is to provide a hyperthermia equipment to solve the problems existing in the prior art, which can automatically limit after moving to the position, and improve the use effect.
[0004] To achieve the above purpose, the present application provides the following scheme:
[0005] The present application provides a kind of hyperthermia equipment, including suspension mechanism, machine head and suspension base, the lower end of the suspension mechanism is installed on the suspension base, the machine head is installed on the suspension mechanism, and suspension slide rail assembly is arranged in the suspension mechanism, the suspension slide rail assembly can drive machine head to lift, the suspension base is used to be connected with hyperthermia machine slide rail, and can reciprocatingly move along the length direction of the hyperthermia machine slide rail, to drive the machine head reciprocatingly move, the two sides of the suspension base are equipped with proximity switch, the proximity switch is used to induct with the two ends of hyperthermia machine slide rail, and controls the travel of the suspension base.
[0006] Preferably, the suspension base includes a suspension bottom plate, a bottom base travel mechanism and a base power supply mechanism, the upper end of the suspension bottom plate is used to connect with the lower end of the suspension mechanism, the bottom base travel mechanism and the base power supply mechanism are both installed on the lower end of the suspension bottom plate, and the outer edge of the suspension bottom plate is used to connect with the conveying belt in the hyperthermia machine slide rail, the bottom base travel mechanism is used to drive the suspension bottom plate to move, and make the suspension bottom plate drive the conveying belt in the hyperthermia machine slide rail to move, realize that the suspension bottom plate drives the suspension mechanism reciprocatingly move, the base power supply mechanism is electrically connected with the bottom base travel mechanism, and is used to power the bottom base travel mechanism.
[0007] Preferably, the suspension base is a rectangular plate, the middle part of the suspension base is also provided with a wire harness inlet and outlet, the wire harness inlet and outlet are used for the entry and export of electric wire, the bottom base travel mechanism is two groups, and the two groups of bottom base travel mechanisms are respectively installed on the opposite sides of the suspension base, the base power supply mechanism is two groups, and the two groups of base power supply mechanisms are respectively installed on the other two sides of the suspension base.
[0008] Preferably, the bottom walking mechanism comprises a driving motor, a walking reduction box, two connecting pipes, two transmission shafts and two transmission pulleys, the driving motor is connected with the walking reduction box, two output shafts of the walking reduction box are coaxial and connected with one end of the two transmission shafts respectively, the other end of the transmission shaft is connected with one of the transmission pulleys correspondingly, the connecting pipe is sleeved on the outer periphery of the transmission shaft and does not contact with the transmission shaft, the driving motor can drive the transmission pulley to walk in the slide rail of the thermotherapy machine when rotating; a walking mounting seat is installed on the position close to each transmission pulley at the lower end of the suspension base, and the walking mounting seat is connected with the connecting pipe.
[0009] Preferably, a circuit mounting seat is installed at the position corresponding to each bottom power supply mechanism at the lower end of the suspension base; the bottom power supply mechanism comprises an electrical mounting support frame, two proximity switches and a plurality of bottom power supply components, one side of the circuit mounting seat is connected with the electrical mounting support frame, the electrical mounting support frame is cross-shaped, the electrical mounting support frame comprises a transverse frame and a longitudinal frame perpendicular to each other, the longitudinal frame is used for mounting the bottom power supply component, the bottom power supply component is used for conduction with the slide rail power supply component on the slide rail of the thermotherapy machine, and the two ends of the transverse frame are respectively provided with one of the proximity switches, the proximity switches are used for sensing the two ends of the slide rail of the thermotherapy machine and controlling the walking of the bottom walking mechanism.
[0010] Preferably, the bottom power supply component comprises a bottom terminal post, a bottom tension spring and a bottom power supply contact, a plurality of bottom power supply holes arranged in the vertical direction are formed in the longitudinal frame, the bottom terminal post is installed in the bottom power supply hole, one end of the bottom terminal post away from the slide rail of the thermotherapy machine is used for connecting the electric wire, and the other end of the bottom terminal post is abutted with the bottom power supply contact through the bottom tension spring, one end of the bottom power supply contact away from the bottom terminal post is used for conduction with the slide rail power supply component of the slide rail of the thermotherapy machine.
[0011] Preferably, the suspension mechanism comprises a suspension shell, a suspension slide rail component and a suspension arm, the lower end of the suspension shell is installed on the suspension base and can reciprocate with the suspension base, the suspension slide rail component is installed in the suspension shell and is perpendicular to the horizontal plane, the suspension arm is slidingly connected on the suspension slide rail component and can reciprocate along the length direction of the suspension slide rail component, and the suspension arm is provided with a rotating component, the rotating component is connected with the machine head and can drive the machine head to overturn.
[0012] Preferably, the head comprises a head shell, a heat dissipation mechanism, a power supply, an electronic emitter, a distance measuring sensor and a temperature sensor, the power supply, the heat dissipation mechanism and the electronic emitter are all installed in the head shell, the heat dissipation mechanism is used for dissipating heat for the power supply and the electronic emitter, the power supply is used for supplying power to the electronic emitter, the electronic emitter is used for emitting electromagnetic wave signals, the distance measuring sensor and the temperature sensor are both installed in the head shell and can extend out through the lower end of the head shell, the distance measuring sensor is used for measuring the distance between the lower end of the head shell and the human body, and the temperature sensor is used for detecting the temperature below the electronic emitter.
[0013] Preferably, the head shell comprises a hanging buckle plate, the hanging buckle plate is in the shape of a door, and the hanging buckle plate can be hung from top to bottom on one side of the suspension mechanism.
[0014] The present application has the following technical effects relative to the prior art:
[0015] The heat therapy equipment provided by the present application is characterized in that the suspension mechanism is provided with a suspension sliding rail assembly, the suspension sliding rail assembly can drive the head to ascend and descend, the suspension base is used for being connected with the sliding rail of the heat therapy machine and can reciprocate along the length direction of the sliding rail of the heat therapy machine to drive the head to reciprocate, through the reciprocation of the suspension base in the sliding rail of the heat therapy machine, the suspension mechanism and the head are driven to move in the horizontal direction, and at the same time, the suspension sliding rail assembly is used to realize the ascending and descending of the head to drive the head to move in the vertical direction, thereby realizing the multidirectional adjustment of the head and improving the physiotherapy effect; the two sides of the suspension base are provided with proximity switches, the proximity switches are used for sensing the two ends of the sliding rail of the heat therapy machine and controlling the running of the suspension base, thereby realizing that after the suspension base moves to the end of the sliding rail of the heat therapy machine, the proximity switches automatically sense and stop running, so as to avoid causing damage to the structure and affecting the overall service life. BRIEF DESCRIPTION OF DRAWINGS
[0016] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings needed to be used in the embodiments. Obviously, the drawings in the following description only some embodiments of the present application, and for those skilled in the art, other drawings can also be obtained without creative labor on the basis of these drawings.
[0017] Figure 1 is a structural schematic view of the heat therapy equipment provided by the present application;
[0018] Figure 2 is a connection schematic view of the heat therapy equipment and the sliding rail of the heat therapy machine provided by the present application;
[0019] Figure 3 is a schematic view of the heat therapy equipment provided by the present application without installing the cantilever and the head;
[0020] Figure 4 This is a schematic diagram of the structure of the suspension base in this invention;
[0021] Figure 5 This is a schematic diagram of the base walking mechanism and the base power supply mechanism in this invention;
[0022] Figure 6 This is a schematic diagram of the disassembly of the base walking mechanism in this invention;
[0023] Figure 7 This is a schematic diagram of the cantilever structure in this invention;
[0024] Figure 8 This is a schematic diagram of the structure of the machine head in this invention;
[0025] In the diagram: 100-Heat therapy equipment, 200-Heat therapy machine slide rail, 201-Conveyor belt, 1-Suspension mechanism, 2-Cantilever, 3-Machine head, 4-Suspension base, 5-Suspension base plate, 6-Base walking mechanism, 7-Base power supply mechanism, 8-Walking mounting seat, 9-Drive motor, 10-Walking gearbox, 11-Connecting pipe, 12-Transmission pulley, 13-Circuit mounting seat, 14-Electrical installation support frame, 15-Horizontal frame, 16-Vertical frame, 17-Base power supply assembly, 18-Proximity switch, 19-Suspension slide rail assembly, 20-Ventilation and heat dissipation top cover, 21-Power supply cooling fan, 22-Top cover connecting frame, 23-Positioning baffle, 24-Power supply, 25-Power supply mounting plate, 26-Hanging plate, 27-Machine head circuit mounting rear plate, 28- Left side panel, 29-Secondary fan shroud, 30-Axial flow cooling fan, 31-Primary fan shroud, 32-Radiator head, 33-Shielding baffle, 34-Mounting ring plate, 35-Distance sensor, 36-Temperature sensor, 37-Waveguide, 38-Waveguide pressure plate, 39-Electronic transmitter, 40-Thermal switch, 41-Front panel, 42-Right side panel, 43-Connecting buckle, 44-Suspension mounting plate, 45-Suspension connecting plate, 46-Rotary motor mounting base, 47-Rotary motor, 48-Rotary gearbox, 49-Cantilever housing, 50-Display screen, 51-Connecting mounting plate, 52-Insulated positioning plate, 53-Conductive wire reel, 54-Insulated plate, 55-Rotary disk assembly, 56-Rotary disk, 57-Head connecting plate, 58-Drive shaft. Detailed Implementation
[0026] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0027] The present application aims to provide a hyperthermia device to solve the technical problems that the existing hyperthermia device cannot automatically limit position and has poor use effect.
[0028] In order to make the above-mentioned objectives, characteristics and advantages of the present application more apparent, further detailed description will be given below in combination with the drawings and specific embodiments.
[0029] As shown in the drawings, Figures 1-8 The present application provides a hyperthermia device 100, which comprises a suspension mechanism 1, a handpiece 3 and a suspension base 4, the lower end of the suspension mechanism 1 is installed on the suspension base 4, the handpiece 3 is installed on the suspension mechanism 1, and the suspension mechanism 1 is provided with a suspension slide rail assembly 19, which can drive the handpiece 3 to lift, the suspension base 4 is used to connect with the hyperthermia machine slide rail 200 and can reciprocate along the length direction of the hyperthermia machine slide rail 200 to drive the handpiece 3 to reciprocate through the reciprocating movement of the suspension base 4 in the hyperthermia machine slide rail 200, drive the suspension mechanism 1 and the handpiece 3 to move in the horizontal direction, and at the same time, realize the lifting of the handpiece 3 by using the suspension slide rail assembly 19 to drive the handpiece 3 to move in the vertical direction, thereby realizing the multidirectional adjustment of the handpiece 3 and improving the physiotherapy effect; the suspension base 4 is provided with proximity switches 18 on both sides, which are used to sense the two ends of the hyperthermia machine slide rail 200 and control the running of the suspension base 4, thereby realizing the automatic sensing and stopping of the running of the suspension base 4 after moving to the end of the hyperthermia machine slide rail 200, avoiding the damage of the structure and affecting the overall service life.
[0030] Specifically, the suspension base 4 comprises a suspension base plate 5, a base running mechanism 6 and a base power supply mechanism 7, the upper end of the suspension base plate 5 is used to connect with the lower end of the suspension mechanism 1, thereby facilitating the reciprocating movement of the suspension mechanism 1, the base running mechanism 6 and the base power supply mechanism 7 are both installed on the lower end of the suspension base plate 5 to drive the suspension base plate 5 to run and conduct the circuit of the suspension mechanism 1, the outer edge of the suspension base plate 5 is used to connect with the conveyor belt 201 in the hyperthermia machine slide rail 200, the hyperthermia machine slide rail 200 is provided with the conveyor belt 201, and the conveyor belt 201 is not a closed ring, the two ends of which are connected with the two ends of the suspension base plate 5, the base running mechanism 6 is slidably connected with the track in the hyperthermia machine slide rail 200, thereby driving the conveyor belt 201 to rotate within a certain stroke when the base running mechanism 6 slides along the track, realizing the reciprocating movement of the suspension base plate 5 in the hyperthermia machine slide rail 200, and the conveyor belt 201 plays a role in closing the upper end surface of the hyperthermia machine slide rail 200, the base power supply mechanism 7 is electrically connected with the base running mechanism 6 and is used to supply power to the base running mechanism 6 to realize the running function.
[0031] As shown in the drawings, Figure 4As shown, the suspension base 4 is a rectangular plate, and a wire harness inlet and outlet is further formed in the middle of the suspension base 4, which is used for the entry and exit of the electric wire to realize the electric conduction. The base traveling mechanism 6 is two groups, and the two groups of base traveling mechanisms 6 are respectively installed on the opposite two sides of the suspension base 4. The base power supply mechanism 7 is also two groups, and the two groups of base power supply mechanisms 7 are respectively installed on the other two sides of the suspension base 4, to ensure the overall stability.
[0032] As shown, Figures 4-5 The base traveling mechanism 6 includes a driving motor 9, a traveling reduction box 10, two connecting pipes 11, two transmission shafts 58 and two transmission pulleys 12. The driving motor 9 is connected with the traveling reduction box 10. The two output shafts of the traveling reduction box 10 are coaxial and are respectively connected with one end of the two transmission shafts 58. The other end of the transmission shaft 58 is correspondingly connected with one transmission pulley 12. The connecting pipe 11 is sleeved on the outer periphery of the transmission shaft 58 and does not contact the transmission shaft 58, so as to avoid the influence of the connecting pipe 11 on the rotation of the transmission shaft 58. When the driving motor 9 rotates, the transmission pulley 12 can walk in the hyperthermia machine slide rail 200, and each transmission pulley 12 rotates synchronously and in the same direction, so as to ensure stable walking. A walking mounting seat 8 is installed on the suspension base 4 at the position close to each transmission pulley 12. The walking mounting seat 8 is connected with the connecting pipe 11, which can ensure the installation of the base traveling mechanism 6 and avoid affecting the rotation of the base traveling mechanism 6.
[0033] A circuit mounting seat 13 is installed on the suspension base 4 at the position corresponding to each base power supply mechanism 7, so as to realize the connection between the suspension base 4 and the base power supply mechanism 7. The base power supply mechanism 7 includes an electrical installation support frame 14, two proximity switches 18 and a plurality of base power supply components 17. One side of the circuit mounting seat 13 is connected with the electrical installation support frame 14. The electrical installation support frame 14 is cross-shaped and includes a transverse frame 15 and a longitudinal frame 16 which are perpendicular to each other. The middle of the transverse frame 15 intersects with the middle of the longitudinal frame 16. The longitudinal frame 16 is used for installing the base power supply component 17. The base power supply component 17 is used for conduction with the slide rail power supply component on the hyperthermia machine slide rail 200. One proximity switch 18 is installed on each end of the transverse frame 15. The proximity switch 18 is used for sensing the two ends of the hyperthermia machine slide rail 200 and controlling the walking of the base traveling mechanism 6. The two ends of the hyperthermia machine slide rail 200 are provided with magnetic members. When the proximity switch 18 is close to the magnetic member, the proximity switch 18 and the magnetic member will interact with each other, so that the control system can obtain the position information of the suspension base 4. That is, when the suspension base 4 moves to the position close to a magnetic member of any proximity switch 18, the driving motor 9 stops rotating to avoid damage caused by continuous operation.
[0034] The base power supply assembly 17 comprises a base terminal post, a base tension spring and a base power supply contact, the longitudinal frame 16 is provided with a plurality of base power supply holes arranged in the vertical direction, the base terminal post is installed in the base power supply hole, and the end of the base terminal post away from the heat therapy machine slide rail 200 is used for connecting the electric wire, preferably welding the electric wire at the base power supply hole, the other end of the base terminal post abuts against the base power supply contact through the base tension spring, so that the base tension spring is always in a compressed state, the base power supply contact and the base terminal post are always in a conduction state, the disconnection of the circuit caused by the disconnection of the contact during use is avoided, the use is affected, and the end of the base power supply contact away from the base terminal post is used for conduction with the slide rail power supply assembly of the heat therapy machine slide rail 200.
[0035] As shown in Figure 3 and Figure 7 , the suspension mechanism 1 comprises a suspension shell, a suspension slide rail assembly 19 and a cantilever arm 2, the lower end of the suspension shell is installed on the suspension base 4 and can reciprocate with the suspension base 4 to adjust the position of the machine head 3 and perform heat therapy on different parts of the human body, the suspension slide rail assembly 19 is installed in the suspension shell and is perpendicular to the horizontal plane, the cantilever arm 2 is slidably connected to the suspension slide rail assembly 19 and can reciprocate along the length direction of the suspension slide rail assembly 19 to drive the machine head 3 to rise and fall, thereby adjusting the height of the machine head 3 to meet different irradiation requirements, the cantilever arm 2 is provided with a rotating assembly for connecting the machine head 3 and driving the machine head 3 to flip, thereby irradiating the side or perineum of the human body to achieve all-around physiotherapy and improve the physiotherapy effect.
[0036] The suspension shell comprises a rear shell, a support mounting bracket and a front shell, the front shell and the rear shell are buckled to protect the internal structure, so that the motor controller and the suspension slide rail assembly 19 and other devices are not exposed, and the overall appearance is improved, the rear shell is provided with a rear accommodating cavity on one side, the support mounting bracket is installed in the rear accommodating cavity, and the support mounting bracket is used for mounting the suspension slide rail assembly 19 and the motor controller, preferably, an electrical mounting plate is fixed on one side of the support mounting bracket, and the electrical mounting plate is used for mounting the motor controller, the PLC controller and other electrical elements to control the movement of the suspension base 4 and the suspension slide rail assembly 19, the front shell is arranged on the side of the opening of the rear shell, the side wall of the front shell is provided with a long extension hole, the output end of the suspension slide rail assembly 19 for connecting the cantilever arm 2 can extend out of the rear shell through the long extension hole and be connected with the cantilever arm 2 to drive the cantilever arm 2 to rise and fall, thereby driving the machine head 3 to rise and fall through the cantilever arm 2, adjusting the machine head 3 to an appropriate height to perform heat therapy on the human body.
[0037] The rear shell is provided with a maintenance opening on the side away from the front shell, which corresponds to the position of the motor controller and other electrical elements, so as to facilitate maintenance of the electrical elements through the maintenance opening, and the maintenance opening is convenient for maintenance and does not need to disassemble the equipment. The outer side of the maintenance opening is slidably connected with a maintenance door, which is closed during normal use to avoid exposure of the electrical elements and ensure the overall aesthetic appearance. The maintenance door is provided with an electric door lock for locking or opening the maintenance door, so as to control the opening and closing of the electric door lock according to actual needs. The upper end of the maintenance door is fixed with a handle for convenient operation. After the electric door lock is opened, the maintenance door is carried by hand to move up and down to open or close the maintenance opening, thereby saving the occupied space compared with the double doors.
[0038] The outer side wall of the cantilever 2 is provided with a display screen 50 for displaying the heart rate, blood pressure and wrist temperature of the human body detected by the heat therapy bed, so as to facilitate real-time observation of the human body parameters. The maintenance door is provided with an Ethernet interface for connecting a network cable and realizing the connection and information transmission between the display screen 50 and the touch screen of the heat therapy bed. More preferably, the display screen 50 and the touch screen of the heat therapy bed can also be connected by WIFI.
[0039] The support mounting frame is fixed with a suspension slide rail mounting plate on the side close to the opening of the rear shell, which is used to install the suspension slide rail assembly 19 and make the installed suspension slide rail perpendicular to the horizontal plane. The suspension slide rail mounting plate is provided with a plurality of limiting grooves on both sides, and the inner wall of the rear shell is provided with limiting protrusions corresponding to the positions of the limiting grooves. The limiting protrusions and the limiting grooves are arranged in the vertical direction. During installation, the suspension slide rail mounting plate is pushed into the support mounting frame, and the limiting protrusions are embedded in the limiting grooves, so as to realize the connection between the rear shell and the support mounting frame, and improve the overall connection stability through the mutual limiting of the limiting protrusions and the limiting grooves.
[0040] The suspension slide rail assembly 19 comprises a suspension slide rail, the output end of the suspension slide rail is fixed with a slide plate on both sides in the horizontal direction, both slide plates are detachably installed on a suspension mounting plate, and both slide plates are arranged close to both ends of the suspension mounting plate, that is, both slide plates are installed on both ends of the same side of the suspension mounting plate, a power passing mounting plate is detachably installed on the suspension mounting plate in a position corresponding to each slide plate, and the power passing mounting plate is installed on the side of the suspension mounting plate away from the slide plate, a connecting plate is detachably installed on the side of the power passing mounting plate away from the suspension mounting plate, the power passing mounting plate is L-shaped, and the opening faces the side away from the slide plate, so that the connecting plate is installed between the two power passing mounting plates, the side of the two power passing mounting plates away from the suspension mounting plate can protrude from the connecting plate and extend out of the front shell through the long slot, thereby facilitating the connection of the cantilever 2, a plurality of first power passing installation holes are formed on the side of each power passing mounting plate protruding from the connecting plate, a first insulating sleeve is installed in each first power passing installation hole, a plurality of first wire holes are formed in the first insulating sleeve, and a first wire column is installed in each first wire hole, the first insulating sleeve is arranged to improve safety, and the first wire column is connected to external power to supply power to each electrical element, one end of the first wire column away from the first insulating sleeve abuts one end of a first compression spring, the other end of the first compression spring abuts a first power passing contact, the first compression spring is always in a compressed state, ensuring that the first wire column and the first power passing contact always maintain stable contact and are connected, realizing the conduction of the circuit, the first power passing contact is used to connect with the power passing assembly on the outer side of the cantilever 2, thereby being used to electrify the power passing assembly on the outer side of the cantilever 2, and the power passing assembly on the outer side of the cantilever 2 is connected with the power passing assembly inside the cantilever 2.
[0041] The side of each power passing mounting plate protruding from the connecting plate is detachably connected with the same cantilever mounting frame, and the two power passing mounting plates are arranged close to both ends of the cantilever mounting frame, thereby stably connecting the power passing mounting plate with the cantilever mounting frame, facilitating the subsequent installation of the cantilever 2, a second power passing installation hole is formed in a position of the cantilever mounting frame corresponding to each first power passing installation hole, a second insulating sleeve is installed in each second power passing installation hole, a plurality of second wire holes are formed in the second insulating sleeve, and a second wire column is installed in each second wire hole, and each second wire column is in conduction with the corresponding first wire column, realizing the conduction of the circuit, and at the same time, the second insulating sleeve is arranged to improve safety, a buckling insulating sleeve is further arranged on the side of each second insulating sleeve away from the cantilever mounting frame, a buckling wire hole is formed in the buckling insulating sleeve in a position corresponding to each second wire column, one end of the second wire column can extend into the buckling wire hole and be used to connect with the power passing assembly inside the cantilever 2, realizing the electrification of the power passing assembly inside the cantilever 2, and at the same time, the buckling insulating sleeve realizes the connection and protection functions.
[0042] The cantilever mounting frame is provided with two hanging long grooves, each of which is fixed with a hanging male mounting plate, the hanging male mounting plate protrudes from the hanging long groove on the side away from the cantilever mounting frame, and two hanging female mounting plates 44 are mounted on the cantilever 2 on the side close to the cantilever mounting frame, one hanging female mounting plate 44 corresponds to one hanging male mounting plate, and the hanging female mounting plate 44 is provided with a one-end-opened hanging groove, when mounting, the cantilever 2 is hung and buckled from the upper end of the cantilever mounting frame downward, at the same time, the hanging groove on the hanging female mounting plate 44 is sleeved into the protruding part of the hanging male mounting plate, realizing the preliminary connection of the cantilever mounting frame and the cantilever 2.
[0043] The cantilever 2 comprises a hanging connecting plate 45, a cantilever shell 49, a rotating assembly, and a connecting mounting disc 51, an insulating positioning disc 52, a conductive wire disc 53, an insulating disc 54, a rotating disc combination 55, a rotating disc 56 and a handpiece connecting plate 57 connected in sequence, wherein the rotating assembly comprises a rotating motor mounting seat 46, a rotating motor 47, a rotating speed reducer 48 and a rotating proximity switch, the hanging female mounting plate 44 is mounted on one side of the hanging connecting plate 45, preferably connected by bolts or pins, the hanging connecting plate 45 is mounted on one side of the cantilever shell 49 and blocks one end of the cantilever shell 49, and a hole for wire harness passing through is formed in the middle of the hanging connecting plate 45, one end of the rotating motor mounting seat 46 is mounted on the side of the hanging connecting plate 45 away from the hanging female mounting plate 44, the rotating motor 47 is mounted on the rotating motor mounting seat 46, realizing stable installation of the rotating motor 47, the rotating speed reducer 48 is in transmission connection with the rotating motor 47, and then the rotating motor 47 is reduced in speed through the rotating speed reducer 48, and a suitable rotating speed reducer 48 is selected according to actual needs, the connecting mounting disc 51 is mounted close to one end of the cantilever shell 49 away from the hanging connecting plate 45, and the connecting mounting disc 51 is designed as a hollow structure, facilitating heat dissipation, the output shaft of the rotating speed reducer 48 can extend through the middle of the connecting mounting disc 51, the insulating positioning disc 52, the conductive wire disc 53 and the insulating disc 54, and the output shaft of the rotating speed reducer 48 does not contact the connecting mounting disc 51, the insulating positioning disc 52, the conductive wire disc 53 and the insulating disc 54, so that the rotating speed reducer 48 can drive the rotating disc combination 55, the rotating disc 56 and the handpiece connecting plate 57 to rotate, and the output shaft of the rotating speed reducer 48 is further provided with a bearing, improving the rotation stability. At the same time, a locking screw is mounted on the end of the bearing away from the rotating speed reducer 48, a limiting washer is sleeved on the outer periphery of the locking screw, and then the overall connection stability is improved.
[0044] The auxiliary power installation hole is arranged on the suspension connecting plate 45 corresponding to each second power installation hole, and an auxiliary insulating sleeve is arranged in each auxiliary power installation hole. The auxiliary insulating sleeve plays a protective role. The third power installation hole is arranged on the connecting installation disc 51, and a third insulating sleeve is arranged in each third power installation hole. The third insulating sleeve is provided with a plurality of third wiring holes. A wire pressing screw and a third wiring column are arranged in each third wiring hole. The wire pressing screw is arranged close to the suspension connecting plate 45 and is used for pressing the wire harness. Each wire pressing screw can be connected with the corresponding second wiring column to realize the conduction of the circuit. The third wiring column is arranged close to the insulating positioning disc 52. One end of the third wiring column away from the wire pressing screw is in abutment with one end of a third compression spring. The other end of the third compression spring is in abutment with a third power contact. The third compression spring is always in a compressed state to ensure that the third wiring column and the third power contact are always in contact and conduction. This avoids the failure of the circuit conduction due to the non-contact between the third wiring column and the third power contact during the overall shaking. The third power contact is used for electrically connecting with the conductive wire disc 53. The conductive wire disc 53 is used for electrically connecting with the machine head 3, thereby electrifying the machine head 3.
[0045] The first switch limiting hole is arranged on the connecting installation disc 51. Preferably, a hollow column is fixed on one side of the middle part of the connecting installation disc 51. The first switch limiting hole is arranged on the outer wall of the hollow column. The second switch limiting hole is arranged on the insulating positioning disc 52 corresponding to each first switch limiting hole. The first switch limiting hole and the second switch limiting hole are arranged around the outer periphery of the rotary reduction box 48. A rotary proximity switch is arranged in each first switch limiting hole. One rotary proximity switch corresponds to one first switch limiting hole and one second switch limiting hole. The rotary proximity switch is fixed by the first switch limiting hole and the second switch limiting hole. This realizes the stable installation of the rotary proximity switch. Preferably, the rotary proximity switch is arranged on the proximity switch mounting block. The rotary induction piece is arranged on the output shaft of the rotary reduction box 48. The rotary induction piece can be a metal screw. With the rotation of the output shaft of the rotary reduction box 48, the corresponding metal screw can generate an induced magnetic field with the rotary proximity switch. Then, according to the actual set rotation angle required, the rotary motor 47 is controlled to stop rotating after rotating to the position, so as to ensure that the machine head 3 is located at the required illumination angle.
[0046] The insulating positioning disc 52 is provided with a threading hole corresponding to each third terminal post, the third terminal post passes through the threading hole and is in communication with a conductive connecting post on the conductive coil 53, and one threading hole corresponds to one conductive connecting post to realize the conduction of the circuit. The insulating disc 54 is provided with a threading post corresponding to each conductive connecting post, and each conductive connecting post can pass through the threading post and be in communication with a conductive piece on the rotating disc assembly 55. Each conductive piece can pass through the rotating disc 56. The part of the conductive piece extending out of the rotating disc 56 is sequentially sleeved with an insulating washer, a conductive washer and a connecting nut. The end of the connecting nut away from the conductive washer is in abutment with a fourth compression spring, and the other end of the fourth compression spring is in abutment with one end of a fourth power supply contact. The fourth compression spring is arranged to ensure the stability of the circuit conduction. The fourth power supply contact can extend into a fourth terminal hole in a fourth insulating sleeve, and the fourth insulating sleeve is compressed by the head connecting plate 57. The fourth power supply contact can pass through the head connecting plate 57 and be used for electrical connection with the head 3 to realize power supply to the head 3.
[0047] To ensure more stable connection, the first locking through hole is arranged on the lower part of the head connecting plate 57, the second locking through hole is arranged on the connecting mounting disc 51 corresponding to the first locking through hole, the locking strip is arranged on the inner wall of the cantilever shell 49 corresponding to the second locking through hole, the third locking through hole is arranged in the locking strip, the fourth locking through hole is arranged on the suspension connecting plate 45 corresponding to the third locking through hole, and the fifth locking through hole is arranged on the cantilever mounting frame corresponding to the fourth locking through hole. A special tool is used to pass the screw through the first locking through hole, the second locking through hole and the third locking through hole in sequence, and is tightened in the fourth locking through hole and the fifth locking through hole. While realizing the stable installation of the cantilever 2, it also avoids the random disassembly by other personnel.
[0048] As shown in Figure 8 The head 3 includes a head shell, a heat dissipation mechanism, a power supply 24, an electronic emitter 39, a distance measuring sensor 35 and a temperature sensor 36. The power supply 24, the heat dissipation mechanism and the electronic emitter 39 are installed in the head shell, and the heat dissipation mechanism is used for heat dissipation of the electronic emitter 39 to avoid the influence of high temperature on the sensitivity of the sensor and other electronic devices. The power supply 24 is used for power supply to the electronic emitter 39, and the electronic emitter 39 is used for emitting electromagnetic wave signals. The distance measuring sensor 35 and the temperature sensor 36 are installed in the head shell and can extend out of the lower end of the head shell. The distance measuring sensor 35 is used for measuring the distance between the lower end of the head shell and the human body, and thus realizes real-time detection of the distance between the head 3 and the human body, so as to adjust the distance according to the actual situation and ensure better physiotherapy effect. The temperature sensor 36 is used for detecting the temperature below the electronic emitter 39, and thus can realize detection of the heat therapy temperature to ensure safety and comfort in use.
[0049] The head shell is a hollow cube, comprising a front panel 41, a left side plate 28, a head circuit mounting back plate 27, a right side plate 42, a ventilation and heat dissipation top cover 20, a top cover connecting frame 22 and a radiation head 32. The front panel 41 and the head circuit mounting back plate 27 are oppositely arranged and respectively located at the front and back of the whole. The left side plate 28 and the right side plate 42 are oppositely arranged and respectively located at the left and right of the whole. The ventilation and heat dissipation top cover 20 and the radiation head 32 are oppositely arranged and respectively located at the top and bottom of the whole. The top cover connecting frame 22 is installed at the lower end of the ventilation and heat dissipation top cover 20. The head circuit mounting back plate 27 is used to be connected with the cantilever 2. The head circuit mounting back plate 27 is installed with a head circuit conduction piece. The head circuit conduction piece is used to connect the power supply assembly in the cantilever 2, thereby realizing the conduction of the circuit.
[0050] The head shell further comprises a hanging buckle plate 26. The hanging buckle plate 26 is a door type. One side of the hanging buckle plate 26 is connected with the outer edge of the head circuit mounting back plate 27. The hanging buckle plate 26 is used to be hung on one side of the cantilever 2 from top to bottom. The installation is convenient. In combination with the bolt connection, the connection stability can be improved. The upper end of the head circuit mounting back plate 27 is connected with one side of the top cover connecting frame 22. The upper end of the front panel 41 is connected with the other side of the top cover connecting frame 22. The connection mode can be through the bolt, the pin or other clamping pieces, as long as the stable connection can be realized. Preferably, an extension is fixed at the position corresponding to the front panel 41 at the lower end of the top cover connecting frame 22. The extension can be embedded into the groove at one side of the front panel 41. In combination with the bolt connection between the extension and the front panel 41, the stable connection can be realized.
[0051] A head power supply installation slot is opened on the hanging buckle plate 26. A head power supply installation hole is opened on the bottom surface of the head power supply installation slot. The head circuit conduction piece comprises a head conductive contact, a head insulating plate, a head insulating pressing plate and a head pressing plate. The head insulating plate is installed in the head power supply installation hole. The bottom surface of the head power supply installation slot can abut one end of the head insulating plate. A plurality of head wiring holes are opened on the head insulating plate. One head conductive contact is respectively placed in each head wiring hole. Each head conductive contact is used to be electrically connected with the fourth power supply contact on the cantilever 2. In combination with the connection, the spring pressing can be further used to ensure the contact stability. The head insulating pressing plate is installed in the head power supply installation slot. A first perforation is respectively opened on the head insulating pressing plate at the position corresponding to each head conductive contact. The head pressing plate is installed in the head power supply installation slot. A second perforation is opened on the head pressing plate at the position corresponding to the head conductive contact. Each head conductive contact can pass through the first perforation and the second perforation and be connected with the electronic emitter 39. The head conductive contact is pressed through the bolt in sequence passing through the head pressing plate, the head insulating plate and the bottom surface of the head power supply installation slot. Preferably, the hole in the head conductive contact is a blind hole. That is, one end of the head conductive contact away from the electronic emitter 39 is blocked. The electric wire is welded in the blind hole of the head conductive contact through the soldering mode.
[0052] The left side plate 28 and the right side plate 42 are identical in structure, and the upper ends of the left side plate 28 and the right side plate 42 are fixed with a plurality of clamping protrusions at intervals, that is, there is a gap between adjacent clamping protrusions, and the clamping protrusions are arranged in a direction parallel to the top cover connecting frame 22, each clamping protrusion is provided with a clamping groove, the clamping groove is arranged close to the lower end of the clamping protrusion, and the clamping groove penetrates the clamping protrusion in a direction parallel to the top cover connecting frame 22. The lower end of the ventilation and heat dissipation top cover 20 is fixed with a plurality of limiting protrusions, and one limiting protrusion corresponds to one clamping groove, the limiting protrusions correspond in shape to the clamping grooves, the ventilation and heat dissipation top cover 20 can be buckled on the upper ends of the left side plate 28 and the right side plate 42, and in the process of buckling downward, the limiting protrusions enter the gaps between adjacent clamping protrusions, and then the ventilation and heat dissipation top cover 20 is pushed horizontally, so that the limiting protrusions slide into the clamping grooves, and the limiting protrusions are clamped by the inner walls of the clamping grooves, that is, the clamping protrusions clamp the limiting protrusions; the lower end of the left side plate 28 and the lower end of the right side plate 42 are connected with the upper end of the radiation head 32, preferably by bolt connection.
[0053] The upper end of the top cover connecting frame 22 is provided with a mounting guide groove, the length direction of the mounting guide groove is consistent with the arrangement direction of the clamping protrusions, and the lower end of the ventilation and heat dissipation top cover 20 is fixed with a mounting guide block corresponding to the position of the mounting guide groove. The mounting guide block can be embedded into the mounting guide groove and can reciprocally slide in the length direction of the mounting guide groove. The mounting guide block is limited by the mounting guide groove, thereby facilitating the installation of the ventilation and heat dissipation top cover 20. Preferably, the corner of the top cover connecting frame 22 is also provided with a connecting buckle 43 to realize stable connection with the ventilation and heat dissipation top cover 20.
[0054] The heat dissipation mechanism comprises two ventilation assemblies for air inlet and air outlet, which are respectively arranged close to the left side plate 28 and the right side plate 42. In actual installation, the ventilation assembly close to the left side plate 28 can be selected as the air outlet assembly, and the ventilation assembly close to the right side plate 42 can be selected as the air inlet assembly. Alternatively, the ventilation assembly close to the right side plate 42 can be selected as the air outlet assembly, and the ventilation assembly close to the left side plate 28 can be selected as the air inlet assembly. The air inlet assembly is used to guide the external air into the head shell, and the air outlet assembly is used to guide the air in the head shell out, thereby realizing the circulation of air and improving the heat dissipation effect. The ventilation assembly comprises a fan primary flow guide cover 31, an axial heat dissipation fan 30 and a fan secondary flow guide cover 29. The fan secondary flow guide cover 29 is arranged on one side of the left side plate 28 close to the right side plate 42, preferably connected by bolts, and forms a first chamber with the left side plate 28, or is arranged on one side of the right side plate 42 close to the left side plate 28, preferably connected by bolts, and forms a second chamber with the right side plate 42. The first chamber and the second chamber can communicate with the outside, and the first chamber and the second chamber are in communication, thereby realizing the conduction of air. The fan secondary flow guide cover 29 is provided with a fan mounting hole, and the axial heat dissipation fan 30 is arranged in the fan mounting hole. The axial heat dissipation fan 30 is located outside the first chamber and the second chamber and can communicate with the inside of the head shell or the inside of the head shell. The fan primary flow guide cover 31 is arranged on one side of the axial heat dissipation fan 30 away from the fan secondary flow guide cover 29, which not only realizes the air guidance but also protects the axial heat dissipation fan 30. The first chamber and the second chamber are respectively used for air inlet and air outlet.
[0055] The ventilation and heat dissipation top cover 20 is provided with a middle ventilation hole group, an air inlet hole group and an air outlet hole group. The air inlet hole group and the air outlet hole group are arranged around the middle ventilation hole group. The middle ventilation hole group can communicate the inner cavity of the head shell with the outside, and is used to guide the air in the head shell out. The air inlet hole group is used to communicate the first chamber with the outside, and is used to guide the external air into the first chamber. The air outlet hole group is used to communicate the second chamber with the outside, and the air in the second chamber is discharged through the air outlet hole group. Alternatively, the air inlet hole group is used to communicate the second chamber with the outside, and is used to guide the external air into the second chamber. The air outlet hole group is used to communicate the first chamber with the outside, and the air in the first chamber is discharged through the air outlet hole group.
[0056] The power supply heat dissipation fan 21, the positioning baffle 23 and the power supply mounting plate 25 are arranged in the machine head shell, the two sides of the positioning baffle 23 and the power supply mounting plate 25 are respectively arranged on the left side plate 28 and the right side plate 42, preferably fixed by bolts, and the power supply heat dissipation fan 21 is arranged at the lower end of the ventilation and heat dissipation top cover 20, the power supply 24 is arranged on the power supply mounting plate 25, and the heat dissipation holes of the power supply 24 are arranged in alignment with the power supply heat dissipation fan 21, so that the air flow in the machine head shell is guided by the power supply heat dissipation fan 21 to dissipate heat for the power supply 24, and the air is discharged through the middle ventilation holes, so as to avoid that the high temperature affects the service life.
[0057] The waveguide pressing plate 38, the waveguide 37, the mounting ring plate 34 and the light shielding baffle 33 are arranged in the machine head shell, the waveguide 37 is used for guiding the electromagnetic wave emitted by the electronic emitter 39, the light shielding baffle 33 is arranged at the bottom opening of the radiation head 32, the mounting ring plate 34 is arranged on the inner bottom surface of the radiation head 32, a plurality of holes are arranged on the outer edge of the mounting ring plate 34, the mounting ring plate 34 and the inner bottom surface of the radiation head 32 are connected by bolts or pins, the distance measuring sensor 35 and the temperature sensor 36 are arranged on the mounting ring plate 34, and the testing ends of the distance measuring sensor 35 and the temperature sensor 36 can extend out of the radiation head 32 to realize detection, preferably, the temperature sensor 36 and the distance measuring sensor 35 are both two, the two temperature sensors 36 are arranged oppositely, the two distance measuring sensors 35 are arranged oppositely, the four sensors are arranged uniformly, and are connected to the mounting ring plate 34 by sensor gland respectively, the electronic emitter 39 is arranged at the upper end of the waveguide 37, a limiting ring is arranged at the lower end of the waveguide 37, the lower end surface of the limiting ring can contact the upper end surface of the mounting ring plate 34, and the lower end surface of the waveguide pressing plate 38 can contact the upper end surface of the limiting ring, the waveguide pressing plate 38 and the mounting ring plate 34 are detachably connected, so that the waveguide 37 is pressed on the mounting ring plate 34 by the waveguide pressing plate 38 to realize stable connection. Preferably, the thermal switch 40 is arranged on the electronic emitter 39, and the thermal switch 40 automatically cuts off power when the temperature is too high, thereby playing a protection function.
[0058] The principles and implementation manners of the present application are described by using specific examples in the specification, and the above description of the examples is only used to help understand the method of the present application and its core idea; meanwhile, for those skilled in the art, the specific implementation manners and application ranges can be changed according to the idea of the present application. In summary, the content of the specification should not be understood as a limitation of the present application.
Claims
1. A hyperthermia apparatus, characterized by: The device includes a suspension mechanism, a head unit, and a suspension base. The lower end of the suspension mechanism is mounted on the suspension base, and the head unit is mounted on the suspension mechanism. The suspension mechanism contains a suspension slide rail assembly, which can drive the head unit to rise and fall. The suspension base is used to connect to the slide rail of the thermotherapy machine and can reciprocate along the length of the slide rail to drive the head unit to reciprocate. Proximity switches are provided on both sides of the suspension base. The proximity switches are used to sense the two ends of the slide rail of the thermotherapy machine and control the movement of the suspension base. The suspension base includes a suspension base plate, a base walking mechanism, and a base power supply mechanism. The upper end of the suspension base plate is connected to the lower end of the suspension mechanism. The base walking mechanism and the base power supply mechanism are both installed at the lower end of the suspension base plate. The outer edge of the suspension base plate is connected to the conveyor belt inside the slide rail of the thermotherapy machine. The base walking mechanism is used to drive the suspension base plate to move, and the suspension base plate drives the conveyor belt inside the slide rail of the thermotherapy machine to move, so that the suspension base plate drives the suspension mechanism to move back and forth. The conveyor belt is a non-closed loop, and the two ends of the conveyor belt are connected to the two ends of the suspension base plate. The base power supply mechanism is electrically connected to the base walking mechanism and is used to supply power to the base walking mechanism. The suspension base is a rectangular plate, and a wire harness inlet and outlet are provided in the middle of the suspension base. The wire harness inlet and outlet are used for the entry and exit of wires. There are two sets of base walking mechanisms, and the two sets of base walking mechanisms are respectively installed on opposite sides of the suspension base. There are two sets of base power supply mechanisms, and the two sets of base power supply mechanisms are respectively installed on the other two sides of the suspension base. A circuit mounting base is installed at the lower end of each suspension base corresponding to the position of each base power-on mechanism. The base power-on mechanism includes an electrical mounting support frame, two proximity switches, and multiple base power-on components. One side of the circuit mounting base is connected to the electrical mounting support frame. The electrical mounting support frame is cross-shaped and includes mutually perpendicular horizontal and vertical frames. The vertical frame is used to install the base power-on components, which are used to conduct electricity with the slide rail power-on components on the thermotherapy machine slide rail. A proximity switch is installed at each end of the horizontal frame. The proximity switches are used to sense the two ends of the thermotherapy machine slide rail and control the movement of the base walking mechanism.
2. The hyperthermia apparatus of claim 1, wherein: The base walking mechanism includes a drive motor, a walking reduction gearbox, two connecting pipes, two drive shafts, and two drive pulleys. The drive motor is connected to the walking reduction gearbox. The two output shafts of the walking reduction gearbox are coaxial and are respectively connected to one end of the two drive shafts. The other end of each drive shaft is connected to a corresponding drive pulley. The connecting pipe is sleeved around the outer circumference of the drive shaft but does not contact the drive shaft. When the drive motor rotates, it can drive the drive pulleys to move within the slide rail of the thermotherapy machine. A walking mounting seat is installed at the lower end of the suspension base near each of the drive pulleys, and the walking mounting seat is connected to the connecting pipe.
3. The hyperthermia apparatus of claim 1, wherein: The base power supply assembly comprises a base terminal post, a base tension spring and a base power supply contact, a plurality of base power supply holes arranged in the vertical direction are formed on the longitudinal frame, the base terminal post is installed in the base power supply hole, and the end of the base terminal post away from the heat therapy machine slide rail is used for connecting the electric wire, the other end of the base terminal post abuts against the base power supply contact through the base tension spring, and the end of the base power supply contact away from the base terminal post is used for conduction with the slide rail power supply assembly of the heat therapy machine slide rail.
4. The hyperthermia apparatus of claim 1, wherein: The suspension mechanism comprises a suspension shell, the suspension slide rail assembly and a cantilever, the lower end of the suspension shell is installed on the suspension base and can reciprocate with the suspension base, the suspension slide rail assembly is installed in the suspension shell and is perpendicular to the horizontal plane, the cantilever is slidingly connected to the suspension slide rail assembly and can reciprocate along the length direction of the suspension slide rail assembly, and the cantilever is provided with a rotating assembly, the rotating assembly is connected to the head and can drive the head to overturn.
5. The hyperthermia apparatus of claim 1, wherein: The head comprises a head shell, a heat dissipation mechanism, a power supply, an electronic emitter, a distance measuring sensor and a temperature sensor, the power supply, the heat dissipation mechanism and the electronic emitter are installed in the head shell, the heat dissipation mechanism is used for dissipating heat of the power supply and the electronic emitter, the power supply is used for supplying power to the electronic emitter, the electronic emitter is used for emitting electromagnetic wave signals, the distance measuring sensor and the temperature sensor are installed in the head shell and can extend out through the lower end of the head shell, the distance measuring sensor is used for measuring the distance between the lower end of the head shell and the human body, and the temperature sensor is used for detecting the temperature below the electronic emitter.
6. The hyperthermia apparatus of claim 5, wherein: The head shell comprises a hanging buckle plate, the hanging buckle plate is a door type, and the hanging buckle plate can be hung on one side of the suspension mechanism from top to bottom.
Citation Information
Patent Citations
Moxibustion device
CN111939062A
Medical microwave therapeutic apparatus
CN112704814A
Thermal therapy equipment
CN217567151U