Miniature portable multifunctional infusion device
09878093 ยท 2018-01-30
Assignee
Inventors
Cpc classification
A61M5/14244
HUMAN NECESSITIES
A61M2005/14272
HUMAN NECESSITIES
International classification
Abstract
A miniature portable multifunctional infusion device includes a liquid bottle (4) and a film box body (16) secured to a support frame (1). The film box body (16) is respectively provided with a directional input interface (17) and a directional output interface (14) in communication with the liquid bottle (4) and a needle via an infusion pipe. The film box body (16) is installed with an elastic film (27), and a transmission system (31) is arranged at a side of the elastic film (27). The transmission system (31) includes a miniature direct current motor (32) connected to a frequency modulating system (28). The miniature direct current motor (32) is connected to a spiral straightening device (34) via a speed reducer (33), and the spiral straightening device (34) is connected to a reciprocating film propping device (36) via a two-order shaft (43). A truncated cone (39) of the reciprocating film propping device (36) at a front end is in contact with the elastic film (27). In the infusion device, the miniature direct current motor (32) drives the transmission system (31) to enable movement of the reciprocating film propping device (36), thereby realizing conversion from electrical energy to mechanical energy, and realizing regulation of an infusion speed through a change in the volume the reciprocating film propping device (36) by compressing the film box body (16).
Claims
1. A miniature portable multifunctional infusion device, comprising: a support frame (1), a liquid bottle (4) and a film box body (16) secured thereto, wherein the film box body (16) is respectively provided with a directional input interface (17) and a directional output interface (14) in communication with the liquid bottle (4) and a needle (20) via an infusion pipe, the film box body (16) is installed with an elastic film (27), and a transmission system (31) is arranged at a side of the elastic film (27), the transmission system (31) comprises a miniature direct current motor (32) connected to a frequency modulating system (28), the miniature direct current motor (32) is connected to a spiral straightening device (34) via a speed reducer (33), and the spiral straightening device (34) is connected to a reciprocating film propping device (36) via a two-order shaft (43), a truncated cone (39) of the reciprocating film propping device (36) at a front end is in contact with the elastic film (27), the frequency modulating system (28) comprises a miniature direct current power source (30) connected to the miniature direct current motor (32), the miniature direct current power source (30) is further connected to a controller (11) for controlling the miniature direct current motor (32) via a potentiometric sensor (29), and the controller (11) is further connected with a controller parameters input keyboard (12).
2. The miniature portable multifunctional infusion device according to claim 1, wherein: the reciprocating film propping device (36) comprises a flat body (37), a course adjusting mechanism (40) mounted in a sliding sleeve (45), a trapezoidal transition section (38) and the truncated cone (39) which are arranged from back to front sequentially, and the trapezoidal transition section (38) is mounted with a plate-type spring (44).
3. The miniature portable multifunctional infusion device according to claim 2, wherein: an outer side of the flat body (37) is further installed with a distance sensor (35) in connection with the controller (11).
4. The miniature portable multifunctional infusion device according to claim 2, wherein: a rear end of the flat body (37) is further installed with a speed rotatable handle (10) for adjusting flow rate of liquid within the film box body, a speed selecting pointer (8) installed on the speed rotatable handle (10), and an infusion speed dial (9) corresponding to the speed selecting pointer.
5. The miniature portable multifunctional infusion device according to claim 1, wherein: the film box body (16) is further installed with a flow rate display (7).
6. The miniature portable multifunctional infusion device according to claim 1, wherein: the infusion pipe between the film box body (16) and the needle is further provided with a liquid medicine heating control system (22), the liquid medicine heating control system (22) comprises a pagoda-type heater (25) enwinding the infusion pipe in contact with a heating power source (24), the pagoda-type heater (25) is installed with a temperature sensor (26) at an end, the pagoda-type heater (25) and the temperature sensor (26) are connected to a temperature controller (23) respectively, and an infusion pipe at a front end of the needle is provided with a liquid medicine precision filter (21).
7. The miniature portable multifunctional infusion device according to claim 1, wherein: the support frame (1) comprises a bottle holder (46) installed with the liquid bottle (4) and a crescent holder (13) installed with the film box body (16), the bottle holder (46) is provided with a binder (3), a head restraint (5) and an adjusting foundation (6) which fasten the liquid bottle (4), the crescent holder (13) is provided with an absorber (2), and the support frame (1) is further opened with a fitted aperture (18).
8. The miniature portable multifunctional infusion device according to claim 1, wherein: the film box body (16) is further provided with a fast-assembling head restraint (41).
9. The miniature portable multifunctional infusion device according to claim 1, wherein: the directional output interface (14) is further provided with a gas identifier (15).
10. The miniature portable multifunctional infusion device according to claim 1, wherein: the controller (11) is installed with an acousto-optical warning display (42) and a transmitter (19) in connection with a weight sensor of the liquid bottle.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
(2)
(3)
(4)
(5)
(6)
(7) In which, 1. support frame; 2. absorber; 3. binder; 4. liquid bottle; 5. head restraint; 6. adjusting foundation; 7. flow rate display; 8. speed selecting pointer; 9. infusion speed dial; 10. speed rotatable handle; 11. controller; 12. controller parameters input keyboard; 13. crescent holder; 14. directional output interface; 15. gas identifier; 16. film box body; 17. directional input interface; 18. fitted aperture; 19. transmitter; 20. needle; 21. liquid medicine precision filter; 22. liquid medicine heating control system; 23. temperature controller; 24. heating power source; 25. pagoda-type heater; 26. temperature sensor; 27. elastic film; 28. frequency modulating system; 29. potentiometeric sensor; 30. miniature motor power source; 31. transmission system; 32. miniature direct current motor; 33. speed reducer; 34. spiral straightening device; 35. distance sensor; 36. reciprocating film propping device; 37. flat body; 38. trapezoidal fine lines; 39. truncated cone; 40. course adjusting mechanism; 41. fast-assembling head restraint; 42. acousto-optical warning display; 43. two-order shaft; 44. plate-type spring; 45. sliding sleeve; and 46. bottle holder.
DETAILED DESCRIPTION
(8) The present invention is further described in detail with reference to accompanying drawings hereunder.
(9) Referring to
(10) The reciprocating film propping device 36 includes a flat body 37, a course adjusting mechanism 40 mounted in a sliding sleeve 45, a trapezoidal transition section 38 and the truncated cone 39 which are arranged from back to front sequentially, and the trapezoidal transition section 38 is mounted with a plate-type spring 44, an outer side of the flat body 37 is further installed with a distance sensor 35 in connection with the controller 11, a rear end of the flat body 37 is further installed with a speed rotatable handle 10 for adjusting flow rate of liquid within the film box body, a speed selecting pointer 8 installed on the speed rotatable handle 10, and an infusion speed dial 9 corresponding to the speed selecting pointer 8.
(11) The present invention consists of the following major components:
(12) 1. a transmission system, 2. a film box body, 3. a miniature auxiliary function system includes an infusion speed regulating device, a controller, a remote real-time display, an acousto-optical warning device, a miniature liquid infusion medicine constant temperature control device.
(13) The transmission system converts electrical energy (a miniature chargeable high energy battery) into reciprocating motion for power production by enabling a miniature direct current motor to drive a speed reducer into rotary motion and pass through a spiral straightening wheel, and then transfers the power produced from reciprocating motion to a course adjusting mechanism via a two-order shaft so as to make it be subject to reciprocating motion for power production. Trapezoidal double-headed screw threads are designed within the sliding sleeve, which match with an adjusting rod screw threads within the sliding sleeve to become a complex of the reciprocating motion for power production.
(14) The reciprocating film propping device is a central part to achieve an adjusting function, the component is designed with a truncated cone contact at a front end, of which the forepart is designed with trapezoidal double-headed screw threads, and the tail is designed with a flat body. The flat body is suited with a hard-connected potentiometer part, an end of the flat body is suited with a hard-connected rotatable handle with a pointer, the rotatable handle pointer is corresponding to a dial disc (graduations from 0 to 300) secured to the casing. The elastic film of the film box body is pushed to generate infusion force via the truncated cone contact on the reciprocating film propping device, and a course distance is adjusted to reach an amplitude target via the trapezoidal double-headed screw threads on the reciprocating film propping device, a potentiometer on the reciprocating film propping device reaches a collection target of amplitude modulating signals, the rotatable handle with the pointer and the dial disc on the adjusting rod form a flow rate input mechanism.
(15) The present invention implements a hard-connected procedural mechanism by a conversion process from electrical energy.fwdarw.mechanical energy.fwdarw.infusion force, a mechanisms transmission process of energies, and a mechanisms adjusting process, functions thereof will be briefly described hereunder: when the rotatable handle pointer points at a 0 position (0), the truncated cone of the reciprocating film propping device is in contact with the elastic film at a 0 distance. When the rotatable handle pointer is adjusted to point at a 30 position, the trapezoidal double-headed screw threads of the reciprocating film propping device rotate forward, and chord height of arc formed by the truncated cone contact pressing into the elastic film of the film box body is equal to 630/360 mm, meanwhile a miniature potentiometer suited on the flat body of the reciprocating film propping device also rotates by 30, and transmits a corresponding potential difference signal.
(16) When the rotatable handle pointer is adjusted to a 120 position, the trapezoidal double-headed screw threads of the adjusting rod rotate and then move forward, and chord height of arc formed by the truncated cone contact pressing into the elastic film of the film box body is equal to 6120/360 mm, meanwhile the potentiometer suited on the flat body also rotates by 120 synchronously, and transmits a corresponding potential difference signal, and the like.
(17) Regulate infusion speed via amplitude of a trigger: adjust course of the adjusting rod, that is, adjust chord height of arc formed by the contact pressing into the elastic film. The chord height of arc of the elastic film is then y=ax.sup.2 which has a relationship with amplitude and infusion quantity.
(18)
(19) R is a radius of an upper circle of the truncated cone, R.sub.n is a radius of a lower circle of the truncated cone, H is a chord height of arc, R.sub.n=1.35+0.391 H, units thereof are mm, Q.sub.n is flow rate (ml/min), 75 times/min is a rated frequency, a process of above energy conversion, energy mechanical transmission and amplitude modulation is as shown in the figure (
(20) Regulate infusion speed via frequency of the trigger: see
(21) A frequency modulating process is implemented by setting a frequency modulation system: frequency modulation is implemented by a potentiometeric sensor which is connected in a power supply circuit of a micro-motor in series, when the micro-motor runs to produce power, power of the motor varies with a varying voltage supplied thereto, and revolution number of the motor changes correspondingly, that is, the rotation speed is adjusted, frequency of reciprocating motion is changed via the spiral straightening device, (75 times/min.fwdarw.0 times/min), that is to say, time of reciprocating pulse is changed, a change in the impulsive force releasing time is reached, which is reflected in change of injection force during the infusion process, equivalent to an action of slowly pushing the needle during the injection.
(22) In a condition where the motor load (overcoming infusion resistance) is stable, the infusion speed is also stable. Adjusting of motor rotation rate of the potentiometer has a valid adjusting range, this range determines infusion accuracy, for instance, in a range of 25-325, then the accuracy is adjusted: accuracy of selected flow rate (5 ml/min) for adjusting 1 is: 5 ml/min1/300=0.0166 ml, i.e. 0.33%, thereby realizing accurate control of the infusion speed, a change in a relationship between the flow rate and the frequency is y=ax: Q=Q.sub.H1HZ,
(23)
HZ is a selected frequency (times/min), Q.sub.H1 is an infusion speed (ml/min), Q.sub.H is an inherent flow rate.
(24) A miniature energy conversion system (a host machine) is guidance of a design scheme: {circle around (1)} a drip infusion technique is a microscopic theory which focuses on the drip. Each drip is about 0.15 ml, it is a relative minor power production process that injecting 0.15 ml drip to a height (lift) of about 2 m, energy consumption thereof should be little, and thus it should be available to use a miniature motor at a milliwatt level as the infusion force. Experiments turn to be successful via simulations. Thus, foundations are laid for the design scheme. It is in
(25) Technique of a fast-assembling head restraint:
(26) Linkup of a disposable film box infusion device and a host machine requires fast-assembling and secured connections. It can be seen from
(27) Infusion temperature self-controlled system:
(28) In order to improve comfort of the infusion, solve cold stimulation and adverse reaction from the injected liquid medicine to a patient in a cold environment without heating installations, a set of infusion temperature self-controlled system is placed in the portable infusion device, as shown in