Tank body structure for moxibustion instrument
By combining a trumpet-shaped canister structure with a manually rotating component, the safety hazards, smoke pollution, and inflexible temperature adjustment issues of traditional moxibustion devices are resolved, achieving safe, convenient, and efficient moxibustion effects.
Patent Information
- Application Number
- CN202422375798.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-29
- Publication Date
- 2025-11-28
- Estimated Expiration
- 2034-09-29
AI Technical Summary
Existing moxibustion devices have problems such as safety hazards, inconvenience of use, smoke pollution, and inflexible temperature adjustment.
A funnel-shaped canister structure was designed, equipped with a temperature sensor and a modular filter. The distance between the moxa stick and the skin is adjusted by rotating the component, and a manually retractable moxa stick is used. Combined with the negative pressure canister structure, safety and temperature monitoring are ensured.
It achieves high safety, simple operation, adjustable temperature, and good air purification effect, avoiding burns and air pollution, and improving the user experience of moxibustion.
Smart Images

Figure CN223601703U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to moxa -moxibustion instrument's structural component, specifically be a kind of for moxa -moxibustion instrument's jar structure, it is mainly applicable to hand-held moxa -moxibustion instrument. BACKGROUND
[0002] Moxibustion is a traditional Chinese medicine therapy, the heat and smell generated by burning mugwort are used to stimulate acupuncture points on the body to achieve therapeutic effects. In traditional methods, moxa is held by hand, which is inconvenient to use. To solve this problem, existing technology designs a convenient-to-use moxa jar scheme.
[0003] For example, the invention patent application disclosed in application publication No. CN109481291A, "Moxa Fumigation Jar", the technical scheme includes a shell with an upward-opening cavity inside, a first heat dissipation hole is provided at the bottom of the shell for connecting the cavity with the outside of the shell; a heating disc is arranged in the cavity and connected with the inner wall of the shell, the heating disc divides the cavity into a medicine transpiration cavity with an upward opening for holding moxa tablets and a heat dissipation cavity arranged below the medicine transpiration cavity, the heat dissipation cavity is connected with the outside of the shell through the first heat dissipation hole; a heating device is arranged at the bottom of the heating disc to provide heat for the heating disc. Although this technical scheme solves the technical problems of low medicine utilization rate and poor heat dissipation effect, it still has the following defects: since there is no safety monitoring contact on the jar, the moxa -moxibustion instrument body is separated from the jar when the jar is not stably buckled, which causes the moxa stick to directly contact the skin and leads to safety accidents; since the technical scheme uses an external power supply, it is easy to be tripped by the power cord during use; since the technical scheme lacks a filtering device, the moxa smoke pollutes the surrounding air during use, so it is necessary to maintain indoor air circulation, but air circulation affects the burning of moxa -moxibustion, thereby affecting the moxa -moxibustion effect; since the distance between the moxa stick and the skin cannot be adjusted in the technical scheme, it is inconvenient to quickly adjust the temperature of moxa -moxibustion, and it is difficult to achieve the best treatment effect. UTILITY MODEL CONTENTS
[0004] The utility model aims at providing a jar structure for moxa -moxibustion instrument, which fundamentally solves the above-mentioned problems, and has the advantages of convenient temperature adjustment, high safety, compact structure, etc.
[0005] To achieve the above-mentioned purpose, the utility model provides the following technical scheme: the jar structure for moxa -moxibustion instrument includes a trumpet-shaped main body in communication with the upper and lower parts, and the technical key points are as follows: the trumpet-shaped main body includes a reduced-diameter embedded part, a jar side wall integrated with the embedded part and provided with an opening at the bottom, an inner jar arranged in the jar side wall, and a hollow baffle limited in the inner jar; the inner jar and the jar side wall are connected through an air inlet and a temperature measuring cavity; the inner jar and the jar side wall form a jar cavity; an arc-shaped groove is provided on the embedded part, and the arc-shaped groove is connected with the jar cavity through an arc-shaped groove air hole; a contact mounting groove is provided on the embedded part, and a lower contact with a temperature sensor is embedded therein.
[0006] Further, the inner embedding part is circumferentially provided with one or more than one expansion protrusion and a plurality of limiting protrusions, and the expansion protrusion is located between the limiting protrusions.
[0007] Further, the bottom of the opening is in an arc-shaped symmetrical structure with the middle higher than the two sides.
[0008] The beneficial effects of the utility model are as follows: on the overall technical scheme, the lower contact point matched with the upper contact point of the middle shell bottom is arranged on the tank body structure, and the temperature sensor is arranged on the lower contact point, so that the safety risk of scalding caused by the shell assembly falling off due to incorrect installation of the tank body is avoided, and the moxibustion temperature can be monitored in real time through the temperature sensor; on the specific structure, the filtering device adopts the modular structure and is embedded in the tank body in a detachable mode, so that the replacement is convenient and fast; the overall structure adopts the modular structure, is small in size, is convenient to carry, and can be used for moxibustion at any time and any place; the switch is realized by long pressing the power key, the negative pressure intensity is adjusted by the gear key, and the moxibustion time is set by the mode key, so that the moxibustion is automatically turned off at a fixed time, and the operation is simple; the skin is prevented from being scalded by monitoring the temperature of the moxa stick in real time through the temperature monitoring module; the distance between the front end of the moxa stick and the skin is manually and quickly adjusted through the rotating assembly, so that the scalding is not aggravated due to the tank body being unable to be taken off in case of an accident, and the use is safer; the skin is adsorbed in the tank body during moxibustion by matching the negative pressure tank body, so that the moxibustion is more effectively implemented on the premise of avoiding the tank body from falling off; the streamline shape is adopted, so that the appearance is more beautiful, and the holding is more convenient.
[0009] In conclusion, the portable moxibustion instrument with the tank body structure of the utility model is matched with the tank body structure, the electric telescopic moxa stick is changed into a manual one, the skin scalding caused by the sensor failure and the moxa stick telescopic control not being in time under certain conditions is effectively avoided, and the safety risk is further reduced. BRIEF DESCRIPTION OF DRAWINGS
[0010] Figure 1 It is an isometric view of the tank body structure of the utility model.
[0011] Figure 2 It is an isometric view II of the tank body structure of the utility model.
[0012] Figure 3 It is a structural schematic view of the moxibustion instrument using the tank body structure of the utility model.
[0013] Figure 4 It is a sectional view of the utility model. Figure 3
[0014] Figure 5 It is an exploded view I of the utility model. Figure 3
[0015] Figure 6 For Figure 3 Figure II is a schematic diagram of the explosion structure.
[0016] Figure 7 For Figure 3 Figure is an isometric side view of the middle shell. DETAILED DESCRIPTION
[0017] The specific content of the utility model will be described in detail below by specific examples. Figures 1-7 Example 1 Example 1
[0018] The pot structure 4 for moxibustion instrument includes an upper and lower communication horn-shaped main body, the horn-shaped main body includes a reduced inner embedding part 43, a pot side wall 45 integrated with the inner embedding part 43 and provided with an opening 451 at the bottom, an inner pot 42 arranged in the pot side wall 45, and a hollow baffle 41 limited in the inner pot 42, and the inner pot 42 and the pot side wall 45 are communicated through an air inlet 452 and a temperature measuring cavity 453; the inner pot 42 and the pot side wall 45 form a pot cavity 454; an arc-shaped groove 434 is arranged on the inner embedding part 43, and the arc-shaped groove 434 is communicated with the pot cavity 454 through an arc-shaped groove air hole 4341; a contact mounting groove 4331 is arranged on the inner embedding part 43, and a lower contact 433 with a temperature sensor is embedded therein. More than one expansion protrusion 431 and a plurality of limiting protrusions 432 are arranged on the inner embedding part 43 in the circumferential direction, and the expansion protrusion 431 is located between the limiting protrusions 432. The bottom of the opening 451 is in an arc-shaped symmetrical structure with the middle higher than the two sides, so that the pot structure 4 can better fit the human body.
[0019] A partition plate 44 is further arranged between the pot structure 4 and the pot connecting end 329 of the shell assembly 3, and a plurality of positioning holes 441 matched with the positioning protrusions 3291 are arranged on the partition plate 44 in the circumferential direction. The lower contact 433 is provided with a temperature sensor and penetrates through the partition plate 44 and is limited, the bottom of the lower contact 433 is inserted into the inner embedding part 43, the inner side of the pot connecting end 329 is provided with an upper contact 3292 matched with the lower contact 433, and the upper contact 3292 is electrically connected with the PCB circuit board 34, and a plurality of clamping grooves 3293 are arranged on the inner side of the pot connecting end 329 in the circumferential direction. The mounting groove of the lower contact 433 of the pot structure 4 extends downward and is communicated to the temperature measuring cavity 453. Example 2
[0020] The pot body structure 4 of the embodiment 1 is installed on the portable moxa stick instrument, and the moxa stick instrument further comprises a rotating assembly 2 and a shell assembly 3. The rotating assembly 2 is telescopically rotatable in the shell assembly 3, and the distance between the front end of the moxa stick 1 and the front end of the pot body structure 4 is adjusted through the rotating assembly 2. The rotating assembly 2 comprises a rotating body 22, a screw column 23 with a plug pin 24 fixed at the bottom of the rotating body 22 and driven to rotate by the rotating body 22. The rotating body 22 is a hollow structure, comprising a disc-shaped main body structure for holding, a screw column matching part 223 provided with an annular groove 2231 on the main body structure, and a clamp 25 limited on the annular groove 2231. The screw column 23 is provided with a strip-shaped groove 232 on the length direction of the side of the threaded part, and the bottom of the threaded part is provided with an inner diameter reduced light rod 231. The inner wall of the screw column matching part 223 is provided with an inner thread matched with the screw column 23.
[0021] The disc-shaped main body structure of the rotating body 22 is provided with a plurality of fixed parts 221 in the circumferential direction, and the fixed parts 221 are provided with through holes 222. The rotating body 22 is fixed with a cover body 21, and the cover body 21 comprises a plurality of positioning parts 211 matched with the fixed parts 221. The rotating body 22 is matched on the positioning part 211 through the screw penetrating the through hole 222.
[0022] The shell assembly 3 comprises a middle shell 32 provided with a screw column limiting part 326, a flow guide cover 325 sleeved and limited on the screw column limiting part 326, an exhaust assembly 3254 provided on one side of the flow guide cover 325, a driving motor 324, a PCB circuit board 34, a battery 323 limited in the middle shell 32, a pot body connecting end 329 provided on the bottom of the middle shell 32, and an inner convex part 3261 matched with the strip-shaped groove 232 on the inner wall of the screw column limiting part 326. The outer wall of the middle shell 32 is provided with a charging interface 321, and the USB interface of the charging module on the PCB circuit board 34 is embedded in the charging interface 321.
[0023] The air exhaust assembly 3254 is connected with the air guide cavity 327 through the sliding slot structure on the side of the air exhaust assembly 3254 and the socket 3271 on one side of the air guide cavity 327, so that the air guide cover 325 is inserted and mounted in the air guide cavity 327 from the bottom of the middle shell 32, the top of the air guide cover 325 is limited, the bottom of the air guide cover 325 is elastically abutted on the annular boss on the bottom of the middle shell 32 to limit the bottom of the air guide cover 325, after the air guide cavity 327 is inserted and fixed, the inlet end of the air exhaust assembly 3254 corresponds to the outlet end of the air guide cover 325, and the air exhaust port 3251 of the air exhaust assembly 3254 corresponds to the smoke exhaust port 322 on the middle shell 32; after the top and bottom of the air guide cover 325 are limited, the air guide cover 325 is fastened in the middle shell 32 through a plurality of bolts. The filter assembly (not shown in the figure) arranged at the connection between the air guide cover 325 and the air exhaust assembly 3254 or in the air exhaust assembly 3254 or at the air exhaust port 3251 can effectively filter the smoke and dust after the moxa stick 1 is burned, so that the air is purified. The air inlet 3252 of the air guide cover 325 communicates with the air inlet channel 452 through the inner cavity of the inner pot body 42, so that the air flow channel is formed, and the oxygen supply during the burning of the moxa stick 1 is ensured. The inner wall of the inner pot body 42 on the inner side of the air inlet channel 452 is communicated through a plurality of through holes (not marked in the figure), so as to slow down the pressure relief speed of the pot body.
[0024] In order to make the shell assembly 3 more beautiful in appearance and facilitate the assembly of other parts, the shell assembly 3 can be manufactured in three parts, for example, the upper shell 31 and the lower shell 33 are respectively fixed at the upper end and the lower end of the middle shell 32. The upper shell 31 includes a main body provided with a hollow part 311 and a circular groove 313 at the upper end, and a male buckle 312 arranged on the side. The inner side of the middle shell 32 is provided with a female buckle 328 corresponding to the position of the male buckle 312. The upper shell 31 is fixed by the male buckle 312 and the female buckle 328 of the middle shell 32. The rotary assembly 2 is rotatably arranged in the circular groove 313. The lower shell 33 adopts a hollow structure matched with the pot body connecting end 329, and is provided with screw holes 331 around. The lower shell 33 is fixed on the bottom of the middle shell 32 by the bolts penetrating through the bottom of the middle shell 32.
[0025] In use, the limiting protrusion 432 is separated from the clamping groove 3293 by rotating the pot body structure 4, and then the pot body structure 4 is removed, and the moxa stick 1 is fixed on the pin 24. At this time, the upper contact 3292 and the lower contact 433 are separated, and there is no response when the control button (not shown in the figure) on the middle shell 32 is touched by mistake.
[0026] After the moxa stick 1 is ignited, the pot body structure 4 is clamped on the bottom of the middle shell 32, the upper contact 3292 and the lower contact 433 are connected, the temperature sensor on the lower contact 433 is started, and the control button is normally started.
[0027] After the moxibustion instrument is started, the moxa stick 1 is first adjusted to the farthest end from the skin by manually controlling the rotating assembly 2, and then the moxibustion instrument is adsorbed on the acupoint required for moxibustion. When the cover body 21 and the rotating body 22 are rotated, the screw column matching part 223 is limited on the inner wall of the hollow part 311 of the upper shell 31 by the clamp 25, so that when the rotating body 22 is rotated, the screw column 23 is driven to stretch out or retract by the internal thread, and then the moxa stick 1 is brought close to or away from the moxibustion acupoint. When the screw column 23 is retracted to the rotating assembly 2, the end of the screw column 23 is inserted into the cavity between the cover body 21 and the rotating body 22, so as to quickly adjust the moxibustion temperature. The temperature sensor on the lower contact 433 monitors the temperature of the inner cavity of the inner pot body 42 in real time, and when the temperature is too high, an alarm is given or the driving motor 324 is simultaneously turned off, and the pot body structure 4 is detached from the skin to avoid scalding.
[0028] BRIEF DESCRIPTION OF DRAWINGS
[0029] 1 moxa stick;
[0030] 2 rotating assembly, 21 cover body, 211 positioning part, 22 rotating body, 221 fixed part, 222 through hole, 223 screw column matching part, 2231 annular groove, 23 screw column, 231 light pole, 232 strip-shaped groove, 24 insertion pin, 25 clamp;
[0031] 3 shell assembly, 31 upper shell, 311 hollow part, 312 male buckle, 313 circular groove, 32 middle shell, 321 charging interface, 322 smoke exhaust port, 323 battery, 324 driving motor, 325 flow guide cover, 3251 air outlet, 3252 air inlet, 3253 limiting clamp, 3254 air exhaust assembly, 326 screw column limiting part, 3261 inner protrusion, 327 flow guide cavity, 3271 insertion port, 328 female buckle, 329 pot body connecting end, 3291 positioning protrusion, 3292 upper contact, 3293 clamping groove, 33 lower shell, 331 screw hole, 34 PCB circuit board;
[0032] 4 pot body structure, 41 hollow baffle, 42 inner pot body, 43 embedded part, 431 expansion protrusion, 432 limiting protrusion, 433 lower contact, 4331 contact mounting groove, 434 arc-shaped groove, 4341 arc-shaped groove air hole, 44 partition plate, 441 positioning hole, 45 pot body side wall, 451 opening, 452 air inlet, 4521 ventilation hole, 453 temperature measurement cavity, 4531 temperature measurement hole, 454 pot body cavity.
Claims
1. A moxa cone structure for a moxa cone instrument, comprising a horn-shaped main body in communication between upper and lower portions, characterized in that: The horn-shaped body comprises a reduced inner embedding part (43), a tank body side wall (45) with an opening (451) at the bottom and integrated with the embedding part (43), an inner tank body (42) arranged in the tank body side wall (45), and a hollow baffle (41) limited in the inner tank body (42), the inner tank body (42) and the tank body side wall (45) are communicated through an air inlet (452) and a temperature measuring cavity (453), the inner tank body (42) and the tank body side wall (45) form a tank cavity (454) therebetween, an arc-shaped groove (434) is arranged on the embedding part (43), the arc-shaped groove (434) is communicated with the tank cavity (454) through an arc-shaped groove air hole (4341), a contact mounting groove (4331) is arranged on the embedding part (43), and a lower contact (433) with a temperature sensor is embedded therein.
2. The casket structure for the moxibustion instrument according to claim 1, characterized by: More than one expansion protrusion (431) and a plurality of limiting protrusions (432) are circumferentially arranged on the embedding part (43), and the expansion protrusions (431) are located between the limiting protrusions (432).
3. The casket structure for the moxibustion instrument according to claim 1, characterized by: The bottom of the opening (451) is in an arc-shaped symmetrical structure with the middle part being higher than both sides.
Citation Information
Patent Citations
Moxibustion fumigation tank
CN109481291A