High-efficient moxibustion post ignition
Technical Field
The utility model belongs to the technical field of the moxa-moxibustion, concretely relates to high-efficient moxa-moxibustion post ignition.
Background
Moxibustion is a physical therapy method which uses moxa heat generated by moxa-moxibustion materials made of folium artemisiae argyi to stimulate acupuncture points or specific parts on the body surface and regulate the physiological and biochemical functions of human body disorder by exciting the movement of meridian qi, thereby achieving the purposes of preventing and treating diseases. Moxibustion is generally performed by igniting a moxibustion column and then fumigating a desired part with the ignited moxibustion column in hand.
In the prior art, the ignition method of the moxibustion column is usually that an operator holds the moxibustion column by hand, and then puts the moxibustion column above an ignition mechanism such as a lighter or a candle to perform the ignition operation. This in-process, the operator need light a fire by holding the moxa-moxibustion post for a long time, when needs light the moxa-moxibustion post in a large number, and not only working strength is big, and work efficiency is low, in addition, because the moxa-moxibustion post process of lighting a fire is lighted by root, can't realize many acupuncture points and begin the moxa-moxibustion simultaneously in step, has influenced the physiotherapy efficiency of moxa-moxibustion post.
Therefore, there is still a need for an ignition device that can reduce the labor intensity of the operator, improve the work efficiency, and realize simultaneous ignition of a plurality of moxibustion sticks.
SUMMERY OF THE UTILITY MODEL
For solving prior art, there is the problem of inefficiency when many moxa-moxibustion posts light, the utility model aims to provide a high-efficient moxa-moxibustion post ignition.
In order to achieve the above purpose, the utility model adopts the following technical scheme
An efficient moxibustion column ignition device comprises
The base is provided with a cylindrical groove which penetrates through the upper surface of the base;
the ignition mechanism is arranged in the base and is in contact with the lower end of the cylindrical groove, and the ignition mechanism ignites a moxibustion column in contact with the ignition mechanism after heating;
a power source electrically connected to the ignition structure.
Preferably, the ignition mechanism is an electric heating rod.
Preferably, the cylindrical grooves are arranged in a vertical direction.
When in ignition, the moxibustion column is inserted into the bottom of the cylindrical groove and contacts with the ignition mechanism, and after the power supply is turned on, the ignition mechanism generates heat to ignite the moxibustion column. The number of the cylindrical grooves can be several, and a plurality of moxibustion columns can be ignited at the same time.
Further preferably, still be provided with fixed bolt post and altitude mixture control board on the base, be provided with on the bolt post with bolt post swing joint's adjusting nut, be provided with on the altitude mixture control board with the bolt hole that the bolt post corresponds, the altitude mixture control board passes through the bolt post with the connection can be dismantled to the base, be provided with on the altitude mixture control board and link up altitude mixture control board, with the through-hole that cylindrical groove corresponds.
When the moxa-moxibustion post length is longer, height-adjusting plate plays the effect of stabilizing the moxa-moxibustion post.
Preferably, the cylindrical grooves are arranged in an inclined direction.
Ignition mechanism set up in the base, with the lower extreme in cylindrical groove contacts, ignition mechanism will light rather than the moxa-moxibustion post of contact through generating heat. When the cylindrical groove is vertically arranged, the whole surface of the bottom of the moxibustion column is contacted with the ignition mechanism after the moxibustion column is inserted into the cylindrical groove; when the cylindrical groove is obliquely arranged, after the moxibustion column is inserted into the cylindrical groove, only the bottom edge part of the moxibustion column is contacted with the ignition mechanism, the contact area is smaller, and the ignition speed is higher due to the tip effect. The tip effect refers to the physical effect that the sharper any object is, the stronger the force is, the more intense the physical effect is, such as force, heat, light, electricity and magnetism.
Preferably, the inclined direction forms an angle of 60 degrees with the horizontal direction, and the angle is a preferable angle, so that the moxibustion pole is ensured not to topple while the tip effect is generated.
Preferably, a switch is further disposed on an outer wall of the base, and the switch is electrically connected to the ignition mechanism and the power supply, respectively.
The beneficial effects of the utility model
1. The utility model provides a high-efficient moxa-moxibustion post ignition device, realized the function of lighting many moxa-moxibustion posts simultaneously, alleviateed operator's intensity of labour, improved work efficiency;
2. the utility model provides a high-efficient moxa-moxibustion post ignition device can ignite moxa-moxibustion posts of different lengths, when the cylindrical groove is set up for vertical direction, can add the height-adjusting plate to guarantee the stability when longer moxa stick ignites;
3. when the cylindrical groove is obliquely arranged, the contact surface of the moxibustion column and the ignition structure is smaller, and the ignition speed is higher due to the tip effect.
Drawings
Fig. 1 is a schematic view of an ignition device of embodiment 1.
Fig. 2 is a schematic view of an ignition device of embodiment 2.
Fig. 3 is a schematic view of an ignition device of embodiment 3.
Detailed Description
In order to make the above objects, features and advantages of the present invention more comprehensible, embodiments of the present invention are described in detail below with reference to the accompanying drawings. In the following description, numerous specific details are set forth in order to provide a thorough understanding of the present invention. The invention can be embodied in many other forms than those specifically described herein, and it will be apparent to those skilled in the art that similar modifications can be made without departing from the spirit and scope of the invention.
It will be understood that when an element is referred to as being "secured to" another element, it can be directly on the other element or intervening elements may also be present. When an element is referred to as being "connected" to another element, it can be directly connected to the other element or intervening elements may also be present. The terms "vertical," "horizontal," "left," "right," and the like as used herein are for illustrative purposes only and do not represent the only embodiments.
Unless defined otherwise, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention belongs. The terminology used in the description of the invention herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention. As used herein, the term "and/or" includes any and all combinations of one or more of the associated listed items.
Example 1
The present example provides a high efficiency moxibustion column ignition device, as shown in figure 1, comprising
The base 10 is provided with a cylindrical groove 110 penetrating through the upper surface of the base 10;
an ignition mechanism 20, wherein the ignition mechanism 20 is arranged in the base 10 and is contacted with the lower end of the cylindrical groove 110;
a power source electrically connected to the ignition mechanism 20 (not shown).
Wherein the ignition mechanism 20 is an electric bar. The cylindrical grooves 110 are arranged in a vertical direction.
The ignition mechanism 20 is arranged in the base 10 and is in contact with the lower end of the cylindrical groove 110, during ignition, the moxibustion column is firstly inserted into the bottom of the cylindrical groove 110 and is in contact with the ignition mechanism 20, and after the power supply is turned on, the ignition mechanism 20 generates heat to ignite the moxibustion column. The number of the cylindrical grooves 110 is several, and a plurality of moxibustion sticks can be ignited at the same time.
Example 2
This example provides a high-efficiency moxibustion column ignition device suitable for a long moxibustion column, as shown in FIG. 2, comprising
The base 10 is provided with a cylindrical groove 110 penetrating through the upper surface of the base 10;
an ignition mechanism 20, wherein the ignition mechanism 20 is arranged in the base 10 and is contacted with the lower end of the cylindrical groove 110;
a power source electrically connected to the ignition mechanism 20 (not shown).
Wherein the ignition mechanism 20 is an electric bar. The cylindrical grooves 110 are arranged in a vertical direction.
Still be provided with fixed bolt post 120 and height-adjusting plate 130 on base 10, be provided with on the bolt post 120 with bolt post 120 swing joint's adjusting nut 140, be provided with on the height-adjusting plate 130 with the bolt hole 150 that bolt post 120 corresponds, height-adjusting plate 130 passes through bolt post 120 with the connection can be dismantled to base 10, be provided with on the height-adjusting plate 130 and link up height-adjusting plate 130, with the through-hole 160 that cylindrical groove 110 corresponds. The height adjustment plate 130 serves to stabilize the moxibustion column when the moxibustion column is long.
Example 3
This example provides a high efficiency moxibustion column ignition device with inclined cylindrical slots, as shown in figure 3, comprising
The base 10 is provided with a cylindrical groove 110 penetrating through the upper surface of the base 10;
an ignition mechanism 20, wherein the ignition mechanism 20 is arranged in the base 10 and is contacted with the lower end of the cylindrical groove 110;
a power source electrically connected to the ignition mechanism 20 (not shown).
Wherein the ignition mechanism 20 is an electric bar.
The cylindrical grooves 110 are arranged in an inclined direction, and the included angle between the inclined direction and the horizontal direction is 60 degrees.
The outer wall of the base 10 is further provided with a switch, and the switch is electrically connected with the ignition mechanism and the power supply respectively.
When the cylindrical groove 110 is formed obliquely, only the bottom edge portion of the moxibustion pole is in contact with the ignition mechanism 20 after the moxibustion pole is inserted into the cylindrical groove 110, the contact area is smaller, and the ignition speed is faster due to the tip effect. The tip effect refers to the physical effect that the sharper any object is, the stronger the force is, the more intense the physical effect is, such as force, heat, light, electricity and magnetism.
The utility model provides a high-efficient moxa-moxibustion post ignition device, realized the function of lighting many moxa-moxibustion posts simultaneously, alleviateed operator's intensity of labour, improved work efficiency; the device can also ignite moxibustion columns with different lengths, and when the cylindrical groove is arranged in the vertical direction, a height adjusting plate can be additionally arranged so as to ensure the stability of the longer moxa stick during ignition; when the cylindrical groove is obliquely arranged, the contact surface of the moxibustion column and the ignition structure is smaller, and the ignition speed is higher due to the tip concentration effect.
The above-mentioned embodiments only represent some embodiments of the present invention, and the description thereof is specific and detailed, but not to be construed as limiting the scope of the present invention. It should be noted that, for those skilled in the art, without departing from the spirit of the present invention, several variations and modifications can be made, which are within the scope of the present invention. Therefore, the protection scope of the present invention should be subject to the appended claims.