Preparing method of moxibustion patch with graphene skeleton

A graphene skeleton and moxa sticking technology, applied in the direction of heating/cooling reflection point instruments, etc., can solve the problems of high production cost, short effective time, poor effect, etc., and achieve good surface lubricity and good skin-friendly. Effect

Active Publication Date: 2017-11-10
青岛卓护医疗用品有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] However, in the prior art, the really effective moxibustion is mainly operated manually by people with many years of experience. The convenient and fast moxibustion sticks are mostly mechanically combined with mugwort leaves and film, which is not effective, and there is no supporting heat and magnetic action, and it is easy to Harm the skin, take effect for a short time and have poor durability. At the same time, some moxibustion stickers with high production costs cannot be recycled and cause great waste.

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0023] A method for making graphene skeleton moxa paste, comprising the following steps:

[0024] 1) Preparation of graphene skeleton

[0025] ① A single carbon fiber with a diameter of 5 μm is used to weave a 12-layer net using the fishing net stitch method, and the mesh gap is controlled to 0.2mm. When weaving, every 4 layers are used as a composite layer to obtain a three-layer composite carbon fiber mesh with two empty bags inside. ;

[0026] ②Place the woven carbon fiber mesh in an aerobic environment at 580°C for 3.5 hours to obtain a pre-oxidized carbon fiber mesh;

[0027] ③Slowly sink the pre-oxidized carbon fiber web obtained in step ② into concentrated sulfuric acid with a concentration of 98% to obtain the first mixed solution;

[0028] ④ Slowly add potassium permanganate powder 5.5 times the total mass of the original carbon fiber to the first mixed solution obtained in step ③, and slowly stir with a glass rod for 2.5 hours to obtain the second mixed solution; ...

Embodiment 2

[0039] The whole is consistent with Example 1, the difference is:

[0040] 1) Preparation of graphene skeleton

[0041] ①A single carbon fiber with a diameter of 5 μm is woven into a net with a 9-layer structure by the fishing net stitch method, and the mesh gap is controlled to 0.1 mm. When weaving, each 3 layers are used as a composite layer to obtain a three-layer composite carbon fiber mesh with two empty bags inside. ;

[0042] ②Place the woven carbon fiber mesh in an aerobic environment at 550°C for 3 hours to obtain a pre-oxidized carbon fiber mesh;

[0043] ④ Slowly add potassium permanganate powder 5 times the total mass of the original carbon fiber to the first mixed solution obtained in step ③, and slowly stir with a glass rod for 2 hours to obtain the second mixed solution;

[0044] ⑥ Slowly add pure water dropwise into the second mixed solution, the adding speed is controlled so that the temperature of the liquid in the container is not higher than 40°C, and the...

Embodiment 3

[0048] The whole is consistent with Example 1, the difference is:

[0049] 1) Preparation of graphene skeleton

[0050] ① A single carbon fiber with a diameter of 7 μm is used to weave a 15-layer net using the fishing net stitch method, and the mesh gap is controlled to be 0.3mm. When weaving, every 5 layers are used as a composite layer to obtain a three-layer composite carbon fiber mesh with two empty bags inside. ;

[0051] ②Place the woven carbon fiber mesh in an aerobic environment at 600°C for 3.5 hours to obtain a pre-oxidized carbon fiber mesh;

[0052]④ Slowly add potassium permanganate powder 6 times the total mass of the original carbon fiber to the first mixed solution obtained in step ③, and slowly stir with a glass rod for 3 hours to obtain the second mixed solution;

[0053] ⑥ Slowly add pure water dropwise into the second mixed solution, the adding speed is controlled so that the temperature of the liquid in the container is not higher than 40°C, and the tota...

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Abstract

The invention relates to a preparing method of a moxibustion patch with a graphene skeleton. The method particularly includes the steps that carbon fibers serve as raw materials, and through three stages of preliminary oxidation, concentrated-sulfuric-acid and potassium-permanganate oxidation and hydrogen-peroxide final oxidation and the like, fully oxidized graphite oxide is obtained; then, through a strong reductant vitamin C, the harmless graphene skeleton with a healthcare effect is obtained; finally, the moxibustion patch is obtained by filling the graphene skeleton with quick lime and aged argy-wormwood-leaf dust, wherein heat is generated when the quick lime makes contact with water, and the aged argy-wormwood-leaf dust which is stocked for 3-5 years has the optimal thermal moxibustion effect. The moxibustion patch with the graphene skeleton is good in skin affinity, convenient to use, long in duration, significant in effect and capable of being recycled.

Description

technical field [0001] The invention relates to the field of medicinal products, in particular to a method for manufacturing graphene-skeleton moxa paste. Background technique [0002] Moxibustion: Moxibustion in Chinese acupuncture and moxibustion therapy. It is a natural therapy that burns moxa sticks and moxa sticks made of moxa leaves, and smokes and roasts the acupuncture points of the human body to achieve health care and cure diseases. Moxibustion originated in ancient China. Because its mechanism of action is similar to that of acupuncture and has complementary therapeutic effects with acupuncture, acupuncture and moxibustion are usually used together, so it is called acupuncture. It is a treatment method that stimulates acupuncture points or specific parts on the body surface by moxibustion materials made of moxa leaves, and adjusts the disordered physiological and biochemical functions of the human body by stimulating the activity of meridian qi, so as to achieve ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): A61H39/06
Inventor 贺虎宋建青
Owner 青岛卓护医疗用品有限公司
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