Graphene plastic water container beneficial to changing water molecule groups

文档序号:1900411 发布日期:2021-11-30 浏览:4次 中文

阅读说明:本技术 一种有利于改变水分子团的石墨烯塑料盛水器皿 (Graphene plastic water container beneficial to changing water molecule groups ) 是由 何卫东 黄丽 于 2021-09-01 设计创作,主要内容包括:本发明公开了一种有利于改变水分子团的石墨烯塑料盛水器皿,其石墨烯塑料采用石墨烯5份、塑料100份、扩散油5份的配比进行600r/min转速,搅拌60min,获得石墨烯塑料混合材料,将石墨烯塑料混合材料进入注塑机进行注塑加工成盛水器皿,温度控制在280℃-320℃,注塑加工的盛水器皿模具采用注塑出圆柱形的杯、碗、瓶、桶、罐、壶的任意一种器皿模具。通过本方案配比加工的石墨烯塑料混合材料及注塑加工的盛水器皿能够释放4-14??m波段的远红外线,该波段的远红外线对水分子团的氢键进行不断拆解,形成水分子水量较少的小分子团水,小分子团水的饮用有利于人体细胞吸收和利用,有利于人体健康。(The invention discloses a graphene plastic water container beneficial to changing water molecular groups, wherein graphene plastic is mixed for 60min at a speed of 600r/min by adopting a ratio of 5 parts of graphene, 100 parts of plastic and 5 parts of diffusion oil to obtain a graphene plastic mixed material, the graphene plastic mixed material is fed into an injection molding machine to be injection molded into the water container, the temperature is controlled to be 280-320 ℃, and a water container mold for injection molding processing adopts any container mold for injection molding of a cylindrical cup, bowl, bottle, barrel, tank and kettle. Graphene plastic mixed material processed according to the scheme and water containing vessel processed by injection molding can release far infrared rays of 4-14 mu m wave bands, the far infrared rays of the wave bands are continuously disassembled from hydrogen bonds of water molecule groups, small molecule group water with less water amount of water molecules is formed, and drinking of the small molecule group water is beneficial to absorption and utilization of human cells and is beneficial to human health.)

1. The graphene plastic for preparing the water container is characterized in that: the graphene plastic comprises the following components in parts by weight: 5 parts of graphene, 100 parts of plastic and 5 parts of diffusion oil.

2. The graphene plastic for preparing the water container according to claim 1, wherein: the graphene is any one of alkylated graphene, aminated graphene and oxidized graphene, and is in a powder shape.

3. The graphene plastic for preparing the water container according to claim 1, wherein: the plastic is any one of PP plastic, PC plastic and PET plastic, extruded into strips and then cut into particles.

4. The graphene plastic for preparing the water container according to claim 1, wherein: the ammonia value of the diffusion oil is as follows: ≦ 2 mgKOH/g; density: 850 kilograms per m 3; flash point: 280 ℃; viscosity: 500-1000 mPas; acid value: ≦ 4 mgKOH/g; dispersity: |.

5. The method for preparing the graphene plastic and the water container according to claim 1, wherein the method comprises the following steps:

s1, adding the graphene, the plastic and the diffusion oil into a rapid stirrer to rapidly stir and mix, wherein the stirring speed is 600r/min, and the stirring time is 60min, so as to obtain a mixture of the graphene and the plastic for later use;

s2: and (3) pouring the mixture of the graphene and the plastic prepared in the step S1 into an injection molding machine, controlling the temperature at 280-320 ℃, feeding the mixture of the graphene and the plastic in a molten state into a water container mold, performing injection molding, cooling molding, and cleaning to finish the preparation of the graphene plastic water container.

6. The method for preparing graphene plastic and water containing vessel according to claim 5, wherein the method comprises the following steps: the water container mould is any one of a cup, a bowl, a bottle, a barrel, a pot and a kettle which are made into a cylindrical shape.

Technical Field

The invention relates to the technical field of water-containing vessel materials, in particular to a graphene plastic water-containing vessel beneficial to changing water molecule groups.

Background

Water of nature is not present as a single water molecule (H2O), and the water molecule H2O, which cannot be changed in size, is composed of two hydrogen atoms H and one oxygen atom 0. However, water molecules do not exist independently, a relationship between a hydrogen atom in one water molecule and an oxygen atom in an adjacent water molecule is called hydrogen bond (hydrogen bond), and the water molecule are attracted to each other by virtue of the hydrogen bond and exist in a cohesive manner. The V-shaped structure of HOH molecules and the polarity of 0-H bonds result in asymmetric distribution of charges, and the polarity degree generates attraction among water molecules, so that the water molecules are associated together to a considerable degree to form water molecule clusters, commonly called water molecule groups. The nutrients such as protein, carbohydrate, fat and the like which are taken in from food every day are all macromolecular structures, and biological micromolecules can be absorbed and utilized by cells in a human body only through the catalytic action of active enzymes in the human body. The water with a large molecular group structure is difficult to enter human cells, and only the water with a small molecular group with a certain structure can enter the cells to participate in life metabolic activities.

The water is usually a water molecule group consisting of more than 12 water molecules, called macromolecular group water or dead water, such as rainwater, lake water, tap water, bottled water, purified water and distilled water. The natural small molecular group water consists of 5-8 water molecules, and the small molecular group water is active water with high permeability, high diffusibility and high dissolving power, can bring more water and nutrition into cells, and simultaneously better discharges waste and poisons. Since the small molecular group water is more easily absorbed and utilized by each cell in the body, the biological utilization rate of the small molecular group water is much higher than that of common water, and the small molecular group water can enhance the efficiency and the function of metabolism, enhance the information transfer between each cell and surrounding tissue mechanisms, obviously improve the transmission supply of nutrients in the whole body, improve the oxygen transport capacity of the whole body and the like.

Under rare natural conditions, small molecular group water is formed, such as water in a longevity village, natural flowing non-polluted spring water, original glacier water, and water which is all small molecular group, and is also called as live water. However, because the small molecular group water has small particle size and poor stability, the small molecular group water can be aggregated to form the large molecular group water within 4 hours after leaving the water source generally, and the original effect is lost.

Water storage equipment or utensils used for disassembling water molecule groups on the market need to change the water molecule groups under the action of electric force. If the environment is in a power shortage environment, the effect cannot be achieved. The disadvantage is that the water which is decomposed into small molecular groups is not drunk for a certain time and is finally reduced into the state of large molecular group water. Thus, it is disadvantageous in terms of environmental protection and energy saving.

Disclosure of Invention

In order to overcome the defects of the prior art, the invention provides the water container which is made of the mixed material consisting of the graphene and the plastic and is beneficial to changing water molecule groups, the water container does not need any assistance at normal temperature, effectively releases far infrared rays, vibrates the water molecule groups in a wave band of 4-14 mu m, and then disassembles the water molecule groups to form a small water molecule group water structure with less water molecule quantity. Meanwhile, macromolecule cluster water in a vessel continuously releasing far infrared rays is continuously disassembled, so that the original macromolecule cluster water state cannot be restored.

The technical scheme adopted by the invention is as follows: the graphene plastic for preparing the water container comprises the following components in parts by weight: 5 parts of graphene, 100 parts of plastic and 5 parts of diffusion oil.

The graphene is any one of alkylated graphene, aminated graphene and oxidized graphene, and is in a powder shape.

The plastic is any one of PP plastic, PC plastic and PET plastic, extruded into strips, and then cut into granules.

The ammonia value of the diffusion oil is as follows: ≦ 2 mgKOH/g; density: 850 kilograms per m 3; flash point: 280 ℃; viscosity: 500-1000 mPas; acid value: ≦ 4 mgKOH/g; dispersity: |.

The method for preparing the graphene plastic and the water container comprises the following steps:

and S1, adding the graphene, the plastic and the diffusion oil into a rapid stirrer for rapid stirring, wherein the stirring speed is 600r/min, and the stirring time is 60min, so as to obtain a mixture of the graphene and the plastic for later use.

S2: and (3) pouring the mixture of the graphene and the plastic prepared in the step S1 into an injection molding machine, controlling the temperature at 280-320 ℃, feeding the mixture of the graphene and the plastic in a molten state into a water container mold, performing injection molding, cooling molding, and cleaning to finish the preparation of the graphene plastic water container.

The water container mould is any one of a cup, a bowl, a bottle, a barrel, a pot and a kettle which are made into a cylindrical shape.

The invention has the beneficial effects that: the material through 5 parts of graphene, 100 parts of plastics, 5 parts of diffusion oil ratios is stirred at a high speed, the graphene and plastic mixed material obtained after high-speed stirring is injected into a water containing vessel through an injection molding machine, and the water containing vessel body material is mixed with the far infrared rays which can be released from 4-14 mu m wave bands under the condition that the graphene can not need to be heated and power is not consumed. The hydrogen bonds between water molecules are atomic chemical bonds, but molecular bonds between water molecules are long, and the bonds are small and easy to break. The energy of the hydrogen bonds is just within the photon energy of the far infrared region of 4-14 mu m, and water molecules are enabled to generate resonance and resonance in the far infrared wave band of 4-14 mu m, so that the vibration of the water molecule groups is increased, and then the hydrogen bonds of the water molecule groups are disassembled to form a small water molecule group structure with less water molecule quantity. Meanwhile, the macromolecular group water in the water container continuously releasing far infrared rays is continuously disassembled, so that the original macromolecular group water state cannot be restored. Therefore, the graphene plastic mixed material prepared by the scheme and the water container prepared by the mixed material are beneficial to changing water molecular groups and generating small molecular group water, and healthy drinking water beneficial to absorption and utilization of human body cells is obtained.

Detailed Description

The present invention will be further described with reference to the following examples.

The invention relates to a graphene plastic water container beneficial to changing water molecule groups, which mainly relates to a formula and a processing method for preparing a graphene plastic mixed material and a technical scheme for processing the graphene plastic mixed material into the water container.

The graphene plastic mixed material comprises the following components in parts by weight: 5 parts of graphene, 100 parts of plastic and 5 parts of diffusion oil.

Preferably, the graphene is any one of alkylated graphene, aminated graphene and oxidized graphene, and the graphene is in a powder shape.

Preferably, the plastic is any one of PP plastic, PC plastic and PET plastic, extruded into strips, and then cut into granules.

Preferably, the diffusion oil has an ammonia value: ≦ 2 mgKOH/g; density: 850 kilograms per m 3; flash point: 280 ℃; viscosity: 500-1000 mPas; acid value: ≦ 4 mgKOH/g; dispersity: |.

The method for preparing the graphene plastic and the water container comprises the following steps:

and S1, adding the graphene, the plastic and the diffusion oil into a rapid stirrer for rapid stirring, wherein the stirring speed is 600r/min, and the stirring time is 60min, so as to obtain a mixture of the graphene and the plastic for later use.

S2: and (3) pouring the mixture of the graphene and the plastic prepared in the step S1 into an injection molding machine, controlling the temperature at 280-320 ℃, feeding the mixture of the graphene and the plastic in a molten state into a water container mold, performing injection molding, cooling molding, and cleaning to finish the preparation of the graphene plastic water container.

Preferably, the water container mold is any one of a cup, a bowl, a bottle, a barrel, a pot and a kettle which are made into a cylindrical shape.

Make columniform cup, bowl, bottle, bucket, jar, flourishing water household utensils such as kettle through above-mentioned scheme, flourishing water household utensils body is by the graphite alkene plastics new material that plastic granules material premix graphite alkene made, this new material is because graphite alkene mixes in plastics the inside, this flourishing water household utensils can release far infrared, the far infrared is disassembled to the hydrogen bond of the molecular group of the hydrone of water connection hydrone, disassemble macromolecular group water for little molecular group water, little molecular group water is easy to be absorbed by the human body, it is favorable to human health, so graphite alkene plastics mixed material preparation method and flourishing water household utensils by this material that put forward with this scheme have positive meaning, be fit for using widely.

The above description is only for the preferred embodiment of the present invention, but the scope of the present invention is not limited thereto, and any person skilled in the art should be considered to cover the technical scope of the present invention, the technical solutions of the present invention and the inventive concept thereof, which are equivalent or obvious changes, within the technical scope of the present invention.

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