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Health care composite material and preparation method thereof

A technology of composite materials and metal materials, which is applied in the field of health care composite materials and its preparation, can solve the problems of limited application, chronic poisoning of human body, etc., and achieve the effect of improved content

Inactive Publication Date: 2019-06-18
HEBI PUXIN MAGNESIUM PROD IND & TRADE
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The risk of chronic toxicity to the human body after the dissolution of Cr, Ni and other elements in the stainless steel liner greatly limits its application

Method used

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  • Health care composite material and preparation method thereof
  • Health care composite material and preparation method thereof

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0065] A health care composite material, comprising the following components by weight percentage: 1% high-purity calcium, 30% high-purity zinc, 0.2% high-purity selenium, 5% high-purity iron, 1% high-purity copper, and the balance is high-purity magnesium. The purity is above 99.99%.

[0066] The preparation method of the above-mentioned health care composite material comprises the following steps:

[0067] (1) Preheat high-purity calcium, high-purity magnesium, high-purity zinc, high-purity iron, and high-purity copper to 350°C, high-purity iron and high-purity copper to 950°C, and high-purity selenium by baking in a baking oven. Heat to 110°C to get the preheated raw materials, set aside;

[0068] (2) Preheat the first vacuum muffle furnace to 300°C, then put the high-purity magnesium preheated in step (1) into the furnace to melt, add high-purity selenium when the high-purity magnesium melts into liquid, and stir for 15 minutes; Then heat up to 710°C, add high-purity zin...

Embodiment 2

[0078] A health care composite material, comprising the following components by weight percentage: 35% high-purity calcium, 1% high-purity zinc, 1% high-purity selenium, 3.5% high-purity iron, 2% high-purity copper, and the balance is high-purity magnesium. The purity is above 99.99%.

[0079] The preparation method of the above-mentioned health care composite material comprises the following steps:

[0080] (1) Preheat high-purity calcium, high-purity magnesium, high-purity zinc, high-purity iron, and high-purity copper to 250°C, high-purity iron and high-purity copper to 1000°C, and high-purity selenium by baking in a baking oven. Heat to 90°C to get the preheated raw materials and set aside;

[0081] (2) Preheat the first vacuum muffle furnace to 400°C, then put the high-purity magnesium preheated in step (1) into the furnace to melt, add high-purity selenium when the high-purity magnesium melts into liquid, and stir for 5 minutes; Then heat up to 720°C, add high-purity z...

Embodiment 3

[0091] A health care composite material, comprising the following components by weight percentage: 35% high-purity calcium, 20% high-purity zinc, 0.5% high-purity selenium, 4% high-purity iron, 1.5% high-purity copper, and the balance is high-purity magnesium. The purity is above 99.99%.

[0092] The preparation method of the above-mentioned health care composite material comprises the following steps:

[0093] (1) Preheat high-purity calcium, high-purity magnesium, high-purity zinc, high-purity iron, and high-purity copper to 300°C, high-purity iron and high-purity copper to 980°C, and high-purity selenium by baking in a baking oven. Heat to 100°C to get the preheated raw materials and set aside;

[0094] (2) Preheat the first vacuum muffle furnace to 350°C, then put the high-purity magnesium preheated in step (1) into the furnace to melt, add high-purity selenium when the high-purity magnesium melts into liquid, and stir for 10 minutes; Then heat up to 715°C, add high-puri...

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Abstract

The invention discloses a health care composite material and a preparation method thereof. Indispensable micro calcium, magnesium, zinc, selenium, iron and copper needed for human bodies are adopted as the main raw materials for preparing the composite material; according to experiment proportions, the optimal experiment data and effective benefits to the human body functions are sought; by processing the composite material into articles, such as cookware, used by people every day, the trace element contents of people are greatly improved; and in addition, in the long-term using process of thearticles, for example, after the cookware is heated under a high temperature, cooked food contains a little bit of calcium, magnesium, zinc, selenium, iron and copper. The composite material is simple in preparation process, low in preparation cost, suitable for industrial large-batch production, and capable of effectively supplementing the trace elements such as calcium, magnesium, zinc, selenium, iron and copper lacking in the human bodies, improving the human immunity and lowering the morbidity rate of microelement deficiency.

Description

technical field [0001] The invention relates to the field of composite material processing, in particular to a health care composite material and a preparation method thereof. Background technique [0002] According to research, long-term use of aluminum products as cooking utensils can lead to excessive intake of aluminum, which is harmful to health and may lead to an increase in the incidence of senile dementia. Aluminum ions can accelerate the aging of the human body or cause senile dementia. Excessive aluminum is a health killer It is understood that aluminum is a low-toxic metal element. It is not a trace element needed by the human body and will not cause acute poisoning. However, if the aluminum contained in food exceeds the national standard, it will cause harm to the human body. After the human body ingests aluminum, only 10%-15% can be excreted outside the body, and most of it will accumulate in the body and combine with various proteins, enzymes and other importan...

Claims

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Application Information

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IPC IPC(8): C22C1/10C22C1/02C22C23/00C22C23/04C22C30/02C22C30/06A47J36/02
Inventor 陈明广陈志鹏
Owner HEBI PUXIN MAGNESIUM PROD IND & TRADE
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