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/炭素繊維複合材料が人間の使用に耐えられる程度の強度
炭素繊維複合材料が人間の使用に耐えられる程度の強度 2022-12-13
Carbon fiber composite material, also known as carbon fiber reinforced plastic, has excellent mechanical properties and corrosion resistance. It has been widely used in industrial production, sports and outdoor, medical equipment and other fields. It has good compatibility with human body and can be used as artificial bone, joint, dental root canal post and other implants. Carbon fiber composites are safe and reliable in civil applications.

Carbon fiber vs. carbon fiber composite

In real life, many people tend to confuse the concept of carbon fiber and carbon fiber composite materials.

Carbon fiber is not used directly in aerospace and civil fields, but carbon fiber composite materials. Carbon fiber composites, also known as carbon fiber reinforced plastics, are composed of carbon fiber and resin matrix. So outside of the manufacturing process, people don't touch carbon fiber at all. They touch a resin matrix, which is no different from common plastic products.

Carbon fiber composites are widely used

Carbon fiber composites have been widely used in civil fields, and their popularity in foreign markets is far greater than that in China.

Industrial production

Carbon fiber composites are widely used in various corrosion resistant pipe containers, aircraft, ships and vehicle structural parts in industrial production.




Outdoor sports
Carbon fiber composites are also widely used in outdoor sports products such as badminton rackets, tennis rackets, fishing rods, bicycles and tents.


Medical apparatus and equipment

In the field of medical instruments, it is used to make mobile platform for X-ray examination instrument by its full transmission of X-ray. Using CFRP's excellent mechanical properties, it has been used in the manufacture of orthopedic and organ transplantation and other medical devices, as well as the manufacture of prosthetics, orthotics and other rehabilitation products.




Carbon fiber composites are used extensively in the human body

At present, some companies have developed artificial bones and joints made of carbon fiber composite materials. The bending strength of this artificial bone is closer to that of real human bone than that of artificial bone made of other biological materials, which is of great significance to orthopedic medicine. The wear resistance of the artificial joint made of it at the movable joint is also higher than that of ultrahigh molecular weight polyethylene and metal products.




より優れた生体適合性
現在、炭素繊維複合材料は、骨内固定プレート、骨充填材、股関節茎、インプラント歯根、頭蓋骨修復材料、人工心臓材料に広く使用されています。人間の骨の曲げ強度は約100Mpa、曲げ弾性率は7~20Gpa、引張強度は約150Mpa、引張弾性率は約20Gpaです。炭素繊維複合材料の曲げ強度は約89Mpa、曲げ弾性率は27Gpa、引張強度は約43Mpa、引張弾性率は約24Gpaであり、人間の骨の強度に近いかそれを超えています。



カーボンファイバープロテーゼ

最新の補綴物、特に炭素繊維複合材料はより機能的で軽量であるという利点に加えて、損傷に対する安全性の点でも優れた性能を発揮します。




優れた性能を備えた炭素繊維複合材は、民間の日常生活に広く使用されています。何十年にもわたって使用された後でも、それらは環境と人間の健康に対して安全で信頼性があります。医療技術の継続的な進歩に伴い、医療機器も常に革新と開発が行われており、医療機器への炭素繊維の応用は新たな傾向と方向性を示しています。炭素繊維複合材料が人間の使用に耐えられる程度の強度。




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