Revealing The Mystery Of Intelligent Conductive Fibers In Blood
Early University of Michigan successfully developed the electrical conductivity of the detected blood.
Smart Fiber
They can make use of the fabric made of this fabric to detect blood and monitor their health.
Widely used for military purposes:
Soldiers, firefighters or police officers who are injured on the battlefield may not send information for help to the command post due to loss of consciousness.
A patient whose health is at a critical limit can not tell the doctor about his condition.
But the clothes they wear on their body can solve the problem by testing the blood.
When the wounded soldier leaves the blood for several minutes, the blood flows from the flowing sol state to a non flowing colloidal clot. This process is called blood coagulation or hemagglutination.
During coagulation, the fibrin source in plasma changes to insoluble blood fiber.
Blood fibers interweave and form a lot of blood cells to form blood clots.
1-2 hours after blood clotting, the blood clot retracts and releases a pale yellow liquid called serum.
The difference between serum and plasma is that the former lacks fibrinogen and a small amount of other plasma proteins involved in hemagglutination, but adds a small amount of substance released from platelets during hemagglutination.
Plasma contains various substances that cause clotting, so blood can be extracted and put into glass tube to coagulate.
There are also substances that prevent blood clotting in plasma, called anticoagulant substances (anticoagulant).
Blood can remain in the blood vessels, and for other reasons, anticoagulants play an important role.
There are some substances in the blood vessels that can decompose blood fibers. These substances form fibrin lysis system (fibrinloytic system).
In physiological hemostasis, blood coagulation, anticoagulation and fibrinolysis cooperate with each other, effectively preventing blood loss and maintaining blood flow in the blood vessels.
principle
Secret:
Researchers at University of Michigan have provided feasible solutions using nanotechnology, and researchers have proposed new intelligent yarn manufacturing processes, which have the function of guiding current.
These yarns can effectively weave soft fabrics and make them into garments.
These garments can detect blood and monitor health.
In the manufacturing process, the polymer is dissolved in three fluoro ethanol organic solvent and stirred until it is completely dissolved. The cotton yarn with a diameter of 1.5 mm is immersed in the sticky polymer for several times and dried, so that the yarn can conduct electricity from the battery and let the two pole Guan Zhaoming device shine.
Because
Carbon nanotubes
The conductivity of cotton becomes conductive material.
Cotton yarn remained soft after the process was completed.
Compared with the current designed fabric, this kind of cotton yarn has been greatly improved.
The only change in cotton yarn is that the cotton yarn becomes black due to the presence of carbon.
How do these garments detect blood and monitor health?
The principle is to prevent albumin from reacting with albumin and discover proteins in the blood.
When the albumin is injected into the albumin, the electrical conductivity is increased, and it is connected with the communication equipment. Even if the soldier is injured and unconscious, he can not be saved, and the communication equipment such as cell phone can pmit the information to the command post.
There are many advantages:
These fabrics produced by smart yarns can be used in high-risk areas.
A dangerous policeman, a fireman injured at work, a soldier wounded at the front line, may not be able to send out information for help, but clothes filled with smart yarns will be able to do this.
Clothes can be designed and stored according to needs. These energy sources can start small electronic devices.
A mobile phone or any other form of communication equipment attached to clothing pfers information to a command post.
It can also be used to monitor healthy clothing.
As a functional garment, its application is promising and profitable.
Current sensitive clothing made of smart conductive fibers can be adapted to various potential risks.
At present, intelligent fabrics are made of metal or optical fiber.
They wear quickly, crisp, and are uncomfortable to wear.
Such textiles are often in trouble in laundry.
The innovative way of intelligent conductive fiber is to solve the problem of textile industry.
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