Showing posts with label About. Show all posts
Showing posts with label About. Show all posts

About Magnetic Therapy

Magnetic therapy has been used by a lot of people for over hundreds of years. This belief has been around for a long time, but it is not yet strongly proven to be effective yet. There are some studies that back up this therapy that usually uses bracelets, anklets, rings and other accessories with magnets but those are not yet enough to prove that this is really effective.





This kind of therapy is derived from the belief that our body is composed of charged ions and magnetic fields. These charged ions and magnetic fields occur in a balanced way in our body, but when something happens, like an injury or if you have some illness, this balance will be disturbed and because of this, you will feel pains. Magnetic therapy will then manipulate this to bring back the balance inside our body, decreasing the intensity of pain and healing the illness.





How does magnetic therapy brings back the balance? The balance that will be interrupted by some illnesses and injuries will be brought back by magnetic therapy by increasing the flow of blood on the affected area of the body; the blood will then produce more oxygen on that certain part and with that, the process of healing the injury or the illness naturally will speed up.





What are the good things that you can get with this therapy? Aside from bringing back the balance in your body, increasing the blood flow and speeding up the natural healing process of the body, there are other benefits that can receive from using magnetic therapy. These benefits include;





1. If you are a patient that have not responded well to drug medications and other treatments for the illness that you have, this can give you the effects that are supposed to be given by drug medications.





2. This can improve your immune system. If you have a strong immune system, you can be at low risk to a lot of diseases.





3. This can not likely interact with some other drugs that you are taking.





4. The effects that this can give you are immediate-acting. That means that you can be treated after a few minutes. However, it depends on the level of your disease.





5. Each part of your body can be treated because you can use a piece of jewelry on a certain part of your body that is having some problems.





6. This can heighten your sexual drive because it will activate your pineal gland.





7. A magnetic hematite bracelet can change the levels of the alkaline and acid in your body to make it equal. Although this therapy is not backed up by a lot of strong and relevant studies, many are still using magnetic therapy bracelets and other forms of it to get the good things that it passes to the one who uses it.


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Frequent Questions About Rare Earth Magnets

Rare earth magnets are amazingly strong, despite their small size. Compared to a refrigerator magnet, it can have 5-15 times the level of magnetic energy. It is often used in electronic equipment and industrial fields. The most common types are Samarium Cobalt and Neodymium-Iron-Boron.

The Strongest Magnet

Neodymium-Iron-Boron is currently the strongest of all the rare earths. However, this metal is sensitive to temperature variation and will lose some of its magnetization when exposed to high heat. If the temperature is over 150 Celsius, Samarium Cobalt becomes stronger.

Factors that Affect Strength

The magnetization of a metal is greatly affected by its environment. All magnets are affected by heat, although some have a greater affect than others. Radiation also plays a big role in the magnetic force of a metal. When there is a strong electric current near a magnet, it can cause its strength to either decrease or increase, depending on the type of metal.

Having another magnet nearby may negatively affect its pull properties. Neodymium Iron Boron and other Neo metals will corrode easily if the environment is humid, so manufacturers often add plastic or rubber coating. Vibration and shock generally has no effect on magnets, but if the force is great enough, it can physically damage the metal.

Pull Strength

Magnetic strength will gradually grow weaker as distance increases. If you hold a metal object one millimeter away from a magnet, the force will be much greater than if you were holding it several feet away. All rare earth magnets have their own force-to-distance ratio.

Demagnetization

Materials can be demagnetized and re-magnetized at will. If the metal has not been damaged by excessive heat, it is fairly easy to bring back to its original strength. If a company wants to store a large magnet, they can demagnetize it and then re-magnetize it when they use it again.

Strength Measurement

The strength of a magnet is measured by Pull-Testers, Magnetometers, and Gaussmeters. Both Magnetometers and Gaussmeters use arbitrary units or Gauss for measurement. Pull-Testers use kilograms, pounds, and other units that are easy to understand. A special Gaussmeter can cost several thousand dollars, while the basic version will cost from $400-$1500.

North and South

By standard industry definition, the North Pole of a magnet is the side that seeks the North Pole of the Earth when it is free to rotate. Similarly, the South Pole side of the earth is sought by a South Pole magnet side. Many ancient navigational devices have used magnets to tell direction.

Dangers

Rare earth magnets are very strong, so they should be handled carefully. Do not allow large magnets to snap against steel or it will cause them to crack. Keep them far away from computer monitors, credit cards, hard drives, and other data-transferring electronic equipment.

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Frequent Questions About Rare Earth Magnets

Rare earth magnets are amazingly strong, despite their small size. Compared to a refrigerator magnet, it can have 5-15 times the level of magnetic energy. It is often used in electronic equipment and industrial fields. The most common types are Samarium Cobalt and Neodymium-Iron-Boron.

The Strongest Magnet

Neodymium-Iron-Boron is currently the strongest of all the rare earths. However, this metal is sensitive to temperature variation and will lose some of its magnetization when exposed to high heat. If the temperature is over 150 Celsius, Samarium Cobalt becomes stronger.

Factors that Affect Strength

The magnetization of a metal is greatly affected by its environment. All magnets are affected by heat, although some have a greater affect than others. Radiation also plays a big role in the magnetic force of a metal. When there is a strong electric current near a magnet, it can cause its strength to either decrease or increase, depending on the type of metal.

Having another magnet nearby may negatively affect its pull properties. Neodymium Iron Boron and other Neo metals will corrode easily if the environment is humid, so manufacturers often add plastic or rubber coating. Vibration and shock generally has no effect on magnets, but if the force is great enough, it can physically damage the metal.

Pull Strength

Magnetic strength will gradually grow weaker as distance increases. If you hold a metal object one millimeter away from a magnet, the force will be much greater than if you were holding it several feet away. All rare earth magnets have their own force-to-distance ratio.

Demagnetization

Materials can be demagnetized and re-magnetized at will. If the metal has not been damaged by excessive heat, it is fairly easy to bring back to its original strength. If a company wants to store a large magnet, they can demagnetize it and then re-magnetize it when they use it again.

Strength Measurement

The strength of a magnet is measured by Pull-Testers, Magnetometers, and Gaussmeters. Both Magnetometers and Gaussmeters use arbitrary units or Gauss for measurement. Pull-Testers use kilograms, pounds, and other units that are easy to understand. A special Gaussmeter can cost several thousand dollars, while the basic version will cost from $400-$1500.

North and South

By standard industry definition, the North Pole of a magnet is the side that seeks the North Pole of the Earth when it is free to rotate. Similarly, the South Pole side of the earth is sought by a South Pole magnet side. Many ancient navigational devices have used magnets to tell direction.

Dangers

Rare earth magnets are very strong, so they should be handled carefully. Do not allow large magnets to snap against steel or it will cause them to crack. Keep them far away from computer monitors, credit cards, hard drives, and other data-transferring electronic equipment.


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Magnetic Jewelry Clasp: Find The Truth About It


But there is the disfavor of Magnetic Jewelry clasp, it can catch hair in the turning mechanism.

The inventor is unaware of a magnetic jewelry clasp which also employs a safety catch. Thus, while employing a safety catch with conventional magnetic jewelry clasps would add the benefit of added security, it would also eliminate an advantage offered by such clasps by requiring a user to properly align the sides of the clasp for the clasp to be closed.

To improve upon the conventional jewelry clasp, the invention provides a magnetic jewelry clasp with a safety catch.

The making and breaking of a magnetic attraction force between the two portions of the clasp renders the magnetic jewelry clasp easy to use.

A magnetic jewelry clasp adapter can make your jewelry wearable again, no matter how it closed before.

If you have trouble working standard clasps, a good way to solve this problem is by getting a magnetic jewelry clasp.

In a broad sense, the invention comprises a magnetic jewelry clasp or an article of jewelry comprising such clasp, the main body of the article of jewelry comprising one or more cables, braids, bundled wires or fibers, such that the main body has an inherent curved configuration of a semi-rigid nature.

Thank you for viewing the Magnetic jewelry clasp and article of jewelry info.

magnetic jewelry clasp

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