The
more technology develops, the more we realize that magnetic fields are vital in
our lives. Since the beginning of the discovery of magnetic forces, the
emergence of compasses, to electromagnetism shows that magnets are an integral
part of human civilization. So is the watch. Ladies designer watches are
one of the human inventions that are very essential in helping their activities
and timeless regardless of their shape. However, in making it often watches
require metals with iron content. Given that magnets have properties to attract
iron, magnetic fields can disrupt the function of the watch. The disruption of
the magnetic field then tried to be solved by watchmakers year after year.
At
a watch that is said to be antimagnetic, what is actually meant is that the
movement / drive will not be disturbed by a magnetic field within a certain
limit. If a mechanical watch is exposed to a strong magnetic field for some
time, the watch component can be magnetized and its accuracy can be disrupted.
To overcome this problem, a procedure is usually called demagnetization /
degauss. Whereas in the ladies designer watches watch even when exposed
to the magnetic field its function is disturbed because the magnetic field
interferes with the work of the motor that moves the watch, after exposure to
the strong magnetic field is lost the watch will function as before.
Based
on ISO 764 a watch can be said to be magnetic resistant if it can maintain
accuracy of approximately 30 seconds / day at exposure to a magnetic field of
4800 A / m, slightly stronger than a fridge magnet. So even though a watch has
a case made of stainless steel which can indeed be drawn by a magnetic field,
as long as the functional watch can maintain its accuracy according to the
standard, the watch is still said to be magnetic resistant. Magnetic resistant
4800 A / m is also found in ISO 6425 which is a standard regulation of ladies
designer watches for diver.
Broadly
speaking, designer watch mens sale manufacturers have two ways to create watches that are magnet
resistant. The first is to wear material that is more insensitive to magnetic
fields. It is said that this is the first method applied in the watch industry.
In 1846, started by Vacheron Constantin, the watch manufacturers began
experimenting to create ladies designer watches that are resistant to
magnetic interference by trying various materials for balance spring and
nothing satisfying. But then it began to find bright spots accidentally.
Charles-Auguste Pillard had tried to make a hairspring from palladium to make
it more heat-resistant, instead in 1877 he found that the balance spring made
from palladium was able to be more resistant to magnetic fields.
The
second way that is currently more often worn on watches specifically designed
to withstand high intensity magnetic fields is to envelop the movement with a
material that is easily magnetized, so that the movement itself is not
magnetized. This method was first worn by the IWC on the Mark XI watch worn by
Royal Air Force UK pilots by placing a movement of watches inside Faraday's
cage. In 1954, at the request of CERN scientists, Rolex also developed a
magnet-resistant ladies designer watches of up to a thousand gauss.
Based on that capability, Rolex named the antimagnetic watch model as Milgauss,
which still exists today. The IWC again did not want to lose and again created
an antimagnetic watch for the needs of scientists with the name Ingenieur. Such
a mechanism is then applied to various brands of watches that have special
antimagnetic capabilities both mechanical and quartz.
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