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The energy of the mainspring gradually decreases as the movement runs, according to the principle of lever moment: when the mainspring is full, it has the maximum torque (the longest moment lever), so the front end of the spring needs to output less force. After running for a while, the mainspring that is tightly coiled on the clockwork shaft will slowly loosen and its energy will decrease.
When the energy is about to run out, the torque at the end of the mainspring is minimal (the moment lever is the shortest), and the output force is also reduced, so the transmission force needs to be increased to keep the movement running. In the process of torque change (the mainspring is fast when it is full, and the energy is slow), the movement is completely accurate and the average of the front and back.
With the improvement of modern metallurgical technology, more high-quality metal elements.
It is used in the production of the mainspring of the movement, and by changing the metal elasticity and fatigue resistance of the mainspring, the output torque is stabilized as much as possible with excellent physical properties. The watchmaker either grinds the smooth inner wall of the barrel to reduce the release resistance of the spring, or reduces the pendulum frequency, and relatively lengthens the power to achieve a corresponding stable torque range.
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He is the power for the normal operation of the clock**, whether it is automatic or manually screwed, the power is stored here in advance, and then continuously supplied to the running mechanism parts, it is the same as the battery of the electronic watch, and then plays the same role.
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It's like a car's engine, a source of power.
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The power system of a mechanical clock is the clockwork.
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The operation method of the mainspring on the watch is as follows: remove the watch, hold the watch with the dial numerals facing you, and turn the right clockwise wind button with your right hand until you cannot turn it.
Under normal circumstances, a fully automatic mechanical watch does not need to be wound, as long as it is worn for more than 8 hours a day, the watch will automatically be fully wound, and there is no need to manually wind the watch, which is also the characteristic of a fully automatic mechanical watch. However, when you wear it for less than 8 hours, it is okay to use the method of winding up the world fortune to let it run normally.
The use of fully automatic mechanical watches and meter turners
If you wear this type of watch for more than 8 hours a day, you can maintain the accuracy of the watch normally. If worn for less than 8 hours, the functionality and accuracy of these watches will be affected.
Therefore, when buying this kind of watch, in order to ensure that its quality is not affected, when they are not wearing it, they will put it on the watch turner and let it rotate automatically. This is also one of the great features of this type of watch.
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The movement of a mechanical watch is powered by a mainspring, also known as a mainspring, which needs to be wound in order to function. The mainspring can be wound manually using the crown or, in the case of automatic watches, the dynamic energy provided by the wearer's movement.
However, we recommend that once an automatic watch has stopped moving around (i.e. if it has not been worn for a few days), it should be fully wound before putting it back on. After that, the energy provided by your own movement will maintain the tension of the mainspring to drive the watch. When fully wound, we recommend turning the crown 35 times in a clockwise direction.
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It is to make something in the clock tighten, and then slowly loosen it as the clock moves, and then it has to be wound again, and so on; Nowadays, clocks and watches are all electronic, and in the past, there was a place to screw the back of the watch, and it had to be screwed once at a certain time, otherwise the watch would not go, and the watch would have to be screwed if it was not automatic.
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A clockwork is the part that provides energy to a watch. Loops are wrapped around the crate. The mainspring is tightened by a milled groove on the shaft.
The square groove of the bar shaft is driven by the upper bar mechanism. The watch can travel for about 36 to 50 hours without a reload. Since the mainspring is subjected to significant stresses that often lead to breakage, the mainspring is now made of alloys that make it almost non-breaking.
The mainspring stores a certain amount of energy to be distributed evenly and in small amounts to the oscillator. For this purpose, the energy supplied passes through the wheel group, which reduces the transmission force in the same proportion and increases the number of turns. In short:
The mainspring collects energy through the winding action (whether manual or automatic) and then transmits it to the escapement via the drivetrain, which evenly separates the energy and displays the time through the drivetrain and hands.
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The meaning of the watch is to make the watch run by twisting the mechanical clockwork, so that the watch has better power. "Clockwork" is the winding of sheet steel bars, which are contained in mechanical clocks, watches, and toys. "Winding" refers to the power generated when the mainspring is compressed into a certain space and then recoiled, and then the elasticity of the spring is used to gradually loosen it.
Winding method on mechanical watches: Rotate the shank 20-30 times to make the winding of the mainspring. A full mainspring can usually keep the watch running for about 30 hours, and the longest can even be eight days or more.
If you want the watch to run non-stop, you need to pay attention to the winding at all times; However, over-winding can cause damage to the watch, so it is usually recommended to only wind it once a day, and some even recommend winding it at the same time every day, because the temperature at different times of the day will affect the clockwork, so that the watch can be better maintained. For more information on what it means to wind up a watch, go to see more.
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