Xiamen Piaget Watch After-sales Store #What is the reason why Piaget mechanical watches go so fast #

Piaget’s new Piaget Emperador Coussin ultra-thin automatic tourbillon watch goes hand in hand with the brand’s ultra-thin gene, with a thickness of only 10.4
The case thickness of mm sets a new record for the thinnest self-winding tourbillon watch in history. It also regards subversion of traditional watchmaking regulations as a necessary way for contemporary bold design. 18-K white gold case, diameter 46.5
mm, laser-engraved sapphire glass dial, see-through movement device, sharp cone-shaped hour mark radiating from the center of eccentric hour and minute hands, equipped with Piaget’s homemade 1270P ultra-thin self-winding tourbillon movement (the world’s thinnest self-winding tourbillon watch, movement diameter 10.4
mm, thickness 5.35
mm), hour, minute, small second hand and power reserve indication, eccentric hour and minute indication at 4 o’clock position, platinum micro automatic disc at 10 o’clock position, power reserve 40 hours, power storage is displayed on the back, black alligator leather strap with an 18K white gold folding clasp. This watch is undoubtedly the strongest and powerful manifestation of Piaget’s classic heritage: it is based on its unique attainments of professional ultra-thin watchmaking and its firm determination to continue to develop original and creative complex movements. The fast running of mechanical watches is one of the common faults we encounter in our lives. How can we solve this problem? Will the deviation of the mechanical watch travel accumulate every day? If you have such a piece that gains 25 seconds every day and then slows back 25 seconds every day, wouldn’t the mechanical watch be too accurate? It’s just that there is a speed cancellation that can be affected by the position difference, but it’s not exactly the same as you said! It’s just that there will be opportunities, but not often! The deviation of mechanical watches moving fast is cumulative. You can calculate the uniform deviation after accumulating one month!

Xiamen Piaget Watch After-sales Store #What is the reason why Piaget mechanical watches go so fast #

Why do mechanical watches go fast? It is caused by machining deviations. For example, it is planned to have a gear with an index circle of 100, but in fact the final size of the part after machining is 100.1 or 99.9. But there is a margin, and the time tolerance seems to be
30,-30 seconds per day. The travel time of a mechanical watch is controlled by vibrating. There is a hairspring on the pendulum, which can grasp the frequency of the pendulum. When the frequency changes, a deviation will occur when traveling time. Another deviation is caused by the tightness of the clockwork. When the spring is tight, the travel time will be slightly faster, and when the spring is loose, it will be slightly slower. Therefore, when adjusting the hairspring, the flat tightness of the clockwork will prevail, so that the deviation caused by the tightness of the clockwork can be compensated. Another is the bias caused by temperature and the bias caused by activities. How to adjust the deviations caused by mechanical watches running fast? The travel accuracy of a mechanical watch is not good. It is corrected to arrive or insist. Why do you say this? Since the travel time of a mechanical watch changes from time to time, it can be temporarily accurate under the tight shape, fixed position, and temperature of a clockwork, which will change compared to another situation. In other words, even if the watch is corrected to be accurate for a second, it will not persist, and the accuracy will change in moments and vacillations for a long time. What’s more, there are many other factors that affect the accuracy of the watch. The deviation of the watch we see is just a uniform deviation in actual travel and unit time.

The reason why the watch runs fast is that the watch has the best travel accuracy when it is in the full-strung form. If you want your watch to travel accurately, you must make the clockwork as full as possible, which is even more important for self-entry watches. Since the tightening level of the spring of a self-winding watch is directly related to the wearing time and wearing activity, the condition is that there is a sufficient amount of exercise. Different status watches have different travel accuracy. This is the so-called watch status deviation. Better watches must be tested at three temperatures and five orientations when leaving the factory, as long as the right position (below 6 o’clock) is not commonly used. According to statistics, most people use about 35% of the time on the surface of the wrist in one day, 30% on the left, 25% on the bottom, and 10% on the rest. Therefore, the difference in precision deviation can correct the speed trend of the watch. wF

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