Why does Rolex have "two hairsprings"?

Players familiar with Rolex know that there are two types of hairsprings used in Rolexes currently on sale. One is the Rolex Parachrom Blue Badger hairspring, which is mainly used in the Rolex 32-series/31-series movements (3135/3235) and the 4130 automatic chronograph movement. One is the Rolex Syloxi silicon hairspring, which is mainly used in the Rolex Caliber 2236.

On men's watches, Rolex uses the Parachrom Blue Badger hairspring.Article from watchdetective replica - https://www.bbtwatch.com/en/wbzs/27885-html

As far as watches are concerned, the Rolex Parachrom Blue Badger Hairspring is mainly used in men's watches (medium and large sized models) and the Rolex Syloxi Silicon Hairspring is mainly used in women's watches (small sized models). In recent years, there has been a lot of discussion about Rolex's two hairsprings, such as why does Rolex use two hairsprings? Why doesn't Rolex use the new silicon hairspring instead of the blue badger hairspring? And so on. So I will explain it today. Focused view and tell you why Rolex has two types of hairspring.Article from watchdetective replica - https://www.bbtwatch.com/en/wbzs/27885-html

Rolex currently uses two types of hairsprings, the Parachrom blue badger hairspring for men's watches and the Syloxi silicon hairspring for women's watches.Article from watchdetective replica - https://www.bbtwatch.com/en/wbzs/27885-html

UP was the starting point for the Blue Badger Hobo.Article from watchdetective replica - https://www.bbtwatch.com/en/wbzs/27885-html

Over the years, the Parachrom Blue Badger hairspring has become a great symbol of Rolex and is well known to players. But in fact, the blue badger hairspring was not the first time Rolex used it in the beginning (blue badger hairspring, i.e. zirconium alloy hairspring).Article from watchdetective replica - https://www.bbtwatch.com/en/wbzs/27885-html

In 1989, Vanguard used a zirconium balance spring for the first time in the Ingenieur collection.Article from watchdetective replica - https://www.bbtwatch.com/en/wbzs/27885-html

In 1989, the first zirconium alloy hairspring was used in the country, which was the first time zirconium alloy hairspring was used on the list. Universal uses zirconium alloy hairspring in the main anti-magnetic engineer series. In the UP 35790 caliber (UP version ETA2892) version ETA2892), the anti-magnetic performance reaches 50,000 A/m, about 6,250 gauss, which shows the zirconium alloy hairspring's superb anti-magnetic performance. However, due to technical constraints, the high cost of tantalum alloy hairspring and the relatively low yield rate made it difficult to support mass production at that time. From 1989 to 1992, UP engineers using zirconium alloy hairsprings reportedly produced only a short period of time, selling about 3,000 units. After that, Universal reverted to using an anti-magnetic inner case as the Pilot's Series. Ingenieur series as a means of preventing magnetism.Article from watchdetective replica - https://www.bbtwatch.com/en/wbzs/27885-html

Rolex Magnetic, Rolex developed the Blue Badger Hairspring.Article from watchdetective replica - https://www.bbtwatch.com/en/wbzs/27885-html

The Rolex Zirconium Hairspring was the starting point for Rolex's development of the Blue Tantalum Hairspring. Seeing the superb performance of the zirconium alloy hairspring, Rolex began to invest a lot of money. Time was spent developing the new hairspring, later known as the Parachrom blue tantalum hairspring, and mass production was realized. After five years of development, the automatic chronograph caliber 4130 was first introduced in 2000. The Daytona 116520 was the first Rolex to use the Parachrom blue tantalum hairspring.Article from watchdetective replica - https://www.bbtwatch.com/en/wbzs/27885-html

In 2000, Rolex introduced the Parachrom Blue Badger Hairspring.Article from watchdetective replica - https://www.bbtwatch.com/en/wbzs/27885-html

Rolex Parachrom hairspring is composed of two metals that are 2400 degrees high temperature 2400 degrees high temperature. Vacuum environment bonded with a blue oxide layer, commonly known as blue tantalum hairspring. Rolex said that the Parachrom blue tantalum hairspring antimagnetic ability of more than 50,000 A/m (about 6,250 gauss), that is to say, more than the level of the year Universal. At the same time, the Rolex Parachrom is insensitive to temperature changes. Shock resistance is 10 times higher than that of a traditional hairspring.

The automatic chronograph caliber 4130 was the first Rolex movement to use the Parachrom blue badger hairspring, introduced in 2000.

The majority of watches on the market use Nivarox hairsprings supplied by NivaroxFar, a Swatch Group company, an iron-nickel alloy with chromium and cobalt additions, which are also resistant to magnetism. However, the small amount of iron in the Nivarox hairspring makes the hairspring magnetically susceptible. The Nivarox hairspring is also more sensitive to temperature changes. Rolex Parachrom hairspring is a zirconium alloy used to avoid iron.

The Rolex Daytona 116520 was the first Rolex watch to use the Parachrom Blue Badger hairspring.

In terms of numbers, the regular Nivarox hairspring is usually 60 gauss (4800 A/m) anti-magnetic, while the Blue Badger hairspring of the Rolex Parachrom is over 6250 gauss, which is why Rolexes are more anti-magnetic than regular watches.

The Rolex Syloxi silicon hairspring is more resistant to magnetism than the Parachrom Blue Badger hairspring.

As we enter the 21st century (after 2000), silicon technology begins to emerge in watchmaking. 2001 saw Ulysse Nardin launch the first watch with a silicon balance spring, the Ulysse Nardin FREAK being the first to utilize a silicon balance spring.

In 2001, Ulysse Nardin debuted a silicon hairspring, which is used in the FREAK watch.

After that, Ulysse Nardin. Rolex. Patek Philippe . The Swatch Group, in collaboration with the Swiss Center for Electronics and Microtechnology (CSEM), has established the Silicon Hairspring Technology Consortium to develop silicon hairspring technology, which is protected by a patent. This is why Ulysse Nardin . Rolex (including Rudder). Patek Philippe. Patek Philippe. Swatch Group watches have popularized and promoted silicon hairspring, while Richemont Group watches. LVMH Group watches have never popularized silicon hairspring (note silicon hairspring, not silicon escapement). This is because Richemont's watches and LVMH's watches are not members of the Alliance and are subject to silicon balance spring patents (reportedly, Ulysse Nardin. Rolex. Patek Philippe. Swatch Group's patent protection will expire in 2021).

With Ulysse Nardin. Patek Philippe. Swatch Group, Rolex recently introduced a silicon hairspring. Rolex didn't introduce the Syloxi silicon hairspring until 2014, and it's currently only used in the women's Caliber 2236, not in men's watches. Sources say that Rolex spent more than 10 years brewing and developing the Syloxi silicon hairspring (which could be researched further). The silicon hairspring, being non-metallic, the Syloxi silicon hairspring is non-magnetic. Although Rolex does not publish anti-magnetic data for the Syloxi Silicon Hairspring, it is a fact that the Syloxi Silicon Hairspring is more anti-magnetic than the Parachrom. Looking at the antimagnetic properties of the Omega Si14 Silicon Hairspring watch at 15,000 gauss, the Syloxi Silicon Hairspring is far more antimagnetic than the Parachrom Blue Badger Hairspring (which is higher than 6,250 gauss).

In addition, the Rolex Syloxi Silicon Hairspring has Rolex patented technology, the Rolex Syloxi Silicon Hairspring is completely horizontal. Symmetrically shaped, with two holes at each end of the hairspring, the ends of the hairspring are fixed directly to the balance cock. This guarantees the optimal leveling of the Syloxi silicon hairspring. Symmetrical shape. According to Rolex, the patented geometry of the Syloxi silicon hairspring allows the movement to run regularly in any position (the Parachrom Blue Badger hairspring is a terminal top-winding construction, with the hairspring end clamped to the hairspring outer stakes of the balance cock. The method of fixation is different).

Rolex Syloxi silicon hairspring with two holes at each end of the hairspring, the ends of which are fixed directly to the balance cock.

Why doesn't Rolex use a Syloxi silicon hairspring instead of a Parachrom blue badger hairspring?

Based on performance alone, the Syloxi Silicon Hairspring outperforms the Parachrom Blue Badger Hairspring. Many people wonder why Rolex doesn't use Syloxi silicon hairspring instead of Parachrom Blue Badger hairspring? Why has the Parachrom Blue Badger hairspring been the main hairspring in Rolex men's watches, while the Syloxi silicon hairspring is only used in women's watches? There have been various opinions on this question over the years. The current opinions are centered on.

1. Rolex was wary of the new Syloxi silicon hairspring, so it was first used in women's watches as a trial (the Parachrom blue badger hairspring was also replaced year after year that year).

2. The advantage of Rolex Parachrom Blue Badger Hairspring is that it can match Rolex's new CHRONERGY escapement and new balance wheel. It meets the requirements in terms of anti-magnetism and power enhancement.

As you know, Rolex has used several new technologies in the new generation of 32 series sports (3235, etc.) to increase the efficiency of the 32 series sports. increase the power to 70 hours. One of the most important new technologies is the new CHRONERGY capture. The new CHRONERGY capture reduces weight. Made of nickel-phosphorus alloy. The nickel-phosphorus alloy is insensitive to magnetism and anti-magnetic, further increasing power.Parachrom blue and ostrich hairsprings can be matched to the new CHRONERGY capture, while Syloxi silicon hairsprings are not currently matched to the new CHRONERGY capture.

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  • by Published on2020-12-31
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