The present invention is related to the field of ceramic material production and optical communication, more particularly, it is related to a ceramic ferrule made of Zircornium oxide mixed with rare earth elements such as yttrium and/or cerium.
In recent years, along with the development of optical communication industry and national policy, great improvement has been made in FTTH. There are many solutions for “Last kilometer access”, including the movable connector assembled on site for pre-embedded optical fiber, the movable connector assembled on site for straight connection and the hot melt type connector. The movable connector assembled on site for pre-embedded optical fiber accounts for a larger percentage in “Last kilometer access” due to its simple operation and quick assembly, and meanwhile, it has no special requirements for environment and no power supply is required. It can be operated with simple tools and easily carried.
The connecting point for most of the movable connector assembled on site for pre-embedded optical fiber is in the plastic V-shaped groove. But the plastic is likely to age and deform after long-term service or change property in bad environment, therefore, connection loss or connection failure possibility is higher. In addition, the precision of the plastic V-shaped groove cannot meet the connection requirements in micron level. The failure rate for these products is high after 1 to 2 years.
In order to overcome the above disadvantages, the connecting point of the optical fiber is disposed in the inner bore of the ceramic ferrule in the prior art. The coaxial connection is achieved by the high precision inner bore of the ceramic ferrule. Generally, the ceramic ferrule is made of Zircornium oxide mixed with single yttrium, which will be transformed structurally, i.e., from tetragonal phase to monoclinic phase, after used for a period of time. With this kind of structural changes, the crystalline grain becomes thicker and larger. The surface smoothness will become poor. Therefore, the optical fiber cannot be connected smoothly in the inner bore, or it is prone to become connection exhausted or connection failure, due to the lateral offset of the connecting optical fiber.
In view of the above-mentioned problems, a ceramic ferrule made of Zircornium oxide (zirconium dioxide) mixed with rare earth elements such as yttrium and/or cerium, is provided in the present invention, in order to strengthen the phase change resistance of the Zircornium oxide, to improve the reliability of the product.
To achieve the above objective, solutions are adopted in the present invention as follows:
A ceramic ferrule made of Zircornium oxide mixed with one or more rare earth elements selected form the group of lanthanide series elements, yttrium and scandium. The lanthanide series elements are selected from lanthanum, cerium, praseodymium, neodymium, promethium, samarium, europium, gadolinium, terbium, dysprosium, holmium, erbium, thulium, ytterbium and/or lutetium.
Preferably, the rare earth elements are selected from yttrium and cerium, i.e. the material of the ceramic ferrule is made of Zircornium oxide mixed with yttrium and cerium.
Preferably, material composition, that is Zircornium oxide mixed with yttrium and cerium, is (Cei-x-yYyZrx)O2+m (wt %)Al2O3, wherein x=0.30˜0.97 mol, y=0.05˜0.80 mol, m=0˜10 wt %.
Preferably, the amount of Al2O3 added into the composition, is based on the total mass of the Zircornium oxide mixed with yttrium and cerium.
Preferably, in the material of Zircornium oxide mixed with yttrium and cerium, the added aluminum element may also include other aluminium salt besides Al2O3.
Advantages of the utility model invention are summarized below compared with the prior art:
The ceramic ferrule, made of Zircornium oxide mixed with rare earth elements such as yttrium and cerium, enhances the phase change resistance of the Zircornium oxide material. Therefore the structure precision and product reliability is improved, and thus the splicing quality, anti-aging performance and environmental adaptability of the material are improved.
A Field-Mountable Optical Fiber Connector is used in the present invention, and the connecting point is set in the high precision inner bore of the ceramic ferrule of the connector. The coaxial connection of the optical fiber is thus achieved, and the surface finish is improved compared with materials that are made of plastic. In addition, scraping problems which is obvious in product made of plastic, when connected, is overcome in the present invention. Environmental adaptability of the material and anti-aging performance are improved. After optical fibers are connected, the insertion loss is lowed, the return loss is higher, and the splicing quality is enhanced.
The invention is described in further detail below with reference to the embodiments.
As shown in
The Field-Mountable Optical Fiber Connector, with said ceramic ferrule comprises a ceramic ferrule 1, which is made of Zircornium oxide mixed with one or more rare earth elements, wherein the rare earth elements are selected from the group of lanthanide series elements, yttrium and scandium. The ceramic ferrule 1 is provided with an inner bore for accommodation of pre-embedded optical fiber 2. The inner bore is provided with an optical fiber connecting point 3. In this embodiment, the ceramic ferrule 1 is made of Zircornium oxide mixed with yttrium and cerium.
As shown in
As shown clearly in
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/CN12/77271 | 6/20/2012 | WO | 00 | 2/21/2013 |