Yangri
Yangri Zhao, Weihai CN
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20140102642 | Optical Fiber Welding Machine - The present disclosure discloses an optical fiber welding machine, including a device for butt joint of the optical fiber's core. The said device comprises a base and a number of units with V-shape groove. The base and the units are shaped respectively. The said units are mounted on the base fixedly. Comparing with the traditional overall molding device for butt joint of the optical fiber's core, the disclosed embodiment spats said traditional device, which has complicated structure and high accuracy requirements, into a base and a number of V-shape groove units, thus simplifies the shape of the components, which are shaped respectively, so as to facilitate the purpose of molding mould and shaping components, and then the v-shape groove units are mounted on the base. After completion of assembly, a v-shaped slot is grooved on top of each v-shape groove unit to ensure enough precision. The disclosed embodiment reduces both the mold manufacturing cost and the molding cost of components. It also solves the long-standing problem of precision within the art of manufacturing mold and molding components, and there is a good application prospect. In addition, an electrode gland is included in the optical fiber welding machine. The said gland includes a gland body and a screw connecting the workbench through the gland body, and a rotation unit is set at the top of each screw. The rotation unit protrudes from the gland body. | 04-17-2014 |
20140124144 | PLASTIC PRESSURE HAMMER FOR AN OPTICAL FIBER WELDING MACHINE - This present disclosure discloses a plastic pressure hammer for the optical fiber welding machine. The pressure hammer includes a pedestal with a mounting hole, a spring, a main body and a cap. The upper part of the main body said above is installed inside the mounting hole of the pedestal. The said cap is fixedly installed on the upside of the pedestal. The said spring is installed between the cap and the main body of the pressure hammer. At the bottom of the main body, there is a tablet. The main body of the pressure hammer is lineal contact installed inside the mounting hole of the pedestal. At the rear end of the tablet at the bottom of the main body, there is a fixing component adaptive to the V-shape groove of the optical fiber welding machine. This disclosed embodiment improves the defect of big shaking gap of the main body, thus the fiber bounce caused by it is avoided, and the accurate positioning of the main body is realized. The adjustability of the pressure hammer is enhanced and at the same time the fracture probability of the fiber is reduced, making the work more efficient. | 05-08-2014 |
20140130651 | Full-automatic Optical Fiber Container - The present disclosure discloses a full-automatic optical fiber container. The container is connected with the optical fiber cutting unit, including two shells named NO. 1 and NO. 2 respectively. The NO. 1 shell includes a bottom case which is used to contain optical fiber and a cover, and the cover is pivotally connected with the top of the bottom case. An up fiber collecting shaft is set at the cover and a down fiber collecting shaft is set at the bottom case of the NO. 1 shell correspondingly. These two shafts are both put at the opening of the NO. 1 shell. The NO. 2 shell includes the container driving unit, the transmission unit and a container lever. The three parts are put together in the NO. 2 shell with flexible connection respectively. The container driving unit is connected with the fiber cutting unit's top cap fixedly. The transmission unit is transmission connected with the container driving unit, and it can only fulfill one-way transmission and is transmission connected with the down fiber collecting shaft .The container lever is flexibly connected with the NO. 1 shell's cover. The gear ratio in this container is high, so the fiber collecting shaft can collect longer fiber, and the main part of the container is deeper, making it capable of containing more discarded optical fiber | 05-15-2014 |
Yangri Zhao, Shandong CN
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20140338195 | OPTICAL FIBER STRIPPER - An optical fiber stripper includes handles, two stripping blades and an optical fiber positioning reference block (hereinafter referred to as reference block), on which optical fiber jacket stripping sub-channel, covered wire/cable jacket stripping sub-channel, and bare fiber coating stripping sub-channel are disposed in parallel, and the stripping blade, respectively, contains optical fiber jacket stripping port, first port, and sharp-angle port. The optical fiber jacket stripping port, the first port, and the sharp-angle port correspond to the optical fiber jacket stripping sub-channel, the covered wire/cable jacket stripping sub-channel, and the bare fiber coating stripping sub-channel, respectively. Reference block contains baffle grooves, and baffles can be inserted into different baffle grooves on the reference block to position optical fiber coating with different lengths. The present invention can be used to strip various layers through the ports on the stripping blades, to ensure that the optical fiber is not broken when stripping optical fiber, and to prevent optical fiber surface from attaching to debris, so that the optical fiber jointing efficiency is improved greatly. | 11-20-2014 |
Yangri Zhao, Weihai City CN
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20150123330 | NEW MULTI-FUNCTIONAL SPLICING CLAMP - The present invention relates to the technical field of fiber splicing devices, particularly to a multifunctional splicing clamp for fixing an optical fiber during the fiber splicing process. A new multi-functional splicing clamp of the present invention, for use in a fiber splicing device, comprises a clamp body and a clamp cover body. One side of said clamp body is pivotally connected to the clamp cover body. Said clamp body is provided with a fiber-carrying pad, and said clamp cover body is provided with an abutment structure which can abut said fiber-carrying pad. Compared to the prior art, a new multifunctional splicing clamp of the present invention can simultaneously match wire cables with big differences in diameters, such as rubber-insulated cables, jumper wires, 2.5 mm optical cables, 900 um optical fibers, 250 um optical fibers, and 80 um optical fibers. When different types of optical fibers are spliced, it is unnecessary to replace the clamp, resulting in convenient operations and greatly improved efficiencies. | 05-07-2015 |