Magnesium Anode With Filling Material, Combined Magnesium Alloy Sacrificial Anode
Magnesium anode with filler material Combined magnesium alloy sacrificial anode
Magnesium
Anode: Abbreviation of magnesium alloy sacrificial anode, also known as magnesium alloy anode and magnesium sacrificial anode. It is used in the cathodic protection system and is an important equipment and material to prevent electrochemical corrosion. Because of the high potential of magnesium alloy anodes, they are often used for the cathodic protection of buried structures, such as buried oil pipelines, natural gas and gas pipelines.
The magnesium alloy produced by Jiaozuo Libo Light Alloy Co., Ltd. is made of high-quality raw materials. The anode potential is negative, and the electricity generated per unit mass is large. It is an ideal sacrificial anode material. It is suitable for the cathodic protection of metal structures in media such as soil, fresh water and seawater, such as oil and gas pipelines, storage tanks, hot water exchangers, condensers, etc.
The magnesium alloy sacrificial anodes are produced in accordance with the national standard GB/T17731 - 2004 "Magnesium alloy sacrificial anodes". The anodes used for pipelines also comply with SY/T0019 - 97 "Design specification for sacrificial anode cathodic protection of buried steel pipelines".
This product has the following characteristics: (1) Small specific gravity, relatively negative potential; (2) High driving voltage for iron and low current efficiency; (3) Especially suitable for media with high resistivity.
(For resistivity greater than 100Ω·m, it is recommended to use strip magnesium anodes.
Classification of magnesium anodes:
1. High-potential magnesium alloy sacrificial anode
2.2. Bracelet-type magnesium alloy sacrificial anode
3.3. Assembled magnesium alloy sacrificial anode
4.4. Strip magnesium alloy sacrificial anode 5. National standard magnesium alloy sacrificial anode
In summary, the points to note: 1. Remove moisture (can be baked with a blowtorch), 2. Clean the objects to be welded, 3. Clean the mold 2 Precautions when using welding powder (1) Each package of welding powder corresponds to one welding point. The grade of the welding powder needs to correspond to the mold. Please carefully check and confirm before use. (2) The welding powder has been multi-layer protected against moisture when leaving the factory, but it is recommended to store it properly to avoid moisture. Preparation work before using thermite welding connection Before starting work each time, bake and dry the mold with a heating tool (blowtorch or drying oven) to remove moisture. Clean the mold after each use with a soft brush or other soft objects to avoid damaging the mold. Check the tightness of the mold contact surface to prevent the copper liquid from leaking out from the gap during operation. The mold clamp is used to open and close the mold. The tightness of the mold clamp affects the welding effect. Please carefully check the mold clamp and make appropriate adjustments before starting welding. The mold is made of graphite and is relatively fragile. It cannot withstand throwing and strong impact. Therefore, do not force the welding objects larger than the mold size into the mold, or use hard substances and tools to remove the residue. The service life of the mold can generally reach more than 50 to 100 times. Application fields of thermite welding Thermite welding is suitable for the connection of conductors in industries such as cathodic protection, electric power, grounding, and railways. The main products of cathodic protection of our company include: magnesium alloy anodes, aluminum alloy anodes, zinc alloy anodes, high-silicon cast iron anodes, precious metal oxide anodes, mesh anode strips, titanium conductive sheets, pre-packaged anodes, special anode joints, deep well anodes, flexible anodes, graphite anodes, potentiostats, consoles, copper sulfate reference electrodes, high-purity zinc reference electrodes, silver chloride reference electrodes, portable references, polarization probes, current test piles, potential test piles, remote potential test piles, stray current drainers, digital soil resistivity testers, insulation supports, thermite welding molds and fluxes, etc.
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