Large storage tank replacement with 35kg aluminum alloy sacrificial anode
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Introduction to the Replacement of 35kg Aluminum Alloy Sacrificial Anodes for Large Storage Tanks:
Aluminum alloy readily absorbs gases, which is a primary characteristic of cast aluminum alloys. Hydrogen gas, produced by reactions between the components of molten aluminum and its alloys with moisture from furnace charges, combustion products of organic materials, and molds, is absorbed by the molten aluminum.
The higher the temperature of the molten aluminum alloy, the more hydrogen it absorbs. At 700°C, the solubility of hydrogen in every 100g of aluminum is 0.5–0.9 mL. When the temperature rises to 850°C, the solubility of hydrogen increases by 2–3 times. The presence of alkali metal impurities significantly increases the solubility of hydrogen in molten aluminum.
In addition to gas absorption during melting, cast aluminum alloys also absorb gas when poured into molds. As the molten metal in the mold cools, the solubility of gases decreases, causing excess gas to precipitate. Some of the gas that cannot escape remains in the casting, forming pores, commonly referred to as "pinholes." Sometimes, gas combines with shrinkage cavities, and the gas precipitated from the molten aluminum remains within the shrinkage cavities. If the pressure generated by the heated gas bubbles is high, the pore surfaces will be smooth, surrounded by a bright layer. If the gas bubble pressure is low, the pore surfaces will be wrinkled, resembling "fly legs," and upon closer inspection, they exhibit characteristics of shrinkage cavities. The higher the hydrogen content in the molten aluminum alloy, the more pinholes form in the castings. Pinholes in aluminum castings not only reduce the air tightness and corrosion resistance of the castings but also diminish the mechanical properties of the alloy. The key to obtaining aluminum castings with few or no pores lies in the melting conditions. Using covering agents during melting significantly reduces gas absorption. Refining the molten aluminum effectively controls the hydrogen content.
Based on the dimensions you provided (750*(115+135)*130mm), this aluminum alloy sacrificial anode is likely used for the cathodic protection system of buried pipelines or structures. The specific type of aluminum alloy anode used depends on the type of metal being protected and the environmental conditions.
Magnesium Alloy Sacrificial Anode Series: High-potential (magnesium-manganese) alloy sacrificial anodes, standard magnesium alloy sacrificial anodes, bracelet-type magnesium alloy sacrificial anodes, semi-continuous cast magnesium alloy rods, magnesium alloy plates.
Aluminum Alloy Sacrificial Anode Series: Standard aluminum alloy sacrificial anodes, aluminum alloy sacrificial anodes, high-activation aluminum alloy sacrificial anodes, high-temperature resistant aluminum alloy sacrificial anodes, bracelet-type aluminum alloy sacrificial anodes (aluminum-zinc-indium alloy sacrificial anodes).
Zinc Alloy Sacrificial Anode Series: Marine zinc alloy sacrificial anodes, zinc-aluminum-cadmium alloy sacrificial anodes (ternary zinc alloy sacrificial anodes), bracelet-type zinc alloy sacrificial anodes.
Supporting Products: Reference electrodes, test stations, backfill materials, long-lasting (portable) copper reference electrodes, various (steel, plastic, cement) test stations, zinc grounding cells, insulating supports, thermite welding agents, patch anti-corrosion materials, etc.
Impressed Current Cathodic Protection: Potentiostats, control consoles, various auxiliary anodes, deep well anodes, noble metal oxide anodes, pre-packaged high-silicon cast iron anodes, explosion-proof junction boxes, etc.
Products are used for metal protection in buried pipelines (gas companies), tank corrosion protection, steel pile docks, shipyards, power plants, oilfield facilities, etc.
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| Industry Category | Minerals-Metallurgy |
|---|---|
| Product Category | |
| Brand: | 立博 |
| Spec: | AC-1 |
| Stock: | 2000 |
| Manufacturer: | |
| Origin: | China / Henan / Jiaozuoshi |