Petrochemical industry
Details
The metallurgical industry, as a core link in the extraction of non-ferrous metals, has its production system exposed to a harsh environment of high temperature, high pressure and strong corrosive media (such as sulfuric acid mist and chlorine gas) for a long time. The air supply system of the smelting furnace and the flue gas recovery device have strict requirements for the corrosion resistance and operational stability of the compression equipment. Any equipment failure will lead to the disastrous consequence of scrapping the entire furnace's metal solution. Traditional imported compressors not only have sky-high maintenance costs due to technological monopolies, but also the six-month delivery cycle of their core spare parts has become a Damocles' sword hanging over the heads of metallurgical enterprises.
Zhejiang Meisong Compressor Co., Ltd. has established the "Corrosion-Resistant Guardian" service system in response to the special demands of the metallurgical industry:
The core value of Meisong's solutions
【Efficient maintenance and repair, minute-level response】
Form industry-specific maintenance teams, establish a rapid response network for key regions across the country, implement a 4-hour ultra-fast response mechanism, and ensure on-site service within 8 to 48 hours through standardized service processes, compressing the fault handling time to the leading level in the industry
【Domestic spare parts, no worries about substitution】
Break through technical barriers to achieve independent control of core components, independently develop a full range of imported replacement spare parts covering impellers, air seals, gear shafts, etc., and perfectly adapt to mainstream models of imported brands such as Siemens and Atlas. Significantly reduce procurement costs through domestic substitution and establish a hierarchical delivery guarantee system: conventional spare parts can be delivered quickly, and the delivery cycle of core components is much better than the industry average, completely solving the "bottleneck" problem.