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Product Classification

UK ICI FM21-SP electrode

This series of products are provided with advanced coating technology and process, thus the products are suitable for anodes and cathodes of various types of ionic membrane electrolytic cells, including Asahi Kasei NCH, Asahi Glass Co., Ltd.

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UHDE BM2.7 electrode

This series of products are provided with advanced coating technology and process, thus the products are suitable for anodes and cathodes of various types of ionic membrane electrolytic cells, including Asahi Kasei NCH, Asahi Glass Co., Ltd.

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MGC and EXL electrodes

This series of products are provided with advanced coating technology and process, thus the products are suitable for anodes and cathodes of various types of ionic membrane electrolytic cells, including Asahi Kasei NCH, Asahi Glass Co., Ltd.

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MGC Zero Gap Electrolyzer

This series of products are high electric tightness membrane electrode distance electrolytic cells maintained and transformed from old electrolysis equipment; 

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M3 electrode

This series of products are provided with advanced coating technology and process, thus the products are suitable for anodes and cathodes of various types of ionic membrane electrolytic cells, including Asahi Kasei NCH, Asahi Glass Co., Ltd.

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F2 electrolyzer gasket

The gasket provided by our company has the characteristics of high temperature resistance, corrosion resistance, high strength, aging resistance, small compression deformation, long service life and so on. The inner side of the anode gasket is coated with PFA film, and the lifetime is synchronized with that of the ionic membrane. Also matches various types of Also, matches various kinds of imported or domestic IEM cells.

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Jiangyin Lotus Trade Co., Ltd. is a subsidiary of Jiangyin Anuo Electrode Co., Ltd. Since its founding, Lotus has always complied with China’s economic development, policy orientation, market demand and customer expectations. Because we have a professional team and have a long-term cooperation with a number of well-known manufacturers at home and abroad, our products are sold to the United States, Singapore, Pakistan, India, Malaysia, Brazil, Argentina and many other countries. 

The Company (We) provides (provide) high-quality and advanced products for the chemical machinery industry. Our main business products include: various types of electrodes...

Technology

Our products are sold to the United States, Singapore, Pakistan, India, Malaysia, Brazil, Argentina and many other countries.

Lotus

Technology

Operating situation of Electrodes Manufactured by Jiangyin Anuo Electrode Co., Ltd. on the Customer Site

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Technology

Maintenance, detection and replacement of Asahi Kasei electrolytic cell at abroad site by the team of Anuo

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Technology

Suburban end

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Molten salt electrolyzer

It is mainly used to produce low melting point metals. It is characterized by operating at high temperatures, and should try to prevent moisture from entering and hydrogen ions from reducing on the cathode. For example, when preparing metal sodium, because the cathodic reduction potential of sodium ions is very negative, it is difficult to reduce. It is necessary to use anhydrous molten salt or molten hydroxide without hydrogen ions to avoid hydrogen precipitation from the cathode. For this reason, the electrolysis process needs to be carried out at a high temperature. For example, when sodium hydroxide is melted by electrolysis, the temperature is 310 ℃. If sodium chloride is contained in it as a mixed electrolyte, the electrolysis temperature is about 650 ℃. The high temperature of the electrolytic cell can be achieved by changing the electrode spacing and converting the electric energy consumed by the ohmic voltage drop into heat energy. When electrolyzing molten sodium hydroxide, iron or nickel can be used as the tank body. When electrolyzing molten electrolytes containing chlorides, a small amount of water is inevitably brought into the raw materials, which will cause the anode to generate moist chlorine gas, which has a strong corrosion effect on the electrolytic tank. Therefore, ceramic or phosphate materials are generally used for electrolyzing molten chlorides, and iron can be used for the parts not affected by chlorine gas. The cathode and anode products in the molten salt electrolyzer are also required to be properly separated, and should be led out of the bath as soon as possible to prevent the cathode product sodium metal floating on the electrolyte surface for a long time, which will further interact with the anode product or the oxygen in the air.

Research progress of titanium alloys for aviation

1. High strength and toughness β Type I titanium alloy β Type I titanium alloy has good processability, is easy to forge, roll and weld, and can obtain high strength and fracture toughness through solution aging treatment. At present, it has obtained high strength and toughness for practical application in aircraft β Type I titanium alloys mainly include the following: Ti-1023 (Ti-10V-2Fe-3Al) titanium alloy was developed by American Timet Company in 1971. It is a forged titanium alloy with high structural efficiency, high reliability and low manufacturing cost to adapt to the damage tolerance design principle. The Al equivalent of this alloy is 4.0, and the Mo equivalent is 11.1( α+β)/β The phase transition temperature is 790~805 ℃, which has greater hardenability, significant heat treatment strengthening effect and excellent forging performance. Isothermal forging can be carried out at 760 ℃, providing various near net machined forgings. After heat treatment σ B is 965 ~ 1310MPa, KIC is 99 ~ 33 MPa · m1/2. It has been used for the landing gear main beam of Boeing 777 passenger aircraft and the main landing gear strut of Airbus A380. Ti-l5-3 (Ti-15V-3Cr 3Al - 3Sn) high strength β Titanium alloy was developed in the 1970s under the support of the US Air Force β High strength corrosion-resistant alloy. The Al equivalent and Mo equivalent of the alloy are 5.0 and 15.7 respectively( α+β)/β The phase transition temperature is 750~770 ℃. It has excellent cold deformation, age hardening and weldability. Its cold workability is better than that of industrial pure titanium. It can be used for cold forming of various complex parts in the solid solution state. It has small crack sensitivity σ B ≥ 1310MPa, this alloy is particularly suitable for manufacturing rocket engine propellant tanks, conduits and other components, and has been applied to the application control system pipes and fire extinguishers on the Boeing 777. β- 21S (Ti-15Mo-3Al-2.7Nb-0.2Si) alloy is an anti-oxidation and ultra-high strength titanium alloy developed by American Timet Company in 1989. The Al equivalent of the alloy is 4.0, and the Mo equivalent is 15.8( α+β)/β The phase transition temperature is 793 ~ 810 ℃, which has good oxidation resistance and can work at 540 ℃ for a long time; Excellent cold and hot working performance. After heat treatment, σ b=1150~1350MPa, δ 5=6%~8%。 The alloy is suitable for engine liner and nozzle, and has been used as the matrix material of silicon carbide/titanium composite by NASA. BT22 (Ti-5Al-5Mo-5V-1Fe-1Cr) alloy is a high strength alloy developed in Russia in the 1970s β Type I titanium alloy. The Al equivalent of the alloy is 6.0, and the Mo equivalent is 11.8( α+β)/β The phase transition temperature is 860 ~ 990 ℃, which has good processing and welding properties. It is mainly used to produce die forgings. Its quenching depth reaches 200mm σ b≥1105MPa。 The alloy can be used to manufacture fasteners for fuselage, wing force bearing parts and operating system, etc. that work at 350~400 ℃ for a long time, and also can be used to manufacture fan disks and blades of engines that work at temperatures below 350 ℃. It has been used for the fuselage, wing, landing gear and other high load bearing parts of 1L-86 and 1L-96-300.

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Addresss

Room 501-509, No. 20, Wan Hua Commercial Plaza, Shen Gang Street, Jiangyin City, Jiangsu Province, China