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Taizhou Hongnaide Carbon Products Co., Ltd
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Taizhou Hongnaide Carbon Products Co., Ltd

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    hndshimo@163.com

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    18006769399

  • Address

    Beicheng Development Zone, Beicheng Street, Huangyan District, Taizhou City, Zhejiang Province

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Roland Graphite E+25 Graphite Bundle Wheel Graphite Connection Plate

NegotiableUpdate on 12/15
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Overview

Roland Graphite E+25 Graphite Bundle Wheel Graphite Connection Plate, for carrying and processing samples: Graphite boats and other accessories are used as containers for carrying and processing samples in vacuum furnaces. They have excellent high temperature resistance and chemical stability, and can withstand heat treatment conditions.

Product Details

Roland Graphite E+25 Graphite Bundle Wheel Graphite Connection Plate


In recent years, the development of energy storage technology has been rapid for Hongnide's graphite bipolar plates. New energy storage has entered the stage of large-scale development from the early stage of commercialization, and has initially met the conditions for large-scale commercial application. Flow batteries have advantages such as high safe cycle life, recyclable electrolyte, cost-effective lifecycle, and environmental friendliness. They are considered as one of the technologies for large-scale energy storage and have broad application prospects. In 2019, Taizhou Hongnaide Carbon Products Co., Ltd. Explored new applications of graphite. Graphite bipolar plates have good electrical and thermal conductivity, making them easier to process and cheaper than metal plates. Explore the feasibility and prospects of mass production of bipolar plates. The types of energy storage batteries currently being widely researched and commercialized in flow battery systems include: vanadium flow batteries, zinc bromine flow batteries, iron chromium flow batteries, sulfur iron flow batteries, etc. The role of bipolar plates in energy storage batteries. Bipolar plates are important components in flow batteries, used to connect and separate multiple batteries, conduct the current generated in the battery, and provide support for reactions. They are the electrodes in energy storage batteries. Due to the fact that the electrolyte of flow batteries is often an acidic solution, the bipolar plates of flow batteries need to have good conductivity and chemical stability, as well as certain mechanical strength and airtightness. Graphite plates for energy storage batteries: Metal bipolar plates are often made of materials such as gold, titanium, stainless steel, etc., which have good corrosion resistance. Due to cost issues, precious metals are not suitable as bipolar plate materials. Although stainless steel is inexpensive and has good processability, it is prone to corrosion in acidic environments and high potentials. Therefore, existing metal materials and processes are not suitable for bipolar plates in energy storage batteries. Hongnaide Graphite is a graphite research and application company in East China. It has technical support and a professional R&D team in carbon materials and flow batteries. According to different energy storage application environments, it uses targeted materials and processes to meet customer requirements. Hongnide graphite bipolar plate has good conductivity, corrosion resistance, stability, reduced porosity, good strength and wear resistance, stable structure, and does not change with temperature. Hongnaide Graphite has been committed to in-depth research in the direction of graphite bipolar plates. To support the development of the new energy industry and provide customers with sustainable and stable products, while meeting their performance requirements, Hongnaide Graphite has developed graphite composite bipolar plates to prepare for their mass market layout. I believe that with the acceleration of commercialization of flow batteries, the development and application of graphite bipolar plates in flow batteries will become increasingly widespread

Roland Graphite E+25 Graphite Bundle Wheel Graphite Connection Plate


Hongnaide graphite tube is cut from high-purity isostatic pressed raw materials and processed by lathe rotation. 1. Classified by heating method: longitudinally heating graphite tube, transversely heating graphite tube. 2. Classified by performance: ordinary graphite tube (non pyrolytic) is suitable for low-temperature (≤ 2000 ℃) atomization elements such as silver, cadmium, lead, etc; Pyrolytic graphite tubes are suitable for low, medium, and high temperature (>2500 ℃) atomization components; The platform graphite tube is suitable for atomization components at medium and low temperatures (≤ 2400 ℃). Hongnide graphite rod is commonly used as an electric heating element in high-temperature vacuum furnaces, with a maximum operating temperature of up to 3000 ℃. It is prone to oxidation at high temperatures and can only be used in neutral or reducing atmospheres except in vacuum. It has a small coefficient of thermal expansion, high thermal conductivity, and a resistance coefficient of (8-13) × 10-6 Ω· m. It has better processability than SiC and MoSi2 rods, high temperature resistance, and excellent resistance to extreme cold and heat. It is cheaper and extruded graphite refers to graphite with a carbon content greater than 99%. Suitable for industries such as powder metallurgy, electronics, machinery, molds, cathode materials, wastewater treatment, non-ferrous metals, chemicals, new energy, photovoltaics, etc. High temperature resistance: The melting point of graphite is 3850 ± 50 ℃, and the boiling point is 4250 ℃. Even after being burned by ultra-high temperature arc, the weight loss is minimal and the coefficient of thermal expansion is also small. The strength of graphite increases with temperature. At 2000 ℃, the strength of graphite doubles. Conductivity and thermal conductivity: The conductivity of graphite is 100 times that of typical non-metallic minerals. Its thermal conductivity exceeds that of metal materials such as steel, iron, and lead. The thermal conductivity decreases with increasing temperature, and even at this temperature, graphite becomes an insulator. Graphite can conduct electricity because each carbon atom in graphite forms only three covalent bonds with other carbon atoms, and each carbon atom still retains one free electron to transfer charge. Lubrication: The lubrication of graphite depends on the size of the graphite flakes. The larger the thin film, the lower the friction coefficient, and the better the lubricity. Chemical stability: Graphite has good chemical stability at room temperature and is resistant to corrosion from acids, alkalis, and organic solvents. Plasticity: Graphite has good toughness and can be ground into very thin sheets. Main specifications of Hongnide medium coarse products: (mm) 900x600x2400 I 800x400x2300 I 740x400x2300 I 700x350x2300650x400x2300 I 500x500x2000 I 400x400x2000