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Large Diameter High-Purity Nickel Crucible for Efficient Heating
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Large Diameter High-Purity Nickel Crucible for Efficient Heating

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Large Diameter High-Purity Nickel Crucible for Efficient Heating Large Diameter High-Purity Nickel Crucible for Efficient Heating
Large Diameter High-Purity Nickel Crucible for Efficient Heating Large Diameter High-Purity Nickel Crucible for Efficient Heating
Large Diameter High-Purity Nickel Crucible for Efficient Heating Large Diameter High-Purity Nickel Crucible for Efficient Heating
Large Diameter High-Purity Nickel Crucible for Efficient Heating Large Diameter High-Purity Nickel Crucible for Efficient Heating
Large Diameter High-Purity Nickel Crucible for Efficient Heating Large Diameter High-Purity Nickel Crucible for Efficient Heating
Large Diameter High-Purity Nickel Crucible for Efficient Heating Large Diameter High-Purity Nickel Crucible for Efficient Heating

Large Diameter High-Purity Nickel Crucible for Efficient Heating

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NICKEL CRUCIBLE

The primary application feature of nickel crucibles is their outstanding corrosion resistance and thermal stability in high-temperature and strong-alkali environments. This is specifically manifested as:
Core Advantage Analysis
1. Resistance to strong alkali corrosion (core characteristic)
Unique advantage: Delivers exceptional performance in molten alkaline solutions like NaOH and KOH, surpassing most metal materials such as iron and stainless steel. This makes it the **ideal container** for alkali fusion sample processing.
Application scenarios: Perfect for chemical laboratory sample pretreatment, decomposition of rare earth oxides, sintering of lithium battery positive electrode materials, and other high-temperature processes that involve contact with strong alkali.
Product Description

2. High Temperature Stability (Critical Support)
Operating Temperature: Engineered to withstand maximum temperatures of ≤ 1200ºC, with short-term peaks reaching up to 1455ºC. Excels in combining thermal conductivity and thermal shock resistance, offering advantages over ceramic crucibles.
Applicable Processes: Ideal for precious metal melting, single crystal growth, and high-temperature synthesis in scenarios demanding rapid temperature rise and fall.

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