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Zhuzhou Sanxin Cemented Carbide Manufacturing Co., Ltd

Non-magnetic Carbide Rotating Cylinder with HRA92 Hardness 1,500 MPa Flexural Strength and High Durability for Precision Applications

Подробная информация о продукте:
Место происхождения: Чжучжоу, Китай
Фирменное наименование: Sanxin
Номер модели: SX1269
Оплата и доставка Условия:
Количество мин заказа: 2
Время доставки: 5-25 дней
Условия оплаты: Western Union, T/T, L/C.
  • Подробная информация
  • Характер продукции

Подробная информация

Переработка карбидов: Высокая долговечность Материал: Карбид вольфрама
Высокая твердость: HRA92 Химическая устойчивость: Устойчивы к большинству кислот и щелочей
Продолжительность жизни: Длинный Прочность на гибкость: 1,500 МПа
Поверхность: Полированный Приложения: Режущие инструменты, изнашиваемые детали, горнодобывающие инструменты, буровые долота и т. д.
Пластичность: Хорошая пластичность и механизм Особенность: повышенная долговечность
Услуга: Одноэтапное индивидуальное обслуживание
Выделить:

HRA92 Hardness Non-magnetic Carbide Rotating Cylinder

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500 MPa Flexural Strength WC-Ni Series Carbide Cylinder

Характер продукции

Magnetic Permeability <1.002 WC-Ni Series Non-magnetic Special Research Carbide Rotating Cylinder
The rotating column is precisely manufactured using WC-Ni non-magnetic cemented carbide. By replacing the traditional cobalt element with a nickel-based binder phase, this scientific solution completely eliminates magnetic interference problems found in ordinary cemented carbide. In magnetic field-sensitive environments such as MRI medical equipment, semiconductor manufacturing, and scientific research instruments, it achieves high precision, no magnetic interference, and exceptional stability.
Main Grades of Non-Magnetic Tungsten Carbide
Grade/System Main Components Hardness (HRA) Flexural Strength (MPa) Characteristics and Applications
M10 Non-Magnetic Tungsten Carbide WC-Ni System 92.5 3240 General-purpose non-magnetic molds, corrosion-resistant tools
WC-Ni System WC-0.75Al-14.25Ni 87.4 1670 Non-strongly magnetic at room temperature, relatively high magnetic permeability
WC-Cr₃C₂-Ni System WC-Cr₃C₂-Ni - - Commonly used in industry, with 1-3% Cr₃C₂ addition
WC-Cr₃C₂-Mo-Ni System WC-Cr₃C₂-Mo-Ni - - Adds Mo to improve magnetic properties
MAST-N20 WC-Ni (Japan) 91.0 3300 Highly corrosion-resistant, suitable for nozzles, seals, and molding dies
Grade Selection Tips: The above grades primarily achieve non-magnetic properties by using nickel (Ni) as a binder phase. Different grades have different composition and performance emphases. When selecting, please consider your specific magnetic permeability requirements, hardness, strength, and corrosion resistance.
Core Technologies
  • Non-magnetic Material Design: A nickel-based binder phase ensures non-magnetic properties from the source. Strict composition control prevents the introduction of magnetic impurities.
  • Precision Manufacturing and Processing: Specialized grinding technology tailored to non-magnetic materials ensures dimensional accuracy (±0.002mm) and dynamic balance grade (G1.0).
  • Strict Quality Inspection: 100% magnetic permeability testing ensures every product meets non-magnetic standards. Industrial CT non-destructive testing guarantees internal quality.
Typical Application Scenarios
  • Medical imaging equipment: Rotating components in MRI scanners prevent interference with magnetic resonance imaging.
  • Semiconductor manufacturing: High-precision equipment such as wafer transfer robots and photolithography machines prevent magnetic field effects on microelectronic components.
  • Scientific research equipment: Electron microscopes and high-energy physics experimental equipment ensure measurement accuracy.
  • Aerospace: Satellite attitude control components and aviation instruments meet non-magnetic environment requirements.
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