• Customizable Tungsten Carbide Bushings for Optimal Wear Resistance in Mining Equipment
  • Customizable Tungsten Carbide Bushings for Optimal Wear Resistance in Mining Equipment
  • Customizable Tungsten Carbide Bushings for Optimal Wear Resistance in Mining Equipment
Customizable Tungsten Carbide Bushings for Optimal Wear Resistance in Mining Equipment

Customizable Tungsten Carbide Bushings for Optimal Wear Resistance in Mining Equipment

Detalhes do produto:

Lugar de origem: Sichuan China
Marca: Xinnsheng
Número do modelo: Personalizável

Condições de Pagamento e Envio:

Quantidade de ordem mínima: 10 pcs
Preço: 20-400USD
Detalhes da embalagem: Embalado em caixa de papel
Tempo de entrega: 35 dias úteis
Termos de pagamento: L/C, T/T, Western Union
Habilidade da fonte: 50000 PCS por mês
Melhor preço Falem agora.

Informação detalhada

Nome do produto: Bucha da luva do carboneto de tungstênio Características: Resistência à corrosão
Material: Carboneto de tungstênio 100% virgem Destaque: Buchas de carboneto de tungstênio resistentes ao desgaste, Buchas de carboneto de tungstênio para eq
Destacar:

customizable tungsten carbide bushings

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customizable tungsten carbide parts

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Descrição de produto

Customizable Tungsten Carbide Bushings for Optimal Wear Resistance in Mining Equipment

 

 

Description

 

Tungsten Carbide Sleeves are essential components widely employed across diverse industrial applications, valued for their robustness and durability. Fashioned from tungsten carbide, these cylindrical sleeves showcase exceptional hardness and density, endowing them with remarkable resistance against abrasion and deterioration. Their sturdy constitution renders them well-adapted to environments characterized by extreme temperatures and pressures. In oilfield operations, Tungsten Carbide Sleeves assume pivotal roles in upholding integrity and efficiency. They establish secure seals that effectively prevent the leakage of fluids and gases in oil wells, thereby ensuring operational safety and dependability. Moreover, these sleeves exhibit non-magnetic attributes and boast a low coefficient of friction, rendering them well-suited for high-pressure conditions. Their exceptional corrosion resistance further amplifies their suitability for drilling, production, and storage operations, underscoring their versatility and reliability in demanding industrial sett

Specification

 

Product Name Tungsten Carbide Sleeve
Usage Oil and Gas Industry
Dimensions Customized
Production Time 35 days
Recommended Grade YG6/YG8/YG11/YG13
MOQ Negotiable
Package Carton Box
Material 100% Virgin Tungsten Carbide

Product Advantages

 

  • Precision Engineering: Manufactured with precision engineering techniques, tungsten carbide sleeves offer tight tolerances and dimensional accuracy, ensuring seamless integration into complex machinery and systems.
  • Versatility: Tungsten carbide sleeves are versatile components suitable for a wide range of applications, including pump shafts, valve stems, and rotary seals.
  • Enhanced Efficiency: By minimizing downtime due to maintenance and replacements, tungsten carbide sleeves contribute to increased operational efficiency and productivity.
  • Cost-Effectiveness: Despite their initial investment, tungsten carbide sleeves offer long-term cost savings by reducing the need for frequent replacements and repairs.
  • Reduced Friction and Wear: The smooth surface finish of tungsten carbide sleeves reduces friction and wear between mating components, extending the lifespan of associated machinery.
  • Chemical Inertness: These sleeves exhibit chemical inertness, ensuring compatibility with various fluids and chemicals encountered in industrial applications.

 

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FAQ

 

1. Q: How long is your delivery time?

A: Generally it is 5-10 days if the goods are in stock. Or it is 20-35 days if the goods are not in stock, it is according to quantity.

 

2. Q: Is the price competitive?

A: Yes, we offer reliable products at good prices.

 

3. Q: How are Tungsten Carbide Sleeves manufactured?

A: Tungsten Carbide Sleeves are typically fabricated through powder metallurgy techniques followed by sintering at high temperatures and pressures.

 

 

 

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