1A1 Metal Diamond Grinding Wheel with Chip Groove
1A1 Metal Diamond Grinding Wheel with Chip Groove

1A1 Mó de diamante para metal com ranhura para aparas

  • Used for processing hard alloys, optical lenses, ceramics, glass, etc.

    Good chip removal performance, reduces wheel blockage, and improves processing efficiency.

    Quantidade mínima de encomenda: 10pcs

    Net Weight: 560g

    Pagamento: 30% adiantamento

Whatspp:+86 13357928197
E-mail:wang@jyxhzs.com

Detalhes

Descrição
The metal chip removal groove can timely discharge the grinding debris generated by the workpiece, avoid the accumulation of grinding debris, reduce the friction between the grinding wheel and the workpiece, and ensure the grinding effect of the grinding wheel and the machining accuracy of the workpiece.  

 

Especificações

Local de origem China
Nome da marca Jiangsu Xingzuan Superhard Material Technology Co., Ltd
Certificação CNIPA
Abrasivo Diamante
Obrigação Bronze bond
Tamanho do grão abrasivo Personalização do suporte
Número do modelo 1A1
Diâmetro exterior 180 mm
Peso líquido 560g
Quantidade mínima de encomenda 10 unidades
Prazo de entrega 30 dias após o pagamento do adiantamento
Capacidade de fornecimento Personalização do suporte
Pagamento Avanço 30%

 

Aplicações

  • Used for grinding high-precision tool edges such as milling cutters and drill bits for CNC machining centers, ensuring the sharpness and accuracy of the tool edges.
  • Used for grinding optical lens molds to ensure that the mold surface meets high-precision smoothness requirements.
  • Processing metal materials, chip removal grooves help to remove metal shavings generated during the grinding process.
  • When forming and grinding titanium alloy parts, the chip groove can prevent the accumulation of grinding chips, effectively avoiding grinding defects such as burns and cracks in titanium alloy parts.

 

Vantagem competitiva

  • To avoid chip accumulation and effectively prevent the accumulation of grinding chips between the grinding wheel and the workpiece.
  • Improving machining accuracy can reduce the secondary wear of the machined surface caused by debris.
  • Reduced the heat generated during the grinding process and minimized workpiece burns.
  • Reduce the possibility of wheel blockage and improve processing efficiency.
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