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pad×友鉄工業 - List of Manufacturers, Suppliers, Companies and Products

pad Product List

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Steel substitute material TOS700 press mold pad

Casting X - A casting method using digital technology for large and small rod castings. For cost reduction, contact Tomotetsu Industry!!

TOS700 (Steel Substitute Material) Achieves a hardness of HRc55 through frame hardening, making it ideal for cutting tools, structural materials, punches, and die integrated structures. FMC casting creates a foam model of the product shape using expanded polystyrene, and the foam model is buried in a sand mold to produce the product through replacement with molten metal. This process minimizes the occurrence of burrs and enables the creation of complex and high-precision products. For small lots, cost reduction is possible compared to wooden pattern methods. Cost reduction is also achievable with the original (steel substitute) material.

  • Vehicle body parts

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Steel substitute material TOS800 press mold pad

Casting X - A casting method using digital technology for large and small rod castings, for cost reduction, contact Tomo Steel Industry!!

TOS800 (Material alternative to steel) Achieves hardness of HRc58 through frame hardening Ideal for cutting tools for high-tensile steel plates and draw components (alternative to tool steel) Established surface hardening technology for ultra-high-tensile applications FMC casting creates foam models in the same shape as the product using expanded polystyrene, and produces the product by embedding the foam model in a sand mold and replacing it with molten metal. This makes it difficult for burrs to occur, enabling the creation of complex and high-precision products. For small lots, cost reduction is possible compared to wooden mold methods. Cost reduction is also possible with original (material alternative to steel) materials.

  • Special Steel

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SKD11 substitute material D6510 TOS700 pad

Casting X - A casting method using digital technology for large and small rod castings, for cost reduction, contact Tomo Steel Industry!!

FMC casting creates foam models in the same shape as the products using expanded polystyrene, and then produces the products by embedding these foam models in sand molds and replacing them with molten metal. This process minimizes the occurrence of burrs and allows for the creation of complex and high-precision products. For small lots, cost reduction is possible compared to wooden pattern methods. Cost reduction is also achievable with original (steel substitute) materials. Focusing on castings for press molds for automotive parts and various industrial machinery, we design and manufacture full mold models ranging from 50 kg to 15 tons, and achieve consistent production from casting to machining through melting with a high-frequency induction furnace that minimizes impurities.

  • Special Steel

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Press die pad using alternative materials for tool steel.

Casting X - A casting method using digital technology for large and small rod castings, for cost reduction, contact Tomo Steel Industry!!

TOS800 (Material alternative to steel) Achieves hardness of HRc58 through frame hardening Ideal for cutting tools for high-tensile steel plates and draw materials (alternative to tool steel) Established surface hardening technology for ultra-high-tensile applications FMC casting creates foam models in the same shape as the product using polystyrene, and produces the product by embedding the foam model in a sand mold and replacing it with molten metal. This makes it difficult for burrs to occur and enables the creation of complex and high-precision products. For small lots, cost reduction is possible compared to wooden pattern methods. Cost reduction is also possible with original (material alternative to steel) materials.

  • Vehicle body parts

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Press die pad FCD550

Casting X - A casting method using digital technology for large and small rod castings, for cost reduction, contact Tomotetsu Industry!!

FMC casting creates foam models in the same shape as the products using expanded polystyrene, and produces the products by embedding these foam models in sand molds and replacing them with molten metal. This process minimizes the occurrence of burrs and enables the creation of complex and high-precision products. For small lots, cost reduction is possible compared to wooden pattern methods. Cost reduction is also achievable with original (alternative steel) materials. Focusing on castings for automotive parts press molds and various industrial machinery castings, we design and manufacture full mold models ranging from 50 kg to 15 tons, and achieve consistent production from casting to machining through melting with a high-frequency induction furnace that has low impurities.

  • Vehicle body parts

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Steel substitute material TOS800 press mold pad

Casting X - A casting method using digital technology for large and small rod castings, for cost reduction, contact Tomo Steel Industry!!

TOS800 (Material alternative to steel) Achieves hardness of HRc58 through frame hardening Ideal for cutting tools for high-tensile steel plates and drawing materials (alternative to tool steel) Established surface hardening technology for ultra-high-tensile applications FMC casting creates foam models in the same shape as the product using polystyrene, and produces the product by embedding the foam model in a sand mold and replacing it with molten metal. This makes it difficult for burrs to occur and enables the creation of complex and high-precision products. For small lots, cost reduction is possible compared to wooden pattern methods. Cost reduction is also possible with original (material alternative to steel) materials.

  • Vehicle body parts

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Steel substitute material TFG450 press die pad

Casting X - A casting method using digital technology for large and small rod castings, for cost reduction, contact Tomotetsu Industry!!

TFG450 (Steel Substitute Material) - Achieves hardness of HRc53 or higher through frame hardening - Compatible with cutting tool materials up to 590MPa class at a lower cost than FCD - Good chromium plating properties - Established surface hardening treatment technology for ultra-high tensile applications FMC casting creates foam models in the same shape as the product using polystyrene, and the product is formed by replacing the foam model with molten metal in a sand mold. This process minimizes the occurrence of burrs and enables the production of complex and high-precision products. For small lots, cost reduction is possible compared to the wooden pattern method. Cost reduction is also achievable with original (steel substitute) materials.

  • Vehicle body parts

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Steel substitute material TOS800 press die pad

Casting X - A casting method using digital technology for large and small rod castings, for cost reduction, contact Tomotetsu Industry!!

TOS800 (Material alternative to steel) Achieves hardness of HRc58 through frame hardening Ideal for cutting tools for high-tensile steel plates and draw materials (alternative to tool steel) Established surface hardening technology for ultra-high-tensile applications FMC casting creates foam models that are identical in shape to the product using expanded polystyrene, and produces the product by embedding the foam model in a sand mold and replacing it with molten metal. This makes it difficult for burrs to occur and enables the creation of complex and high-precision products. For small lots, cost reduction is possible compared to wooden pattern methods. Cost reduction is also possible with original (material alternative to steel) materials.

  • Special Steel

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SKD11 substitute material TOS700 ductile press mold pad

Casting X - A casting method using digital technology for large and small rod castings, for cost reduction, contact Tomo Steel Industry!!

TOS700 (Material alternative to steel) Achieves a hardness of HRc55 through frame hardening. Ideal for cutting tools, or integrated structural materials such as punches and dies. FMC casting creates a foam model in the same shape as the product using expanded polystyrene, and produces the product by embedding the foam model in a sand mold and replacing it with molten metal. This method minimizes the occurrence of burrs and allows for the creation of complex and high-precision products. For small lots, cost reduction is possible compared to the wooden pattern method. Cost reduction is also possible with the original (material alternative to steel).

  • Special Steel

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