Method of manufacturing cooling block for hot stamping mold using three-dimensional metal printer
The present disclosure relates to a method of manufacturing a cooling block for a hot stamping mold using a three-dimensional (3D) metal printer, and more particularly, to a method of manufacturing a cooling block for a hot stamping mold using a 3D metal printer including a process of first step for forming a plurality of semicircular channels through which a fluid passes on a lower block, and a process of second step for forming an upper block to form channels using a 3D metal printer respectively on the plurality of semicircular channels formed in the lower block along the plurality of semicircular channels.
1. A method of manufacturing a cooling block for a hot stamping mold using a three-dimensional (3D) metal printer, the method comprising:
a process of first step for forming a plurality of semicircular channels through which a fluid passes on a lower block; and
a process of second step for forming an upper block to form a shape of circular channels using a 3D metal printer respectively on the plurality of semicircular channels formed in the lower block along the plurality of semicircular channels,
wherein the process of second step comprises forming circular channels by assembling a coupon having semicircular grooves on the semicircular channels formed in the lower block, and forming an upper block by depositing metal powder using a 3D metal printer on perimeter of the coupon,
wherein the metal powder contains 8-10% of Cr, 1.8-2.5% of Si, 0.25-0.35% of C, 2-3% of Mn, and a remainder of Fe, in weight %.
2. The method of manufacturing a cooling block for a hot stamping mold using a 3D metal printer of claim 1 , wherein the coupon has a slope surface with a decrease in width towards an upper surface from a lower surface where the semicircular grooves are formed.
3. The method of manufacturing a cooling block for a hot stamping mold using a 3D metal printer of claim 1 , wherein the process of second step comprises installing copper pipes in the semicircular channels formed in the lower block, and forming an upper block by depositing metal powder using a 3D metal printer on perimeter of the copper pipes.