1. Excellent thermal conductivity and high molding efficiency
• Aluminum alloy has good thermal conductivity, which can transfer
heat quickly and evenly, making the plastic sheet more uniformly
heated and shortening the heating and cooling time.
• Compared with wood, resin, and other material molds, aluminum
molds can significantly improve the speed of single molding, which
is especially suitable for mass production and improves production
efficiency.
2. High molding accuracy and stable product quality
• Aluminum molds can achieve accurate reproduction of complex
structures and fine lines through precision machining (such as CNC
milling, engraving, etc.). The size error is small, which can
ensure the consistency of blister products.
• The surface is smooth and not easy to stick to the plastic. After
molding, the surface of the molded product is flat, burr-free, and
flawless, which reduces the later trimming, polishing, and other
processes, and improves the product's appearance and use
experience.
3. Strong wear resistance and long service life
• Aluminum alloy material has moderate hardness and good toughness.
Its impact resistance and wear resistance are better than wood
molds, gypsum molds, etc., and it is not easy to deform or damage
due to repeated heating and pressure.
• Under normal maintenance, the service life can reach more than
100,000 times, which is much higher than that of wood molds
(thousands of times) and resin molds (tens of thousands of times).
The cost of long-term use is lower, which is suitable for
large-scale production.
4. Strong adaptability, supporting complex structural processing
• Aluminum molds can be processed flexibly according to product
design, and can adapt to the molding needs of various shaped
structures (such as uneven and convex surfaces, grooves, holes,
three-dimensional lines, etc.), especially suitable for precision
packaging, medical device shells, automobile interiors, and other
complex products.
• It can be combined with the design of cooling waterways to
further optimize the cooling efficiency and avoid the deformation
of the product caused by uneven cooling.