Nguyen Van-Thuc, Minh Pham Son, Uyen Tran Minh The, Do Thanh Trung, Ha Nguyen Canh, Nguyen Van Thanh Tien
Faculty of Mechanical Engineering, Ho Chi Minh City University of Technology and Education, Ho Chi Minh City 71307, Vietnam.
Faculty of Mechanical Engineering, Industrial University of Ho Chi Minh City, Nguyen Van Bao Street, Ward 4, Go Vap District, Ho Chi Minh City 70000, Vietnam.
Polymers (Basel). 2023 Jun 23;15(13):2793. doi: 10.3390/polym15132793.
Mold heating is an essential process in plastic injection molding. Raising the temperature of the mold before injecting liquefied plastic can ease the mold-filling process. A cooling channel can be used to transport high-temperature fluids for this purpose, such as hot water or oil. This dual purpose is a cost-effective solution for heating the mold because the target temperature is easily achieved using this method. In addition, a conformal cooling channel (CCC) can provide more efficient mold heating than a straight cooling channel. This study used the response surface methodology to determine the optimum CCC shape for heat distribution in a mold, and the simulation results confirmed its optimization. The average temperature of the mold using a CCC was better than that using a straight cooling channel, and the heat zone was uniform across the mold surface.
模具加热是注塑成型中的一个重要过程。在注入液化塑料之前提高模具温度可以简化充模过程。为此,可以使用冷却通道来输送高温流体,如热水或油。这种双重用途是一种经济高效的模具加热解决方案,因为使用这种方法很容易达到目标温度。此外,随形冷却通道(CCC)比直冷却通道能提供更高效的模具加热。本研究使用响应面方法来确定模具中热量分布的最佳CCC形状,模拟结果证实了其优化效果。使用CCC的模具平均温度优于使用直冷却通道的模具,并且热区在整个模具表面均匀分布。