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Design and optimization of conformal cooling channels for injection molding: a review

机译:注塑成型保形冷却通道的设计与优化:综述

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摘要

The recent developments in the additive manufacturing make easier and affordable the fabrication of conformal cooling channels (CCCs) compared with the traditional machining techniques. Conformal cooling channels (CCCs) achieve better cooling performances than the conventional (straight-drilled) channels during the injection molding process since they can follow the pathways of the molded geometry while the conventional channels fail. Cooling time, total injection time, uniform temperature distribution, thermal stress, warpage thickness, etc. are some of the objectives that are improved via CCC applications. However, the CCC design process is more complex than the conventional channels; therefore, computer-aided engineering (CAE) simulations have significant importance for the effective and affordable design. This review study presents the main design steps of CCCs as follows: (1) a background of the CCC fabrication process is projected, (2) the thermal and mechanical models are presented with respect to the 1D analytical model, (3) the CAE-supported design criteria are discussed for the 3D models of CCCs and relevant mold materials, (4) some of the illustrative CAE simulations are explained in detail according to the computational thermal and mechanical objectives, and (5) the single- and multi-objective optimization procedures are defined. By following the aforementioned steps, clearer and effective CAE steps can be obtained for the designers before the on-site fabrication of CCCs.
机译:与传统的加工技术相比,添加剂制造中最近的发展更容易和实惠地制造了保形冷却通道(CCC)的制造。保形冷却通道(CCCS)在注射成型过程中实现比传统(直钻)通道更好的冷却性能,因为它们可以遵循模制几何形状的路径,而传统通道失效。冷却时间,总喷射时间,均匀的温度分布,热应力,翘曲厚度等是通过CCC应用得到改善的一些目标。然而,CCC设计过程比传统通道更复杂;因此,计算机辅助工程(CAE)模拟对有效和实惠的设计具有重要意义。该评论研究提出了CCC的主要设计步骤,如下所示:(1)CCC制造过程的背景投影,(2)相对于1D分析模型提出了热和机械模型,(3)CAE-支持的设计标准讨论了CCCS和相关模具材料的3D模型,(4)根据计算热和机械目标详细说明了一些说明性CAE模拟,(5)单一和多目标优化程序定义。通过以下上述步骤,可以在CCC的现场制造之前为设计者获得更清晰和有效的CAE步骤。

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