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Study on Mold Flow Analysis and Injection Product Verification by Analysis of Variance and Response Surface Method - Taking Toothbrush as an Example

机译:通过分析方差和响应表面方法模具流动分析和注射产品验证研究 - 以牙刷为例

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With the advancement of technology, plastic products are inseparable in our environment, and the impact of the plastics industry on us is gradually increasing. Although Taiwan's plastics industry has been progressively added to mold flow analysis and automation, there are still some areas in the manufacturing process that can be optimized. In the process of slit-shaped materials, bending and deformation have a very large impact on the finished product, which is a major issue at the technical level. In this study, a toothbrush was taken as an example to find the best combination of injection molding parameters. The research process was studied from CAD mold design, CAE mold flow analysis, injection molding parameter analysis, mold opening, product injection and measurement, and the results were verified. Among them, the injection pressure, dwell time and holding pressure are used as the Taguchi factor, and the CAE mold flow analysis is performed by the direct cross table L_(16) (4~5) combination to find a small amount of warpage, and the Taguchi method and the reaction surface method are used to find out the best combination of parameters. After the final product was shot and the dimensions and simulation were compared with each other, the data showed that the amount of warpage of the finished product was 0.0892 mm, and the error with the analog value was 0.0212 mm, which confirmed that the injection molding parameters were reliable.
机译:随着技术进步,塑料制品在我们的环境中是密不可分的,塑料行业对我们的影响逐渐增加。虽然台湾的塑料行业已逐步添加到模具流量分析和自动化中,但仍有一些领域可以优化的制造过程中。在狭缝形材料的过程中,弯曲和变形对成品具有非常大的影响,这是技术水平的主要问题。在这项研究中,采用牙刷作为一个例子,以找到注射成型参数的最佳组合。研究了CAD模具设计,CAE模具流量分析,注塑参数分析,模具开口,产品注射和测量,验证了研究过程,验证了结果。其中,使用注射压力,停留时间和保持压力作为TAGUCHI因子,并且CAE模具流量分析由直接横向表L_(16)(4〜5)组合进行,以找到少量翘曲,而Taguchi方法和反应表面方法用于找出参数的最佳组合。在拍摄最终产品并彼此比较尺寸和仿真后,数据显示成品的翘曲量为0.0892mm,模拟值的误差为0.0212 mm,确认注塑成型参数可靠。

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