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Best practice for benchmarking injection moulding simulation

机译:对标注塑成型基准的最佳做法

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Injection moulding simulation benchmarking is the comparison of predicted and actual process and quality parameters. Best practice requires that the inputs and outputs from an injection moulding simulation agree to the actual conditions of a real life moulding machine, as closely as possible. The accuracy of injection moulding simulation is influenced by many factors such as: the modelling of the part geometry, runner and nozzle, model mesh type and density, mathematical finite element solution, material data, and process settings. Validation of injection moulding simulation requires good quality process measurements from a range of transducers, measuring process pressure and temperatures at different locations and including movement of the reciprocating screw to infer flow rate and accurate and repeatable measurement methods for part deflection. The objective of this paper is to give the reader an appreciation of the important issues, to ensure the inputs for an injection moulding simulation match the actual conditions of the real life moulding machine. The inputs for injection moulding simulation are reviewed in detail, firstly considering machine performance issues and secondly considering the simulations issues. This will provide the reader with knowledge and understanding to improve benchmarking procedures.
机译:注塑成型模拟基准测试是对预测的和实际的工艺以及质量参数的比较。最佳实践要求注塑成型模拟的输入和输出尽可能与现实生活中成型机的实际条件一致。注塑成型仿真的精度受许多因素影响,例如:零件几何形状的建模,流道和喷嘴,模型网格的类型和密度,数学有限元解决方案,材料数据以及工艺设置。注塑成型仿真的验证需要一系列换能器进行高质量的过程测量,测量不同位置的过程压力和温度,包括往复螺杆的运动以推断流速,以及零件挠度的精确且可重复的测量方法。本文的目的是使读者认识到重要的问题,以确保用于注塑成型模拟的输入与实际成型机的实际条件相匹配。详细审查了注射成型仿真的输入,首先考虑了机器性能问题,其次考虑了仿真问题。这将为读者提供知识和理解,以改进基准程序。

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