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首页> 外文期刊>Fibers and Polymers >Investigation on the Hole-producing Techniques of Residual-stress Measurement by Incremental Hole-drilling Method in Injection Molded Part
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Investigation on the Hole-producing Techniques of Residual-stress Measurement by Incremental Hole-drilling Method in Injection Molded Part

机译:注塑成型件中增量钻孔法的储存储存方法的储存技术的研究

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摘要

Injection molding is one of the most important processes for manufacturing plastic parts, but residual stresses are generated due to non-uniform temperature distribution in the mold cavity. It is important to predict the internal stress development during molding and after ejection and measurement of the residual stress distribution is needed to verify the prediction of the residual stresses. The incremental hole-drilling method was employed to evaluate residual stresses in injection-molded parts. An experimental investigation is performed to study the effect of induced drilling stresses in incremental hole-drilling method. While the ultra sonic mill for the through-hole drilling would tend to satisfy the low-induced-stress requirement, UV laser processing could not somewhat satisfy the quality of the bottom surface of the hole. This study reports hole-producing techniques that might be suitable for the general requirements of residual stress measurement by the hole-drilling method.
机译:注射成型是制造塑料部件最重要的方法之一,但由于模腔中的不均匀温度分布,产生残余应力。 重要的是要预测成型过程中的内应力显影和在喷射之后,需要在验证残余应力的预测时需要射出和测量。 使用增量空穴钻孔方法评估注塑部件中的残余应力。 进行实验研究以研究诱导钻孔应力在增量钻孔法中的影响。 虽然用于通孔钻孔的超声波磨机将倾向于满足低诱导的应力要求,但UV激光加工可能不会有些满足孔的底表面的质量。 本研究报告了能够通过空穴钻井方法适用于残余应力测量的一般要求的孔产生的技术。

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