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Deformation analysis and improvement method of the Ni-P mold core in the injection molding process

机译:注塑成型工艺中Ni-P模具芯的变形分析及改进方法

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摘要

Electroless nickel phosphide (abbreviated as Ni-P) commonly serves as the plating material of the mold core for injecting aspheric plastic lenses used in imaging optics. The deformation of Ni-P mold core is accomplished in the injection molding through the influences of pressure and temperature. To verify whether the deformed Ni-P mold core can meet the accuracy requirements of the aspheric mold core in imaging optics, a deformation analysis of the Ni-P mold core with injection experiments was performed. It is shown that the P-V error of the Ni-P mold core is found to increase by approximately 1.6?μm. The mold core exhibits a deformation trend of contraction in the center and expansion at the edges. Heat treatment, which can transform Ni–P from amorphous into crystalline, is adopted to reduce its deformation. Experimental results indicate that the deformation trend of heat-treated crystallized Ni-P mold core is alleviated, and its form accuracy is reduced by 1.1642?μm (PV). Such reduced deformation in this innovation makes it able to meet the accuracy requirements of aspheric mold core for imaging optics, and the life of mold core is greatly prolonged using the proposed method.
机译:磷化镍(缩写为Ni-P)通常用作模具芯的电镀材料,用于注入用于成像光学器件的非球面塑料透镜。通过压力和温度的影响,在注射成型中完成Ni-P模具芯的变形。为了验证变形的Ni-P模具芯是否可以满足影像光学器件中非球面模具核心的精度要求,进行了注射实验的Ni-P模具芯的变形分析。结果表明,发现Ni-P模具芯的P-V误差增加约1.6Ωμm。模具芯在中心和边缘处的膨胀中表现出收缩的变形趋势。可以采用热处理,其可以将Ni-P从非晶态转化为结晶,以降低其变形。实验结果表明,缓解了热处理的结晶Ni-P模芯的变形趋势,其形式精度降低了1.1642ΩΩμm(PV)。这种创新的这种变形降低使得能够满足非球面模具核心的成像光学器件的准确性要求,并且使用所提出的方法大大延长了模具芯的寿命。

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