A study of tolerance allocation and stack-up analysis to improve the assembly precision of an injection mold

IF 1 4区 工程技术 Q3 ENGINEERING, MULTIDISCIPLINARY Journal of the Chinese Institute of Engineers Pub Date : 2023-05-02 DOI:10.1080/02533839.2023.2204883
Y. Tsai, Kuan-Hong Lin, Chun-Sheng Chen
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Abstract

ABSTRACT Tolerance designing is a critical job for the assemblies to ensure their precision and functions. Tolerance design must consider manufacturing capability for ensuring the feasibility of the designs in the following processing. This paper presents the available methods of determining tolerance sizes and tolerance analysis to improve assembly precision. An injection mold consisting of hundreds of parts is used as an example to depict the methods of tolerance designing. The precision grades and the corresponding tolerance ranges applied in engineering fits are introduced for giving reasonable tolerances in designing. The defect rates of the designed tolerances to the machining precisions are investigated for observing the effects of manufacturing capabilities. An approach based on block assembly is proposed for eliminating tolerance stack-up, as well as improving assembly precision. The assembly tolerances can be reduced from 0.071 to 0.032 mm by using the proposed method, and the defect rates in manufacturing can be improved from 9.05% to 0.02%. It means that a larger range of tolerances can be designed to meet the specifications, as well as reduce the manufacturing costs.
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提高注塑模具装配精度的公差分配与叠加分析研究
公差设计是保证零件精度和功能的一项重要工作。公差设计必须考虑制造能力,以保证设计在后续加工中的可行性。本文介绍了为提高装配精度而确定公差尺寸和进行公差分析的可行方法。以一个由数百个零件组成的注塑模具为例,阐述了公差设计的方法。介绍了工程配合中应用的精度等级和相应的公差范围,以便在设计时给出合理的公差。研究了设计公差对加工精度的缺陷率,以观察制造能力对加工精度的影响。提出了一种基于块装配的消除公差叠加、提高装配精度的方法。采用该方法可将装配公差从0.071 mm减小到0.032 mm,制造不良率从9.05%降低到0.02%。这意味着可以设计更大范围的公差来满足规格,并降低制造成本。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of the Chinese Institute of Engineers
Journal of the Chinese Institute of Engineers 工程技术-工程:综合
CiteScore
2.30
自引率
9.10%
发文量
57
审稿时长
6.8 months
期刊介绍: Encompassing a wide range of engineering disciplines and industrial applications, JCIE includes the following topics: 1.Chemical engineering 2.Civil engineering 3.Computer engineering 4.Electrical engineering 5.Electronics 6.Mechanical engineering and fields related to the above.
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