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Numerical and Experimental Study on Effect of Different Types of Field-Shaper on Electromagnetic Terminal-Wire Crimping Process

机译:不同类型现场砧木对电磁端子丝压接工艺效果的数值实验研究

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摘要

Electromagnetic terminal-wire crimping (EMTWC) is a type of mechanical joining process. In EMTWC, the terminal is deformed over the wire strands plastically to enhance the mechanical strength by increasing the contact area. A well-crimped electrical interconnection helps to avoid harmful configurations by reducing sparks, overheating, power losses etc. Subsequently, the challenge to minimize various disadvantages of conventional mechanical terminal-wire crimping process like non-uniform deformation, decreased durability, cracks, etc., can be overcome by the electromagnetic crimping process. In this work, application of the fieldshaper has been proposed to concentrate the magnetic pressure at the desired location for effective wire crimping. Numerical analysis was carried out using LS-DYNA(TM) on three different types of field-shaper namely single-step, double-step and tapered. In all the three field-shaper, the total length, the outer diameter and the effective working length were constant. The samples used was an aluminum terminal and seven strands of aluminum wires which are commercially used for making electrical inter connections. Experiments were carried out based on the results obtained through numerical analysis. Experimental and numerical results were in agreement and the error was less than 10%. The efficiency of single-step field-shaper was found to be better compared to double-step and tapered fieldshaper.
机译:电磁端子 - 线控压接(EMTWC)是一种机械连接过程。在EMTWC中,终端通过增加接触面积塑括性地在线股线上变形以增强机械强度。卷积良好的电互连有助于通过减少火花,过​​热,功率损耗等,避免有害的配置,随后,以最小化传统的机械端子 - 线压接工艺的各种缺点,如非均匀变形,耐久性,裂缝等,以最小化传统的机械端子线压接工艺的各种缺点。 ,可以通过电磁卷曲过程克服。在这项工作中,已经提出了将FieldShaper的应用将磁力集中在所需位置以进行有效的电线压接。使用LS-DYNA(TM)在三种不同类型的田间平面上进行数值分析,即单步,双步和锥形。在所有三个场上,总长度,外径和有效工作长度是恒定的。所用的样品是铝端子和七股铝线,其可商购用于制造电连接。基于通过数值分析获得的结果进行实验。实验和数值结果一致,错误低于10%。与双步和锥形FieldShaper相比,发现单步场晶片的效率更好。

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