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基于焦耳热的滑动压力增材制造工艺特性研究

Study on the Process Characteristics Based on Joule Heat of Sliding-Pressure Additive Manufacturing.

作者信息

Ma Kaiyue, Li Suli, Xu Chao, Gao Zhuang, Yang Laixia, Lu Bingheng

机构信息

School of Mechanical Engineering, Xi'an University of Science and Technology, Xi'an 710054, China.

National Innovation Institute of Additive Manufacturing, Xi'an 710300, China.

出版信息

Materials (Basel). 2023 Feb 28;16(5):2017. doi: 10.3390/ma16052017.

Abstract

This study developed an experimental system based on Joule heat of sliding-pressure additive manufacturing (SP-JHAM), and Joule heat was used for the first time to accomplish high-quality single-layer printing. The roller wire substrate is short-circuited, and Joule heat is generated to melt the wire when the current passes through. Through the self-lapping experimental platform, single-factor experiments were designed to study the effects of power supply current, electrode pressure, contact length on the surface morphology and cross-section geometric characteristics of the single-pass printing layer. Through the Taguchi method, the effect of various factors was analyzed, the optimal process parameters were obtained, and the quality was detected. The results show that with the current increase, the aspect ratio and dilution rate of a printing layer increase within a given range of process parameters. In addition, with the increase in pressure and contact length, the aspect ratio and dilution ratio decrease. Pressure has the greatest effect on the aspect ratio and dilution ratio, followed by current and contact length. When a current of 260 A, a pressure of 0.60 N and a contact length of 1.3 mm are applied, a single track with a good appearance, whose surface roughness Ra is 3.896 μm, can be printed. Additionally, the wire and the substrate are completely metallurgically bonded with this condition. There are also no defects such as air holes and cracks. This study verified the feasibility of SP-JHAM as a new additive manufacturing strategy with high quality and low cost, and provided a reference for developing additive manufacturing technology based on Joule heat.

摘要

本研究基于滑动压力增材制造的焦耳热(SP-JHAM)开发了一种实验系统,并首次利用焦耳热完成了高质量的单层打印。使滚轮丝材基板短路,电流通过时产生焦耳热以熔化丝材。通过自研磨实验平台,设计单因素实验来研究电源电流、电极压力、接触长度对单道打印层表面形貌和横截面几何特征的影响。通过田口方法分析了各因素的影响,获得了最佳工艺参数并进行了质量检测。结果表明,在给定工艺参数范围内,随着电流增加,打印层的纵横比和稀释率增大。此外,随着压力和接触长度的增加,纵横比和稀释率减小。压力对纵横比和稀释率的影响最大,其次是电流和接触长度。当施加260 A的电流、0.60 N的压力和1.3 mm的接触长度时,可以打印出外观良好、表面粗糙度Ra为3.896μm的单道轨迹。此外,在此条件下丝材与基板完全冶金结合,也不存在气孔和裂纹等缺陷。本研究验证了SP-JHAM作为一种高质量、低成本的新型增材制造策略的可行性,并为基于焦耳热的增材制造技术发展提供了参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/da76/10003864/7d1538e638d0/materials-16-02017-g001.jpg

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