激光金属沉积过程中熔覆微珠及其周围区域的温度评价

IF 3.3 Q2 ENGINEERING, MANUFACTURING
Yorihiro Yamashita, Kholqillah Ardhian Ilman, Takahiro Kunimine, Yuji Sato
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引用次数: 0

摘要

激光金属沉积法(LMD)制备WC-12mass%Co硬质合金珠的过程中,通常会产生裂纹。在LMD过程中,测量成形珠和衬底的温度对于实现无裂纹珠是非常重要的。在本研究中,在LMD过程中,使用热观察器测量了形成头周围的衬底温度。在热传导分析的基础上,利用实验测量的衬底温度,模拟预测了LMD过程中形成的微珠的温度。在JIS SKH51 (ISO HS-6-5-2)衬底上制备WC-12mass%Co硬质合金微球的实验结果表明,激光功率为80 ~ 160 W时,衬底在距离微球中心0.2 mm处的最高温度为229 ~ 341℃。在衬底激光吸收系数为0.35的条件下,预测形成的微珠的最高温度在2433 ~ 4491℃之间。根据基体的熔点和WC-12mass%Co硬质合金珠的微观组织,讨论了模拟结果的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Temperature Evaluation of Cladding Beads and the Surrounding Area during the Laser Metal Deposition Process
Cracks usually generate during the formation of beads composed of a WC-12mass%Co cemented carbide by the laser metal deposition (LMD). Measuring temperatures of the formed bead and substrate during the LMD process is important for realizing crack-free beads. In this study, temperatures of the substrate around the formed bead during the LMD process were measured using a thermoviewer. Temperatures of the formed beads during the LMD process were predicted by simulation based on the thermal conduction analysis using the experimentally measured temperatures of the substrate. The experimental results obtained during forming the WC-12mass%Co cemented carbide beads on JIS SKH51 (ISO HS-6-5-2) substrates showed that the maximal temperatures of the substrates at 0.2 mm away from the center of the formed beads ranged from 229 °C to 341 °C at laser powers ranging from 80 W to 160 W. The predicted maximal temperatures of the formed beads were in the range of 2433 °C to 4491 °C in the simulation using a laser absorption coefficient of 0.35 for the substrate. Validity of these simulation results was discussed based on the melting point of the substrate and microstructures of the formed WC-12mass%Co cemented carbide beads.
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来源期刊
Journal of Manufacturing and Materials Processing
Journal of Manufacturing and Materials Processing Engineering-Industrial and Manufacturing Engineering
CiteScore
5.10
自引率
6.20%
发文量
129
审稿时长
11 weeks
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