Jiang Cho-Pei, Maidhah Andi Ard, Wang Shun-Hsien, Wang Yuh-Ru, Pasang Tim, Ramezani Maziar
Department of Mechanical Engineering, National Taipei University of Technology, Taipei 10608, Taiwan.
High-Value Biomaterials Research and Commercialization Center, National Taipei University of Technology, Taipei 10608, Taiwan.
Materials (Basel). 2023 Jun 29;16(13):4707. doi: 10.3390/ma16134707.
Inconel 718 (IN 718) powder is used for a laser powder bed fusion (LPBF) printer, but the mechanical properties of the as-built object are not suited to cold deep drawing applications. This study uses the Taguchi method to design experimental groups to determine the effect of various factors on the mechanical properties of as-built objects produced using an LPBF printer. The optimal printing parameters are defined using the result for the factor response to produce an as-built object with the greatest ultimate tensile strength (UTS), and this is used to produce a specimen for post-processing, including heat treatment (HT) and surface finishing. The HT parameter value that gives the maximum UTS is the optimal HT parameter. The optimal printing and HT parameter values are used to manufacture a die and a punch to verify the suitability of the manufactured tool for deep drawing applications. The experimental results show that the greatest UTS is 1091.33 MPa. The optimal printing parameters include a laser power of 190 W, a scanning speed of 600 mm/s, a hatch space of 0.105 mm and a layer thickness of 40 μm, which give a UTS of 1122.88 MPa. The UTS for the post-processed specimen increases to 1511.9 MPa. The optimal parameter values for HT are heating to 720 °C and maintaining this temperature for 8 h, decreasing the temperature to 620 °C and maintaining this temperature for 8 h, and cooling to room temperature in the furnace. Surface finishing increases the hardness to HRC 55. Tools, including a punch and a die, are manufactured using these optimized parameter values. The deep drawing experiment demonstrates that the manufactured tools that are produced using these values form a round cup of Aluminum alloy 6061. The parameter values that are defined can be used to manufacture IN 718 tools with a UTS of more than 1500 MPa and a hardness of more than 50 HRC, so these tools are suited to cold deep drawing specifications.
因科镍合金718(IN 718)粉末用于激光粉末床熔融(LPBF)打印机,但增材制造物体的机械性能并不适合冷深拉应用。本研究采用田口方法设计实验组,以确定各种因素对使用LPBF打印机制造的增材制造物体机械性能的影响。利用因素响应结果定义最佳打印参数,以制造具有最大抗拉强度(UTS)的增材制造物体,并以此制作用于后处理(包括热处理(HT)和表面处理)的试样。能给出最大UTS的HT参数值即为最佳HT参数。最佳打印和HT参数值用于制造模具和冲头,以验证所制造工具是否适合深拉应用。实验结果表明,最大UTS为1091.33兆帕。最佳打印参数包括激光功率190瓦、扫描速度600毫米/秒、扫描间距0.105毫米和层厚40微米,此时UTS为1122.88兆帕。后处理试样的UTS增至1511.9兆帕。HT的最佳参数值为加热至720℃并保温8小时,降温至620℃并保温8小时,然后在炉中冷却至室温。表面处理使硬度提高到HRC 55。使用这些优化参数值制造包括冲头和模具在内的工具。深拉实验表明,使用这些值制造的工具能够冲压出铝合金6061的圆形杯体。所定义的参数值可用于制造UTS超过1500兆帕、硬度超过50 HRC的IN 718工具,因此这些工具适合冷深拉规格要求。